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Research on ultimate bearing capacity of trapezium corrugated plate-assemblies arch steel roof

机译:梯形瓦楞纸板组件拱钢屋顶极限承载力研究

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Based on the section-forming characteristics, structure-assembling method and load-bearing mechanism of the trapezium corrugated plate-assemblies arch steel roof, the finite element models for local buckling and overall buckling analysis of the structure with proper boundary conditions were set up. The interactive local buckling modes of the trapezium corrugated sections with different width-to-thickness ratios, the overall buckling modes and the ultimate bearing capacity of the structure subjected to half-span and full-span vertical uniform loads were calculated by the finite element models. And the calculation results were analyzed and compared with those of full-sized structure models tests. It is shown that the ultimate bearing capacity of the trapezium corrugated plate-assemblies arch steel roof depends not only on overall buckling but also on local buckling; primarily depends on overall buckling under full-span vertical uniform loads but primarily depends on distortional buckling under half-span vertical uniform loads. It is also showed that the buckling modes of the structure have significant impact on the ultimate bearing capacity of the structure.
机译:基于梯形瓦楞板组件拱钢屋顶的结构组装方法和承重机构,建立了适当边界条件的局部屈曲和整体屈曲分析的有限元模型。通过有限元模型计算具有不同宽度到厚度比,整体屈曲模式和经过半跨度和全跨度垂直均匀负载的结构的梯形波纹部分的交互式局部屈曲模式。分析了计算结果,与全尺寸结构模型测试的计算结果进行了分析。结果表明,梯形瓦楞纸板组件拱钢屋顶的最终承载力不仅取决于整体屈曲,还取决于局部屈曲;主要取决于全跨度垂直均匀载荷下的整体屈曲,但主要取决于半跨度垂直均匀负载下的扭曲弯曲。还认为,该结构的屈曲模式对结构的最终承载力产生显着影响。

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