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超声振动辅助铣削加工钛合金表面摩擦磨损性能研究

马超 张建华 陶国灿

表面技术2017,Vol.46Issue(8):115-119,5.
表面技术2017,Vol.46Issue(8):115-119,5.DOI:10.16490/j.cnki.issn.1001-3660.2017.08.019

超声振动辅助铣削加工钛合金表面摩擦磨损性能研究

Wear and Friction Properties of Titanium Alloy Surface Subject to Ultrasonic Vibration Assisted Milling

马超 1张建华 1陶国灿1

作者信息

  • 1. 山东大学机械工程学院高效洁净机械制造教育部重点实验室,济南250061
  • 折叠

摘要

Abstract

The work aims to study advantage of ultrasonic vibration assisted milling titanium alloy in surface morphology as well as wear and friction properties.The ultrasonic vibration amplitude of 0,6 and 12 μm were applied to feed direction of milling to process titanium alloy Ti-6Al-4V,and obtain surface morphology provided with different machining parameters.Micro surface morphology under different conditions was observed with SEM.Wear and friction properties of different surfaces were also tested,and effects of ultrasonic vibration on surface wear and friction properties were analyzed.The surface morphology differed a lot from that of conventional milling after ultrasonic vibration was applied.In addition to feed scratches generated as feed speed was present,the surface morphology included certain regular microtexture.Dry friction and lubricating grease friction were both analyzed during the wear and friction test.Under the condition of dry friction,the effect of ultrasonic vibration on coefficient of friction was more obvious.The coefficient of friction decreased at the amplitude of 6 μm and increased at 12 μm.Under the condition of lubrication friction,the coefficient of friction changed slightly.Surface texture with certain microstructure can be obtained by ultrasonic vibration assisted milling,presence of such microtexture affects wear and friction properties of machined surface,which plays a certain role in studying anti-wear and drag reduction properties of machined surface.

关键词

超声振动辅助铣削/钛合金/表面形貌/摩擦磨损

Key words

ultrasonic vibration assisted milling/titanium alloy/surface morphology/friction and wear

分类

机械制造

引用本文复制引用

马超,张建华,陶国灿..超声振动辅助铣削加工钛合金表面摩擦磨损性能研究[J].表面技术,2017,46(8):115-119,5.

基金项目

国家自然科学基金(51475275) Supported by the National Science Fund of China (51475275) (51475275)

表面技术

OA北大核心CSCDCSTPCD

1001-3660

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