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Modelling of Glulam beams pre-stressed by compressed wood

机译:压缩木材预应力的胶合木梁的建模

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Finite element models were, in the first time, developed to simulate the pre-stressing behaviour of Glulam beams with insertion of compressed wood blocks, which were further used to simulate the structural behaviour of the pre-stressed beams subjected to subsequent destructive bending. Here, both the Glulam and compressed wood were modelled as orthotropic elasto-viscoplastic materials. The moisture-dependent, including spring back, swelling of the compressed wood block and the creep of the Glulam were considered in the modelling. The models developed were validated against the corresponding experimental results, with reasonably good correlation in terms of the free swelling, the pre camber, initial stress state of the Glulam beams reinforced and load-deflection relationships. With validated models, further studies were then undertaken to investigate effects of the thickness, depth and spacing of compressed wood blocks on the precamber, initial bending stiffness and ultimate load carrying capacity of the beams pre-stressed. The results indicate that there are significant enhancements on the precamber (up to 1/288 of the deflection/span ratio), the initial bending stiffness (up to 23.8%) and the ultimate load carrying capacity (up to 10.4%). (C) 2017 The Authors. Published by Elsevier Ltd.
机译:首次开发了有限元模型来模拟Glulam梁在插入压缩木块的情况下的预应力行为,并进一步用于模拟经受后续破坏性弯曲的预应力梁的结构行为。在这里,将胶合木和压缩木都建模为正交各向异性的弹黏塑性材料。在模型中考虑了与湿度有关的问题,包括回弹,压缩木块的膨胀和胶合木的蠕变。针对相应的实验结果验证了所开发的模型,这些模型在自由膨胀,预弯度,Glulam梁的初始应力状态以及荷载-挠度关系方面具有相当好的相关性。使用经过验证的模型,然后进行了进一步的研究,以研究压缩木块的厚度,深度和间距对预应力板,预应力梁的初始抗弯刚度和最终承载力的影响。结果表明,前腔(最大挠度/跨度比的1/288),初始弯曲刚度(最大23.8%)和极限承载能力(最大10.4%)都有显着提高。 (C)2017作者。由Elsevier Ltd.发布

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