Measurement and analysis of thrust force and torque in friction drilling of difficult-to-machine materials

被引:0
作者
Shayan Dehghan
M. I. S. Ismail
M. K. A. Ariffin
B. T. H. T. Baharudin
机构
[1] Universiti Putra Malaysia (UPM),Department of Mechanical and Manufacturing Engineering, Faculty of Engineering
来源
The International Journal of Advanced Manufacturing Technology | 2019年 / 105卷
关键词
Friction drilling; AISI304; Ti-6Al-4V; Inconel718; Thrust force; Torque; Temperature;
D O I
暂无
中图分类号
学科分类号
摘要
Thrust force and torque applying in friction drilling contain some important information related to sufficient heat generation which can improve product quality and reduce tool wear. This concern becomes more challengeable when friction drilling is applied on difficult-to-machine materials. In the present study, temperature, thrust force, and torque for friction drilling of difficult-to-machine materials namely AISI304 and Ti-6Al-4V and Inconel718 are measured and analyzed. It contributes to provide an enhanced understanding of how friction in workpiece-tool interface increases the temperature. Subsequently, the sufficient heat generation, the effective thrust force, and torque that are needed to form a proper bushing with optimum features can be predicted. It is found that increasing in number of drilled holes reduces the quality of bushing shape. It is observed that thermal conductivity of workpiece material has significant effect on bushing formation quality. The findings indicate that better bushing formation and longer tool life are obtained from friction drilling of Inconel718. The microstructural changes of workpiece and tool wear are also analyzed and a relationship between them, temperature, thrust force, and torque, is explored. The maximum tool wear is observed on conical region where the process is in critical cycle time and temperature is on peak point.
引用
收藏
页码:2749 / 2769
页数:20
相关论文
共 67 条
  • [1] Streppel AH(1983)Flowdrilling: a preliminary analysis of a new bush-making operation CIRP Ann Manuf Technol 32 167-171
  • [2] Kals HJJ(2005)Microstructural alterations associated with friction drilling of steel, aluminum, and titanium J Mater Eng Perform 14 647-653
  • [3] Miller SF(2006)Experimental and numerical analysis of the friction drilling process J Manuf Sci Eng 128 802-810
  • [4] Blau PJ(2008)Machining characteristic study of friction drilling on AISI 304 stainless steel J Mater Process Technol 207 180-186
  • [5] Shih AJ(2010)Friction drilling of stainless steels pipes AIP Conf Proc 1315 1187-1192
  • [6] Miller SF(2013)An experimental investigation of hole geometry in friction drilling Mater Manuf Process 28 470-475
  • [7] Li R(2015)Effect of thermal assistance on the joint quality of Al6063-T5A during flow drill screwdriving J Manuf Sci Eng 137 1-8
  • [8] Wang H(2016)Combination of friction drilling and form tapping processes on dissimilar materials for making nutless joints Proc Inst Mech Eng B J Eng Manuf 232 1007-1020
  • [9] Shih AJ(2011)Optimization in thermal friction drilling for SUS 304 stainless steel Int J Adv Manuf Technol 53 935-944
  • [10] Chow HM(2012)Environmentally conscious machining of difficult-to-machine materials with regard to cutting fluids Int J Mach Tools Manuf 57 83-101