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TC4合金微动腐蚀行为的研究
引用本文:俞树荣,孙璐,宋伟,何燕妮,景鹏飞.TC4合金微动腐蚀行为的研究[J].稀有金属材料与工程,2019,48(4):1183-1188.
作者姓名:俞树荣  孙璐  宋伟  何燕妮  景鹏飞
作者单位:兰州理工大学
基金项目:国家自然科学基金资助项目(项目号51275225)
摘    要:研究TC4合金在氯化钠溶液中的微动磨损行为,分析不同摩擦副材料下载荷与磨损形貌、摩擦系数和磨损量的关系。结果表明,微动磨损机制是粘着磨损-疲劳脱层-磨粒磨损和腐蚀磨损;腐蚀介质下摩擦系数曲线比干空气的低且平稳;Al_2O_3/TC4摩擦系数曲线波动较大,载荷较大时由微动转为往复滑动。Si_3N_4/TC4磨损量和磨损率均比GCr15/TC4的大,GCr15/TC4耐磨性优于Si_3N_4/TC4,GCr15球作摩擦副材料时磨损性能最好。TC4在氯化钠溶液中的失重是由机械磨损、腐蚀和磨损的交互作用造成的。

关 键 词:TC4合金  微动磨损  微动腐蚀  氯化钠溶液  交互作用
收稿时间:2017/8/28 0:00:00
修稿时间:2017/10/25 0:00:00

Study on Fretting Corrosion Wear Behaviors of TC4 Alloy
Yu Shurong,Sun Lu,Song Wei,He Yanni and Jing Pengfei.Study on Fretting Corrosion Wear Behaviors of TC4 Alloy[J].Rare Metal Materials and Engineering,2019,48(4):1183-1188.
Authors:Yu Shurong  Sun Lu  Song Wei  He Yanni and Jing Pengfei
Affiliation:College of Petrochemical Technology,Lanzhou University of Technology,College of Petrochemical Technology,Lanzhou University of Technology,College of Petrochemical Technology,Lanzhou University of Technology,College of Petrochemical Technology,Lanzhou University of Technology,College of Petrochemical Technology,Lanzhou University of Technology
Abstract:Abstract: Fretting wear test of TC4 alloy in sodium chloride solution are studied, the effects of loads on wear scars, the friction coefficient and the wear resistance are investigated under different friction counterparts. Results show that the wear mechanism attributes adhesive wear to fatigue and peeling with abrasive wear, and corrosion wear appears on the surface; The friction coefficient decreases under the sodium chloride solution and the curves keeps stable; The friction coefficient curves of Al2O3\TC4 fluctuates greatly and the wear mechanism turns fretting into reciprocating sliding under the large loads. The wear rate and wear resistance of Si3N4\TC4 is larger than that of GCr15\TC4, which means the abrasion performance of GCr15\TC4is better than that of Si3N4\TC4 and GCr15 ball performed the best wear properties under the corrosive wear. The agravity of TC4 alloy is caused by wear and the interaction of wear and corrosion in sodium chloride solution.
Keywords:TC4 alloy  fretting wear  fretting corrosion  sodium chloride solution  synergy
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