DISPLACEMENT PATTERN-MATCHING AND BOUNDARY-ELEMENT METHODS FOR ELASTIC-PLASTIC STRESS-ANALYSIS

被引:8
作者
SIRKIS, JS [1 ]
TAYLOR, CE [1 ]
机构
[1] UNIV FLORIDA, DEPT AEROSP ENGN MECH & ENGN SCI, GAINESVILLE, FL 32611 USA
关键词
D O I
10.1007/BF02322698
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A two-dimensional hybrid experimental-numerical technique for elastic-plastic stress analysis is presented. This technique results from merging two relatively new technologies in engineering mechanics: boundary-element methods and image processing. A syntactic pattern recognition scheme, termed 'displacement pattern matching' (DPM), determines the displacement boundary conditions which are used in an elasticplastic boundary-element method (EPBEM) code. The result is an automated stress-analysis tool. Displacement pattern matching is a process where displacements are measured by tracking an arbitrary array of 'black' spots on a 'white' specimen. The digitized images of the specimen are compared in a double-exposure format to determine displacements. Displacement pattern matching is a full-field technique, with spatial resolution on the order of. 1 pixels. Displacement pattern matching supplies the actual specimen displacement increments to the EPBEM code which is based on a von Mises, isotropic work-hardening constitutive model. Given these displacements and free surface conditions, EPBEM is able to incrementally calculate the internal state of stress at selected locations. Results obtained for a variety of geometries and loading conditions compared well with ANSYS finite-element solutions and selected published experimental solutions and therefore are encouraging. © 1990 Society for Experimental Mechanics, Inc.
引用
收藏
页码:26 / 33
页数:8
相关论文
共 36 条
  • [11] JOHNSON W, 1966, PLASTICITY MECHANICA
  • [12] KOHNKE PC, 1983, ANSYS ENG ANAL SYSTE
  • [13] LIU C, 1984, THESIS U S CAROLINA
  • [14] METHODOLOGIES IN PATTERN-RECOGNITION AND IMAGE-ANALYSIS - A BRIEF SURVEY
    MANTAS, J
    [J]. PATTERN RECOGNITION, 1987, 20 (01) : 1 - 6
  • [15] Martin J.B., 1975, PLASTICITY FUNDAMENT
  • [16] MENDELSON A, 1975, P ASME C BIEM AMD, V11, P47
  • [17] MITSUI Y, 1986, DEV THEORETICAL APPL, V13, P590
  • [18] MOSLEHY FA, 1980, DEV THEORETICAL APPL, V10, P473
  • [19] Nayak G. C., 1972, International Journal for Numerical Methods in Engineering, V5, P113, DOI 10.1002/nme.1620050111
  • [20] RICCARDELLA P, 1973, THESIS CARNEGIEMELLO