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Reactive Plasma Cladding Of Tic/fe Cermet Coating Using Asphalt As A Carbonaceous Precursor

机译:沥青作为碳质前体的Tic / fe金属陶瓷涂层的反应等离子体熔覆

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摘要

A new process of preparing Ti-Fe-C composites powder for reactive plasma cladding, precursor carbonization-composition process, was developed. TiC/Fe cermet coatings were synthesized by reactive plasma cladding of the composite powder. XRD and SEM were employed to analyze the phase composition and microstructure of the composite powder and coating. The hardness and wear resistance of the coating was tested. Results show that: The compound powder prepared by precursor carbonization-composition process has very tight structure, which can avert the question of raw powder breaking-up in cladding process. The TiC/Fe cermet coating by reactive plasma cladding consists of alternate, laminated layers as following: the layers in which the round nanoscale TiC particles are dispersed within the n-Fe matrix and the layers of TiC accumulation. The TiC/Fe cermet coating by reactive plasma cladding shows superior hardness and wear resistance: The surface hardness of the TiC/ Fe cermet coating is 68 ± 6 (HR30 N). In the same fretting conditions, the wear resistance of Ni60 coating is twelve times than that of the TiC/Fe cermet coating.
机译:研制了反应等离子熔覆Ti-Fe-C复合粉末的新工艺,即前驱碳化复合工艺。 TiC / Fe金属陶瓷涂层是通过对复合粉末进行反应性等离子体熔覆而合成的。用XRD和SEM分析了复合粉末和涂层的相组成和微观结构。测试了涂层的硬度和耐磨性。结果表明:前驱体碳化-复合工艺制得的复合粉体结构紧密,可以避免包覆过程中原粉破碎的问题。通过反应性等离子体熔覆的TiC / Fe金属陶瓷涂层由以下交替的叠层组成:圆形纳米TiC颗粒分散在n-Fe基体内的层和TiC堆积层。反应性等离子熔覆的TiC / Fe金属陶瓷涂层具有优异的硬度和耐磨性:TiC / Fe金属陶瓷涂层的表面硬度为68±6(HR30 N)。在相同的微动条件下,Ni60涂层的耐磨性是TiC / Fe金属陶瓷涂层的十二倍。

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