李慧中,男,民建会员,湖南常宁人,工学博士,博士后,二级教授,博士生导师,博士后导师,教授委员会副主任,学位评定委员会委员,湖南省政协常委,民建湖南省委常委,民建中南大学委员会主委,国家铝合金压力加工工程技术研究中心专家委员会委员,国家科技奖励评审专家,国家工业强基工程项目评审组专家,中国航空发动机集团科技项目评审组专家,中国航天科工集团项目评审专家,教育部科技项目(奖励)评审专家,教育部工程中心评审组专家,教育部学位中心博士学位论文评审专家,中国有色金属产业技术创新战略联盟专家委员会委员,有色金属智库认证专家,湖南省科技项目(奖励)评审组专家,湖南省铝合金熔铸特种材料工程技术研究中心副主任,湖南省压力烧结炉工程技术研究中心副主任,曾任中南大学材料加工工程系主任,材料加工研究所所长。
主要研究方向:
新型合金材料设计、制备及成形工艺研究;合金的组织与性能调控机理研究。
主持及承担项目:
国家自然科学基金,国家“973”,国家“863”,国家重点研发等国家级科研项目20余项;主持湖南省自然科学基金,湖南省科技计划及科技援疆计划重点项目等省级项目8项;主持企校合作横向科研项目20余项。
论文、专利及主要奖励:
在J.Mater.Chem.A,Compos. Sci and Technol.等国内外期刊上发表学术论文200余篇,其中被SCI、EI收录150余篇;授权国家发明专利40余项,注册铝合金牌号1个(2A19);成果评价8项,获省部级科技奖励一等奖4项,二等奖2项,省级教学成果奖二等奖1项,省级优秀教师奖1项,;出版主编教材2部本,专著4部。
本科生及研究生课程:
主讲《金属塑性加工技术》,《有色金属材料加工》,《金属半固态成形》,《摩擦与润滑》,《企业案例分析》,《材料研究进展》及《粉末冶金概论》等课程。
【主要研究领域】
1. 铝、镁及钛合金成形技术与组织性能调控
2. 钛铝金属间化合物热塑性成形技术及组织性能调控
3. 新型高性能高温合金及高熵合金研究与开发
4. 高能动态复合材料制备工艺与技术研究
5. 高性能电容器阴极外壳成形工艺研究
6. 先进陶瓷材料研究与开发
7. 特殊性能钢铁材料究与开发
【主要科研项目】
1.国家自然科学基金项目:增材制造TiAl基合金热/力耦合作用下的微观组织演变及强韧化机理研究(52274402)
2.国家自然科学基金项目:韧性TiNb相增韧粉末冶金TiAl金属间化合物塑性变形及增韧机理研究(52174381)
3.国家自然科学基金项目:微观组织结构对粉末冶金高Nb-TiAl基合金超塑性行为的影响机制(51774335)
4.国家自然科学基金项目:β相与织构的协同作用对TiAl合金热塑性变形行为的影响机制(51174233)
5.国家自然科学基金项目:大型飞机轮毂用铝合金热变形及模锻强韧化机制研究(51301209)
6.国家自然科学基金项目:高强铝合金绝热剪切带的损伤机理及其组织行为(50671121)
7.国家重点研发计划项目:铝合金薄壁类零件的半固态流变技术(2018YFB2001800)
8.国家级重点项目:钛铝热塑性成形方法和工艺研究(xxx)
9.国家“973”项目:铝合金抗冲击特征微结构及其动态行为研究(2005CB623706)
10.国家“973”项目:轻质高温TiAl合金金属间化合物及其制备加工的科学技术基础(2011CB605505)
11.国家“863”重大项目:大尺寸TiAl基合金板材制备(2008AA03A233))
12.国家级项目:钛铝合金板材研制(xxx)
13.国家级项目:镁合金下机匣锻坯研制(xxx)
14.国家级项目:Al-Cu 合金研究(xxx)
15.中央引导地方科技发展资金:高性能石墨烯复合纺织材料技术创新中心建设(2023ZYQ040)
16.湖南省高技术产业科技创新引领计划:航天航空用钽电容器外壳的研发与产业化(2022GK4001)
17.中央引导地方科技发展资金:方型高能混合钽电容器外壳(2022ZYC104)
18.湖南省科技重大专项:大飞机降系统核心部件关键技术研究与试验平台(2021GK1030)
19.湖南省自然科学基金项目:Mg-Al-Zn系变形镁合金蠕变行为及机制研究(2018JJ2503)
20.科技援疆计划重点项目:航空航天用高性能铝合金板材的研究与开发(201191107)
21.中国博士后科学基金:粉末冶金铁基高温合金变形理论研究(20070420828)
22.湖南省科技计划重点项目:高Nb-TiAl基合金热塑性行为研究(2012FJ4138 )
