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Variable order secant matrix technique applied to the elastic postbuckling of arches

机译:变阶割线矩阵技术在弹性拱中的应用

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This paper presents the implementation of Reissner's (J. Appl. Math. Phys. 1972; 23:795-804) strain-displacement relations for a planar beam using a variable order secant matrix (VOSM) technique. The secant matrices are formed using a Taylor expansion of the strain energy and hence the order of the secant and tangent matrices to be included in the nonlinear analysis can be varied depending upon the degree of nonlinearity involved in the problem. Nevertheless, a maximum of 24 matrices is sufficient to obtain predicted internal stress resultants to within 0.2% of the converged solution in all the problems tested. Using a three-noded isoparametric beam element, the accuracy of the VOSM method is demonstrated for the elastic postbuckling of arches.
机译:本文介绍了使用可变阶割线矩阵(VOSM)技术实现平面梁的Reissner(J. Appl。Math。Phys.1972; 23:795-804)应变-位移关系的实现。割线矩阵是使用应变能的泰勒展开形成的,因此要包含在非线性分析中的割线和切线矩阵的阶数可以根据问题中涉及的非线性程度而变化。然而,在所有测试的问题中,最多24个矩阵足以获得预期的内部应力结果,该结果在收敛解的0.2%之内。使用三节点等参梁单元,证明了VOSM方法对拱的弹性后屈曲的准确性。

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