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中国_82077010_带有天然或合成金刚石、立方氮化硼制工作部件的铣削工具(2003-2013)进口量及进口额

进口数量_月度_基础值 单位 —— —— —— —— —— —— —— —— —— —— —— —— —— —— —— —— —— —— —— —— —— —— —— ——
2005年01月 2005年02月 2005年03月 2005年04月 2005年05月 2005年06月 2005年07月 2005年08月 2005年09月 2005年10月 2005年11月 2005年12月 2006年01月 2006年02月 2006年03月 2006年04月 2006年05月 2006年06月 2006年07月 2006年08月 2006年09月 2006年10月 2006年11月 2006年12月 2007年01月 2007年02月
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中国_82077010_带有天然或合成金刚石、立方氮化硼制工作部件的铣削工具(2003-2013)进口量及进口额
数据样本如下: 进口额_月度_基础 值 单位 2013年12月 2013年11月
2013年10月 …… 2013年01月 2012年12月 2012年05月 …… …… 2003年09月 …… 2003年01月 XX 美元 2013年10月 XX 2013 美元年10月 XX 美元 XX 美元 XX 美元 XX 美元 XX 美元 XX 美元 XX 美元 XX 美元 XX 美元 XX 美元 进口数量_月度_基 础值 单位 XX 千克 XX 千克 XX 千克 XX 千克 XX 千克 XX 千克 XX 千克 XX 千克 XX 千克 XX 双 XX 双 XX 双
ASNZS中文

3AS/NZS1252:1996目录第一章范围和概述1.1范围 (4)1.2应用 (4)1.3参考文献 (4)1.4定义 (5)1.5标记 (5)1.6名称 (6)第二章高强度螺栓2.1生产方式 (8)2.1外形,尺寸&表面处理 (8)2.3材料和机械性能 (9)2.4试验方法 (9)第三章高强度螺母3.1生产方式 (16)3.2外形,尺寸&表面处理 (16)3.3材料和机械性能 (17)3.4试验方法 (17)第四章圆式平垫圈4.1外形,尺寸和表面处理 (20)4.2材料和热处理 (20)4.3硬度 (20)附录A机械性能试验的建议取样计划 (22)B检验螺栓从螺纹到螺母面垂直度的推荐测量方法 (23)C镀锌螺栓的装配测试 (24)D方斜垫圈 (25)AS/NZS1252:19964澳大利亚标准/新西兰标准建筑用高强度螺栓(装配有螺母&垫圈的螺栓)第一章范围和概述1.1范围该标准规定了ISO公制粗牙螺纹系列直径16mm---36mm并带有调质钢垫圈的钢结构用螺栓8.8级螺栓和8级螺母的尺寸,材料&钢印要求。
1.2运用螺栓,螺母和垫圈应符合第一章&如下章节规定的要求:(a)螺栓…………………………………………………………第一章(b)螺母…………………………………………………………第二章(c)垫圈………………………………………………………….第三章1.3参考文献该标准参考如下文献:AS1014公制螺纹的测量1214带螺纹螺栓的热镀锌锌层(公制粗牙螺纹螺栓ISO标准)1275公制螺纹螺栓1650亚铁物的热镀锌锌层1789钢铁表面的电镀层——锌1815金属材料——洛氏硬度试验1817金属材料——维氏硬度试验1897螺纹部件上的电镀层AS/NZS4291紧固件机械性能4291.1第一部分:螺栓,螺丝和图钉4291.2第二部分:达到规定的试验应力的螺母——粗牙螺纹SAA/SNZHB18第三方鉴定&委任的指导HB18.22指引22:生产方声称符合标准&技术规范的信息ISO6157紧固件——表面不连续6157.1第一部分:螺栓,螺丝&图钉的一般要求SAEJ122a螺母的表面不连续性5AS/NZS1252:1996 1.4定义如下定义适用用该标准。
ASME材料分类

1Cr-1/2Mo
A387
A387
A387
2 Cl.1
2 Cl. 2
12 Cl. 1
A335
A369
A691
P1
FP1
1/2Cr
1.7
C-1/2Mo
1/2Cr-1/2Mo
Ni-1/2Cr-1/2Mo
3/4Ni-Mo-3/4Cr
A182
F2
A217
A217
WC4
WC5
A204
C
A182
等级
Grade
规格编号
Spec. No.
等级
Grade
规格编号
Spec. No.
等级
Grade
规格编号
Spec. No.
等级
Grade
1.1
C
C-Si
C-Mn-Si
A105
A350
LF2
A216
WCB
A515
A516
A537
70
70
Cl. 1
A675
A105
A350
A696
70
LF2
C
A672
A672
CF8A
CF3M
CF8M
CG8M
A240
A240
A240
316
316H
317
A182
A182
A479
A479
F316
F316H
316
316H
A312
A312
A358
A376
A376
A430
A430
A312
TP316
TP316H
ASME SEC VIII D1 INDEX

