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首页> 外文期刊>Materials Science and Engineering >Aging- and creep-resistance of a cast hypoeutectic Al-6.9Ce-9.3Mg (wt. %) alloy
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Aging- and creep-resistance of a cast hypoeutectic Al-6.9Ce-9.3Mg (wt. %) alloy

机译:铸造双抗胶型Al-6.9CE-6.3mg(重量%)合金的老化和蠕变抗性

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摘要

A ternary Al-6.9Ce-9.3Mg (wt.%) hypoeutectic alloy, consisting of equal amounts of α-Al(Mg) solid-solution regions and Al(Mg)-Al_(11)Ce_3 eutectic colonies, is investigated in terms of its aging and creep resistance. The eutectic regions exhibit a microhardness of 1230 MPa, which is thrice the value of Al-Al_(11)Ce_3 eutectic regions in a binary Al-12.5Ce (wt.%) near-eutectic alloy, demonstrating that Mg in solid-solution enhances the strengthening provided by the micron-scale highly-branched Al_(11)Ce_3 phase. X-ray diffraction measurements during ambient-temperature tensile testing reveal that load is being transferred from the Al(Mg) matrix to the Al_(11)Ce_3 phase, confirming that the fine eutectic microstructure displays composite strengthening in addition to the expected precipitation- and solid-solution strengthening. The hardness remains effectively unchanged after aging at 450 °C for up to 8 weeks, indicating excellent coarsening resistance of the Al_(11)Ce_3 phase. The ternary alloy exhibits creep resistance at 300 °C slightly inferior to the near-fully eutectic binary Al-12.5Ce (wt.%) alloy, consistent with the presence of large regions of fast-creeping primary Al(Mg) solid-solution matrix between the strong Al(Mg)-Al_(11)Ce_3 eutectic colonies in the hypoeutectic ternary alloy.
机译:在方面研究了由等量的α-Al(Mg)固溶体区和Al(Mg)-Al_(11)Ce_3共肠溶菌落组成的三元al-6.9ce-9.3mg(wt。%)的低蛋白盐晶合金。其衰老和抗蠕变性。共晶区域表现出1230MPa的显微硬度,其在二元Al-12.5CE(重量%)近共晶合金中的Al-Al_(11)Ce_3共晶区的值分析,展示了固溶体中的Mg通过微米级高度分支Al_(11)CE_3阶段提供的加强。环境温度拉伸试验期间的X射线衍射测量显示,载荷从Al(Mg)基质转移到Al_(11)Ce_3相,证实除了预期的沉淀外,所述细共晶微观结构还显示复合强化 - 固溶体强化。在450℃下老化最多8周后,硬度保持有效地保持不变,表明AL_(11)CE_3相的优异粗化性。三元合金在300℃下略低于近乎完全共晶二元al-12.5CE(重量%)合金,致抗蠕变性。与大规模的快速蠕变原发性Al(Mg)固溶体基质的存在一致在异晶三元合金中强的Al(Mg)-Al_(11)CE_3共晶菌落。

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  • 来源
    《Materials Science and Engineering》 |2020年第1期|139398.1-139398.8|共8页
  • 作者

    Daniel S. Ng; David C. Dunand;

  • 作者单位

    Department of Materials Science and Engineering Northwestern University 2200 Campus Drive Evanston IL 60208 USA Department of Materials Science and Engineering Massachusetts Institute of Technology 77 Massachusetts Avenue Cambridge MA 02139 USA;

    Department of Materials Science and Engineering Northwestern University 2200 Campus Drive Evanston IL 60208 USA;

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

    Al alloys; Rare earth; Precipitation hardening; Creep; Load partitioning;

    机译:Al合金;稀土;沉淀硬化;蠕动;加载分区;

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