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Effect of squeeze casting process on microstructures and flow stress behavior of Al-17.5Si-4Cu-0.5Mg alloy

机译:挤压铸造工艺对Al-17.5Si-4Cu-0.5Mg合金组织和流动应力行为的影响

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摘要

The effects of squeeze casting process on microstructure and flow stress behavior of Al-17.5Si-4Cu-0.5Mg alloy were investigated and the hot-compression tests of gravity casting and squeeze casting al-loy were carried out at 350-500℃ and 0.001 -5 s-1 .The results show that microstructures of Al-17.5Si-4Cu-0.5Mg alloys were obviously improved by squeeze casting.Due to the decrease of coarse primary Si particles, softα-Al dendrite as well as the fine microstructures appeared, and the mechan-ical properties of squeeze casting alloys were improved.However, when the strain rate rises or the deformation temperature decreases, the flow stress increases and it was proved that the alloy is a pos-itive strain rate sensitive material.It was deduced that compared with the gravity casting alloy, squeeze casting alloy (solidified at 632 MPa) is more difficult to deform since the flow stress of squeeze casting alloy is higher than that of gravity casting alloy when the deformation temperature exceeds 400℃.Flow stress behavior of Al-17.5Si-4Cu-0.5Mg alloy can be described by a hyperbolic sine form with Zener-Hollomon parameter, and the average hot deformation activation energy Q of gravity casting alloy and squeeze casting alloy is 278.97 and 308.77 kJ/mol, respectively.
机译:研究了挤压铸造方法对Al-17.5Si-4Cu-0.5mg合金的微观结构和流量应力行为的影响,并在350-500℃和0.001中进行重力铸造和挤压铸造挤压铸造的热压缩试验。 -5 S-1。结果表明,通过挤压铸造显然改善了Al-17.5Si-4Cu-0.5mg合金的微观结构。粗初级Si颗粒的减少,软α-Al树突以及精细组织出现的降低,并且改善了挤压铸造合金的机械性质。然而,当应变速率上升或变形温度降低时,流量应力增加,证明合金是POS级应变率敏感材料。是推断出与重力铸造合金相比,挤压铸造合金(在632MPa处凝固)更难以变形,因为当变形温度超过时,挤压合金的流量应力高于重力铸造合金的流量应力400℃。Al-17.5Si-4Cu-0.5mg合金的流量应力行为可通过双曲线形状与ZENER-HOLLOMON参数描述,重力铸造合金和挤压铸造合金的平均热变形活化Q为278.97和308.77 kJ / mol,分别。

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  • 来源
    《钢铁研究学报(英文版)》 |2017年第9期|957-965|共9页
  • 作者单位

    School of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, Liaoning, China;

    School of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, Liaoning, China;

    School of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, Liaoning, China;

    School of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, Liaoning, China;

    School of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, Liaoning, China;

    School of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, Liaoning, China;

    School of Materials Science and Engineering, Shenyang University of Technology, Shenyang 110870, Liaoning, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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