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Higher-order modeling of anisogrid composite lattice structures with complex geometries

机译:复杂几何形状的anisogrid复合晶格结构的高阶建模

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The work investigates the vibration behaviour of anisogrid composite lattice shell structures, typically formed by a system of geodesic unidirectional composite ribs. A homogenization approach is here embedded within an Equivalent Single Layer (ESL) formulation for doubly-curved shells, accounting for the geometric contribution of cell patterns. The lattice shells are modelled as anisotropic homogenized continuous structures characterized by effective stiffness parameters. The governing equations of motion are derived using the Higher-order Shear Deformation Theories (HSDTs) of shells, whereas the Generalized Differential Quadrature (GDQ) method is applied to determine the fundamental frequencies with a reduced computational effort. A piecewise field variable assumption is considered for a proper description of zigzag interfacial effects between the lattice core and the external skins. The reliability and efficiency of the proposed numerical strategy is verified by comparison with finite element-based predictions. A systematic analysis aims at studying the effect of different geometric and stiffness parameters, e.g. the number of ribs, their cross-sectional dimensions, orientation and spacing, on the magnitude of the fundamental frequencies for some lattice structural members that could be of great interest for design purposes in the aerospace or automotive engineering practice.
机译:工作调查anisogrid复合网壳结构的振动特性,典型地通过测地单向复合肋的系统形成。甲均质化的方法是在这里嵌入等效的单层内(ESL)制剂双弯曲弹,占单元图形的几何贡献。晶格壳被建模为,其特征在于有效刚度参数各向异性匀浆连续结构。运动的控制方程使用派生壳的高阶剪切变形理论(HSDTs),而被施加到确定具有减小的计算工作量的基本频率的广义差分正交(GDQ)方法。分段字段变量假设被认为是晶格核心和外部蒙皮之间锯齿状界面效应的适当的描述。所提出的数值策略的可靠性和效率是通过用基于有限元的预测比较验证。系统分析旨在研究不同的几何和刚度参数的影响,例如肋的数量,它们的横截面尺寸,朝向和间距,在基频的一些晶格结构构件,可能是出于设计目的在航空航天和汽车工程实践的极大兴趣的大小。

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