Wuttig-PZTCFO-Fe3O4-paper-7i5
危险化学品特性表
危险化学品特性表(自制)危险化学品特性表(自制) (1)(1)丙烯酸 (3)(2)甲酸 (4)(3)氢氟酸 (6)(1)N,N-二甲基甲酰胺 (7)(2)丙烯酸丁酯 (8)(1)萘 (10)(2)乌洛托品 (11)(1)氯酸钠 (13)(1)四氯乙烯 (15)(2)二氯甲烷 (17)3.1.1.1丙酮 (18)3.1.1.2-丁酮 (20)3.1.1.3甲醇 (21)3.1.1.4乙醇 (23)3.1.1.5 环己酮 (24)3.1.1.6异丙醇 (25)3.1.1.7 甲苯 (27)3.1.1.8 1,2-二甲苯 (29)3.1.1.9 乙醚 (30)3.1.1.10 乙酸乙酯 (32)3.1.1.11过氧化氢 (33)3.1.1.12高锰酸钾 (35)3.1.1.13重铬酸钾 (36)3.1.1.14硝酸银 (38)3.1.1.15苯酚 (39)3.1.1.16三氯甲烷 (41)3.1.1.17四氯化碳 (42)3.1.1.18氢氧化铵水溶液 (44)3.1.1.19氢氧化钠 (45)3.1.1.20氢氧化钾 (46)3.1.1.21甲醛 (47)3.1.1.22盐酸 (49)3.1.1.23硝酸 (51)3.1.1.24硫酸 (52)3.1.1.25 乙酸 (54)3.1.1.26三氯乙酸 (56)3.1.1.27氢氟酸 (57)3.1.1.28次氯酸钠 (59)3.1.1.29亚硫酸氢钠 (60)(4)纯苯 (62)(5)1,1-二氯乙烷 (63)(7)正丁醇 (65)(10)二(正)丁醚 (66)(11)丙烯酸正丁酯 (68)(4)冰醋酸 (69)三氯乙醛 (70)硝酸钠 (72)连二亚硫酸钠 (73)石油醚 (74)对二甲苯 (76)氧 (77)⑺乙酸酐 (80)⑻2-丁酮 (81)(1)丙烯酸表3.1-1 丙烯酸简介(2)甲酸表3.1-2甲酸简介(3)氢氟酸表3.1-3氢氟酸简介(1)N,N-二甲基甲酰胺表3.1-4 N,N-二甲基甲酰胺简介(2)丙烯酸丁酯表3.1-5丙烯酸丁酯简介(1)萘表3.1-6萘简介(2)乌洛托品表3.1-7乌洛托品简介(1)氯酸钠表3.1-8氯酸钠简介(2)亚硝酸钠表3.1-9亚硝酸钠简介(1)四氯乙烯表3.1-10四氯乙烯简介(2)二氯甲烷表3.1-11二氯甲烷简介3.1.1.1丙酮3.1.1.2-丁酮3.1.1.3甲醇3.1.1.4乙醇3.1.1.5 环己酮3.1.1.6异丙醇3.1.1.7 甲苯3.1.1.8 1,2-二甲苯3.1.1.9 乙醚3.1.1.10 乙酸乙酯3.1.1.11过氧化氢3.1.1.12高锰酸钾3.1.1.13重铬酸钾3.1.1.14硝酸银3.1.1.15苯酚3.1.1.16三氯甲烷3.1.1.17四氯化碳3.1.1.18氢氧化铵水溶液3.1.1.19氢氧化钠3.1.1.20氢氧化钾3.1.1.21甲醛3.1.1.22盐酸。
碳中和目标背景下包装行业发展的对策
第44卷第11期包装工程2023年6月PACKAGING ENGINEERING·175·碳中和目标背景下包装行业发展的对策李梓昱1,杨倩倩1,蒋海云1,2,张巍然2,吴威1,吴国华1,曾海兰1(1.湖南工业大学包装与材料工程学院,湖南株洲412007;2.湖南工业大学先进包装材料研发技术国家地方联合工程研究中心,湖南株洲412007)摘要:目的为了应对日益恶化的全球气候变化,并实现碳中和的目标,研究低碳化技术在包装行业的应用成为当下至关重要的任务。
为了推动包装行业在碳中和背景下的低碳化转型,有必要对现有的低碳化技术进行分类和梳理。
方法从碳减排和碳移除两方面对包装行业已有的低碳化技术进行了研究。
综述当前可降解生物塑料和聚合物单体化学循环技术在包装中的应用,介绍了几种清洁能源以及碳捕捉、碳利用和碳储存技术的发展现状。
结论对包装行业而言,实现碳中和的目标还面临着很多挑战。
包装行业在推进碳中和目标时要选取与发展适合的低碳能源和碳中和技术。
关键词:碳中和;生物基聚合物;聚合物单体循环;清洁能源;低碳化技术中图分类号:TB48 文献标识码:A 文章编号:1001-3563(2023)11-0175-13DOI:10.19554/ki.1001-3563.2023.11.020Countermeasures for Packaging Industry Development in the Context ofCarbon Neutrality TargetLI Zi-yu1, YANG Qian-qian1, JIANG Hai-yun1,2, ZHANG Wei-ran2, WU Wei1,WU Guo-hua1, ZENG Hai-lan1(1. School of Packaging and Materials Engineering, Hunan University of Technology, Hunan Zhuzhou 412007, China;2. National & Local Joint Engineering Research Center for Advanced Packaging Material and Technology,Hunan University of Technology, Hunan Zhuzhou 412007, China)ABSTRACT: To address the increasingly worsening global climate change and achieve carbon neutrality and achieve carbon neutrality, it is an essential task to study the application of low-carbon technologies in the packaging industry. The work aims to categorize and streamline the existing low-carbon technologies to facilitate the low-carbon transformation of the packaging industry in the context of carbon neutrality. The low-carbon technologies in the packaging industry were summarized from both carbon reduction and carbon removal. The application of degradable bioplastics and polymer mo-nomer chemical recycling technologies in packaging were reviewed. The current development of several clean energy and carbon capture, carbon utilization and carbon storage technologies were introduced. For the packaging industry, there are still many challenges to achieve carbon neutrality. The packaging industry should select and develop the right low-carbon energy sources and carbon-neutral technologies in realizing carbon neutrality.KEY WORDS: carbon neutrality; bio-based polymers; polymer monomer recycling; clean energy; low-carbon technologies收稿日期:2022−08−16基金项目:湖南省科技创新团队支持项目(2021RC4065);湖南省教育厅项目(21C0443)作者简介:李梓昱(1999—),男,硕士生,主攻功能包装新材料。
格瑞普莱特 工具和射钉对照表说明书
Grip-Rite ®, the leader in fasteners, is committed to making your collated fastener purchase simple and easy. Use this c ross-reference guide to quickly identify which tools are compatible with each type of Grip-Rite collated fastener, and vice versa (which Grip-Rite collated fasteners will fit your tools).*Model numbers change often as new or updated tools are introduced. Please use the icon system when possible or call 800 676-7777 for assistance.APPLICATION F FEATURE THE ICON MATCHING SYSTEMAND MODELS ARE L ISTED WITH EACH TYPE OF GRIP-RITE COLLATE D FASTENERSPACKAGING CLEARLY SHOWCASE THE FASTENER ICONFASTENER CATEGORIES AND TYPES OF COLLATION FRAMING21° Plastic StripRound Head NailsGrip-Rite: GRTFR83ROOFINGSIDING/FENCING15° COILR OOFING NAILS0° COILS HEET NAILS15° PLASTIC S HEET NAILS15° WIRE W ELD NAILSLASER WELDED PLASTIC CAPS AND STAPLESGrip-Rite: GRTCR175, GRTRN45Bostitch: RN45, RN45B, RN46, RN46-1, BRN175ADeWalt: DW45RN, DCN45RN Duo-Fast: DRN-45, RN-175H itachi/Metabo HPT:NV45AB2, NV45A M akita:AN451, AN453, AN454Milwaukee: 7120-21, 7220-20, 7220-80 Max: CN445R, CN445R2, CN450R, CN445R3 P aslode:R-175C, 3175/44RCUPorter-Cable: 134R, RN175, RN175A, RN175C R idgid:R175RNESenco: SNC40R, SCN200R,ROOFPRO 450, ROOFPRO 455XPGrip-Rite: GRC58, GRC58A Pneu Tools: RC-58, RC-58II Senco: BC58Grip-Rite: GRTCS250ZDuo-Fast: DF225C, 502950 Pneu Tools: CN65ZThe list of tools for each fastener is not exclusive. Refer to tool manuals for fastener size compatibility.Grip-Rite is a trademark of PrimeSource Building Products, Inc.O ther product and company names listed may be trademarks of their respective owners.Grip-Rite: GRTCS250Bostitch: N63CP, N63CP-1, N66C, N66C-1DeWalt: DW66C-1Hitachi/Metabo HPT: NV65AH,N V75AG, NV50A1, NV65AH2, NV65ANMakita: AN611Max: CN565D, CN565S, CN890S Senco: SCN49, SCN55S, SCN56Grip-Rite: GRTCS250Bostitch: N50C, N55C, N65CP, N65CP-2, N66C-1 DeWalt: DW66C-1Hitachi/Metabo HPT: NV65AB, NV65AE, NV65AH, NV75AG, NV50A1, NV65AH2, NV65AN M akita: AN611Max: CN55, CN550S, CN565S, CN665, CN890II , CN665D, CN565S3Senco: SCN45, SCN49, SCN55S, SCN56Tool/FastenerCompatibility GuideFRAMINGJOIST HANGER33° PAPER T APE JOIST H ANGER NAILS33° PLASTIC STRIP JOIST HANGER NAILS28° PLASTIC STRIP CLIPPED HEAD NAILSThe list of tools for each fastener is not exclusive. Refer to tool manuals for fastener size compatibility.Grip-Rite is a trademark of PrimeSource Building Products, Inc.O ther product and company names listed may be trademarks of their respective owners.Bostitch:DeWalt:Duo-Fast:H NV65ANMakita:M ax:CN890F2Paslode:P orter-Cable:S enco:Grip-Rite: GR150, GR250, GRSB150, GRSB250Bostitch: MCN150, MCN250 DeWalt: DWMC150Hitachi/Metabo HPT: NR65AK, NR65AK(S),NR38AKM Max: SN438JPaslode: 5250/65S PP, 5250S PP, F250S-PP, PF150S-PPPneu Tools: RN150, RN250, RNS150, RNS250Senco: HN150, HN250, JoistPro 150/250Grip-Rite: GR150, GR250 Bostitch: MCN150, MCN250 Pneu Tools: RN150, RN250 Senco: HN150, HN250Milwaukee: 7110-20Max: SN883CH/34, SN890CH/34, SNH890CH2/34P aslode: 5300, 900420, IMPULSE 