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Rotational demand and capacity of conventional single-plate shear connections subjected to gravity loading

机译:承受重力载荷的常规单板剪切连接的旋转需求和承载能力

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摘要

This study aims to investigate the adequacy of the ductility requirement presented in the 15th edition of AISC Steel Construction Manual for conventional single-plate (CSP) connections when the threads of the used bolts are excluded from the shear plane (i.e., using X-bolts). For this purpose, by changing different parameters, 72 specimens were designed in accordance with the AISC Manual. All specimens were analyzed based on finite element (FE) method using ABAQUS software. FE results indicated that the most effective parameters which affect the connection rotational demand are loading type and beam length-to-beam depth ratio while connection rotational capacity is mostly affected by the number of bolts, beam depth and bearing strength of beam web/shear tab. To make a more accurate judgment about connection ductility, first, the existing equation for esti-mating rotational demand, usually leading to a non-conservative prediction, was modified. Then, using the FE results, three predictive models for connection rotational capacity was proposed. Comparing these models showed that the one which was developed on the basis of the artificial neural network is of the highest level of accuracy. Finally, using Monte Carlo method, a reliability analysis was conducted which showed that the ductility requirement of AISC Manual can be too conservative in most cases when the number of bolts exceeds five.
机译:这项研究的目的是调查当剪切螺栓中未使用螺栓的螺纹时(例如,使用X螺栓),在AISC钢结构手册第15版中对常规单板(CSP)连接提出的延性要求是否足够)。为此,通过更改不同的参数,根据AISC手册设计了72个样本。所有样品均使用ABAQUS软件基于有限元(FE)方法进行分析。有限元分析结果表明,影响连接旋转需求的最有效参数是载荷类型和梁的长宽比,而连接旋转能力主要受螺栓数量,梁深度和梁腹板/剪力片承载强度的影响。 。为了对连接延展性做出更准确的判断,首先,修改了现有的用于估计旋转需求的公式,该公式通常会导致非保守的预测。然后,利用有限元结果,提出了三种连接旋转能力的预测模型。比较这些模型表明,在人工神经网络的基础上开发的模型具有最高的准确性。最后,使用蒙特卡洛方法进行了可靠性分析,结果表明,在大多数情况下,螺栓数量超过五个时,AISC手册的延性要求可能会过于保守。

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