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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Fabrication of TIC-Fe cermet coating by plasma spraying of Fe-Ti-C powder using sucrose as carbon source
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Fabrication of TIC-Fe cermet coating by plasma spraying of Fe-Ti-C powder using sucrose as carbon source

机译:以蔗糖为碳源通过等离子喷涂Fe-Ti-C粉末制备TIC-Fe金属陶瓷涂层

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摘要

A mixture of ferrotitanium and sucrose was heated to carbonise the sucrose, so the ferrotitaniumparticles were bound by the carbon obtained from the pyrolysis of sucrose. Then a Fe-Ti-C composite powder was made for reactive thermal spraying, which could avoid separation of Tiand C during spraying. The carbon is a reactive constituent as well as the binder in the compositepowder. While this powder was used to deposit cermet coating by plasma spraying, a mass ofTiC particles were in situ synthesised and uniformly distributed within metallic matrix. Averagemicrohardness and surface hardness of the TiC-Fe coating are about 1672·5 HVO·2 and 91·4 HR(15 N) respectively. Adhesive strength value of the coating reaches 61·86 MPa. Finally,the cermet coating has good wear resistance performance.
机译:加热钛铁和蔗糖的混合物以将蔗糖碳化,因此钛铁颗粒被蔗糖热解获得的碳束缚。然后制备了Fe-Ti-C复合粉末进行反应热喷涂,避免了喷涂过程中Tind C的分离。碳是复合粉末中的反应性成分以及粘合剂。当使用这种粉末通过等离子喷涂沉积金属陶瓷涂层时,大量的TiC颗粒被原位合成并均匀地分布在金属基质中。 TiC-Fe涂层的平均显微硬度和表面硬度分别约为1672·5 HVO·2和91·4 HR(15 N​​)。涂层的粘合强度值达到61·86 MPa。最后,金属陶瓷涂层具有良好的耐磨性能。

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