23.湖南省科技计划项目:7039铝合金的力学行为和抗侵彻机理研究(2009GK3038)
24.校企合作项目:研究改善WE43A镁合金金相组织和优化热处理工艺(6000000917)
25.校企合作项目:AZ80A镁合金下机匣锻饼研制(6100008154)
26.校企合作项目:高纯Al-Cu-Mg合金板材制备研究(04220120742618)
27.校企合作项目:航空航天用高性能铝合金板材的研究(04220110142635)
28.校企合作项目:低成本、高性能铝合金开发(201807050310001)
29.校企合作项目:低成本,高品质Al-Ti-B细化剂研究与开发(201801140310001)
30.PVD&CVD涂层工艺开发(HKF202200039)
31.层状金属复合材料薄板带研发(H202207230310001)
32.高强耐损伤铝合金锻造轮毂研制(H20210113031001)
【成果评价】
1.高性能变形镁合金加工关键技术及应用, 教育部 ,2014
2.粉末冶金钛基结构材料制备与加工基础理论研究,教育部,2016
2.高性能铝合金中厚板开发,山东省科学技术厅,2017
4.铝-铅及铝-钛-钢高熔点差材料爆炸复合研究及产业化应用,中国有色金属工业协会,2019
5.铝/铅及铝/钛/钢高能率动态复合关键技术及应用,湖南省科学技术厅,2021
6.低成本、轻质钽电容器铌质壳阴极制备关键技术及应用,中国有色金属工业协会,2021
7.面向高熔点粉末冶金材料高致密化烧结装备及应用,中国有色金属工业协会,2022
8.多层金属爆炸复合关键技术及产业化,中国有色金属工业协会,2024
【牌号与标准】
1. 注册铝合金牌号:2A19,2015
2. 团标:压力烧结炉(T/CIET163-2023)
【主要著作】
1. 主编高等教育“十二五”规划教材:
《机械工程材料实验教程》,中国水利水电出版社,2011,5
2. 主编材料科学与工程系列教材:
《金属材料塑性成形实验教程》,冶金工业出版社,2011,8
3. 副主编专著:
《铜合金相图》,中南大学出版社,2011,9
4.参编专著:
《粉末冶金钛基结构材料》,中南大学出版社,2012,5
5. 参编专著:
《航空传动新材料手册》,航空工业出版社,2020,11
6.主编专著:
《航空用AZ80镁合金组织与性能》,中南大学出版社,2024,8
【主要授权发明专利】
[1]一种提高钛铝基合金高温强塑性的工艺(ZL20221126445.5)(20240319)
[2]一种双峰晶粒组织TiAl合金及其制备方法(ZL202211220630.0)(20230613)
[3]一种具有双峰晶粒组织的亚共晶Al-Ce合金制备方法(ZL202210697013.3)(20230718)
[4]一种单晶TiAl的等温锻造方法(ZL202210739012.0)(20230811)
[5]一种铝镁合金与镁铝锌合金爆炸焊接复合板的制备方法(ZL202210782203.5)(20230707)
[6]一种高效Al-Sr中间合金的制备方法(ZL202110197381.7)(20220415)
[7]一种爆炸焊接用低爆速混合炸药及其制备方法和应用(ZL202110171395.1)(20220208)
[8]一种高强塑积TiAl基复合材料的制备方法(ZL201911298379.8)(20210615)
[9]一种Nb增韧钛铝基合金复合材料的制备方法(ZL2017114809072)(20201124)
[10]一种稀土镁合金铸件的均匀化热处理方法(ZL201610931439.5)(20180209)
[11]一种消除残余Al-Cu-Mg-Si-Mn合金铸造结晶相的均匀化热处理工艺(ZL201610931863.X)(20180213)
[12]一种提高稀土镁合金铸件力学性能的热处理工艺(ZL201610076414.1)(20170711)
[13]一种耐热稀土镁合金及其不均匀壁厚铸件的热处理工艺(ZL201610074516.X)(20170711)
[14]一种TiAl基合金板材超塑性成形方法(ZL201610076127.0)(20170616)
[15]一种厚壁铝合金空心挤压型材的热处理工艺(ZL201610075102.9)(20170222)
[16]一种提高大尺寸镁合金锻饼组织均匀性的锻造方法(ZL201610076102.0)(20161116)