35,CF325XP, PF250S, PF350S, 513000, F350S POWER MASTER PLUSPorter-Cable: FC350, FC350A, FC350B Ridgid: R350CHA, R350CHE S enco:FRAMEPRO 601/651,FRAMEPRO 701XP/751XP, SN901XP, SN951XPBostitch: D eWalt:Duo-Fast:C N-350B,H NR90AEPR, NR83A3, NR83A3(S), NR83A5, NR83A5(S), NR90AES, NR90AES1, NR90A5 Husky: DPFR2190Makita: AN922, AN923, AN8300, AN924 M ax: GS683RH-EX, SN80, SN883RH2, SN890RHMilwaukee: 274-22, 7200-20Paslode: 5325/SRH, 5350/SRH-20, F350-21 P orter-Cable: FR350BRidgid: R350RHA, R350RHE, R350RHF S enco:FRAMEPRO 502, FRAMEPRO 650, SN60, SN65, SN902XP, GT90FRHDuo-Fast: NSPM-325FFINISHFLOORINGCONCRETE15-1/2 GAUGE FLOORING STAPLES1/2" Crown“L” HARDWOOD FLOORING CLEATSCONCRETE T-NAILS16 GAUGE STRAIGHT FINISH NAILSBostitch:DA1564KD eWalt:D uo-Fast:NT65MA4Makita: M ax:P R idgid:Ryobi:Senco: P orter-Cable: PIN100 R idgid: R138HPASenco: FINISHPRO 10, FINISHPRO 11, SHP10Bostitch: Max:Grip-Rite: GR200FSB ostitch: MIIIFSDuo-Fast: FLOOR MASTER 200-SGrip-Rite: GR200LCNBostitch: MFN200, MFN201 Porter-Cable: FCN200Senco: SHF10, SHF15, SHF50Bostitch: MIII812CNCT Porta-Nails: 460ASpotnails: MT9764, XT8664 Grex: 2564 Senco: GT40CPP aslode:Senco: FUSION F-16A Milwaukee: 2742-21CTGrip-Rite: GRTFN250D eWalt:D51257K, DWFP71917, DCN660D1 D uo-Fast:SURE SHOT 764 Hitachi/Metabo HPT: NT65GS Makita: AF601 Max: NF565/16Milwaukee: 2741-21CT, 2741-20, 7145-21 Paslode: 902000, T250S-F16, 916000, 515500 Porter-Cable: FN250CRidgid: R250SFE, R250SFF Ryobi: YN250FSD, P325S enco:FUSION F-16S, FINISHPRO 32, FINISHPRO 16XPThe list of tools for each fastener is not exclusive. Refer to tool manuals for fastener size compatibility.TACKER STAPLESSTAPLES“A11” STYLE T ACKER STAPLES3/8" Crown“54”-STYLET ACKER STAPLES3/8" Crown“50”-STYLETACKER STAPLES1/2" Crown“A19”-STYLE TACKER STAPLES3/8" Crown“STCR”-STYLE TACKER STAPLES7/16" Crown“SHCR”-STYLE T ACKER STAPLES7/16" CrownDuo-Fast: N3804AB3 Makita: Max: Milwaukee:P orter-Cable:NS150BRidgid: Ryobi:Senco: Bostitch: SX150, SB2N1Grip-Rite: GRR11C Rapid: 54Grip-Rite: GR50BLD uo-Fast:HT-550, SURESHOT 5020Grip-Rite: GRR19 Rapid: A19, R19Bostitch: H2BGrip-Rite: GRSTCR5019B ostitch: H30-8, PC2K, PC4000, T6-8 Rapid: 31Grip-Rite: GRR11Arrow: T-50, HT-50, HT-55Bostitch: PHT150C, TR100, TR200, TRE500Duo-Fast: SLAPSHOT R apid:A11, R11Senco: PC0705, 85000, 85060Bostitch: S4Duo-Fast: M akita:Max:DeWalt: Makita: M ax:Porter-Cable: Senco: 800-676-7777 。
Schneider-Electric IHP 1C 2C 定时器控制器用户指南说明书
d d _E N 02/19IHP 1C/2CProduct information / menu descriptionCCT15440CCT15441CCT15442CCT15443d d _E N 02/19The IHP with weekly program controls lighting, air conditioning, flushing, etc.|The device must not control safety-relevant applications.G etting to know the timerDisplays and operating elementsA Time displayB Channel stateC Date displayD Programmed ON timesE Display of week daysF Display of active buttonsG OK buttonH Selection buttonsI MENU buttonOperationButton FunctionMENU button•Opens the menu•In menu mode: one step back:•In programming mode: cancel programming modeSelection buttons •Switch between menu items •Increase/decrease value OK button•In menu mode: select menu item •In programming mode: confirm settingMenu structurePROGRAM TIME/DATEMANUAL CONFIG ENDCHANNEL 1TIME CHANNEL 1LANGUAGENEW SET DATEPERM ON PIN CHECK SU-WI PERM OFF FACTORY SETTINGSMODIFY WEEK DAY OVERRI ONINFO DELETEFORM DATE HOLIDAYENDENDFORM TIMEENDd d _E N 02/19The basic settings, such as date, time, etc., must be carried out when starting for the first time or following a reset.The device starts in the settings menu with the item LANGUAGE .1Select the language.2Confirm the message FORM DATE .3Select the date format.4Set the year.5Set the month.6Set the day.7Confirm the message FORM TIME .8Select the time format.9Set the hours.0Set the minute.^Select summer time/winter time.A switching time always consists of one time at which the load is switched on and one time at which the load is switched off. Y ou can either set switching times for a specific day of the week or copy them for multiple week days. Copied week days are referred to as a block.T o set a switching time, perform the following steps once for ON and once for OFF :1Confirm message about free memory slots.2Select ON or OFF .3Set the hour.4Set the minute.5Set the day of the week.6If the switching time is only to be valid for one week day, select SAVE .The switching time is set.7If the switching time is to be copied as a block for multiple week days, select COPY .8Select further days of the week and confirm in each case.Week days contained in the block are indicated in the week days display.To remove a week day from the block, select the week day again using the selection buttons.9Once the desired week days have been set, select COPY .Initial setupSetting a switching timePROGRAMCHANNELC1CHANNELC2NEWNEWd d _E N 02/19Y ou can change the time for the switching times. In the case of switching times within a block, you can select whether the modification of the time is to apply to the whole block or only to a specific week day. This week day is then removed from the block.1Select the switching time.The display runs through all switching times in sequence. If no switching time is set for a week day, this is indicated in the display by --:--.If the selected switching time is part of a block, all days of the block are shown in the week day display. The selected week day flashes.2Set the hour.3Set the minute.4If the selected switching time is only set for one week day, only the option SAVE appears.5If the selected switching time is part of a block, select MODIFY BLOCK or MODIFY WEEK DAY .- MODIFY BLOCK changes the time for all switching times of the block.- MODIFY WEEK DAY changes the time for the selected switching time. The selected switching time is re-moved from the block.Y ou can delete switching times at any time. If a switching time is part of a block, you can delete the entire block or remove the switching time from the block. Y ou can also delete all switching times of a channel simultaneously.Deleting a switching time:1Select SINGLE .2Select the switching time.The display runs through all switching times in sequence. If no switching time is set for a week day, this is indicated in the display by --:--.If the selected switching time is part of a block, all days of the block are shown in the week day display. The selected week day flashes.3If the selected switching time is only valid for one week day, only the option DELETE WEEK DAY appears.4If the selected switching time is part of a block, select DELETE BLOCK or DELETE WEEK DAY .