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Study of Vibration Behaviour of Stiffened Polymer Composite Shells for Underwater Structural Applications

机译:水下结构应用加强聚合物复合壳的振动特性研究

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This paper presents vibration behavior of ring stiffened polymer composite thick shells used for underwater structures. Filament wound shells stiffened with internal and external rings and with hemispherical ends were tested for vibration in air and water in free-free boundary condition using roving hammer and fixed response method. Modal testing of the shells was performed under hydrostatic loading in a custom designed buckling tester for determining natural frequency at higher sea depths. Accelerometer was mounted on the inner surface of the shell. It was excited using a plumbob, rope and pulley arrangement. Experimental results were validated by modal analysis using Hyperworks and ANSYS. Vibration behavior in water was simulated by Fluid structure interaction approach. Experimental first natural frequency in water was lesser than that in air. With increase in hydrostatic pressure, the shell showed moderate variation in natural frequency. The experimental and numerical results of natural frequency and mode shapes were in good agreement with each other. Natural frequencies were lower in long and thick shells.
机译:本文介绍了用于水下结构的环形加强聚合物复合厚壳的振动行为。使用粗锤和固定响应法在空气和水中振动进行内部和外环和半球末端的灯丝卷绕壳。在定制设计的屈曲测试仪中,在静液压载荷下进行壳体的模态测试,用于确定较高海深的固有频率。加速度计安装在壳体的内表面上。它是使用钢杯,绳索和滑轮布置兴奋的。使用HyperWorks和Ansys的模态分析验证了实验结果。通过流体结构相互作用方法模拟水中的振动行为。实验的第一种自然频率在水中比空气中的较小。随着静水压力的增加,壳体显示出自然频率的中等变化。自然频率和模式形状的实验性和数值结果彼此吻合良好。厚厚的壳体的自然频率较低。

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