长沙理工大学 能源与动力工程学院,长沙 410114
CHEN Jian, E-mail: csuost@126.com
收稿:2024-11-13,
纸质出版:2025-12-15
移动端阅览
李聪, 侯江鹏, 陈维, 等.钛合金抗蠕变性能研究进展[J].机械强度,2025,47(12):31-47.
LI Cong,HOU Jiangpeng,CHEN Wei,et al.Research progress on creep resistance of titanium alloys[J].Journal of Mechanical Strength,2025,47(12):31-47.
李聪, 侯江鹏, 陈维, 等.钛合金抗蠕变性能研究进展[J].机械强度,2025,47(12):31-47. DOI: DOI:10.16579/j.issn.1001.9669.2025.12.003.
LI Cong,HOU Jiangpeng,CHEN Wei,et al.Research progress on creep resistance of titanium alloys[J].Journal of Mechanical Strength,2025,47(12):31-47. DOI: DOI:10.16579/j.issn.1001.9669.2025.12.003.
钛合金具有突出的综合性能,因而广泛应用于航空航天、能源化工等领域。随着工业技术的发展,对钛合金的蠕变强度也提出更高的要求。为了改善其抗蠕变性能,开展了大量工作。然而到目前为止,这些工作都比较零散,缺乏系统性的梳理和总结。针对此问题,对近年来钛合金抗蠕变性能的研究工作进行了归纳和总结,从合金元素、显微组织、室温蠕变以及蠕变模型4个方面综述了关于钛合金蠕变强度的研究进展,以期为钛合金的设计、制备及其抗蠕变性能的提升提供一定的依据和科学指导。
Titanium alloys are widely used in industrial fields such as aerospace
energy and chemical engineering due to their outstanding comprehensive properties. With the development of industrial technology
higher requirements have been put forward for the creep strength of titanium alloys. In order to improve its creep resistance
a lot of work has been carried out
but so far
the work is relatively scattered and lack systematic sorting and summary. In response to this issue
the research work on the creep resistance of titanium alloys in recent years was summarized and concluded. The research progress on the creep strength of titanium alloys was summarized from four aspects: alloy elements
microstructure
room temperature creep
and creep models
aiming to provide basis and scientific guidance for the design
preparation
and improvement of creep resistance of titanium alloys.
ZHAO Z B , WANG Q J , LIU J R , et al . Effect of heat treatment on the crystallographic orientation evolution in a near-α titanium a lloy Ti 60 [J]. Acta Materialia , 2017 , 131 : 305 - 314 .
ALABORT E , KONTIS P , BARBA D , et al . On the mechanisms of superplasticity in Ti-6Al-4V [J]. Acta Materialia , 2016 , 105 : 449 - 463 .
罗跃 . 炮钢/钛合金螺纹连接失效机理分析 [D]. 南京 : 南京理工大学 , 2021 : 7 - 14 .
LUO Yue . Failure mechanism analysis of gun steel/titanium alloy threaded connection [D]. Nanjing : Nanjing University of Science and Technology , 2021 : 7 - 14 . (In Chinese)
ZHANG Y M , ZHANG Z , HUANG H , et al . Study on thermal deformation behavior and microstructural characteristics of wire electrical discharge machining thin-walled components [J]. Journal of Manufacturing Processes , 2018 , 31 : 9 - 19 .
赵子博 , 王国强 , 杨晓龙 , 等 . Ti-6246中 α 相转变织构的形成机制 [J]. 材料研究学报 , 2017 , 31 ( 10 ): 796 - 800 .
ZHAO Zibo , WANG Guoqiang , YANG Xiaolong , et al . Mechanism of α texture formation of Ti-6246 alloy induced by β forging process [J]. Chinese Journal of Materials Research , 2017 , 31 ( 10 ): 796 - 800 . (In Chinese)
耿永祥 , 郑海忠 , 李贵发 , 等 . 镍基单晶高温合金表面喷丸强化技术研究综述 [J]. 塑性工程学报 , 2023 , 30 ( 10 ): 1 - 11 .
