期刊论文详细信息
Chinese Journal of Mechanical Engineering
Impact Fretting Wear Behavior of Alloy 690 Tubes in Dry and Deionized Water Conditions
Hao Qian1  Li-Chen Tang1  Zhen-Bing Cai2  Min-Hao Zhu2  Jin-Fang Peng2 
[1] Shanghai Nuclear Engineering Research and Design Institute, 200233, Shanghai, China;Traction Power State Laboratory, Southwest Jiaotong University, 610031, Chengdu, China;
关键词: Impact fretting wear;    Alloy 690;    Oxidative wear;    Crack;    Fracture appearance;   
DOI  :  10.1007/s10033-017-0147-8
来源: Springer
PDF
【 摘 要 】

The impact fretting wear has largely occurred at nuclear power device induced by the flow-induced vibration, and it will take potential hazards to the service of the equipment. However, the present study focuses on the tangential fretting wear of alloy 690 tubes. Research on impact fretting wear of alloy 690 tubes is limited and the related research is imminent. Therefore, impact fretting wear behavior of alloy 690 tubes against 304 stainless steels is investigated. Deionized water is used to simulate the flow environment of the equipment, and the dry environment is used for comparison. Varied analytical techniques are employed to characterize the wear and tribochemical behavior during impact fretting wear. Characterization results indicate that cracks occur at high impact load in both water and dry equipment; however, the water as a medium can significantly delay the cracking time. The crack propagation behavior shows a jagged shape in the water, but crack extended disorderly in dry equipment because the water changed the stress distribution and retarded the friction heat during the wear process. The SEM and XPS analysis shows that the main failure mechanisms of the tube under impact fretting are fatigue wear and friction oxidation. The effect of medium(water) on fretting wear is revealed, which plays a potential and promising role in the service of nuclear power device and other flow equipments.

【 授权许可】

CC BY   

【 预 览 】
附件列表
Files Size Format View
RO202112165623756ZK.pdf 9390KB PDF download
  文献评价指标  
  下载次数:13次 浏览次数:16次