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Microstructure and damping properties of LPSO phase dominant Mg-Ni-Y and Mg-Zn-Ni-Y alloys 被引量:1
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作者 Ruopeng Lu Kai Jiao +3 位作者 Nanting Li Hua Hou Jingfeng Wang Yuhong Zhao 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2024年第3期1131-1153,共23页
This work studied the microstructure,mechanical properties and damping properties of Mg_(95.34)Ni_(2)Y_(2.66) and Mg_(95.34)Zn_(1)Ni_(1)Y_(2.66)alloys systematically.The difference in the evolution of the long-period ... This work studied the microstructure,mechanical properties and damping properties of Mg_(95.34)Ni_(2)Y_(2.66) and Mg_(95.34)Zn_(1)Ni_(1)Y_(2.66)alloys systematically.The difference in the evolution of the long-period stacked ordered(LPSO)phase in the two alloys during heat treatment was the focus.The morphology of the as-cast Mg_(95.34)Ni_(2)Y_(2.66)presented a disordered network.After heat treatment at 773 K for 2 hours,the eutectic phase was integrated into the matrix,and the LPSO phase maintained the 18R structure.As Zn partially replaced Ni,the crystal grains became rounded in the cast alloy,and lamellar LPSO phases and more solid solution atoms were contained in the matrix after heat treatment of the Mg_(95.34)Zn_(1)Ni_(1)Y_(2.66)alloy.Both Zn and the heat treatment had a significant effect on damping.Obvious dislocation internal friction peaks and grain boundary internal friction peaks were found after temperature-dependent damping of the Mg_(95.34)Ni_(2)Y_(2.66)and Mg_(95.34)Zn_(1)Ni_(1)Y_(2.66)alloys.After heat treatment,the dislocation peak was significantly increased,especially in the alloy Mg_(95.34)Ni_(2)Y_(2).66.The annealed Mg_(95.34)Ni_(2)Y_(2.66)alloy with a rod-shaped LPSO phase exhibited a good damping performance of 0.14 atε=10^(−3),which was due to the difference between the second phase and solid solution atom content.These factors also affected the dynamic modulus of the alloy.The results of this study will help in further development of high-damping magnesium alloys. 展开更多
关键词 Mg-Ni-Y alloys mg-zn-ni-y alloys LPSO phase Heat treatment MICROSTRUCTURE Damping properties.
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复合加工Mg-Y-Zn-Ni合金的显微组织和性能
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作者 毕广利 许浩彬 +4 位作者 姜静 李元东 蒋春宏 赵李斌 陈体军 《特种铸造及有色合金》 CAS 北大核心 2024年第4期433-440,共8页
研究了复合加工(挤压+轧制)Mg-2Y-0.5Zn-0.5Ni(摩尔分数,%,MYZN)合金的显微组织和力学性能。结果表明,挤压MYZN合金的组织主要由α-Mg、片状和块状的18R-LPSO相、细条纹状的14H-LPSO相以及Mg2Y和Mg24Y5颗粒相组成。在350 ℃下轧制后,合... 研究了复合加工(挤压+轧制)Mg-2Y-0.5Zn-0.5Ni(摩尔分数,%,MYZN)合金的显微组织和力学性能。结果表明,挤压MYZN合金的组织主要由α-Mg、片状和块状的18R-LPSO相、细条纹状的14H-LPSO相以及Mg2Y和Mg24Y5颗粒相组成。在350 ℃下轧制后,合金发生了不均匀的塑性变形,形成了大量含有高位错密度的未再结晶区,再结晶晶粒和颗粒相得到显著细化,晶粒尺寸略微增加,LPSO相增多且弥散分布,同时形成了较强的基面织构。拉伸测试结果表明,挤压+轧制合金表现出理想的室温力学性能,其屈服强度(σ_(0.2))、抗拉强度(σ_(b))和伸长率(δ)分别为372 MPa、409 MPa和 8.4%,与挤压合金相比,σ_(0.2)和σ_(b)分别提升了10.7%和4.1%。力学性能的提高主要归结为大量小角度晶界的晶界强化、LPSO相的析出和扭折强化以及织构强化。 展开更多
关键词 挤压/轧制Mg-Y-Zn-Ni合金 显微组织 LPSO相 力学性能
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