GENG Yongxiang , ZHENG Haizhong , LI Guifa , et al . Research review of surface shot peening strengthening technology of Ni-based single-crystal superalloy [J]. Journal of Plasticity Engineering , 2023 , 30 ( 10 ): 1 - 11 . (In Chinese)
岳颗 , 刘建荣 , 杨锐 , 等 . Ti65合金的初级蠕变和稳态蠕变 [J]. 材料研究学报 , 2020 , 34 ( 2 ): 151 - 160 .
YUE Ke , LIU Jianrong , YANG Rui , et al . Primary creep and steady-state creep of Ti65 alloy [J]. Chinese Journal of Materials Research , 2020 , 34 ( 2 ): 151 - 160 . (In Chinese)
LIU Z M , XIN S W , ZHAO Y Q . Research progress on the creep resistance of high-temperature titanium alloys:a review [J]. Metals , 2023 , 13 ( 12 ): 1975 .
LI S , DENG T S , ZHANG Y H , et al . Review on the creep resistance of high-temperature titanium alloy [J]. Transactions of the Indian Institute of Metals , 2021 , 74 ( 2 ): 215 - 222 .
邓同生 , 李尚 , 卢娇 , 等 . 稀土元素对钛合金蠕变性能影响规律综述 [J]. 有色金属科学与工程 , 2018 , 9 ( 6 ): 94 - 98 .
DENG Tongsheng , LI Shang , LU Jiao , et al . Review on the effects of rare earths on the creep properties of titanium alloy [J]. Nonferrous Metals Science and Engineering , 2018 , 9 ( 6 ): 94 - 98 . (In Chinese)
许国栋 , 王凤娥 . 高温钛合金的发展和应用 [J]. 稀有金属 , 2008 , 32 ( 6 ): 774 - 780 .
XU Guodong , WANG Feng’e . Development and application on high-temperature Ti-based alloys [J]. Chinese Journal of Rare Metals , 2008 , 32 ( 6 ): 774 - 780 . (In Chinese)
邓炬 , 吴之乐 , 杨冠军 , 等 . 一种稀土改性的先进高温钛合金 [J]. 航空材料学报 , 1990 , 10 ( 1 ): 1 - 7 .
DENG Ju , WU Zhiyue , YANG Guanjun , et al . An advanced elevated temperature titanium alloy modified by a rare earth element [J]. Journal of Aeronautical Materials , 1990 , 10 ( 1 ): 1 - 7 . (In Chinese)
NOCHOVNAYA N A , KHOREV A I , YAKOVLEV A L . Perspectives of alloying titanium alloys with rare earth elements [J]. Metal Science and Heat Treatment , 2013 , 55 ( 7 ): 415 - 418 .
GUO Y F , TIAN J , XIAO S L , et al . Enhanced creep properties of Y2O3-bearing Ti-48Al-2Cr-2Nb alloys [J]. Materials Science and Engineering:A , 2021 , 809 : 140952 .
ZHENG Z Z , KONG F T , CHEN Y Y , et al . Effect of nano-Y 2 O 3 addition on the creep behavior of an as-cast near-α titanium alloy [J]. Materials Characterization , 2021 , 178 : 111249 .
YAN W G , WANG H M , TANG H B , et al . Effect of Nd addition on microstructure and tensile properties of laser additive manufactured TC11 titanium alloy [J]. Transactions of Nonferrous Metals Society of China , 2022 , 32 ( 5 ): 1501 - 1512 .
DENG T S , LI S , LIANG Y Q , et al . Effects of scandium and silicon addition on the microstructure and mechanical properties of Ti-6Al-4V alloy [J]. Journal of Materials Research and Technology , 2020 , 9 ( 3 ): 5676 - 5688 .
