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Microstructure and wear properties of TiC-VC reinforced iron based hardfacing layers

机译:TiC-VC增强铁基堆焊层的组织和磨损性能

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TiC-VC reinforced Fe based hardfacing layers were obtained by shielded manual arc welding (SMAW) of which H08A rare electrodes were coated by different amounts of ferrotitanium (FeTi), ferrovanadium (FeV) and graphite. The microstructure of the hardfacing layers was investigated by means of scanning electron microscopy (SEM), transmission electron microscopy (TEM) and electron probe microanalysis (EPMA). The thermodynamics and effect of elements on the carbides were also discussed. It was shown that TiC-VC carbides could be formed during arc welding. The composition and amount of flux evidently affect the microstructure and properties of the coatings. Good crack resistance and higher hardness of the harfacing layer could be obtained, while the amounts of graphite, FeTi and FeV were controlled within a range of 8-10%, 15-18% and 8-12% respectively. TiC-VC reinforced Fe based hardfacing layers possess much greater wear resistance and a smaller friction coefficient than 1045 steel substrate.
机译:通过屏蔽手工电弧焊(SMAW)获得TiC-VC增强的铁基表面硬化层,其中H08A稀有电极用不同量的钛铁(FeTi),钒铁(FeV)和石墨涂覆。通过扫描电子显微镜(SEM),透射电子显微镜(TEM)和电子探针显微分析(EPMA)研究了堆焊层的微观结构。还讨论了元素的热力学和对碳化物的影响。结果表明,在电弧焊过程中会形成TiC-VC碳化物。助焊剂的组成和量明显影响涂层的微观结构和性能。堆焊层具有良好的抗裂性和较高的硬度,而石墨,FeTi和FeV的含量分别控制在8-10%,15-18%和8-12%的范围内。 TiC-VC增强的铁基堆焊层比1045钢基材具有更大的耐磨性和更小的摩擦系数。

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