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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Effects of Melt-to-Solid Insert Volume Ratio on the Microstructures and Mechanical Properties of Al/Mg Bimetallic Castings Produced by Lost Foam Casting
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Effects of Melt-to-Solid Insert Volume Ratio on the Microstructures and Mechanical Properties of Al/Mg Bimetallic Castings Produced by Lost Foam Casting

机译:熔融与固体插入体积比对泡沫铸造损失生产的Al / Mg双金属铸件微结构和力学性能的影响

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摘要

A356 aluminum and AZ91D magnesium alloys, which act as a solid insert and a melt, respectively, were used to prepare Al/Mg bimetallic castings using the lost-foam casting process, and the effects of the melt-to-solid volume ratio (VR) on the microstructures, mechanical properties, and fractographies of the Al/Mg bimetallic castings were investigated in this paper. Obtained results show that the average thickness of the reaction layer between aluminum and magnesium significantly increased with increasing VR, and a compact and uniform interface was obtained with a VR of 14.6. The reaction layers of all the bimetallic castings obtained by different VRs mainly consisted of the Al12Mg17 + delta eutectic layer close to the magnesium matrix, the Al12Mg17 + Mg2Si intermediate layer as well as the Al3Mg2 + Mg2Si layer next to the aluminum base. The microhardnesses of reaction layers of all the bimetallic castings with different VRs were considerably higher than those of the magnesium and aluminum matrix alloys, particularly the Al3Mg2 layer. Excessive thick reaction layer and pore defects remarkably weakened the bonding strength of the bimetallic castings, especially pore defects, and a relative maximum shear strength was obtained with a VR of 14.6. The fractographs of the push-out samples showed a change in the fracture surface from a mixed brittle and ductile fracture nature to that of a brittle fracture nature with the increase of VR.
机译:A356铝和AZ91D镁合金分别用作固体插入件和熔体,使用泡沫铸造工艺和熔融至固体量比的影响制备Al / Mg双金属铸件(VR [本文研究了Al / Mg双金属铸件的微观结构,机械性能和斑块。得到的结果表明,随着VR的增加,铝和镁之间的反应层的平均厚度显着增加,并且通过VR为14.6获得紧凑且均匀的界面。通过不同VRS获得的所有双金属铸件的反应层主要由靠近镁基质的Al12mg17 +Δ共晶层组成,Al12mg17 + Mg2Si中间层以及铝基碱旁边的Al 3Mg2 + Mg2Si层。具有不同VRS的所有双金属铸件的反应层的微硬度显着高于镁和铝基基金合金,特别是Al3Mg2层。过量的厚反应层和孔隙缺陷显着削弱了双金属铸件的粘合强度,尤其是孔隙缺陷,并且通过VR为14.6获得相对最大剪切强度。推出样品的特征在于VR的增加,从混合脆性和延展性裂缝性质的脆性和延展性裂缝性质的变化显示到脆性骨折性质的变化。

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    Huazhong Univ Sci &

    Technol State Key Lab Mat Proc &

    Die &

    Mould Technol Wuhan 430074 Peoples R China;

    Huazhong Univ Sci &

    Technol State Key Lab Mat Proc &

    Die &

    Mould Technol Wuhan 430074 Peoples R China;

    Huazhong Univ Sci &

    Technol State Key Lab Mat Proc &

    Die &

    Mould Technol Wuhan 430074 Peoples R China;

    Huazhong Univ Sci &

    Technol State Key Lab Mat Proc &

    Die &

    Mould Technol Wuhan 430074 Peoples R China;

    Huazhong Univ Sci &

    Technol State Key Lab Mat Proc &

    Die &

    Mould Technol Wuhan 430074 Peoples R China;

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  • 正文语种 eng
  • 中图分类 冶金技术;
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