复合材料夹层结构声窗传声损失的预测与测量

IF 0.3 4区 工程技术 Q4 ACOUSTICS
C. M. Lee, K. Jeon, B. Jung, Y. M. Lee, M. Kang
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引用次数: 0

摘要

水声探测传感器安装在潜艇的外部;保护这些传感器的声窗必须在结构上坚固耐用,同时最大限度地减少传感器声音检测性能的恶化。复合材料与声窗材料通常同时满足这两个条件。然而,由于这种复合材料是通过层压纤维制造的,因此由于制造工艺错误,有可能发生脱层,其中内部形成空气层。声窗内部的分层会降低传感器的声学性能,导致军事行动失败。当复合材料由位于中心部位的夹层结构组成时,其内部分层的可能性高于单一复合材料。因此,在产生声窗后,区分内部分层的存在与否是非常重要的。本文采用数值方法和解析方法对夹层结构声窗的内部分层进行了研究。并通过超声测量和声透射损耗试验对结果进行了分析比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prediction and measurement of acoustic transmission loss of acoustic window with composite sandwich structure
Underwater acoustic detection sensors are mounted on the outside of the submarine; the acoustic window for protecting these sensors must be structurally robust while also minimizing any deterioration of sensor's sound detection performance. These two conditions are typically satisfied simultaneously by using composite materials with acoustic window materials. However, since such composite material is manufactured by laminating fibers, there is the probability that delamination occurs, in which an air layer is formed inside, due to manufacturing process errors. Delamination inside the acoustic window degrades the sensor's acoustic performance and results in a failure of military operations. In the case of composites composed of sandwich structures located in the central part, the possibility of internal delamination is higher than in a single composite material. Therefore, it is very important to discriminate the presence or absence of internal delamination after producing an acoustic window. This article uses numerical and analytical methods to determine the internal delamination of the acoustic window fabricated with a sandwich structure. In addition, the results were analyzed and compared through ultrasonic measurement and acoustic transmission loss test.
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来源期刊
Noise Control Engineering Journal
Noise Control Engineering Journal 工程技术-工程:综合
CiteScore
0.90
自引率
25.00%
发文量
37
审稿时长
3 months
期刊介绍: NCEJ is the pre-eminent academic journal of noise control. It is the International Journal of the Institute of Noise Control Engineering of the USA. It is also produced with the participation and assistance of the Korean Society of Noise and Vibration Engineering (KSNVE). NCEJ reaches noise control professionals around the world, covering over 50 national noise control societies and institutes. INCE encourages you to submit your next paper to NCEJ. Choosing NCEJ: Provides the opportunity to reach a global audience of NCE professionals, academics, and students; Enhances the prestige of your work; Validates your work by formal peer review.
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