ZHONG X Y , DENG T S , XIAO W L , et al . Improving thermal stability and creep resistance by Sc addition in near-α high-temperature titanium alloy [J]. Journal of Materials Science & Technology , 2024 , 183 : 1 - 11 .
LI B L , WANG T B , HAN P , et al . Effect of rare earth Er on the microstructure and mechanical properties of high temperature titanium alloys [J]. Materials Science Forum , 2017 , 898 : 586 - 591 .
FRÖBEL U , STARK A , PAUL J , et al . Assessment of the capability of Zr,Y,La,Gd,Dy,C,and Si to enhance the creep strength of gamma titanium aluminide alloys based on their effect on flow stress and thermal activation parameters [J]. Intermetallics , 2023 , 162 : 108018 .
CUI W F , LIU C M , ZHOU L , et al . Characteristics of microstructures and second-phase particles in Y-bearing Ti-1100 alloy [J]. Materials Science and Engineering:A , 2002 , 323 ( 1/2 ): 192 - 197 .
韩鹏 , 李伯龙 , 尹嘉明 , 等 . Er对一种近α型高温钛合金蠕变性能的影响 [J]. 科学技术与工程 , 2012 , 12 ( 17 ): 4124 - 4127 .
HAN Peng , LI Bolong , YIN Jiaming , et al . Effect of Er on creep properties of a near-α high temperature titanium alloy [J]. Science Technology and Engineering , 2012 , 12 ( 17 ): 4124 - 4127 . (In Chinese)
SEAGLE S R , HALL G S , BOMBERGER H B . High temperature properties of Ti-6Al-2Sn-4Zr-2Mo-0.09Si [J]. Metals Engineering , 1975 , 15 ( 1 ): 48 - 54 .
车晋达 , 姜贝贝 , 王清 , 等 . 微量元素添加对Ti1100合金的高温抗氧化及耐蚀性能影响 [J]. 稀有金属材料与工程 , 2018 , 47 ( 5 ): 1471 - 1477 .
CHE Jinda , JIANG Beibei , WANG Qing , et al . Effects of minor additions of elements into Ti1100 on elevated temperature oxidation-and corrosion-resistance [J]. Rare Metal Materials and Engineering , 2018 , 47 ( 5 ): 1471 - 1477 . (In Chinese)
钱九红 . 航空航天用新型钛合金的研究发展及应用 [J]. 稀有金属 , 2000 , 24 ( 3 ): 218 - 223 .
QIAN Jiuhong . Application and development of new titanium alloys for aerospace [J]. Chinese Journal of Rare Metals , 2000 , 24 ( 3 ): 218 - 223 . (In Chinese)
刘艳明 , 赵兴兴 , 汪欣 , 等 . BT25Y钛合金在600~800 ℃的高温氧化行为 [J]. 稀有金属材料与工程 , 2022 , 51 ( 4 ): 1332 - 1340 .
LIU Yanming , ZHAO Xingxing , WANG Xin , et al . High temperature oxidation behavior of BT25Y titanium alloy at 600-800 ℃ [J]. Rare Metal Materials and Engineering , 2022 , 51 ( 4 ): 1332 - 1340 . (In Chinese)
LIU Z M , ZHU P L , MAO X N , et al . Effect of Si addition on the microstructure and creep properties of the forged titanium alloy [J]. Materials Chemistry and Physics , 2024 , 317 : 129212 .
LI Y , CHEN Y , LIU J R , et al . Cooperative effect of silicon and other alloying elements on creep resistance of titanium alloys:insight from first-principles calculations [J]. Scientific Reports , 2016 , 6 : 30611 .
董飞 , 何国强 , 张贵田 . 合金元素Si在钛合金中作用的研究进展 [J]. 金属热处理 , 2007 , 32 ( 11 ): 5 - 10 .
