Modeling and Characterization of Grain Scale Strain Distribution in Polycrystalline Tantalum

被引:0
|
作者
Bronkhorst, C. A. [1 ]
Ross, A. R. [2 ]
Hansen, B. L. [1 ]
Cerreta, E. K.
Bingert, J. F.
机构
[1] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA
[2] Los Alamos Natl Lab, Div Mat Sci & Technol, Los Alamos, NM 87545 USA
来源
CMC-COMPUTERS MATERIALS & CONTINUA | 2010年 / 17卷 / 02期
关键词
Shear localization; Microstructure; Crystal Plasticity; Dynamic; Damage; PLASTIC-DEFORMATION; LOCALIZATION; VISCOPLASTICITY; SIMULATION; BEHAVIOR; FRACTURE; METALS; ALLOYS; VOIDS;
D O I
暂无
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
A common sample geometry used to study shear localization is the "tophat" an axi-symmetric sample with an upper "hat" portion and a lower "brim" portion The gage section lies between the hat and brim The gage section length is on the order of 0 9 mm with deformation imposed through a Split-Hopkinson Pressure Bar system at maximum top-to-bottom velocity in the range of 10-25 m/sec Detailed metallographic analysis has been performed on sections of the samples to quantify the topology and deformation state of the material after large deformation shear These experiments performed with polycrystalline tantalum have been modeled using a multi-scale polycrystal plasticity approach A Voronoi tessellation based microstructural model and a coupled thermo-mechanical elasto-viscoplastic crystal plasticity model was used The crystal plasticity model allowed for slip to occur on the twelve {110} < 111 > and twelve {112}< 111 > slip systems Three numerical models were produced using three different realizations of initial crystallographic texture distribution within the same morphological microstructure and the results presented The detailed metallographic analysis of the deformed sample shear zone produced an estimate for the strain profile within that region and these results are compared directly to the three numerical simulation results Although the models predict a stress response which is greater than that observed experimentally, the local strain response compares very well with the results of the metallographic analysis
引用
收藏
页码:149 / 174
页数:26
相关论文
共 50 条
  • [21] Modeling and Characterization of Porous Tantalum Scaffolds
    Vignesh Raja Sukumar
    Brahma Raju Golla
    Mahammad Ali Shaik
    Ankit Yadav
    Sarath Chandra Dongari Taraka
    Shivkumar Khaple
    Transactions of the Indian Institute of Metals, 2019, 72 : 935 - 949
  • [22] GRAIN SHAPE AND DISTRIBUTION OF THE GRAIN-BOUNDARY DENSITY IN POLYCRYSTALLINE MATERIALS
    SZPUNAR, JA
    TANNER, BK
    JOURNAL OF MATERIALS SCIENCE, 1984, 19 (10) : 3249 - 3254
  • [23] Characterization of grain boundaries in CdTe polycrystalline films
    Tetyorkin, V. V.
    Sukach, A. V.
    Boiko, V. A.
    Tkachuk, A. I.
    SEMICONDUCTOR PHYSICS QUANTUM ELECTRONICS & OPTOELECTRONICS, 2015, 18 (04) : 428 - 432
  • [24] Grain-scale permeabilities of faceted polycrystalline aggregates
    Price, J. D.
    Wark, D. A.
    Watson, E. B.
    Smith, A. M.
    GEOFLUIDS, 2006, 6 (04) : 302 - 318
  • [25] Grain size and strain dependence of the flow stress of polycrystalline iron
    Gao, L.
    Chan, K.C.
    Philosophical Magazine Letters, 1995, 71 (06):
  • [26] Grain size and alloying influence on the strain hardening of polycrystalline α-brasses
    Romhanji, Endre
    Milenkovic, Vojin
    Drobnjak, Djordje
    Zeitschrift fuer Metallkunde/Materials Research and Advanced Techniques, 1992, 83 (02): : 110 - 114
  • [27] Strain enhanced defect reactivity at grain boundaries in polycrystalline graphene
    Wang, Bin
    Puzyrev, Yevgeniy
    Pantelides, Sokrates T.
    CARBON, 2011, 49 (12) : 3983 - 3988
  • [28] Three Dimensional Grain Boundary Modeling in Polycrystalline Plasticity
    Yalcinkaya, Tuncay
    Ozdemir, Izzet
    Firat, Ali Osman
    PROCEEDINGS OF 21ST INTERNATIONAL ESAFORM CONFERENCE ON MATERIAL FORMING (ESAFORM 2018), 2018, 1960
  • [29] Multi-phase-field modeling of grain growth in polycrystalline titanium under magnetic field and elastic strain
    Y. Rezaei
    M. Jafari
    A. Hassanpour
    M. Jamshidian
    Applied Physics A, 2022, 128
  • [30] Grain refinement and its effect of polycrystalline metals during high strain rate deformation: Crystal plasticity modeling
    An, Wen
    Xiong, Qi-Lin
    Liu, Chuan-zhi
    Li, Zhenhuan
    Wang, Jian
    Yao, Songlin
    JOURNAL OF MATERIALS SCIENCE & TECHNOLOGY, 2025, 229 : 125 - 146