Crystal plasticity modeling of deformation and creep in polycrystalline Ti-6242

被引:0
|
作者
Dhyanjyoti Deka
Deepu S. Joseph
Somnath Ghosh
Michael J. Mills
机构
[1] The Ohio State University,Department of Mechanical Engineering
[2] The Ohio State University,Department of Materials Science and Engineering
关键词
Material Transaction; Slip System; Creep Test; Misorientation Angle; Constant Strain Rate;
D O I
暂无
中图分类号
学科分类号
摘要
This paper develops an experimentally validated computational model based on crystal plasticity for the analysis of two-phase α/β Ti-6242 polycrystalline alloys. A rate-dependent elastic-crystal plasticity model is incorporated in this model to accommodate anisotropy in material behavior and tension-compression asymmetry inherent to this alloy. A combination of microtesting, orientation imaging microscopy, computational simulations, and minimization process, involving genetic algorithms, is implemented in this study for careful characterization and calibration of the material parameters. Size effects are considered in this analysis through a simple scaling process. A homogenized equivalent model of the primary α with transformed β colonies is developed for incorporation in the Ti-6242 FE model. The polycrystalline Ti-6242 computational model incorporates accurate phase volume fractions, as well as statistically equivalent orientation distributions to those observed in the orientation imaging microscopy scans. The effects of orientation, misorientations, and microtexture distributions are investigated through simulations by this computational model. The model is used to simulate constant strain rate and creep tests in compression and tension, and the results are compared with experiments. The effects of microstructure and creep-induced load-shedding on the localization of microstructural stresses and strains are studied for potential crack initiation criteria.
引用
收藏
页码:1371 / 1388
页数:17
相关论文
共 50 条
  • [21] A Hierarchical Multiscale Modeling Investigation on the Behavior of Microtextured Regions in Ti-6242 α/β Processing
    Ma, Ran
    Truster, Timothy J.
    METALS, 2019, 9 (02)
  • [22] Dissolution rate measurements of TiN in Ti-6242
    Bewlay, BP
    Gigliotti, MFX
    ACTA MATERIALIA, 1997, 45 (01) : 357 - 370
  • [23] Low cycle dwell time fatigue in Ti-6242
    Kassner, ME
    Faber, R
    Li, X
    Ge, Y
    Kosaka, Y
    Bristow, B
    Reichman, SH
    Hall, JA
    FATIGUE BEHAVIOR OF TITANIUM ALLOYS, 1999, : 119 - 126
  • [24] Cyclic plasticity and creep-cyclic plasticity behaviours of the SiC/Ti-6242 particulate reinforced titanium matrix composites under thermo-mechanical loadings
    Giugliano, Dario
    Cho, Nak-Kyun
    Chen, Haofeng
    Gentile, Lorenzo
    COMPOSITE STRUCTURES, 2019, 218 : 204 - 216
  • [25] Deformation and creep modeling in polycrystalline Ti-6Al alloys
    Hasija, V
    Ghosh, S
    Mills, MJ
    Joseph, DS
    ACTA MATERIALIA, 2003, 51 (15) : 4533 - 4549
  • [26] Tension/compression asymmetry, anisotropy and size effects in the plastic deformation of Ti-6242 single colonies
    Norfleet, DM
    Mills, MJ
    Uchic, MD
    Savage, MF
    Tatalovich, J
    SURFACES AND INTERFACES IN NANOSTRUCTURED MATERIALS AND TRENDS IN LIGA, MINIATURIZATION, AND NANOSCALE MATERIALS, 2004, : 341 - 341
  • [27] Effect of microstructure on dwell fatigue behavior of Ti-6242
    Woodfield, AP
    Gorman, MD
    Sutliff, JA
    Corderman, RR
    FATIGUE BEHAVIOR OF TITANIUM ALLOYS, 1999, : 111 - 118
  • [28] Development of reference standards for Ti-6242 grade alloy
    Subramaniam, P
    Rao, TH
    Murthy, PSR
    Athavale, SV
    Pullaiah, P
    Kumar, TJ
    Rao, YG
    TRANSACTIONS OF THE INDIAN INSTITUTE OF METALS, 1997, 50 (04): : 259 - 265
  • [29] The effect of anisotropic rate dependency on the deformation response of Ti-6242 during dwell fatigue loading
    Shankar, Karthik
    Harr, Michelle
    Pilchak, Adam
    Kasemer, Matthew
    MATERIALIA, 2024, 33
  • [30] The fracture behavior of a Ti-6242 alloy deformed in bending fatigue
    Srivatsan, TS
    Al-Hajri, M
    Petraroli, M
    Derreberry, B
    Lam, PC
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2002, 334 (1-2): : 327 - 333