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Development of Anti-Cavitation Hydrophone-Study on the Novel Hydrophone with New Cap Structure Titanium Front Plate

机译:新型盖结构钛前板新型水听器的抗气蚀水听器研究

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We had been developing the anti-cavitation hydrophone by deposition of hydrothermally synthesized lead zirconate titanate poly-crystalline film on the reverse side of the titanium front plate without damage even by measurement in high intensity ultrasound field with inertial acoustic cavitation. In this hydrophone, when exposed to a powerful ultrasonic sound field of an ultrasonic cleaner in which acoustic cavitation occurs, the front plate, the back plate and the outer conductor which had been adhered with the adhesive peeled off and broke. We have to re-design the basic structure of the robust type anti-cavitation hydrophone to solve this problem. In this study, we made a new type of hydrophone with a front plate and an outer conductor set in by changing the structure of the front plate. This new hydrophone showed durability that does not break even when it is exposed to a high intensity ultrasound sound field in a tank of an ultrasonic cleaner in which acoustic cavitation is occurring. Durability test in the water tank of ultrasound cleaner, the new anti-cavitation hydrophone had no significant decrease in sensitivity even after 14 hours of ultrasound exposure.
机译:我们已经通过在钛前面板的背面沉积热液合成的锆钛酸铅钛酸盐多晶膜而不会造成损坏的抗气蚀水听器,即使在惯性声空化条件下在高强度超声场中进行测量也是如此。在该水听器中,当暴露于发生声空化的超声波清洁器的强力超声波场中时,已经用粘合剂粘附的前板,后板和外导体剥落并破裂。我们必须重新设计坚固型防气蚀水听器的基本结构,以解决此问题。在这项研究中,我们通过改变前面板的结构制作了一种新型的水听器,该水听器具有前面板和外导体。这种新的水听器显示出耐用性,即使将其暴露在发生声空化的超声清洁器的水箱中的高强度超声声场下也不会破裂。新型抗气蚀水听器在超声波清洁器水箱中进行了耐久性测试,即使在超声波暴露14小时后,其灵敏度也没有显着降低。

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