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Lightweight steel-concrete-steel sandwich system with J-hook connectors

机译:带J型钩连接器的轻钢-混凝土-钢三明治系统

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This paper investigates a new concept for designing composite structures comprising a lightweight concrete core sandwiched in between two steel plates which are interconnected by J-hook connectors. Specifically, lightweight concrete (density less than 1450 kg/m~3) and novel J-hook connectors have been developed for this purpose. The hook connectors are capable of resisting tension and shear, and their uses are not restricted by the core thickness. Push-out tests confirms that the shear transfer capability of J-hook connector is superior to the conventional headed stud connector in achieving composite action between steel plate and concrete core. Twelve sandwich beam specimens have been tested to evaluate the flexural and shear performance subjected to static point load. Parameters investigated include degree of partial composite, concrete with and without fibres and concrete strength. Using Eurocodes as a basis of design, theoretical model is developed to predict the flexural and shear capacity considering partial composite and enable construction of sandwich structures with J-hook connectors. Compared with test results, the predicted capacity is generally conservative if brittle failure of connectors can be avoided. Test evidence also shows that inclusion of 1% volume fraction of fibres in the concrete core significantly increases the beam flexural capacity as well as its post-peak ductility.
机译:本文研究了一种设计复合结构的新概念,该复合结构包括一个轻质混凝土芯,该混凝土芯夹在两个由J型钩连接器互连的钢板之间。特别是,为此目的开发了轻质混凝土(密度小于1450 kg / m〜3)和新型J型钩连接器。钩形连接器能够抵抗拉力和剪切力,其使用不受芯厚度的限制。推出测试证实,在实现钢板与混凝土芯之间的复合作用方面,J型钩连接器的剪切传递能力优于传统的带头双头螺栓连接器。已经测试了十二个夹层梁样本,以评估承受静点载荷的弯曲和剪切性能。研究的参数包括部分复合材料的程度,有无纤维的混凝土以及混凝土强度。使用Eurocodes作为设计基础,开发了理论模型来预测考虑部分复合的挠曲和剪切能力,并允许使用J型钩形连接器构造夹层结构。与测试结果相比,如果可以避免连接器发生脆性故障,则预测容量通常是保守的。测试证据还表明,在混凝土芯中包含1%体积分数的纤维会显着提高梁的抗弯能力以及其峰后延性。

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