CFRP增强木屑-氯氧镁复合材料柱偏心受压性能

IF 7.4 1区 工程技术 Q1 CONSTRUCTION & BUILDING TECHNOLOGY
Peiyang Feng , Huagang Zhang , Qiang Fang , Yuxin Qin , Pan Ning
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引用次数: 0

摘要

木屑-氯氧镁水泥复合材料(SMOCC)是一种新型低碳环保建筑材料。前人的研究表明,SMOCC柱受压性能良好,但偏心率的增加会引起过大的拉应力,导致木屑纤维过早破坏。大量工程应用表明,碳纤维增强聚合物(CFRP)可以有效地改善建筑构件的力学性能。然而,CFRP在SMOCC柱中的适用性和可行性尚未得到探讨。为了弥补这一研究空白,本文对偏心荷载作用下CFRP加固SMOCC柱的工作机理和加固效果进行了研究。通过对16个试件的设计和试验,分析了CFRP条的布置方式和荷载偏心对CFRP条破坏模式、承载能力、延性和应变性能的影响。并建立了SMOCC柱极限承载力的预测模型。试验结果表明,加固技术是有效的,CFRP加固SMOCC柱的承载力和延性比未加固的SMOCC柱分别提高了39.40 %-104.38 %和10.60 %-113.51 %。增强效果随碳纤维布条数的增加而增强。当偏心距从10 mm增加到30 mm时,CFRP加固SMOCC柱的承载力和延性分别略微降低19.99 % ~ 21.24 %和28.63 % ~ 41.46 %,但柱中高侧挠度显著增加26.55 % ~ 61.84 %。SMOCC柱截面内的应变分布呈线性变化,符合弹性弯曲理论。利用所提出的模型预测的结果与试验结果吻合良好,误差在10 %以内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Compression behavior of CFRP strengthened sawdust-magnesium oxychloride composites columns subjected to eccentric loading
Sawdust-magnesium oxychloride cement composites (SMOCC) are new low-carbon and environmentally friendly building material. Previous studies showed that SMOCC columns perform well under compression, but the addition of eccentricity could induce excessive tensile stress, which may cause premature failure to sawdust fibers. Many engineering applications showed that the use of carbon fiber reinforced polymer (CFRP) could effectively improve the mechanical properties of building components. However, the applicability and feasibility of CFRP in SMOCC columns have not been explored. To overcome this research gap, this paper investigates the working mechanism and reinforcement effectiveness of the CFRP strengthened SMOCC columns subjected to eccentric loading. A total of 16 specimens were designed and tested, the investigated parameters include the arrangement modes of CFRP strips and load eccentricity, whose effects on the failure mode, load capacity, ductility and strain behavior are described and discussed. Moreover, the prediction models were proposed to predict the ultimate bearing capacity of the SMOCC columns. The test results indicate that the strengthening technique was effective, particularly as the bearing capacities and ductility of the CFRP strengthened SMOCC columns increased by 39.40 %-104.38 % and 10.60 %-113.51 %, respectively, when compared with those of the un-strengthened SMOCC columns. Moreover, the enhancing effect increased with an increase in the number of the CFRP strips. As the eccentricity was increased from 10 mm to 30 mm, the CFRP strengthened SMOCC column’s bearing capacity and ductility slightly decreased by 19.99 %-21.24 % and 28.63 %-41.46 %, respectively, but the lateral deflection at the mid-height of columns significantly increased by 26.55 %-61.84 %. Strain distributions within the SMOCC column cross section showed linear variation showing compatibility with elastic bending theory. The results predicted using the proposed models showed good agreement with test results, where the errors are within 10 %.
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来源期刊
Construction and Building Materials
Construction and Building Materials 工程技术-材料科学:综合
CiteScore
13.80
自引率
21.60%
发文量
3632
审稿时长
82 days
期刊介绍: Construction and Building Materials offers an international platform for sharing innovative and original research and development in the realm of construction and building materials, along with their practical applications in new projects and repair practices. The journal publishes a diverse array of pioneering research and application papers, detailing laboratory investigations and, to a limited extent, numerical analyses or reports on full-scale projects. Multi-part papers are discouraged. Additionally, Construction and Building Materials features comprehensive case studies and insightful review articles that contribute to new insights in the field. Our focus is on papers related to construction materials, excluding those on structural engineering, geotechnics, and unbound highway layers. Covered materials and technologies encompass cement, concrete reinforcement, bricks and mortars, additives, corrosion technology, ceramics, timber, steel, polymers, glass fibers, recycled materials, bamboo, rammed earth, non-conventional building materials, bituminous materials, and applications in railway materials.
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