可加工性
机械加工
材料科学
航空航天
表面粗糙度
合金
超声波传感器
表面完整性
钛合金
冶金
软化
表面光洁度
刀具磨损
机械工程
复合材料
声学
工程类
航空航天工程
物理
作者
Javier Dominguez-Caballero,Sabino Ayvar-Soberanis,Jin Kim,Anish Roy,Lin Li,David Curtis
标识
DOI:10.1007/s00170-022-10764-5
摘要
Abstract The machinability of Ti-6Al-4V alloy has been a constant challenge in the industry, although the material is widely used in the aerospace and medical industries due to its mechanical properties, particularly its strength-to-weight ratio. The current research presents a hybrid laser- and ultrasonic-assisted machining (LUAM) technique to improve the machinability of Ti-6Al-4V alloy in a turning process. This is compared with ultrasonic-assisted machining (UAM), laser-assisted machining (LAM), and convectional turning (CT). The results reveal that UAM and LAM can reduce the cutting forces and surface roughness (Ra) compared to the CT. However, these are achieved mainly at the lowest range of cutting speeds. The hybrid LUAM process demonstrates process improvement with wider range of cutting speeds and depths of cut, which is achieved due to the combined force reduction and thermal softening effect by the hybrid process.
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