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Finite Element Simulation of the Presta Joining Process for Assembled Camshafts: Application to Aluminum Shafts

机译:组装式凸轮轴的Presta接合过程的有限元模拟:在铝制轴中的应用

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This work shows a sequence of numerical models for the simulation of the Presta joining process: a well-established industrial process for manufacturing assembled camshafts. The operation is divided into two sub-steps: the rolling of the shaft to widen the cam seat and the joining of the cam onto the shaft. When manufactured, the connection is tested randomly by loading it with a static torque. Subsequently, there are three numerical models using the finite element method. Additionally, a material model of finite strain viscoplasticity with nonlinear kinematic hardening is used throughout the whole simulation process, which allows a realistic representation of the material behavior even for large deformations. In addition, it enables a transfer of the deformation history and of the internal stresses between different submodels. This work also shows the required parameter identification and the associated material tests. After comparing the numerical results with experimental studies of the manufacturing process for steel-steel connections, the models are used to extend the joining process to the utilization of aluminum shafts.
机译:这项工作显示了一系列用于模拟Presta接合过程的数值模型:Presta接合过程是一种成熟的工业过程,用于制造组装的凸轮轴。该操作分为两个子步骤:滚动轴以扩大凸轮座,以及将凸轮连接到轴上。制造时,通过向其加载静态扭矩来随机测试连接。随后,使用有限元方法建立了三个数值模型。此外,在整个模拟过程中都使用了具有非线性运动硬化性的有限应变粘塑性材料模型,即使对于较大的变形,也可以真实地表示材料的行为。此外,它还可以在不同子模型之间传递变形历史和内部应力。这项工作还显示了所需的参数标识和相关的材料测试。在将数值结果与钢-钢连接件制造过程的实验研究进行比较之后,使用该模型将连接过程扩展到铝轴的利用。

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