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Effect of Chamfered PCBN Tool Edge Geometries on Hard Turning Process

机译:倒角PCBN刀具边缘几何对硬通过程的影响

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摘要

By cutting experiments, this paper investigates the effect of various chamfer widths and chamfer angles on cutting force, cutting temperature, and chip morphology when hardened steel GCr15(HRC60+2) is machined with PCBN tools. The research results indicate that with the enlargement of chamfer angle both cutting temperature and main cutting force increase gradually, and especially, radial force increases more significantly. In addition, it is shown that as chamfer width increases both cutting force and cutting temperature rise. The analytical results of chips derived from cutting experiments reveal that chamfer angle being 20°, chips are the thickest and less serrated. Furthermore, chip thickness diminishes gradually with the increment of chamfer width.
机译:通过切割实验,本文研究了各种倒角宽度和倒角角度对切割力,切削温度和芯片形态的影响,当硬化钢GCR15(HRC60 + 2)用PCBN工具加工时。研究结果表明,随着倒角角的放大,切割温度和主要切削力逐渐增加,尤其是径向力更显着。另外,表明倒角宽度增加了切割力和切削温度升高。从切割实验中衍生的芯片的分析结果揭示了倒角角度为20°,芯片是较厚且较少的锯齿状。此外,芯片厚度随倒角宽度的增量逐渐减小。

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