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2022, 12, v.29 1-12
钛合金热变形织构演变研究进展
基金项目(Foundation): 国家自然科学基金青年科学基金资助项目(52005313); 陕西省教育厅科研计划(22JK0304); 陕西科技大学科研启动基金资助项目(2021BJ-02)
邮箱(Email): wangxianxian@sust.edu.cn;
DOI:
摘要:

综述了塑性变形机理及再结晶对钛合金热变形过程中织构类型演变的作用机制,总结了变形参数对钛合金织构演变的影响规律;综述了粘塑性自洽织构预测模型及晶体塑性有限元织构预测模型的基本理论及在钛合金塑性变形过程中的应用现状,总结了各类前沿耦合微观组织演变织构预测模型的建模思路;综述了目前钛合金变形织构调控的主要途径、研究现状及不足之处。最后从上述3个方面总结了钛合金热变形织构研究面临的主要难题,并展望了未来钛合金热变形织构演变研究的发展趋势。

Abstract:

The effects of plastic deformation mechanism and recrystallization on texture type evolution of titanium alloy during hot deformation were reviewed, and the influence of deformation parameters on texture evolution of titanium alloy was summarized. The basic theory of viscoplastic self consistent texture prediction model and crystal plasticity finite element texture prediction model and their applications in the plastic deformation of titanium alloy were summarized. The modeling ideas of various frontier coupled microstructure evolution prodiction models were summarized. The main approach, research status and shortcomings for texture control of titanium alloy were reviewed. Finally, the key problems in texture of titanium alloy during hot deformation were summarized from the above three aspects, and an outlook of the research on texture evolution of titanium alloy was further given.

参考文献

[1] BOYER R R.An overview on the use of titanium in the aerospace industry[J].Materials Science and Engineering:A,1996,213(1-2):103-114.

[2] SHEN G,FURRER D.Manufacturing of aerospace forgings[J].Journal of Materials Processing Technology,2000,98(2):189-195.

[3] LüTJERING G,WILLIAMS J C.Titanium [M].2nd edition.Berlin:Springer-Verlag,2007.

[4] LEYENS C,PETERS M.Titanium and titanium alloys fundamentals and applications[M].2nd edition.Weinheim:WILEY-VCH Verlag GmbH & Co.KGaA,2003.

[5] 朱知寿.我国航空用钛合金技术研究现状及发展[J].航空材料学报,2014,34(4):44-50ZHU Zhishou.Research status and development of titanium alloy technology for aviation in China[J].Journal of Aeronautical Materials,2014,34(4):44-50.

[6] BANERJEE D,WILLIAMS J C.Perspectives on titanium science and technology[J].Acta Materialia,2013,61(3):844-879.

[7] WANG Y N,HUANG J C.Texture analysis in hexagonal materials[J].Materials Chemistry and Physics,2003,81(1):11-26.

[8] ZAEFFERER S.A study of active deformation systems in titanium alloys:Dependence on alloy composition and correlation with deformation texture[J].Materials Science and Engineering:A,2003,344(1-2):20-30.

[9] CHAPUIS A,LIU Q.Simulations of texture evolution for HCP metals:Influence of the main slip systems[J].Computational Materials Science,2015,97:121-126.

[10] GONG J,WILKINSON A J.Anisotropy in the plastic flow properties of single-crystal α titanium determined from micro-cantilever beams[J].Acta Materialia,2009,57(19):5693-5705.

[11] WU X,KALIDINDI S R,NECKER C,et al.Prediction of crystallographic texture evolution and anisotropic stress-strain curves during large plastic strains in high purity α-titanium using a Taylor-type crystal plasticity model[J].Acta Materialia,2007,55(2):423-432.

[12] DICK T,CAILLETAUD G.Fretting modelling with a crystal plasticity model of Ti6Al4V[J].Computational Materials Science,2006,38(1):113-125.

[13] LI H,MASON D E,BIELER T R,et al,Methodology for estimating the critical resolved shear stress ratios of α-phase Ti using EBSD-based trace analysis[J].Acta Materialia,2013,61(20):7555-7567.

[14] BIELER T R,SEMIATIN S L.The origins of heterogeneous deformation during primary hot working of Ti-6Al-4V[J].International Journal of Plasticity,2002,18(9):1165-1189.

[15] BENMESSAOUD F,CHEIKH M,VELAY V,et al.Role of grain size and crystallographic texture on tensile behavior induced by sliding mechanism in Ti-6Al-4V alloy[J].Materials Science and Engineering:A,2020,774(24):138835.

[16] ZHAO J,Lü L,WANG K,et al.Effects of strain state and slip mode on the texture evolution of a near-α TA15 titanium alloy during hot deformation based on crystal plasticity method[J].Journal of Materials Science & Technology,2020,38:125-134.

[17] SUWAS S,RAY R K.Crystallographic texture of materials[M].Berlin:Springer,2014.

[18] HUMPHREYS F J,HATHERLY M.Recrystallization and related annealing phenomena[J].2nd edition.Oxford:Elsevier,2004.

