Tan Rongkai, Zhao Xuesen, Sun Tao, Zou Xicong, Hu Zhenjiang
Center for Precision Engineering, Harbin Institute of Technology, Harbin 150001, China.
School of Mechatronics Engineering, Heilongjiang University, Harbin 150080, China.
Materials (Basel). 2019 Sep 21;12(19):3086. doi: 10.3390/ma12193086.
The micro-groove structure on the planar surface has been widely used in the tribology field for improving the lubrication performance, thereby reducing the friction coefficient and wear. However, in the conventional cutting (CC) process, the high-quality, high-precision machining of the micro-groove on titanium alloy has always been a challenge, because considerable problems including poor surface integrity and a high level of the material swelling and springback remain unresolved. In this study, the ultrasonic elliptical vibration assisted cutting (UEVC) technology was employed, which aimed to minimize the level of the material swelling and springback and improve the machining quality. A series of comparative investigations on the surface defect, surface roughness, and material swelling and springback under the CC and UEVC processes were performed. The experimental results certified that the material swelling and springback significantly reduced and the surface integrity obviously improved in the UEVC process in comparison to that in the CC process. Furthermore, for all the predetermined depths of the cut, when the TSR (the ratio of the nominal cutting speed to the peak horizontal vibration speed) was equal to one of twenty four or one of forty eight, the accuracy of the machined micro-groove depth, width and the profile radius reached satisfactorily to 98%, and the roughness values were approximately 0.1 μm. The experimental results demonstrate that the UEVC technology is a feasible method for the high-quality and high-precision processing of the micro-groove on Ti-6Al-4V alloy.
平面表面上的微槽结构已在摩擦学领域中广泛用于改善润滑性能,从而降低摩擦系数和磨损。然而,在传统切削(CC)工艺中,钛合金上微槽的高质量、高精度加工一直是一项挑战,因为包括表面完整性差以及材料隆起和回弹程度高等相当多的问题仍未得到解决。在本研究中,采用了超声椭圆振动辅助切削(UEVC)技术,其目的是尽量减少材料隆起和回弹程度并提高加工质量。对CC和UEVC工艺下的表面缺陷、表面粗糙度以及材料隆起和回弹进行了一系列对比研究。实验结果证明,与CC工艺相比,UEVC工艺中的材料隆起和回弹显著降低,表面完整性明显改善。此外,对于所有预定的切削深度,当TSR(名义切削速度与峰值水平振动速度之比)等于二十四分之一或四十八分之一时,加工的微槽深度、宽度和轮廓半径的精度令人满意地达到98%,粗糙度值约为0.1μm。实验结果表明,UEVC技术是一种用于Ti-6Al-4V合金微槽高质量、高精度加工的可行方法。