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Improving comprehensive properties of Cu-11.9Al-2.5Mn shape memory alloy by adding multi-layer graphene carried by Cu_(51)Zr_(14)inoculant particles
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作者 Zhi-xian JIAO Qing-zhou WANG +4 位作者 Yan-jun DING Fu-xing YIN Chao-hui XU Cui-hong HAN Qi-xiang FAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第10期3265-3281,共17页
In order to improve the comprehensive properties of the Cu-11.9Al-2.5Mn shape memory alloy(SMA),multilayer graphene(MLG)carried by Cu_(51)Zr_(14)inoculant particles was incorporated and dispersed into this alloy throu... In order to improve the comprehensive properties of the Cu-11.9Al-2.5Mn shape memory alloy(SMA),multilayer graphene(MLG)carried by Cu_(51)Zr_(14)inoculant particles was incorporated and dispersed into this alloy through preparing the preform of the cold-pressed MLG-Cu_(51)Zr_(14)composite powders.In the resultant novel MLG/Cu-Al-Mn composites,MLG in fragmented or flocculent form has a good bonding with the Cu-Al-Mn matrix.MLG can prevent the coarsening of grains of the Cu-Al-Mn SMA and cause thermal mismatch dislocations near the MLG/Cu-Al-Mn interfaces.The damping and mechanical properties of the MLG/Cu-Al-Mn composites are significantly improved.When the content of MLG reaches 0.2 wt.%,the highest room temperature damping of 0.0558,tensile strength of 801.5 MPa,elongation of 10.8%,and hardness of HV 308 can be obtained.On the basis of in-depth observation of microstructures,combined with the theory of internal friction and strengthening and toughening theories of metals,the relevant mechanisms are discussed. 展开更多
关键词 Cu−Al−mn shape memory alloy multilayer graphene(MLG) microstructure interface damping mechanical properties
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Effects ofslip mode on microstructure evolution and compressive flow behavior of extruded dilute Mg−0.5Bi−0.5Sn−0.5Mn alloy
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作者 Zhi-yong YOU Wei-li CHENG +6 位作者 Guo-lei LIU Jian LI Li-fei WANG Hui YU Hong-xia WANG Ze-qin CUI Jin-hui WANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第11期3599-3614,共16页
The influence of the slip mode on the microstructure evolution and compressive flow behavior at different strains in an extruded dilute Mg−0.5Bi−0.5Sn−0.5Mn alloy was analyzed through electron backscatter diffraction,... The influence of the slip mode on the microstructure evolution and compressive flow behavior at different strains in an extruded dilute Mg−0.5Bi−0.5Sn−0.5Mn alloy was analyzed through electron backscatter diffraction,X-ray diffraction,transmission electron microscopy,and hot compression tests.The results showed that at a low strain of 0.05,the basal,pyramidaland<c+a>slip modes were simultaneously activated.Nevertheless,at the middle stage of deformation(strain of 0.1,0.2 and 0.5),theslip mode was difficult to be activated and<c+a>slip mode became dominant.The deformation process between strains of 0.2 and 0.5 was primarily characterized by the softening effect resulting from the simultaneous occurrence of continuous dynamic recrystallization and discontinuous dynamic recrystallization.Ultimately,at strain of 0.8,a dynamic equilibrium was established,with the flow stress remaining constant due to the interplay between the dynamic softening brought about by discontinuous dynamic recrystallization and the work-hardening effect induced by the activation of the basalslip mode. 展开更多
关键词 dilute Mg−Bi−Sn−mn alloy slip mode hot compression flow behavior dynamic recrystallization
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Crack elimination and strength enhancement mechanisms of selective laser melted Si-modified Al−Mn−Mg−Er−Zr alloy
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作者 Jiang YU Yao-xiang GENG +2 位作者 Hong-bo JU Zhi-jie ZHANG Jun-hua XU 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2024年第8期2431-2441,共11页