[17]一种中强耐热镁合金三角型材的成形工艺(ZL2014100219930)(20160120)
[18] 一种中强耐热镁合金厚板的成形工艺(ZL2014100219926)(20160330)
[19]一种大尺寸镁合金铸锭的均匀化热处理工艺(ZL201310398444.0)(20150603)
[20]一种大尺寸高强变形镁合金锻件的热处理工艺(ZL201310397958.4)(20150909)
[21]一种大尺寸镁合金零件的等温模锻工艺(ZL201310396610.3)(20150909)
[22]一种大尺寸镁合金锻饼的制备方法(ZL201310397959.9)(20150909)
[23]一种具有细小全层片组织的TiAl基合金的制备方法(ZL201310375360.5)(20150909)
[24]一种纳米镁合金三级时效热处理工艺(ZL2012103497089)(20140813)
[25]一种粉末冶金含铌钛铝基合金大尺寸薄板的制备方法(ZL201210133031.5)(20131218)
[26]一种粉末冶金超细晶钛铝基合金板材的制备方法(ZL201210131206.9)(20140402)
[27]一种低合金耐热铸铁及其制备方法(ZL20111025989.0)(201121212)
[28]一种TiAl基合金金相试样的腐蚀方法(ZL201110258102x)(20130619)
[29]超大规格高强耐热镁合金半连续制铸造工艺(ZL201010219703)(20120222)
[30]一种高强大直径镁合金棒材的挤压变形工艺(ZL2010102197001)(20101208)
[31]大规格高强镁合金挤压材的热处理工艺(ZL2010102196988)(201111214)
[32]一种Ti-Al-Cr-Mo基合金及其板材的制备方法(ZL201010204405.9)(201110928)
[33]一种强力变形制备超高强镁合金棒材的方法(ZL201010219696)(201111109)
[34]一种高强镁合金厚板的挤压变形工艺(ZL2010102196780)(20120104)
[35]一种镁合金热处理工艺(ZL201010048039.2)(20120808)
[36]大规格高强镁合金锭坯半连续铸造工艺(201010048475.X)(20130123)
[37]一种镁合金挤压变形工艺(ZL201010048038.8)
[38]一种Al-Mg-Nd-Sc铝合金(ZL200910043798.7)(20110427)
[39]一种Al-Mg-Mn-Zr-Sr合金及制备方法(ZL200910307168.6)(20110427)
[40]一种TiAl基合金高温防氧化涂层方法(ZL200910042969.4)(20110608)
[41]一种Al-Zn-Mg-Sc-Zr合金热处理方法(ZL200910042967.5)(20110202)
[42]一种含稀土Nd的Al-Cu合金(ZL200710082640.1)(20110330)
[43]一种铝基铜合金装甲板热加工工艺(ZL200610031117.1)(20081126)
[44]一种铝基铜合金装甲厚板热加工方法(ZL200610032494.7)
[45]一种铝基铜合金板大预变形机械热处理方法(ZL200610120303.2) (20101110)
[46]用于装甲车的铝基铜合金(ZL03133225.0)(20100113)
【主要学术论文】
1.Tao H, Li H, Zhou R, et al. Effect of Nb content on damping capacity of as-cast Ti-47Al-xNb-2Cr-0.2Mo alloys[J]. Materials Letters, 2024, 360: 136054.
2.Hui Tao,Xiao Peng Liang,Yi Xuan,et al.Optimization of hot-rolling parameters for a powder metallurgy Ti–47Al–2Cr–2Nb-0.2W alloy based on processing map and microstructure evolution Journal of Materials Research and Technology, 2024, 30: 7284-7294.
