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Effects of Sn on microstructure of as-cast and as-extruded Mg-9Li alloys 被引量:8
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作者 蒋斌 曾迎 +3 位作者 Ming-xing ZHANG 殷恒梅 杨青山 潘复生 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第4期904-908,共5页
The effects of Sn addition on the microstructure of as-cast and as-extruded Mg-9Li alloys were investigated. The results show that α-Mg, β-Li, Li2MgSn, and Mg2Sn are primary phases in the microstructures of the as-c... The effects of Sn addition on the microstructure of as-cast and as-extruded Mg-9Li alloys were investigated. The results show that α-Mg, β-Li, Li2MgSn, and Mg2Sn are primary phases in the microstructures of the as-cast and as-extruded Mg-9Li-xSn (x=0, 5; in mass fraction, %) alloys. Li2MgSn phase evolves from continuously net-like structure in the as-cast state to fine granular in the as-extruded state. After the extrusion, Mg-9Li-5Sn alloy has finer microstructures. Li2MgSn or Mg2Sn compound can act as the heterogeneous nucleation sites for dynamic recrystallization during the extrusion due to the crystallography matching relationship Extrusion deformation leads to dynamic recrystallization, which results in the grain refinement and uniform distribution. The as-extruded Mg-9Li-5Sn alloy possesses the lowest grain size of 45.9 μm. 展开更多
关键词 mg-9li alloys SN MICROSTRUCTURE heterogeneous nucleation
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高强耐蚀1420Al-Li/Mg-9Li/1420Al-Li复合板制备及力学性能
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作者 吴世松 边丽萍 +4 位作者 刘先文 于培文 刘江林 梁伟 张红芳 《热加工工艺》 北大核心 2024年第17期98-100,共3页
采用高强耐蚀超轻1420 Al-Li合金作为覆板,通过一道次热轧制备了1420Al-Li/Mg-9Li/1420Al-Li复合板,研究了不同压下量、450℃热轧复合板界面的微观组织和力学性能。结果表明:当轧制压下量为35%时,复合板仅为部分结合—机械结合+冶金结合... 采用高强耐蚀超轻1420 Al-Li合金作为覆板,通过一道次热轧制备了1420Al-Li/Mg-9Li/1420Al-Li复合板,研究了不同压下量、450℃热轧复合板界面的微观组织和力学性能。结果表明:当轧制压下量为35%时,复合板仅为部分结合—机械结合+冶金结合,界面无化合物生成,复合板的抗拉强度为236 MPa,伸长率为26%;当轧制压下量为50%时,复合板实现完全冶金结合,无界面化合物生成,复合板的抗拉强度高达272 MPa,伸长率为14%,在提高抗腐蚀性的同时,大幅提高了Mg-9Li合金的强度。 展开更多
关键词 mg-9li 1420Al-li 复合板 轧制复合
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Effects of stress loading mode on microstructures and properties of Mg-9Gd-2Nd-0.5Zr alloy treated by creep aging
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作者 Simin Shen Yongpeng Zhuang +6 位作者 Ming Li Hongxia Wang Lifei Wang Weili Cheng Hang Li Hua Hou Kwangseon Shin 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第11期4263-4273,共11页
Creep aging forming(CAF) is a potential process used to manufacture large integral components of magnesium(Mg) alloys. The selected stress plays a crucial role in creep aging processes but the mechanism by which stres... Creep aging forming(CAF) is a potential process used to manufacture large integral components of magnesium(Mg) alloys. The selected stress plays a crucial role in creep aging processes but the mechanism by which stress loading method affects creep aging of Mg alloys is still unclear. In this paper, the microstructural evolution of precipitated phases and precipitation-free zones(PFZ) at grain boundaries with different stress loading modes(unstressed, unidirectional tensile stress, and cyclic stress) at 250 ℃ were investigated along with changes in mechanical properties. The results showed that the addition of stress during aging effectively promoted the precipitation of precipitated phases, while unaffecting grain size. Unidirectional tensile stress caused directional growth of β phase([1010]), as well as rotation of weave towards the basal plane texture, resulting in namely stress orientation effect. Solute atoms diffused in the direction of tensile stress while vacancies moved perpendicular to the direction of tensile stress, resulting in PFZ at grain boundaries(157.06 