In order to increase the processability and process window of the selective laser melting(SLM)-fabricated Al−Mn−Mg−Er−Zr alloy,a novel Si-modified Al−Mn−Mg−Er−Zr alloy was designed.The effect of Si alloying on the sur... In order to increase the processability and process window of the selective laser melting(SLM)-fabricated Al−Mn−Mg−Er−Zr alloy,a novel Si-modified Al−Mn−Mg−Er−Zr alloy was designed.The effect of Si alloying on the surface quality,processability,microstructure,and mechanical properties of the SLM-fabricated alloy was studied.The results showed that introducing Si into the Al−Mn−Mg−Er−Zr alloy prevented balling and keyhole formation,refined the grain size,and reduced the solidification temperature,which eliminated cracks and increased the processability and process window of the alloy.The maximum relative density of the SLM-fabricated Si/Al−Mn−Mg−Er−Zr alloy reached 99.6%.The yield strength and ultimate tensile strength of the alloy were(371±7)MPa and(518±6)MPa,respectively.These values were higher than those of the SLM-fabricated Al−Mn−Mg−Er−Zr and other Sc-free Al−Mg-based alloys. 展开更多
关键词 selective laser melting Al−mn−Mg−Er−Zr−Si alloy surface roughness PROCESSABILITY mechanical properties
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Effects of Ce addition on microstructure and mechanical properties of Mg-6Zn-1Mn alloy 被引量:8
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作者 张丁非 齐福刚 +2 位作者 兰伟 石国梁 赵霞兵 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2011年第4期703-710,共8页
The effects of Ce addition on the microstructure of Mg-6Zn-1Mn alloy during casting, homogenization, hot extrusion, T4, T6 and T4+two-step aging were investigated. The mechanical properties of alloys with and without... The effects of Ce addition on the microstructure of Mg-6Zn-1Mn alloy during casting, homogenization, hot extrusion, T4, T6 and T4+two-step aging were investigated. The mechanical properties of alloys with and without Ce were compared. The results showed that Ce had an obvious effect on the microstructure of ZM61-0.5Ce alloy by restricting the occurrence of dynamic recrystallization and restraining the grain growth during extrusion and heat treatment subsequently. A new binary phase Mg 12 Ce was identified in ZM61-0.5Ce alloy, which distributed at grain boundaries and was broken to small particles distributed at grain boundaries along extrusion direction during extrusion. The mechanical properties of as-extruded ZM61-0.5Ce alloy were improved with the addition of Ce. The improved tensile properties of as-extruded ZM61-0.5Ce alloy were due to the finer grain sizes as compared to ZM61 alloy. However, the UTS and YS decreased severely and the elongation increased when ZM61-0.5Ce was treated by T6 and T4+two-step aging. Brittle Mg 12 Ce phase, which was distributed at the grain boundary areas and cannot dissolve into the Mg matrix after solution treatment, became crack source under tensile stress. 展开更多
关键词 Mg-6Zn-1mn alloy CERIUM MICROSTRUCTURE mechanical properties
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轧制工艺对Mg-Gd-Y-Zn-Mn合金中LPSO相及其组织性能的影响 被引量:7
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作者 王敬丰 黄秀洪 +3 位作者 谢飞舟 黄崧 侯帆 潘复生 《中国有色金属学报》 EI CAS CSCD 北大核心 2016年第8期1588-1596,共9页
研究"轧制+固溶+轧制"工艺和"固溶+轧制"工艺对Mg-Gd-Y-Zn-Mn合金中LPSO相及其组织性能的影响。结果表明:经"轧制+固溶+轧制"工艺处理后,合金中块状LPSO相较小,且分布弥散,合金的组织由细小的再结晶晶粒... 研究"轧制+固溶+轧制"工艺和"固溶+轧制"工艺对Mg-Gd-Y-Zn-Mn合金中LPSO相及其组织性能的影响。结果表明:经"轧制+固溶+轧制"工艺处理后,合金中块状LPSO相较小,且分布弥散,合金的组织由细小的再结晶晶粒组成,最终合金获得较好的综合力学性能,抗拉强度(UTS)达到347 MPa,伸长率(EL)为11.6%;经"固溶+轧制"工艺处理后,合金中块状LPSO相较粗大,分布不均匀,由于固溶退火后析出的层状LPSO相阻碍合金的再结晶,轧制后合金中仍存在变形组织,最终合金具有相对较高的抗拉强度(UTS为358 MPa),但是伸长率较低(EL为6.6%);对比而言,"轧制+固溶+轧制"工艺易进行更大压下量轧制,进而获得更高综合力学性能。 展开更多
关键词 mg-gd-y-Zn-mn合金 轧制工艺 LPSO相 显微组织 力学性能
