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含LPSO相和W相Mg−Zn−Y−Zr合金铸造、力学和腐蚀性能的比较
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作者 V.E.BAZHENOV S.S.SAIDOV +8 位作者 yu.v.tselovalnik O.O.VOROPAEVA I.V.PLISETSKAYA A.A.TOKAR A.I.BAZLOV V.A.BAUTIN A.A.KOMISSAROV A.V.KOLTYGIN V.D.BELOV 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第5期1276-1290,共15页
为了开发新型铸造镁合金,研究含长周期堆垛相(LPSO)和W共晶相的Mg−Zn−Y−Zr合金。硬度和电导率测试结果表明,T6热处理的温度是合适的。与含W相的合金相比,含LPSO相合金的热裂敏感性更低,这与合金的凝固区间有关。然而,两者具有相同的流... 为了开发新型铸造镁合金,研究含长周期堆垛相(LPSO)和W共晶相的Mg−Zn−Y−Zr合金。硬度和电导率测试结果表明,T6热处理的温度是合适的。与含W相的合金相比,含LPSO相合金的热裂敏感性更低,这与合金的凝固区间有关。然而,两者具有相同的流动性。在T6条件下,增加Y含量可以提高合金的屈服强度,但合金的其他拉伸性能基本相同。与含W相的合金相比,含LPSO相的合金具有更优的耐腐蚀性。含LPSO相的Mg−2.5Zn−3.7Y−0.3Zr(质量分数,%)合金具有良好的铸造性能和力学性能,其腐蚀速率为2 mm/year。 展开更多
关键词 镁合金 铸造 LPSO相 W相 流动性 热裂敏感性 腐蚀速率
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Development of Mg-Zn-Y-Zr casting magnesium alloy with high thermal conductivity 被引量:5
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作者 V.E.Bazhenov A.V.Koltygin +7 位作者 M.C.Sung S.H.Park yu.v.tselovalnik A.A.Stepashkin A.A.Rizhsky M.V.Belov V.D.Belov K.V.Malyutin 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2021年第5期1583-1593,共11页
Magnesium alloys are used in aircraft because of their light weight.However,for these alloys to be applied in electronic devices,high thermal conductivities are required.Several high-potential compositions of Mg-Zn-Y-... Magnesium alloys are used in aircraft because of their light weight.However,for these alloys to be applied in electronic devices,high thermal conductivities are required.Several high-potential compositions of Mg-Zn-Y-Zr alloys were selected by phase composition and their freezing ranges calculated using Thermo-Calc software.The alloys were prepared,and their fluidity,hot tearing susceptibility,mechanical properties,and thermal conductivity were obtained and compared.The alloy composed of Mg-4 wt%Zn-3 wt%Y-0.3 wt%Zr was selected for further investigation,because of its high thermal conductivity and satisfactory mechanical properties.The Mg-4 wt%Zn-3 wt%Y-0.3 wt%Zr alloy’s fluidity and hot tearing susceptibility were similar to those of the widespread AZ91 commercial casting magnesium alloy.The influence of a heat treatment regime on the microstructure,thermal conductivity,and mechanical properties of the developed alloy was also investigated.It was established that the room temperature thermal conductivity of the Mg-4 wt%Zn-3 wt%Y-0.3 wt%Zr alloy after aging at 300℃for 5 h was 105 W/m K^(-1).Additionally,the following tensile test results were obtained in aged condition:120 MPa yield strength,200 MPa ultimate tensile strength,and 4%elongation.The utilization of solid solution heat treatment at 520℃for 8 h prior to aging can promote up to 9%increase in elongation.The Mg-4 wt%Zn-3 wt%Y-0.3 wt%Zr casting alloy can be used as a high thermal conductivity material with industrial applications. 展开更多
关键词 Magnesium alloy Mg-Zn-Y-Zr Thermal conductivity Phase composition FLUIDITY Hot tearing susceptibility
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