DONG Fei , HE Guoqiang , ZHANG Guitian . Research development of the effect of Si element on titanium alloy [J]. Heat Treatment of Metals , 2007 , 32 ( 11 ): 5 - 10 . (In Chinese)
ANTI M L , COLLADO CIPRÉS V , MOUZON J , et al . Effect of silicon on creep properties of titanium 6Al-2Sn-4Zr-2Mo alloy [J]. MATEC Web of Conferences , 2020 , 321 : 04021 .
KANG L M , CAI Y J , LUO X C , et al . Bimorphic microstructure in Ti-6Al-4V alloy manipulated by spark plasma sintering and in-situ press forging [J]. Scripta Materialia , 2021 , 193 : 43 - 48 .
JIA W J , ZENG W D , LIU J R , et al . Influence of thermal exposure on the tensile properties and microstructures of Ti60 titanium alloy [J]. Materials Science and Engineering:A , 2011 , 530 : 511 - 518 .
ZHAO Z L , LI H , FU M W , et al . Effect of the initial microstructure on the deformation behavior of Ti60 titanium alloy at high temperature processing [J]. Journal of Alloys and Compounds , 2014 , 617 : 525 - 533 .
ZHAO Y Q , QU H L , ZHU K Y , et al . The second phases in Ti40 burn resistant alloy after high temperature exposure for a long time [J]. Journal of Alloys and Compounds , 2002 , 333 ( 1/2 ): 165 - 169 .
DEHGHAN-MANSHADI A , BERMINGHAM M , DARGUSCH M S , et al . Metal injection moulding of titanium and titanium alloys:challenges and recent development [J]. Powder Technology , 2017 , 319 : 289 - 301 .
张李骊 . 钛合金盘件等温成形工艺优化与过程控制 [D]. 西安 : 西北工业大学 , 2004 : 10 - 23 .
ZHANG Lili . Optimization in design and control in production of isothermal forging processes for titanium alloy [D]. Xi’an : Northwestern Polytechnical University , 2004 : 10 - 23 . (In Chinese)
BARBOZA M J R , PEREZ E A C , MEDEIROS M M , et al . Creep behavior of Ti-6Al-4V and a comparison with titanium matrix composites [J]. Materials Science and Engineering:A , 2006 , 428 ( 1/2 ): 319 - 326 .
辛社伟 , 赵永庆 , 曾卫东 , 等 . Al元素对Ti-V-Cr系阻燃钛合金热强性影响的研究 [J]. 稀有金属材料与工程 , 2007 , 36 ( 9 ): 1613 - 1616 .
XIN Shewei , ZHAO Yongqing , ZENG Weidong , et al . Research effect of alloying elements Al on heat resistance of Ti-V-Cr burn-resistant titanium alloy [J]. Rare Metal Materials and Engineering , 2007 , 36 ( 9 ): 1613 - 1616 . (In Chinese)
FLOWER H M , SWANN P R , WEST D R F . Silicide precipitation in the Ti-Zr-Al-Si system [J]. Metallurgical Transactions , 1971 , 2 ( 12 ): 3289 - 3297 .
CHEN Z Q , XU L J , LIANG Z Q , et al . Effect of solution treatment and aging on microstructure,tensile properties and creep behavior of a hot-rolled β high strength titanium alloy with a composition of Ti-3.5Al-5Mo-6V-3Cr-2Sn-0.5Fe-0.1B-0.1C [J]. Materials Science and Engineering:A , 2021 , 823 : 141728 .
费跃 , 王新南 , 商国强 , 等 . 合金元素对新型TC32钛合金组织和性能的影响 [J]. 热加工工艺 , 2022 , 51 ( 16 ): 64 - 66 .
FEI Yue , WANG Xinnan , SHANG Guoqiang , et al . Influence of alloying elements on microstructure and property of new TC32 titanium alloy [J]. Hot Working Technology , 2022 , 51 ( 16 ): 64 - 66 . (In Chinese)
ZHAO Y Q , XIN S W , ZENG W D . Effect of major alloying elements on microstructure and mechanical properties of a highly β stabilized titanium alloy [J]. Journal of Alloys and Compounds , 2009 , 481 ( 1/2 ): 190 - 194 .
