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首页> 外文期刊>Materials & design >High temperature tensile deformation behavior and failure mechanisms of an Al-Si-Cu-Mg cast alloy - The microstructural scale effect
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High temperature tensile deformation behavior and failure mechanisms of an Al-Si-Cu-Mg cast alloy - The microstructural scale effect

机译:Al-Si-Cu-Mg铸造合金的高温拉伸变形行为和破坏机理-微观尺度效应

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摘要

In this study the high temperature tensile deformation behavior of a commercial Al-Si-Cu-Mg cast alloy was investigated. The alloy was cast with two different cooling rates which resulted in average secondary dendrite arm spacing of 10 and 25 um, which is typical of the microstructure scale obtained from high pressure die casting and gravity die casting. Tensile tests were performed at different strain rates (10~ (-4) s~(-1) to 10~(-1) s~(-1)) and over a wide temperature range from ambient temperature to 500 ℃. The fine microstructure had superior tensile strength and ductility compared to the coarse microstructure at any given temperature. The coarse microstructure showed brittle fracture up to 300 ℃; the fracture mode in the fine microstructure was fully ductile above 200 ℃ The fraction of damaged particles was increased by raising the temperature and/or by microstructure coarsening. Cracks arising from damaged particles in the coarse microstructure were linked in a transgranular-dominated fashion even at 500 ℃. However, in the fine microstructure alloy the inter-dendritic fracture path was more prevalent When the temperature was raised to 300 ℃, the concentration of alloying elements in the dendrites changed. The dissolution rates of Cu- and Mg-bearing phases were higher in the fine microstructure.
机译:在这项研究中,研究了商业化的Al-Si-Cu-Mg铸造合金的高温拉伸变形行为。以两种不同的冷却速率铸造合金,从而导致平均二次枝晶臂间距为10和25 um,这是从高压压铸和重力压铸获得的微观结构的典型代表。在从环境温度到500℃的宽温度范围内,以不同的应变率(10〜(-4)s〜(-1)至10〜(-1)s〜(-1))进行拉伸测试。与任何给定温度下的粗微结构相比,细微结构具有优异的拉伸强度和延展性。显微组织在300℃以下表现出脆性断裂。在200℃以上,细微组织的断裂模式是完全可延展的。通过提高温度和/或通过组织粗化可以增加受损颗粒的比例。即使在500℃时,由粗组织中的受损颗粒产生的裂纹也以跨晶为主的方式联系在一起。然而,在微细结构合金中,当温度升高至300℃时,枝晶间的断裂路径更为普遍,枝晶中合金元素的浓度发生了变化。在精细的微观结构中,含Cu和Mg的相的溶解速率较高。

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  • 来源
    《Materials & design》 |2015年第5期|361-370|共10页
  • 作者单位

    Joenkoeping University, School of Engineering, Department of Materials and Manufacturing - Casting, P.O. Box 1026, SE-551 11 Joenkoeping, Sweden;

    Joenkoeping University, School of Engineering, Department of Materials and Manufacturing - Casting, P.O. Box 1026, SE-551 11 Joenkoeping, Sweden;

    Joenkoeping University, School of Engineering, Department of Materials and Manufacturing - Casting, P.O. Box 1026, SE-551 11 Joenkoeping, Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    EN AC-46000 cast alloy; Elevated temperatures; Deformation behavior; Microstructure;

    机译:EN AC-46000铸造合金;温度升高;变形行为;微观结构;

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