- DELETE BLOCK deletes all switching times of the block.- DELETE WEEK DAY removes the selected switching time from the block and deletes it.Deleting all switching times of a channel:1Select DELETE ALL .2Confirm with CONFIRM .Modifying a switching timePROGRAMCHANNELC1CHANNELC2MODIFYMODIFYDeleting a switching timePROGRAMCHANNELC1CHANNELC2DELETEDELETEd d _E N 02/19With the holiday function, you can switch a channel on or off completely for a longer period. The programmed switching times do not apply while the holiday function is active. Y ou can only set one holiday time per channel.1Select ON or OFF .2Confirm BEGIN HOLIDAY .3Set the year.4Set the month.5Set the day.6Set the hour.7Confirm END HOLIDAY .8Set the year.9Set the month.0Set the day.^Set the hour.A PIN protects against unauthorized use.If you have forgotten your PIN, contact the Customer Care centre in your country, stating the serial number of your device.1Select WITH PIN .NO PIN cancels the PIN protection function.2Confirm CURRENT PIN .3Set new PIN.|The PIN digits are set one after the other with +/- and confirmed with OK . A digit that has already been set can no longer be changed. When the last digit is confirmed with OK , the PIN is saved. If in any doubt, exit the PIN setting procedure with MENU .Setting the holiday functionMANUALCHANNELC1CHANNELC2HOLIDAYHOLIDAYSetting the PINCONFIGPINd d _E N 02/19Y ou can set override or permanent switching either via the MANUAL menu or using combinations of buttons on the device.Override switchingIf you wish to switch a channel briefly to the other switching state (e.g. from ON to OFF ), activate override. This state is only valid until the next switching time.If override is active, CHANNEL OVERRIDE appears briefly in the display.Permanent switchingIf you wish to switch a channel permanently, activate permanent switching. While permanent switching is activat-ed, switching times have no effect.If you want to select whether the channel is to be switched ON or OFF permanently, use the MANUAL menu.If you use the button combinations to activate permanent switching, the channel is switched to the other switching state (e.g. from ON to OFF ).If permanent switching is active, CHANNEL PERMANENT appears briefly in the display.Activating override and permanent switchingd d _E N 02/19Y ou can reset the basic settings, such as date, time, etc. and delete or keep all switching times.Y ou have two options: Y ou can either load the factory settings via the CONFIG menu or reset the device using combinations of buttons on the device.|Loading the factory settings will also delete all switching times. If you want to reset the basic settings and retain the switching times, use the reset function.Loading factory settings1Confirm the message LOAD FACTORY SETTINGS .2Set basic settings as described in chapter “Initial setup”.Resetting1Push all four buttons on the device simultaneously.2Select the language.3If you want to retain the switching times, select RETAIN PROGRAMS .4If you want to delete all switching times, select DELETE PROGRAMS .5Set basic settings as described in chapter “Initial setup”.If you have technical questions, please contact the Customer Care Centre in your /contactResetting basic settingsCONFIGFACTORY SET-TINGSSchneider Electric Industries SAS。
锰锌铁氧体软磁材料及产品系列
锰锌铁氧体软磁材料及产品系列双高材料■材料用途这种材料具有高磁导率和高剩磁,低功率损耗的特点,适用于宽带变压器(特别是含有直流分量的场合)、脉冲(功率)变压器、特殊要求的扼流圈等磁芯的制造。
该材料特性与西门子公司新近开发的N55材料性能相当。
■材料指标■典型曲线功率铁氧体材料■材料用途这种材料是一种高频率低损耗铁氧体材料, 相当于TDK的PC40(H7C4)。
主要应用于100~500KHz 开关电源变压器。
■材料指标■典型曲线高频功率铁氧体材料■材料用途这种材料是一种高频低损耗材料。
主要应用于500~1000 KHz开关电源,相当于TDK的PC50材料。
■材料指标■典型曲线宽温铁氧体材料■材料用途这种该类材料具有适中的磁导率、高的饱和磁感应强度与低的损耗等优良特性,特别是在很宽的温度范围(-40℃—100℃)内,具有较好的磁导率稳定性。
主要应用于温度范围很宽,电感值变化很小的场合。
■材料指标■典型曲线产品类型【EER磁芯】■ 外形结构■ 用途高频开关电源变压器、匹配变压器、扼流变压器等。
■ 型号【EE磁芯】■ 外形结构■ 用途电源转换用变压器及扼流圈、通讯及其他电子设备变压器、滤波器、电感器及扼流圈、脉冲变压器等。
■ 型号【ETD磁芯】■ 外形结构■ 用途电源转换用变压器及扼流圈、通讯及其他电子设备变压器、滤波器。
■ 型号【EI 磁芯】■ 外形结构■ 用途高频开关电源变压器、功率变压器、整流变压器、电压互感器等。
■ 型号【ET 磁芯】■ 外形结构■ 用途滤波变压器■ 型号【EFD 磁芯】■ 外形结构■ 用途高频开关电源变压器器、整流变压器、开关变压器等。
■型号【UF 磁芯】■ 外形结构■ 用途整流变压器、脉冲变压器、扼流变压器、电源变压器等。
■ 型号【PQ 磁芯】■ 外形结构■ 用途高频开关电源变压器、整流变压器等。
■ 型号【RM 磁芯】■ 外形结构■ 用途高频开关电源变压器、整流变压器、屏蔽变压器、脉冲变压器、脉冲功率变压器、扼流变压器、滤波变压器。
武钢CSP厂150t转炉副枪自动炼钢控制系统
第1期
徐 重 :武钢 CSP 厂 150 t 转炉副枪自动炼钢控制系统
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和管理 、吹炼控制 、动态模型计算控制 、吹氩站控 制 、过程跟踪 、炉后合金化计算 、报表系统 、数据通 讯接口 、数据库管理 。
作者简介 :徐 重(1981- ), 男 , 工程师
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武钢技术
第 49 卷
图 2 副枪操作控制画面
量 、熔池液面高度及取钢样 。 依靠副枪测量来调 节吹氧量和转炉熔剂添加量 , 借助转炉计算机动 态控制模型对吹炼所需要的氧量和冷却剂的添加 量进行反复 计算 , 调整系统的各种 参数 , 以命中 碳 、温度的目标值 。 设计制造的副枪为旋转测量 方式 , 副枪枪体采用水冷却系统 。 副枪设备主要 由本体设备(旋转装置 、升降装置)、冷却水和压缩 空气以及氮气供给装置 、副枪探头的装卸装置 、密 封帽及刮渣器装置 、HF DAS 副枪数据分析系统 组成 。副枪测量完成 3 个主要动作 :副枪的升降 、 副枪的旋转 、探头的自动装卸 。 自动控制系统是 在转炉实时供氧量达到炉次设定氧量的85 %时 下副枪一次测量 , 检测转炉熔池此时的 C-T , 并把 检测到的 C-T 作为 动态过程的起始点转入二级 模型的动态控制 。
2 .1 L1 系统
L1 自动化级 , 采用西门子系列 P LC , 氮封 、加 料 、顶吹 、底吹和倾动氧枪控制各采用 1 套独立的
P LC 控制 , CP U 采用 CP U416 , 系统 采用以太网 实现 P LC 与操作站 、P LC 与 P LC 之间的通讯 。
五星科技产品目录说明书
5663685961898060668891877983694470727576777471738586845562825257658149425453506458474348516790123456789101113141516171820222324252631282950302732333435363739404112781638194321444546ITEM NO.PART NUMBERDESCRIPTIONQTY.159-0599BALL 1/2 HIGH PRECISION S301210000048200FITG PC3/8F NPT3/8M STR BRASS 2358-1122FITG COUPLER 3/8 FNPT X 3/8 FNPT 1458-3644NIPPLE 3/8 NPT X 2 1/2 BRASS 1510000008567S SEAL 17MM X 47MM X 7MM S1S 1658-0287NIPPLE 1/2 NPT X 1 1/2 HEX BRASS1710000044227NIPPLE 1/2 NPT X 16 GALV1810000068144FITG NPT3/8M NPT3/8F STR ORIFICE BMT1959-22291/2 NPT SWING VALVE11010000042562FITG HOSE BARB5/8 NPT1/2M STR BRASS 11159-1364A COMP SPRNG .39OD 1.6LG .028 WIRE 1.3RATE 11258-2269AIR MUFFLER NPT-3/8-M EXTENDED BRONZE 11310000022983SPRING COMP 1.000 OD X 2.00 L 410LB/IN61410000041442QUAD-RING 2-439 BUNA 11510000088072TURRET PISTON BMT6511610000030324THRUST WASHER BMT INDEXER 21710000030898SPACER 1.125OD .75ID 1.125L STEEL 21810000081555GEAR SPUR 16DP 108T .625FACE11920-10366SHAFT TURRET GEAR22010000030833GEAR SPUR 16DP 80T X 24T .625FACE .747ID22110000081551LIVE TOOL TORQUE ARM BMT6512210000046080GASKET TURRET REAR COVER BMT6512357-11642O-RING 2-116 BUNA 22440-1662SHCS 1/2-13 X 2 1/422548-0040DOWEL PIN 3/8 X 122610000016703GASKET GEARED LIVE DRIVE MOTOR22757-0263O-RING 2-122 BUNA22810000081618LIVE TOOL RADIAL ALIGN BUSHING BMT22957-0083O-RING 2-112 BUNA33045-0038WASHER 5/16 HARD 11/32ID X 3/4OD63110000009639DOWEL PIN 1/2 X 3 1/223210000081392SPRING COMP 0.72 OD X .88 L 114 LB/IN23359-2055BALL 3/8 STEEL 13446-1665NUT 1/2-13 JAM 13544-0020SSS 1/2-13 X 1 FLAT PT 13620-10391SPACER GEAR THIN 23710000031417TURRET