Vectorized 3D microstructure for finite element simulations

被引:7
|
作者
Tewari, Asim [1 ]
Tiwari, Shashank [1 ]
Biswas, Pinaki [1 ]
Vijayalakshmi, S. [1 ]
Mishra, Raja K. [2 ]
机构
[1] Gen Motors Global R&D, India Sci Lab, Bangalore, Karnataka, India
[2] Gen Motors Global R&D, Chem Sci & Mat Syst Lab, Warren, MI USA
关键词
Vector image; Bitmap; Microstructure FEM; Generalized ellipsoid; 3-DIMENSIONAL MICROSTRUCTURES;
D O I
10.1016/j.matchar.2010.07.016
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Microstructure based forming models using statistically representative microstructural input provide the most accurate predictions for early localization and failure during complex forming operations However the sheer size and complexity of the three dimensional (3D) microstructural data from real materials makes it hard to implement that data in current finite element models In this report, a technique to create a vectorized 3D microstructure suitable for input into finite element codes is developed and applied to represent the distribution of particles of different phases found in continuous cast (CC) AA5754 sheets which tend to have heterogeneous particle distributions with particles of several phases in different shapes and sizes (from 0 2 mu m to 10 mu m) and distributed at random in stringers and along the "centerline" The technique consists of a 3D reconstruction of the true microstructure by performing serial sections and conversion of the 3D raster image to the vector image A 3D mesh is generated automatically using U and Hyperrnesh from real particle field measurements, which can be imported to any FE code The vectorized microstructure is validated by comparison with the reconstructed images of particle distribution data (C) 2010 Elsevier Inc All rights reserved
引用
收藏
页码:1211 / 1220
页数:10
相关论文
共 50 条
  • [11] Melting in a Single Screw Extruder: Experiments and 3D Finite Element Simulations
    Altinkaynak, A.
    Gupta, M.
    Spalding, M. A.
    Crabtree, S. L.
    INTERNATIONAL POLYMER PROCESSING, 2011, 26 (02) : 182 - 196
  • [12] Cord pull-out tests: 3D finite element simulations
    Kocak, S
    Pidaparti, RMV
    POLYMERS & POLYMER COMPOSITES, 2000, 8 (02): : 77 - 85
  • [13] Cord pull-out tests: 3D finite element simulations
    Kocak, S.
    Pidaparti, R.M.V.
    Polymers and Polymer Composites, 2000, 8 (02) : 77 - 85
  • [14] 3D Finite Element Simulations of Indentation Fracture Test of ZrO2-Ceramics with Taking into Account its Microstructure
    Lasko, Galina
    Danilenko, Igor
    Schmauder, Siegfried
    2022 INTERNATIONAL CONGRESS ON ADVANCED MATERIALS SCIENCES AND ENGINEERING, AMSE, 2022, : 22 - 26
  • [15] Parallel hp-Finite Element Simulations of 3D Resistivity Logging Instruments
    Paszynski, Maciej
    Pardo, David
    Demkowicz, Leszek
    Torres-Verdin, Carlos
    LEADING THE WEB IN CONCURRENT ENGINEERING: NEXT GENERATION CONCURRENT ENGINEERING, 2006, 143 : 635 - 642
  • [16] 3D finite element simulations of an air-coupled ultrasonic NDT system
    Ke, W.
    Castaings, M.
    Bacon, C.
    NDT & E INTERNATIONAL, 2009, 42 (06) : 524 - 533
  • [17] FRACTURE AND FATIGUE ANALYSIS FOR A CRACKED CARABINER USING 3D FINITE ELEMENT SIMULATIONS
    Aliha, M. R. M.
    Bahmani, A.
    Akhondi, S.
    STRENGTH OF MATERIALS, 2015, 47 (06) : 890 - 902
  • [18] Fracture and Fatigue Analysis for a Cracked Carabiner Using 3D Finite Element Simulations
    M. R. M. Aliha
    A Bahmani
    S. Akhondi
    Strength of Materials, 2015, 47 : 890 - 902
  • [19] A multi-mesh finite element method for 3D phase field simulations
    Schmidt, A
    FREE BOUNDARY PROBLEMS: THEORY AND APPLICATIONS, 2004, 147 : 293 - 301
  • [20] A comparison of 3D finite element simulations for Berkovich and conical indentation of fused silica
    Shim, Sanghoon
    Oliver, W. C.
    Pharr, G. M.
    INTERNATIONAL JOURNAL OF SURFACE SCIENCE AND ENGINEERING, 2007, 1 (2-3) : 259 - 273