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Experimental study into the behaviour of profiled composite walls under combined axial and thermal loadings

机译:组合轴向和热载荷作用下异型复合墙性能的试验研究

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摘要

Profiled composite walls (PCWs) are regularly used in construction because they provide enhanced ductility, shear resistance and damage tolerance when compared to traditional reinforced concrete walls. Although much research has been conducted to understand the structural performance of PCWs at ambient temperature, studies into their performance at high temperatures remain limited. In this work, a comprehensive set of experiments has been conducted to investigate the performance of PCWs at both ambient and elevated temperatures. A heat source comprising of radiant burners and 1MN MTS machine were employed to deliver known and actively controlled thermal and structural boundary conditions on the PCW samples. The experiments were conducted to understand the effects of an incident heat flux when combined with loads. The results from this study have shown that (i) the axial load capacity of PCWs decreases as the temperature increases; (ii) the PCWs tends to exhibit ductile failure modes when cold but brittle failure at high temperature; (iii) due to thermal bowing, the failure plane of the PCWs subjected to one-side heating shifts closer to the heating source; and (iv) applying a load in an eccentric manner can compensate for the effect of temperature gradient.
机译:异型复合墙(PCW)通常用于建筑中,因为与传统的钢筋混凝土墙相比,它们具有增强的延展性,抗剪切性和抗损伤性。尽管已经进行了大量研究以了解PCW在环境温度下的结构性能,但是对其在高温下的性能的研究仍然有限。在这项工作中,已经进行了一套全面的实验,以研究PCW在环境温度和高温下的性能。使用由辐射燃烧器和1MN MTS机器组成的热源在PCW样品上传递已知且受主动控制的热和结构边界条件。进行实验是为了了解与负载结合时入射热通量的影响。这项研究的结果表明:(i)PCW的轴向承载能力随着温度的升高而降低; (ii)PCW在寒冷时往往表现出延性失效模式,而在高温下则表现出脆性失效; (iii)由于热弯曲,承受单侧加热的PCW的破坏平面更靠近热源; (iv)以偏心的方式施加载荷可以补偿温度梯度的影响。

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