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Design and optimization of shaft-hub hybrid joints for lightweight structures: Analytical definition of normalizing parameters

机译:轻型结构轴-轮毂混合节的设计和优化:归一化参数的解析定义

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This paper addresses the design and optimization of interference-fit and adhesively bonded joints (hybrid joints) in lightweight structures. These types of joint involve a hub and a solid or hollow shaft, locked together by a frictional force (based on the radial pressure and the Coulomb friction law) and an adhesive strength generated at the coupling surfaces. The total strength of the joint allows the transmission of axial forces or torque moments. This paper amply investigates the optimal combinations of the hub aspect ratio (ratio between internal and external diameters) in order to maximize the axial (or torque) load transmitted by the joint as well as to reduce the weight of the structure. Derived from an analytical approach, two normalizing parameters are employed which are able to take into account the simultaneous effect of the materials density, the shaft aspect ratio, the hub yield strength, the coefficient of friction between the mating parts and, finally, the adhesive mean strength. Some design formulae and charts, based on the maximum shear yield criterion (Tresca), are proposed as a function of such normalizing parameters.
机译:本文介绍了轻型结构中过盈配合和胶粘连接(混合连接)的设计和优化。这些类型的接头包括轮毂和实心或空心轴,它们通过摩擦力(基于径向压力和库仑摩擦定律)和在连接表面产生的粘合强度锁定在一起。接头的总强度允许传递轴向力或扭矩。本文充分研究了轮毂纵横比(内径与外径之比)的最佳组合,以最大程度地提高由接头传递的轴向(或扭矩)载荷并减轻结构的重量。通过分析方法得出的结果,使用了两个归一化参数,这些参数可以同时考虑材料密度,轴长宽比,轮毂屈服强度,配合零件之间的摩擦系数以及最后的粘合剂的同时影响。平均强度。提出了一些基于最大剪切屈服准则(Tresca)的设计公式和图表,作为这些规范化参数的函数。

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