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Finite element study on the impact responses of concrete masonry unit walls strengthened with fiber-reinforced polymer composite materials

机译:纤维增强聚合物复合材料加固混凝土砌体单元墙冲击响应的有限元研究

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Research on the impact behaviour of concrete masonry unit (CMU) walls strengthened with fiber reinforced polymer (FRP) composites is considerably limited. In this study, the effectiveness of externally bonded (EB) FRP technique on the resistance of CMU walls under high-velocity impact force was therefore investigated numerically. Finite element (FE) models were developed using LS-DYNA. The Concrete Damage Re13 model and Enhanced Composite Damage material models were used for concrete and composite materials, respectively. Furthermore, the Add Erosion and Smooth Particle Hydrodynamics options were included to accurately represent impact behaviour. The FE models were validated using literature results. Applications of various EB FRP composites to CMU walls were investigated with the parameters of fiber types, fiber direction, fiber layer, and impactor velocity. The numerical results show that the EB FRP strengthening technique is significantly effective to improve the impact resistance of CMU walls by preventing an impactor from perforating the CMU walls. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对纤维增强聚合物(FRP)复合材料增强的混凝土砌体单元(CMU)墙的冲击性能的研究受到很大限制。在这项研究中,因此在数值上研究了外部粘结(EB)FRP技术对CMU墙在高速冲击力下的抵抗力的有效性。使用LS-DYNA开发了有限元(FE)模型。混凝土损伤Re13模型和增强型复合损伤材料模型分别用于混凝土和复合材料。此外,还包括“添加侵蚀”和“光滑粒子流体力学”选项,以准确表示冲击行为。使用文献结果验证了有限元模型。研究了各种EB FRP复合材料在CMU壁上的应用,包括纤维类型,纤维方向,纤维层和冲击速度的参数。数值结果表明,EB FRP加固技术通过防止撞击器对CMU壁穿孔而显着有效地提高了CMU壁的抗冲击性。 (C)2016 Elsevier Ltd.保留所有权利。

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