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The Development of a Lightweight Electric Vehicle Chassis and Investigation into the Suitability of TiAl for Automotive Applications

机译:轻型电动汽车底盘的发展以及TiAl在汽车应用中的适用性研究

摘要

A lightweight chassis for a battery electric vehicle being developed at the University of Waikato was required. The chassis was designed around a predetermined body shape and suspension setup. A chassis, built from 20mm thick aluminium honeycomb sandwich panel, was designed and built to LVVTA standards allowing the car to be driven on public roads. The chassis weighs a little over a third the mass of a mass production car chassis. The car has been driven over 1800km with only one minor problem, indicating the chassis is reliable and well suited to its purpose.Titanium aluminide properties were researched to identify where titanium aluminides could be used in an automobile. Titanium aluminides have a specific strength and stiffness near to steel yet only half the density making it an ideal replacement for steel components. Automotive applications identified that could benefit from the use of TiAl include valves, brake rotors and inside 'in-wheel' electric motors.
机译:怀卡托大学需要开发一种轻便的电池电动车底盘。底盘围绕预定的车身形状和悬挂设置进行设计。底盘由LVVTA标准设计和制造,该底盘由20毫米厚的铝蜂窝状夹心板制成,可在公共道路上行驶。底盘的重量只是量产汽车底盘的三分之一。该车已经行驶了18​​00公里,只有一个小问题,表明底盘是可靠的并且非常适合其用途。研究了铝化钛的性能,以确定铝化钛可以在汽车中使用。铝化钛具有接近钢的比强度和刚度,但密度只有其一半,使其成为钢部件的理想替代品。可以从TiAl的使用中受益的汽车应用包括阀门,制动转子和内置“轮内”电动机。

著录项

  • 作者

    Lovatt Carl Ryan;

  • 作者单位
  • 年度 2008
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  • 原文格式 PDF
  • 正文语种 en
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