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Effect of manufacturing procedure on the miniaturized flextensional transducers (Cymbals) and hydrophone array performance

机译:制造过程对小型化败血力传感器(CYMBALS)和水听器阵列性能的影响

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This paper summarizes the effect of manufacturing procedure on the performance of an element as well as an array of cymbal type transducers. A finite element software ATILA, is used to model the cymbal element and optimized the dimension and materials based on the results. A maximum Receiving Sensitivity (RS) of −203 dB re 1V/µPa @ 1m is obtained analytically for a single element with 13mm diameter and a cavity depth of 600 micron and maximum RS of −192 dB re 1V/µPa @ 1m is obtained analytically for a single element with 19mm diameter and a cavity depth of 320 micron. Several prototypes were fabricated and tested the performances in Acoustic Test Facility at NIOT, which is National Accreditation Board of Testing and Calibration of Laboratories (NABL) certified. The RS showed a maximum value of only-182 dB re 1V/µPa @ 1m even with a preamplifier having a gain of 20dB for a 13mm cymbal array (1×5). The experimental results are matching well with modelled results for single elements. But expected array gain as per the numerical calculations were not obtained when connected elements in an array. It has been also observed that the d33 values of cymbal elements in an array should be identical to get the predicted results. Extreme care should be taken to avoid high pressure from acting upon the apex of the end caps during gluing and other stages. Special care in gluing, blanking and forming operations combined with optimum force/torque is necessary in getting good array performance.
机译:本文总结了制造过程对元素性能的影响以及钹式传感器阵列。有限元软件ATILA,用于模拟钹元件并根据结果进行优化尺寸和材料。用于分析直径13mm的单个元件的单个元素和600微米的空腔深度和-192dB的最大rs 1m的单个元素获得的最大接收灵敏度(Rs)。对于具有19mm直径的单个元素和320微米的空腔深度。制作了几种原型并测试了NIOT的声学测试设施中的性能,这是国家认证测试和实验室(NABL)认证的校准。对于具有20dB的增益,对于13mm钹阵列(1×5),RS表示最大值-182dB RE 1V /μPA@ 1m的最大值。实验结果与单一元素的建模结果相匹配。但根据数数值计算的预期阵列增益未在数组中的连接元素时获得。还观察到,阵列中的Cybal元素的D 33 应与获取预测结果相同。应采取极端护理以避免在胶合和其他阶段的端盖的顶盖上作用的高压。在获得良好的阵列性能方面,需要特别小心,结合最佳力/扭矩的形成功能。

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