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Microstructure Evolution of TiC Particles In Situ Synthesized by Laser Cladding

机译:激光熔覆原位合成TiC颗粒的微观结构演变

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摘要

In this paper, a TiC reinforcement metal matrix composite coating is produced using nickel and graphite mixing powder on the surface ofTi-6Al-4V alloy by laser radiation. The microstructure of the coatings is investigated by XRD, SEM and EDS. Results show that most of the TiC phase is granular, with a size of several micrometers, and a few of the TiC phases are petals or flakes. At the cross-section of the coatings, a few special TiC patterns are found and these TiC patterns do not always occur at the observed cross-section. The even distribution of the TiC phase in the coatings confirms that the convection of the laser-melted pool leads to the homogenization of titanium atoms from the molten substrate, and carbon atoms from the preplace powder layer, by the mass transfer. The characteristics of the TiC pattern confirm that the morphology and distribution of the primary TiC phase could be influenced by convection. Two main reasons for this are that the density of the TiC phase is lower than the liquid melt, and that the primary TiC phase precipitates from the pool with a high convection speed at high temperature.
机译:本文采用镍和石墨混合粉通过激光辐射在Ti-6Al-4V合金表面制备TiC增强金属基复合涂层。通过XRD,SEM和EDS研究了涂层的微观结构。结果表明,大多数TiC相为颗粒状,尺寸为几微米,而少数TiC相为花瓣或片状。在涂层的横截面上,发现了一些特殊的TiC图案,这些TiC图案并不总是出现在观察到的横截面上。 TiC相在涂层中的均匀分布证实了激光熔池的对流会导致传质过程中熔融基材中的钛原子和预制粉层中的碳原子均质化。 TiC图案的特性证实对流可影响主要TiC相的形态和分布。造成这种情况的两个主要原因是,TiC相的密度低于液态熔体,并且初级TiC相在高温下以高对流速度从熔池中析出。

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