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Experimental and numerical study of S700 high strength steel double shear bolted connections in tension

机译:S700高强度钢双剪切螺栓连接张力实验和数值研究

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This paper presents a thorough experimental and numerical study of the structural behaviour and resistance of S700 high strength steel double shear bolted connections subjected to tension. A total of 38 S700 high strength steel double shear bolted connections were adopted in the tests, and included seven 1-bolt connections (with each containing one bolt), ten 2-pe-bolt connections (with each containing two bolts arranged perpendicular to the load transfer direction), eight 2-pa-bolt connections (with each containing two bolts arranged parallel to the load transfer direction) and thirteen 4-bolt connections (with each containing four bolts arranged in two rows). The specimens were carefully designed with a series of geometric parameters, including the end distance, the edge distance, the longitudinal spacing and the transverse spacing, varied and examined. The test setup, pro-cedures and key results, including the failure loads and modes as well as the load-elongation curves, were fully reported. Two types of failure modes, namely net section fracture and bearing failure, were observed from the tests, with their underlying mechanisms discussed. The effects of various geometric parameters on the failure loads and modes of the S700 high strength steel double shear bolted connection specimens were studied. It was generally found that the net section fracture behaviour and resistance are sensitive to the edge distance and transverse spacing, while the bearing behaviour and resistance are more dependent on the end distance and longitudinal spacing. The experimental programme was supplemented by a numerical modelling programme, where finite element models were initially developed and validated against the test results, and then used for conducting parametric studies to generate further numerical data over a wide range of geometric dimensions. The experimentally and numerically obtained failure loads and modes were then adopted to assess the accuracy of the relevant design rules for high strength steel double shear bolted connections in tension, as given in the European code, American specification and Australian standard. The results of the assessment revealed that (i) the American specification yields the most accurate failure load predictions on average, but with many over predicted failure loads and inaccurate failure mode predictions, (ii) the Australian standard leads to less accurate but more consistent and safe predictions of failure load than the American specification, and (iii) the European code results in the most conservative and scattered failure load predictions among the three considered design codes, but with the best failure mode predictions. The development of improved design approaches for S700 high strength steel double shear bolted connections is underway.
机译:本文介绍了S700高强度钢双剪切螺栓连接的结构行为和电阻的彻底实验和数值研究。在测试中采用了总共38个S700高强度钢双剪切螺栓连接,包括七个1螺栓连接(每个包含一个螺栓),10个2 PE螺栓连接(每个螺栓连接(每个包含垂直于垂直排列的两个螺栓)载荷转移方向),八个2-PA螺栓连接(每个包含平行于负载转移方向平行的两个螺栓)和13个4螺栓连接(每个包含以两排布置的四个螺栓)。仔细设计了一系列几何参数,包括结束距离,边缘距离,纵向间隔和横向间隔,改变和检查。报告了测试设置,Pro-CEDURE和键结果,包括故障负载和模式以及负载伸长曲线。从测试中观察到两种类型的故障模式,即净骨折和轴承失效,其潜在的机制讨论。研究了各种几何参数对S700高强度钢双剪切螺栓连接样品的故障载荷和模式的影响。通常发现网段断裂行为和电阻对边缘距离和横向间隔敏感,而轴承行为和电阻更加依赖于端距和纵向间隔。实验程序由数值建模程序补充,其中最初开发有限元模型并针对测试结果验证,然后用于进行参数化研究以在各种几何尺寸上产生进一步的数值数据。然后采用实验和数值获得的故障载荷和模式来评估高强度钢双剪切螺栓连接中的相关设计规则的准确性,欧洲代码,美国规格和澳大利亚标准。评估结果揭示了(i)美国规范平均产生最准确的故障负荷预测,但随着许多预测失败负载和不准确的故障模式预测,(ii)澳大利亚标准导致更准确但更加一致,更加一致安全预测失败负载高于美国规范,(iii)欧洲代码导致三个考虑的设计代码中最保守和分散的故障负载预测,但最坏的失效模式预测。正在进行改进的S700高强度钢双剪切螺栓连接的改进设计方法。

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