INDEXassembling.............................UW-9,UB-16 brazing.......................................UB-16 vessels subjected to external pressure............UG-28 Clad material,inserted strips....................UCL-33 examination.................................UCL-36 Clad plate.....................................UCL-11 Cleaning of brazed surfaces.......................UB-34 of welded surfaces............................UW-32 Clearance between surfaces to be brazed...........UB-35 Combination,of different materials.................UB-5 of methods of fabrication..................U-2,UG-17 Computed working pressure from hydrostatictests..................UG-101,UCI-101,UCD-101 Conical heads......................UG-32,UHT-33,1-5 Conical sections...............................UHT-19 Connections,boltedflange(see Boltedflange connections) brazed..............................UB-19to UB-21 clamp.......................................App.Z expanded.....................................UG-43 from vessels to safety valves..................UG-135 studded.......................................UG-43 threaded......................................UG-43 welded.............UW-15,UW-16,UHT-17,UHT-18 Cooling,after postweld heat treating.....UW-40,UHT-56,Table UHT-56 Corrosion allowance............UG-16(e),UG-25,UB-13,UCS-25,UCL-25,UHT-25,App.E Corrosion resistant linings........................UG-26 Corrugated shells...............................UCS-28 Corrugating paper machinery.......................UF-7 Cover plates.....................................UG-34 on manholes and handholes.....................UG-46 spherically dished.........................UG-35,1-6 Cracking,stress corrosion.....................UHA-103 Cutting plates..................UG-76,UW-31,UHT-83 Cylindrical shells,supplementary loading...........UG-22 thickness.....................UG-27,UHT-27,UCI-29 transition in...................................UG-36DData Report,Guide for preparation..............App.W Defects in welded vessels,repair........UW-38,UHT-85 Definitions.........................................3-1 Design,brazed vessels............................UB-9 carbon and low alloy steel vessels.............UCS-16 cast ductile iron vessels......................UCD-16 cast iron vessels..............................UCI-16 clad vessels.................................UCL-20 ferritic steel vessels with properties enhanced byheat treatment...........................UHT-16 forged vessels.................................UF-12 high alloy steel vessels.......................UHA-20loadings......................................UG-22 multichamber vessels...........................UG-19 nonferrous vessels...........................UNF-16 welded vessels................UW-8,UHT-1,UHT-16 Design pressure..................................UG-21 Diameter exemption................................U-1 Dimensions,checking of..........................UG-96 Discharge of safety valve...............UG-133,UG-134 Dished heads(see Formed heads)Disks,rupture..................................UG-127 Dissimilar weld metal.........UG-18,UHA-107,UCL-31 Distortion,of welded vessels......................UG-80 supports to prevent....................UG-27,UG-28 Drainage,discharge from safety and relief valves..UG-134of vessels subject to corrosion............UG-25,M-2Drop-weight tests...............................UHT-6EEccentricity of shells.............................UG-80 edges of plates,metal removal from...........UHT-83 tapered.......................................UW-9Efficiency,around openings for weldedattachments..............................UW-15 welded......................................UW-12 Elasticity,modulus of.........................Table TMof Section II,Part D,Subpart2 Electric resistance welding.......................UW-12 Ellipsoidal heads...UG-32,UG-33,1-4,UHT-32,UHT-33 Erosion,allowance for...........................UG-25 Etching,of sectioned specimens.....................K-1 solutions for examination of materials.............K-1 Evaporators.......................................U-1 Examination,of sectioned specimens..............UW-52of welded joints.............UW-51,UW-52,UNF-57,UNF-58,UHT-57,UHT-83 Exemptions,diameter and volume...................U-1 Expanded connections............................UG-43 External pressure,tube and pipe...................UG-31 External pressure vessels.......UG-28to UG-30,UG-33, UG-80,UCD-28,UHT-27,UHT-29,UHT-30,UHT-33 allowable working pressure for..................UG-28 charts...................Section II,Part D,Subpart3 design of heads for..........UG-33,UCS-33,UNF-33,UHA-31,UCI-33,UHT-33joints in shells of.....................UG-28,UHT-17 reinforcement for openings.............UG-37,UHT-17 stiffening rings in shells...............UCS-29,App.L supports for..............................UG-29,G-1A02A022001SECTION VIII—DIVISION1thickness of shell............UG-28,UCS-28,UNF-28,UHA-28,UCI-28,UHT-27,UCL-26 reducers......................................UG-36FFabrication,brazed vessels........................UB-30 carbon and low alloy steel vessels.............UCS-75 cast ductile iron vessels......................UCD-75 cast iron vessels..............................UCI-75 clad vessels.................................UCL-30 ferritic steel vessels with tensile propertiesenchanced by heat treatment..............UHT-75 forged vessels.................................UF-26 high alloy steel vessels.......................UHA-40 nonferrous vessels...........................UNF-75 welded vessels...............UW-26,UHT-1,UHT-75 Ferritic steel vessels with tensile propertiesenhanced by heat treatment,design........UHT-16 fabrication..................................UHT-75 head design.................................UHT-33 heat treatment...............................UHT-80 heat treatment verification tests................UHT-81 marking....................................UHT-86 materials.....................UHT-1,UHT-5,UHT-40 stamping...................................UHT-115 welded joints................................UHT-17 welding.....................................UHT-82 Field assembly of vessels......................U-1,U-2 Filler plugs for trepanned holes.....................K-2 Fillet welds....................UW-18,UW-36,UCL-46 Fired process tubular heaters........................U-1 Fitting attachments......................UG-82,UHT-18 Flange connections...............................UG-44 Flange contact facings...............................2-3 Flanges,bolted design....................Apps.2and S of formed heads for welding...................UW-13 type of attachment................................2-4 Flat heads and covers,unstayed...................UG-34 reinforcement of openings......................UG-39 Flat spots on formed heads.......................UG-32 Flued openings..................................UG-38 Forged parts,small..............................UG-11 Forged vessels,heat treatment.....................UF-31 localized thin areas............................UF-30 welding.......................................UF-32 Forgings....................UG-6,UF-6,UCS-7,UNF-7 identification of................................UF-47 ultrasonic examination..........................UF-55 Form,Manufacturer’s Data Report...............App.W Partial Report...............................App.W Formed heads..................UG-32,UG-33,UCS-33,UHT-32,UHT-33flued openings in..............................UG-38 insertion of,welded vessels....................UW-13 joint efficiency................................UG-32 knuckle radius........................UG-32,UHT-19 length of skirt.........UG-32,UG-33,UW-13,UHT-19 on welded vessels............................UW-13 reinforcement for openings......................UG-37 Forming,ends of shell plates and buttstraps........UG-79 forged heads..................................UF-28 shell sections and heads...............UG-79,UCS-79,UNF-77,UHT-79 Furnaces,temperatures for postweld heattreatment................................UW-40 Furnaces for heat treating.......................UHT-80 temperature control of........................UHT-80GGalvanized vessels...............................UG-99 Gasket materials........................2-3,Table2-5.1 Girth joints(see Circumferential joints)HHandhole and manhole openings..................UG-46 Headflange(skirt)length.........UG-32,UG-33,UW-13 Head joints,brazing..............................UB-16 welded......................................UW-13 (see also Heads and shells;Joints)Head openings,entirely in spherical portion........UG-37 Heads,concave and convex.......UG-32,UG-33,UCI-32, UCI-33,UCD-32,UCD-33,UHT-32,UHT-33flat(see Flat heads) forged...............................UF-13to UF-28 formed(see Formed heads) forming.............UG-79,UCS-79,UNF-77,UHT-79 thickness,after forming........UG-32,UG-33,UHT-79 Heads,design,conical...............UG-32,UHT-33,1-5 ellipsoidal.......UG-32,UG-33,UHT-32,UHT-33,1-4 hemispherical....UG-32,UG-33,UHT-32,UHT-33,1-4 spherically dished.........UG-32,UG-33,UCD-35,1-6 toriconical........................UG-32,UF-13,1-5 torispherical.......................UG-32,UG-33,1.4 torispherical,knuckle radius.....................UG-32 Heads and shells,external pressure,out-of-roundness...................UG-80,UG-81 openings through or near welded joints.........UW-14 roundness tolerance....................UG-80,UG-81 Heat exchangers...................................U-1 Heat treatement,by fabricator............UG-85,UCS-85 carbon and low alloy steel vessels.............UCS-85 ferritic steel vessels with tensile propertiesenhanced by heat treatment...............UHT-80INDEXforged vessels.................................UF-31 furnaces....................................UHT-80 high alloy vessels...........................UHA-105 of test specimens.....................UG-85,UCS-85 verification tests of..........................UHT-81 Hemispherical heads........................UG-32,1-4 High pressure vessels..............................U-1 Holes,for screw stays............................UG-83 for trepanning plug sections,refilling..............K-2 telltale...............................UG-25,UCL-25 unreinforced,in welded joints..................UW-14 Hubs,onflanges....................................2-2 Hydrostatic proof tests.......UG-101,UCI-101,UCD-101 destructive................UG-101,UCI-101,UCD-101 prior pressure application......................UG-101 Hydrostatic test,cast iron vessels.................UCI-99 combined with pneumatic......................UG-100 enameled vessels..............................UG-99 external pressure vessels........................UG-99 galvanized vessels.............................UG-99 standard....................UG-99,UCL-52,UCD-99 welded vessels........................UG-99,UW-50IIdentification,of forgings.........................UF-47 of plates..............UG-77,UG-85,UG-94,UHT-86 of welds.....................................UW-37 Identification markers,radiographs................UW-51 Impact test,certification..........................UG-84 properties.............................UG-84,UHT-6 specimens....UG-84,UHT-5,UHT-6,UHT-81,UHT-82 temperature..................................UHT-5 Inspection,before assembling..........UG-90to UG-102 brazed vessels.........................UB-40,UB-44 carbon and low alloy steel....................UCS-90 cast ductile iron vessels......................UCD-90 cast iron vessels..............................UCI-90 clad vessels.................................UCL-50 during fabrication......................UG-95,UG-97 ferritic steel vessels with tensile propertiesenhanced by heat treatment...............UHT-90fitting up.....................................UG-96 forged vessels........................UF-45to UF-54 heat treatment,forgings........................UF-52 high alloy steel vessels.......................UHA-50 magnetic particle............UW-50,UHT-57,UHT-83 material...............................UG-93,UG-94 nonferrous vessels...........................UNF-90 plate...............................UG-93to UG-95 postweld heat treatment................UW-49,UF-52 pressure vessels,accessibility.....................M-2 quality control.................................UG-90sectioning of welded joints....................UW-41 spot examination..............................UW-52 steel castings.............................UG-24,7-1 surfaces exposed and component parts...UG-95,UG-46 test specimens.................................UF-53 vessels................UG-90,UG-97,UW-46,UHT-90 vessels exempted from...........................U-1 welded vessels.....................UW-46to UW-52 Inspection openings..............................UG-46 Inspection,access to plant........................UG-92 control of stamping...........................UG-116 duties...................................U-2,UG-90 facilities......................................UG-92 qualification...................................UG-91 reports.......................................UG-120 Installation,pressure-relievingdevices.......................UG-134,UHT-125,M-4to M-8 pressure vessel..................................M-1 Integral cast iron dished heads...................UCI-35 Integrallyfinned tubes.............................UG-8 Internal structures...........................D-1to D-3JJacketed vessels.....................UG-28,9-1to9-10 Joints,brazed....................................UB-16 circumferential(see Circumferential joints)efficiency,brazed..............................UB-14 welded............................UW-11,UW-12 electric resistance,butt welding.................UG-31 in cladding and applied linings................UCL-31 in vessels subjected to external pressure.........UG-28 lap(see Lap joints)longitudinal(see Longitudinal joints)tube-to-tubesheet..............................App.A Jurisdictional review...............................U-2KKnuckles,radius........................UG-32,UHT-19 transition section......................UG-36,UHT-19LLap joints,amount of overlap..............UW-9,UB-16 brazed........................................UB-16 longitudinal under external pressure..............UG-28 welded.......................................UW-9 Laws covering pressure vessels......................U-1 Lethal gases or liquids....................UW-2,UCI-2 Ligaments,efficiency of............................L-8 Limitation on welded vessels.....................UW-2A022001SECTION VIII—DIVISION1Limit of out-of-roundness of shells................UG-80 Linings................................UG-26,UCL-12corrosion resistant.........................F-1to F-3Liquid penetrant examination.....UG-93,UW-42,UHT-57,UHT-83,App.8 Loadings........................................UG-22Local postweld heat treatment....................UW-40Longitudinal joints,alignment tolerance..........UHT-20 brazing.......................................UB-16vessels subjected to external pressure............UG-28Low temperature operation.......................UCS-65Low temperature vessels,brazed..................UB-22for gases and liquids...UCS-65to67,UNF-65,UCL-27impact test requirements...............UG-84,UHA-51impact tests,when not required................UCS-66 marking.....................................UG-116 materials......................................UG-84testing of materials............................UG-84Lugs for ladders,platforms,andother attachments..........................UG-55MMagnetic particle inspection.............UG-93,UHT-57,UHT-83,6-1to6-4Manholes,and handholes.........................UG-46cover plates for...............................UG-34minimum vessel diameter requiring..............UG-46Manufacturer,responsibility of............UG-90,UW-26Manufacturer’s Data Report(see Data Report)Manufacturer’s stamps....................UG-77,UG-94Marking,castings................................UG-24 materials.............................UG-94,UHT-86plates..........UG-10,UG-77,UG-85,UG-94,UHT-86standard pressure parts.........................UG-11valves andfittings.............................UG-11with Code Symbol..................UG-116,UHT-115Markings,transfer after cutting plates......UG-77,UG-94Materials,approval of new................UG-4,App.Bapproval of repairs.....................UG-78,UCI-78brazed vessels..................................UB-5carbon and low alloy steel vessels..............UCS-5cast ductile iron..............................UCD-5 castings........................................UG-7cast iron vessels...............................UCI-5certification...................................UG-93clad vessels.................................UCL-10combination of......................UG-18,UHT-40ferritic steel vessels with tensile propertiesenhanced by heat treatment................UHT-5forged vessels..................................UF-5 forgings.......................................UG-6for nonpressure parts............................UG-5heat treatment of............UG-85,UCS-85,UHT-80high alloy steel vessels.......................UHA-11inspection of..........................UG-93,UG-95nonferrous vessels............................UNF-5pipe and tubes.................................UG-8plate..........................................UG-5rods and bars................................UCS-12specification for.......UG-4,UG-23,UCS-23,UNF-23,UHA-23,UCI-23,UCD-5,UHT-5,UHT-23standard pressure,parts.........................UG-11unidentified...................................UG-10use of,over thickness listed in Section II.........UG-5welded vessels................................UW-5Measurement,dimensional........................UG-96of out-of-roundness of shells....................UG-80Metal temperature,determination....................C-1control of....................................App.TMill undertolerance..............................UG-16Minimum thickness of plate....UG-16,UCS-16,UNF-16,UHA-20,UCL-20,UHT-16Miscellaneous pressure parts......................UG-11Multichamber vessels,design......................UG-19Multiple duplicate vessels.........................UG-90Multiple safety valves...........................UG-134NNameplates..................UG-117,UG-118,UHT-115New materials...............................UG-4,B-1Noncircular vessels.............................App.13ligament efficiency...............................13-6nomenclature....................................13-5obround design....................13-10,13-11,13-12rectangular design.........................13-7,13-9reinforcement....................................13-8examples.......................................13-16Nonpressure parts,attachment of.........UG-55,UHT-85Notch ductility test.............................UHT-5Nozzle openings,reinforced..............UG-36,UHT-18unreinforced...................................UG-36vessels subjected to external pressure............UG-37Nozzles,attachment of,to shell..........UG-43,UHT-18minimum thickness of neck............UG-45,UHT-18(see also Connections)Nuts and washers...............UG-13,UCS-11,UNF-13OOffset of edges of plates at joints.......UW-33,UHT-20Openings,adjacent to welds.....................UW-14closure of.......................................K-2for connections to brazed vessels................UB-19for drainage...................................UG-25。
沙特阿美工程规程SAEP-341 Equipment Life Cycle Cost Procedure

