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The Effect of Loading Rate on Rubber Bushing Push-Out Testing of Front Lower Control Arms

机译:装载速率对前下控制臂的橡胶衬套推出测试的影响

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The Front Lower Control Arm (FLCA) is a key part of the automotive suspension for performance and safety. Many FLCA designs attach to the front sub-frame using rubber handling and riding bushings, which determine the vehicle dynamics and comfort. In this paper, a design for a ride bushing using a metal pin structure is discussed. The inner portion of the ride bushing is a hollow metal collar with a layer of rubber, and the FLCA pin structure is pressed into the rubber. For safety requirements, the bushings must meet a pin push-in and push-out force requirement. During the development of the bushing design, different test groups conducted tests to determine if manufactured parts meet the push-out force specification. Each group tested at a different load rate and generated different maximum push out force values. The push-in/out speed was found to have a strong influence on the generated maximum load. A non-linear finite element analysis (FEA) model was setup to correlate to the test, and the coefficient of friction between the metal pin and viscoelastic rubber material was investigated at different loading rates in the simulation.
机译:前下控制臂(FLCA)是用于性能和安全性的汽车悬架的关键部分。许多FLCA设计使用橡胶处理和骑乘衬套连接到前部框架,从而确定车辆动力学和舒适度。在本文中,讨论了使用金属销结构的乘坐衬套的设计。乘坐衬套的内部是具有一层橡胶的中空金属套环,并且将FLCA销结构压入橡胶中。为安全要求,衬套必须符合PIN推入和推出的力量要求。在套管设计的开发过程中,不同的测试组进行了测试,以确定制造的部件是否符合推出力规格。每个组以不同的负载率测试并产生不同的最大推出力值。发现推入/外速度对产生的最大负荷有很大的影响。设置了非线性有限元分析(FEA)模型以与测试相关,并且在模拟中以不同的装载率研究了金属销和粘弹性橡胶材料之间的摩擦系数。

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