![]() |
个人信息Personal Information
教授 博士生导师
招生学科专业:
机械工程 -- 【招收博士、硕士研究生】 -- 机电学院
航空宇航科学与技术 -- 【招收硕士研究生】 -- 机电学院
机械 -- 【招收博士、硕士研究生】 -- 机电学院
毕业院校:西安交通大学
学历:西安交通大学
学位:工学博士学位
所在单位:机电学院
办公地点:机电学院15-336
联系方式:025-84891077
电子邮箱:
Experiment on cutting performance of textured cemented carbide tools with various wettability levels
点击次数:
所属单位:机电学院
发表刊物:INTERNATIONAL JOURNAL OF ADVANCED MANUFACTURING TECHNOLOGY
关键字:Laser texturing Wettability Micro-/nano-structure Cemented carbide tool Cutting performance
摘要:This study provides a novel way to research the drag friction of tools and shows significant potential in reducing tool wear and prolonging tool life. First, we fabricated amphiphobic micro-/nano-structures on the cemented carbide tool surface by a pulsed fiber laser. Various kinds of texture morphology could be obtained by controlling the laser parameters, including laser energy density (D), scanning speed (V), and the scanning number of the laser beam (N). Then, the contact angles (CA) were tested for the untextured, micro-textured, and micro-/nano-textured tools. The consequences indicated that the micro-/nano-textured tool showed the lowest wettability. The water contact angle (WCA) and oil contact angle (OCA) of it could, respectively, be achieved to 147 +/- 3 degrees and 135 +/- 3 degrees. Finally, cutting performance and anti-friction mechanism of textured cemented carbide tools with various wettability levels were experimentally investigated by cutting the 15-5PH stainless steel with solution treatment. The results indicated that in the state of minimal quantity of lubrication (MQL), the cutting force, the average friction coefficient on the rake face, and the cutting temperature could be reduced by the micro-/nano-texture with low wettability on the tool surface. Simultaneously, we analyzed the mechanism of formation of micro-/nano-bulge structures on the tool surface.
ISSN号:0268-3768
是否译文:否
发表时间:2019-07-01
合写作者:Li, Hanlong,杨吟飞,Xiao, Sinong,Song, Xiaolu,李亮,梁凤丽
通讯作者:郝秀清,杨吟飞,郝秀清