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Thermal-Structural Analysis and Thermal Bowing of Double Wythe UHPC Insulated Walls

机译:双层UHPC绝缘墙的热结构分析和热弯曲

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摘要

Ultra-high performance concrete (UHPC) was recently introduced to the precast concrete sandwich panel (CSP) industry, resulting in significantly thinner and lighter panels than those with conventional concrete. As exterior walls, they are expected to endure a wide range of seasonal temperatures, causing thermal bowing. A robust thermal-structural coupled finite element (FE) model, capable of modeling the partial composite action, was developed for the UHPC CSPs to assess their thermal bowing behavior. Three CSP designs, differing mainly in configuration and quantity of shear connectors, have been studied. Thermal loading was introduced by subjecting one surface to a constant room temperature, and the other to a variable temperature range of -50 degrees C to +60 degrees C. The model predictions were validated using panels tested under thermal and structural loading. The analysis revealed that panel deflections increased with the degree of composite action but satisfied serviceability requirements for the full range of temperatures. Cracking of the UHPC wythe occurred when the temperature differential (Delta T) between the two surfaces was equal to or less than-7 degrees C. The maximum tensile stress in the connector was less than 12% of its tensile strength, and occurred in the first connector from the panel end, which is consistent with the maximum relative slip between wythes. (C) 2020 Elsevier B.V. All rights reserved.
机译:超高性能混凝土(UHPC)最近引入了预制混凝土三明治面板(CSP)行业,导致比常规混凝土更薄和更轻的板。作为外墙,预计它们将忍受各种季节性温度,导致热弯曲。强大的热结构耦合有限元(FE)模型,能够为UHPC CSPS开发了模拟部分复合作用,以评估其热弯曲行为。已经研究了三种CSP设计,主要是剪切连接器的配置和数量。通过使一个表面进行一个表面至恒定室温引入热负荷,另一个在-50℃至+ 60℃的可变温度范围内引入。使用在热和结构负载下测试的面板进行验证模型预测。该分析显示,面板偏转随着复合作用的程度而增加,但满足全方温的可用性要求。当两个表面之间的温度差分(ΔT)等于或小于-7摄氏度时,发生UHPC WY的开裂。连接器中的最大拉伸应力小于其拉伸强度的12%,并发生在来自面板端的第一连接器,这与Wythes之间的最大相对滑移一致。 (c)2020 Elsevier B.v.保留所有权利。

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