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Fe对Ni-Mn-Ga合金微丝形状记忆效应的影响 被引量:1
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作者 刘艳芬 李爽 +2 位作者 郎子锐 马梓轩 刘晓华 《材料工程》 EI CAS CSCD 北大核心 2024年第3期182-191,共10页
以Ni-Mn-Ga合金微丝为基础分析Fe元素掺杂前后对合金微丝的形状记忆效应的变化。用真空磁控钨极电弧熔炼炉制备Ni-Mn-Ga-Fe合金,并用高真空精密熔体抽拉设备将母合金制备成微丝。采用EDS能谱分析仪、DSC差示扫描量热分析仪、XRD、DMA动... 以Ni-Mn-Ga合金微丝为基础分析Fe元素掺杂前后对合金微丝的形状记忆效应的变化。用真空磁控钨极电弧熔炼炉制备Ni-Mn-Ga-Fe合金,并用高真空精密熔体抽拉设备将母合金制备成微丝。采用EDS能谱分析仪、DSC差示扫描量热分析仪、XRD、DMA动态机械分析仪,研究Fe元素掺杂Ni-Mn-Ga合金微丝后的物相、马氏体相变行为、微丝的形状记忆效应。结果表明,Ni-Mn-Ga-Fe合金微丝显示的是四方结构马氏体相和面心立方结构奥氏体相的混合相,对微丝采用步进式阶梯有序化热处理,有序化热处理能有效降低微丝内部缺陷,释放内应力,细化微丝内部晶粒,收缩晶格体积,马氏体孪晶界面更加平直,孪晶面更易移动,微丝的伸长率提高。在258 K下对制备态Ni-Mn-Ga-Fe合金微丝进行单程形状记忆的测试,拉伸到350 MPa后卸载到0 MPa,随后将微丝升温到奥氏体态后,应变恢复率为78.75%,而在289K对有序化热处理态Ni-Mn-Ga-Fe合金微丝进行单程形状记忆测试,应变恢复率达到100%。在126 MPa和240 MPa下分别对有序化热处理态三元Ni-Mn-Ga合金微丝和Ni-Mn-Ga-Fe合金微丝进行恒应力拉伸,两种微丝双程形状恢复能力均接近100%,但Ni-Mn-Ga-Fe合金微丝在发生形变时的弹性应变储能略高于Ni-Mn-Ga合金微丝。Fe的加入使得到的合金微丝的力学性能高于传统三元形状记忆合金微丝;制备态下和热处理态的Ni-Mn-Ga-Fe合金微丝的马氏体相变温度较Ni-Mn-Ga合金微丝分别提高6.0 K和11.5 K,热滞分别降低6.7 K和1.5 K。 展开更多
关键词 形状记忆合金 Ni-mn-Ga铁磁合金微丝 马氏体相变 形状记忆效应
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Zr对Al-Si-Mg-Mn合金凝固过程、时效组织和性能的影响
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作者 陈安柱 周鹏飞 《矿冶工程》 CAS 北大核心 2024年第3期156-160,165,共6页
通过模拟计算、组织观察以及力学性能测试,研究了不同Zr含量对铸造Al-Si-Mg-Mn合金凝固过程、时效组织及力学性能的影响。结果表明,随着Zr含量增加,合金凝固路径存在显著差异,晶粒由初期树枝晶逐步演变为等轴晶;175℃时效7 h条件下,Zr... 通过模拟计算、组织观察以及力学性能测试,研究了不同Zr含量对铸造Al-Si-Mg-Mn合金凝固过程、时效组织及力学性能的影响。结果表明,随着Zr含量增加,合金凝固路径存在显著差异,晶粒由初期树枝晶逐步演变为等轴晶;175℃时效7 h条件下,Zr的加入显著提高合金硬度。Zr的加入促使析出相在更低时效温度析出,这可能是Zr细化了晶粒从而提高了扩散效率。峰值时效时合金主要析出相为β″相和Q′相。 展开更多
关键词 铝合金 轻量化 析出强化 晶粒细化 ZR Al-Si-Mg-mn 时效 析出相 组织形貌
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Mn微合金化Al-Si-Cu-Mg合金显微组织及耐蚀性能研究
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作者 陈浩 李天宇 +6 位作者 王瑞 王东涛 张鸣鹤 赵新宇 施昊 蔡伟涛 长海博文 《铸造技术》 CAS 2024年第5期452-458,共7页
Al-Si-Cu-Mg系列合金具有优异的强韧性,但其中的含Cu强化相极大地影响了该系合金的耐蚀性能。因此,本文通过对不同Mn含量的Al-7Si-2Cu-0.6Mg合金进行显微组织观察和电化学分析,探究Mn元素的添加对T6热处理状态下合金微观结构和耐蚀性的... Al-Si-Cu-Mg系列合金具有优异的强韧性,但其中的含Cu强化相极大地影响了该系合金的耐蚀性能。因此,本文通过对不同Mn含量的Al-7Si-2Cu-0.6Mg合金进行显微组织观察和电化学分析,探究Mn元素的添加对T6热处理状态下合金微观结构和耐蚀性的影响。结果表明,Mn添加量的提高对合金显微硬度几乎没有影响,但在合金基体中可以观察到弥散相。随着Mn含量升高,合金的耐蚀性呈现先升高后降低的趋势。添加0.360%Mn(质量分数)合金具有最佳耐蚀性,腐蚀电流密度比基础合金减少了54%。腐蚀形貌观察结果表明,Mn的添加可以显著减弱合金的点蚀趋势。 展开更多
关键词 AL-SI-CU-MG合金 mn含量 耐蚀性 电化学分析
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Microstructure and properties of Mg-Li-Al alloys with Mn addition 被引量:3
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作者 LI Hong-bin YAO Guang-chun +3 位作者 LIANG Chun-lin LIU Yi-han JI Hai-bin LIU Zhen-gang 《China Foundry》 SCIE CAS 2006年第3期204-207,共4页
Mg-xLi-Al alloys with Mn addition from 0.2% to 1.5 % by wt. were produced and studied. The density of the alloys is very low, between 1.21 g/cm3 and 1.64 g/cm3, while the microstructures change from single α-, (α+β... Mg-xLi-Al alloys with Mn addition from 0.2% to 1.5 % by wt. were produced and studied. The density of the alloys is very low, between 1.21 g/cm3 and 1.64 g/cm3, while the microstructures change from single α-, (α+β)-, to single β-phase with lithium content rising from 5 % to 22 % by wt. The main alloy studied was LA92 alloy with Mn addition. The results of the tensile tests show that the strength decreases with increasing lithium content, while the elongation increases sharply, and the UTS and YS rise by 26.8% and 22.7% respectively, when 0.5 % by wt. Mn is added. It is also known, by microstructure observation, SEM with EDS and X-ray analysis, that adding Mn can produce some new hard phases in the alloy, which may worsen the tensile properties. 展开更多
关键词 Mg-Li-Al alloy mn microstructure TENSILE properties
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Evolution of microstructures in Al-Mn-Mg alloys during homogenization 被引量:3
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作者 孙东立 姜石峰 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2002年第1期55-60,共6页
