Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7131387 | Optics and Lasers in Engineering | 2018 | 9 Pages |
Abstract
In this paper, a layer of T15M high speed steel alloy powder was deposited on the Q235 substrate surface by laser cladding technology to ensure appropriate scanning speed range serving the production of paper coating scraper. The microstructure of different scanning speeds (100â¯mm/min, 200â¯mm/min, 300â¯mm/min) laser cladding layers was studied by XRD, SEM, EDS and EPMA e.g. the wear properties of the coatings were studied by sliding wear test. The results show that T15M composite coating comprised martensite, retained austenite and carbides. With the increase of the laser scanning speed, more carbides precipitated and large local segregation decreased in the original austenite grain boundary. Defects like pore, microcrack and inclusion existed in the coating. The coating with a scanning speed of 200â¯mm/min had tiny grain size with high solid solubility compared with the other two coatings. Microhardness of the T15M cladding coating shows the coating with a scanning speed of 200â¯mm/min possessed higher average hardness in the cladding area while the coating with a scanning speed of 100â¯mm/min owned the lowest hardness. Sliding wear test indicates that the wear performance of the coating deteriorated and the debris was mass flaking when the laser scanning speed reached 300â¯mm/min. However, when scanning speed was 200â¯mm/min, the best wear resistance with obvious plastically deformed furrows occurred.
Keywords
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Physical Sciences and Engineering
Engineering
Electrical and Electronic Engineering
Authors
Jiao Xiangyi, Wang Jun, Wang Canming, Gong Zhengqi, Pang Xinxing, Xiong S.M.,