PISTON COVER BMT6513857-0253O-RING 2-262 BUNA 13910000003655O-RING 2-349 BUNA SHORE A 7014010000005669O-RING 2-342 BUNA 14148-1755DOWEL PIN 1/2 X 214210000067476TURRET TOOL DISC BMT65 24 MACH14340-16385SHCS 5/16-18 X 3/4294410000081559TURRET HOUSING COVER BMT65 MACH14510000021572SRVOMTR YASK SGMSV-3014662-10011SRVOMTR YASK SIGMA-5 09 W/O BRAKE 14710000068367TURRET NUMBER PLATE BMT-65 24 STATION14840-1985BHCS 5/16-18 X 1/2 ZINC PLATED 44910000064873TURRET TOOL STATION DEBRIS PLUG BMT65125040-0084SHCS 5/16-18 X 1 W/BLUE LOCTITE 125110000031994LIVE TOOL GUIDE BRACKET BMT65 MACH15210000002298R BRG RAD BALL M90-140-2415310000032082LIVE TOOL RETAINING COLLAR BMT6515410000033122R SEAL 4.247 X 4.689 X 0.238 RS 15545-1600WASHER 5/16 SPLT LOCK PLTMED145640-1715SHCS 5/16-18 X 1 1/265710000009608O-RING 2-160 BUNA15810000081527LIVE TOOL DRIVE 6000 RPM BMT6515910000046777R BRG RAD BALL M30-47-916010000046829RTNG RING 1.850 INT BASIC 16110000053252WAVE SPRING SINGLE 47MM 15.28 LB 16210000066201SPRING BELVIL 90.5 X 114 X 2.45MM 16310000081557LIVE TOOL TORQUE TUBE BMT6516448-1661DOWEL PIN 5/16 X 1 1/426510000064866LIVE TOOL SHIM BMT-65 .007"16610000081614O-RING 2-139 BUNA 16748-0019DOWEL PIN 1/4 X 5/816810000081297RTNG RING 2.375 EXT BASIC16910000012347O-RING 2-113 BUNA 17046-1670NUT 1-14 JAM 17157-0070O-RING 2-114 VITON17210000043391TURRET CNLT NOZZLE ADAPTER BMT6517310000042884TURRET CNLT NOZZLE BMT6517410000042863TURRET CLNT NOZZLE HOUSING BMT6517558-5107BALL VALVE NPT-3/4-F X NPT-3/4-M 17610000068662BALL VALVE TEE HANDLE 3/417710000069285SPRING COMP 0.850 OD X 1.25 L 23LB/IN 17810000042879CLNT MANIFOLD NPT 1/2 X 2 PORT ST17910000041239O-RING 2-347 BUNA 18010000034795TURRET HOME FLAG BMT6518148-1662DOWEL PIN 1/2 X 118210000031653TURRET REAR SEAL RING BMT18357-2975O-RING 2-274 BUNA 18410000081561TURRET SHAFT PISTON BMT6518551-2036R BRG RAD BALL M120-180-2828610000033495SPACER LG BMT 18710000013635BEARING LOCKNUT AN-2418840-1801SHCS 8-32 X 3/848940-1640SHCS 10-32 X 1/2 ZINC PLATED2905811200SHCS SHCS 5/8-11 X 269169-1720PROX SW NC 2WR 1.0M WITH BRACKET1。
2017新款小型挖掘机225 操作手册说明书
ENGINEModelFPT F5HFL463DEmissions Certification Tier 4 FinalType Diesel 4-stroke, TurbochargedCylinders 4Bore/Stroke 3.90 x 4.33 in (99 x 110 mm)Displacement 207 in 3 (3.4 L)Fuel injection Direct, high pressure common rail – HPCRFuelDieselEngine speeds*RPM Rated speed – full load 2200 Low idle900 – 1000 High idle – no load 2330 – 2430Horsepower @ 2200 RPM: Gross74 hp (55 kW) Net w/ viscous fan** 72 hp (54 kW) Net68 hp (51 kW)Maximum torque @ 1400 RPM: Gross 233 lb·ft (316 N·m) Net w/ viscous fan 228 lb·ft (310 N·m) Net 220 lb·ft (298 N·m)Torque rise at rated speed 35% +/- 5%Radiator: Core typeSquare wave Core size area 486 in 2 (3 145 cm 2)Rows of tubes 539° fan: Style 7 blade suction Diameter 19.65 in (499 mm)Ratio 1.1:1Pump operating angle ratings:Side to side Rated 35° Fore and aft Rated 35° Oil filtration Replaceable, full flow spin onNOTE: *Meets federal emission regulations. **Viscous fan available as DIA w/ High Ambient Kit.DRIVETRAINTransmission – standard:4F-4R Power Shuttle Synchromesh Transmission manual gear shift, fully synchronized Gear ratios Forward/Reverse1st 5.603/4.643 2nd 3.481/2.884 3rd 1.584/1.313 4th0.793/0.657Travel speeds – Standard Power Shuttle Transmission Forward Reverse mph (kph) mph (kph) 1st 3.5 (5.6) 4.2 (6.8) 2nd 5.5 (8.9) 6.6 (10.6) 3rd 11.8 (19.0) 14.1 (22.7) 4th 21.3 (34.3) 25.5 (41.0)Torque converter ratio3.2Differential lock: On-the-go push-button activation Front/Rear axle (w/ 4WD 12x16.5 front tires): Differential ratio 2.2/2.75 Planetary hub ratio 6.0/6.4 Total reduction ratio 13.3/17.6Service brakes:Individually applied, power assisted,hydraulically actuated, maintenance-free, self-adjusting, outboard mounted, wet disc, 2 per side. Total disc area 384 in 2 (0.25 m 2)Parking brakes Trans Mounted spring-applied hydraulic release – SAHRNOTE: T ravel speeds at 2293 engineRPM specified: w/ 19.5 L x 24.0 tires.Speeds decrease w/ 17.5 L x 24.0 rear tires.ELECTRICALVoltage 12 Volts, negative groundAlternator 120 ampBattery850 cold-cranking ampsOptional dual batteries: 850 cold-cranking amps each Power plugs – 230 amps totalOPERATOR ENVIRONMENTROPS/FOPS certified protective canopy; Rear fenders extensions; Coat hook w/garment strap; Interior rearview convex mirror; Non-suspension seat – 180° swivel – Vinyl; 2 in (50 mm) retractable seat belt; Cup holder/ storage tray mounted on left-hand fender; Right-hand storage compartment w/ lid.Gauges:Engine water temperature; Converter oil temperature; Fuel level; Tachometer/ hourmeter; Voltmeter.Warning lights:Air cleaner restriction; Alternator; A/C high pressure; Cold start; Engine oil pressurelow; Hydraulic oil filter bypass; Parking brake engagement; Low fuel; Water in fuel.Audible alarms:Coolant temperature; Engine oil pressure; Parking brake engagement; Shuttle engagement/seat position; Backup alarm; Converter temperature.HornDual switched front and rearOPERATING WEIGHTConfiguration 1 – SAE Transport:GP Loader Bucket, 2WD, Canopy, Boom Guard, Full of Fuel, SAE Carry, Tier 4 Final Engine, Extendahoe ®, 4 Stick Mech BH,Standard Transmission, 17.5 L – 24 Rear Tires, 700 lb Front Counterweight. 15,795 lb (7 164 kg)Configuration 2 – SAE Transport:GP Loader Bucket, 4WD, 2 Door Cab, AC,Boom Guard, Full of Fuel, SAE Carry, 24 in HD BH Bucket, Tier 4 Final Engine, Pilot Controls, Standard Dipper, Manual Transmission, 19.5 – 24 Rear Tires. 15,810 lb (7 171 kg)Add-on weights: Cab-over canopy309 lb (140 kg) Fabricated stabilizer pads 141 lb (64 kg) Counterweights 700 lb (318 kg) Extendahoe ®285 lb (129 kg) 4WD w/ driveshaft guard283 lb (128 kg)580N EPBACKHOE LOADER TIER 4 FINAL CERTIFIEDPump:Parker P330 Single Section Gear PumpMain relief pressure:Standard 3,350 +/- 50 psi(231 +/- 3.5 bar) Filtration:7-micron, return line, full flow, spin on element. Oil cooler Heavy-duty Loader flow @ rated engine RPM:28.5 gpm @ 3,350 psi(108.0 L/min @ 231 bar) Loader control valve:Two or three-spool open center monoblock valve. Two and three-spool valves have a single lever manual control for lift and tilt functions. Three-spool valve uses a proportionalElectro-Hydraulic control for the auxiliary function. The lift lever has a positive hold “Float” position and a “return-to-dig” feature. Loader auxiliary hydraulics w/ proportional thumb switch w/ detent on loader control handle:0 – 28.5 gpm (0 – 108 L/min) Backhoe flow @ rated engine RPM:28.5 gpm @ 3,350 psi(108 L/min @ 231 bar) Manual backhoe control valve:Six-spool monoblock open center control