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Behaviour and design of Grade 10.9 high-strength bolts under combined actions

机译:组合行动下10级高强度螺栓的行为与设计

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摘要

The use of high-strength steel and concrete in the construction industry has been gaining increasing attention over the past few decades. With it comes the need to utilise high-strength structural bolts to ensure the design load to be transferred safely through joint regions, where the space is limited due to the reduced structural dimensions. However, research on the behaviour of high-strength structural bolts under various loading combinations is still insufficient. Most of the current design specifications concerning high-strength structural bolts were established based on a very limited set of experimental results. Moreover, as experimental programs normally include limited design parameters for investigation, finite element analysis has become one of the effective methods to assist the understanding of the behaviour of structural components. An accurate and simple full-range stress-strain model for high-strength structural bolts under different loading combinations was therefore developed, where the effects of bolt fracture was included. The ultimate strength capacities of various structural bolts obtained from the present experimental program were compared with the existing design provisions. Furthermore, design recommendations concerning the pure shear and tension, as well as combined shear and tension resistance of Grade 10.9 high-strength structural bolts were provided.
机译:在过去的几十年里,在建筑业的高强度钢和混凝土的使用在过去几十年里一直在增加。有需要利用高强度结构螺栓来确保要通过接头区域安全地转移的设计负荷,其中空间由于结构尺寸减小而受到限制。然而,对各种装载组合下的高强度结构螺栓的行为的研究仍然不足。基于一组非常有限的实验结果,建立了大多数关于高强度结构螺栓的设计规范。此外,由于实验程序通常包括用于调查的有限设计参数,有限元分析已成为帮助理解结构部件行为的有效方法之一。因此开发了一种精确而简单的全范围应力 - 应变模型,用于不同装载组合下的高强度结构螺栓,其中包括螺栓骨折的影响。与现有的设计规定相比,从本实验计划获得的各种结构螺栓的最终强度容量。此外,提供了关于纯剪切和张力的设计建议,以及10.9级高强度结构螺栓的组合剪切和张力阻力。

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