首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Influence of chisel edge axial rake angle on the drilling performance of helical point micro-drill
【24h】

Influence of chisel edge axial rake angle on the drilling performance of helical point micro-drill

机译:凿缘轴向耙角对螺旋点微钻钻井性能的影响

获取原文
获取原文并翻译 | 示例
       

摘要

The chisel-edge axial rake angle has an important effect on the processing performance of helical point micro-drills. In this research, the mathematical modeling for the spiral groove, helical flank, and cross-shaped chisel edge are conducted, and then three types of helical point micro-drills, each having a thinned chisel edge with an unequal axial rake angle, are designed and fabricated. Then, the finite element simulations and processing experiments of micro-drilling are performed separately, and the thrust force, torque, chip morphology, tool wear, and micro-hole machining quality are measured and evaluated. With the rise of the axial rake angle of the chisel edge, the curling degree of the chips and the thrust force were found to decrease owing to the increase of the rake angle along the inner cutting edge. The angle between the tool axis and chip axis was found to gradually decrease due to the reduction of the rake angle gradient along the cutting edge. Additionally, the thickness and width of the uncut chip of the inner cutting edge were found to increase, bringing about the rise in the torque. The wear degree of the micro-drills with a 0° axial rake angle (Type II) was the smallest due to their medium thrust force and torque, and a better micro-hole entrance morphology and minimum roundness were obtained. When drilling to the 30th hole, compared with the micro-drills with a ??10° axial rake angle (Type I) and 10° axial rake angle (Type III), the chisel edge maximum wear width of Type II (δ?=?0°) was respectively reduced by 82.43% and 19.69%, and the micro-hole roundness respectively decreased by 26.7% and 11.33%. The thrust force of Type I (δ?=???10°) was the largest, so it caused greater tool wear and poorer micro-hole quality. The larger torque and lower rigidity of the inner cutting edge of Type III (δ?=?10°) led to poorer drilling performance. Thus, helical point micro-drills having the 0° chisel edge axial rake angle are suitable for drilling 304 austenitic stainless steel.
机译:凿缘轴向耙角对螺旋点微钻的加工性能具有重要影响。在该研究中,设计了用于螺旋槽,螺旋形和交叉凿缘的数学建模,然后设计了三种类型的螺旋点微钻,每个螺旋点微钻具有不等轴向耙角的薄凿边。并制作。然后,测量和评估微钻孔的有限元模拟和微钻孔的处理实验,并且推力,扭矩,芯片形态,工具磨损和微孔加工质量。随着凿子边缘的轴向前角的升高,发现芯片和推力力的卷曲程度由于沿着内切削刃而增加而减小。由于沿着切削刃的耙角梯度的减小,发现刀轴和芯片轴之间的角度逐渐减小。另外,发现内切削刃的未切割芯片的厚度和宽度增加,从而提高扭矩的升高。由于其介质推力和扭矩,带有0°轴向前角(II型)的微钻的磨损程度最小,并且获得了更好的微孔入口形态和最小圆度。钻到第30孔时,与带有的微钻有10°轴向耙角(Ⅰ型)和10°轴向前角(III型),凿子边缘最大磨损宽度(δ= 0°)分别降低82.43%和19.69%,微孔圆度分别降低26.7%和11.33%。 I型(δ= ??? 10°)的推力是最大的,因此它引起了更大的工具磨损和微孔质量较差。 III型内切削刃的较大扭矩和较低刚度导致钻井性能较差。因此,具有0°凿缘轴向前锐角的螺旋点微钻适用于钻孔304奥氏体不锈钢。

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