nm). By contrast, cyclic stresses led to the growth of β phase in three directions([1010], [1100] and [0110]). The solute atoms and vacancies were uniformly distributed in the Mg matrix instead of directional diffusion, effectively reducing the width of PFZ(112.39 nm) at the grain boundary. These features significantly improved the mechanical properties of alloy specimens after cyclic stress creep aging when compared to unidirectional stress creep aging, with yield strength(YS), ultimate tensile strength(UTS), and elongation(EL) enhanced from 171.6 MPa, 305.5 MPa, and 4.4%to 174.8 MPa, 326.3 MPa, and 6.9%, respectively. 展开更多
关键词 mg-9Gd-2Nd-0.5Zr alloy Precipitated phase Stress orientation effect PFZ Mechanical properties
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Flow stress and dynamic recrystallization behavior of Al-9Mg-1.1Li-0.5Mn alloy during hot compression process 被引量:3
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作者 Xi-hong CHEN Cai-he FAN +2 位作者 Ze-yi HU Jian-jun YANG Wen-li GAO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2018年第12期2401-2409,共9页
The flow stress behavior of spray-formed Al-9Mg-1.1Li-0.5Mn alloy was studied using thermal simulation tests on a Gleeble-3500machine over deformation temperature range of300-450℃and strain rate of0.01-10s^-1.The mic... The flow stress behavior of spray-formed Al-9Mg-1.1Li-0.5Mn alloy was studied using thermal simulation tests on a Gleeble-3500machine over deformation temperature range of300-450℃and strain rate of0.01-10s^-1.The microstructural evolution of the alloy during the hot compression process was characterized by transmission electron microscopy(TEM)and electron back scatter diffractometry(EBSD).The results show that the flow stress behavior and microstructural evolution are sensitive to deformation parameters.The peak stress level,steady flow stress,dislocation density and amount of substructures of the alloy increase with decreasing deformation temperature and increasing strain rate.Conversely,the high angle grain boundary area increases,the grain boundary is in serrated shape and the dynamic recrystallization in the alloy occurs.The microstructure of the alloy is fibrous-like and the main softening mechanism is dynamic recovery during steady deformation state.The flow stress behavior can be represented by the Zener-Hollomon parameter Z in the hyperbolic sine equation with the hot deformation activation energy of184.2538kJ/mol.The constitutive equation and the hot processing map were established.The hot processing map exhibits that the optimum processing conditions for Al-9Mg-1.1Li-0.5Mn alloy are in deformation temperature range from380to450℃and strain rate range from0.01to0.1s^-1. 展开更多
关键词 Al-9mg-1.1li-0.5Mn alloy flow stress constitutive equation processing map dynamic recrystallization
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The Solidification Behavior of Mg-9Al-2Ca Alloy under Furnace Cooling
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作者 JI Huanming 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2022年第4期735-739,共5页
To understand the solidification pathway and microstructure evolution of Mg-9Al-2Ca alloy,the cooling curve of the alloy solidified under furnace cooling was measured and the water-quenched samples were observed.The e... To understand the solidification pathway and microstructure evolution of Mg-9Al-2Ca alloy,the cooling curve of the alloy solidified under furnace cooling was measured and the water-quenched samples were observed.The experimental results show that the matrix phase of α-Mg dendrites is first generated at 596℃ during the solidification process,then the eutectic phases of Al_(2)Ca and Mg_(17)Al_(12) are formed at 518 and 447℃,respectively,and the solidification is terminated at 436℃.In the process of solidification,the seaweed dendrites of α-Mg get coarser and are gradually transformed into the global dendrites;besides,the secondary dendrite arms spacing(SDAS)of α-Mg as well as the solid fraction are both increased,while the increasing rate of SDAS of α-Mg and the solid fraction in the temperature region of 600-550℃ is faster than that in the temperature region of 550-436℃.And a power function relationship can be used to illustrate the change of the SDAS and the solid fraction with the temperature of solidification. 展开更多
