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Composite Behavior of Insulated Concrete Sandwich Wall Panels Subjected to Wind Pressure and Suction

机译:保温混凝土夹芯墙板在风压和吸力作用下的复合性能

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摘要

A full-scale experimental test was conducted to analyze the composite behavior of insulated concrete sandwich wall panels (ICSWPs) subjected to wind pressure and suction. The experimental program was composed of three groups of ICSWP specimens, each with a different type of insulation and number of glass-fiber-reinforced polymer (GFRP) shear grids. The degree of composite action of each specimen was analyzed according to the load direction, type of the insulation, and number of GFRP shear grids by comparing the theoretical and experimental values. The failure modes of the ICSWPs were compared to investigate the effect of bonds according to the load direction and type of insulation. Bonds based on insulation absorptiveness were effective to result in the composite behavior of ICSWP under positive loading tests only, while bonds based on insulation surface roughness were effective under both positive and negative loading tests. Therefore, the composite behavior based on surface roughness can be applied to the calculation of the design strength of ICSWPs with continuous GFRP shear connectors.
机译:进行了全面的实验测试,以分析在风压和吸力作用下的绝缘混凝土夹心墙板(ICSWP)的复合性能。实验程序由三组ICSWP标本组成,每组标本具有不同的绝缘类型和数量的玻璃纤维增​​强聚合物(GFRP)剪切网格。通过比较理论值和实验值,根据载荷方向,绝缘类型和GFRP剪切格栅的数量,分析了每个试样的复合作用程度。根据负载方向和绝缘类型,比较了ICSWP的破坏模式,以研究粘结的影响。基于绝缘吸收性的粘结仅在正载荷测试下有效地导致了ICSWP的复合行为,而基于绝缘表面粗糙度的粘结在正载荷和负载荷测试下均有效。因此,可以将基于表面粗糙度的复合行为应用于具有连续GFRP剪切连接器的ICSWP的设计强度计算。

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