Previous Issue: 26 July 2009 Next Planned Update: 20 October 2017Page 1 of 14 Primary contact: Odan, Nabeel Mohammad on 966-3-8809506Engineering ProcedureSAEP-34120 October 2012 Equipment Life Cycle Cost Procedure Document Responsibility: Pumps, Seals & Mixers Standards CommitteeSaudi Aramco DeskTop StandardsTable of Contents1 Scope (2)2 Applicable Equipment Typesand Required LCC Data (2)3 Applicable Documents (3)4 Instructions (4)Appendix A – Calculation Methodsfor Life Cycle Cost Analysis (9)Next Planned Update: 20 October 2017 Equipment Life Cycle Cost Procedure1 ScopeThis procedure provides instructions for economically evaluating major equipmentpurchases with regards to their estimated total ownership cost (Life Cycle Cost) toSaudi Aramco over a twenty (20) years period. These costs include procurement andoperation cost (energy cost and quantifiable periodic maintenance) of the equipment.This procedure details the requirements for determining Life Cycle Costs (LCC) forpurchases of major equipment identified in Section 2. The applicable LCC analysisSpreadsheets provide a practical vehicle for performing the required calculations.2 Applicable Equipment Types and Required LCC DataNext Planned Update: 20 October 2017 Equipment Life Cycle Cost Procedure 3 Applicable Documents3.1 Saudi Aramco Materials System Specifications14-SAMSS-531Power Transformers17-SAMSS-502Induction Motors17-SAMSS-510Brushless Synchronous Generator17-SAMSS-520Synchronous Motors31-SAMSS-001Centrifugal Compressors31-SAMSS-004Centrifugal Pumps31-SAMSS-006Integrally Geared Centrifugal Compressor32-SAMSS-021Manufacture of Industrial Boilers32-SAMSS-029Manufacture of Fired Heaters3.2 Saudi Aramco Engineering StandardsSAES-F-001Design Criteria of Fired HeatersSAES-G-005Centrifugal PumpsSAES-K-402Centrifugal CompressorsSAES-P-113Large Electrical MotorsSAES-P-121Power Transformers3.3 Saudi Aramco Standards Data Sheet2741-ENG & Centrifugal Pump Data Sheet for2741-M-ENG Horizontal Pumps and Vertical In-line Pumps2748-ENG & Centrifugal Pump Data Sheet for2748-M-ENG Vertical Line Shaft Pumps8150-ENG & Packaged Integrally Geared Centrifugal8150-M-ENG Air Compressor Data SheetForm 9550-ENG Watertube Boiler Data Sheets (herein referred to asData Sheet)175-323700Manufacture of Fired Heaters3.4 Life Cycle Cost SpreadsheetsThe following spreadsheets are to be used in the analysis and are available in theForms section of the Engineering Standards website:LCC-001Centrifugal Pumps (31-SAMSS-004) *Next Planned Update: 20 October 2017 Equipment Life Cycle Cost ProcedureLCC-002Centrifugal Pump-Motor Trains (31-SAMSS-004)LCC-005Centrifugal Compressors (31-SAMSS-001) *LCC-006Centrifugal Compressor-Motor Trains(31-SAMSS-001)LCC-010Integrally Geared Centrifugal Compressor-MotorTrains (31-SAMSS-006)LCC-019Induction Motors (17-SAMSS-502) *LCC-020Synchronous Motors (17-SAMSS-520) *LCC-023Power Transformers (14-SAMSS-531)LCC-024Boilers (32-SAMSS-029)LCC-024A Dual Fuel Boilers (32-SAMSS-021)LCC-025Fired Heaters (32-SAMSS-029)LCC-025A Dual Fuel Fired Heaters (32-SAMSS-029)* These spreadsheets are to be used when buying stand-alone pumps,compressors, or motors. For equipment trains (i.e., motor driven pump train,etc.), the train work sheets are to be used.4 Instructions4.1 SAPMT Submittal of Project Equipment ListsSaudi Aramco Project Management Team (SAPMT) shall prepare and includethe following items in the project proposal documents:4.1.1 A list of the Project's equipment items that are covered by the aboveSAMSS.4.1.2 A list of equipment items subject to LCC analysis. This list is to beincluded in schedule G of the contract. A copy is to be sent toEstimating Services Division (ESD/PMOD) so that they includeadditional allowances in the ER estimate to cover the differential inequipment cost due to LCC analysis.4.1.3 A list of equipment items with long lead-time delivery that may requireexpedited SAPMT bid development.4.1.4 A list of the latest applicable energy costs obtained from FPD.Next Planned Update: 20 October 2017 Equipment Life Cycle Cost Procedure4.2 Equipment Requiring SAPMT Bid DevelopmentFor equipment requiring SAPMT bid development prior to contract award (longlead equipment), the following steps shall be implemented:4.2.1 Upon receipt of the equipment bids, SAPMT's technical evaluation shallensure that the bids contain the required data needed to perform LCCanalysis.4.2.2 SAPMT shall submit the bids technical data to CSD for review and shallhighlight the technical LCC data (i.e., power, efficiency, operatingfactor) that will be used in the LCC analysis.4.2.3 CSD shall review the technical bid data along with the LCC data elementsand provide comments, if any, to SAPMT within 10 working days.4.2.4 SAPMT shall perform the LCC analysis by utilizing the applicable LCCSpreadsheet (s) to determine the Life Cycle Cost for each acceptablevendor. Other quantifiable cost factors that may significantly impact theeconomic analysis (such as delivery dates) may be included in the LCCanalysis. Inclusions of supplementary cost factors require the priorapproval of the project manager and CSD's concurrence.4.2.5 SAPMT shall calculate the savings (S LCC) in life cycle cost according tothe following equation:S LCC = LCC LIB– LCC LV (1)where:LCC LV is the equipment life cycle cost of the vendor with the lowestoverall LCCLCC LIB is the life cycle cost of the vendor with the lowest initial bid4.2.6 Purchase Order (P/O) shall be placed with the vendor having the lowestLCC (LCC LV) if S LCC is equal to $25000 or 5% of the LIB whichever ishigher.4.2.7 After P/O placement, SAPMT shall submit a copy of the final LCCSpreadsheet(s) to Estimating Services Division (ESD/PMOD) forarchiving and to CSD for information.4.2.8 If Project Management awards to a vendor, a purchase order with apotential performance liability based on the provisions of the applicableSAMSS (penalty clause), and the purchase order is to be transferred(“novated”) to the successful LSTK contractor on the project, ProjectNext Planned Update: 20 October 2017 Equipment Life Cycle Cost Procedure Management and/or Purchasing must include provisions in the NovationAgreement that specifically describe the liability being assumed by thecontractor.4.2.9 The equipment shall be tested at the vendor facility for guaranteedefficiency if required by the applicable Saudi Aramco Materials SystemSpecification (SAMSS) and/or the Project Contract. If the equipmentdoes not meet the specified efficiency, and cannot be corrected withinthe test tolerance as specified in the SAMSS, a penalty shall be imposedon the supplier as defined in the SAMSS and the Purchase order.4.3 Equipment Not Requiring SAPMT Bid DevelopmentFor Contractor procured equipment (all non-long-lead time equipment) thefollowing steps shall be implemented:4.3.1 After evaluating the vendor submittals, the Contractor shall provide thebid technical data, required commercial data per schedule G, and theequipment site delivery date for each vendor to SAPMT for review.4.3.2 SAPMT shall review the information to determine if it contains all of therequired data needed to complete the LCC analysis and shall require theContractor to provide any missing or unacceptable data.4.3.3 SAPMT shall provide a copy of the bid technical data including the LCCdata elements (operating factor, efficiency at normal load point, etc.), toCSD for review.4.3.4 CSD shall review the technical bid data along with the LCC dataelements and provide comments to SAPMT within 10 working days.4.3.5 SAPMT shall perform the LCC analysis by utilizing the applicable LCCSpreadsheet(s) to determine the Life Cycle Cost for each acceptablevendor. Other quantifiable cost factors that may significantly impact theeconomic analysis (such as savings due to early delivery) may beconsidered for inclusion in the LCC analysis. Inclusions ofsupplementary cost factors require the prior approval of the projectmanager and CSD's concurrence.4.3.6 SAPMT shall calculate the savings (S LCC) in life cycle cost according tothe following equation:S LCC = LCC LIB– LCC LV(2)Next Planned Update: 20 October 2017 Equipment Life Cycle Cost Procedure where:LCC LV is the equipment life cycle cost of the vendor with the lowestoverall LCCLCC LIB is the life cycle cost of the vendor with the lowest initial bid4.3.7 SAPMT shall direct the contractor to place the Purchase Order (P/O)with the vendor having the lowest LCC (LCC LV) if S LCC is equal to105% or higher of the compensation to the LSTK Contractor (refer toparagraph 4.3.8).4.3.8 If the COMPANY directs the CONTRACTOR to purchase theequipment from any manufacturer technically qualified by theCONTRACTOR other than the CONTRACTOR's proposed source ofsupply, the COMPANY shall compensate the CONTRACTOR for anydifference between the total delivered equipment cost ofCONTRACTOR's proposed source of supply and that of the COMPANYdirected manufacturer.4.3.9 After P/O placement, SAPMT shall provide a copy of the final LCCSpreadsheet(s) to the Estimating Services Division (ESD/PMOD) forarchiving and to CSD for information.4.3.10 The equipment shall be tested at the vendor facility for guaranteedefficiency if required by the applicable Saudi Aramco Materials SystemSpecification (SAMSS) and/or the Project Contract. If