关键词 mg-9Al-2Ca alloy SOliDIFICATION cooling curve microstructure evolution
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Effect of Ca addition on grain refinement of Mg–9Li–1Al alloy 被引量:5
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作者 Ying Zeng Bin Jiang +2 位作者 Dehui Huang Jiahong Dai Fusheng Pan 《Journal of Magnesium and Alloys》 SCIE EI CAS 2013年第4期297-302,共6页
The as-cast and as-extruded Mg–9Li–1Al–xCa alloys(x=0,0.2;wt%)were prepared by a simple alloying process followed by hot extrusion with an extrusion ratio of 28.2.The microstructures of the as-cast and as-extruded... The as-cast and as-extruded Mg–9Li–1Al–xCa alloys(x=0,0.2;wt%)were prepared by a simple alloying process followed by hot extrusion with an extrusion ratio of 28.2.The microstructures of the as-cast and as-extruded Mg–9Li–1Al–xCa alloys were observed to investigate the effect of calcium(Ca)element on the Mg–9Li–1Al(LA91)alloy,and the crystallographic calculations between Al_(2)Ca and the matrix(α-Mg andβ-Li phases)were examined on the basis of the edge-to-edge matching model.The experimental results indicate that the addition of 0.2 wt%Ca into LA91 alloy reduce the size of theα-Mg phases in the as-cast alloy and that ofβ-Li phases in the as-extruded alloy due to the Al_(2)Ca particles distributed inside the matrix.Crystallographic calculation results suggested that there is a good crystallographic matching between the matrix and Al_(2)Ca,which confirmed that Al_(2)Ca particles can act as a heterogeneous nucleation site for bothα-Mg andβ-Li phases and were effective grain refiners for LA91 alloy. 展开更多
关键词 mg-9li-1Al alloy(LA91) CALCIUM REFINEMENT Edge-to-edge matching model
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Effect of Li addition on mechanical properties and ageing precipitation behavior of extruded Al-3.0 Mg-0.5 Si alloy 被引量:3
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作者 YANG Xiao-kun XIONG Bai-qing +6 位作者 LI Xi-wu YAN Li-zhen LI Zhi-hui ZHANG Yong-an LI Ya-nan WEN Kai LIU Hong-wei 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第9期2636-2646,共11页
The effect of Li(2.0 wt%)addition on mechanical properties and ageing precipitation behavior of Al-3.0 Mg 0.5 Si was investigated by tensile test,dynamic elasticity modulus test,scanning electron microscopy(SEM),trans... The effect of Li(2.0 wt%)addition on mechanical properties and ageing precipitation behavior of Al-3.0 Mg 0.5 Si was investigated by tensile test,dynamic elasticity modulus test,scanning electron microscopy(SEM),transmission electron microscopy(TEM)and high-resolution transmission electron microscopy(HRTEM)images.The results show that the tensile strength of the Li-containing alloy can be significantly improved;however,the ductility is sharply decreased and the fracture mechanism changes from ductile fracture to intergranular fracture.The elasticity modulus of the Li-containing alloy increases by 11.6%compared with the base alloy.The microstructure observation shows that the Li addition can absolutely change the precipitation behavior of the base alloy,andδ′-Al_(3)Li phase becomes the main precipitates.Besides,β′′-Mg_(2)Si andδ′-Al_(3)Li dual phases precipitation can be visibly observed at 170℃ ageing for 100 h,although the quantity ofδ′-Al_(3)Li phase is more thanβ′′-Mg_(2)Si phase.The width of the precipitate-free zone(PFZ)of the Li-containing alloy is much wider at the over-ageing state than the base alloy,which has a negative impact on the ductile and results in the decrease of elongation. 展开更多