The microstructures of five Al Mn Mg alloys with different Mn, Si and Fe contents were investigated in as cast and homogenized states. The influences of chemical composition and homogenizing process on the microstruct... The microstructures of five Al Mn Mg alloys with different Mn, Si and Fe contents were investigated in as cast and homogenized states. The influences of chemical composition and homogenizing process on the microstructure were studied. The results show that the morphology of the primary second particles are not influenced by the variation of Mn, Si and Fe level, and the amount of the primary α phase, the α precipitates and Mg 2Si phase are enhanced by the addition of Si; The average size of primary intermetallic particles reduces and the volume fraction of them decreases slightly with the increase in homogenization temperature and time; However, the volume fraction of primary secondary particles is increased by adding more Mn, Si and Fe elements in alloys. Moreover, a new MgSiCu rich eutectic in the as cast ingot has been found. 展开更多
关键词 Al mn Mg alloy HOMOGENIZATION microstructure
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Effect of Al addition on microstructure and mechanical properties of Mg−Zn−Sn−Mn alloy 被引量:10
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作者 Cai-hong HOU Zhi-song YE +4 位作者 Fu-gang QI Qing WANG Lian-hui LI Xiao-ping OUYANG Nie ZHAO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第7期1951-1968,共18页
The microstructure and properties of the as-cast,as-homogenized and as-extruded Mg−6Zn−4Sn−1Mn(ZTM641)alloy with various Al contents(0,0.5,1,2,3 and 4 wt.%)were investigated by OM,XRD,DSC,SEM,TEM and uniaxial tensile ... The microstructure and properties of the as-cast,as-homogenized and as-extruded Mg−6Zn−4Sn−1Mn(ZTM641)alloy with various Al contents(0,0.5,1,2,3 and 4 wt.%)were investigated by OM,XRD,DSC,SEM,TEM and uniaxial tensile tests.The results show that when the Al content is not higher than 0.5%,the alloys are mainly composed of α-Mg,Mg_(2)Sn,Al_(8)Mn_(5)and Mg_(7)Zn_(3)phases.When the Al content is higher than 0.5%,the alloys mainly consist ofα-Mg,Mg_(2)Sn,MgZn,Mg_(32)(Al,Zn)_(49),Al_(2)Mg_(5)Zn_(2),Al_(11)Mn_(4)and Al_(8)Mn_(5)phases.A small amount of Al(≤1%)can increase the proportion of fine dynamic recrystallized(DRXed)grains during hot-extrusion process.The roomtemperature tensile test results show that the ZTM641−1Al alloy has the best comprehensive mechanical properties,in which the ultimate tensile strength is 332 MPa,yield strength is 221 MPa and the elongation is 15%.Elevatedtemperature tensile test results at 150 and 200℃ show that ZTM641−2Al alloy has the best comprehensive mechanical properties. 展开更多
关键词 Mg−Zn−Sn−mn alloy AL microstructure mechanical properties dynamic recrystallization nucleation
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Effect of Mn on microstructures and mechanical properties of Al-Mg-SiCu-Cr-V alloy 被引量:5
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作者 Zhao Zhihao Meng Yi Cui Jianzhong 《China Foundry》 SCIE CAS 2012年第4期349-355,共7页
In order to improve the performances of the Al-Mg-Si-Cu-Cr-V alloy,various amounts of Mn(0-0.9wt.%) were added.The effect of this Mn on the microstructures and mechanical properties of Al-Mg-Si-Cu-Cr-V alloys in diffe... In order to improve the performances of the Al-Mg-Si-Cu-Cr-V alloy,various amounts of Mn(0-0.9wt.%) were added.The effect of this Mn on the microstructures and mechanical properties of Al-Mg-Si-Cu-Cr-V alloys in different states,especially after hot extrution and solid solution treatment,was systematically studied using scanning electron microscopy(SEM),energy dispersive spectroscopy(EDS),and mechanical tests at room temperature.The results show that 0.2wt.