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Simulation of Distortion Due to Machining of Thin-walled Components

机译:薄壁零件加工引起的变形模拟

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The distortion of components is strongly related to the residual stress state induced by manufacturing processes like heat treatment, forming or machining. Each process step affects the initial stress state of the following process step. When removing material during machining, the component establishes a new stress equilibrium. Stresses are redistributed causing the component geometry to adjust. Especially for thin-walled components distortion potential is high. Gaining knowledge about the influence of initial loads and the release of distortion during machining processes helps to increase product quality and efficiency. The influences of different initial stress states and different machining parameters on the amount of distortion are examined using both FEM simulations and experiments. A thin-walled T-profile made of aluminum alloy Al 7075-T6 serves as test specimen. A bending process applies a load to initialize a repeatable and defined residual stress state. A groove was machined afterwards into the plastically deformed work piece to trigger stress redistribution and a release of distortion. Different loads with 35 to 45kN and two different geometries of a groove were used. The amount of initial stress has a significant effect on the distortion potential which could be quantified in the study. Simulations show the same behavior as the experiments and the results match very well especially for a high load.
机译:部件的变形与由热处理,成型或机加工等制造过程引起的残余应力状态密切相关。每个处理步骤都会影响后续处理步骤的初始应力状态。在加工过程中去除材料时,组件会建立新的应力平衡。应力被重新分配,导致零部件的几何形状调整。特别是对于薄壁部件,变形可能性很高。获得有关初始载荷的影响以及在加工过程中释放变形的知识有助于提高产品质量和效率。使用有限元模拟和实验研究了不同的初始应力状态和不同的加工参数对变形量的影响。由铝合金Al 7075-T6制成的薄壁T型材用作试样。弯曲过程会施加载荷以初始化可重复且定义的残余应力状态。之后,在塑性变形的工件上加工出一个凹槽,以触发应力的重新分布和变形的释放。使用35至45kN的不同载荷以及两个不同几何形状的凹槽。初始应力的大小对变形可能性具有重大影响,可以在研究中进行量化。仿真显示出与实验相同的行为,并且结果非常匹配,尤其是在高负载下。

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