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首页> 外文期刊>KSCE journal of civil engineering >Numerical Study on Failure of Thin Composite Conoidal Shell Roofs Considering Geometric Nonlinearity
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Numerical Study on Failure of Thin Composite Conoidal Shell Roofs Considering Geometric Nonlinearity

机译:考虑几何非线性的复合圆锥壳薄壁屋顶破坏的数值研究

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摘要

Thin laminated composite conoidal shell roofs are popular among civil engineers due to its stiff, singly ruled and aesthetically appealing geometry. Such surfaces may undergo large displacements under transverse static overloading. Since no researchers reported failure of laminated conoids using nonlinear strains the authors aim to fill the void in the literature. A finite element code is proposed considering von-Karman nonlinearity. The study of linear and nonlinear failure loads clearly indicates that the linear formulation wrongly overestimates the failure loads and hence, not acceptable from practical engineering standpoint. Moreover, displacements at failure, the coordinate locations from where the failure initiates and the lamina stress initiating failure in the shell are also studied.
机译:薄层压复合圆锥壳屋顶由于其坚硬,单一规则和美观的几何形状而受到土木工程师的欢迎。在横向静态过载下,此类表面可能会发生较大的位移。由于没有研究人员报道使用非线性应变使叠层圆锥体失效,因此作者试图填补文献中的空白。考虑von-Karman非线性,提出了一种有限元编码。对线性和非线性破坏载荷的研究清楚地表明,线性公式错误地高估了破坏载荷,因此从实际工程的角度来看是不可接受的。此外,还研究了破坏时的位移,破坏发生的坐标位置以及壳中层板应力引发的破坏。

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