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Study on the mechanisms and simulation of the tool wear process in machining of stainless steels with carbide tools

机译:用硬质合金刀具加工不锈钢的刀具磨损过程的机理和模拟研究

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Stainless steel is a kind of difficult-to-cut materials because of its low heat conductance, poor machining quality, serious work hardening, built up edge and tool wear. In this paper, the mechanisms and varying law of tool wear vs. cutting parameters in turning stainless steels with carbide tools is first investigated by performing the systematical cutting experiments and examining with SEM instruments, and a mathematical model is derived which shows that the wear rate of the carbide tools is dependent on the cutting process variables at tool/chip and tool/work interface. In the prediction of these cutting process variables, FEM has advantages over experimental and analytical methods. Hence then the modelling techniques of chip formation process simulation by using the commercial FEM code ABAQUS are discussed. At last, a method to estimate the tool wear with the aid of FEM is proposed. With this method tool wear progress in turning operation is estimated. The predicted flank and crater wear are verified by experimental results.
机译:不锈钢是一种难以切割的材料,因为它的导热性低,加工质量差,造成严重的硬化,建立边缘和工具磨损。在本文中,首先通过进行系统切割实验和SEM仪器检查与碳化物工具转动不锈钢的切割参数的机制和变化规律。推导出磨损率的数学模型来研究。推出了数学模型,显示了磨损率硬质合金工具取决于工具/芯片和工具/工作界面的切割过程变量。在这些切割过程变量的预测中,有限元件具有优于实验和分析方法的优点。因此,讨论了使用商业有限元代码ABAQUS的芯片形成过程仿真的建模技术。最后,提出了一种借助FEM估计工具磨损的方法。通过这种方法,估计转动操作的工具磨损进度。通过实验结果验证预测的侧面和火山口磨损。

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