首页> 外文期刊>International journal of structural stability and dynamics >Structural Performance of a Woven-Fabric Reinforced Composite as Applied in Construction of Inflatable Offshore Fender Barrier Structures
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Structural Performance of a Woven-Fabric Reinforced Composite as Applied in Construction of Inflatable Offshore Fender Barrier Structures

机译:机织织物增强复合材料在充气式海上护舷板结构中的结构性能

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This paper investigates the dynamic structural behavior of woven-fabric reinforced composites with high matrix-fabric volume fraction as applied in the construction of crash or security barriers typified by the Inflatable Offshore Fender Barrier Structure (IOFBS). Dynamic analysis of the IOFBS comprising of over 98% of the composite under impact loading was carried out using the finite element method employing the Coupled Eulerian-Lagrangian (CEL) formulation. The barriers were inflated to 6 kPa and 7 kPa initial pneumatic fluid pressures and subjected to crash loadings from a high velocity vessel. The enclosed fluid of the structure was modeled based on the Shomate equation and fluid behavior of water on which the structure floats was modeled using Us-Up Hugoniot equation of state. The barriers' membrane stresses distributions, deformations, internal fluid pressure surge and volume variations of the structures after impact as well as vessel's degree of instability and deceleration after impact for different initial inflation pressures were computed and studied. The developed models and numerical results obtained are useful in assessing the performance of the composite as used in the IOFBS and similar structures and in improving the design of the structure.
机译:本文研究了具有高基质织物体积分数的机织织物增强复合材料的动态结构行为,该结构在以充气式海上护舷板结构(IOFBS)为代表的防撞或安全屏障的构造中的应用。在有限的载荷下,采用耦合欧拉-拉格朗日(CEL)公式对IOFBS进行了动力学分析,其中IOFBS包含98%以上的复合材料。屏障被充气至6 kPa和7 kPa的初始气动流体压力,并承受来自高速容器的碰撞载荷。基于Shomate方程对结构的封闭流体进行建模,并使用Us-Up Hugoniot状态方程对结构漂浮的水的流体行为进行建模。计算和研究了不同初始充气压力下,障碍物的膜应力分布,变形,内部流体压力波动和结构在撞击后的体积变化,以及容器在撞击后的不稳定性和减速程度。所得的开发模型和数值结果可用于评估IOFBS和类似结构中使用的复合材料的性能,并有助于改进结构的设计。

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