valve w/ seventh and eighth spool bolt-on sections. Basic control valve has an open center parallel circuit for all functions.Pilot backhoe control valve:Six, seven or eight-spool sectional closedcenter control valve. Basic control valve isclosed center, w/ circuits in parallel w/ apost-compensated, flow sharing feature forsimultaneous operation of all circuits.1-way flow auxiliary hydraulics:1-way flow hydraulic valve is equipped w/ anadjustable LS relief valve to control attachmentpressure and a 6 position flow control selectorfor 6 detented, distinct flow settings.Actuation:Manual backhoe controls – cab floor pedalPilot controls – left-hand joystick2-way flow auxiliary hydraulics*:Actuation:Activate the 2-way flow switch located onthe rear consoleManual shift – 2-way flow linkage on far rightof backhoe towerPilot controls – left-hand joystickNOTE: *Available w/ 1-way/2-way Aux. Hyd. option.Fuel tank 30.0 gal (114.0 L)Hydraulic system:Total 106 qt (100.0 L)w/ Extendahoe®112 qt (106.0 L)Reservoir w/ filter 58 qt (55.0 L)Reservoir w/o filter 56 qt (53.0 L)Transmission – total system:2WD Standard 18 qt (17.0 L)2WD Powershift 23 qt (21.7 L)4WD Standard 21 qt (19.4 L)4WD Powershift 22 qt (20.7 L)Front axle:4WD Differential 5.8 qt (5.5 L)4WD Planetaries – each 0.7 qt (0.7 L)Rear axle:Differential and planetaries 14.4 qt (13.6 L)Engine oil w/ filter 8.5 qt (8.0 L)Cooling system:w/ heater 19.0 qt (18.0 L)w/o heater 18.3 qt (17.3 L)Window washer reservoir 3.0 qt (2.8 L)Front tires:2WD 11.0 L x 16.0, 10-ply rating4WD 12.0 L x 16.5, 8-ply ratingRear tires:2/4WD 19.5 L x 24.0, 10-ply rating2/4WD 17.5 L x 24.0, 10-ply ratingTurning radius: Curb to Curb:2WD:Brakes on 10 ft 8 in (3.24 m)Brakes off 12 ft 4 in (3.76 m)4WD – engaged*:Brakes on 11 ft 4 in (3.45 m)Brakes off 13 ft 10 in (4.21 m)4WD – disengaged*:Brakes on 11 ft 0 in (3.36 m)Brakes off 12 ft 3 in (3.72 m)NOTE: *Turning radius dimensions curb to curbw/ 12.0 x 16.5 front tires and 17.5 L x 24.0rear tires.Type Width Weight Struck Heaped Capacity Long Lip Bucket without bolt-on edge 82 in (2.08 m) 683 lb (310 kg) 0.88 yd3 (0.67 m3) 1.03 yd3 (0.79 m3)93 in (2.36 m) 1,188 lb* (539 kg) 1.10 yd3 (0.89 m3) 1.29 yd3 (0.99 m3) 4 IN 1® Bucket with bolt-on edge 82 in (2.08 m) 1,572 lb* (713 kg) 0.85 yd3 (0.65 m3) 1.05 yd3 (0.80 m3) NOTE: * W eight of 4 IN 1® bucket includes edges, cylinders and tube lines.Type Width Weight Heaped Capacity General Purpose Trenching Buckets 18 in (457 mm) 232 lb (105 kg) 4.70 ft3 (0.13 m3)24 in (610 mm) 272 lb (123 kg) 6.26 ft3 (0.18 m3) Universal Buckets 12 in (305 mm) 295 lb (134 kg) 3.40 ft3 (0.10 m3)18 in (457 mm) 356 lb (162 kg) 5.30 ft3 (0.15 m3)24 in (610 mm) 427 lb (194 kg) 7.70 ft3 (0.22 m3)30 in (762 mm) 489 lb (222 kg) 10.20 ft3 (0.29 m3)36 in (914 mm) 552 lb (251 kg) 12.70 ft3 (0.36 m3) High Capacity Buckets 24 in (610 mm) 447 lb (203 kg) 8.50 ft3 (0.24 m3)Long Lip Bucket 4 IN 1® Bucket A. Overall operating height – fully raised 13 ft 9 in (4.17 m) 14 ft 4 in (4.35 m)Height to:B. Bucket hinge pin fully raised 11 ft 3 in (3.41 m) 11 ft 3 in (3.41 m)C. Bucket hinge pin at SAE carry 12.8 in (326 mm)14.6 in (371 mm)D. Dump angle at full height46°46°E. Dump clearance at full height, 45° dump: Bucket 8 ft 8 in (2.63 m)8 ft 11 in (2.71 m) Clam open— 9 ft 8 in (2.93 m)F. Dump reach at full height, 45° dump – from bumper: Bucket 26.7 in (679 mm)26.2 in (666 mm) Clam open—12.6 in (321 mm)Bucket rollback:G. @ Groundline 40° 40° H. @ SAE carry 43°43°J. @ Full heightAdjustable Adjustable K. Digging depth below grade: Bucket flat7.8 in (199 mm)7.1 in (180 mm) Clam open – dozing— 4.4 in (111 mm)L. Reach from front axle centerline – bucket on ground 6 ft 10 in (2.08 m) 6 ft 8 in (2.03 m)Lift capacity to full height 6,503 lb (2 950 kg) 6,537 lb (2 965 kg)Breakout force: Lift cylinders 9,271 lb (4 124 daN) 8,904 lb (3 961 daN) Dump cylinders9,607 lb (4 273 daN)10,302 lb (4 583 daN)Bucket cutting edge width 82.5 in (2.09 m)82.0 in (2.08 m)Maximum grading angle 114° 114°Maximum clam opening — 38.3 in (972 mm)Moldboard height — 36.8 in (934 mm)Raising time to full height 3.3 sec 3.3 sec Bucket dumping time 0.8 sec 0.8 sec Lowering time: Power down 2.4 sec 2.4 sec Return-to-dig 4.4 sec4.4 sec Clam:Open time — 1.3 sec Close time—1.1 secNOTE: L oader dimensions taken with 4WD, 12.0 x 16.5 front tires and 19.5 L x 24.0 rear tires.Line drawings are for illustrative purpose only and may not be exact representation of unit.AB DJEHCNO FLMKG2WD with 19.5 L x 24.0 tires 4WD with 19.5 L x 24.0 tires M.Overall transport length:Long Lip bucket with Universal Coupler 23 ft 1 in (7.02 m) 23 ft 0 in (7.00 m)4 IN 1® bucket with Universal Coupler 22 ft 10 in (6.96 m) 22 ft 9 in (6.93 m)Long Lip bucket with Straight Links 23 ft 2 in (7.04 m) 23 ft 0 in (7.00 m)4 IN 1® bucket with Straight Links 22 ft 11 in (6.98 m) 22 ft 10 in (6.95 m) Overall transport width – rear tires 7 ft 2 in (2.17 m) 7 ft 2 in (2.17 m) Height:To top of canopy 8 ft 9 in (2.66 m) 8 ft 9 in (2.66 m) To top of cab 8 ft 11 in (2.72 m) 8 ft 11 in (2.72 m) To top of exhaust stack 8 ft 7 in (2.62 m) 8 ft 7 in (2.61 m) N.Transport - standard dipper 10 ft 10 in (3.30 m) 11 ft 1 in (3.37 m) Ground clearance at backhoe frame 15.0 in (380 mm) 15.0 in (380 mm) Angle of departure 15.3° 19.0°Front wheel tread:11.0 L x 16.0 67.5 in (1.71 m) 67.5 in (1.71 m)12.0 L x 16.5 67.7 in (1.72 m) 67.7 in (1.72 m) Rear wheel tread:17.5 L x 24.0 63.1 in (1.60 m) 63.1 in (1.60 m) 19.5 L x 24.0 61.2 in (1.55 m) 61.2 in (1.55 m) Width over tires:11.0 L x 16.0 79.3 in (2.01 m) 79.3 in (2.01 m)12.0 L x 16.5 81.1 in (2.06 m) 81.1 in (2.06 m) 17.5 L x 24.0 81.7 in (2.07 m) 81.7 in (2.07 m) 19.5 L x 24.0 81.4 in (2.07 m) 81.4 in (2.07 m) O. Wheelbase 84.0 in (2.13 m) 84.5 in (2.15 m)Bore Diameter Rod Diameter Stroke Closed Length Loader:Lift – 2 3.25 in (82.6 mm) 1.75 in (44.5 mm) 30.2 in (766.0 mm) 40.80 in (1 036.0 mm) Dump – 2 3.00 in (76.2 mm) 1.50 in (38.1 mm) 20.6 in (522.0 mm) 30.70 in (780.5 mm) 4 IN 1® clam – 2 3.00 in (76.2 mm) 1.75 in (44.5 mm) 9.18 in (230.6 mm) 19.69 in (498.3 mm) Backhoe:Boom 4.50 in (114.3 mm) 2.25 in (57.2 mm) 38.25 in (971.6 mm) 52.82 in (1 341.6 mm) Dipperstick 4.25 in (108.0 mm) 2.25 in (57.2 mm) 24.74 in (628.5 mm) 39.65 in (1 007.0 mm) Bucket 3.25 in (82.6 mm) 2.25 in (57.2 mm) 35.35 in (897.9 mm) 48.17 in (1 223.6 mm) Extendahoe® 3.00 in (76.2 mm) 1.75 in (44.5 mm) 42.05 in (1 068.0 mm) 56.22 in (1 428.0 mm) Swing – 2 3.75 in (95.3 mm) 2.00 in (50.8 mm) 11.50 in (292.0 mm) 24.44 in (620.8 mm) Stabilizer – 2 4.00 in (101.6 mm) 2.00 in (50.8 