the equipmentdoes not meet the specified efficiency, and cannot be corrected withinthe test tolerance as specified in the SAMSS, a penalty shall be imposedon the contractor as defined in the SAMSS and the Project Contract.4.4 All Direct Charge Purchases Requiring LCC AnalysisFor Direct Charge (D/C) procurement of equipment, the following steps shall beimplemented:4.4.1 The Proponent Requisition Originator shall develop the PurchaseRequisition (PR) or the Request for Quotation (RFQ) for the subjectequipment and forward it to Purchasing for bid development. If therequested equipment requires LCC analysis as specified in the applicableSAMSS, the Requisition shall clearly indicate the required LCC datawhich the bidders need to provide.4.4.2 Upon receipt of the PR or the RFQ, the Purchasing Buyer shall reviewthe indicated line items and specifications to determine if any of theNext Planned Update: 20 October 2017 Equipment Life Cycle Cost Procedure items require LCC analysis.4.4.3 Upon receipt of bids, the Buyer shall request the Proponent RequisitionOriginator to perform the technical evaluation.4.4.4 The Buyer shall obtain the latest applicable energy costs from FPD foruse in the LCC analysis.4.4.5 The Buyer shall perform the LCC analysis by utilizing the applicableLCC Spreadsheet(s) to determine the Life Cycle Cost for all technicallyand commercially acceptable vendors.4.4.6 The buyer shall calculate the savings (S LCC) in life cycle cost according tothe following equation:S LCC = LCC LIB– LCC LV(3)where:LCC LV is the equipment life cycle cost of the vendor with the lowestoverall LCC costLCC LIB is the life cycle cost of the vendor with the lowest initial bid4.4.7 Purchase Order (P/O) placement shall be with the vendor having thelowest LCC (LCC LV) if S LCC is equal to $25000 or 5% of the LIBwhichever is higher.4.4.8 If the equipment cost for the selected equipment is higher than the PR'sauthorized limit, the Requisition Originator (Proponent) shall initiate aChange Requisition to authorize these additional funds.4.4.9 After P/O placement, Buyer shall submit a copy of the final LCCSpreadsheet to Estimating Services Division (ESD/PMOD) for archivingand a copy to CSD for information.The equipment shall be tested at the vendor facility for guaranteedefficiency if required by the applicable Saudi Aramco MaterialsSpecification (SAMSS) and/or the Project Contract. If the equipmentdoes not meet the guaranteed efficiency, and cannot be corrected withinthe test tolerances allowed, a penalty shall be imposed upon the supplierin accordance with the terms and conditions specified in the applicablePurchase Order.Revision Summary13 October 2012 Major revision.Next Planned Update: 20 October 2017 Equipment Life Cycle Cost ProcedureAppendix A – Calculation Methods for Life Cycle Cost AnalysisThis section is included in this SAEP for clarification purpose only. The logic is already included in the Life Cycle Cost Spreadsheets.A.1 Centrifugal Pumps and Centrifugal CompressorsUnless otherwise approved by the Coordinator, Rotating Equipment Division,Consulting Services Department, the Life Cycle Cost (LCC) of the centrifugalpumps and centrifugal compressors is determined from the following formula:LCC = IC + OC (4)where:IC = Initial Cost, $ (Purchase order cost of all equipment being bought)OC = Present value of Operating power Cost, $, for operating period of20 years= P * EF * No. of units being boughtP = Equipment Power in kW, at normal flow rate for actual fluid.EF = Evaluation Factor ($/kW) will be shown on the data sheet and/or inthe quotation request= 11.56 * EC * AHEC = Energy Cost in $/kWhAH = Annual operating Hours= OF * 8760OF = Operating Factor= Number of Operating Units divided by the number of units beingbought.Next Planned Update: 20 October 2017 Equipment Life Cycle Cost ProcedureA.2 Electrical Motor Driven Centrifugal Pump, Electrical Motor Driven CentrifugalCompressor and Electrical Motor Driven Integrally Geared Compressor TrainsUnless otherwise approved by the Coordinator, Rotating Equipment Division,Consulting Services Department, the Life Cycle Cost (LCC) of the electricalmotor driven trains is determined from the following formula:LCC = IC + OC (5)where:IC = Initial Cost, $ (Purchase order cost of all trains being bought)OC = Present value of Operating power Cost, $, for operating period of20 years= P/(Em*EG) * EF * No. of trains being boughtP = Driven equipment Power in kW, at normal flow rate for actualfluid.Em = Motor Efficiency at normal operating load (decimal)EG = Gear Efficiency at normal operating load (decimal). If there is nogear, EG = 1EF = Evaluation Factor ($/kW) will be shown on the data sheet and/or inthe quotation request= 11.56 * EC * AHEC = Energy Cost in $/kWhAH = Annual operating Hours= OF * 8760OF = Operating Factor= Number of operating trains divided by the number of trains beingbought.Next Planned Update: 20 October 2017 Equipment Life Cycle Cost ProcedureA.3 Electrical MotorsUnless otherwise approved by the Coordinator, Electrical Systems MechanicalDivision, Consulting Services Department, the Life Cycle Cost (LCC) of theelectrical motors is determined from the following formula:LCC = IC + OC (6)where:IC = Initial Cost, $ (Purchase order cost of all motors being bought)OC = Present value of Operating power Cost, $, for operating period of20 years= RP * EF * No. of motors being boughtRP = Required Power in kW= P/EmP = Motor load in kW, at normal operating conditions.Em = Motor vendor's Guaranteed Efficiency at normal operating load(decimal)EF = Evaluation Factor ($/kW) will be shown on the data sheet and/or inthe quotation request= 11.56 * EC * AHEC = Energy Cost in $/kWhAH = Annual operating Hours= OF * 8760OF = Operating Factor= Number of operating motors divided by the number of motorsbeing bought.Next Planned Update: 20 October 2017 Equipment Life Cycle Cost ProcedureA.4 Life Cycle Cost Evaluation for Boilers and Fired HeatersUnless otherwise approved by the Coordinator, Mechanical & Civil EngineeringDivision, Consulting Services Department, the Life Cycle Cost (LCC) of theboilers and fired heaters is determined from the following formula:Single Fuel Services:LCC = IC + OC (7)where:IC = Initial Cost, $ (Purchase order cost of all units being bought)OC = Present value of Operating power Cost, $, for operating period of20 years= CF * EF * No. of units being boughtCF = Consumed Fuel (Heat Release) in MMBTU/hr= L/EFFL = Unit load (Duty) at normal condition (MMBTU/hr) provided in thedata sheet by the buyer.EFF = Unit Efficiency (decimal) at normal condition provided by vendor.EF = Evaluation Factor ($-hr / MMBTU) will be shown on the data sheetand/or in the quotation request= 11.56 * EC * AHEC = Energy Cost in $/MMBTUAH = Annual operating Hours= OF * 8760OF = Operating Factor= Number of operating units divided by the number of units beingbought. OF = 1 for process heaters since there is no standbyprocess heaters.Next Planned Update: 20 October 2017 Equipment Life Cycle Cost Procedure Dual Fuel Services:LCC = IC + OCx + OCy (8)where:IC = Initial Cost, $ (Purchase order cost of all units being bought)OCx = Present value of Operating power Cost, $, for operating period of20 years= CFx * EFx * No. of units being boughtOCy = Present value of Operating power Cost, $, for operating period of20 years= CFy * EFy * No. of units being boughtCFx = Consumed Fuel (Heat Release) in MMBTU/hr= Lx/EFFCFy = Consumed Fuel (Heat Release) in MMBTU/hr= Ly/EFFEFx = Evaluation Factor for fuel type x ($-hr / MMBTU) will be shownon the data sheet and/or in the quotation request= 11.56 * ECx * Tx / AHEFy = Evaluation Factor for fuel type y ($-hr / MMBTU) will be shownon the data sheet and/or in the quotation request= 11.56 * ECy * Ty / AHL = Unit load (Duty) at normal condition (MMBTU/hr) provided in thedata sheet by the buyer.EFF = Unit Efficiency (decimal) at normal condition provided by vendor.EC = Energy Cost in $/MMBTUAH = Annual operating Hours= OF * 8760Next Planned Update: 20 October 2017 Equipment Life Cycle Cost Procedure OF = Operating Factor= Number of Operating units divided by the number of units beingbought. OF = 1 for process heaters since there is no standbyprocess heatersNote:x & y are the types if fuel that will be provided in the data sheets by buyer.A.5 Power TransformersUnless otherwise approved by the Coordinator, Electrical Systems Division,Consulting Services Department, the Life Cycle Cost (LCC) of the powertransformers is determined from the following formula:LCC = IC + [No. of transformers being bought * (A*Li+B*Lc)] (9) where:IC = Initial Cost, $ (Purchase order cost of all transformers beingbought)A*Li = Present value of no-load loss cost in $, for operating period of20 yearsB*Lc =Present value of load loss cost in $, for operating period of 20 yearsA = No Load Loss Constant, $/kW= 11.56* E1*T1E1 = Energy Cost, $/kWhT1 = Annual operating Hours, 8760 hrLi = Manufacturer guaranteed no-load loss, kWB = Load Loss Constant, $/kW= 0.49 * ALc = Manufacturer guaranteed load loss, kWCommentary Note:The constant 11.56 is a present value factor based the formulaPV=[(1+i)n-1]/[i(1+i)n], where i is the discount rate (5.9%) expressed as adecimal number and n is the life of the motor (20 years).。
NASM1312-21