关键词 Al-3.0 mg-0.5 Si alloy li addition microstructure ageing behavior mechanical properties dynamic elasticity modulus
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Grain refinement impact on the mechanical properties and wear behavior of Mg-9Gd-3Y-2Zn-0.5Zr alloy after decreasing temperature reciprocating upsetting-extrusion 被引量:2
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作者 Wenlong Xu Jianmin Yu +5 位作者 Leichen Jia Chang Gao Zhan Miao Guoqin Wu Guojun Li Zhimin Zhang 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2022年第12期3506-3519,共14页
Based on the deforming technique of severe plastic deformation(SPD), the grain refinement of a Mg-9Gd-3Y-2Zn-0.5Zr alloy treated with decreasing temperature reciprocating upsetting-extrusion(RUE) and its influence on ... Based on the deforming technique of severe plastic deformation(SPD), the grain refinement of a Mg-9Gd-3Y-2Zn-0.5Zr alloy treated with decreasing temperature reciprocating upsetting-extrusion(RUE) and its influence on the mechanical properties and wear behavior of the alloy were studied. The RUE process was carried out for 4 passes in total, starting at 0 ℃ and decreasing by 10 ℃ for each pass. The results showed that as the number of RUE passes increased, the grain refinement effect was obvious, and the second phase in the alloy was evenly distributed. Room temperature tensile properties of the alloy and the deepening of the RUE degree showed a positive correlation trend, which was due to the grain refinement, uniform distribution of the second phase and texture weakening. And the microhardness of the alloy showed that the microhardness of RUE is the largest in 2 passes. The change in microhardness was the result of dynamic competition between the softening effect of DRX and the work hardening effect. In addition, the wear resistance of the alloy showed a positive correlation with the degree of RUE under low load conditions. When the applied load was higher, the wear resistance of the alloy treated with RUE decreased compared to the initial state alloy. This phenomenon was mainly due to the presence of oxidative wear on the surface of the alloy, which could balance the positive contribution of severe plastic deformation to wear resistance to a certain extent. 展开更多
关键词 mg-9Gd-3Y-2Zn-0.5Zr alloy Reciprocating upsetting-extrusion Grain refinement Texture Mechanical properties Wear behavior
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大应变交叉轧制Al-9Mg-1.8Li合金板材的显微组织及织构特征 被引量:1
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作者 范才河 曾广胜 +3 位作者 陈喜红 欧玲 阳建君 彭英彪 《中国有色金属学报》 EI CAS CSCD 北大核心 2018年第8期1551-1558,共8页
采用金相显微镜(OM)、透射电镜(TEM)、电子背散射成像技术(EBSD)和X射线,对比分析喷射成形Al-9Mg-1.8Li合金交叉轧制态板材与挤压态板材的微结构及织构特征,并测试板材的拉伸性能和深冲性能。结果表明:大变形量交叉轧制促进动态再结晶... 采用金相显微镜(OM)、透射电镜(TEM)、电子背散射成像技术(EBSD)和X射线,对比分析喷射成形Al-9Mg-1.8Li合金交叉轧制态板材与挤压态板材的微结构及织构特征,并测试板材的拉伸性能和深冲性能。结果表明:大变形量交叉轧制促进动态再结晶的发生,细化晶粒组织,改善再结晶晶粒的择优取向;与CBA和CCB轧制方式相比较,CBB轧制方式显著降低挤压态合金中典型的Brass织构{110}?112?的取向密度,在β取向线上CBB轧制态板材中的Copper织构{112}?111?取向密度最低,且板材中没有典型的织构特征;同时,CBB轧制态合金板材的具有更好的深冲性能,在0°、45°和90°方向的力学性能基本一致,其室温拉伸强度、屈服强度和伸长率分别在611 MPa、507 MPa和20.6%以上。 展开更多
关键词 交叉轧制 喷射成形 Al-9mg-1.8li合金 显微组织 织构特征
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Mg-9Li-0.5Ca双相合金中共晶组织的形成及力学行为
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作者 边丽萍 周鱼跃 +3 位作者 陈光 梁伟 赵兴国 孟棫朴 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2017年第1期266-269,共4页
