Mechanical Characteristics of Distributed Electric Wheel Loader in Shoveling Condition

Q2 Engineering Automotive Experiences Pub Date : 2023-08-27 DOI:10.31603/ae.9024
Xiaotao Fei, Han Shenrui, Shaw Voon Wong, Muhammad Amin Azman, Han Yunwu
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引用次数: 1

Abstract

Multi-bridge centralized drive wheel loaders can produce parasitic power to waste energy and aggravate tire wear. Distributed Electric Wheel Loader(DEWL) is a new structure with two drive motors that can be controlled independently or in concert. Hence, this study investigates the mechanical characteristics of DEWL in its shoveling condition. Firstly, for the DEWL, dynamic models are established including running and shoveling conditions, on the basis of automobile theory. Secondly, a simplified structural model of DEWL is used to construct the mechanical equations, and the theoretical derivation is utilized to analyze the forces on wheels during different driving modes of running and shoveling conditions. Finally, the free shoveling of dry sands and gravel materials is tested by a ZL50GV-EV DEWL, and the drive forces of three drive modes on horizontal concrete pavement are tested. The results show that the parasitic power is generated when the driving motor has a larger speed than that of the other motor, which is caused by the movement of the loader's center of gravity. The driving torques generated by the motors are basically the same when the DEWL is in front-drive mode and rear-drive mode at the setting speed of 600rpm, whether it is running forward or backward, with a torque fluctuation of 0.16%-1.28% and a power fluctuation of 0.02%-1.29%. The DEWL consumes more power in dual-drive mode than in single drive if it is controlled in speed-target mode.
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分布式电动轮式装载机铲铲工况下的力学特性
多桥集中驱动轮式装载机会产生寄生动力,造成能源浪费,加剧轮胎磨损。分布式电动轮式装载机(DEWL)是一种由两个驱动电机组成的新型结构,可以独立控制,也可以协同控制。因此,本研究探讨了深基坑在铲土状态下的力学特性。首先,在汽车理论的基础上,建立了自动铲运机运行工况和铲铲工况的动力学模型;其次,采用简化的蜗轮蜗杆结构模型,建立了蜗轮蜗杆的力学方程,并利用理论推导分析了蜗轮蜗杆在不同工况下的受力情况。最后,利用ZL50GV-EV自动铲运机对干砂石材料进行了自由铲动试验,并对三种驱动方式在水平混凝土路面上的驱动力进行了测试。研究结果表明,装载机重心运动引起的驱动电机转速大于其他电机转速时产生寄生功率;在设定转速为600rpm时,DEWL在前驱动模式和后驱动模式下,无论向前或向后运行,电机产生的驱动转矩基本相同,转矩波动为0.16%-1.28%,功率波动为0.02%-1.29%。如果在速度目标模式下控制,DEWL在双驱动模式下比在单驱动模式下消耗更多的功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Automotive Experiences
Automotive Experiences Engineering-Automotive Engineering
CiteScore
3.00
自引率
0.00%
发文量
14
审稿时长
12 weeks
期刊最新文献
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