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Modified foundation modelling of dowel embedment in glulam connections

机译:胶合层连接中的榫钉嵌入的改进基础建模

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This paper examines the embedment behaviour of single-dowel connections in Scandinavian Spruce Glulam by means of experimental and numerical investigations. First, the experimental results of a series of single-dowel tests on samples of different geometry and grain directions are presented. The evolution of local strain concentrations around the fastener at increasing levels of bearing deformation, is reported in detail by means of non-contact field strain measurements and its implications are discussed. Detailed Finite Element simulations are also carried out and subsequently employed to highlight the main features of the response of doweled connections in glulam. A foundation model, initially developed for Douglas-fir (Pseudasuga menziesii) timber, is upgraded and adapted for Scandinavian Spruce Glulam (Picea abies) elements subjected to loads acting perpendicular and parallel to the grain direction. The proposed model is based on the definition of equivalent material parameters for the crushing region around the dowel hole. To this end, relationships for the estimation of material characteristics as a function of the crushing volume are suggested. The validity and accuracy of the proposed modified foundation models are examined against the experimental results. It is shown the improved foundation model is able to simulate the embedment stiffness, capacity and inelastic behaviour of single-dowel connections on glulam with reasonable accuracy for strains of up to 8%, and can therefore be used for design and assessment purposes. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文通过实验和数值研究,研究了单销钉连接在斯堪的纳维亚云杉胶合木中的嵌入行为。首先,介绍了对不同几何形状和晶粒方向的样品进行的一系列单销测试的实验结果。通过非接触场应变测量详细报告了紧固件在轴承变形水平增加时局部应变集中的演变,并讨论了其含义。还进行了详细的有限元模拟,随后用于突出胶合木桩中销钉连接响应的主要特征。最初为花旗松(Pseudasuga menziesii)木材开发的基础模型已升级并适用于斯堪的纳维亚云杉胶合木(Picea abies)单元,这些单元承受垂直和平行于谷物方向的载荷。所提出的模型基于销钉孔周围破碎区域的等效材料参数的定义。为此,提出了根据破碎量来估算材料特性的关系。针对实验结果检验了所提出的改进基础模型的有效性和准确性。结果表明,改进的地基模型能够以合理的精度模拟单销钉连接到胶合层上的嵌入刚度,承载力和非弹性行为,适用于高达8%的应变,因此可用于设计和评估目的。 (C)2015 Elsevier Ltd.保留所有权利。

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