NAJAFIZADEH M , BOZORG M , GHASEMPOUR-MOUZIRAJI M , et al . The effect of adding Sn on the mechanical properties and microstructure of the titanium [J]. Materials Letters , 2023 , 351 : 135044 .
PRASAD K , SARKAR R , GHOSAL P , et al . Tensile and creep properties of thermomechanically processed boron modified Timetal 834 titanium alloy [J]. Materials Science and Engineering:A , 2011 , 528 ( 22/23 ): 6733 - 6741 .
BOEHLERT C J , CHEN W . The elevated-temperature creep behavior of boron-modified Ti-6Al-4V alloys [J]. Materials Transactions , 2009 , 50 ( 7 ): 1690 - 1703 .
朱旭晖 . 近α型高温钛合金Ti600长期时效组织稳定性研究 [D]. 沈阳 : 东北大学 , 2020 : 10 - 15 .
ZHU Xuhui . Research on microstructure stability of near-alpha Ti600 high temperature titanium alloy during long-termaging [D]. Shenyang : Northeastern University , 2020 : 10 - 15 . (In Chinese)
赵永庆 , 刘炳南 . 合金成分对Ti 811合金棒材性能的影响 [J]. 稀有金属材料与工程 , 1994 , 23 ( 3 ): 59 - 64 .
ZHAO Yongqing , LIU Bingnan . Effect of alloying composition on the mechanical properties of Ti811 alloy rods [J]. Rare Metal Materials and Engineering , 1994 , 23 ( 3 ): 59 - 64 . (In Chinese)
DAS J , GOGIA A K , SATYANARAYANA D V V . Effect of iron and nickel impurities on creep and tensile behaviour of Ti-24Al-20Nb-0.5Mo alloy [J]. Materials Science and Engineering:A , 2008 , 496 ( 1/2 ): 1 - 8 .
HUANG S S , MA Y J , QIU J K , et al . Enhanced ambient temperature creep resistance of α/β-Ti alloys induced by minor Fe [J]. Materials Science and Engineering:A , 2017 , 705 : 169 - 175 .
DAS J , GOGIA A K , SATYANARAYANA D V V . Effect of iron and nickel impurities on creep and tensile behaviour of Ti-24Al-20Nb-0.5Mo alloy [J]. Materials Science and Engineering:A , 2008 , 496 ( 1/2 ): 1 - 8 .
TANG F , NAKAZAWA S , HAGIWARA M . The effect of quaternary additions on the microstructures and mechanical properties of orthorhombic Ti 2 AlNb-based alloys [J]. Materials Science and Engineering:A , 2002 , 329 : 492 - 498 .
HUANG C W , ZHAO Y Q , XIN S W , et al . Effect of microstructure on tensile properties of Ti-5Al-5Mo-5V-3Cr-1Zr alloy [J]. Journal of Alloys and Compounds , 2017 , 693 : 582 - 591 .
WANG T B , LI B L , WANG Z Q , et al . A microstructure with improved thermal stability and creep resistance in a novel near-alpha titanium alloy [J]. Materials Science and Engineering:A , 2018 , 731 : 12 - 20 .
李龙腾 , 王洋 , 刘喜波 , 等 . Ti-Al-Zr-Mo-Nb-Sn-Si系铸造钛合金高温蠕变性能及显微组织研究 [J]. 材料开发与应用 , 2021 , 36 ( 4 ): 9 - 13 .
LI Longteng , WANG Yang , LIU Xibo , et al . High temperature creep properties and microstructure of Ti-Al-Zr-Mo-Nb-Sn-Si cast titanium alloy [J]. Development and Application of Materials , 2021 , 36 ( 4 ): 9 - 13 . (In Chinese)
WANG W , ZENG W D , XUE C , et al . Microstructural evolution,creep,and tensile behavior of a Ti-22Al-25Nb (at%)orthorhombic alloy [J]. Materials Science and Engineering:A , 2014 , 603 : 176 - 184 .
