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首页> 外文期刊>Computer Methods in Applied Mechanics and Engineering >Anisotropic solid-like shells modeled with NURBS-based isogeometric approach: Vibration, buckling, and divergence analyses
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Anisotropic solid-like shells modeled with NURBS-based isogeometric approach: Vibration, buckling, and divergence analyses

机译:使用基于NURBS的等几何方法建模的各向异性固体壳:振动,屈曲和发散分析

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摘要

We proposed an IGA formulation for free vibration, buckling and divergence analyses of generally anisotropic solid-like composite shells. Recently developed Rayleigh-Ritz based methods are not accurate enough for curved shells since they are not able to capture twisting mode shapes. Here, we use the advantages of isogeometric analysis (IGA) and develop a three-dimensional higher-order continuous solid-like shell (SLS) model. Since the continuity of material orientation is crucial in numerical analysis of anisotropic shells, non-uniform rational B-splines (NURBS) are used to establish a smooth interpolation through the thickness and on the middle surface of the shell for both the geometry and displacement fields. The developed isogeometric SLS is coupled with Bezier extraction operators to represent continuity between multi-patch anisotropic domains. Numerical solutions for composite laminated shells with different boundary conditions are compared with analytical solutions or other solutions from the literature. In this context, we study the influence of span-to-thickness ratios, different shapes, modulus ratios, member aspect ratios and various layouts on the mechanical response. With the presented model, we were able to obtain the twisting mode shapes, which are not frequently observed in orthotropic and isotropic ones. We also study the influence of the polynomial order of the IGA formulation on the results. (C) 2019 Elsevier B.V. All rights reserved.
机译:我们提出了一种IGA公式,用于一般各向异性固体状复合材料壳体的自由振动,屈曲和发散分析。最近开发的基于Rayleigh-Ritz的方法对于弯曲的壳体不够精确,因为它们无法捕获扭曲模式形状。在这里,我们利用等几何分析(IGA)的优势,并开发了一个三维高阶连续实心壳(SLS)模型。由于材料定向的连续性在各向异性壳的数值分析中至关重要,因此使用非均匀有理B样条(NURBS)在壳的厚度和中间表面上为几何场和位移场建立平滑插值。所开发的等几何SLS与Bezier提取算符结合在一起,以表示多面体各向异性域之间的连续性。将具有不同边界条件的复合层合壳的数值解与解析解或文献中的其他解进行比较。在这种情况下,我们研究了跨度-厚度比,不同形状,模量比,构件纵横比和各种布局对机械响应的影响。利用提出的模型,我们能够获得扭曲模式形状,这种形状在正交各向异性和各向同性形状中并不常见。我们还研究了IGA公式的多项式阶数对结果的影响。 (C)2019 Elsevier B.V.保留所有权利。

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