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Numerical modelling of restrained structural subassemblies of steel beam and CFT columns connected using reverse channels in fire

机译:火灾下反向通道连接的钢梁和CFT柱约束结构子组件的数值模拟

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This paper employs the general finite element software ABAQUS to numerically model the behaviour of restrained structural subassemblies of steel beam to concrete filled tubular (CFT) columns and their joints in fire. The simulations were conducted using 3-D brick elements to enable detailed structural behaviour to be obtained. For validation, this paper compares the simulation and test results for the three fire tests using reverse channel connection recently conducted at the University of Manchester. This comparison demonstrates that the 3-D finite element model is able to successfully simulate the fire tests. Afterwards, the validated finite element model was used to conduct a preliminary numerical study to investigate the feasibility of changing some of the connection details to enhance survivability of the structure in fire. Specifically, this investigation concentrated on developing connection methods to enable catenary action in the connected beam to be more fully developed. An example is to develop a hybrid flush/extended endplate and flexible endplate connection in which the tension part of the connection uses a flush/extended endplate for increased tensile resistance but the compression part of the connection uses a flexible endplate for improved ductility. It has been found that, without additional cost, using a hybrid extended/flexible endplate connection to replace a flush endplate connection has the potential to enable the connected beam to survive significantly increased temperature.
机译:本文使用通用有限元软件ABAQUS对火灾下的钢管混凝土约束柱到钢管混凝土柱及其接缝处的行为进行数值模拟。使用3-D砖单元进行了仿真,以获取详细的结构行为。为了进行验证,本文比较了最近在曼彻斯特大学进行的使用反向通道连接的三个耐火测试的仿真和测试结果。该比较表明3-D有限元模型能够成功地模拟火灾测试。之后,使用经过验证的有限元模型进行了初步的数值研究,以研究更改某些连接细节以增强结构在火灾中的生存能力的可行性。具体而言,这项研究集中于开发连接方法,以使连接梁中的悬链线作用得到更充分的发展。一个示例是开发一种混合的齐平/延伸端板和柔性端板连接,其中连接的受拉部分使用齐平/延伸端板以增加抗拉性,而连接的受压部分使用挠性端板以提高延展性。已经发现,在不增加成本的情况下,使用混合的扩展/柔性端板连接代替平齐的端板连接具有使所连接的梁承受明显升高的温度的潜力。

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