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Development of innovative hybrid sandwich panel slabs: Experimental results

机译:创新型混合夹心板的开发:实验结果

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In this paper, a new generation of composite sandwich slab is proposed as a solution for the rehabilitation of slabs in old masonry buildings. An innovative solution was developed during this research formed by four components: a Deflection Hardening Cement Composite (DHCC) layer on the top compression skin, a glass fiber reinforced polymer (GFRP) skin at the bottom tension surface, GFRP ribs to transfer shear from top to bottom layers, and foam core for thermal-insolation purposes. The DHCC layer contributes significantly for the load carrying and deflection capacity due to its stiffness, compressive strength and toughness, offers resistance to the occurrence of buckling phenomena in the GFRP ribs, improves the performance of this structural concept against impact and fire, and constitutes an excellent medium for the application of finishing materials, like ceramics or timber. Two different hybrid composite slabs were developed and tested, and their behavior was assessed under flexural loading. The results showed that the developed hybrid sandwich slabs accomplish all design requisites for serviceability and ultimate limit states, and assure a stiffness/dead-weight and load-capacity/dead-weight ratios much higher than conventional structural slab systems. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文提出了一种新型的复合夹芯板作为解决旧砌体建筑板修复的解决方案。在此研究过程中,开发了一种创新的解决方案,该解决方案由四个部分组成:顶部压缩蒙皮上的挠曲硬化水泥复合材料(DHCC)层,底部受拉表面上的玻璃纤维增​​强聚合物(GFRP)蒙皮,用于从顶部传递剪切力的GFRP筋底层,以及用于隔热的泡沫芯。 DHCC层的刚度,抗压强度和韧性极大地提高了其承载能力和挠曲能力,可抵抗GFRP筋中屈曲现象的发生,改善了这种结构概念的抗冲击和防火性能,并构成了一种极好的介质,可用于陶瓷或木材等饰面材料。开发并测试了两种不同的混合复合板,并在弯曲载荷下评估了它们的行为。结果表明,开发的混合夹心板满足了使用性和极限极限状态的所有设计要求,并确保其刚度/静重比和负载能力/静重比比常规结构平板系统高得多。 (C)2015 Elsevier Ltd.保留所有权利。

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