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Advanced Layered Composite Structures for Underwater Acoustic Applications

机译:水下声学应用的先进的分层复合结构

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摘要

The detection of underwater objects is one of the most critical technologies, and there have been constant efforts for developing sophisticated sonar systems in naval warfare. Against such efforts, the countermeasure of hiding underwater vehicles, equipment and weapons is another technological challenge. One of the effective countermeasures against sonic detection for the submarines and other underwater objects, such as naval mines, is to employ composite/hybrid materials to prevent ease of detection. Geometrical forms, shapes and layers, along with the tuning of the acoustical impedance, lead to a considerable decrease of the sonar signals via absorption of the sonic waves. In this study, an original and novel design of multi-layered composite/hybrid structure was developed and underwater acoustic testing procedures of reflection, transmission and scattering were applied in 80 kHz-100 kHz frequency range. The findings obtained in this study showed that the multi-layered composite/hybrid materials with porous structure possess much lower values in millivolt than steel plates and might be potential candidates as covering and/or casing materials for underwater mines to reduce the acoustical signature against detection and identification.
机译:水下物体的检测是最关键的技术之一,并且在海军战争中开发复杂的声纳系统是不断的努力。针对这种努力,隐藏水下车辆,设备和武器的对策是另一个技术挑战。针对潜艇和其他水下物体(如海军矿物)的有效对策之一是采用复合材料/混合材料以防止易于检测。几何形式,形状和层以及声学阻抗的调谐,通过吸收声波波的吸收来导致声纳信号的显着降低。在该研究中,开发了一种原创和新颖的多层复合材料/混合结构设计,并在80kHz-100 kHz频率范围内施加了反射,传动和散射的水下声学测试程序。本研究中获得的发现表明,具有多孔结构的多层复合/混合材料比毫伏的值大得多,而不是钢板,并且可能是覆盖和/或水下矿井的壳体材料以减少对抗检测的潜在候选物。和鉴定。

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