mm) 21.78 in (553.3 mm) 33.80 in (858.5 mm)Front – 2WD Rear Front – 4WD Maximum static 70,821 lb (32 124 kg) 90,145 lb (40 889 kg) 64,613 lb (29 308 kg) Dynamic operating 44,261 lb (20 076 kg) 56,200 lb (25 492 kg) 39,328 lb (17 839 kg) Static operating 17,704 lb (8 030 kg) 22,480 lb (10 197 kg) 15,732 lb (7 136 kg) Oscillation – front axle 22° total – 11° side to side — 22° total – 11° side to sideNOTE: *Dimensions taken with 2WD, 17.5 L x 24 Rear tires, Universal coupler.See page 1FPT F5HFL463D dieselFull flow engine oil filterAspirated air cleaner – replaceable dualelement dry type with radial sealFuel filter with water trapDiesel Oxidation CatalystRadiator with de-aeration bottle Antifreeze to -34° F (-37° C)Throttles, both hand rotary and footSelf adjusting beltHigh Pressure Common RailFront axle, as selected:2WD front axle with 11.0 L x 16.0 tires4WD mechanically driven front axle, with12.0 L x 16.5 tiresRear axle:2/4WD heavy-duty outboard planetarydrive, with 17.5 L x 24.0 tires4F-4R Power ShuttleSynchromesh transmissionTorque converter – 11.8 in (300 mm)On-the-go electric 4WD controlElectric F/R shuttle controlElectric differential lock control,with push-button activation on the loader control leverPark brake, spring-applied, hydraulic release – SAHR Pump:28.5 gal/min @ 3,350 psi(107.9 L/min @ 231 bar)Heavy-duty hydraulic oil cooler7-micron, spin on oil filterBucket position indicator; Lifting lugs onstandard bucket; Single lever controlwith self-leveling and return-to-dig; Handoperated clutch disconnects on loaderand shift levers, single lever 4-functionloader control: lift, dump, clutch cut-out,differential lockOver center design, Fabricated “S” boomForward tilt engine hoodReplaceable, molded front bumpersFront/Rear tie downsReflective logosSignal Lights – cab and canopy:2 rear tail/stop2 front flashers/turn2 rear flashers/turnWorking/Driving Lights – cab only:Adjustable halogen work lights – 55 W:2 front2 side – one left, one right2 rearWorking/Driving Lights – canopy only:Adjustable halogen work lights – 55 W:2 front2 rearMaster disconnect switch and remotejump-start terminalsHydrostatic steeringBackup alarmVertical spin-on engine oil, fuel andhydraulic filtersCASE SiteWatch™ Telematics – includeshardware and a 3-yr Advanceddata subscription1-Year/Unlimited-Hour Full-Coverage BaseLimited Warranty2-Year/2,000-Hour Extended Engine WarrantyAuto Ride Control – 4WD modelsStandard Ride Control – 2WD models Comfort Steering with two-speed steering pump and 3rd/4th gear cutoutROPS/FOFS certified protective cab available in LH Door or 2 door with heat,A/C, defroster, door activated dome light, 2 front, 2 rear and 2 adjustable side lights, floor mat, tinted glass, radio ready, front and rear wiper and fender extensionsTilt steering wheel – cab models Mechanical suspension seat with flip-up armrests, 180° swivel, adjustable seatand weight, backrest angle, lumbar and cushion angle – cab units cloth or vinyl, canopy units vinyl onlyAir suspension cloth seat with flip-up armrests, 180° swivel, electric height adjustment, adjustable backrest and lumbar support – cab units onlyBluetooth Radio – Communication and Media streaming, Sirius XM satellite radio ready – does not include satellite antenna, AM/FM tuner, NOAA weatherband tuner, USB input and audio Aux-in3 in (75 mm) seat belt for mechanical andair-suspension seatAnti-vandalism cover for dash-canopy only Cold Weather Starting Aid:Dual 12 volt batteries, glow plugs, engine block heater and heated CCV hose Severe Cold Weather Starting Aid:Synthetic transmission, hydraulic and engine oil – order with cold weather starting aid Drive shaft guard – 4WD modelsAuxiliary hydraulics for loader-mountedequipment with thumb-operatedproportional controlHydraulic front quick couplerTool portfolio of additional attachmentsBuckets – see page 21-way Auxiliary backhoe hydraulics forhammers, plate compactors or similar1-way flow attachments1-way/2-way Auxiliary backhoe hydraulicsfor hammers, plate compactors or similar1-way flow attachments or switch to 2-wayflow for thumbs, augers or similar 2-wayflow attachmentsExtendahoe®Two-lever controls – backhoe or Extendahoe®Pilot operated control system:Fingertip proportional Electro-Hydraulicstabilizer controlsThumb-operated proportionalElectro-Hydraulic Extendahoe® controlThumb-operated horn buttonThumb-operated auxiliary hydraulic controlInfinitely adjustable towersIn-cab switchable “excavator to backhoe”control pattern changeFlip over stabilizer padsCemetery/Street padsCase mechanical quick couplerUniversal coupler – CAT/Deere compatiblePro Control Swing dampeningBuckets – see page 2Hydraulic thumb – Includes: 2 replaceable,high strength, bolt on tines withtwo positions for Universal or Hi-Capbuckets – meshes with Bucket teeth on18 in & 24 in BucketsFront tires:11.0 L x 16.0 10-ply or 12.0 L x 16.5 10-plyRear tires:17.5 L x 24.0 10-ply or 19.5 L x 24.0 10-plySpecial paintLights:Additional 2 front and 2 rearhalogen lights – 55 WAdjustable side work lights – canopyTool box – bolt-on, step-mountedFront counterweights:440 lb and 900 lb (200 kg and 408 kg)Rotating beaconLED Working/Driving Light Package:4 front4 rear2 sideChaff Screen – Additional fine mesh screen infront of standard grilleFront Fenders©2018 CNH Industrial America LLC. All rights reserved. CASE is a trademark registered in the United States and many other countries, owned by or licensed to CNH Industrial N.V., its subsidiaries or affiliates. CNH Industrial Capital is a trademark in the United States and many other countries, owned by or licensed to CNH Industrial N.V., its subsidiaries or affiliates. Printed in U.S.A. Contains 10% post-consumer fiber.IMPORTANT: CASE Construction Equipment Inc. reserves the rightto change these specifications without notice and without incurringany obligation relating to such change. Availability of some modelsand equipment builds vary according to the country in which theequipment is used. The illustrations and text may include optionalequipment and accessories and may not include all standardequipment. Your CASE dealer/distributor will be able to give youdetails of the products and their specifications available in your area.CASE Construction Equipment is biodiesel-friendly. NOTE: All engines meet current EPAemissions regulations. All specifications arestated in accordance with SAE Standards orRecommended Practices, where applicable.Always read the Operator’s Manual beforeoperating any equipment. Inspect equipmentuse any safety features provided.Form No. CCE201810580NEP Replaces Form No. CCE201710580NEP。
