4.4 Article

Relation Between Tribolayers and Wear Behavior During Dry Sliding of Fe-Al Hot-Dipped Coating

期刊

TRIBOLOGY TRANSACTIONS
卷 60, 期 6, 页码 1078-1087

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/10402004.2016.1259436

关键词

Unlubricated wear; coatings; wear-resistant; ferrous alloys; steel; oxidative wear

资金

  1. National Natural Science Foundation of China [51071078]
  2. Research and Innovation Project for College Graduates of Jiangsu Province [KYLX15_1060]
  3. Jiangsu Province Key Laboratory of High-End Structural Materials [hsm1403]

向作者/读者索取更多资源

An Fe-Al coating consisting of FeAl and Fe3Al was prepared on AISI 1045 steel by hot-dip aluminizing and subsequent high-temperature diffusion. Dry sliding wear tests were performed for Fe-Al coating against AISI 52100 steel under various sliding speeds and loads. During sliding, thin tribolayers formed on the worn surfaces of the Fe-Al coating. After wear, they were observed to be a nonoxidized mechanically mixed layer (MML) at 0.5m/s, an oxide-containing MML at 0.75-2.68m/s, and an in situ oxide layer at 4m/s. The tribolayers presented a close relation with the wear behavior. Because of their different ingredients, structures, and types, the tribolayers resulted in significant changes in the wear behavior. At 0.75-2.68m/s (except for 2.68m/s, 40N), the compact tribooxide layers exerted a protective function for Fe-Al coating to reduce the wear rate. However, for the tribolayers containing no or trace tribooxides at 0.5m/s or the unstable ones formed at 2.68m/s, 40N and 4m/s, no protection was presented. In these cases, the Fe-Al coating would be partly or totally ground off, thus presenting poor wear resistance at high wear rates.

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