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FINITE DIFFERENCE METHOD-BASED SIMULATION OF TEMPERATURE FIELDS FOR APPLICATION TO ORTHOGONAL CUTTING WITH COATED TOOLS

机译:基于有限差分法的温度场模拟在涂层刀具正交切削中的应用

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摘要

A finite difference method was proposed to model the effect of a variety of tool coatings on the magnitude and distribution of temperatures through the tool-chip contact region and the coating/ substrate boundaries. For each workpiece-tool pair tested the intensity of uniformly distributed heat flux and relevant analytically obtained values of the heat partition coefficient were assumed to change with variations of cutting speed and the corresponding friction. In this case the simulation of an orthogonal machining of AISI 1045 steel was performed using special computing algorithm with elementary balances of induced energies (MBE). It is concluded that the temperature contours obtained reflect favorable the specific contact conditions existing at the tool-chip interface and substantial differences can arise from coating effects.
机译:提出了一种有限差分方法来模拟各种工具涂层对通过工具-芯片接触区域和涂层/基材边界的温度大小和分布的影响。对于所测试的每个工件-工具对,均一地分布的热通量的强度和相关的分析得出的热分配系数的值被假定为随着切削速度和相应摩擦的变化而变化。在这种情况下,使用具有感应能量(MBE)基本平衡的特殊计算算法对AISI 1045钢进行正交加工的模拟。结论是,所获得的温度轮廓反映了在工具-切屑界面处存在的特定接触条件,并且涂层效果会产生很大差异。

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