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Investigation of the Prediction Accuracy of a Finite Element Analysis Model for the Coating Thickness in Cross-Wedge Rolled Coaxial Hybrid Parts

机译:楔形轧制同轴混合零件涂层厚度有限元分析模型的预测精度研究

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摘要

The Collaborative Research Centre 1153 (CRC 1153) “Process chain for the production of hybrid high-performance components through tailored forming” aims to develop new process chains for the production of hybrid bulk components using joined semi-finished workpieces. The subproject B1 investigates the formability of hybrid parts using cross-wedge rolling. This study investigates the reduction of the coating thickness of coaxially arranged semi-finished hybrid parts through cross-wedge rolling. The investigated parts are made of two steels (1.0460 and 1.4718) via laser cladding with hot-wire. The rolling process is designed by finite element (FE)-simulations and later experimentally investigated. Research priorities include investigations of the difference in the coating thickness of the laser cladded 1.4718 before and after cross-wedge rolling depending on the wedge angle β, cross-section reduction ΔA, and the forming speed ν. Also, the simulations and the experimental trials are compared to verify the possibility of predicting the thickness via finite element analysis (FEA). The main finding was the ability to describe the forming behavior of coaxially arranged hybrid parts at a cross-section reduction of 20% using FEA. For a cross-section reduction of 70% the results showed a larger deviation between simulation and experimental trials. The deviations were between 0.8% and 26.2%.
机译:协作研究中心1153(CRC 1153)“通过量身定做的方式生产混合高性能部件的工艺链”旨在开发新的工艺链,以使用连接的半成品生产混合散装部件。子项目B1使用楔楔轧制研究混合零件的可成形性。本研究研究了通过楔楔轧制减少同轴布置的半成品混合零件的涂层厚度。被研究的零件由两种钢(1.0460和1.4718)通过热线激光熔覆制成。通过有限元(FE)模拟设计轧制过程,然后进行实验研究。研究重点包括根据楔角对楔形轧制前后的激光熔覆1.4718涂层厚度的差异进行研究。 β ,横截面缩小 Δ A ,成型速度<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm3”> ν 。另外,将模拟和实验试验进行比较,以验证通过有限元分析(FEA)预测厚度的可能性。主要发现是能够使用FEA描述在横截面缩小20%时同轴排列的混合零件的成形行为。对于横截面缩小70%的结果,模拟和实验之间的偏差更大。偏差在0.8%和26.2%之间。

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