Lotfi Mohammad, Amini Saeid
Department of Manufacturing, Faculty of Mechanical Engineering, University of Kashan, Kashan, Iran.
Department of Manufacturing, Faculty of Mechanical Engineering, University of Kashan, Kashan, Iran.
Ultrasonics. 2017 Mar;75:185-193. doi: 10.1016/j.ultras.2016.11.009. Epub 2016 Nov 18.
In this study, 3D finite element simulation of ultrasonically-assisted drilling is carried out to analyze the effect of ultrasonic vibrations on common difficulties existed in conventional drilling. Influence of harmonic movement of drill bit on the formation of built-up edge is experimentally evaluated and also discussed by investigation of heat generation on the tool faces in simulation. At the end, it was revealed that intermittent movement of drill bit in vibration method causes the total time of heat transfer between workpiece and drill bit to be reduced resulting lower built-up edge formation compared to conventional drilling. Moreover, linear motion of cutting tool in the feed direction results in the increase of chip strain and consequently damage value which causes to generation of broken chips.
在本研究中,进行了超声辅助钻孔的三维有限元模拟,以分析超声振动对传统钻孔中存在的常见难题的影响。通过实验评估了钻头的谐波运动对积屑瘤形成的影响,并在模拟中通过研究刀具表面的发热情况进行了讨论。最后发现,与传统钻孔相比,振动法中钻头的间歇运动使工件与钻头之间的总传热时间减少,从而减少了积屑瘤的形成。此外,切削刀具在进给方向上的直线运动会导致切屑应变增加,进而导致损伤值增加,从而产生破碎切屑。