HE Y S , HU R , LUO W Z , et al . Microstructural evolution and creep deformation behavior of novel Ti-22Al-25Nb-1Mo-1V-1Zr- 0.2Si (at.%)orthorhombic alloy [J]. Transactions of Nonferrous Metals Society of China , 2019 , 29 ( 2 ): 313 - 321 .
NIE X , LIU H Q , ZHOU X Z , et al . Creep of Ti-5Al-5Mo-5V-1Fe-1Cr alloy with equiaxed and lamellar microstructures [J]. Materials Science and Engineering:A , 2016 , 651 : 37 - 44 .
KIM Y K , PARK S H , YU J H , et al . Improvement in the high-temperature creep properties via heat treatment of Ti-6Al-4V alloy manufactured by selective laser melting [J]. Materials Science and Engineering:A , 2018 , 715 : 33 - 40 .
余龙 , 宋西平 , 张敏 , 等 . 高铌TiAl合金在疲劳蠕变作用下的裂纹萌生及扩展 [J]. 金属学报 , 2014 , 50 ( 10 ): 1253 - 1259 .
YU Long , SONG Xiping , ZHANG Min , et al . Crack initiation and propagation of high Nb-containing TiAl alloy in fatigue-creep interaction [J]. Acta Metallurgica Sinica , 2014 , 50 ( 10 ): 1253 - 1259 . (In Chinese)
郭建忠 , 刘小花 , 刘娣 , 等 . 热处理对IMI834铸造用高温钛合金组织与性能的影响 [J]. 世界有色金属 , 2019 ( 18 ): 1 - 3 .
GUO Jianzhong , LIU Xiaohua , LIU Di , et al . Effects of heat treatment on microstructures and properties of cast IMI834 high-temperature titanium alloy [J]. World Nonferrous Metals , 2019 ( 18 ): 1 - 3 . (In Chinese)
WANG C C , LI B L , QIAO X , et al . Effect of primary α phase content on creep property of high temperature titanium alloy [J]. Materials Science Forum , 2020 , 993 : 217 - 222 .
段锐 , 张华 , 蔡建明 , 等 . 显微组织对近α型TG6钛合金高温蠕变变形行为的影响 [C]// 第十四届全国钛及钛合金学术交流会论文集(上册) . 北京 : 中国有色金属学会 , 2010 : 24 - 28 .
DUAN Rui , ZHANG Hua , CAI Jianming , et al . The influence of microstructure on the high-temperature creep deformation behavior of near-α-type TG6 titanium alloy [C]// Proceedings of the 14th National Titanium and Titanium Alloy Academic Exchange Conference (Volume 1) . Beijing : The Nonferrous Metals Society of China , 2010 : 24 - 28 . (In Chinese)
XIAO L , TIAN S G , BAO X Y , et al . Influence of heat treatment on microstructure and creep properties of hot continuous rolled Ti-6Al-4V alloy [J]. Materials Science and Engineering:A , 2013 , 559 : 401 - 406 .
LEFRANC P , DOQUET V , GERLAND M , et al . Nucleation of cracks from shear-induced cavities in an α/β titanium alloy in fatigue,room-temperature creep and dwell-fatigue [J]. Acta Materialia , 2008 , 56 ( 16 ): 4450 - 4457 .
GU Y , ZENG F H , QI Y L , et al . Tensile creep behavior of heat-treated TC11 titanium alloy at 450-550℃ [J]. Materials Science and Engineering:A , 2013 , 575 : 74 - 85 .
WANG H , TAN C S , ZHAO J , et al . Effect of creep stress on the high-temperature tensile stability of TC11 titanium alloy [J]. Journal of Materials Science , 2023 , 58 ( 12 ): 5503 - 5515 .
