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Relationships of tool wear characteristics to cutting mechanics, chip formation, and surface quality in ultra-precision fly cutting

机译:超精密飞刀切削中刀具磨损特性与切削力学,切屑形成和表面质量的关系

摘要

Although the occurrence of tool wear can affect cutting forces, cutting chip morphologies, and machined surface quality in ultra-precision fly cutting (UPFC), there has been no research in this area due to the complex cutting mechanism of UPFC. The theoretical and experimental research described in this paper was therefore conducted to explore tool wear characteristics in UPFC and their relationship to cutting forces, cutting chip morphologies, and machined surface quality. Results from the study reveal that tool wear characteristics in UPFC include cutting edge fractures, workpiece material welding, wear land formation, sub-wear land formation, and micro-grooves. The cutting edge fractures lead to the formation of ridges on both the cutting chips and machined surface; the material welding increases the thrust force, crushes cutting chips, and deteriorates the machined surface quality; and the formation of wear land on the cutting edge makes the machined surface burred and fuzzy, and the micro-grooves leave some traces on the machined surface. By analyzing the captured cutting force, it is found that the progress of tool wear in UPFC can increase the cutting force and its power spectral density at the natural frequency of the dynamometer. Findings from the research provide rich insight into the relationships of tool wear characteristics to cutting forces, chip formation, and machined surface quality in intermittent cutting processes.
机译:尽管刀具磨损的发生会影响切削力,切削屑的形貌以及超精密飞刀切削(UPFC)中的加工表面质量,但由于UPFC的切削机理复杂,因此尚未对此领域进行研究。因此,本文进行了理论和实验研究,以探索UPFC中的刀具磨损特性及其与切削力,切削屑形态和加工表面质量的关系。研究结果表明,UPFC中的刀具磨损特征包括刃口断裂,工件材料焊接,磨损区形成,次磨损区形成和微槽。切削刃的断裂导致切削屑和加工表面上均形成脊;材料焊接会增加推力,压碎切削屑并降低加工表面质量;切削刃上的磨损区的形成使加工表面产生毛刺和模糊,微沟槽在加工表面上留下一些痕迹。通过分析捕获的切削力,发现在UPFC中刀具磨损的进程可以在测功机的固有频率下增加切削力及其功率谱密度。研究结果为间歇切削过程中刀具磨损特性与切削力,切屑形成和机加工表面质量之间的关系提供了丰富的见解。

著录项

  • 作者

    Zhang G; To S; Zhang S;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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