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Modeling of deformation energy at elevated temperatures and its application in Mg-Li-Al-Y alloy 被引量:4
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作者 Fu-rong CAO Bi-jin ZHOU +3 位作者 Bin YIN Guo-qiang XUE Xiao-tong ZHU Guang-ming XU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2017年第11期2434-2442,共9页
To control the superplastic flow and fracture and examine the variation in deformation energy,the stress and grain size of Mg-7.28Li-2.19Al-0.091Y alloy were obtained using tensile testing and microstructure quantific... To control the superplastic flow and fracture and examine the variation in deformation energy,the stress and grain size of Mg-7.28Li-2.19Al-0.091Y alloy were obtained using tensile testing and microstructure quantification,and new high temperature deformation energy models were established.Results show that the grain interior deformation energy increases with increasing the strain rate and decreases with increasing the temperature.The variation in the grain boundary deformation energy is opposite to that in the grain interior deformation energy.At a given temperature,critical cavity nucleation energy decreases with increasing strain rate and cavity nucleation becomes easy,whereas at a given strain rate,critical cavity nucleation energy increases with increasing temperature and cavity nucleation becomes difficult.The newly established models of the critical cavity nucleation radius and energy provide a way for predicting the initiation of microcrack and improving the service life of the forming parts. 展开更多
关键词 high temperature deformation SUPERPLASTICITY CREEP deformation energy mg-li-al-y alloy
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5wt%YAl_2p/Mg-Li复合材料的组织与性能的研究 被引量:6
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作者 王素洁 吴国清 +2 位作者 李瑞华 罗根香 黄正 《航空材料学报》 EI CAS CSCD 2007年第1期20-22,共3页
采用搅拌铸造法制备了5wt%YA l2p颗粒增强Mg-14L i-1A l合金基复合材料,研究了YA l2p/Mg-14L i-1A l复合材料的界面、组织特征,并对基体合金和复合材料的室温力学性能进行了测试。组织分析表明,YA l2p增强颗粒在基体合金中分布均匀,界... 采用搅拌铸造法制备了5wt%YA l2p颗粒增强Mg-14L i-1A l合金基复合材料,研究了YA l2p/Mg-14L i-1A l复合材料的界面、组织特征,并对基体合金和复合材料的室温力学性能进行了测试。组织分析表明,YA l2p增强颗粒在基体合金中分布均匀,界面结合良好,未发现明显的团聚现象,也未观察到化学反应或明显的原子扩散。复合材料的室温拉伸强度为189 MPa,较基体合金提高了约45.3%,而塑性得到了良好的保持(7%)。 展开更多
关键词 镁锂合金 复合材料 钇铝金属间化合物 搅拌铸造
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Effect of Y on microstructure evolution and mechanical properties of Mg−4Li−3Al alloys 被引量:14
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作者 Li-li CHANG Jing GUO Xiao-jing SU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第12期3691-3702,共12页
To obtain magnesium alloys with a low density and improved mechanical properties,Y element was added into Mg−4Li−3Al(wt.%)alloys,and the effect of Y content on microstructure evolution and mechanical properties was in... To obtain magnesium alloys with a low density and improved mechanical properties,Y element was added into Mg−4Li−3Al(wt.%)alloys,and the effect of Y content on microstructure evolution and mechanical properties was investigated by using optical microscopy,scanning electron microscopy and tensile tests.The results show that mechanical properties of as-cast Mg−4Li−3Al alloys with Y addition are significantly improved as a result of hot extrusion.The best comprehensive mechanical properties are obtained in hot-extruded Mg−4Li−3Al−1.5Y alloy,which possesses high ultimate tensile strength(UTS=248 MPa)and elongation(δ=27%).The improvement of mechanical properties of hot-extruded Mg−4Li−3Al−1.5Y alloy was mainly attributed to combined effects of grain refinement,solid solution strengthening and precipitation strengthening. 展开更多
关键词 Mg−Li−Al alloy Y element MICROSTRUCTURE ultimate tensile strength ELONGATION
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