可加工性
钛合金
振动
材料科学
有限元法
残余应力
机械加工
结构工程
弹性模量
复合材料
冶金
合金
工程类
声学
物理
作者
Shiyu Li,Jinguo Han,Haiqiang Yu,Jinhui Wang,Mingming Lu,Yebing Tian,Jieqiong Lin
出处
期刊:Micromachines
[Multidisciplinary Digital Publishing Institute]
日期:2022-08-08
卷期号:13 (8): 1278-1278
被引量:9
摘要
Titanium alloy is a typical difficult-to-machine material with features of superhigh strength and hardness, and low elastic modulus. It is difficult to guarantee the processing quality and efficiency due to the high cutting force and tool wear in conventional cutting. Elliptical vibration cutting (EVC) as an effective method can improve the machinability of titanium alloys. In this paper, the finite element method (FEM) was adopted to study the cutting force and residual stress of 3D EVC in machining of Ti6Al4V. The Johnson-Cook constitutive model was utilized to illustrate the plastic behavior of Ti6Al4V alloy. The kinematics of the 3D EVC was described, and then the influence of various cutting speeds, vibration amplitudes, vibration frequencies and depths of cut on cutting force and residual stress were carried out and analyzed. The simulation results show that the cutting speed, vibration amplitude a, vibration frequency and depth of cut have larger effect on principal force. In addition, the compressive stress layer can be easily obtained near the machined surface by using 3D EVC, which is helpful to improve the working performance of workpiece.
科研通智能强力驱动
Strongly Powered by AbleSci AI