점소성 구성식의 적분에 미치는 선형화 방법의 영향Comparison of Semi-Implicit Integration Schemes for Rate-Dependent Plasticity

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During decades, there has been much progress in understanding of the inelastic behavior of the materials and numerous inelastic constitutive equations have been developed. The complexity of these constitutive equations generally requires a stable and accurate numerical method. To obtain the increment of state variable, its evolution laws are linearized by several approximation methods, such as general midpoint rule(GMR) or general trapezoidal rule(GTR). In this investigation, semi-implicit integration schemes using GTR and GMR were developed and implemented into ABAQUS by means of UMAT subroutine. The comparison of integration schemes was conducted on the simple tension case, and simple shear case and nonproportional loading case. The fully implicit integration(FI) was the most stable but amplified the truncation error when the nonlinearity of state variable is strong. The semi-implicit integration using GTR gave the most accurate results at tension and shear problem. The numerical solutions with refined time increment were always placed between results of GTR and those of FI. GTR integration with adjusting midpoint parameter can be recommended as the best integration method for viscoplastic equation considering nonlinear kinematic hardening.
Publisher
대한기계학회
Issue Date
2003-11
Language
Korean
Citation

대한기계학회논문집 A, v.27, no.11, pp.1907 - 1916

ISSN
1226-4873
URI
http://hdl.handle.net/10203/84308
Appears in Collection
ME-Journal Papers(저널논문)
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