首页> 外文会议>35th AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference, Pt.5, Apr 18-20, 1994, Hilton Head, SC >Developments Encompassing Stress Based Finite Element Formulations for Materially Nonlinear Static/Dynamic Problems
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Developments Encompassing Stress Based Finite Element Formulations for Materially Nonlinear Static/Dynamic Problems

机译:包含基于应力的有限元公式的重大非线性静/动力问题的发展

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摘要

Alternative finite element representations employing stress based element formulations are described for the solution of static/dynamic nonlinear stress analysis problems. In particular, this work investigates the proposed formulations as applied to both static and dynamic situations involving material nonlinearity. The formulations eliminate the need to employ numerical integration in evaluating the stiffness matrix and the residual force vector. Some noteworthy aspects via the present formulation include independence of element integral computations from nonlinearities, introduction of boundary conditions in a direct and natural manner and the applicability to general situations. Numerical test cases are described to validate the present formulations for finite element computations. The overall results show good accuracy and improvement in efficiency for the computations.
机译:描述了采用基于应力的单元公式的替代有限元表示形式,用于解决静态/动态非线性应力分析问题。特别是,这项工作研究了建议的公式,该公式适用于涉及材料非线性的静态和动态情况。这些公式消除了在评估刚度矩阵和残余力矢量时采用数值积分的需要。通过当前公式,一些值得注意的方面包括元素积分计算与非线性的独立性,以直接自然的方式引入边界条件以及对一般情况的适用性。描述了数字测试用例,以验证用于有限元计算的当前公式。总体结果显示了良好的准确性,并提高了计算效率。

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