TANG Q H , QI P , WANG T B , et al . Formation mechanism of lamellar bimodal microstructure and mechanical property in the high temperature near α titanium alloy [J]. Journal of Alloys and Compounds , 2023 , 938 : 168289 .
LIU F L , CHEN Y , HE C , et al . Creep-fatigue voids and sub-grain boundaries assisted crack initiation for titanium alloy in VHCF regime with high mean stress at 400℃ [J]. Materials Science and Engineering:A , 2022 , 844 : 143171 .
OMPRAKASH C M , SATYANARAYANA D V V , KUMAR V . Effect of microstructure on creep and creep crack growth behaviour of titanium alloy [J]. Transactions of the Indian Institute of Metals , 2010 , 63 ( 2 ): 457 - 459 .
BRIGUENTE L A N S , COUTO A A , GUIMARÃES N M , et al . Determination of creep parameters of Ti-6Al-4V with bimodal and equiaxed microstructure [J]. Defect and Diffusion Forum , 2012 ,326/ 327 / 328 : 520 - 524 .
SAHOO R , JHA B B , SAHOO T K . Effect of microstructure on the creep properties of Ti-6Al-4V alloys:an analysis [J]. Transactions of the Indian Institute of Metals , 2018 , 71 ( 7 ): 1573 - 1582 .
WANG W , ZENG W D , SUN Y L , et al . Microstructure,tensile,and creep behaviors of Ti-22Al-25Nb (at.%)orthorhombic alloy with equiaxed microstructure [J]. Materials , 2018 , 11 ( 7 ): 1244 .
张雪敏 , 陈秉刚 , 李巍 , 等 . 固溶温度对Ti150合金棒材组织及力学性能的影响 [J]. 钛工业进展 , 2019 , 36 ( 3 ): 31 - 34 .
ZHANG Xuemin , CHEN Binggang , LI Wei , et al . Effect of solution temperature on microstructures and mechanical properties of Ti150 alloy bar [J]. Titanium Industry Progress , 2019 , 36 ( 3 ): 31 - 34 . (In Chinese)
LOGINOV P A , MARKOV G M , KOROTITSKIY A V , et al . Compressive creep behavior of powder metallurgy manufactured Y 2 O 3 -reinforced TNM-B1 TiAl alloy with equiaxed and lamellar microstructure [J]. Materials Characterization , 2023 , 205 : 113367 .
李有华 , 杨蓉 , 庆达嘎 , 等 . 显微组织对TC4ELI钛合金常温拉伸蠕变行为影响研究 [J]. 世界有色金属 , 2018 ( 23 ): 180 - 181 .
LI Youhua , YANG Rong , QING Daga , et al . Effect of microstructure on tensile creep behavior of TC4ELI titanium alloy at room temperature [J]. World Nonferrous Metals , 2018 ( 23 ): 180 - 181 . (In Chinese)
HASIJA V , GHOSH S , MILLS M J , et al . Deformation and creep modeling in polycrystalline Ti-6Al alloys [J]. Acta Materialia , 2003 , 51 ( 15 ): 4533 - 4549 .
ZHANG M M , QIU J K , FANG C , et al . Room temperature creep mechanisms of Ti-6Al-4V ELI alloy with equiaxed microstructure under different applied stresses [J]. Journal of Materials Research and Technology , 2023 , 27 : 1579 - 1592 .
陈博文 , 黄杰 , 淡振华 , 等 . Ti-6Al-3Nb-2Zr-1Mo合金常温高压压缩蠕变行为研究 [J]. 热加工工艺 , 2018 , 47 ( 24 ): 73 - 75 .
CHEN Bowen , HUANG Jie , DAN Zhenhua , et al . Study on high pressure compressive creep behavior at ambient temperature of Ti-6Al-3Nb-2Zr-1Mo alloy [J]. Hot Working Technology , 2018 , 47 ( 24 ): 73 - 75 . (In Chinese)
YU W X , HOU S S , YANG Z J , et al . Characterization and modeling of room-temperature compressive creep behavior of a near α TA31 titanium alloy [J]. Metals , 2020 , 10 ( 9 ): 1190 .
