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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials >Effect of niobium on microstructure and mechanical properties of high carbon Fe-10.5 wt. percent Al alloys
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Effect of niobium on microstructure and mechanical properties of high carbon Fe-10.5 wt. percent Al alloys

机译:铌对高碳Fe-10.5 wt。的显微组织和力学性能的影响。铝合金百分比

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The effect of niobium on the microstructure and mechanical properties of high carbon Fe-10.5 wt. percent Al alloys has been investigated. The alloys were prepared by a combination of air induction melting with flux cover (AIMFC) and electroslag remelting (ESR). The ESR ingots were hot-forged and hot-rolled at 1373 K. The hot-rolled alloys were characterized. The ternary Fe-10.5 wt. percent Al-(0.7 and 0.9 wt. percent) C alloys exhibited two-phase microstructure of large volume fraction of Fe_3AlC_(0.5) precipitates in Fe-Al (alpha) matrix. Addition of niobium to Fe-10.5 wt. percent Al-(0.7 and 0.9 wt. percent) C alloys resulted in the precipitation of small volume fraction of niobium carbide precipitates in Fe-Al (alpha) matrix in addition to large volume fraction of Fe_3AlC_(0.5) precipitates. The addition of up to 2 wt. percent Nb to high carbon Fe-10.5 wt. percent Al alloys has no effect on the yield strength at both room temperature and 873 K as well as creep properties at 140 MPa and 873 K, but it has reduced the room temperature tensile elongation at higher (2 wt. percent) concentration. In the present work, it has also been observed that alloys containing high (0.9 wt. percent) carbon, exhibited higher yield strength at room temperature as compared to alloys containing low (0.7 wt. percent) carbon. The increase in strength with small increase in carbon may be attributed to the significant increase in volume fraction of Fe_3AlC_(0.5) precipitates.
机译:铌对高碳Fe-10.5 wt。的显微组织和力学性能的影响。已经研究了百分之百的铝合金。合金是通过将空气感应熔炼与助熔剂覆盖层(AIMFC)和电渣重熔(ESR)结合起来制备的。 ESR铸锭在1373 K下热锻和热轧。对热轧合金进行了表征。三元Fe-10.5重量%。百分比的Al-(0.7和0.9 wt。%)C合金在Fe-Al(α)基体中显示出大体积分数的Fe_3AlC_(0.5)沉淀物的两相微观结构。向Fe-10.5 wt。中添加铌百分比的Al-(0.7和0.9 wt。%)C合金除了少量的Fe_3AlC_(0.5)沉淀物外,还导致小体积分数的碳化铌沉淀物在Fe-Al(α)基体中沉淀。最多添加2 wt。 Nb占高碳Fe-10.5 wt。百分含量的铝合金对室温和873 K时的屈服强度以及140 MPa和873 K时的蠕变性能都没有影响,但在较高(2 wt。%)浓度下降低了室温拉伸伸长率。在本工作中,还已经观察到,与含碳量低(0.7重量%)的合金相比,含碳高(0.9重量%)的合金在室温下表现出更高的屈服强度。强度的增加和碳的少量增加可以归因于Fe_3AlC_(0.5)沉淀物的体积分数的显着增加。

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