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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Effects of low frequency electromagnetic field on the as-cast microstructures and mechanical properties of superhigh strength aluminum alloy
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Effects of low frequency electromagnetic field on the as-cast microstructures and mechanical properties of superhigh strength aluminum alloy

机译:低频电磁场对超高强度铝合金铸态组织和力学性能的影响

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摘要

A new superhigh strength Al-Zn-Mg-Cu alloy was made by low frequency electromagnetic casting (LFEC) and conventional direct chill (DC) casting, respectively. The effects of low frequency electromagnetic field on the as-cast microstructures and mechanical properties were investigated. The results show that under the low frequency electromagnetic field (25 Hz, 32 mT), the microstructures of LFEC ingot from the border to the center on the cross section are all fine equiaxed or nearly equiaxed grains. The grains are much finer and more uniform than that of DC ingot. It was found that magnetic flux density plays an important role on the microstructure formation of LFEC ingots. With increasing the magnetic flux density, grains become finer and more uniform. In the range of experimental parameters, the optimum magnetic flux density for LFEC process is found to be 32 mT. The mechanical tests show that for this new superhigh strength Al-Zn-Mg-Cu alloy, the as-cast mechanical properties of LFEC ingot are much higher than that of DC ingot.
机译:分别通过低频电磁铸造(LFEC)和常规的直接冷硬(DC)铸造,制备了一种新的超高强度Al-Zn-Mg-Cu合金。研究了低频电磁场对铸态组织和力学性能的影响。结果表明,在低频电磁场(25 Hz,32 mT)下,LFEC铸锭从晶界到晶界的组织均为细等轴晶或接近等轴晶。晶粒比DC锭细得多,更均匀。已经发现,磁通密度在LFEC铸锭的显微组织形成中起重要作用。随着磁通密度的增加,晶粒变得更细,更均匀。在实验参数范围内,发现LFEC工艺的最佳磁通密度为32 mT。力学测试表明,对于这种新型的超高强度Al-Zn-Mg-Cu合金,LFEC铸锭的铸态力学性能远高于DC铸锭。

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