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首页> 外文期刊>Journal of Constructional Steel Research >Steel-UHPC-steel sandwich composite beams with novel enhanced C-channel connectors: Tests and analysis
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Steel-UHPC-steel sandwich composite beams with novel enhanced C-channel connectors: Tests and analysis

机译:具有新型增强型C沟道连接器的钢 - UHPC钢夹层复合梁:测试和分析

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New steel-concrete-steel sandwich composite structure using novel enhanced C-channels (ECs) and ultra-high performance concrete (UHPC) was firstly proposed. The ECs offered strong tension separation resistance of face plates from UHPC core as well as face-plate-UHPC interfacial shear resistance. Then, two-point loading tests on nine steel-UHPC-steel sandwich beams with ECs (SUSSB-ECs) were performed to study their ultimate strength behaviour. The studied parameters are thickness of steel faceplate, spacing of ECs, shear span, and strength of core. From the tests, though the shear span had quite significant influences on the ultimate strength of SUSSB-ECs, but all SUSSB-ECs failed in flexure mode even for the SUSSB-EC with short shear span ratio of 2.41, which confirms the bonding efficiency of ECs and high performance of this novel sandwich composite structures. The faceplate thickness exhibited significant, but the spacing of ECs has marginal influences on ultimate strength be haviour of SUSSB-ECs. Besides the tests, theoretical models were also developed to predict the initial stiffness, elastic stiffness, cracking load, yielding load, and ultimate load of the SUSSB-ECs. The validations of the predictions on stiffness and strength show that the developed theoretical models offer reasonable estimations on the stiffness and strength of SUSSB-ECs with limited errors. (C) 2020 Elsevier Ltd. All rights reserved.
机译:新颖的钢 - 混凝土钢夹层复合结构首先提出了采用新型增强型C-通道(ECS)和超高性能混凝土(UHPC)。 ECS从UHPC核心以及面板-UHPC界面剪切抗性提供了面板的强张力分离电阻。然后,进行与ECS(SUSSB-ECS)的九个钢 - UHPC-钢夹层梁的两点加载试验,以研究其最终的强度行为。研究的参数是钢板板的厚度,ECS的间距,剪切跨度和芯的强度。从测试中,剪切跨度对SUSSB-ECS的最终强度产生了非常显着的影响,但即使对于剪切跨度比为2.41的SUSSB-EC,所有SUSSB-EC也都在弯曲模式下失效,这证实了粘接效率ECS和高性能的新夹层复合结构。面板厚度表现出显着性,但ECS的间距对终极强度的影响有边缘影响,对SUSSB-ECS进行了影响。除了测试之外,还开发了理论模型,以预测SussB-ECS的初始刚度,弹性刚度,开裂载荷,产生负荷和最终负荷。对刚度和力量的预测的验证表明,发达的理论模型对Sussb-ECS的刚度和强度具有有限的误差提供了合理的估计。 (c)2020 elestvier有限公司保留所有权利。

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