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A mechanical approach of overload protection mechanism for a heavy truck wheel force transducer

机译:重型卡车车轮力传感器过载保护机制的机械方法

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The wheel force transducer (WFT), which measures the force or torque applied to the wheel, is an important instrument in vehicle testing field and has been extremely promoted by researchers. Since the high cost and technical secret of the commercial products may slow down the development of WFT to some extent, Southeast University has devoted to the WFT research with some prototypes. Essentially, the WFT is a multi-axis force sensor (MFS) in which an elastic-body will deform under the applied forces. However, when applying a MFS into vehicle wheel and making it to be a WFT, it may be subjected to forces/moments which exceed the measuring range under the over rated load, especially on a heavy truck WFT under loads of X or Z direction. Plastic deformation and damage may occur on the elastic-body of WFT. This paper presents a mechanical approach of the overload protection mechanism which can prevent the overload damage and guarantee the sensor performance. An intermediate flange, which is elaborately designed using Computer Aided Engineering (CAE) tools, is installed between wheel hub and the elastic body to meet the overload protection. Experiment and prototyping test are conducted on the hydraulic platform. Results show that the proposed overload protection mechanism performs well. In particular, the applied loads over ±120 kN and ±30 kNm are prevented from damage for the heavy truck WFT.
机译:车轮力传感器(WFT)可测量施加在车轮上的力或扭矩,是车辆测试领域中的重要仪器,并得到了研究人员的极大推动。由于商业产品的高成本和技术秘密可能会在一定程度上减慢WFT的发展,东南大学已通过一些原型致力于WFT研究。本质上,WFT是一种多轴力传感器(MFS),其中弹性体将在施加的力作用下变形。但是,将MFS应用于车轮并使其成为WFT时,可能会在超过额定负载的情况下承受超过测量范围的力/力矩,尤其是在X或Z方向负载下的重型卡车WFT上。 WFT的弹性体可能会发生塑性变形和损坏。本文提出了一种过载保护机制的机械方法,可以防止过载损坏并保证传感器性能。在轮毂和弹性体之间安装了一个中间法兰,该法兰使用计算机辅助工程(CAE)工具精心设计而成,可以满足过载保护的要求。在液压平台上进行了实验和原型测试。结果表明,提出的过载保护机制性能良好。尤其是,防止了对于重型卡车WFT施加的大于120 kN和大于30 kNm的负载不会造成损坏。

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