3.Hui Tao,Huizhong Li , Rui Zhou,et al. Hot deformation behavior of a layered heterogeneous microstructure TiAl alloy prepared by selective electron beam melting,Materials Characterization,2024,212:113986
4.Tao H, Li H, Wang L, et al. Improvement on high-temperature tensile strength and ductility of selective electron beam melting TiAl alloys via small-strain forging[J]. Materials Science and Engineering A, 2023, 873: 145009.
5.Chen Z, Li H, Liang X, et al. In-situ observation on filiform corrosion propagation and its dependence on Zr distribution in Mg alloy WE43[J]. Journal of Magnesium and Alloys, 2023, 11(11): 4282-4300.
6.Chen Z, Li H, Liang X, et al. An investigation of the impacts of non-isothermal aging on the microstructures and corrosion of WE43 Mg alloy[J]. Journal of Materials Research and Technology, 2023, 26: 7605-7618.
7. Zhang K, Li H, Liang X, et al. Dependence of Tensile Properties and Fracture Behaviors on the Fractions of Continuous and Discontinuous Precipitates in Peak-Aged AZ80A Magnesium Alloy[J]. Materials, 2023, 16(13): 4546.
8.Zhang K, Li H, Liang X, et al. Effect of aging time on discontinuos precipitates, continuos precipitates and mechanical properties of AZ80A magnesium alloy[J]. Transactions of Nonferrous Metals Society of China, 2022, 32(9): 2838-2851.
9.Liang X, Wang Y, Wang L, et al. The Effect of Solution Treatment on the Si Particles' Morphology Evolution and the Thermal Conductivity and Tensile Properties of Sb-Modified Al-8Si-0.6Mg Alloys[J]. Metals, 2022, 12(3): 337.
10.Wang Y, Liang X, Zeng L, et al. The microstructure evolution of Al-5Ce alloy prepared by strain-induced melt activation during semi-solid isothermal treatment process[J]. Materials Letters, 2022, 326: 132948.
11.Liang X, Wang Y, Wang L, et al. The Effect of Solution Treatment on the Si Particles’ Morphology Evolution and the Thermal Conductivity and Tensile Properties of Sb-Modified Al-8Si-0.6Mg Alloys[J]. Metals, 12(3): 377.
12.Tan Gang,Li hui-zhong,Wang Yan,Effect of Zener-hollomon parameter on microstructure evolution of a HEXed PM nickel-based superalloy,Journal of Alloys and compounds ,874(2021).
13.Liang Xiaopeng, Wu Qingbo, Li Huizhong ,Static recrystallization and texture evolution of cold-rolled powder metallurgy CoCrFeNiN0.07 high entropy alloy,Journal of Alloys and compounds ,862(2021).
14.Liang Xiaopeng, Kang Liang, Li Huizhong ,Effect of annealing temperature on anisotropy of mechanical properties in powder metallurgy FeCoCrNiN0.07 high-entropy alloy sheets,Materials Science & Engineering A,2021
15.Tan Gang,Li hui-zhong,Wang Yan,Deformation in a Hot-Extruded Powder metallurgy Nickel-based Superalloy, Journal of Materials Engineering and Performance, 2021,30(1):794-804.
16.Li,Huizhong,Cao,liangming,Liang,Xiaopeng.Influence of Rolling Temperatures on Interface Microstructure and Mechanical Properties of Multi-Pass Rolling TA1/Q235B Explosive Welded Sheets ,Metals,2020/10/ 1654.
17.Huizhong Li, He Lin , Xiaopeng Liang,In Situ Development and High Temperature Features of CoCrFeNi-M6Cp High Entropy-Alloy Based Hardmetal,Metals,2020/10/408.
18.Hui-zhong Li,Lei Yang,Yan Wang,Thermal deformation and dynamic recrystallization of a novel HEXed P/M nickel-based superalloy Materials Characterization,2020/163/110285.
19.Huizhong Li,Yu Long,Xiaopeng Liang,Effects of multiaxial forging on microstructure and high temperature mechanical properties of powder metallurgy Ti-45Al-7Nb-0.3W alloy Intermetallics 2020/116/106647.
20.Xin Zhan,Jiangguo Tang,Huizhong Li.Effects of non-isothermal ageing on mechanical prpperties,corrosion behavior and microstructions of Al-Cu-Mg-Si alloy,Journal of Alloys and Compounds,2020/819/152960.