钨钛的化学式
钨钛的化学式钨钛的化学式是TiW。
钨钛资料
中文名:钨钛
外文名:Tungsten TitaniumStrontium chloride
别名:氯化锶二氯化锶
分子量:231.707
CAS号:58397-70-9
分子式:TiW
物性数据
1. 性状:无气味银灰色的块状
2. 密度(g/mL,25/4℃):未确定
3. 相对蒸汽密度(g/mL,空气=1):未确定
4. 熔点(ºC):未确定
5. 沸点(ºC,常压):未确定
6. 沸点(ºC,5.2kPa):未确定
7. 折射率:未确定
8. 闪点(ºC):未确定
9. 比旋光度(º):未确定
10. 自燃点或引燃温度(ºC):未确定
11. 蒸气压(kPa,25ºC):未确定
12. 饱和蒸气压(kPa,60ºC):未确定
13. 燃烧热(KJ/mol):未确定
14. 临界温度(ºC):未确定
15. 临界压力(KPa):未确定
16. 油水(辛醇/水)分配系数的对数值:未确定
17. 爆炸上限(%,V/V):未确定
18. 爆炸下限(%,V/V):未确定
19. 溶解性:水:不溶。
模具超硬刀具材料高硼化钨的结构研究
模具超硬刀具材料高硼化钨的结构研究*秦 平1,高振帮2,欧阳玲玉1,龙永莲1,王浦舟1(1.江西应用技术职业学院,江西赣州 341000;2.天地上海采掘装备科技有限公司,上海 201400)【摘要】为研究模具超硬刀具材料高硼化钨的结构,基于WB 3-hP16结构,以及调整钨、硼原子对Wyckoff 2b 和2c 位置的占据成分,建立可能存在的结构体系,运用第一性原理计算,得出高硼化钨的稳定结构应为WB 3.86,其中三角硼群的占据1/4的Wyckoff 2b 位置,并且计算分析其力学性质,其具有最高的硬度值(42.24GPa ),并且其硬度、体变模量、剪切模量和杨氏模量都与其实验更为接近。
另外还研究了其微观特性,其费米能位于其最低点,得出结论:高硼化钨的结构为WB 3.86结构,为实际合成高硼化钨提供理论依据以及合成配比,更有利于超硬刀具材料高硼化钨的有效合成。
关键词:高硼化钨,第一性原理,力学性质,微观特性中图分类号:TG162;TG659 文献标识码:B DOI :10.13596/ki.44-1542/th.2024.03.022Study on the Structure of Tungsten High-Boride as Die & Mold Superhard Tool MaterialQin Ping 1, Gao Zhenbang 2, Ouyang Lingyu 1, Long Yonglian 1, Wang Puzhou 1(1.Jiangxi College of Applied Technology ,Ganzhou ,Jiangxi 341000,CHN ;2.Tiandi Shanghai Equipment for Excavation Science and Technology Co., Ltd., Shanghai 201400,CHN )【Abstract 】 In order to study the structure of tungsten high-boride as a superhard tool material for die & mold, this article is based on the WB 3-hP16 structure and adjusts the composition of tungstenand boron atoms occupying Wyckoff 2b and 2c positions, establishing a possible structural system. Using first principles calculations, the stable structure of high boronized tungsten should be WB 3.86, with the triangular boron group occupying 1/4 of Wyckoff 2b positions. And through calculation and analysis of its mechanical properties, it has the highest hardness value (42.24 GPa), and its hardness, bulk modulus, shear modulus, and Young's modulus are closer to their experimental values. In addition, its microscopic characteristics were also studied, and its Fermi energy was located at its lowest point, which led us to conclude that the structure of high boron tungsten is WB 3.86. Provide theoretical basis and synthesis ratio for the actual synthesis of tungsten high-boride, which is more conducive to the effective synthesis of superhard tool material high boron tungsten.Key words : tungsten high- boride ; first principles ; mechanical properties ; microscopic properties* 项目支持:江西省教育厅科学技术研究项目支持(项目编号:Gjj2205005)1 引言随着模具精度的要求不断提高,对于材料的性能要求也越来越高[1]。
变压器(第一批)
品牌 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特 威特
铁芯材料 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 非晶合金 非晶合金 非晶合金 非晶合金 非晶合金 非晶合金 非晶合金 非晶合金 非晶合金 非晶合金 非晶合金 非晶合金 非晶合金 非晶合金 非晶合金
序号 8 9 10 11
型号 SBH15-M-400/10 SBH15-M-500/10 SBH15-M-630/10 SBH15-M-800/10
品牌 QBE QBE QBE QBE
铁芯材料 非晶合金 非晶合金 非晶合金 非晶合金
额定容量 能效 补贴标准 (kVA) 等级 (元/kVA) 400 500 630 800 2 2 2 2 4 4 4 4
海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升 海鸿升
非晶合金 非晶合金 非晶合金 非晶合金 非晶合金 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带 电工钢带
9、江西大族电源科技有限公司
1 2 3 4 5 6 7 8 9 10 SB13-M.RL(315) SB13-M.RL(500) SB13-M.RL(630) SB13-M.RL(800) SB13-M.RL(1000) SB13-M.RL(1250) SB13-M.RL(1600) SB13-M.RL(160) SB13-M.RL(200) SB13-M.RL(250)
12、三变科技股份有限公司
低膨胀系数环氧胶粘剂的制备与性能研究
低膨胀系数环氧胶粘剂的制备与性能研究作者:魏运召赵汉清马寒冰吴健伟付刚段恒范王冠王雪松蒋丽萍来源:《粘接》2021年第08期摘要:文章設计选用低膨胀环氧树脂和固化剂为胶粘剂主体成分,研究了CTBN、核壳粒子增韧剂、超细钨酸锆填料对粘接性和膨胀性的影响,分析测定了低膨胀胶粘剂的粘度特性、物理性能、粘接性能和热膨胀特性。
结果表明, CTBN能显著提高胶粘剂韧性,但热膨胀系数(CTE)显著升高,而核壳粒子增韧剂在提高剥离韧性同时, CTE无显著升高。
超细钨酸锆填料能大幅降低环氧胶粘剂的CTE。
制备的低膨胀环氧胶粘剂固化后剪切强度17.4MPa,玻璃化转变温度以下CTE在12.1ppm/ ℃,具有良好的耐温度循环和湿热老化性能。
关键词:低膨胀;环氧胶粘剂;钨酸锆;核壳粒子中图分类号:TQ433.4+37 文献标识码:A 文章编号:1001-5922(2021)08-0013-04Study on Preparation and Properties of Epoxy Adhesive with Low Thermal Expansion CoefficientWei Yunzhao1, Zhao Hanqing1, Ma Hanbing3, Wu Jianwei1,2, Fu Gang1,2, Duan Hengfan1, Wang Guan1,2, Wang Xuesong1, Jiang Liping1(1.Institute of Petrochemistry, Heilongjiang Academy of Sciences, Harbin 150040, China;2.Institute of Advanced Technology, Heilongjiang Academy of Sciences, Harbin 150020, China;3. Southwest University of Science and Technology, Mianyang 621010, China)Abstract:In this paper, low-expansion epoxy resin and curing agent were selected as the main components of the adhesive, and the influences of CTBN, core-shell particle toughening agent,and ultrafine zirconium tungstate filler on the adhesion and expansion were studied. The viscosity characteristics, physical, bonding, and thermal expansion properties of the low expansion adhesive were analyzed and measured. The results showed that CTBN can significantly improve the toughness of the adhesive, but the thermal expansion coefficient (CTE) was significantly increased. The core-shell particle toughening agent can improve the peel toughness, but the CTE was not markedly increased. The CTE of epoxy adhesive can be greatly reduced by ultrafine zirconium tungstate filler. The low expansion epoxy adhesive has a shear strength of 17.4MPa after curing and a CTE value of 12.1 ppm /℃ when tested below the glass transition temperature, and it has a good resistance to temperature cycle and hydrothermal ageing.Key words:low expansion; epoxy adhesive; zirconium tungstate; core-shell particles0 前言环氧胶粘剂是一种工业上重要的结构胶粘剂,可适用于多种金属、塑料和复合材料的结构粘接和灌封,在航空、车辆、电子、光学等领域有着广泛应用。
3d-4f异金属取代的钨氧簇合物的合成与结构
3d-4f异金属取代的钨氧簇合物的合成与结构介绍如下:
钨氧簇合物是一类常见的钨聚合物,其中钨原子通过氧原子相连,形成具有框架结构的化合物。
3d-4f异金属取代的钨氧簇合物是指在钨氧簇合物中,钨原子的部分位置被3d-4f元素所取代的一类化合物。
这样的取代不仅对提高合物的热稳定性和化学活性有积极作用,还为合成新型的异金属钨氧簇合物提供了一种新的途径。
3d-4f异金属取代的钨氧簇合物的合成方法一般包括一下几个步骤:
1.首先,选择合适的前驱物,例如低聚物、钨氧酸盐等,并将其在适当条件下进行热
解或结晶处理,形成相应的钨氧簇合物基体。
2.然后,在钨氧簇合物基体中引入3d-4f异金属元素,例如通过置换反应引入。
在实
验中通常采用硝酸盐等化合物作为3d-4f异金属元素的前驱物。
3.最后,通过X射线衍射、元素分析、红外光谱等手段对合成的3d-4f异金属取代的
钨氧簇合物进行表征,包括确定化合物的晶体结构、元素比例和官能团性质等。
近年来,3d-4f异金属取代的钨氧簇合物逐渐引起了研究人员的关注。
研究发现,这样的异金属取代可以在一定程度上提高钨氧簇合物的稳定性和催化性能。
同时,通过合成不同种类的3d-4f异金属取代的钨氧簇合物,可以进一步拓展该类化合物的结构和性质,为其在催化、传感、发光等领域的应用提供了新的可能。
LB White Boss 400 DF 400,000 BTU hr 直流燃气加热器说明书
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Btu/h Rating blower fan Output (CFM) heat type Fuel Type Ignition type Fuel Consumption LP Gas min./max. (lbs./hr.) Fuel Consumption Nat. Gas min./max. (cu.ft./hr.) Inlet Gas Pressure LP min./max. (in w.c.) Inlet gas pressure ng min./max. (in w.c.) Amps (starting/continuous operation) Electric supply (volts/hz/phase) Motor horsepower Length (IN.) Width (IN.) Height (IN.) unit weight (lbs.) built-in volt meter built-in thermostat vent mode ductable omni certified u.s./canada * For use in self-ventilated area only.