% Mn can both refine the as-cast microstructure of the alloy and strengthen the extrusion+T6 state alloy without damaging the plasticity badly due to the formation of Al 15(FeMn) 3 Si 2 and Al 15 Mn 3 Si 2 dispersoids.Compared with the extrusion+T6 state alloy without Mn addition,the ultimate tensile strength and yield strength of the alloy with 0.2wt.% Mn addition are increased from 416.9 MPa to 431.4 MPa,360.8 MPa to 372 MPa,respectively.The elongation of the extrusion+T6 state alloy does not show obvious change when the Mn addition is less than 0.5wt.%,and for the alloy with 0.2wt.% Mn addition its elongation is still as high as 15.6%.However,when over 0.7wt.% Mn is added to the alloy,some coarse,stable and refractory AlVMn and Al(VMn)Si phases form.These coarse phases can reduce the effect of Mn on the inhibition of re-crystallization;and they retain the angular morphology permanently after the subsequent deformation process and heat treatment.This damages the mechanical properties of the alloy. 展开更多
关键词 Al-Mg-Si-Cu-Cr-V alloy mn content microstructure mechanical properties
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Novel Mg-Bi-Mn wrought alloys:The effects of extrusion temperature and Mn addition on their microstructures and mechanical properties 被引量:5
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作者 Qinghang Wang Haowei Zhai +5 位作者 Lintao Liu Hongbo Xia Bin Jiang Jun Zhao Daolun Chen Fusheng Pan 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2022年第9期2588-2606,共19页
Designing and developing the Mg alloys with low cost and high performance is of the great significance.Novel Mg-1Bi-xMn(x=0,1and 2 wt.%)extruded alloys,in this work,were fabricated at different extrusion temperatures(... Designing and developing the Mg alloys with low cost and high performance is of the great significance.Novel Mg-1Bi-xMn(x=0,1and 2 wt.%)extruded alloys,in this work,were fabricated at different extrusion temperatures(220,250 and 300℃).The effects of extrusion temperature and Mn addition on the microstructures and mechanical properties of extruded alloys at room temperature were investigated.The results showed that decreasing the extrusion temperature could refine the average grain size,weaken the basal fiber texture intensity and improve the microstructural homogeneity of extruded alloys.When the Mn element was added to the Mg-1Bi alloy,the average grain size further reduced.Simultaneously,the number fraction of low angle grain boundaries(LAGBs)increased,along with the occurrence of regions without dynamic recrystallization(unDRX).The combined effects of grain refinement and coarse unDRXed structure made the textures of the extruded Mg-1Bi-xMn alloys never obviously change.Besides few large size un-dissolved second phases,fine Mg_(3)Bi_(2) and α-Mn phases were precipitated in the extruded Mg-1Bi-xMn alloys and partial nano-scaleα-Mn particles pined at grain boundaries(GBs)to effectively impede the migration of GBs for grain refinement.Microstructural variations determined the extruded Mg-1Bi-2Mn alloy to exhibit the highest yield strength of~319.2 MPa with the appropriate elongation-to-failure of~13%at the extrusion temperature of 220℃,and they enabled the extruded Mg-1Bi-1Mn alloy to show the highest elongation-to-failure of~26%without the obvious loss of yield strength of~252.1 MPa. 展开更多
关键词 Mg-Bi-mn alloys Extrusion temperature mn addition Microstructure Mechanical property
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Microstructure and mechanical and corrosion properties of hot-extruded Mg–Zn–Ca–(Mn)biodegradable alloys 被引量:14
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作者 V.E.Bazhenov A.V.Li +6 位作者 A.A.Komissarov A.V.Koltygin S.A.Tavolzhanskii V.A.Bautin O.O.Voropaeva A.M.Mukhametshina A.A.Tokar 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2021年第4期1436-1451,共16页
Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechanical properties comparable to those of human bone and require no revision surgery for their removal.Among Mg-based al... Biodegradable Mg-based implants are widely used in clinical applications because they exhibit mechanical properties comparable to those of human bone and require no revision surgery for their removal.Among Mg-based alloys,Mg–Zn–Ca–(Mn)alloys have been extensively investigated for medical applications because the constituent elements of these alloys,Mg,Zn,Ca,and Mn,are present in human tissues as nutrient elements.In this study,we investigated the effect of the hot extrusion temperature on the microstructure,mechanical properties,and biodegradation rate of Mg–Zn–Ca–(Mn)alloys.The results showed that the addition of Mn and a decrease in the extrusion temperature resulted in grain refinement followed by an increase in the strength and a decrease in the elongation at fracture of the alloys.The alloys showed different mechanical properties along the directions parallel and perpendicular to the extrusion direction.The corrosion test of the alloys in the Hanks’solution revealed that the addition of Mn significantly reduced the corrosion rate of the alloys.The Mg–2 wt%Zn–0.7 wt%Ca–1 wt%Mn alloy hot-extruded at 300℃ with an ultimate tensile strength of 278MPa,an yield strength of 229MPa,an elongation at fracture of 10%,and a corrosion rate of 0.3 mm/year was found to be suitable for orthopedic implants. 展开更多
关键词 Biodegradable Mg alloy Mg–Zn–Ca–(mn) Hot extrusion Mechanical properties Corrosion rate
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EFFECT OF Mn CONTENT ON KINETIC PARAMETER DURING PHASE TRANSFORMATION IN CuZnAlMnNi SHAPE MEMORY ALLOYS 被引量:2
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作者 Geng, GL Bai, YJ 《中国有色金属学会会刊:英文版》 CSCD 1996年第3期150-152,共3页
EFFECTOFMnCONTENTONKINETICPARAMETERDURINGPHASETRANSFORMATIONINCuZnAlMnNiSHAPEMEMORYALLOYS¥GengGuili(Institut... EFFECTOFMnCONTENTONKINETICPARAMETERDURINGPHASETRANSFORMATIONINCuZnAlMnNiSHAPEMEMORYALLOYS¥GengGuili(InstituteforMaterialsEngi... 展开更多
关键词 mn CONTENT CuZnAlmnNi SHAPE MEMORY alloy phase TRANSFORMATION KINETIC PARAMETER
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Deformation behaviour and microstructure evolution of AlMg6Mn alloy during shear spinning 被引量:5
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作者 Lj.RADOVIC M.NIKACEVIC B.JORDOVIC 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第5期991-1000,共10页
Deformation behavior and microstructure of AlMg6Mn alloy subjected to shear spinning were studied by means of mechanical characterization, optical and SEM+EDS microscopy. Specimens were shear spun on an industrial sp... Deformation behavior and microstructure of AlMg6Mn alloy subjected to shear spinning were studied by means of mechanical characterization, optical and SEM+EDS microscopy. Specimens were shear spun on an industrial spinning machine using different mandrels, providing reductions of wall thickness of 30%, 50% and 68%. The grain structure developed during shear spinning refines gradually. The grains elongate in axial direction with increase of reduction, and also stretches along circumferencial direction. Optimal combination of strength and elongation is observed. This is attributed to grain refinement and dislocation reactions with particles and atoms of Mg and Mn in solid solution. 展开更多
关键词 AlMg6mn alloy shear spinning microstructure evolution deformation behaviour serrated yielding
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KINETICS OF AUSTENITIC ISOTHERMAL DECOMPOSITION AND Mn PARTITION IN Fe-C-Mn-B ALLOYS 被引量:1
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作者 YANG Liu Southwestern Jiaotong University,Chengdu,ChinaFANG Hongsheng Tsinghua University,Beijing,ChinaMENG Zhihe Luoyang Institute of Technology,China 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1992年第4期240-244,共5页
