首页> 外文期刊>Engineering journal >Experimental Study & Optimization of Machining Parameters in Turning of AISI 1040 Steel with Micro-grooved WC Cutting Tools
【24h】

Experimental Study & Optimization of Machining Parameters in Turning of AISI 1040 Steel with Micro-grooved WC Cutting Tools

机译:微槽WC切削刀具车削AISI 1040钢的加工参数的实验研究与优化

获取原文
           

摘要

In dry turning, control over chip formation and the need for the automated machining lead to an advancement in cutting tools. Such concern towards chip breakability is necessary in reducing tool wear, tool tip temperatures and surface roughness of workpiece material. The present study proposes a new development in the traditionally available cutting tools, which acts like a chip breaker. A series of micro-grooves are machined on the rake face of Tungsten carbide (WC) cutting tools using sinker Electric Discharge Machine (EDM). These micro-grooved tools are used to dissolve long continuous chips and heat from the cutting zone in the dry machining of AISI 1040 steel. The results of micro-grooved cutting tools have shown improvement in reducing the tool tip temperatures and surface roughness compared to the conventional cutting tools. The consolidated chip flow phenomenon of plain WC tools is used to decide the location of micro-grooves on the tool rake face. A Taguchi orthogonal array is used to design an experimental layout with minimum number of repetitions in the experiments. Signal-to-noise? ratios and ANOVA is used to understand and identify the significant factors & their level among the input variables on responses.From the results, it is identified that the cutting speed is the most influencing parameter for tool tip temperature at level 1 (i.e.112 m/min) and surface roughness at level 5 (i.e.720 m/min).
机译:在干式车削中,对切屑形成的控制以及对自动加工的需求导致了切削刀具的发展。对切​​屑断裂性的这种关注对于减少工具磨损,工具尖端温度和工件材料的表面粗糙度是必要的。本研究提出了一种传统上可用的切削工具的新发展,这种切削工具起着断屑器的作用。使用沉降片放电机(EDM)在碳化钨(WC)切削刀具的前刀面上加工出一系列微细槽。这些微槽工具用于在AISI 1040钢的干式加工中溶解长的连续切屑和来自切削区域的热量。与常规切削刀具相比,微槽切削刀具的结果显示出在降低刀尖温度和表面粗糙度方面的改进。普通WC工具的固结切屑流动现象用于确定工具前刀面上的微槽位置。 Taguchi正交阵列用于设计实验布局,并在实验中减少重复次数。信噪比?比率和方差分析用于理解和识别响应中输入变量中的重要因素及其水平。从结果中可以看出,切削速度是1级刀尖温度(即112 m / min)和5级表面粗糙度(即720 m / min)。

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