...
首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Progression of tool deterioration and related cutting force during milling of 718Plus superalloy using cemented tungsten carbide tools
【24h】

Progression of tool deterioration and related cutting force during milling of 718Plus superalloy using cemented tungsten carbide tools

机译:用硬质合金刀具铣削718Plus高温合金期间刀具劣化和相关切削力的进展

获取原文
获取原文并翻译 | 示例
           

摘要

Understanding how tool deterioration affects total force (F) during milling of Ni-based superalloys is important for the improvement of machinability of the alloys and serves to clarify whether and how an F-based method for monitoring tool deterioration is possible. In this study, a series of milling experiments have been conducted on 718Plus Ni-based alloy using cemented tungsten carbide tool inserts. F was monitored, and the conventional flank wear (VB (max) ) to represent insert deterioration was measured. As would be expected, the general trend of how F increased as the number of milling pass (N (pass) ) increased agreed with the general trend of increasing VB (max) as N (pass) increased. But the F-VB (max) plot has shown a rather poor F-VB (max) relationship. This was the results of the different modes of tool deterioration affecting VB (max) differently, but VB (max) did not represent fully the true cutting edge of the deteriorating tool insert. Chipping and breakage of the inserts confined in the cutting edge area, resulting in the significant blunting of the edge, caused a high rate of F increase as VB (max) increased. Fracturing along the flank face of thin pieces effectively increased VB (max) without increasing the cutting edge area and without further blunting the edge, thus no increase in F was required. That the high rate, meaning high Delta F/Delta VB (max) , results from the effect of edge deterioration/blunting on reducing the effective rake angle and thus increasing F is suggested and discussed.
机译:了解在镍基高温合金的铣削过程中刀具劣化如何影响总力(F)对于改善合金的切削性非常重要,并有助于阐明是否以及如何以F基方法监控刀具劣化。在这项研究中,使用硬质合金碳化钨刀具刀片对718Plus Ni基合金进行了一系列铣削实验。监测F,并测量代表镶刃劣化的常规后刀面磨损(VB(max))。可以预见,随着铣削次数(N(pass))的增加,F如何增加的总体趋势与随着N(pass)的增加VB(max)的总体趋势一致。但是F-VB(最大)图显示了相当差的F-VB(最大)关系。这是不同的刀具退化模式对VB(max)的影响不同的结果,但是VB(max)不能完全代表劣化的刀具刀片的真实切削刃。限制在切削刃区域中的刀片的崩裂和破裂,导致切削刃明显变钝,导致随着VB(max)的增加,F的增加率很高。沿着薄片的侧面进行压裂可以有效地增加VB(最大值),而不会增加切削刃的面积,也不会进一步使刃口变钝,因此不需要增加F。提出并讨论了高速率,即较高的Delta F / Delta VB(max),是由于边缘劣化/钝化对减小有效前角并因此增大F所造成的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号