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Effects of end distance on thin sheet steel single shear bolted connections at elevated temperatures

机译:高温下端距对薄钢板单剪螺栓连接的影响

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Thin sheet steel (TSS) single shear bolted connections at elevated temperatures were investigated experimentally in this study. The TSS 0.42 mm G550 and 1.90 mm G450 were used to fabricate the connection specimens. The connection specimens were designed with the variation of end distance. The specimens were tested at 5 different nominal temperature levels up to 900 degrees C using the steady state test method. The effects of end distance and temperature on the behaviour of bolted connections were investigated. It was found that the ultimate loads increased with the increment of the end distance up to three times the bolt diameter. Generally, the deteriorations of the connection strengths are in a similar manner to the corresponding material properties at elevated temperatures. The experimental results were compared with the predictions by using the Australian/New Zealand Standard (AS/NZS), European Code (EC3-1.3) and North American Specification (NAS) for cold-formed steel structures. In calculating the nominal strengths of the connections, the reduced material properties of TSS obtained at elevated temperatures were used. Overall, it is shown that the predictions from the AS/NZS, NAS and EC3-1.3 are conservative, with the AS/NZS providing the least conservative and least scattered predictions. However, the reliability analysis showed that the design provisions of the three design specifications are not reliable for the TSS single shear bolted connections in this study, with considerable scope for the development of improved design formulae. Generally, the AS/NZS and NAS could provide accurate predictions of failure modes for TSS connection specimens failed in tearout failure and bearing failure at different temperature levels.
机译:本研究通过实验研究了高温下的薄钢板(TSS)单剪螺栓连接。使用TSS 0.42 mm G550和1.90 mm G450制作连接样品。连接样品的设计是随着末端距离的变化而变化的。使用稳态测试方法在高达900摄氏度的5种不同标称温度水平下对样品进行了测试。研究了端部距离和温度对螺栓连接行为的影响。已经发现,极限载荷随着端部距离的增加而增加,直至螺栓直径的三倍。通常,在高温下,连接强度的降低与相应的材料性能相似。通过使用澳大利亚/新西兰标准(AS / NZS),欧洲规范(EC3-1.3)和北美规范(NAS)对冷弯钢结构的实验结果与预测结果进行了比较。在计算连接的标称强度时,使用了在高温下降低的TSS的材料性能。总的来说,表明来自AS / NZS,NAS和EC3-1.3的预测是保守的,而AS / NZS提供的保守性和分散性最低。但是,可靠性分析表明,在这项研究中,三个设计规范的设计规定对于TSS单剪螺栓连接是不可靠的,在改进设计公式的开发方面具有相当大的范围。通常,AS / NZS和NAS可以为在不同温度水平下撕裂失败和轴承失效的TSS连接试样的失效模式提供准确的预测。

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