首页> 外文期刊>Procedia Manufacturing >Obstruction-type Chip Breakers for Controllable Chips and Improved Cooling/Lubrication During Drilling – A Feasibility Study
【24h】

Obstruction-type Chip Breakers for Controllable Chips and Improved Cooling/Lubrication During Drilling – A Feasibility Study

机译:用于控制切屑的阻塞式断屑槽,以及在钻孔过程中改善冷却/润滑的可行性研究

获取原文
           

摘要

During drilling, long stringy chips resulting from ductile plastic deformation of engineering materials cause severe chip clogging within the narrow helical flutes and edge chipping, leading to premature tool wear and breakage, poor tool life, poor hole quality and the productivity. Cutting fluid cannot efficiently access to the cutting edge that plays a vital role for improving machining performance. To address the localized heat and chip control issues during drilling, research was previously performed using conventional flood cooling, modified tool geometry, tool coating materials, and internal coolant via through hole(s). This works focuses on design and insertion of some obstruction-type chip breakers such as ribs and pins on the drill flutes and their influence on chip formation behavior. For feasibility experiments, small round pins made of stainless steel at a diameter of about 0.8-0.85 mm diameter are prepared and attached on the electro-discharge machined (EDM) blind holes on twisted drill flutes. By varying spindle speed and feed rate, drilling experiments are performed on two engineering materials including Al6061 and Inconel 625 superalloys at four cutting conditions. Most chips are found to be broken and some split into two fractions due to the pins. Force and power values with pin-inserted drill bits were found to be reduced from 5-9%. This finding indicates that there is a good potential to implement such obstruction-type chip-breakers on the drill flutes for obtaining controllable chip while also improving coolant flow at the cutting edge through the tiny tool-chip interface.
机译:在钻孔过程中,由于工程材料的塑性塑性变形而产生的长条状切屑会导致狭窄的螺旋槽内的严重切屑堵塞和边缘碎裂,从而导致工具过早磨损和破损,工具寿命短,孔质量和生产率降低。切削液无法有效进入切削刃,而切削刃对于提高加工性能起着至关重要的作用。为了解决钻削过程中的局部热量和切屑控制问题,以前使用常规的溢流冷却,改进的刀具几何形状,刀具涂层材料和通孔内部冷却剂进行了研究。这项工作的重点是设计和插入一些阻塞型断屑槽,例如钻屑槽上的肋和销,以及它们对断屑行为的影响。为了进行可行性实验,准备了直径约0.8-0.85 mm的不锈钢制小圆销,并将其固定在扭曲的钻屑槽上的放电加工(EDM)盲孔上。通过改变主轴转速和进给速率,在两种切削条件下对包括Al6061和Inconel 625超级合金在内的两种工程材料进行了钻孔实验。由于针脚的原因,大多数芯片被发现断裂,有的被分成两部分。发现用销插入式钻头的力和功率值从5-9%降低。这一发现表明,在钻屑槽上安装这种阻塞型断屑器具有很大的潜力,以获得可控的切屑,同时还可以通过微小的刀具-切屑界面改善切削刃处的冷却液流量。

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