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Masonry and monolithic circular arches strengthened with composite materials - A finite element model

机译:复合材料加固的砌体和整体式圆拱-有限元模型

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摘要

A finite element model for the stress analysis of circular arches strengthened with composite materials is developed. The formulation uses the principle of virtual work, the Bernoulli-Euler curved beam theory for the arch and the composite reinforcement, and a high-order kinematic assumption that satisfies the compatibility and (with the constitutive laws) the tangential equilibrium conditions of the adhesive. The character of the masonry arch is introduced through the constitutive equations with a distinction between the masonry units and the mortar joints. Convergence and numerical studies that support using high-order shape functions and examine the capabilities of the model are presented.
机译:建立了复合材料加固圆拱的有限元模型。该公式使用虚拟功的原理,Bernoulli-Euler拱和复合材料增强件的弯曲梁理论,以及满足粘合剂的相容性和(与本构定律)切向平衡条件的高阶运动学假设。通过本构方程式介绍了砌体拱的特性,并区分了砌体单元和砂浆缝。提供了支持使用高阶形状函数并检查模型功能的收敛性和数值研究。

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