论文部分内容阅读
机电一体化车轮将永磁同步轮毂电机、减速装置、制动装置以及润滑冷却系统、车辆悬挂、转向接口等零部件直接与车轮集合成为一体,是体现电动和混合动力车辆性能和运用优势的关键和必要技术之一。本文针对适用于轮式特种车辆的机电一体化车轮轮毂结构复杂、系统集成度高的特点,采用有限元工程分析方法,进行机电一体化车轮轮毂总体结构的优化设计,解决了各分系统壳体结构以及支撑连接零部件存在的强度问题,然后采用多目标系统综合评价方法进行优化结果的综合评价,提高了机电一体化车轮轮毂的一体化设计水平。
Mechatronic Wheels Integrate components such as permanent magnet synchronous hub motors, decelerators, brakes, and lubrication cooling systems, vehicle suspension, and steering interfaces directly into the wheel assembly to capture the performance and operational advantages of electric and hybrid vehicles And one of the necessary technologies. In this paper, the structure of mechatronic wheel hub applied to wheeled special vehicles is complex and the system is highly integrated. The finite element analysis method is used to optimize the overall structure of the mechatronic wheel hub, Structure and the strength of the components supporting the connection, and then use the multi-objective system comprehensive evaluation method to optimize the comprehensive evaluation of the results to improve the integration of wheel hub design level.