Hsu Wei-Hsuan, Chien Wan-Ting
Department of Mechanical Engineering, National United University, Miaoli 36063, Taiwan.
Materials (Basel). 2016 Nov 24;9(12):957. doi: 10.3390/ma9120957.
Titanium alloys have several advantages, such as a high strength-to-weight ratio. However, the machinability of titanium alloys is not as good as its mechanical properties. Many machining processes have been used to fabricate titanium alloys. Among these machining processes, electrical discharge machining (EDM) has the advantage of processing efficiency. EDM is based on thermoelectric energy between a workpiece and an electrode. A pulse discharge occurs in a small gap between the workpiece and electrode. Then, the material from the workpiece is removed through melting and vaporization. However, defects such as cracks and notches are often detected at the boundary of holes fabricated using EDM and the irregular profile of EDM holes reduces product quality. In this study, an innovative method was proposed to estimate the effect of EDM parameters on the surface quality of the holes. The method combining the finite element method and image processing can rapidly evaluate the stress concentration factor of a workpiece. The stress concentration factor was assumed as an index of EDM process performance for estimating the surface quality of EDM holes. In EDM manufacturing processes, Ti-6Al-4V was used as an experimental material and, as process parameters, pulse current and pulse on-time were taken into account. The results showed that finite element simulations can effectively analyze stress concentration in EDM holes. Using high energy during EDM leads to poor hole quality, and the stress concentration factor of a workpiece is correlated to hole quality. The maximum stress concentration factor for an EDM hole was more than four times that for the same diameter of the undamaged hole.
钛合金具有若干优点,例如高强度重量比。然而,钛合金的可加工性不如其机械性能。已经使用了许多加工工艺来制造钛合金。在这些加工工艺中,电火花加工(EDM)具有加工效率方面的优势。电火花加工基于工件与电极之间的热电能量。在工件与电极之间的小间隙中发生脉冲放电。然后,工件上的材料通过熔化和汽化被去除。然而,在使用电火花加工制造的孔的边界处经常检测到诸如裂纹和缺口之类的缺陷,并且电火花加工孔的不规则轮廓降低了产品质量。在本研究中,提出了一种创新方法来评估电火花加工参数对孔表面质量的影响。结合有限元方法和图像处理的方法可以快速评估工件的应力集中系数。应力集中系数被假定为用于评估电火花加工孔表面质量的电火花加工工艺性能指标。在电火花加工制造过程中,Ti-6Al-4V被用作实验材料,并且作为工艺参数,考虑了脉冲电流和脉冲导通时间。结果表明,有限元模拟可以有效地分析电火花加工孔中的应力集中。在电火花加工过程中使用高能量会导致孔质量较差,并且工件的应力集中系数与孔质量相关。电火花加工孔的最大应力集中系数比相同直径的未损坏孔的最大应力集中系数大四倍以上。