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首页> 外文期刊>Tribology International >Improvement of Ti-6Al-4V surface integrity through the use of high-speed ultrasonic vibration cutting
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Improvement of Ti-6Al-4V surface integrity through the use of high-speed ultrasonic vibration cutting

机译:通过使用高速超声波振动切割改善Ti-6AL-4V表面完整性

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摘要

High-speed ultrasonic vibration cutting (HUVC) has been demonstrated to be a good machining technique for titanium alloys. However, although surface integrity is known to strongly impact the service performance of components (e.g., wear resistance and fatigue performance), the surface integrity of titanium alloys machined via HUVC has not been investigated. In this study, the effects of HUVC on various aspects of the surface integrity of Ti-6Al-4V were investigated. First, the ironing effect of HUVC was analyzed. Then, an experiment for comparing the HUVC technique to a conventional cutting (CC) technique was carried out under the conditions of a cutting speed range of 100-400 m/min. The specimens subjected to HUVC were found to have lower surface roughness, a more uniform surface texture, a thicker subsurface deformation layer (27-82 mu m), and higher surface microhardness (413-472 HV0.2) and compressive residual stress (-574 to -925 MPa in the feed direction) than those subjected to CC.
机译:高速超声振动切削(HUVC)已被证明是一种良好的钛合金加工技术。然而,尽管已知表面完整性会强烈影响部件的使用性能(例如耐磨性和疲劳性能),但尚未研究通过HUVC加工的钛合金的表面完整性。在本研究中,研究了HUVC对Ti-6Al-4V表面完整性各个方面的影响。首先,分析了HUVC的熨烫效果。然后,在切割速度为100-400m/min的条件下,进行了HUVC技术与传统切割(CC)技术的对比试验。发现接受HUVC的试样具有较低的表面粗糙度、更均匀的表面纹理、更厚的地下变形层(27-82μm),表面显微硬度(413-472 HV0.2)和压缩残余应力(进给方向上为-574至-925 MPa)均高于CC。

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