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Magnetoelectric nano-Fe3O4/CoFe2O4//PbZr0.53Ti0.47O3 CompositeShenqiang Ren and Manfred WuttigDepartment of Materials Science and Engineering University of Maryland, College Park,MD, 20742AbstractA new magnetoelectric hybrid device composed of a nano-particulate magnetostrictive iron oxide-cobalt ferrite film on a piezoelectric PZT crystal serving as both substrate and straining medium, is described. Nano-Fe3O4/CoFe2O4 particles, ranging from 5nm to 42nm, were prepared using a variation of the sol-gel method . A small electric field, 5-10 kV cm-1, applied at the coercive field of the nanoFe3O4/CoFe2O4 component modulates the film magnetization up to 10% of the saturation magnetization of ferrite. At the smallest particle size of 5nm the coercive field is as low as 25 Oe and the ME E voltage coefficients as high as 10.1 V/cm Oe.85.80.Jm Magnetoelectric devices81.20.Fw Sol–gel processing81.40.Rs Electrical and magnetic properties (related to treatment conditions)75.70.Ak Magnetic properties of monolayers and thin films75.30.Hx Magnetic impurity interactions______________________________________________________________________________________The recent surge of papers describing magnetoelectric composites (MECs ) may be divided into two groups, the first consisting of papers reporting on metal-oxide composites and the second containing those publications dealing with oxide-oxide structures. High MEC susceptibilities at low magnetic fields are achieved with metal-oxide MECs by choosing either glassy metals or designing highly magnetostrictive metallic components with zero demagnetization factor.1,2 Similar approaches are not as readily accessible for oxide/oxide ME composites as these are predominantly fabricated by thin film technologies, e.g.,3 and the oxide featuring the highest magnetostriction, CFO, possesses a large magnetocrystalline anisotropy. The fully epitaxial self-assembled 3-1 CFO/BTO ME composites4 represent somewhat of an exception. Therefore, in an effort to reduce the effective magnetocrystalline anisotropy and thereby the coercive force of CFO, we developed a nano-Fe3O4/CoFe2O4//PZT MEC whose fabrication and properties are described in the following.To achieve a high effective magneto-electric signal, ME composites require high piezoelectric and magnetic susceptibilities.5,6 Pb(Zr0.53Ti0.47)O3 is a well-understood piezoelectric material fulfilling this requirement. Ferromagnetic bulk Co- ferrite is a good choice due to its high magnetostriction. But, because of its high magneto-crystalline anisotropy7 it has a low magnetostrictive initial susceptibility that results in a low magnetoelectric susceptibility, dλ/dH. In nano-particles the effective magneto-crystalline anisotropy is lowered and dλ/dH can be increased while maintaining its high saturation 8 as has been also demonstrated for Co- ferrite.9 Therefore, in order to create an all-oxide MEC with a large ME coupling coefficient, a nano-Fe3O4/CoFe2O4/ Pb(Zr0.53Ti0.47)O3 was developed. This composite yields giant ME voltages under significantly lower______________________________________________________________________________________magnetic bias fields than previously reported for CFO/PZT MECs.10 Its manufacture and properties will be described next.The composite was manufactured by spinning a CFO sol-gel11 onto a mirror polished PZT single crystal substrate, obtained from Fuji Ceramics, Inc.. The deposition technique and substrate were chosen to obtain lower sintering temperatures and good homogeneity of the film as well as proper stress transfer between the components of the composite by avoiding large surface roughness. The sol solution of CoFe2O4 with a molar ratio of Co2+:Fe 3+= 1:2 was repeatedly spin coated onto the PZT substrate until a smooth precursor film was obtained.12 Subsequently, the composite was annealed 15 minuets at different temperature, 450o C ~ 650o C, to obtain different nano-sizes and compositions between Fe3O4 and CoFe2O4. The final composite consisted of a 5μm thick film of nano-CoFe2O4 on 100μm PZT. Special attention was given to heat treatment at compositions intermediate between Fe3O4 and CoFe2O4 as Bickford et al. have shown that addition of only a small amount of cobalt ferrite to magnetite changes the sign of the anisotropy constant from negative to positive. 13 Our experiments extend this idea to additions to cobalt ferrite.The structure of the composites was characterized using scanning x-ray micro-diffraction (D8 DISCOVER with GADDS for combinatorial screening by Bruker-AXS). XRD shows the typical signature of the composite: Two sets of well-defined peaks are observed belonging to PZT and CoFe2O4. No additional or intermediate phase peaks can be identified. The minor constituent Fe3O4 (see below) was not specifically identified as its XRD signature is almost identical to that of CFO. The broad CFO XRD peaks are indicative of nanoparticle formation. The morphology and cross-section examination of ______________________________________________________________________________________the film was made using an environmental scanning electron microscope (ESEM) and an atomic force microscopy (AFM). A well bonded interface was discerned.Magnetic properties of the nano-CFO films were measured using a superconducting quantum interference device (SQUID). We measured the field dependent magnetization at room temperature by applying magnetic fields parallel to the plane of the film. The magnetic hysteresis loops of the films demonstrate the effect of the different annealing temperature (450 0C~ 700 0C) on the coercivity as well as saturation magnetization. It was observed that the value of the coercive field gradually decreases with decreasing annealing temperature (Fig. 1), as expected. At an annealing temperature of 450 0C the coercivity H c≈ 25 Oe. The saturation magnetizations of in-plane loops yielded 375 emu/cm3 independent of the particle size. The temperature dependence of the saturation magnetization of a 22 nm-CFO film yields Curie temperatures of 700K and 860K indicating that the particles consisted of approximately 91% CFO and 9% Fe3O4.In order to demonstrate the ME coupling of the ferro-electric and –magnetic components of the composite the average in-plane magnetization of the CFO nano-particles was determined as the PZT substrate was alternately poled.14,15 Fig. 2 displays the variation of the magnetization at the coercive field of 80 Oe as the electric field was sinusoidally varied as a function of time. These data yield a magnetoelectric coefficient ME E= 10.1 V/Oe cm which compares favorably with published values.16It is clear from Fig. 2 that the processing temperature significantly affects the sensitivity output of ME composites. The maximum ME E sensitivity was observed for a sample annealed at T=550 0C. After annealing at this temperature the domain size is significantly smaller than after annealing at all other temperatures, see Fig. 3. It is______________________________________________________________________________________proposed that the fine domain structure obtained after the anneal at 550o C increases the fraction of 90 degree domains and hence the elastic response of the ferromagnetic component of the MEC.In summary, a very simple, inexpensive, double-layer all oxide nano-Fe3O4/CFO//PZT multiferroic 2-2 composite heterostructure has been prepared and studied. Ferromagnetic films of nano-Fe3O4 /CoFe2O4 were obtained by a spinning a suitable sol-gel onto a Pb(Zr0.53Ti0.47)O3 substrate. The double-layer film contains PZT and Fe3O4 /CFO phases and shows good electric-field-induced magnetoelectric properties. We can obtain a very low coercivity value of magnetostrictive Fe3O4 /CoFe2O4 phase, less than 100 Oe through controlled sol-gel and annealing processing. The resulting ME laminates have very large inverse ME voltage coefficients. The bias field obtained in this study can be further reduced by changing the ratio between Fe3O4 and CFO componentby targeted annealing.The support of the National Science Foundation, grant DMR0354740, and the Office of Naval Research, contract No. N000140110761 is acknowledged. The authors are also grateful to Dr. I. Lloyd for her hospitality and to the UMD-MRSEC program, DMR-00-0520471, for permission to use its equipment.______________________________________________________________________________________References1Zhai J., S. Dong X., Xing Z., Li J. F., and Viehland D., Giant magnetoelectric effect in Metglas/polyvinylidene-fluoride laminates, Ap pl. Phys. Lett.89, 083507-3 (2006) 2Dong S.,Zhai J., Li J., and Viehland D., Near-ideal magnetoelectricity in high permeability magnetostrictive/piezofiber laminates with a (2-1) connectivity, Appl.Phys. Lett.89, 252904-3 (2006)3predominantly fabricated by thin film technoligies4The fully epitaxial self-assembled 3-1 CFO/BTO ME composites represent an exception5 G. Srinivasan, E. T. Rasmussen, J. Gallegos, and R. Srinivasan, Phys. Rev. B. 64,214408 (2001)6 J. Ryu, A. V. Carazo, K. Uchino and H. Kim, J. of Elec. 7, 17 (2001)7 N. C. Pramanik, T. Fuji, M. Nanishi, J. Takada, J. Mate. Sci. 40, 4169 (2005)8 E. Arzt, Acta mater. 46, 5611 (1998)9 C. Liu, A. J. Rondinone and Z. John Zhang, Pure Appl. Chem., 72, 37 (2000)10J. G. Wan, X. W. Wang, Y. J. Wu, M. Zeng, Y. Wang, H. Jiang, W. Q. Zhou, G. H.Wang and J.-M. Liu, Appl. Phys. Lett. 86, 122501 (2005)11J. Wen and G. L. Wilkes, Chem. Mater. 8, 1667 (1996)12H. He, J. Zhou, J. Wang and C.W. Nan, Appl. Phys. Lett. 89, 052904 (2006)13Bickford, Pappis, and Stull, Office of Naval Research Technical Report, January, 1954 (unpublished).14V. R. Palkar, K. G. Kumara and S. K. Malik, Appl. Phys. Lett. 84, 2856 (2004)15T. Zhao, S. R. Shinde, S. B. Ogale, H. Zheng, T. Venkatesan, R. Ramesh and S. D. ______________________________________________________________________________________Sarma, Phys. Rev. Lett. 94, 126601 (2005)16 G. Srinivasan, E. T. Rasmussen, and R. Hayes, 67, 014418 (2003)____________________________________________________________________________________________________________________________________________________________________________ List of CaptionsFig. 1: The coercivity field, determined at room temperature, of the nano-Fe 3O 4/CoFe 2O 4component of the MEC as a function of the annealing temperature.Fig. 2: (a), top, electrically induced magnetic switching, the moment of magnetizationdependence of external applying electric field (-106~106V/m);(b), bottom, room temperature magnetoelectric susceptibility, M4E ME ΔπΔ=α, of the MEC as a function of the annealing temperature, corresponding to the topfigure.Fig. 3: MFM images of nano-Fe 3O 4/CoFe 2O 4//PbZr 0.53Ti 0.47O 3 MECS processed attemperatures of 450 0C (a), 500 0C (b), 550 0C (c) and 600 0C (d).Figure 1______________________________________________________________________________________Figure 2______________________________________________________________________________________Submitted for publication Sept. 2007______________________________________________________________________________________ Magnetoelectric nano-Fe 3O 4/CoFe 2O 4//PbZr 0.53Ti 0.47O 3 Composite 11/11 Shenqiang Ren and Manfred WuttigFigure 3。