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Tool wear simulation of complex shaped coated cutting tools

机译:复杂形状的涂层切削刀具的刀具磨损模拟

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this paper FE-based tool wear simulation has been applied to complex shaped and coated cutting tools in turning operations. The coating has been considered by an own functional layer with specific friction and thermal properties as well as wear resistance. Therefore, a modified Usui tool wear model is calibrated for the coating and the substrate and combined in a three-dimensional simulation in order to simulate the wearing process including the baring of the substrate with a change in local thermal, friction and wear properties. Turning of AISI 1045 with PVD-TiAlN-coated and uncoated carbide tools was considered. The simulation results are validated by a comparison of simulated wear and external longitudinal turning experiments for a wide field of cutting parameters. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文基于有限元分析的刀具磨损仿真已应用于车削操作中复杂形状和涂层的切削刀具。涂层已被认为是具有特定摩擦和热性能以及耐磨性的功能层。因此,针对涂层和基底校准改进的Usui工具磨损模型,并在三维模拟中进行组合,以模拟磨损过程,包括随着局部热,摩擦和磨损属性的变化而使基底裸露。考虑了用PVD-TiAlN涂层和未涂层​​硬质合金刀具车削AISI 1045。通过对广泛的切削参数模拟磨损和外部纵向车削实验的比较来验证模拟结果。 (C)2015 Elsevier B.V.保留所有权利。

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