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Experimental and numerical study of frictional effects on block shear fracture of steel gusset plates with bolted connections

机译:摩擦对螺栓连接钢板扣板整体剪切断裂的影响的实验与数值研究

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In this paper, an experimental and a numerical study has been conducted to get information about the effects of slip-critical connections in gusset plates of bolted steel tensile members. To this end, a total of 28 double gusset plates were subjected to tensile loading in seven groups, while the parameters such as the properties of specimen materials, number of bolts, amount of frictional coefficient and the type of connections were selected as experimental variables. A 3D non-linear finite element analysis was done to determine the distribution of tension and shear stresses at different times of tensile loading, showing good agreements with the results of the experiment. The results of the experimental tests and the finite element analysis showed that frictional force due to a pre-tightening force of slip-critical connections could have a significant effect on the capacity response and fracture behaviour of gusset plates under tensile loading with block shear fracture. Therefore, increasing frictional coefficient, reduction of thickness, and the resistance of specimen materials, increased the effect of frictional force on them. On the other hand, in order to evaluate the proposed equations of AISC 2016 and CSA2009 standards, as well as the proposed equations of Topkaya, C. (2004) [13] and Teh and Uz (2015) [14], for predicting the strength of block shear fracture, a comparison was done between the strengths obtained from the predictions of their equations and the strength obtained from laboratory tests. With this comparison, it was found that AISC 2016 and CSA2009 standards have the most conservative and non-conservative forecasts in the proposed equations. In addition, by changing the effective shear stress in the proposed equation of Teh and Uz (2015), from the value of 0.6F(u) to Fu/root 3, more precise predictions are provided in comparison to other equations studied in this paper, in which the main reason for its precision is better observation of the shear contribution, because this equation uses active shear planes instead of net or gross shear planes.
机译:在本文中,进行了一项实验和数值研究,以获取有关螺栓连接的钢制抗拉构件的角撑板中的滑移临界连接的影响的信息。为此,总共对28个双角撑板进行了7组拉伸载荷,同时选择了诸如试样材料的特性,螺栓数量,摩擦系数的大小和连接类型等参数作为实验变量。进行了3D非线性有限元分析,确定了拉伸载荷在不同时间的拉伸应力和剪应力的分布,与实验结果吻合良好。实验测试和有限元分析的结果表明,由于滑动临界连接的预紧力而产生的摩擦力可能会对在承受块状剪切断裂的拉力作用下的角撑板的能力响应和断裂行为产生重大影响。因此,增加摩擦系数,减小厚度和减小试样材料的阻力,增加了摩擦力对其的影响。另一方面,为了评估AISC 2016和CSA2009标准的建议方程,以及Topkaya,C.(2004)[13]和Teh和Uz(2015)[14]的建议方程,以预测块体剪切断裂的强度,从他们的方程的预测获得的强度和从实验室测试获得的强度之间进行了比较。通过比较,发现AISC 2016和CSA2009标准在所提出的方程式中具有最保守和非保守的预测。此外,通过将拟议的Teh和Uz(2015)方程中的有效剪应力从0.6F(u)的值更改为Fu / root 3,与本文研究的其他方程相比,提供了更精确的预测,其精确度的主要原因是更好地观察剪切贡献,因为该方程式使用活动剪切平面而不是净剪切平面或总剪切平面。

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