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首页> 外文期刊>Materials Science and Engineering >Effects of different cooling rates during two casting processes on the microstructures and mechanical properties of extruded Mg-Al-Ca-Mn alloy
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Effects of different cooling rates during two casting processes on the microstructures and mechanical properties of extruded Mg-Al-Ca-Mn alloy

机译:两种铸造工艺中不同冷却速率对挤压Mg-Al-Ca-Mn合金组织和力学性能的影响

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摘要

In this study, Mg-3.6Al-3.4Ca-0.3Mn (wt.%) (which is denoted AXM4303) alloy ingots were prepared by two casting processes with different cooling rates: permanent mold (PM) casting, which has a lower cooling rate of 10-20 ℃/s and direct chill (DC) casting, which has a higher cooling rate of 100-110 ℃/s. Then, these two types of AXM4303 alloy ingots were hot extruded at 400 ℃ under the same conditions. The microstructures of the as-cast and extruded alloy samples were systematically investigated by field-emission scanning electron microscope (FE-SEM), transmission electron microscope (TEM) and electron backscattered diffraction (EBSD) systems. The effects of the different cooling rates during the casting process on the microstructures and mechanical properties of the extruded AXM4303 alloy samples were evaluated. The results show that the strength of the extruded Mg-Al-Ca-Mn alloy can be substantially increased by microstructural control during the casting process. Because the cooling rate of the DC casting process is much faster than the cooling rate of PM casting, the DC-cast AXM4303 has the following properties: (i) the lamellar eutectic structure and dendrite cell size are significantly refined, (ii) the ordered monolayer GP zones enriched with Al and Ca nucleate with no growth, and (iii) most of the Mn remains in solution in the matrix. Thus, after hot extrusion, the DC-cast AXM4303 has finer dynamically recrystal-lized (DRXed) grain size, finer and more uniformly distributed fragmented eutectic particles, finer planar Al_2Ca precipitates and finer spherical Al-Mn precipitates with higher number density than is present in the extruded PM-cast AXM4303. As a result, the extruded DC-cast sample showed a tensile 0.2% proof stress of 409 MPa, which is 105 MPa greater than that of the extruded PM-cast sample.
机译:在这项研究中,Mg-3.6Al-3.4Ca-0.3Mn(wt。%)(表示为AXM4303)合金锭是通过两种具有不同冷却速率的铸造工艺制备的:永久铸模(PM)铸造,其冷却性较低冷却速率为10-20℃/ s和直接冷铸(DC),冷却速率更高,为100-110℃/ s。然后,将这两种类型的AXM4303合金锭在相同条件下于400℃热挤压。通过场发射扫描电子显微镜(FE-SEM),透射电子显微镜(TEM)和电子背散射衍射(EBSD)系统对铸态和挤压合金样品的微观结构进行了系统研究。评估了铸造过程中不同冷却速率对挤压AXM4303合金样品的显微组织和力学性能的影响。结果表明,在铸造过程中通过组织控制可以显着提高挤压Mg-Al-Ca-Mn合金的强度。由于DC铸造工艺的冷却速率比PM铸造的冷却速率快得多,因此DC铸造AXM4303具有以下特性:(i)层状共晶结构和枝晶晶胞尺寸得到了显着改善,(ii)有序富含Al和Ca核的单层GP区没有生长,并且(iii)大多数Mn保留在基质中的溶液中。因此,在热挤压之后,直流铸造的AXM4303具有更精细的动态重结晶(DRX)晶粒尺寸,更细且更均匀分布的碎片共晶颗粒,更细的平面Al_2Ca析出物和更细的球形Al-Mn析出物,其密度高于现有技术。在挤出的PM铸造AXM4303中。结果,挤出的DC铸造样品显示出409MPa的拉伸0.2%屈服强度,这比挤出的PM铸造样品的拉伸强度高105MPa。

著录项

  • 来源
    《Materials Science and Engineering》 |2012年第30期|p.71-78|共8页
  • 作者单位

    Department of Mechanical Engineering, Nagaoka University of Technology, Nagaoka 940-2188, Japan;

    Department of Mechanical Engineering, Nagaoka University of Technology, Nagaoka 940-2188, Japan;

    Department of Mechanical Engineering, Nagaoka University of Technology, Nagaoka 940-2188, Japan;

    Department of Mechanical Engineering, Nagaoka University of Technology, Nagaoka 940-2188, Japan;

    Department of Mechanical Engineering, Nagaoka University of Technology, Nagaoka 940-2188, Japan;

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

    magnesium alloy; casting cooling rate; extrusion; microstructures; mechanical properties;

    机译:镁合金铸件冷却速度;挤压;微观结构机械性能;

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