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Design of lightweight concrete slabs under two-way shear without shear reinforcements: A comparative study and a new formula

机译:双向剪切下轻型混凝土板设计无剪切增强剂:比较研究和新的公式

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Developing design models that are accurate compared to experimentally measured strength, yet physically sound, continues to be the ultimate research goal. For this purpose, the two-way shear design provisions of the American design codes have been updated. While that of the European design codes are being investigated. The two-way shear failure of slabs is a sudden one, which can be catastrophic. In addition, lightweight concrete (LWC) is gaining a lot of attention due to its economic advantage, however, very limited studies focus on investigating LWC slabs under two-way shear loading. The purpose of this study is to examine existing design codes and ongoing proposals for the case of LWC slabs under two-way shear. A comprehensive literature review of the available two-way shear testing for LWC slabs was conducted. An extensive database with a total of 129 tested LWC slabs was compiled. Selected design codes were used to calculate the two-way shear strength of the tested slabs. The Strength ratio (SR) was compared for selected codes, which is calculated as the ratio between the experimentally measured strength and that calculated using different design codes. In addition, the effect of various parameters on the SR was assessed. Concluding remarks were outlined and discussed. Moreover, a design formula for LWC slabs under two-way shear, which is physically sound and simple was developed and validated using experimental results. It was found to be more accurate, and more consistent compared to existing design codes with regard to experimentally measured strength. It is worth noting, that the investigated draft of the Eurocode is not final. However, these findings could help develop future design provisions for two-way shear of LWC slabs, which have to be physically sound, more consistent, and more accurate compared to existing one.
机译:与实验测量的强度相比,开发精确的设计模型,但身体声音,仍然是最终的研究目标。为此目的,已更新美国设计代码的双向剪切设计规定。虽然正在调查欧洲设计代码。板坯的双向剪切失败是突然的,这可能是灾难性的。此外,轻质混凝土(LWC)由于其经济优势而受到很大的关注,然而,非常有限的研究专注于在双向剪切装载下调查LWC板。本研究的目的是在双向剪切下检查现有的设计代码和LWC板的情况的持续提案。对LWC板坯的可用双向剪切测试进行了全面的文献综述。编译了一个具有总共129个测试的LWC板块的广泛数据库。所选设计代码用于计算测试板的双向剪切强度。比较强度比(SR)以选择代码,其计算为实验测量强度与使用不同设计码计算的比率。此外,评估各种参数对SR的影响。概述并讨论了结论性言论。此外,使用实验结果开发并验证了双向剪切下的LWC板的设计配方,并使用实验结果进行验证。与实验测量的强度相比,与现有的设计码相比,被发现更准确,更一致。值得注意的是,欧元建的调查草案不是最终的。然而,这些发现可能有助于为LWC板坯的双向剪切开发未来的设计规定,与现有的剪切必须是物理声音,更加一致,更准确,更准确,更准确。

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