[19] SAKAI T,BELYAKOV A,KAIBYSHEV R,et al.Dynamic and post-dynamic recrystallization under hot,cold and severe plastic deformation conditions[J].Progress in Materials Science,2014,60:130-207.

[20] HUANG K,LOGé R E.A review of dynamic recrystallization phenomena in metallic materials[J].Materials & Design,2016,111:548-574.

[21] WANG X X,ZHAN M,GAO P F,et al.Deformation mode dependent mechanism and kinetics of dynamic recrystallization in hot working of titanium alloy[J].Materials Science and Engineering:A,2020,772:138804.

[22] WAGNER F,BOZZOLO N,VAN LANDUYT O,et al.Evolution of recrystallisation texture and microstructure in low alloyed titanium sheets[J].Acta Materialia,2002,50(5):1245-1259.

[23] BOZZOLO N,DEWOBROTO N,GROSDIDIER T,et al.Texture evolution during grain growth in recrystallized commercially pure titanium[J].Materials Science and Engineering:A,2005,397(1-2):346-355.

[24] HE D,ZHU J C,LAI Z H,et al.An experimental study of deformation mechanism and microstructure evolution during hot deformation of Ti-6Al-2Zr-1Mo-1V alloy[J].Materials & Design,2013,46:38-48.

[25] SILVA L,SIVASWAMY G,SUN L,et al.Effect of texture and mechanical anisotropy on flow behaviour in Ti-6Al-4V alloy under superplastic forming conditions[J].Materials Science and Engineering:A,2021,819:141367.

[26] WU Y,FAN R,CHEN M,et al.High-temperature anisotropic behaviors and microstructure evolution mechanisms of a near-α Ti-alloy sheet[J].Materials Science and Engineering:A,2021,820:141560.

[27] BISHOYI B D,SABAT R K,SAHOO S K.Effect of temperature on microstructure and texture evolutions during uniaxial compression of commercially pure titanium [J].Materials Science and Engineering:A,2018,718:398-411.

[28] ZHU X,FAN Q,LIU X,et al.Microstructure evolution and mechanical properties of a hot-rolled Ti alloy[J].Progress in Natural Science:Materials International,2021,31 (1):105-112.

[29] WU C,HUANG L,LI C M.Experimental investigation on dynamic phase transformation and texture evolution of Ti55531 high strength titanium alloy during hot compression in the α+β region[J].Materials Science and Engineering:A,2020,773:138851.

[30] HU X,CHAI L,ZHU Y,et al.Quantitative study of microstructural,textural and hardness evolution of high-purity Ti sheet during rolling from low to medium strains[J].Materials Today Communications,2021,29:102989.

[31] SAHOO S K,SABAT R K,SAHNI S,et al.Texture and microstructure evolution of commercially pure titanium during hot rolling:Role of strain-paths[J].Materials & Design,2016,91:58-71.

[32] SAHOO S K,SABAT R K,BISHOYI B D,et al.Effect of strain-paths on mechanical properties of hot rolled commercially pure titanium[J].Materials Letters,2016,180:166-169.

[33] SAHOO S K,PANDA S,SABAT R K,et al.Effect of pre-annealing strains on annealing texture developments in commercially pure (CP) titanium[J].Philosophical Magazine,2015,95(10):1105-1124.

[34] ZENG L,BIELER T R.Effects of working,heat treatment,and aging on microstructural evolution and crystallographic texture of α,α′,α ″ and β phases in Ti-6Al-4V wire[J].Materials Science and Engineering:A,2005,392(1-2):403-414.

[35] GHOSH A,SINGH A,GURAO N P.Effect of rolling mode and annealing temperature on microstructure and texture of commercially pure-titanium[J].Materials Characterization,2017,125:83-93.

[36] CHENG C,FENG Y,CHEN Z,et al.Effect of annealing temperature on microstructure,texture and tensile properties of TA32 sheet[J].Materials Science and Engineering:A,2021,826:141971.

[37] JIA W,ZENG W,YU H.Effect of aging on the tensile properties and microstructures of a near-alpha titanium alloy[J].Materials & Design,2014,58:108-115.

[38] XU Y L,XU L Y,DING L,et al.Microstructure and microtexture evolution of hot-rolled Ti-6321 alloy at different post-annealing temperatures[J].Journal of Alloys and Compounds,2022,902:163842.

[39] HE S,ZENG W,XU J,et al.The texture evolution related to the interactions between α and β phases in dual-phase region annealing of a near α titanium alloy pipe after Pilger cold rolling[J].Journal of Alloys and Compounds,2022,890:161807.

[40] YANG Z Z,XU W C,WU H,et al.Enhancing hoop strength of titanium alloy tube by cross spinning[J].International Journal of Machine Tools and Manufacture,2020,152:103530.

[41] SHAN D B,YANG G P,XU W C.Deformation history and the resultant microstructure and texture in backward tube spinning of Ti-6Al-2Zr-1Mo-1V[J].Journal of Materials Processing Technology,2009,209(17):5713-5719.