21.Kelong Zhang, Huizhong Li, Xiaopeng Liang, Discontinuous and continuous precipitation characteristics and mechanical properties of a AZ80A magnesium alloy at di?erent aging temperatures,Materials Characterization,2020/161/110146.
22.Xiaopeng Liang,Zhenqi Liu, Huizhong Li, Microstructure and elevated-temperature mechanical properties of in situ Ti2AlNb-reinforced TiAl-matrix composite prepared by powder metallurgy,Materials Today Communications,2020 /24/101179.
23.Li Hui-zhong,Che Yi-xuan.Microstructure and high-temperature mechanical properties of near net shaped Ti?45Al?7Nb?0.3W alloy by hot. Trans. Nonferrous Met. Soc. China,2020/30/3006-3015.
24.Tan Gang,Li Hui-zhong.Hot working characteristics of HEXed PM nickel-based superalloy during hot compression.Trans. Nonferrous Met. Soc. China,2020/20/2709-2723
25.Li Hui-zhong,Yang,Yong.Effect of annealing temperature and time on the microstructure, mechanical properties and conductivity of cold-rolled explosive Cu/Al composite sheets.Materials Research Express,2020/7/106502.
26.Pengwei Li,Huizhong Li,Xiaopeng liang.Fatigue crack growth behavior of Al-4.4Cu-0.69Mg-0.52Mn alloy forged at different temperatures. JOM,2019,71(1):419-425.
27.Pengwei Li,Huizhong Li,Xiaopeng liang.Effect of isothernaland non-isothernal aging on the low cycle fatigue behavior of an Al-Cu-Mg-Si forging alloy.Materials Characterization,2018,144:378-386.
28.Pengwei Li,Huizhong Li,Xiaopeng liang.Enhanced low cycle fatigue and crack propagation resistance of an Al-Cu-Mg-Si forging alloy non-isothernal aging.Materials science and Engineering A, 2018,732:341-349.
29.Hui-zhong LI,Ze-xiao ZHU.Effect of T6-treatments on microstructure and mechananical properties of forged Al-4.4Cu-0.7Mg-0.6Si alloy.
Transaction of Nonferrous metals Society of China. 2017, 27(12):2539-2547.
30..Yang LY,Li HZ,Liu J.A three-dimensional surface modified carbon cloth designed as flexible current collector for high-performance lithium and sodium batteries.Journal of Alloys and compounds ,726(2017):837-847.
31.Peng-wei Li,Hui-zhong Li, Lan-Huang.Characterization of hot deformation behavior of AA2014 forging aluminum alloy processing map.
Transaction of Nonferrous metals Society of China. 2017, 27(8):1677-1688.
32.Huizhong Li,Yelong Qi,Xiaopeng liang.Effects of pack rolling temperature on microstructure and mechanical properties of powder metallurgical Ti-45Al-7nb-0.3W alloy.JOM.2017,69(10):1806-1811.
33.Li Hui-zhong,Yao San-cheng,Liang Xiao-peng.Grain boundary pre-precipitation and its cotribution enhancement of corrosion resisitance Al-Zn-Mg,Transaction of Nonferrous metals Society of China. 2016,26(10):2523-2531.
34.Huizhong Li,FengLv,Zeyi xiao.Low-cycle fatigue behavior of a cast Mg-Y-Nd-Zr alloy by T6 heat treatment,Materials science
and Engineering A, 2016,676:277-384.
35.LinYu Yang,HuizhongLi,JunLiu.Effects of TiO2 phase on the performance of Li4Ti5O12 anode for lithium-ion batteries,Journal of Alloys and compounds , 2016,689:812-819.
36.H.Z.Li,LY.yang,J.Liu.Improved electrochemical performance of yolk-shell structured Sno2@void@c porous nanowines as anode for lithium and sodium batteries,Journal of power source, 2016,324:780-787.
37.Huizhong Li,yelong Qi,xiaopeng Liang.Microstructure and high temperature mechanical properties of powder and metallurgical Ti-45Al-7Nb-0.3W alloy sheets,Materials and Design, 2016,106:90-97
38.Huizhong Li Fenglv.Effect of heat treatment on microstructures and mechanical properties of a cast Mg-Y-Nd-Zr alloy .Materials science
and Engineering A, 2016,607:409-416.
