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首页> 外文期刊>Journal of Materials Processing Technology >Finite element modelling of the semi-rigid behaviour of pultruded FRP connections
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Finite element modelling of the semi-rigid behaviour of pultruded FRP connections

机译:拉挤FRP连接的半刚性行为的有限元建模

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摘要

For many years, the deterioration and corrosion of ferrous materials have been identified as a major problem in Civil Engineering structures. Significant developments in material technology have made it possible to use alternative non-corroding materials such as pultruded fibre reinforced plastics (PFRPs) in construction. In order to improve the design efficiency of PFRP frame structures, the use of semi-rigid design techniques is recommended.The semi-rigid response of a frame connection is characterised by its moment-rotation curve. It is possible to determine the moment-rotation for any configuration by means of experimental testing, but this can be both time-consuming and expensive. An alternative method is to use numerical modelling techniques to analyse the connection behaviour.A two-dimensional finite element model of a PFRP semi-rigid connection is presented. A number of factors, which have a significant effect on the behaviour of the joint, are discussed. These include the modelling of the bolted assembly, the application of prestressing forces and the interface modelling of the contacting surfaces. Results from the finite element investigation compare favourably with measured data from experimental testing.
机译:多年来,铁质材料的劣化和腐蚀已被视为土木工程结构中的主要问题。材料技术的重大发展使得在建筑中使用替代的非腐蚀材料成为可能,例如拉挤纤维增强塑料(PFRP)。为了提高PFRP框架结构的设计效率,建议采用半刚性设计技术。框架连接的半刚性响应以其弯矩-转弯曲线为特征。可以通过实验测试确定任何配置的力矩旋转,但这既耗时又昂贵。一种替代方法是使用数值建模技术来分析连接行为。提出了PFRP半刚性连接的二维有限元模型。讨论了对关节行为有重要影响的许多因素。这些包括螺栓组件的建模,预应力的施加以及接触表面的界面建模。有限元研究的结果与实验测试的测量结果相比具有优势。

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