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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Investigation and FEM-based simulation of tool wear in turning operations with uncoated carbide tools
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Investigation and FEM-based simulation of tool wear in turning operations with uncoated carbide tools

机译:使用非涂层硬质合金刀具进行车削加工中刀具磨损的研究和基于FEM的模拟

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摘要

This paper deals with tool wear in turning using uncoated carbide tools. The main purpose of this work is to define a FEM-based procedure for forecasting tool wear progression during cutting operations. Deform 3D FEM software was used to simulate the cutting process and a suitable subroutine was implemented into the software in order to evaluate the tool wear and to update the tool geometry. The tool wear value is estimated according to well-known analytical models. Previous performed researches showed some problems in the correct identification of crater depth and position when using analytical tool wear models based only on abrasive or diffusive tool wear mechanisms. A new analytical tool wear model, taking into account the influence of both abrasive and diffusive tool wear mechanisms for overcoming these limits, was set-up and implemented by the authors. Experimental tests, performed turning AISI 1045 steel bars with ISO P40 uncoated tools, were used to calibrate and validate the FEM model. The comparison between FEM and experimental results showed good agreement. Once validated, the FEM model was used for analysing the influence of tool wear on the actual tool rake angle and on the tool stresses.
机译:本文探讨了使用非涂层硬质合金刀具进行车削时的刀具磨损。这项工作的主要目的是定义一个基于FEM的程序,以预测切削操作过程中的刀具磨损进度。使用Deform 3D FEM软件模拟切削过程,并在软件中实现了合适的子程序,以评估刀具磨损并更新刀具几何形状。根据众所周知的分析模型估算刀具磨损值。先前进行的研究表明,当使用仅基于磨料或扩散性刀具磨损机制的分析刀具磨损模型时,在正确识别凹坑深度和位置方面存在一些问题。作者建立并实施了一种新的分析工具磨损模型,该模型考虑了磨料和扩散性工具磨损机制对克服这些限制的影响。实验测试是使用未涂覆ISO P40的工具对AISI 1045钢筋进行车削,用于校准和验证FEM模型。有限元与实验结果的比较表明吻合良好。一旦验证,FEM模型将用于分析刀具磨损对实际刀具前角和刀具应力的影响。

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