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Influence of the cutting edge microgeometry on the surface integrity during mechanical surface modification by Complementary Machining

机译:切削刃微型测定法对机械表面改性互补加工过程中的表面完整性的影响

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In metal production, mechanical surface modifications are used to optimize workpiece characteristics to improve properties such as fatigue strength. Machining and mechanical surface modification can be integrated in the process strategy Complementary Machining. After machining the cutting tool is used reversely acting as a tool for mechanical surface modification. This paper shows the influence of the cutting edge microgeometry on process forces and temperatures as well as process induced grain refinement in the surface layer during the mechanical surface modification of Armco-Iron and AISI 4140. The mechanical surface modification is simulated in a 3D-FEM-simulation with ABAQUS/Standard.
机译:在金属生产中,机械表面改性用于优化工件特性,以改善疲劳强度的性能。加工和机械表面改性可以集成在过程策略互补加工中。加工后,使用反向作用作为机械表面改性的工具。本文显示了切削刃微型测定法对亚体 - 铁和AISI 4140的机械表面改性过程中的工艺力和温度以及表面诱导的晶粒细化。在3D-FEM中模拟机械表面改性 - 用abaqus /标准刺激。

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