NATIONAL AEROSPACE STANDARD©2004 AEROSPACE INDUSTRIES ASSOCIATION OF AMERICA, INC.ALL RIGHTS RESERVEDNASM1312-21STANDARD PRACTICEFASTENER TEST METHODSMETHOD 21SHEAR JOINT FATIGUECONSTANT AMPLITUDETHE INITIAL RELEASE OF THIS DOCUMENT SUPERSEDES MIL-STD-1312-21 DESIGNATION FOR THIS TEST METHOD REMAINS MIL-STD-1312-21cLIST OF CURRENT SHEETSNO. 1 2 3 4 5 6 7 8 9 REV. 1 NEW NEW NEW NEW NEW NEW NEW NEW NO. 10 11 12 13 14 15 16 17 18 REV. NEW NEW NEW NEW NEW NEW 1 NEW NEW NO.19 20 21 22REV.NEWNEWNEWNEWFSC 53GPSHEET 1 OF 22APPROVAL DATE: AUGUST 1997 REVISION: c OCTOBER 2004USE OF OR RELIANCE UPON THIS DOCUMENT OR ANY NATIONAL AEROSPACE STANDARD IS ENTIRELY VOLUNTARY. AIA DOES NOT QUALIFY SUPPLIERS OR CERTIFY CONFORMANCE OF ITEMS PRODUCED UNDER NATIONAL AEROSPACE STANDARDS. AIA MAKES NO REPRESENTATION OR CLAIM RESPECTING (1) THE SUITABILITY OF ITEMS FOR ANY PARTICULAR APPLICATION OR (2) THE ESISTENCE OF OR APPLICABILITYTHERETO OF PATENT OR TRADEMARKS RIGHTS.--` , , , , ` ` -` -` , , ` , , ` , ` , , ` -----`,,,,``-`-`,,`,,`,`,,`------` , , ` , ` , , ` , , ` -` -` ` , , , , ` ----`,,,,``-`-`,,`,,`,`,,`-----`,,,,``-`-`,,`,,`,`,,`------` , , ` , ` , , ` , , ` -` -` ` , , , , ` ----`,,,,``-`-`,,`,,`,`,,`-----`,,,,``-`-`,,`,,`,`,,`-----`,,,,``-`-`,,`,,`,`,,`-----`,,,,``-`-`,,`,,`,`,,`-----`,,,,``-`-`,,`,,`,`,,`-----`,,,,``-`-`,,`,,`,`,,`-----`,,,,``-`-`,,`,,`,`,,`---Copyright Aerospace Industries Association of America Inc.--`,,,,``-`-`,,`,,`,`,,`-----`,,,,``-`-`,,`,,`,`,,`-----`,,,,``-`-`,,`,,`,`,,`-----`,,,,``-`-`,,`,,`,`,,`---Copyright Aerospace Industries Association of America Inc.--`,,,,``-`-`,,`,,`,`,,`---Copyright Aerospace Industries Association of America Inc.--`,,,,``-`-`,,`,,`,`,,`---Copyright Aerospace Industries Association of America Inc.--`,,,,``-`-`,,`,,`,`,,`-----`,,,,``-`-`,,`,,`,`,,`---Copyright Aerospace Industries Association of America Inc.Provided by IHS under license with AIA/NASNot for Resale No reproduction or networking permitted without license from IHSCopyright Aerospace Industries Association of America Inc.Provided by IHS under license with AIA/NASNot for Resale No reproduction or networking permitted without license from IHS --` , , , , ` ` -` -` , , ` , , ` , ` , , ` ---。
NASM1312-13

