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Experimental and Analytical Study on Creep Characteristics of Box Section Bamboo-Steel Composite Columns under Long-Term Loading

机译:长期装载下箱型竹钢复合柱蠕变特性的实验分析研究

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摘要

To expand the application of bamboo as a building material, a new type of box section composite column that combined bamboo and steel was considered in this paper. The creep characteristics of eight bamboo-steel composite columns with different parameters were tested to evaluate the effects of load level, section size and interface type under long-term loading. Then, the deformation development of the composite column under long-term loading was observed and analyzed. In addition, the creep-time relationship curve and the creep coefficient were created. Furthermore, the creep model of the composite column was proposed based on the relationship between the creep of the composite column and the creep of bamboo, and the calculated value of creep was compared with the experimental value. The experimental results showed that the creep development of the composite column was fast at first, and then became stable after about 90 days. The creep characteristics were mainly affected by long-term load level and section size. The creep coefficient was between 0.160 and 0.190. Moreover, the creep model proposed in this paper was applicable to predict the creep development of bamboo-steel composite columns. The calculation results were in good agreement with the experimental results.
机译:为了扩展竹子作为建筑材料的应用,本文考虑了一种新型的盒段复合柱,竹子和钢组合。测试了八个具有不同参数的竹钢复合柱的蠕变特性,以评估负载水平,截面尺寸和界面类型在长期装载下的影响。然后,观察并分析在长期载荷下的复合柱的变形开发。此外,创建了蠕变时间关系曲线和蠕变系数。此外,基于复合柱的蠕变与竹子的蠕变之间的关系提出了复合柱的蠕变模型,并与实验值进行了比较了蠕变的计算值。实验结果表明,复合塔的蠕变发育首先是快速的,然后在约90天后变得稳定。蠕变特性主要受长期载荷水平和截面尺寸的影响。蠕变系数在0.160和0.190之间。此外,本文提出的蠕变模型适用于预测竹钢复合柱的蠕变开发。计算结果与实验结果吻合良好。

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