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Finite element modelling of moisture related and visco-elastic deformations in inhomogeneous timber beams

机译:非均匀木梁中水分相关和粘弹性变形的有限元模拟

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摘要

Wood is a hygro-mechanical, non-isotropic and inhomogeneous material concerning both modulus of elasticity (MOE) and shrinkage properties. In stress calculations associated with ordinary timber design, these matters are often not dealt with properly. The main reason for this is that stress distributions in inhomogeneous glued laminated members (glulam) and in composite beams exposed to combined mechanical action and variable climate conditions are extremely difficult to predict by hand. Several experimental studies of Norway spruce have shown that the longitudinal modulus of elasticity and the longitudinal shrinkage coefficient vary considerably from pith to bark. The question is how much these variations affect the stress distribution in wooden structures exposed to variable moisture climate. The paper presents a finite element implementation of a beam element with the aim of studying how wooden composites behave during both mechanical and environmental load action. The beam element is exposed to both axial and lateral deformation. The material model employed concerns the elastic, shrinkage, mechano-sorption and visco-elastic behaviour of the wood material. It is used here to simulate the behaviour of several simply-supported and continuous composite beams subjected to both mechanical and environmental loading to illustrate the advantages this can provide. The results indicate clearly both the inhomogeneity of the material and the variable moisture action occurring to have had a significant effect on the stress distribution within the cross-section of the products that were studied
机译:木材是一种湿力学,非各向同性和非均质材料,涉及弹性模量(MOE)和收缩特性。在与普通木材设计相关的应力计算中,这些问题通常得不到适当处理。造成这种情况的主要原因是,手工很难预测不均匀胶合层压构件(胶合层)和暴露于组合机械作用和气候条件变化的复合梁中的应力分布。挪威云杉的一些实验研究表明,从髓到树皮,纵向弹性模量和纵向收缩系数差异很大。问题是这些变化对暴露于潮湿气候的木结构中的应力分布有多大影响。本文介绍了梁单元的有限元实现,目的是研究木质复合材料在机械和环境载荷作用下的行为。梁单元承受轴向和横向变形。所使用的材料模型涉及木材的弹性,收缩,机械吸附和粘弹性行为。在这里它被用来模拟承受机械和环境载荷的几个简单支撑的连续组合梁的行为,以说明其可以提供的优势。结果清楚地表明,材料的不均匀性和可变的湿气作用均对所研究产品横截面内的应力分布产生了重大影响。

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