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Kinkband formation in wood and fiber composites - morphology and analysis

机译:木材和纤维复合材料中的扭结带形成-形态与分析

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Kinkband formation in wood and in fiber composites display several similarities as well as several dissimilarities. In comparison with wood the morphology of fiber composites is relatively simple and yet, on an overall scale, kinkbands in both kinds of materials look very much like each other. There are, however, important differences between the two, both on a local morphological scale and in terms of the load-displacement characteristics. While carbon fibers break wood fibers buckle, which to some extent explains why the steady state load in wood is closer to the peak load than in fiber composites. Another circumstance which plays an important role in this connection is that wood contains many more and more severe geometric imperfections in the alignment of the fibers, which lowers the peak load and thus brings it closer down to the steady state load, which is known to be independent of the imperfection level. Two methods of analysis are presented here. The first one is a (semi)analytic approach, while the second is a simplified finite element analysis utilizing Bernoulli-Euler beam finite elements to model the fibers in combination with the simplest possible Timoshenko beam elements which model the matrix material. (C) 2002 Elsevier Science Ltd. All rights reserved. [References: 16]
机译:木材和纤维复合材料中的扭结带形成具有若干相似之处和不同之处。与木材相比,纤维复合材料的形态相对简单,但从总体上看,两种材料的扭结带看起来非常相似。但是,无论是在局部形态学规模还是在载荷-位移特性方面,两者之间都存在重要差异。当碳纤维断裂时,木质纤维会弯曲,这在一定程度上解释了为什么木材中的稳态载荷比纤维复合材料中的稳态载荷更接近峰值载荷。在这方面起着重要作用的另一种情况是,木材在纤维排列中包含越来越多的严重几何缺陷,这降低了峰值载荷,从而使峰值载荷更接近稳态载荷,这是众所周知的。与缺陷级别无关。这里介绍两种分析方法。第一个是(半)分析方法,第二个是简化的有限元分析,利用Bernoulli-Euler束有限元对纤维进行建模,并结合最简单的Timoshenko束元对基质材料进行建模。 (C)2002 Elsevier ScienceLtd。保留所有权利。 [参考:16]

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