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首页> 外文期刊>International journal of steel structures >Stressed Skin Design Versus Braced Frame Design Through Efficient Numerical Modelling
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Stressed Skin Design Versus Braced Frame Design Through Efficient Numerical Modelling

机译:通过高效数值建模,强调皮肤设计与支撑框架设计

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摘要

Steel frame structures are traditionally designed with bracings that stabilize the main bearing structure. Another approach is to apply the "stressed skin design" where the cladding structure takes the role of the bracings. In this research, the two approaches were analysed and compared in order to find advantages of any. A typical steel frame structure was chosen, and for the cladding, trapezoidal sheet metal was selected. Optional bracings were also considered. All static analyses were done using the finite element method (FEM) and ANSYS Workbench software, including geometric and material nonlinearity. The structure was loaded perpendicularly to its gable, thus simulating typical wind action. Number of fasteners connecting the cladding and the frame is crucial for the "stressed skin design" concept, so this parameter was varied through the analysis. The stiffness of the fastener devices was simulated in two ways: (1) simplified, by merging of the adjacent nodes of the cladding and the frame, and (2) more accurately, using special joint elements with prescribed stiffness. Obtained stresses and deformations were compared, and they showed obvious advantages of the "stressed skin design" over braced frame design, both in structural, and in economical aspect. In addition, important practical guidelines for the "stressed skin design" using FEM were proposed.
机译:钢框架结构传统上设计有稳定主轴承结构的支护。另一种方法是应用“压力皮肤设计”,其中包层结构具有支护的作用。在这项研究中,分析了两种方法,并比较了以找到任何优点。选择典型的钢框架结构,并选择包层,选择梯形金属板。还考虑了可选的护腕。所有静态分析都是使用有限元方法(FEM)和ANSYS工作台软件,包括几何和材料非线性的。该结构垂直于其山墙装载,从而模拟典型的风力作用。连接包层和框架的紧固件数对于“强调皮肤设计”概念至关重要,因此该参数通过分析而变化。通过两种方式模拟紧固件装置的刚度:(1)通过使用具有规定刚度的特殊接合元件来简化(1)通过相邻节点的合并(2)更准确地进行简化。比较了对压力和变形的压力,并且它们在结构和经济方面具有明显的“强调皮肤设计”的优势。此外,提出了使用FEM的“压力皮肤设计”的重要实际指导。

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