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Microstructure Characteristic of TiCReinforced Cast Steel after GTAW Remelting

机译:GTAW重熔后TiC增强铸钢的组织特征

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In this study, low-carbon cast steel was reinforced with TiC by SHS-B method, also known as combustion synthesis during casting method. The composite zone was then subjected to surface remelting by Gas Tungsten Arc Welding (GTAW) method. The remelting operation was realized manually, at 150 A current magnitude. Microstructure, phase composition and hardness of remelted zone were investigated. XRD results reveal that the phases of the composite zone in initial state consist of TiC and Feα. Surface remelting resulted in formation of thick layers containing TiC carbides, Feα and Feγ. Microstructural examination has shown strong refinement of titanium carbides in remelted zone and complete dissolution of primary titanium carbides synthetized during casting. The average diameter of carbides was below 2 μm. The structural changes are induced by fast cooling which affects crystallization rate. The hardness (HV30) of the remelted layer was in the range between 250 HV and 425 HV, and was lower than hardness in initial state.
机译:在这项研究中,低碳铸钢通过SHS-B方法用TiC增强,也称为铸造过程中的燃烧合成。然后通过气体钨极电弧焊(GTAW)方法对复合材料区域进行表面重熔。重熔操作是在电流为150 A的情况下手动实现的。研究了重熔区的组织,相组成和硬度。 XRD结果表明,复合区在初始状态下的相由TiC和Feα组成。表面重熔导致形成包含TiC碳化物,Feα和Feγ的厚层。显微组织检查表明,重熔区的碳化钛具有很强的细化作用,铸造过程中合成的初级碳化钛完全溶解。碳化物的平均直径低于2μm。结构变化是由快速冷却引起的,这影响了结晶速率。重熔层的硬度(HV30)在250HV和425HV之间的范围内,并且低于初始状态下的硬度。

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