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FEM-based comparison of models to predict dynamic recrystallization during orthogonal cutting of AISI 4140

机译:基于FEM的模型比较预测AISI 4140正交切割的动态再结晶

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Machining processes induce a thermo-mechanical load collective on the surface layer, which leads to grain refinement of varying depths depending on several factors apart from the workpiece. The size relation of the cutting edge radius to the cutting depth (relative roundness) as well as the cutting edge microgeometry influence the generation of nanocrystalline layers. In this work several models to predict dynamic recrystallization during orthogonal cutting of AISI 4140 are compared using 2D FEM-models considering both, relative roundness and cutting edge microgeometry.
机译:加工过程诱导表面层上的热机械载荷集体,这导致不同深度的晶粒细化,这取决于与工件分开的几个因素。切削刃半径对切割深度(相对圆度)的尺寸与切削刃微幼镜测定的影响影响纳米晶体层的产生。在这项工作中,使用考虑到相对圆度和切削刃微型测定法的2D FEM模型进行比较AISI 4140的正交切割期间预测AISI 4140的正交切割的多种模型。

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