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首页> 外文期刊>Latin American Journal of Solids and Structures >Multi-scale representation of plastic deformation in fiber-reinforced materials: application to reinforced concrete
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Multi-scale representation of plastic deformation in fiber-reinforced materials: application to reinforced concrete

机译:纤维增强材料塑性变形的多尺度表示:在钢筋混凝土中的应用

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Abstract Here we present a multi-scale model to carry out the computation of brittle composite materials reinforced with fibers, and we show its application to standard reinforced concrete. The computation is carried out within an operator-split framework on the macro-scale, which allows for different failure mechanisms to develop in separate phases, as both the concrete and the bond-slip exhibit non-linear behavior. The computations on the micro-scale are performed for each constituent separately. The reinforcement is taken to be linear elastic, and the bond-slip is handled as a plastic deformation. The standard elastoplastic procedure is used to compute the bond stresses, combined with the X-FEM methodology to give the global representation of slip. The crack development in concrete, on the other hand, is described with a damage model with exponential softening, where ED-FEM is used to represent localized failure. A numerical example is shown to test the developed methodology.
机译:摘要在此我们提出了一种多尺度模型来进行纤维增强的脆性复合材料的计算,并展示了其在标准钢筋混凝土中的应用。计算是在宏观尺度上的操作员拆分框架内进行的,因为混凝土和粘结滑移均表现出非线性行为,因此可以在不同的阶段中发展出不同的破坏机制。微观计算分别针对每种成分进行。加强件被认为是线性弹性的,粘结滑移被视为塑性变形。使用标准的弹塑性程序来计算粘结应力,并结合X-FEM方法来给出滑移的整体表示。另一方面,用具有指数软化的损伤模型描述了混凝土中的裂纹发展,其中ED-FEM用于表示局部破坏。给出了一个数值示例来测试开发的方法。

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