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FE analysis on the influence of sequential cuts on component conditions for different machining strategies

机译:序贯切割对不同加工策略组成条件的影响的FE分析

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Performance and durability of highly stressed components are greatly affected by the component's state including residual stresses. For processes with multi-edged tools, sequential cuts influence the surface layer. A method to forecast the component state is developed by using FE simulations of multiple chip formation done by broaching of SAE 5120 low alloy steel. Remeshing describes material separation, allowing a high detailed resolution of the machined surface layer including the workhardened layer and the residual stress state. Implemented simulation method extracts information from the machined work piece and defines initial conditions for a new unmachined work piece model. The work analyses the influence of tool temperatures on residual stress states after machining. Effects on the stresses appear below the surface. The results are compared to residual stress measurements.
机译:高压部件的性能和耐久性受到组件状态的大大影响,包括残余应力。对于具有多边缘工具的过程,顺序切割影响表面层。通过使用SAE 5120低合金钢的拉伸完成多芯片形成的FE模拟来开发预测组件状态的方法。倒下描述了材料分离,允许加工表面层的高详细分辨率,包括所述高压层和残余应力状态。实现的仿真方法从加工工件中提取信息,并为新的未加工工作片模型定义初始条件。作品分析了加工后刀具温度对残余应力状态的影响。对应力的影响出现在表面以下。将结果与残余应力测量进行比较。

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