王珂 , 高龙乾 , 张世鑫 , 等 . 新型钛合金材料室温拉伸蠕变试验研究 [J]. 船舶力学 , 2022 , 26 ( 4 ): 557 - 565 .
WANG Ke , GAO Longqian , ZHANG Shixin , et al . Experimental investigations on tensile creep of new titanium alloy materials at room temperature [J]. Journal of Ship Mechanics , 2022 , 26 ( 4 ): 557 - 565 . (In Chinese)
周长璐 , 廖玮杰 , 唐斌 , 等 . 蠕变断裂寿命预测方法研究进展 [J]. 铸造技术 , 2022 , 43 ( 4 ): 245 - 252 .
ZHOU Changlu , LIAO Weijie , TANG Bin , et al . Research progress on prediction methods of creep fracture life [J]. Foundry Technology , 2022 , 43 ( 4 ): 245 - 252 . (In Chinese)
ZHOU C L , YUAN R H , SU B L , et al . Creep rupture life prediction of high-temperature titanium alloy using cross-material transfer learning [J]. Journal of Materials Science & Technology , 2024 , 178 : 39 - 47 .
GUO Y H , LIU G , HUANG Y . A complemented multiaxial creep constitutive model for materials with different properties in tension and compression [J]. European Journal of Mechanics-A/Solids , 2022 , 93 : 104510 .
HU X , YE W , MA X , et al . A new creep damage assessment method for metallic material under variable load conditions at elevated temperature [J]. Fatigue & Fracture of Engineering Materials & Structures , 2019 , 42 ( 12 ): 2725 - 2737 .
LI Y , CHEN H S , DU L H , et al . Characterization and unified modelling of creep and viscoplasticity deformation of titanium alloy at elevated temperature [J]. International Journal of Plasticity , 2024 , 173 : 103892 .
YE W M , HU X T , SONG Y D . A new creep model and its application in the evaluation of creep properties of a titanium alloy at 500℃ [J]. Journal of Mechanical Science and Technology , 2020 , 34 ( 6 ): 2317 - 2326 .
HARRISON W , ABDALLAH Z , WHITTAKER M . A model for creep and creep damage in the γ-titanium aluminide Ti-45Al-2Mn-2Nb [J]. Materials , 2014 , 7 ( 3 ): 2194 - 2209 .
HIYOSHI N , ARAYA M . Creep deformation and rupture time evaluation for Ti 43 Al 5 V 4 Nb at 1033 K using the θ-projection method [J]. Materials at High Temperatures , 2021 , 38 ( 1 ): 31 - 38 .
SWETLANA S , ROUT A , SINGH A K . Machine learning assisted interpretation of creep and fatigue life in titanium alloys [J]. APL Machine Learning , 2023 , 1 : 016102 .
WANG P , ZHAO S , ZHOU C L , et al . Simple formula learned via machine learning for creep rupture life prediction of high-temperature titanium alloys [J]. Journal of Materials Informatics , 2024 , 4 ( 4 ): 24 .
GUO Y H , WANG S C , LIU G . Creep-fatigue life prediction of a titanium alloy deep-sea submersible using a continuum damage mechanics-informed BP neural network model [J]. Ocean Engineering , 2024 , 311 : 118826 .
彭相华 , 罗迎社 , 余敏 . 一个基于BPNN的TC11钛合金蠕变本构关系模型 [J]. 中南林业科技大学学报 , 2011 , 31 ( 12 ): 183 - 186 .
PENG Xianghua , LUO Yingshe , YU Min . A creep constitutive model of TC11 titanium alloy based on BPNN [J]. Journal of Central South University of Forestry & Technology , 2011 , 31 ( 12 ): 183 - 186 . (In Chinese)
0
浏览量
0
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621