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A Novel Fluid Structure Interaction Experiment to Investigate Deformation of Structural Elements Subjected to Impulsive Loading

机译:一种新型流体结构相互作用实验研究变形的结构元素受到脉冲加载

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摘要

This paper presents a novel experimental methodology for the study of dynamic deformation of structures under underwater impulsive loading. The experimental setup simulates fluid-structure interactions (FSI) encountered in various applications of interest. To generate impulsive loading similar to blast, a specially designed flyer plate impact experiment was designed and implemented. The design is based on scaling analysis to achieve a laboratory scale apparatus that can capture essential features in the deformation and failure of large scale naval structures. In the FSI setup, a water chamber made of a steel tube is incorporated into a gas gun apparatus. A scaled structure is fixed at one end of the steel tube and a water piston seals the other end. A flyer plate impacts the water piston and produces an exponentially decaying pressure history in lieu of explosive detonation. The pressure induced by the flyer plate propagates and imposes an impulse to the structure (panel specimen), which response elicits bubble formation and water cavitations. Calibration experiments and numerical simulations proved the experimental setup to be functional. A 304 stainless steel monolithic plate was tested and analyzed to assess its dynamic deformation behavior under impulsive loading. The experimental diagnostic included measurements of flyer impact velocity, pressure wave history in the water, and full deformation fields by means of shadow moire and high speed photography.
机译:本文提出一种新颖的实验研究方法的动态变形水下脉冲载荷作用下的结构。实验设置模拟流固(FSI)中遇到不同的相互作用感兴趣的应用程序。加载类似爆炸,一个特别设计的实验设计和飞行板的影响实现的。分析实现实验室规模装置可以捕获的基本特征变形和大规模海军的失败结构。由钢管纳入一个气体枪装置。的钢管和水活塞密封另一端。活塞和产生一个指数衰减在代替炸药爆轰压力历史。传单的压力感应板传播和实施一个脉冲结构(面板样品)的反应引发泡沫的形成和水穴蚀现象。标定实验和数值模拟证明了实验的设置功能。304不锈钢整体式板进行了测试和分析来评估其动态变形脉冲载荷作用下的行为。实验诊断包括测量传单的影响速度,压力波在历史水,和完整的变形通过字段阴影云纹和高速摄影。

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