基于机械和热负荷降低策略的硬模具钢加工的高速切削策略研究

Ying Tang , Hongsheng Guo
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引用次数: 2

摘要

讨论了高速硬加工过程中切削刃受机械载荷和热载荷影响后的刀工啮合情况。采用实验和几何分析方法对接触情况进行了详细的研究。采用镀altin微晶硬质合金立铣刀对淬硬模具钢进行了切削试验。在此基础上,提出了一种通用的高速硬加工策略,旨在消除高速加工(HSM)硬加工过程中过度啮合的情况。该策略包括识别过度啮合情况发生的前置过载区域的程序,然后创建可靠的刀具路径,这具有降低切削负荷的效果,以消除前置过载区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
HSM strategy study for hardened die and mold steels manufacturing based on the mechanical and thermal load reduction strategy

The paper discussed cutter-work engagement situation hidden behind the mechanical and thermal load effect on cutting edges during high speed hard machining process. The engagement situation was investigated in great detail using experimental and geometrical analytic measures. Experiments were conducted using AlTiN-coated micro-grain carbide end mill cutters to cut hardened die steel. On the basis, a general high speed hard machining strategy, which aimed at eliminating excessive engagement situation during high-speed machining (HSM) hard machining, was proposed. The strategy includes the procedures to identify prone-to-overload areas where excessive engagement situation occurs and then to create a reliable tool path, which has the effect of cutting load reduction to remove the prone-to-overload areas.

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