[42] 杨国平.纯钛和BT20钛合金筒形件旋压织构及在热处理中的演化[D].哈尔滨:哈尔滨工业大学,2010.YANG Guoping.Spinning texture of pure titanium and BT20 titanium cylinder and its evolution during heat treatment [D].Harbin:Harbin Institute of Technology,2010.

[43] WANG X X,ZHAN M,FU M W,et al.Microstructure evolution of Ti-6Al-2Zr-1Mo-1V alloy and its mechanism in multi-pass flow forming[J].Journal of Materials Processing Technology,2018,261:86-97.

[44] LEBENSOHN R A,TOMé C N.A self-consistent anisotropic approach for the simulation of plastic deformation and texture development of polycrystals:Application to zirconium alloys[J].Acta Metallurgica et Materialia,1993,41(9):2611-2624.

[45] LI S,BEYERLEIN I J,ALEXANDER D J,et al.Texture evolution during equal channel angular extrusion:Effect of initial texture from experiment and simulation[J].Scripta Materialia,2005,52(11):1099-1104.

[46] SEGURADO J,LEBENSOHN R A,LLORCA J,et al.Multiscale modeling of plasticity based on embedding the viscoplastic self-consistent formulation in implicit finite elements[J].International Journal of Plasticity,2012,28(1):124-140.

[47] 刘志强,赵杰,王克环,等.钛合金热成形工艺形变与组织变耦合多尺度仿真研究进展 [J].中国机械工程,2020,31(22):2678-2690,2698.LIU Zhiqiang,ZHAO Jie,WANG Kehuan,et al.Progress in multi-scale simulation of deformation and microstructure coupling of titanium alloy hot forming process[J].China Mechanical Engineering,2020,31(22):2678-2690,2698.

[48] LI H,WEI D,ZHANG H,et al.Texture evolution and controlling of high-strength titanium alloy tube in cold pilgering for properties tailoring[J].Journal of Materials Processing Technology,2020,279:116520.

[49] MILLER V M,ECHLIN M P,BEYERLEIN I J,et al.Polycrystal plasticity simulation of microtextured titanium[C]//The 13th World Conference on Titanium.Hoboken,2016:209-214.

[50] SUWAS S,BEAUSIR B,TóTH L S,et al.Texture evolution in commercially pure titanium after warm equal channel angular extrusion[J].Acta Materialia,2011,59(3):1121-1133

[51] WANG D,FAN Q,CHENG X,et al.Texture evolution and slip mode of a Ti-5.5Mo-7.2Al-4.5Zr-2.6Sn-2.1Cr dual-phase alloy during cold rolling based on multiscale crystal plasticity finite element model[J].Journal of Materials Science & Technology,2022,111:76-87.

[52] 詹梅,李宏伟,孙新新,等.基于晶体塑性的难变形材料不均匀变形多尺度建模研究进展 [J].塑性工程学报,2018,25(1):1-14.ZHAN Mei,LI Hongwei,SUN Xinxin,et al.Research progress on multi-scale modeling of heterogeneous deformation of refractory materials based on crystal plasticity[J].Journal of Plasticity Engineering,2018,25(1):1-14

[53] MA R,PILCHAK A L,SEMIATIN S L,et al.Modeling the evolution of microtextured regions during α/β processing using the crystal plasticity finite element method[J].International Journal of Plasticity,2018,107:189-206.

[54] TANG T,ZHOU G,LI Z,et al.A polycrystal plasticity based thermo-mechanical-dynamic recrystallization coupled modeling method and its application to light weight alloys[J].International Journal of Plasticity,2019,116:159-191.

[55] MIN K M,JEONG W,HONG S H,et al.Integrated crystal plasticity and phase field model for prediction of recrystallization texture and anisotropic mechanical properties of cold-rolled ultra-low carbon steels[J].International Journal of Plasticity,2020,127:102644.

[56] LI H W,SUN X X,YANG H.A three-dimensional cellular automata-crystal plasticity finite element model for predicting the multiscale interaction among heterogeneous deformation,DRX microstructural evolution and mechanical responses in titanium alloys[J].International Journal of Plasticity,2016,87:154-180.

[57] SONG D,ZHOU T,TU J,et al.Improved stretch formability of AZ31 sheet via texture control by introducing a continuous bending channel into equal channel angular rolling[J].Journal of Materials Processing Technology,2018,259:380-386.

[58] LI D S,GARMESTANI H,AHZI S.Processing path optimization to achieve desired texture in polycrystalline materials[J].Acta Materialia,2007,55(2):647-654.

基本信息:

DOI:

中图分类号:TG146.23

引用信息:

[1]王贤贤,张睿翔,张功学,等.钛合金热变形织构演变研究进展[J].塑性工程学报,2022,29(12):1-12.

基金信息:

国家自然科学基金青年科学基金资助项目(52005313); 陕西省教育厅科研计划(22JK0304); 陕西科技大学科研启动基金资助项目(2021BJ-02)

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