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Reactive flame spraying of TiC-Fe cermet coating using asphalt as a carbonaceous precursor

机译:以沥青为碳质前体的TiC-Fe金属陶瓷涂层的反应火焰喷涂

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In this paper, a kind of Ti-Fe-C compound powder for reactive flame spray (RFS), using ferrotitanium and asphalt as raw materials, was prepared. The main feature of the process was that asphalt, as a carbonaceous precursor, is used as the origin of carbon. The agglomerated Ti-Fe-C compound spraying powder was prepared by heating a mixture of ferrotitanium and asphalt to pyrolyze the asphalt. The carbon by the pyrolysis of the asphalt was a reactive constituent as well as a binder in the compound powders. TiC/Fe cermet coating was prepared by RFS of the compound powder. XRD and SEM were employed to analyze the phase composition and microstructure of the compound powder and coating. The hardness and wear resistance of the coatings were tested. The results show that: The Ti-Fe-C compound powder has a very tight structure, which can avoid the problem that reactive constituent particles are separated during spraying. The TiC-Fe cermet coating by RFS presents typical morphology of thermal spraying coating with two different laminated layers: one is the composite reinforcement layer in which the round fine TiC particles are dispersed within the alpha-Fe matrix, the other is the layer of TiC accumulation. The TiC/Fe cermet coating by RFS shows high hardness and wear resistance property: the surface hardness of the TiC/Fe cermet coating is 65+6(HR30N). In the same fretting conditions, the wear area of Ni60 coating is much more than that of the TiC/Fe cermet coating. (c) 2005 Elsevier B.V. All rights reserved.
机译:本文以钛铁和沥青为原料,制备了一种用于反应火焰喷涂的Ti-Fe-C复合粉末。该方法的主要特点是将沥青作为碳质前体用作碳的来源。通过加热钛铁和沥青的混合物以热解沥青来制备附聚的Ti-Fe-C化合物喷涂粉末。沥青热解产生的碳是反应活性成分,也是复合粉末中的粘合剂。 TiC / Fe金属陶瓷涂层通过复合粉末的RFS制备。用XRD和SEM对复合粉末和涂层的相组成和微观结构进行了分析。测试了涂层的硬度和耐磨性。结果表明:Ti-Fe-C复合粉末结构非常紧密,可以避免喷涂过程中反应性成分颗粒分离的问题。 RFS的TiC-Fe金属陶瓷涂层具有两种不同的层压层的典型热喷涂涂层形态:一种是复合增强层,其中圆形细小的TiC颗粒分散在α-Fe基体中,另一种是TiC层积累。 RFS制成的TiC / Fe金属陶瓷涂层具有较高的硬度和耐磨性:TiC / Fe金属陶瓷涂层的表面硬度为65 + 6(HR30N)。在相同的微动条件下,Ni60涂层的磨损面积远大于TiC / Fe金属陶瓷涂层的磨损面积。 (c)2005 Elsevier B.V.保留所有权利。

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