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首页> 外文期刊>International Journal of Solids and Structures >Numerical analysis of prestressed concrete beams using a coupled element free Galerkin/finite element approach
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Numerical analysis of prestressed concrete beams using a coupled element free Galerkin/finite element approach

机译:使用耦合元件无射线/有限元方法的预应力混凝土梁数值分析

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The topic of this paper is the analysis of prestressed concrete beams under quasistatic loading. Therefore, a coupled element free Galerkin finite element approach is chosen. The concrete is modeled with particles and the reinforcement with beam elements. For the steel, an elastoplastic constitutive law with isotropic hardening and a tension cutoff is applied. The concrete is modeled via a continuum damage model, where an anisotropic tensile damage variable is used to capture the appropriate behavior of concrete in tension. Since the interaction between the concrete and the reinforcement is crucial, the bond behavior cannot be ignored. The relative displacements between the reinforcement and the adjacent concrete particles are calculated. The resulting bond forces tangential and normal to the reinforcement are applied onto the elements and the adjacent concrete particles. The numerical results are compared with two experiments with different failure mechanisms and agree well. (C) 2003 Elsevier Ltd. All rights reserved. [References: 37]
机译:本文主题是在Quasistatic Loading下对预应力混凝土梁进行分析。因此,选择了一种耦合元件游离的Galerkin有限元方法。混凝土用颗粒和梁元件建模。对于钢,施加具有各向同性硬化的弹性塑料组成型法和张力切断。通过连续损伤模型建模混凝土,其中各向异性拉伸损伤变量用于捕捉混凝土张力的适当行为。由于混凝土和加强件之间的相互作用至关重要,因此不能忽略粘合行为。计算加强件和相邻混凝土颗粒之间的相对位移。将产生的粘合力与加强件相切和正常施加到元件和相邻的混凝土颗粒上。将数值结果与两种实验进行比较,不同的失效机制并同意。 (c)2003年elestvier有限公司保留所有权利。 [参考:37]

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