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Experimental and analytical studies of curved steel-concrete-steel sandwich panels under patch loads

机译:弯曲荷载作用下弯曲钢-混凝土-钢夹芯板的试验和分析研究

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The paper proposes a novel curved steel-concrete-steel (SCS) sandwich panel for Arctic offshore platform to resist the ice loads due to ice floes in Arctic region. The SCS sandwich panel consists of two curved steel plates infilled with a type of novel ultra-lightweight cement composite (ULCC) with a compressive strength of 60 MPa and a density less than 1400 kg/m~3. Headed shear studs working in pairs with overlapped lengths are used to achieve composite action between the core material and steel face plates. This paper investigates the performance of curved SCS sandwich composite panel experimentally and analytically. Ten quasi-static tests on the curved sandwich composite panels subjected to patch loads are carried out to explore their failure modes, ultimate strength and load-defection behaviour. The main failure modes of the tests are identified as flexural failure, diagonal concrete strut crushing and shear tension failure. Based on the failure mechanism, a unified deep beam model is constructed to estimate the shear resistance of flat and curved SCS sandwich panels by considering equilibrium status, material yielding criteria and boundary conditions. The validations show that the modified model can provide close and conservative estimations on shear resistance for SCS sandwich composite panel.
机译:本文提出了一种新颖的弧形钢-混凝土-钢(SCS)夹芯板,用于北极近海平台,可抵抗北极地区因浮冰引起的冰荷载。 SCS夹心板由两块弯曲的钢板组成,里面填充有一种新型的超轻质水泥复合材料(ULCC),其抗压强度为60 MPa,密度小于1400 kg / m〜3。成对的带头剪切螺柱具有重叠的长度,用于在型芯材料和钢面板之间实现复合作用。本文通过实验和分析研究了弯曲的SCS夹层复合板的性能。对弯曲的夹心复合材料面板进行了十次准静态测试,以研究其破坏模式,极限强度和负载变形行为。测试的主要破坏模式为弯曲破坏,对角混凝土支柱压碎和剪切拉伸破坏。基于破坏机理,构建了统一的深梁模型,通过考虑平衡状态,材料屈服准则和边界条件来估计平面和弯曲SCS夹心板的抗剪强度。验证表明,改进后的模型可以为SCS夹芯复合板的抗剪强度提供紧密而保守的估计。

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