I 1 I' 2 1 3 1 4 1 5 1 6 1 7 REV. I 1 .I 1 1 1 1 1 1 1 'I 1 1 1
NO.
LIST OF CURRENT SHEETS
SHEET 1 OF 7
TABLES
TABLE I Il DOUBLE SHEAR LOAD RATES ............................................................ DOUBLE SHEAR FIXTURE UIMENSIONS .................................................
All test equipment and test procedures shall meet and/or comply with applicable environmental and occupational safety hazard requirements and statutes. REFERENCEDDOCUMENTS
5 7
@COMPLETELY REVISED
SHEET 2
APPROVAL DATE AUGUST 1997 RewmN February 2003 USE OF OR RELIANCE ON T I DOCUMENT OR ANY NATIONAL AEROSPACE STANDARD IS EFmRELY VOLUNTARY. AA DOES NOT QUALIFY SUPPLIERS OR CER’nFY HS J CONFORMANCE OF m M S PROCURED UNDER NATIONAL AEROSPACE STANDARDS, AIA MAKES NO REPRESENTATION OR CLAIM RESPECTING (1) THE SUlTABILtlY
AIA-NAS NAS77-2013

COLOR CODE: /11/
ALUMINUM BRONZE, CADMIUM PLATED, TYPE II CLEAR, ALL SURFACES /7/
ALUMINUM BRONZE, CADMIUM PLATED, TYPE II CLEAR, OUTSIDE SURFACES ONLY, UNPLATED ID
MATERIAL:
ALUMINUM BRONZE − ALLOY 642 (UNS C64200) PER ASTM B 150/B 150M, CONDITION HR50 (TENSILE TEST, CERTIFICATION AND MILL TEST REPORTS REQUIRED) OR ALLOY 630 (UNS C63000) PER AMS4640.
NAS77
SHEET 1 OF 4
USE OF OR RELIANCE UPON THIS DOCUMENT OR ANY NATIONAL AEROSPACE STANDARD IS ENTIRELY VOLUNTARY. AIA DOES NOT QUALIFY SUPPLIERS OR CERTIFY CONFORMANCE OF ITEMS PRODUCED UNDER NATIONAL AEROSPACE STANDARDS. AIA MAKES NO REPRESENTATION OR CLAIM RESPECTING (1) THE SUITABILITY OF ITEMS FOR ANY PARTICULAR APPLICATION OR (2) THE EXISTENCE OF OR APPLICABILITY THERETO OF PATENT OR TRADEMARKS RIGHTS.
巴西强制认证清单2013年更新

巴强制性认证产11项201年最新更新指定规- R或法规(或要求标准文丁腈橡胶或-发行日财政机项监管机法规文的合格评术质量监-- RTQRAC附件条RA21/08/2007 3221/08/2007插头电缆NBR 1493623/08/20071INMETRORBMLQINMETRO 32INMETRO2IBAMA -标准指令附件条RA净氮氧化物ISO号11/07021/03/2011 1321/03/201122241-ISO 22241-2 INMETRORBMLQ23/03/2011车还原-INMETRINMETROISOISO 22241-尔321322241-4无菌注射RA附件条- RDC一次性使用董事会决29/12/2011ISO 1348ANVIS0号NBR 5452ANVISAANVISA07/02/20113菌针INMETRO 5004/02/11一次性使用附件条RA用于改善消12/03/2007 09NBR 14902004 NBR12/03/2007RBMLQINMETRO14/03/20074者饮用水的15176:2004INMETRO 09INMETRO量的装ABNT NB附件条RA燃气热水INMETR条例INMETR号8135891310RBMLQ 5INMETRO17/04/2012(即时加热105413/04/1218号1054213/04/12令型和保温型ABNT NBR NM ISO 7-1182附件条RA成人用自行06/10/2009 2806/10/2009RBMLQ08/10/2009INMETRO6丁腈橡车14732/2001INMETRO 28INMETRO附件条RA新奇产07/12/2010 4807/12/2010NBR 15236INMETRO09/12/2010RBMLQ7INMETRO 48INMETRO附件条RA派对用25/10/2012 54RT附29/10/201025/10/2012RBMLQINMETRO829/10/2012INMETR41INMETRO 54INMETRO22/11/2012 62RA附件条RT附INMETRO 0体育赛事用RBMLQ9INMETRO26/11/1259日122/11/2012INMETRO观众席INMETRO62RA附件条酒吧和用于INMETRNBR 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30汽车零部INMETRO2825/07/11RBMLQ14/06/201INMETRO03/05/2013附件条RAINMETR2INMETR24号法29号法RA附件条28/05/2013INMETR26号法RA附件条17/12/2012 6517/12/2012成人用自行RBMLQ2919/12/12INMETRO若干INMETROINMETRO零65附件条RA天然气汽车04/01/2011 0004/01/2011302011/5/1RBMLQINMETRO统和压缩天若干INMETROINMETRO气的压缩组00附件条RA21/05/199830/12/2002系统组件的417INMETRO RT附号CONTRA231INMETRORBMLQ22/05/199822/11/2007INMETRO缩天然25附件条RACONAM决日附件条INMETRRT016/02/2005排气系统和29/11/200027CONAMARBMLQ3219/01/20051INMETRO19/12/02料供给的组04/12/2002 31031583ABNT NB个人防护装MT146215831583(劳防坠PP33附件条条MTRAMT146214621462护组-部17/10/01RBMLQ2012/07/2415/10/01 25号,该条例NR 1583安全装置防坠MTE 25 15/10/01落绳和安INMETRO38导体与绝缘RA附件条氯乙NBR NM 247-1:2002INMETR17号INMETRPVNM 247-2:200丁腈橡RBMLQ INMETRO21/10/0434号450/750 1719/10/04NBR NM 247-3:200219/10/04额定电压,于固定安附件条RA丁腈橡694INMETR09/05/2007 16丁腈橡用于连接锻RBMLQ35INMETRO14/5/2007号166925/0095INMETRO的流09/05/07附件条RA成人用自行06/10/2009 2906/10/20092001NBR 1471RBMLQINMETRO362009/8/10车把和车把INMETROINMETRO29附件条RA06/10/200906/10/2009 28成人用自行2002NBR 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MT480依恋条例479 INMETRO电子记录94RBMLQ____MT部15/12/2011INMETRO例1.5115/12/2011用于液化石附件条RA气LP(INMETRINMETRRT附件条INMETR1195ANPRBMLQ超千08/01/201308/01/2013时的流量)08/01/2013压调节附件条RA丁腈橡胶,丁腈橡67519/11/201019/11/2010 44丁腈橡汽车轮丁67596INMETRO RBMLQ67523/11/2010INMETROINMETRO橡NBR 1390966044RA附件条家用和类似INMETROINMETROIECNABNT NBR N备的安RBMLQ9731/12/09INMETRO29/12/2009 37系标准60335--29/12/200937南方共同NM 301/2003INMETR儿童用自行INMETRO23/2/200598RBMLQ__________INMETR场技术法规附21/02/2005安21/02/20053条INMETRO程序评审玩NM 300/200南方共同市13/06/013/06/2005 10-29/10/200919/08/0INMETRO133 15/08/2003技术法规的附玩具安RBMLQ99INMETRO13/06/2005 INMETR01/10/027/09/2007 36321003/11/0929/10/200932RA附件条- RDC董事会决29/12/2011一次性使用NBR 5452ISO 1348ANVIS04/02/11100ANVISA2011/7/2ANVISAINMETRO菌注射050附件条RA29/11/1988 72519/07/2007适应服务固__________31/12/1988INMETRORBMLQ101CONTRA号决INMETRO容28RA附件条1331CONAM决丁腈橡胶,丁腈橡燃油零售服日004/12/2003137829/11/2000 271378丁腈橡胶RBMLQCONAMA102站的地下储INMETR19/12/0204/12/2002 31丁腈橡1321218附件条RAANTT 42号决议危险货物内31/05/019/12/0812/02/0ANTT 420/0号决ANTTRBMLQ103运输中使用INMETRO31/08/0425/08/04 701携式罐45附件条RACONAM决ABNT NBR 1546空气储罐的日005/05/200929/11/2000 272007ABNT NBRRBMLQ 104CONAMA油产品和其INMETRO19/12/0204/12/2002 3113782:2001燃11附件条RANBR 5580/200719/01/200919/01/2009 01普通用途流NBR5590/2008INMETRO22/1/2009105RBMLQINMETROINMETRO碳钢NBR 5426:198501RA附件条决CONAM0日04/12/2003地下非金属29/11/2000 27NBR 14722RBMLQ106CONAMAINMETR19/12/02线的汽车燃04/12/2002 3118附件条RACONTRANCONT丁腈橡胶和丁腈橡85729/11/1988 72529/08/2005集装箱搬运-31/12/1988AN107CONTRA号决9500INMETROINMETRORBMLQ15附件条RA表迷,墙壁INMETR2NBR NM 60335-INMETRINMETRO10820/01/2012RBMLQ立柱空气循18/01/2012IEC 60335-22器或用于此的销售的设18/01/2012NBR 9491:198RA附件条9493:198丁腈橡胶,丁公路车辆夹12/07/1994 78405/06/2009橡9501:198RBMLQ CONTRAN10921/07/1994安全玻璃,9502:198CONTRA号决丁腈橡胶,丁INMETRO风玻15橡NBR 9503:1989504:1986RA附件条NBR 9491:19812/07/1994 78405/06/2009公路车辆钢丁晴NB9492:198RBMLQ11021/07/1994CONTRANINMETRCONTRA号决安全玻9494:198615注RAC 合格评定的要RTQ 质量技术法RBMLQ 巴西网络的法制计量和质量。
2021报关员考试商品归类代码说明

