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Design Improvement Of Clamped Joints In Front Motorbike Suspension Based On Fem Analysis

机译:基于有限元分析的前悬架卡箍接头设计改进

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This paper aims at defining the tensile state in shaft-hub joints realized between the clamp (hub) located at the end of the suspension leg of the front motorbike suspensions and the wheel pin (shaft). The clamp under investigation has an asymmetric shape and a slot useful for the assembly operation: one or two bolts (depending on the vehicle performances) are tightened in order to generate the coupling pressure which is necessary to lock the pin. The fundamental objective of this work is to define a mathematical model to calculate the maximum stress generated on the clamp by the tightening forces. The mathematical model was defined by comparing the De Saint Venant theoretical bending stress (the maximum stress on the clamp) with several FEM results. Thus a sort of theoretical stress concentration factor was calculated in function of the dimension and of the location of the spot facings of the clamp. The new developed model is useful to optimize and to verify, in a very short time, this type of coupling without performing any complex numerical analysis. The validity of the model has been demonstrated by several FEM results and by some experimental tests carried out on a high performance vehicle.
机译:本文旨在定义前摩托车悬架悬架腿末端的夹具(轮毂)与车轮销(轴)之间实现的轴-轮毂接头的拉伸状态。所研究的夹具具有不对称的形状和可用于组装操作的狭槽:拧紧一个或两个螺栓(取决于车辆性能)以产生锁定销所需的耦合压力。这项工作的基本目标是定义一个数学模型,以计算由紧固力在夹具上产生的最大应力。通过将De Saint Venant理论弯曲应力(夹具上的最大应力)与几个FEM结果进行比较来定义数学模型。因此,根据夹具的点表面的尺寸和位置来计算一种理论应力集中系数。新开发的模型可用于在非常短的时间内优化和验证这种类型的耦合,而无需执行任何复杂的数值分析。该模型的有效性已通过一些FEM结果以及在高性能车辆上进行的一些实验测试得到了证明。

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