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Effect of ground surface roughness of ball end mill on cutting characteristics

机译:滚珠机端研磨机地面粗糙度对切割特性的影响

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The results of an investigation on the effects of surface roughness on ball end mill are reported here. We used grindwheels with varying in grit between #325 and #1000 to grind ball end mill's rake surface and flank surface, and then coated the end mill with TiAlN film, CrSiN film, and TiSiN film. We measured the state of adhesion on the films on the rake surface in continuous lathe milling as well as the surface roughness and cutting force. The results show that, in generating the cutting cutoff, the optimum grinding roughness differs between the near vicinity of the cutting-edge ridgeline and the part of the rake surface that is further away from the cutting-edge ridgeline. From that fact, we understand that the cutting characteristics of the work material and the surface area of the rake surface that is in contact with the cutting cutoff exert their respective influences during the cutting.
机译:这里报道了对滚珠终端轧机表面粗糙度影响的研究结果。我们在#325和#1000之间的砂砾中使用了磨轮,以研磨球终铣刀的耙表面和侧面和侧面,然后用TiAln膜,克刺膜和Tisin膜涂覆端磨机。我们在连续车床铣削中测量了耙表面上薄膜上的粘合状态以及表面粗糙度和切割力。结果表明,在产生切削截止方面,最佳研磨粗糙度在切割边缘脊线附近的近附近和进一步远离前缘脊线的耙表面的一部分之间不同。从该事实来看,我们理解,与切割切断接触的工作材料的切割特性和与切割切断接触的耙表面的表面积施加各自的影响。

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