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Incremental analysis of time-dependent effects in composite structures

机译:复合结构中时效效应的增量分析

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摘要

An efficient numerical method is presented, to account for time effects in composite structures. The method is based on the theory of linear viscoelasticity and on the finite element method. The global behaviour of structural elements made of several viscoelastic materials (composite beams, layered plates or shells) is expressed in terms of the generalized variables of the structure mechanics. The incremental nature of the formulation results from the choice of a Dirichlet's series to express the constitutive law of the materials. A specific algorithm which allows for a process of construction by phases is implemented in a finite element program. The use of the method is illustrated through two computation examples: a prestressed concrete beam previously tested over a 5-year period of creeping, and an existing cooling tower which is a thin reinforced concrete shell. The method provides valuable information about time effects that may be used either while designing new structures, or for the diagnosis of existing structures.
机译:提出了一种有效的数值方法来解决复合结构中的时间效应。该方法基于线性粘弹性理论和有限元方法。由几种粘弹性材料(复合梁,层状板或壳)制成的结构元件的整体行为用结构力学的广义变量表示。配方的增量性质是由选择Dirichlet系列表示材料的本构定律产生的。在有限元程序中实现了允许分阶段进行构造的特定算法。通过两个计算示例说明了该方法的使用:预先经过5年蠕变测试的预应力混凝土梁,以及现有的冷却塔,该冷却塔是钢筋混凝土薄壳。该方法提供了有关时间影响的有价值的信息,这些信息可以在设计新结构时使用,也可以在现有结构的诊断中使用。

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