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Microstructure and Properties of LPSO Phase Reinforced Mg Alloy-Produced by Rheocasting

机译:流变铸造法制备的LPSO相增强镁合金的组织和性能

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The long period stacking ordered (LPSO) phase reinforced Mg alloys have received many researches in recent years because of their excellent mechanical properties. However, the LPSO phase usually concentrates at the grain boundaries with a coarse network structure, which seriously deteriorates its strengthening effect. In this research, rheocasting and ultrasonic vibration (USV) process were firstly used to refine the LPSO phase in Mg alloy. The semisolid slurry of Mg_(96.9)Y_2Zn_1Zr_(0.1) (at.%) alloy was prepared by USV and then formed by rheo-squeeze casting (RSC). The effects of USV and squeeze pressure on the microstructure and mechanical properties of this Mg alloy were investigated. The results show that the primary a-Mg and coarse LPSO phases were refined obviously by USV and RSC. The tensile strength and elongation of the RSC Mg_(96.9)Y_2Zn_1Zr_(0.1) alloy were 232 MPa and 17.7% respectively, which were increased by 17.8% and 172.3% respectively compared to the conventional liquid casting alloy. The refinement mechanism of the LPSO phase in semisolid Mg alloy is also discussed.
机译:长期堆积有序(LPSO)相增强Mg合金由于其优异的机械性能而在近年来受到了许多研究。但是,LPSO相通常以粗大的网状结构集中在晶界,这严重地削弱了其强化效果。在这项研究中,首先使用流变铸造和超声振动(USV)工艺来精炼镁合金中的LPSO相。通过USV制备Mg_(96.9)Y_2Zn_1Zr_(0.1)(at。%)合金的半固态浆料,然后通过流变挤压铸造(RSC)形成。研究了USV和挤压压力对这种Mg合金的组织和力学性能的影响。结果表明,USV和RSC对a-Mg粗相和LPSO粗相进行了明显的细化。 RSC Mg_(96.9)Y_2Zn_1Zr_(0.1)合金的拉伸强度和伸长率分别为232 MPa和17.7%,比常规的液态铸造合金分别提高了17.8%和172.3%。还讨论了半固态镁合金中LPSO相的细化机理。

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