2021报关员考试商品归类代码说明商品名称编码附加编码附加序号说明虫胶 13011000 - 001 -虫胶板 13011000 - 002 -虫胶片 13011000 - 003 -废虫胶 13011000 - 004 -梗胶 13011000 - 005 -片胶 13011000 - 006 -石榴色虫胶 13011000 - 007 -原胶 13011000 - 008 -阿拉伯胶 13012000 - 001 -巴士拉胶 13012000 - 002 -黄蓍胶 13012000 - 003 -尼罗河胶 13012000 - 004 -塞内加尔胶 13012000 - 005 -亚丁胶 13012000 - 006 -腰果树胶 13012000 - 007 -印度胶 13012000 - 008 -胶黄耆树胶 13019010 - 001 -没药 13019020 - 001 -乳香 13019020 - 002 -血竭 13019020 - 003 -阿魏 13019030 - 001 -阿魏胶 13019030 - 002 -松脂 13019040 - 001 -大戟脂 13019090 10 001 -龙血树脂 13019090 10 002 -愈创树脂 13019090 10 003 -氨草胶 13019090 90 001 -安息香胶 13019090 90 002 -巴西胶 13019090 90 003 -贝壳松脂 13019090 90 004 -波斯树脂 13019090 90 005 -草树树脂 13019090 90 006 -达马脂 13019090 90 007 -大麻树脂 13019090 90 008 -刚果胶 13019090 90 009 -黑牵牛子树脂 13019090 90 010 -黄脂石 13019090 90 011 -加拿大香脂 13019090 90 012 -柯巴树脂 13019090 90 013 -柯巴香脂 13019090 90 014 -苦树脂 13019090 90 015 -麦加香脂 13019090 90 016 -秘鲁香脂 13019090 90 017 -山达脂 13019090 90 018 -苏合香脂 13019090 90 019 -塔普香脂 13019090 90 020 -藤黄树脂 13019090 90 021 -妥鲁香脂 13019090 90 022 -香树脂 13019090 90 023 -榄香脂 13019090 90 024 -鸦片浸膏 13021100 - 001 -鸦片液汁 13021100 - 002 -甘草浸膏 13021200 - 001 -甘草液汁 13021200 - 002 -啤酒花浸膏 13021300 - 001 -啤酒花液汁 13021300 - 002 -巴巴斯可根浸膏 13021400 - 001 -除虫菊浸膏 13021400 - 002 -除虫菊液汁 13021400 - 003 -枯杷木浸膏 13021400 - 004 -泡林藤浸膏 13021400 - 005 -鱼藤浸膏 13021400 - 006 -日本漆 13021910 - 001 生的生漆 13021910 - 002 天然漆天然漆 13021910 - 003 -中国漆 13021910 - 004 生的麻黄浸膏粉 13021990 11 001 供制农药用麻黄浸膏 13021990 12 001 供制农药用麻黄浸膏粉 13021990 91 001 供制医药用麻黄浸膏 13021990 92 001 供制医药用麻黄浸膏粉 13021990 93 001 非制农药、医药用麻黄浸膏 13021990 94 001 非制农药、医药用颠茄浸膏 13021990 99 001 -龙胆浸膏 13021990 99 002 -芦荟复合浸膏 13021990 99 003 -天仙子浸膏 13021990 99 004 -天仙子液汁 13021990 99 005 -雄蕨浸膏 13021990 99 006 -雄蕨液汁 13021990 99 007 -药西瓜浸膏 13021990 99 008 -制药用的芦荟液汁 13021990 99 009 -制药用的人参浸膏 13021990 99 010 -制药用的人参液汁 13021990 99 011 -果胶 13022000 - 001 -果胶酸盐 13022000 - 002 -果胶酸脂 13022000 - 003 -琼脂 13023100 - 001 -瓜耳胶天然碱 13023200 - 001 -瓜尔豆胶 13023200 - 002 -农用植物胶 13023200 - 003 -食用植物胶 13023200 - 004 -古俄胶 13023900 - 001 -。
三星2013年QSA审核清单

註. 各项目评价以《 Yes, No 》 2阶段进行评价, Yes → Y, No → N, 没有相关事项时 → 输入N/A. 但是, 必须项目不可处理为 N/A。
(Revision No: 4.1, Date: 2008.03.31)註. 各项目评价以《 Yes, No 》 2阶段进行评价, Yes → Y, No → N, 没有相关事项时 → 输入N/A. 但是, 必须项目不可处理为 N/A。
(Revision No: 4.1, Date: 2008.03.31)註. 各项目评价以《 Yes, No 》 2阶段进行评价, Yes → Y, No → N, 没有相关事项时 → 输入N/A. 但是, 必须项目不可处理为 N/A。
(Revision No: 4.1, Date: 2008.03.31)Quality System Audit Check Sheet註. 各项目评价以《 Yes, No 》 2阶段进行评价, Yes → Y, No → N, 没有相关事项时 → 输入N/A. 但是, 必须项目不可处理为 N/A。
(Revision No: 4.1, Date: 2008.03.31)Quality System Audit Check Sheet註. 各项目评价以《 Yes, No 》 2阶段进行评价, Yes → Y, No → N, 没有相关事项时 → 输入N/A. 但是, 必须项目不可处理为 N/A。
(Revision No: 4.1, Date: 2008.03.31)Quality System Audit Check Sheet註. 各项目评价以《 Yes, No 》 2阶段进行评价, Yes → Y, No → N, 没有相关事项时 → 输入N/A. 但是, 必须项目不可处理为 N/A。
(Revision No: 4.1, Date: 2008.03.31)。
国家认证认可监督管理委员会关于发布2013年第一批11项认证认可行业标准的通知

国家认证认可监督管理委员会关于发布2013年第一批11项认证认可行业标准的通知
文章属性
•【制定机关】国家认证认可监督管理委员会
•【公布日期】2013.12.02
•【文号】国认科[2013]58号
•【施行日期】2014.06.15
•【效力等级】部门规范性文件
•【时效性】现行有效
•【主题分类】认证认可,标准化
正文
国家认证认可监督管理委员会关于发布2013年第一批11项
认证认可行业标准的通知
(国认科〔2013〕58号)
各认证认可相关机构:
经审查,现将《能源管理体系电子信息企业认证要求》等11项认证认可行业标准予以发布。
标准编号、标准名称以及实施日期见附件。
附件:2013年第一批认证认可行业标准目录
国家认监委
2013年12月2日附件。
NACE FCI AWS ASNT ISO 目录

9
ISO 7005-1-1992
金属法兰第1篇:钢制法兰
有效
10
ISO 7005-2-1988
金属法兰第2篇:铸铁法兰
有效
11
ISO 7121-2006(E)
通用工业用钢制球阀
有效
12
ISO 7259-1988
主要靠扳手操作的地下用铸铁闸阀
有效
13
ISO 7268-1983(1984修正)
管道部件—公称压力的定义
有效
14
ISO 10434-2004
石油、化工和相关工业用栓接阀盖的钢制闸阀
有效
15
ISO 10474-1991(R1992)
钢及钢制产7-2004
阀门的耐火试验要求
作废2010
17
ISO 10631-1994
普通用途的金属蝶阀
有效
18
ISO 15761-2002
石油和天然气工业用公称尺寸小于和等于DN 100的钢制闸阀、截止阀和止回阀
有效
ASNT美国无损检验学会
序号
标准
名称
备注
1
ASNT SNT-TC-1A-2006
SNT-TC-1A推荐的实施规程
无损检测人员的资格评定和证书
有效
AWS美国焊接学会标准
序号
标准
名称
备注
1
AWS QC1-2007
美国焊接学会对于焊接检验员的认证标准
有效
FCI美国流体控制学会标准
序号
标准
名称
备注
1
FCI 70-2-1998
工业阀门—多回转阀门驱动装置的连接
有效
4
ISO 5211-2001
台达嵌入式工业计算机操作手册-J1900 系列说明书

中达电通公司版权所有如有改动,恕不另行通知文件编码 :DIAVH-092AG10-01文件日期 : 2019/02/20238201209 0215863-56780215863-0003 扫一扫,关注官方微信上海电话:(021)6301-2827武汉电话:(027)8544-8475济南电话:(0531)8690-7277乌鲁木齐电话:(0991)4678-141沈阳电话:(024)2334-16123南昌电话:(0791)8625-5010长沙电话:(0731)8549-9156郑州电话:(0371)6384-2772西安电话:(029)8836-0780长春电话:(0431)8892-5060合肥电话:(0551)6281-6777南宁电话:(0771)5879-599北京电话:(010)8225-3225成都电话:(028)8434-2075南京电话:(025)8334-6585厦门电话:(0592)5313-601天津电话:(022)2301-5082重庆电话:(023)8806-0306 杭州电话:(0571)8882-0610广州电话:(020)3879-2175太原电话:(0351)4039-475哈尔滨电话:(0451)5366-0643绵密网络 专业服务中达电通已建立了71个分支机构及服务网点,并塑建训练有素的专业团队,提供客户最满意的服务,公司技术人员能在2小时内回应您的问题,并在48小时内提供所需服务。
400 - 820 - 9595台达嵌入式工业计算机操作手册-J1900系列版权说明©Delta Electronics, Inc. All rights reserved.台达电子工业股份有限公司保留所有权利本使用手册编撰的所有信息内容属台达电子工业股份有限公司(以下简称「台达」)之专属财产,且受到著作权法及所有法律保护。
台达依著作权法及其它法律享有并保留一切著作权及其他法律专属权利,非经台达事先同意,不得就本手册部分或全部任意地仿制、拷贝、誊抄、转译或为其它利用。
进口保加利亚铜精矿品质纠纷案介评

