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Behaviour of duplex stainless steel bolted connections

机译:双面不锈钢螺栓连接的行为

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This study deals with the behaviour of duplex stainless steel bolted connections. The aim of the study is to respond to the question if the current stainless steel design specifications are able to predict the behaviour of such connections. Firstly, the net cross-section capacity of duplex stainless steel plates subjected to tensile loading are presented. They were conducted to obtain the stress-strain curves and tensile fracture behaviour used to support the finite element (FE) fracture simulations. Secondly, nonlinear FE models are developed for duplex stainless steel bolted connections subjected to tensile loading. The FE models are validated against experimental data in terms of load-displacement curves, failure modes and ultimate loads. Then, a numerical parametric study that consists of 133 duplex stainless steel grade EN 1.4162 bolted connection specimens is carried out. The failure modes of bolted connections are carefully examined, including combined tear out and bearing, bearing and net section, looking at the influence of parameters such as end distance, edge distance and spacing between the bolts in the connections. The results are compared to the design rules prescribed in the current stainless steel design specifications. Generally, it is found that the Australian/New Zealand (AS/NZS), American (SEI/ASCE) Specification and European codes conservatively predict the ultimate strengths of the bolted connections, whereas the strengths predicted by the AS/NZS and SEI/ASCE specifications are overall more accurate and less scattered.
机译:本研究涉及双面不锈钢螺栓连接的行为。该研究的目的是响应问题,如果目前的不锈钢设计规范能够预测这种连接的行为。首先,介绍了经受拉伸荷载荷的双相不锈钢板的净横截面容量。进行它们以获得用于支持有限元(Fe)裂缝模拟的应力 - 应变曲线和拉伸断裂行为。其次,为双相不锈钢螺栓连接开发非线性FE模型,其经受拉伸载荷。在负载 - 位移曲线,故障模式和最终负载方面,FE模型针对实验数据验证。然后,进行由133双相不锈钢级EN 1.4162螺栓连接样品组成的数值参数研究。螺栓连接的故障模式经过仔细检查,包括组合撕裂和轴承,轴承和网段,观察诸如结束距离,边缘距离和连接之间的螺栓之间的间距等参数的影响。结果与当前不锈钢设计规范中规定的设计规则进行了比较。一般来说,澳大利亚/新西兰(AS / NZS),美国(SEI / ASCE)规范和欧洲代码保守预测螺栓连接的最终优势,而AS / NZS和SEI / ASCE预测的优势规格整体更准确,散布较少。

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