Effects of Embedded Expanded Polystyrene Boards on the Hysteretic Behavior of Innovative Precast Braced Concrete Shear Walls

IF 3.1 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Buildings Pub Date : 2023-12-24 DOI:10.3390/buildings14010055
Yachao Tang, Hongnan Li
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Abstract

An innovative type of precast braced concrete shear (PBCS) wall has been tested and verified to have comparable shear resistances relative to conventional cast-in-place reinforced concrete (RC) shear walls. The triangular or rectangular embedded expanded polystyrene (EPS) boards in PBCS wall panels can not only considerably reduce concrete use but also reduce the structural weight. To understand the functions of EPS boards in more depth, this paper investigates the effects of the thickness ratio of different shapes of EPS on the hysteretic behaviors of PBCS walls with various shear span ratios (SSRs). The finite element (FE) models of PBCS walls based on the multi-layer shell element are developed and verified to be sufficiently accurate in comparison with the experimental results. The analysis results indicate that the bearing capacity, lateral stiffness and ductility of PBCS walls show a downward trend with the increase in the thickness ratio of EPS boards. The rectangular EPS board has a more pronounced effect on weight reduction as well as concrete use reduction compared to the triangular EPS board under the same thickness ratio. The formulations regarding the bearing capacity are developed and show good agreement with the numerical results. The thickness ratio limit for PBCS walls to satisfy the ductility requirement is addressed. This investigation not only provides insight into the cyclic behavior of PBCS walls with varied thickness ratios but also demonstrates the potential applicability of PBCS walls in precast concrete (PC) structures for both thermal insulation and earthquake resistance purposes.
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嵌入式膨胀聚苯乙烯板对创新型预制支撑混凝土剪力墙滞回行为的影响
一种创新型预制支撑混凝土剪力墙(PBCS)经过测试验证,与传统的现浇钢筋混凝土(RC)剪力墙相比,具有可比的抗剪性。在 PBCS 墙板中嵌入三角形或矩形发泡聚苯乙烯(EPS)板,不仅可以大大减少混凝土用量,还能减轻结构重量。为了更深入地了解 EPS 板的功能,本文研究了不同形状的 EPS 厚度比对不同剪跨比(SSR)的 PBCS 墙体滞回行为的影响。本文建立了基于多层壳体元素的 PBCS 墙体有限元(FE)模型,并与实验结果进行了对比,验证了模型的足够准确性。分析结果表明,随着 EPS 板厚度比的增加,PBCS 墙体的承载能力、侧向刚度和延展性呈下降趋势。在相同厚度比的情况下,矩形 EPS 板与三角形 EPS 板相比,在减轻重量和减少混凝土用量方面效果更明显。有关承载能力的公式已经制定,并与数值结果显示出良好的一致性。研究还探讨了 PBCS 墙体满足延性要求的厚度比限制。这项研究不仅深入探讨了不同厚度比的 PBCS 墙体的循环行为,还证明了 PBCS 墙体在预制混凝土(PC)结构中的潜在适用性,可用于隔热和抗震目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Buildings
Buildings Multiple-
CiteScore
3.40
自引率
26.30%
发文量
1883
审稿时长
11 weeks
期刊介绍: BUILDINGS content is primarily staff-written and submitted information is evaluated by the editors for its value to the audience. Such information may be used in articles with appropriate attribution to the source. The editorial staff considers information on the following topics: -Issues directed at building owners and facility managers in North America -Issues relevant to existing buildings, including retrofits, maintenance and modernization -Solution-based content, such as tips and tricks -New construction but only with an eye to issues involving maintenance and operation We generally do not review the following topics because these are not relevant to our readers: -Information on the residential market with the exception of multifamily buildings -International news unrelated to the North American market -Real estate market updates or construction updates
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