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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 >Morphology and size effects on densification and mechanical behavior of sintered powders from Al-Si and Al-Cu casting alloys
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Morphology and size effects on densification and mechanical behavior of sintered powders from Al-Si and Al-Cu casting alloys

机译:从Al-Si和Al-Cu铸造合金的烧结粉末致密化和力学行为的形态学和尺寸效应

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The aim of this investigation is focused on the evaluation of the effect of two distinctive sizes and morphologies of powder particles from the recycled as-cast Al-Si and Al-Cu alloys. Elemental powders from Al-9Si, Al-5Cu alloys and a mixture 1:1 weight ratio between aforementioned casting alloys to constitute alloy powder composites are used. It is found that the sintered densification of coarser powders provides slight higher densification than finer particles. It is also confirmed a strength anisotropic effect when the tensile and compressive are evaluated. Tensile strength reveals that finer particles provide better mechanical behavior. It is clearly evidenced that the solute content affects the compressive strengths, which favors the Al-5Cu alloy powder composite (similar to 140 MPa). The lowest compressive behavior is that of the Al-9Si sample (similar to 105 MPa), and the intermediate is that of the Al4.5Si-2.5Cu composite (similar to 120 MPa). These results are intimately associated with the formed clusters of brittle Si particles inducing to microcracks at the Al-9Si alloy composite. Additionally, the specific strengths of the examined composites are determined, and the Al-5Cu composite demonstrates interesting economical and environmental-friendly characteristics. (C) 2019 Elsevier B.V. All rights reserved.
机译:该研究的目的是重点评估粉末颗粒的两种独特尺寸和形态与再循环的Al-Si和Al-Cu合金的影响。使用来自Al-9Si,Al-5Cu合金的元素粉末和上述铸造合金之间的混合物1:1重量比以构成合金粉末复合材料。发现粗粉末的烧结致密化提供比细粒颗粒更高的致密化。当评估拉伸和压缩时,还证实了强度各向异性效应。拉伸强度揭示了更细的颗粒提供更好的机械行为。显然证明了溶质含量影响抗压强度,其利用Al-5Cu合金粉末复合物(类似于140MPa)。最低压缩行为是Al-9Si样品(类似于105MPa)的压缩行为,中间体是Al4.5Si-2.5Cu复合材料(类似于120MPa)的中间体。这些结果与诱导Al-9Si合金复合材料的微裂纹的脆性Si颗粒的形成簇密切相关。另外,确定了检查复合材料的比强度,并且Al-5Cu复合材料表明了有趣的经济和环境友好的特征。 (c)2019 Elsevier B.v.保留所有权利。

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