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Experimental Study of Axial Ultrasonic Vibration Turning 316L Stainless Steel
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国家自然科学基金青年科学基金项目(51905363);江苏省自然科学基金(BK20190940);江苏省高等学校自然科学研究面上项目(19KJB460008);中国博士后科学基金(2019M661914)

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    Abstract:

    A single-factor comparison experiment of axial ultrasonic vibration turning and conventional turning of 316L stainless steel was carried out, and the influences of the ultrasonic amplitude and processing parameters (cutting speed, feed) on cutting force and surface roughness were studied. The experimental results show that using axial ultrasonic vibration turning can effectively reduce the cutting force, surface roughness and surface profile height; compared with conventional turning, the smaller the ultrasonic amplitude is, the more obvious the improvement effect of surface roughness is; when the feed rate is increased from 5 μm/r to 25 μm/r, the main cutting force and surface roughness of the axial ultrasonic vibration turning are reduced by 17%~21% and 21%~28% respectively compared with conventional turning; with the increase of cutting speed, the surface roughness and cutting force of the axial ultrasonic vibration turning firstly decrease and then increase, and there is an optimal cutting speed range, and the surface roughness can be reduced by 29.9%, and the cutting force can be reduced by 30.1%.

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朱健,殷振,张坤,张鹏.轴向超声振动车削316L不锈钢试验研究[J].机床与液压英文版,2022,50(24):1-8.

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  • Received:
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  • Online: January 12,2023
  • Published: December 28,2022