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Overlapping tracks processed by TIG melting TiC preplaced powder on low alloy steel surfaces

机译:在低合金钢表面上通过TIG熔化TiC预制粉末处理的重叠轨道

摘要

An overlapping composite track coating was produced on a steel surface by preplacing an 0.5 mm thick layer of TiC powder and then melting using a TIG torch of constant energy input. The influence of the overlapping operation on preheating of the substrate, the dissolution of TiC particulates and the subsequent depth and hardness of the composite layer was analysed. The melt microstructure consisted of both undissolved and partially dissolved TiC particulates, together with a variety of morphologies and sizes of TiC particles precipitated during solidification. Preheating, resulting from the overlapping operation occurred, producing additional melting of the TiC particulates and deeper melt depths but with a reduced volume fraction of TiC precipitates in the subsequent tracks. A maximum hardness of over 800 Hv was developed in the composite layer. The high hardness was unevenly distributed in tracks melted at the initial and final stages, while it varied across the melt depths in other tracks.
机译:通过准备0.5毫米厚的TiC粉末层,然后使用恒定能量输入的TIG焊枪熔化,在钢表面上产生重叠的复合履带涂层。分析了重叠操作对基材的预热,TiC颗粒的溶解以及复合层随后的深度和硬度的影响。熔体的微观结构既包括未溶解的TiC颗粒,也包括部分溶解的TiC颗粒,以及在固化过程中析出的各种形态和尺寸的TiC颗粒。由重叠操作引起的预热发生,产生了TiC颗粒的额外熔化和更深的熔化深度,但在随后的轨迹中TiC沉淀的体积分数减少了。复合层的最大硬度超过800 Hv。高硬度在初始和最终阶段熔化的轨道中分布不均匀,而在其他轨道的熔化深度中却有所变化。

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