A proper addition of Mn to Fe-C alloys could delay the isothermal transformation and change remarkably the TTT-curves to bay-like shape.The concentration of Mn at the α/γ interphase boundary and thir partition betwe... A proper addition of Mn to Fe-C alloys could delay the isothermal transformation and change remarkably the TTT-curves to bay-like shape.The concentration of Mn at the α/γ interphase boundary and thir partition between α- and γ- phase were measured by STEM/TEM-EDAX.The results show that the partition of Mn diminishes gradually as the reaction temperature decreases.There exists a certain temperature range with the strong- est Mn concentration spike at the interphase although no Mn partition is found between austenite and ferrite,and this temperature range is correspondent with the bay-temperature on TTT curves of the alloys.It is thus suggests that the change of TTT-curve configuration is due to the partition of alloy elements.The bay-like shape is attributed to the solute drag ef- fect and the solute drag-like effect caused by the enrichment of Mn at the α/γ interphase. 展开更多
关键词 TTT curve PARTITION mn Fe-C-mn-B alloy solute drag
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Microstructure refinement,mechanical and biocorrosion properties of Mg–Zn–Ca–Mn alloy improved by a new severe plastic deformation process 被引量:5
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作者 M.Kavyani G.R.Ebrahimi +1 位作者 H.R.Ezatpour M.Jahazi 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2022年第6期1640-1662,共23页
In this study,the microstructural evolution,mechanical properties and biocorrosion performance of a Mg–Zn–Ca–Mn alloy were investigated under different conditions of heat treatment,extrusion,one pass and two passes... In this study,the microstructural evolution,mechanical properties and biocorrosion performance of a Mg–Zn–Ca–Mn alloy were investigated under different conditions of heat treatment,extrusion,one pass and two passes of half equal channel angular pressing(HECAP)process.The results showed significant grain refinement of the homogenized alloy after two passes of HECAP process from 345μm to 2μm.Field emission scanning electron microscopy(FESEM)revealed the presence of finer Mg_(6)Zn_(3)Ca_(2)phase as well asα-Mn phase after HECAP process.The results also showed that mechanical characteristics such as yield strength,ultimate tensile strength and elongation of the HECAPed samples improved by~208%,~144%and~100%compared to the homogenized one,respectively.Crystallographic texture analysis indicated that most of the grains at the surface were reoriented parallel to the(0001)basal plane after HECAP process.Electrochemical corrosion tests and immersion results indicated that the sample with two passes of HEACP had the highest biocorrosion resistance confirming that the basal planes had the lowest corrosion rate compared to the non-basal ones.The mechanical behavior and bio-corrosion evaluation demonstrated that the HECAPed Mg–Zn–Ca–Mn alloy has great potential for biomedical applications and a mechanism was proposed to explain the interrelations between the thermomechanical processing and bio-corrosion behavior. 展开更多
关键词 Mg–Zn–Ca–mn alloy HECAP process Microstructure Mechanical properties Bio-corrosion performance
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Simultaneous improvement of strength and ductility by Mn addition in extruded Mg−Gd−Zn alloy 被引量:3
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作者 Jun ZHAO Bin JIANG +6 位作者 Yan SONG Zuo-cai DAI Li-wei LU Chao HE Guang-sheng HUANG Ding-fei ZHANG Fu-sheng PAN 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2022年第5期1460-1471,共12页
