
水下冲击载荷用下复合材料圆柱壳的弹性响应
胡刚义;夏 飞
Elastic responses of laminated composite cylindrical shells exposed to underwater shock loads
研究了平面阶跃冲击波作用下沉浸无限长复合材料圆柱壳的瞬态响应。首先推导了基于Flugge薄壳理论的复合材料圆柱壳的控制运动方程,然后采用反射尾流虚源法建立流体-结构的相互作用,最后采用有限差分法来求解平面冲击波作用下无限长复合材料圆柱壳的控制运动微分方程。详细考察了复合材料纤维方向和壳的半径对复合材料圆柱壳的无因次中面应变、第0阶模态径向位移和第1阶模态径向速度的影响。
The transient dynamic response of a submerged laminated composite cylindrical shell with infinite length subjected to a step plane shock wave is investigated. First, the governing differential equations of motion for laminated composite cylindrical shell are derived on the basis of Flugge thin shell theory. Then, the reflected-afterflow virtual-source technique is used to simulate the fluid-structure interaction. Finally, the center difference method is adopted to compute the transient responses of the composite cylindrical shells under plane shock waves. The influences of fiber angle, and shell radius upon the dimensionless mid-surface strain, 0th mode radial displacement and 1st mode radial velocity of the shells are carried out in detail.
复合材料圆柱壳 / 水下冲击 / 反射尾流虚源法 / 流体-结构相互作用 {{custom_keyword}} /
Composite cylindrical shell / Underwater shock / Reflected-afterflow virtual-source method / Fluid-structure interaction {{custom_keyword}} /
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