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Structural models based on 3D constitutive laws: Variational structure and numerical solution

机译:基于3D本构定律的结构模型:变结构和数值解

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摘要

In all structural models, the section or fiber response is a relation between the strain measures and the stress resultants. This relation can only be expressed in a simple analytical form when the material response is linear elastic. For other, more complex and interesting situations, kinematic and kinetic hypotheses need to be invoked, and a constrained three-dimensional constitutive relation has to be employed at every point of the section in order to implement non-linear and dissipative constitutive laws into dimensionally reduced structural models. In this article we explain in which sense reduced constitutive models can be expressed as minimization problems, helping to formulate the global equilibrium as a single optimization problem. Casting the problem this way has implications from the mathematical and numerical points of view, naturally defining error indicators. General purpose solution algorithms for constrained material response, with and without optimization character, are discussed and provided in an open-source library. (C) 2020 Elsevier B.V. All rights reserved.
机译:在所有结构模型中,截面或纤维响应是应变测量与应力合力之间的关系。这种关系只能在材料响应为线性弹性时以简单的分析形式表示。对于其他更复杂和有趣的情况,需要调用运动学和动力学假设,并且必须在该部分的每个点上使用受约束的三维本构关系,以将非线性和耗散本构定律实现为降维形式。结构模型。在本文中,我们解释了从哪个意义上说本构模型可以表示为最小化问题,从而有助于将全局均衡表述为单个优化问题。从数学和数字的角度来看,以这种方式发布问题会产生影响,自然会定义错误指示符。在开放源代码库中讨论和提供了用于具有或不具有优化特征的受约束材料响应的通用解决方案算法。 (C)2020 Elsevier B.V.保留所有权利。

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