The influence of Mn content on the microstructure,tensile properties and strain-hardening behaviors of extruded Mg−1Gd−0.5Zn−xMn(x=0,0.3 and 1,wt.%)alloy sheets was investigated by X-ray diffraction(XRD),scanning elec... The influence of Mn content on the microstructure,tensile properties and strain-hardening behaviors of extruded Mg−1Gd−0.5Zn−xMn(x=0,0.3 and 1,wt.%)alloy sheets was investigated by X-ray diffraction(XRD),scanning electron microscope(SEM),and electron backscatter diffraction(EBSD).The results show that the completely recrystallized grain structure and the extrusion direction(ED)-titling texture are observed in all the extruded sheets.The mean grain size and weakened ED-titling texture of the extruded sheets are gradually reduced with increasing Mn content.This is primarily associated with the formation of new fineα-Mn particles by Mn addition.Tensile properties show that the addition of Mn also leads to the improvement of yield strengths,ultimate tensile strengths and elongations of the extruded Mg−1Gd−0.5Zn−xMn sheets,which is mainly due to the fine grains andα-Mn particles.In addition,the Mg−1Gd−0.5Zn−1Mn sheet has the lowest strain-hardening exponent and the best hardening capacity among all prepared Mg−1Gd−0.5Zn−xMn sheets. 展开更多
关键词 Mg−Gd−Zn alloy mn addition microstructure mechanical properties
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Effect of Micro-scale Y Addition on the Fracture Properties of Al–Cu–Mn Alloy 被引量:3
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作者 Ting-Biao Guo Feng Zhang +1 位作者 Wan-Wu Ding Zhi Jia 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2018年第6期217-227,共11页
Rare earth(RE) elements have positive e ects on Al alloy, while most research is focused on microstructure and mechanical properties. As important application indices, toughness and plasticity are properties that are ... Rare earth(RE) elements have positive e ects on Al alloy, while most research is focused on microstructure and mechanical properties. As important application indices, toughness and plasticity are properties that are sensitive to alloy fracture characteristics, and few research studies have characterized the fracture properties of Al–Cu–Mn alloy on RE elements. The e ect of di erent contents of Y on the fracture properties of Al–Cu–Mn alloy is investigated. T6 heat treatment(solid solution and artificial aging treatment), optical microscope(OM), scanning electron microscopy(SEM) and energy dispersive spectrometer(EDS) methods are applied to the alloy. Results showed that when Y ele?ment is present at 0.1%, the section of the as?cast alloy has smaller sized dimples and the fracture mode presents duc?tile features. Slight changes in hardness are also observed and maintained at about 60 HV. With increasing content of the RE element Y from 0.1 to 0.5%, the θ phase and Cu atoms in the matrix were reduced and most stopped at Grain boundaries(GBs). Micro?segregation and an enriched zone of Y near the GBs gradually increased. At the same time, the inter?metallic compound AlCuY is aggregated at grain junctions causing deterioration of the micro?structure and fracture properties of the alloy. After T6 treatment, the flatness of the fracture surface was lower than that of all the as?cast alloy showing lots of dimples and teared edges with a significant increase in hardness. When Y content was 0.1%, the strength and hardness of the alloy increased due to refinement of the grain strengthening e ect. The content of Y elements segregated in the inter?dendritic zone and GBs is reduced. Plasticity and deformation compatibility also improved, making cracks di cult to form and merge with each other along adjacent grain junctions and providing an increased potential for ductile fracture. This paper proposes the addition of RE Y as an e ective and prospective strategy to improve the fracture properties of the Al–Cu–Mn alloy and provide a meaningful reference in terms of improving overall performance. 展开更多
关键词 Al–Cu–mn alloy Solid solution Fracture toughness Mechanical properties
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