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Effect of carbon content on mechanical properties of electroslag remelted Fe3Al based intermetallic alloys

机译:碳含量对电渣重熔Fe3Al基金属间合金力学性能的影响

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摘要

The effect of carbon content (0.013 to 0.50 wt% C) on structure and mechanical properties of electroslag remelted iron aluminides based on Fe3Al containing approximately 16wt% (28at%) aluminium alloy has been studied. At low carbon contents (0.031 wt% or less) the ESR ingots suffer from hydrogen embrittlement which results in poor mechanical properties. At high (0.074 wt% or more) carbon contents the hardness and strength of ESR ingots increase with increasing carbon content without significant change in ductility. This is attributed to the solid solution strengthening arising from interstitial carbon present in the Fe3Al matrix as well as to the increased amount of Fe3AlC (perovskite) precipitation. The mechanical properties of these high carbon ESR cast alloys are comparable or superior to those reported for high purity wrought alloys with similar aluminium contents. The machinability of ESR ingots improves with increase in carbon content. This is attributed to the presence of uniformly distributed Fe3AlC precipitates in the ingots which allow formation of small and uniform size chips during machining.
机译:研究了碳含量(0.013至0.50 wt%C)对电渣重熔基于含大约16wt%(28at%)铝合金的Fe3Al的铁铝化物的结构和力学性能的影响。在低碳含量(0.031 wt%或更少)下,ESR铸锭会遭受氢脆,从而导致较差的机械性能。在高碳含量(0.074 wt%或更高)下,ESR铸锭的硬度和强度随碳含量的增加而增加,而延展性没有明显变化。这归因于Fe3Al基体中存在的间隙碳引起的固溶强化,以及Fe3AlC(钙钛矿)沉淀量的增加。这些高碳ESR铸造合金的机械性能与铝含量相似的高纯度锻造合金的力学性能相当或更高。 ESR铸锭的切削性随着碳含量的增加而提高。这归因于在锭中存在均匀分布的Fe3AlC沉淀,这允许在加工过程中形成小而均匀尺寸的切屑。

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