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Simulation of Unreinforced Masonry Beams Retrofitted with Engineered Cementitious Composites in Flexure

机译:工程水泥基复合材料抗弯加固无筋砌体梁的模拟

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摘要

A two-dimensional non-linear finite-element analysis micro-modeling approach to simulate unreinforced masonry beams in bending is extended to include a retrofit with a thin layer of ductile fiber-reinforced cement-based material referred to as engineered cementitious composite (ECC). The retrofit method is one that has been demonstrated to add significant ductility to unreinforced masonry infill walls under in-plane cyclic loading and is further expected to enhance out-of-plane bending resistance. The objective of the research is to identify and propose a modeling approach for this complex system of four materials and three different types of interface using basic material properties and established model parameters for future analyses of the retrofit system in structural applications. Of the two geometric models investigated, a simplified approach using expanded brick units with zero-thickness mortar elements is recommended and validated. Brick-mortar interface opening, cracking of the ECC layer below the mortar joints, and failure of the ECC were captured well. The simulated response is found to be particularly sensitive to the adopted constitutive model of the ECC. Research areas for enhancing the ability of the adopted modeling approaches in predicting the response of this complex system, are identified.
机译:二维非线性有限元分析微观建模方法可模拟弯曲时未加固的砌体梁,以包括对可塑性纤维增强水泥基材料薄层的改造,称为工程水泥复合材料(ECC) 。改造方法已被证明可以在平面内循环荷载作用下为未加固的砌体填充墙增加显着的延展性,并且有望进一步增强平面外的抗弯能力。该研究的目的是使用基本的材料特性和已建立的模型参数,为结构应用中的改装系统的未来分析,识别和提出针对四种材料和三种不同类型的界面的复杂系统的建模方法。在研究的两个几何模型中,推荐并验证了使用带有零厚度砂浆单元的扩展砖单元的简化方法。可以很好地捕获砖砂浆界面开口,砂浆接缝下方的ECC层开裂以及ECC的故障。发现模拟响应对采用的ECC本构模型特别敏感。确定了增强所采用的建模方法预测此复杂系统响应能力的研究领域。

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