39.Huizhong Li,Ruo-mei Liu,Xiao-peng Liang.Effect of pre-deformation on microstructures and mechanical properties of high purity Al-Cu-Mg alloy,Transaction of Nonferrous metals Society of China. 2016, 26(6):1482-1490.
40.Li li,Li hui-zhong. Flow stress behavior of high-purity Al-Cu-Mg alloy and microstructure evolution.Journal of central south university,2015,22(3);815-820.
41.Deng Min,Li Hui-zhong.Effect of heat treatment on fracture toughness of as-forged AZ80 magnesium alloy.Journal of
Materials Engineering and Performance,2015,24(5): 1953-1960
42.Liao,Hui-juan,Li Hui-zhong.Effect of aging time on corrosion of as-forged AZ80 magnesium alloy Transaction of Nonferrous metals Society of China. 2015, 25(12):3921-3927.
43.Lin Yu Yang,Hui Zhong Li,Jun Liu.Li4Ti5O12 nanosheets as high-rate and long -life anode materials for sodium-ion batteries.J. mater. chem. A,2015,3:2446-24452.
44.LYang,HLi,JLiu.Dual yolk-shell structure of carbon and silica-coated silicon for high-performance lithium-ion batteries.Scientific reports. 2015,5:10908.
45.Zhang Dan-yang,Li Hui-zhong,Liang Xiao-peng,Wei Zhong-wei,Liu Yong.Microstructure characteriststic for high temperature deformation
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46.Huizhong Li,Yangjie Ou.Microstructure evolution of high purity Al-Cu-Mg alloyduring homogenization,Materials Science Forum. 2014,788:208-204.
47.Huizhong Li,Jun Jiang.Hot deformation behavior and microstructure of 6069aluminum alloy ,Materials Science Forum. 2014,788:201-207.
48.Li Hui-zhong,Wei Xiao-yang,Ou Yang-jie,Jiang jun.Hot deformatuon behavior of extrud AZ80 magnesium alloy.Transaction of Nonferrous metals Society of China. 2013, 23(11):3180-3185.
49.Huizhong LI,Haijun WANG .Effect of Sc and Nd on the microstructure and mechanical properties of Al-Mg-Mn alloy. Journal of Materials Engineering and Performance, 1059-9495, 2012,21(1):83-88.
50.Huizhong LI,Hongting LIU,Fanbo LI.Microstructures and properties of extruded Mg-Gd-Y-Zr alloys containing Zn. Journal of Materials Engineering and Performance, 1059-9495, 2012,21(6):1056-1060.
51.LI Hui-zhong,ZENG Min.Flow behavior and processing map of Ti-47Al-2Cr-0.2Mo alloy, Transaction of Nonferrous metals Society of China. 1003-6326, 2012,22(4):754-760.
52.Xiaopeng Liang, Huizhong Li.Huang lan.Microstructural evolution of 2519-T87 aluminum alloy obliquely impacted by projectile with velocity of 816m/s. Transaction of Nonferrous metals Society of China. 1003-6326,2012,22(6):1270-1279.
53.Xiaopeng Liang, Huizhong Li.Study on the microstructure in friction stir welded 2519-T87Al alloy, Materials and Design, 0261-3069,2012,35:603-608.
54.LI Hui-zhong,LIU Hong-ting,WANG Hai-jun.Effect of ageing time on corrosion behavior of Mg-10Gd-4.8Y-0.6Zr extruded-alloy. Transaction of Nonferrous metals Society of China. 1003-6326,2011,21(7):1498-1505.
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56.Li Hui-zhong,Liu hong-ting.The effect of Zn on microstructures and properties of extruded Mg-Gd-Y alloys,Applied mechanics and Materials,2011,(66-88):289-291.
57.Li Hui-zhong ,Liang xiaopeng.Flow behavior and microstructural evolution of a 7039 aluminum alloy during hot deformation,Advanced Materials Research,2011,(239-242):2395-2398.
58.Huizhong Li,Haijun Wang.Forming behavior and workability of 6061/B4Cp composite during hot deformation. Composites Science and Technology, 2011,71:925-930.
59.Huizhong Li,Zhou Li,Wei Zhang,Yong Liu.High temperature deformability and microstructural evolution of Ti-47Al-2Cr-0.2Mo alloy. Journal of Alloy and Compounds, 2010,508:359-363.
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