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Improving surface wearing of tools by magnetization when cutting dry

机译:切割干燥时通过磁化改善表面磨损

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This paper presents some experimental findings that contribute to a better understanding of the magnetic field effects on the wear resistance of cutting tools in dry cutting process. Preliminary 3D cutting tests on ferromagnetic carbon steels have shown that the use of an external magnetic field increases the tool lifetime (two to three times) in severe cutting conditions. The results of orthogonal cutting tests carried out on dry cut of magnetized ferromagnetic AISI 1045 steel using nonmagnetic carbide tools are reported in the present paper. Although the mechanisms showing the beneficial use of magnetic treatment seem to be manifold, they can be basically grouped into two categories: (i) a change in the mechanics of cutting (shear angle, shear strain and cutting ratio) and (ii) tribological surface modifications of the tool-chip contact [formation of continuously replaced built-up edge (BUE)] in the presence of magnetic field.
机译:本文介绍了一些实验结果,有助于更好地了解对干切割过程中切割工具耐磨性的磁场影响。铁磁碳钢上的初步3D切削测试表明,在严重的切削条件下使用外部磁场增加了工具寿命(两到三次)。本文报道了使用非磁性碳化物工具的磁化铁磁性AISI 1045钢的干切口进行正交切割试验的结果。虽然显示磁性治疗有益使用的机制似乎是歧管,但它们可以基本上分为两类:(i)切割机械(剪切角,剪切应变和切割比率)和(ii)摩擦学表面的变化工具芯片触点的修改[在存在磁场的情况下形成连续更换的内置边缘(BUE)]。

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