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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure evolution and mechanical behavior of Al-Li alloy fabricated by laser melting deposition technique
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Microstructure evolution and mechanical behavior of Al-Li alloy fabricated by laser melting deposition technique

机译:激光熔化沉积技术制造的Al-Li合金的微观结构演化与力学行为

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This paper systematically studies the microstructure evolution, tensile property and microhardness of Aluminum-lithium (Al-Li) alloy with dimension of 80 mm x 30 mm x 80 mm manufactured by laser melting deposition (LMD) technology. Results indicate that the microstructures of the as-deposited Al-Li alloy are variable from the top to the bottom of the plate. At the top region, a fully dendritic structure is observed with underdeveloped secondary arms. And the copper-rich precipitates with irregular stripe morphology appear in the inter-dendritic areas. Attributing to the thermal cycle during laser deposition process, as distance increasing away from the top, the number of irregular stripe phases reduces with the massive precipitation of needle-like T-B phases (soft and brittle). At the bottom of the plate, dendritics of as-deposited Al-Li alloy obviously coarsened, T-B phases fully decorate the entire grains with a few residual copper-rich precipitates. Attributing to the different microstructures, the micro-hardness firstly increases from 121 HV to 134 HV at a distance of 30 mm, and then decreases to about 98 HV at the bottom of the deposited Al-Li alloy plate. The ultimate tensile strength of the as-deposited Al-Li alloy (longitudinal direction, at the middle-bottom part of the plate) is comparable to the hot-rolled Al-Li alloy (244 MPa). However, the yield strength and elongation of the as-deposited Al-Li alloy are relatively poor due to the embrittlement of copper-rich phases as well as T-B phase. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文系统地研究了通过激光熔化沉积(LMD)技术制造的80mm×30mm×80mm的铝 - 锂(Al-Li)合金的微观结构演化,拉伸性能和显微硬度。结果表明,沉积的Al-Li合金的微观结构是从板的顶部到底部的可变变化。在顶部区域,用欠发达的二手臂观察到完全树突结构。在树突间区域出现了具有不规则条纹形态的富含铜沉淀物。在激光沉积过程中归因于热循环,随着距离顶部的距离增加,不规则条纹相的数量随着针状T-B相的大量沉淀而减少(柔软且脆弱)。在板的底部,沉积的Al-Li合金的树突明显粗糙,T-B阶段完全装饰着几种残留的富含铜沉淀物的整个颗粒。归因于不同的微观结构,微硬度首先在30mm的距离下从121HV至134HV增加,然后在沉积的Al-Li合金板的底部降低至约98HV。沉积的Al-Li合金(板块中间底部在板的纵向)的极限拉伸强度与热轧Al-Li合金(244MPa)相当。然而,由于富含铜相以及T-B相的脆化,沉积的Al-Li合金的屈服强度和伸长率相对较差。 (c)2019 Elsevier B.v.保留所有权利。

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