Zheng Yaohui, Huang Wentao, Liu Yangyang, Duan Pengchao, Wang Yingxiao
School of Engineering Training Center, Shenyang Aerospace University, Shenyang 110136, China.
Key Laboratory of Rapid Development & Manufacturing Technology for Aircraft, Shenyang Aerospace University, Ministry of Education, Shenyang 110136, China.
Micromachines (Basel). 2024 Nov 29;15(12):1458. doi: 10.3390/mi15121458.
In Ti-6Al-4V titanium alloy micro-machining, since the uncut chip thickness (UCT) is comparable to the radius of the tool cutting edge, there exists a minimum uncut chip thickness (MUCT), and when the UCT is smaller than the MUCT, the plowing effect dominates the cutting process, which seriously affects the machined surface quality and tool life. Therefore, the reliable prediction of the MUCT is of great significance. This paper used Deform to establish an orthogonal cutting simulation model, studied the effect of the dead metal zone (DMZ) on the micro-cutting material flow, determined the DMZ range, and proposed a new method for determining the MUCT based on the DMZ. Cutting experiments were conducted to verify the accuracy of the simulation model firstly by cutting force, and then confirming the accuracy of the DMZ-based MUCT determination method through chip analysis and surface quality analysis. Finally, the effects of different cutting conditions on DMZ and MUCT were further investigated using the proposed DMZ-based MUCT determination method. The results show that the MUCT of Ti-6Al-4V titanium alloy is 4.833 μm for a tool cutting edge radius of 40 μm and a cutting speed of 10 m/min. The DMZ boundary can be used as the boundary of micro-cutting plastic deformation, and the ratio of MUCT to cutting edge radius, / will gradually decrease with the increase in the tool cutting edge radius and the cutting speed.
在Ti-6Al-4V钛合金微加工中,由于未切削切屑厚度(UCT)与刀具切削刃半径相当,存在最小未切削切屑厚度(MUCT),当UCT小于MUCT时,耕犁效应主导切削过程,这严重影响加工表面质量和刀具寿命。因此,可靠预测MUCT具有重要意义。本文利用Deform建立正交切削仿真模型,研究死区(DMZ)对微切削材料流动的影响,确定DMZ范围,并提出一种基于DMZ确定MUCT的新方法。进行切削实验,首先通过切削力验证仿真模型的准确性,然后通过切屑分析和表面质量分析确认基于DMZ的MUCT确定方法的准确性。最后,利用所提出的基于DMZ的MUCT确定方法进一步研究不同切削条件对DMZ和MUCT的影响。结果表明,对于刀具切削刃半径为40μm、切削速度为10m/min的情况,Ti-6Al-4V钛合金的MUCT为4.833μm。DMZ边界可作为微切削塑性变形的边界,MUCT与切削刃半径的比值/将随着刀具切削刃半径和切削速度的增加而逐渐减小。