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Modelling of Auxetic Foam Embedded Brittle Materials and Structures

机译:辅助泡沫嵌入式脆性材料和结构的建模

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Building structures use brittle materials extensively. Under impact or blast loads these structures perform poorly due to tensile strains caused by Poisson's effect normal to the direction of such loadings. Auxetic materials exhibit negative Poisson's ratio - a property which can be exploited to eliminate those tensile strains. In this study, Auxetic layers embedded masonry is modelled using a representative volume element (RVE) with periodic boundary conditions and an explicit finite element (EFE) modelling method for a boundary value problem of a masonry wall with an Auxetic foam rendered face is subject to out-of-plane load. The RVE is limited to in-plane loads only and hence subjected to in-plane shear and compression and the EFE was used to assess the performance under out-of-plane loading. The results show significant post-yield strain hardening under axial compression and in-plane shear and high increase in capacity for walls under out of plane flexure.
机译:建筑结构广泛使用脆性材料。在冲击或爆破载荷下,这些结构由于由泊松效果正常到这种负载的方向而引起的拉伸菌株而言。辅助材料表现出负泊松比 - 一种可以利用以消除这些拉伸菌株的性质。在该研究中,使用具有周期性边界条件的代表体积元素(RVE)和具有辅助泡沫的砖石壁的边值问题的显式有限元(EFE)建模方法建模套用层嵌入式砌体。面外负载。 rve仅限于面内载荷,因此受到面内剪切和压缩,并且EFE用于评估面外负载下的性能。结果表明,在平面挠曲外,在轴向压缩和面内剪切和面内剪切和平面容量的高度增加。

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