首页> 外文期刊>Transactions of Nonferrous Metals Society of China >Morphological evolution of primary TiC carbide in laser clad TiC reinforced FeAl intermetallic composite coating
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Morphological evolution of primary TiC carbide in laser clad TiC reinforced FeAl intermetallic composite coating

机译:激光熔覆TiC增强FeAl金属间复合涂层中初生TiC碳化物的形貌演变

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摘要

The novel rapidly solidified TiC/FeAl composite coatings were fabricated by laser cladding on the substrate of 1Cr18Ni9Ti stainless steel, particular emphasis has been placed on the growth morphologies of TiC carbide and its growth mechanism under a constant solidification conditions. Results show that the growth morphology of TiC carbide strongly depends upon the nucleation process and mass transportation process of TiC forming elements in laser melt pool. With increasing amount of titanium and carbon in melt pool, the growth morphology of TiC carbide changes from block-like to star-like and well-developed dendrite. As the amount of titanium and carbon increases further, TiC carbide particles are found to be irregular polyhedral block. Although the growth morphologies of TiC are various, their advancing fronts are all faceted, illustrating that TiC carbide grows by the mechanism of lateral ledge growth.
机译:通过激光熔覆在1Cr18Ni9Ti不锈钢基体上制备新型快速凝固的TiC / FeAl复合涂层,重点研究了TiC碳化物在恒定凝固条件下的生长形态及其生长机理。结果表明,TiC碳化物的生长形态在很大程度上取决于激光熔池中TiC形成元素的成核过程和传质过程。随着熔池中钛和碳含量的增加,TiC碳化物的生长形态从块状转变为星形和发达的枝晶。随着钛和碳含量的进一步增加,发现TiC碳化物颗粒是不规则的多面体嵌段。尽管TiC的生长形态多种多样,但它们的前进前沿都是多面的,这说明TiC碳化物是通过横向壁架生长机制生长的。

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