基于ProE与ANSYS的1.5T电动叉车设计

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电动叉车利用蓄电池作为动力源,由电机将电能转换为机械能。电动叉车由于其 操作控制简便,灵活外,其操作人员的操作强度要相对内燃叉车而言轻很多,其电动 转向系统,加速控制系统,液压控制系统以及刹车系统都由电信号来控制,大大降低 了操作人员的劳动强度,这样一来对于提高其工作效率以及工作的准确性有非常大的 帮助。且相较于内燃叉车,电动车辆的低噪音,无尾气排放的优势也已得到许多用户 的认可。 电子控制技术的快速发展使得电动叉车操作变得越来越舒适, 适用范围越广, 解决物流的方案越来越多。 国内外用户对电动叉车的需求量不断增加,电动叉车在整个叉车销量中所占比例 稳步上升。在发达国家,电动叉车需求远远大于内燃叉车,尤其是在港口、仓库以及 烟草、食品、轻纺等行业,电动叉车正在逐步替代内燃叉车。 本设计将要运用所学过的知识完成对蓄电池、行走电机的选择,完成叉车变速器 齿轮、轴、轴承和整体尺寸的设计及校核,并对叉车的货叉、内外门架、叉架进行设 计及校核,运用 AutoCAD 软件完成叉车变速器二维结构、叉车整车和货叉部分的二 维结构图,利用 Pro/E 软件对叉车的内外门架、货叉、叉架等零部件进行建模并完成 整机装配,完成整车的造型设计,运用 ANSYS 有限元分析软件对货叉和外门架进行 静力分析。
关键词:电动叉车; 叉车变速器; 货叉 ;门架 ;结构设计;三维建模;有限元分 析
ABSTRACT
Electric forklift battery which converts electrical energy into mechanical energy is used by the motor as a power source. Because electric forklift is simple, flexible, it is relatively lighter internal combustion forklift trucks, the electric power steering system, the speed control system, hydraulic control system and by the electrical signal to control the brake system greatly reduces The operator's labor intensity, so that its work for improving the efficiency and accuracy of the work has a very big help. And compared to internal combustion forklifts, electric vehicles, low noise, no emissions advantage has also been recognized by many users. The rapid development of electronic control technology makes electric forklift operation becomes more and more comfortable the more widely the scope to address the logistics of the program more and more. Domestic and foreign users of the increasing demand for electric forklifts, electric forklift trucks in the percentage of sales increased steadily. In developed countries, demand is far greater than internal combustion electric forklift truck, Especially in ports, warehouses, and tobacco, food, textile and other industries, electric forklift is gradually replaced internal combustion forklifts. The design will have to apply the knowledge to complete the battery, the choice of running the motor to complete the truck transmission gears, shafts, bearings, and the overall size of the design and verification, and forklift forks, internal and external door frame, fork design And check, using AutoCAD software to complete the two-dimensional structure of transmission forklift, forklift fork part of the vehicle and two-dimensional structure, the use of Pro / E, both inside and outside of the truck's door frame, fork, fork and other parts modeling And complete machine assembly, complete vehicle design, finite element analysis using ANSYS software and the outside door frame fork for static analysis.
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