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Microstructural Characterisation of Ti?Containing Fe-7Al-0.35C?Based Low-Density Steel

机译:Ti的微观结构表征含有Fe-7Al-0.35℃的低密度钢

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In this paper, the role of Ti on the in-situ formation of carbides and its effect on the microstructure of Fe-7Al-0.35C alloy have been investigated. Initially, Thermo-Calc software was used to predict the phases present in the alloys which were validated by experimental work. Vacuum arc remelting process was used to make an alloy pancake of 10-mm thickness, which was hot-rolled to 2-mm thickness. The alloys were characterised by X-ray diffraction, optical, scanning electron microscope and electron probe micro-analysis. The results show that all the alloys exhibit two types of TiC precipitates, which are dark cuboidal as primary and dark acicular type as secondary precipitates along with grey-coloured needle-shaped κ-carbide precipitate in α(Fe–Al) matrix. The carbon present in the alloy is partitioned between TiC and κ-carbide precipitates. Addition of Ti has also resulted in grain refinement of all the alloys.
机译:本文研究了Ti对碳化物原位形成的作用及其对Fe-7 - 0.35C合金微观结构的影响。 最初,用于预测通过实验工作验证的合金中存在的阶段的热量计算器。 真空弧形重熔工艺用于制作10毫米厚度的合金煎饼,其热轧成2毫米。 通过X射线衍射,光学,扫描电子显微镜和电子探针微分析表征合金。 结果表明,所有合金都表现出两种类型的TIC沉淀物,其作为初级和暗针形式的初级和暗针形式,作为α(Fe-Al)基质中的灰色针状κ-碳化物沉淀物。 在合金中存在的碳在Tic和κ-碳化物沉淀物之间分配。 添加Ti也导致所有合金的晶粒细化。

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