在Mg-9Li双相合金中添加0.5%(质量分数,下同)Ca元素,通过磁悬浮熔炼及铜模吸铸方法熔炼制备了共晶型Mg-9Li-0.5Ca合金。组织观察表明,常规Mg-9Li双相合金中形成的α-Mg相为粗大短板条状,取向随机、均匀无序分布于β-Li基体中。而Mg-9Li-... 在Mg-9Li双相合金中添加0.5%(质量分数,下同)Ca元素,通过磁悬浮熔炼及铜模吸铸方法熔炼制备了共晶型Mg-9Li-0.5Ca合金。组织观察表明,常规Mg-9Li双相合金中形成的α-Mg相为粗大短板条状,取向随机、均匀无序分布于β-Li基体中。而Mg-9Li-0.5Ca合金中形成了棒状交替排列的(α-Mg+β-Li)共晶团组织,在共晶团内,α-Mg相呈长纤维状(长宽比约为100)、并以一定取向定向排列;相比于Mg-9Li合金,共晶a-Mg相纤维间距及纤维直径显著减小、组织明显细化,a-Mg相体积分数显著增加;同时,大量纳米、亚微米级Mg_2Ca颗粒均匀弥散分布于α-Mg、β-Li晶粒内及两相界面上。由此导致具有该共晶组织的Mg-9Li-0.5Ca合金相比于Mg-9Li合金力学性能显著增加,室温拉伸屈服强度提高3%、抗拉强度提高3.5%,伸长率提高50%。分析表明,微量Ca元素的添加和铜模吸铸产生的较快的冷却速度,诱发Mg-9Li双相中细小(α-Mg+β-Li)共晶组织的形成,显著提高力学性能。 展开更多
关键词 mg-9li合金 共晶组织 弥散强化 力学性能
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Effect of addition of Al-Si eutectic alloy on microstructure and mechanical properties of Mg-12wt%Li alloy 被引量:7
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作者 Zilong Zhao Xuegang Xing +3 位作者 Jinyu Ma Liping Bian Wei Liang Yide Wang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2018年第9期1564-1569,共6页
Mg-12 Li, Mg-12 Li-3(Al-Si), Mg-12 Li-7(Al-Si) and Mg-12 Li-9(Al-Si) alloys(all in wt%) were fabricated by high frequency vacuum induction melting in a water cooled copper crucible. After subsequently hotrolli... Mg-12 Li, Mg-12 Li-3(Al-Si), Mg-12 Li-7(Al-Si) and Mg-12 Li-9(Al-Si) alloys(all in wt%) were fabricated by high frequency vacuum induction melting in a water cooled copper crucible. After subsequently hotrolling and annealing, their microstructure and mechanical properties were investigated. Experimental results show that mechanical properties of Mg-12 Li alloy were significantly improved by the addition of Al-Si eutectic alloy. Mg-12 Li-7(Al-Si) alloy shows the highest strength of 196 MPa of the investigated alloys, which is about 1.8 times of the strength of Mg-12 Li alloy, and maintains high elongation of 27%.The improved mechanical property with addition of Al and Si in the eutectic proportion into Mg-12 Li alloy was attributed to the solution strengthening effect of A1 and precipitation hardening effect from AlLi and Mg_2 Si precipitates. 展开更多
关键词 Al-Si eutectic mg-12li alloys Precipitation Strengthening Rolling
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Influence of Al-Si additions on mechanical properties and corrosion resistance of Mg-8Li dual-phase alloys 被引量:4
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作者 Zi-long Zhao Xue-gang Xing +2 位作者 Yi Luo Yi-de Wang Wei Liang 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2017年第4期426-429,共4页
Sheet samples of Mg-8Li,Mg-8Li-3Al,Mg-8Li-3AlSi and Mg-8Li-5AlSi alloys were obtained by hot rolling.Optical microscope,microhardness tester,nanoindentor,X-ray diffractometer and electrochemical analyzer were adopted ... Sheet samples of Mg-8Li,Mg-8Li-3Al,Mg-8Li-3AlSi and Mg-8Li-5AlSi alloys were obtained by hot rolling.Optical microscope,microhardness tester,nanoindentor,X-ray diffractometer and electrochemical analyzer were adopted to investigate the microstructures,micro-mechanical properties and corrosion resistance.Roller was preheated to 150°C before rolling process,and rolling reduction designed was about20% per pass with a total rolling reduction of 84%.The rolled plates were annealed at 200°C for 120 min.The tensile tests were performed at room temperature.Experimental results showed that both the strength and corrosion resistance of theα+βdual-phase of Mg-Li alloy were significantly improved with adding Al-Si elements.The strength enhancement was attributed to the solid solution of Al into theα-Mg matrix and into theβ-Li matrix as well as to the precipitation strengthening of Mg2 Si particles.Besides,the dendrite grains ofα-Mg transformed to equiaxed ones with addition of Al into alloy Mg-Li. 展开更多
关键词 mg-8li dual-phase alloy Mechanical property Corrosion resistance Hardness Rolling
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