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首页> 外文期刊>Journal of structural engineering >Iterative and Simplified Sandwich Beam Theory for Partially Composite Concrete Sandwich Wall Panels_
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Iterative and Simplified Sandwich Beam Theory for Partially Composite Concrete Sandwich Wall Panels_

机译:部分复合混凝土三明治墙板迭代和简化的夹层光束理论

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This paper presents an iterative sandwich beam theory (ISBT) and a simplified version suitable for the design termed simplified sandwich beam theory (SSBT) used to predict the elastic mechanics of partially composite insulated concrete sandwich wall panels (SWPs) under flexural, axial, and thermal loads. These solution methods expand upon closed-form solutions to create a more general analysis technique. Design and analysis of SWPs are handled largely outside of codified documents and are almost exclusively designed such that they will remain within the elastic range. The presented ISBT and SSBT methods have been used in the United States precast industry since 2017 and are implemented in widely available software, LECWall, as of 2020, for predicting elastic deflections and stresses. In this paper, the ISBT and SSBT solution methods are validated with experimental data from the literature and using finite-element analysis. For the ISBT cracking moment and deflection, the measured-to-predicted ratio were 0.99 and 1.0 with coefficients of variation (COVs) of 0.10 and 0.11, respectively. For the SSBT cracking moment and deflection, the measured-to-predicted ratio was 0.99 and 0.99 with COVs of 0.21 and 0.19, respectively. For thermal loading, the ISBT and SSBT deflection m easured-to-predicted ratios were 0.95 and 0.90, respectively. The model was then used to investigate the behavior of sandwich wall panels under varying load combinations and with various section and material properties to demonstrate the robustness of the presented methods.
机译:本文介绍了迭代夹层光束理论(ISBT)和适用于所谓的简化夹层光束理论(SSBT)的简化版本,用于预测弯曲,轴向和热负荷。这些解决方案方法在闭合溶液上扩展以产生更一般的分析技术。 SWP的设计和分析在很大程度上在编纂文件之外处理,几乎完全设计,使得它们将保持在弹性范围内。本尚未发布的ISBT和SSBT方法已在2017年以来的美国预制行业中使用,并以广泛的软件,LECWALL实施,截至2020,用于预测弹性偏转和应力。本文用来自文献的实验数据和使用有限元分析验证了ISBT和SSBT溶液方法。对于ISBT开裂时刻和偏转,测量到预测的比例为0.99和1.0,分别为0.10和0.11的变异系数。对于SSBT开裂时刻和偏转,测量到预测的比率为0.99和0.99,COV分别为0.21和0.19。对于热负荷,ISBT和SSBT偏转M区别为0.95%和0.90。然后使用该模型来研究夹层壁板在不同载荷组合下的行为,以及各种截面和材料特性,以证明所提出的方法的稳健性。

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