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Tunable mechanical behavior of auxetic cementitious cellular composites (CCCs): Experiments and simulations

机译:辅助水泥细胞复合材料(CCCS)的可调谐力学行为:实验与仿真

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摘要

This research presents an investigation of the compressive behavior of auxetic cementitious cellular composites (CCCs) using a combination of experiments and finite element (FE) simulations. Typical auxetic centrosymmetric geometry was used as unit cells for the cellular structure and fiber reinforced cementitious mortar were used as constituent material. By varying the cellular geometry, three CCCs (P0, P25 and P50) were prepared then experimentally and numerically tested under uniaxial compression with different boundary conditions. Good agreement can be found between experimental and FE simulated results: Only CCCs with chiral section (P25 and P50) exhibited auxetic behavior and a typical compressive stress-strain response with two peaks was found; Under restrained boundary condition, different from the cone confinement zone observed in bulk cementitious materials, re-entrant confinement zone was found in the auxetic CCCs. More importantly, a cracking initiated section rotation mechanism is identified for the CCCs' auxetic behavior which is distinct from the elastic instability mechanism of polymeric auxetic materials with the same cellular structure. In terms of density, energy dissipation ability and Poisson's ratio, the auxetic CCCs shows excellent properties making them promising in various civil engineering applications. (C) 2020 The Author(s). Published by Elsevier Ltd.
机译:该研究介绍了使用实验和有限元模拟的组合来研究辅助水泥细胞复合材料(CCCS)的压缩行为。使用典型的辅助亚烃基几何形状用作细胞结构的单元电池,并且使用纤维增强胶浆用作组成材料。通过改变细胞几何形状,然后在具有不同边界条件下在单轴压缩下进行实验和数值测试三种CCCS(P0,P25和P50)。实验和FE模拟结果之间可以发现良好的一致性:只有具有手性部分(P25和P50)的CCC表现出辅助行为,并且发现了两个峰的典型压缩应力 - 应变响应;在受限制的边界条件下,与块状胶凝材料观察到的锥形监禁区不同,在辅助CCCS中发现重新参赛者限制区。更重要的是,识别出用于CCCS辅助行为的裂缝引发的截面旋转机构,其与具有相同细胞结构的聚合物辅助材料的弹性不稳定机理不同。在密度,能量耗散能力和泊松比率方面,辅助CCCS显示出优异的特性,使其在各种土木工程应用中有望。 (c)2020提交人。 elsevier有限公司出版

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