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The effect of elevated temperatures on the mechanical properties of laminated bamboo

机译:高温对层压竹材力学性能的影响

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The steady-state test method is employed to determine the stress-strain relationship and reduction factors for the strength and elastic modulus of laminated bamboo in different directions at temperatures from 20 degrees C to 280 degrees C. The experimental results indicate that the compressive stress-strain curves of the laminated bamboo have pronounced elastic deformation stage, plastic deformation stage and descending stage. The compressive strength and elastic modulus of the bamboo in both the flatwise and edgewise directions are similar, and the compressive strength and elastic modulus decrease with increasing temperature from 20 degrees C to 280 degrees C. The tensile stress-strain relationship of the bamboo is generally linear from loading to failure, and the failure is obviously brittle. The tensile strength and elastic modulus of the bamboo in both the flatwise and edgewise directions are similar, and the tensile strength and elastic modulus decrease with increasing temperature. A formula describing the stress-strain relationships of the bamboo is proposed. Compared with the bamboo scrimber and timber specifications in Eurocode 5 and the literature, the reduction factors of laminated bamboo have a similar change tendency with those of the timber addressed in Eurocode 5, but the rules are not fully applicable for laminated bamboo. The formulas for the tensile and compressive strength and elastic modulus reduction factors of the bamboo with temperature are statistically regressed and established. This work provides an important reference to understand and predict the performance of laminated bamboo members in fire conditions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:采用稳态试验方法,确定了温度在20℃至280℃下不同方向的层合竹材的强度和弹性模量的应力应变关系和减小因子。实验结果表明,压应力层压竹材的应变曲线具有明显的弹性变形阶段,塑性变形阶段和下降阶段。竹子在水平方向和边缘方向上的抗压强度和弹性模量相似,并且随着温度从20摄氏度增加到280摄氏度,抗压强度和弹性模量降低。竹子的拉伸应力-应变关系通常为从加载到故障都是线性的,并且故障显然很脆弱。竹子在水平方向和边缘方向上的拉伸强度和弹性模量相似,并且拉伸强度和弹性模量随温度升高而降低。提出了描述竹子应力-应变关系的公式。与欧洲法规5和文献中的竹和木材规格相比,层压竹的还原因子与欧洲法规5中提到的木材的还原因子具有相似的变化趋势,但该规则并不完全适用于层压竹。统计并建立了竹材的拉伸,压缩强度和弹性模量随温度降低的公式。这项工作为理解和预测层压竹构件在火灾条件下的性能提供了重要参考。 (C)2019 Elsevier Ltd.保留所有权利。

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