作者: 李时民
作者机构: 北京工商大学经济学院
出版物刊名: 对外经贸实务
页码: 77-79页
年卷期: 2013年 第1期
主题词: 保加利亚;进口合同;铜精矿;品质;纠纷案;中华人民共和国;检验报告;公司
摘要:山东s公司(买方)与保加利亚B公司(卖方)于2011年3月29日签订铜精矿进口合同,其有关本合同的解释、有效性和履行,均应遵循中华人民共和国法律。
保加利亚B公司在发货后向银行交单,支取了95%的信用证金额,其提交的保加利亚SGS检验报告显示:实际装船数量为275.88公吨。
主要品质规格:(1)Cu21.57%:(2)Au3.7Grams;
(3)Ag421Grams:(4)H200.4%。
哈萨克斯坦螺栓标准

哈萨克斯坦螺栓标准
哈萨克斯坦螺栓标准是由哈萨克斯坦国家标准局制定的一系列规范和要求,用于确保螺栓的质量和可靠性。
以下是一些常见的哈萨克斯坦螺栓标准:
1. GOST 3809-2015:这是哈萨克斯坦国家标准,涵盖了螺栓、螺母和垫圈的尺寸、公差、材料和机械性能等方面的要求。
2. GOST 3810-2015:这是哈萨克斯坦国家标准,规定了螺栓和螺母的表面处理和防腐蚀要求。
3. GOST 3811-2015:这是哈萨克斯坦国家标准,规定了螺栓和螺母的标记和包装要求。
这些标准旨在确保螺栓在使用过程中的安全性和可靠性,并促进哈萨克斯坦国内螺栓市场的发展。
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站号
DuYunMX17 DuYunMX17 DuYunMX17 DuYunMX17 DuYunMX17 DuYunMX17 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX16 DuYunMX16 DuYunMX16 DuYunMX16 DuYunMX16 DuYunMX16 DuYunMX16 DuYunMX16 DuYunMX16 DuYunMX23 DuYunMX23 DuYunMX35 DuYunMX35 DuYunMX35 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX18 DuYunMX35 DuYunMX35 DuYunMX35 DuYunMX16 DuYunMX16 DuYunMX35 DuYunMX35 DuYunMX35 DuYunMX35 DuYunMX35 DuYunMX35 DuYunMX16 DuYunMX16 DuYunMX16 DuYunMX35 DuYunMX35 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX16
小区中文名
4DY_104DiZhiDui_1 4DY_104DiZhiDui_2 4DY_104DiZhiDui_3 4DY_109_1 4DY_116_1 4DY_116_2 4DY_306_1 4DY_306_2 4DY_306_3 4DY_BaGan_1 4DY_BaGan_2 4DY_BaGu_1 4DY_BaGu_2 4DY_BaGu_3 4DY_BaGu2_1 4DY_BaGu2_2 4DY_BaGu2_3 4DY_BaiCha_1 4DY_BaiCha_2 4DY_BaiCha_3 4DY_BaiDong__1 4DY_BaiJiaChang_2 4DY_BaiJiaChang_3 4DY_BaiLingShan_0 4DY_BaiMang_1 4DY_BaiMang_2 4DY_BaiMang_3 4DY_BaiQi_1 4DY_BaiQi_2 4DY_BaiSang_1 4DY_BaiSang_2 4DY_BaiSang_3 4DY_BaiXi_1 4DY_BaiXi_2 4DY_BaiXi_3 4DY_BaiXuan_1 4DY_BaiXuan_2 4DY_BaiXuan_3 4DY_BaiYe_1 4DY_BaiYe_2 4DY_BaiZiQiao_0 4DY_BaJiaoTing_1 4DY_BaJiaoTing_2 4DY_BaJiaoTing_3 4DY_BaJiaoTing_4 4DY_BaJiaoTingD_1 4DY_BaJiaoTingD_2 4DY_BaLang_1
设备厂商 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特
LAC
ห้องสมุดไป่ตู้
49831 49832 49833 29831 24931 24932 49271 49272 49273 10011 10012 10021 10022 10023 48471 48472 48473 10931 10932 10933 48581 48582 49421 49422 49423 49741 49742 49743 10130 10031 10032 10033 48171 48172 10751 10752 10753 48661 48662 48663 49011 49012 49013 28571 28572 10610 49871 49872 49873 49874 59871 59872 49501
49502 49503 38081 38082 10561 10562 10563 42321 42322 42331 42332 42333 42341 42342 42343 10791 10792 10793 51151 51152 51153 41581 41582 41583 41121 41122 41591 41592 41593 41601 41602 41603 41131 41132 49531 49532 49533 28531 28532 48181 48182 48183 51251 51252 51253 41631 41632 41633 40911 40912 48030 51141 51142 51143
49831 49832 49833 29831 24931 24932 49271 49272 49273 10011 10012 10021 10022 10023 48471 48472 48473 10931 10932 10933 48581 48582 49421 49422 49423 49741 49742 49743 10130 10031 10032 10033 48171 48172 10751 10752 10753 48661 48662 48663 49011 49012 49013 28571 28572 10610 49871 49872 49873 49874 59871 59872 49501
覆盖类型 CI 城区 城区 城区 城区 村通 村通 村通 村通 村通 高速 高速 乡镇 乡镇 乡镇 乡镇 乡镇 乡镇 村通 村通 村通 村通 村通 村通 村通 村通 村通 村通 村通 城区 乡镇 乡镇 乡镇 村通 村通 村通 村通 村通 村通 村通 村通 村通 村通 村通 村通 村通 城区 城区 城区 城区 城区 城区 城区 村通
4DY_BaLang_2 4DY_BaLang_3 4DY_BangBo_1 4DY_BangBo_2 4DY_BaShang_1 4DY_BaShang_2 4DY_BaShang_3 4DY_BaShangH1_1 4DY_BaShangH1_2 4DY_BaShangH2_1 4DY_BaShangH2_2 4DY_BaShangH2_3 4DY_BaShangH3_1 4DY_BaShangH3_2 4DY_BaShangH3_3 4DY_BaYiJunFenQu_1 4DY_BaYiJunFenQu_2 4DY_BaYiJunFenQu_3 4DY_BaYiJunFenQuD_1 4DY_BaYiJunFenQuD_2 4DY_BaYiJunFenQuD_3 4DY_BaYiJunFenQuHS1_1 4DY_BaYiJunFenQuHS1_2 4DY_BaYiJunFenQuHS1_3 4DY_BaYiJunFenQuHS2_1 4DY_BaYiJunFenQuHS2_2 4DY_BaYiJunFenQuHS3_1 4DY_BaYiJunFenQuHS3_2 4DY_BaYiJunFenQuHS3_3 4DY_BaYiJunFenQuHS4_1 4DY_BaYiJunFenQuHS4_2 4DY_BaYiJunFenQuHS4_3 4DY_BaYiJunFenQuHS5_1 4DY_BaYiJunFenQuHS5_2 4DY_BianJiang_1 4DY_BianJiang_2 4DY_BianJiang_3 4DY_BianLa_1 4DY_BianLa_2 4DY_BoJueHuaYuan_1 4DY_BoJueHuaYuan_2 4DY_BoJueHuaYuan_3 4DY_BoJueHuaYuanD_1 4DY_BoJueHuaYuanD_2 4DY_BoJueHuaYuanD_3 4DY_BoJueHuaYuanHS1_1 4DY_BoJueHuaYuanHS1_2 4DY_BoJueHuaYuanHS1_3 4DY_BoJueHuaYuanHS2_1 4DY_BoJueHuaYuanHS2_2 4DY_CaiGenXiang_1 4DY_CaiZhengJuD_1 4DY_CaiZhengJuD_2 4DY_CaiZhengJuD_3
卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特 卡特
DuYunMX16 DuYunMX16 DuYunMX35 DuYunMX35 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX18 DuYunMX23 DuYunMX23 DuYunMX23 DuYunMX35 DuYunMX35 DuYunMX26 DuYunMX26 DuYunMX26 DuYunMX26 DuYunMX26 DuYunMX26 DuYunMX26 DuYunMX26 DuYunMX26 DuYunMX26 DuYunMX26 DuYunMX18 DuYunMX26 DuYunMX26 DuYunMX26
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