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Depth adaptive flexible acoustic transducer

An acoustic transducer, self-adaptive technology, applied in the direction of piezoelectric/electrostrictive transducer microphone, etc., can solve problems such as damage to the transmitting surface of the transducer, achieve enhanced pressure resistance, ensure safety, and structure simple effect

Active Publication Date: 2018-05-04
CHINA SHIP SCIENTIFIC RESEARCH CENTER (THE 702 INSTITUTE OF CHINA SHIPBUILDING INDUSTRY CORPORATION)
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

During the sea trial operation, great attention has been paid to the protection of the transducer. Even so, the tow cable has been hung on the transducer many times, and the transmitting surface of the transducer has been damaged to a certain extent.

Method used

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  • Depth adaptive flexible acoustic transducer

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Embodiment Construction

[0025] The specific implementation manner of the present invention will be described below in conjunction with the accompanying drawings.

[0026] Such as figure 1 , figure 2 and image 3 As shown, the depth self-adaptive telescopic acoustic transducer of the present embodiment includes a submersible 10, a groove is dug on the submersible 10, and a cylinder 4 is installed in the groove, and the cross section of the cylinder 4 is a convex structure. The piston rod 2 is installed in the body 4 through the O-ring 1, and the cross-section of the piston rod 2 is also in a convex shape. A gas compression chamber 7 is formed between the protruding part of the bottom of the piston rod 2 and the inner wall surface of the bottom of the cylinder body 4. The bottom surface of the inner wall step of the cylinder body 4 is provided with a pit, which communicates with the gas compression chamber 7; the bottom end of the piston rod 2 has an air charging and discharging hole 6, and the bott...

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Abstract

The invention discloses a depth adaptive flexible acoustic transducer, comprising a submersible, wherein a groove is dug on the submersible; a cylinder body is mounted in the groove; a section of thecylinder body is a convex structure; a piston rod is mounted in the cylinder body through an O-shaped ring; the section of the piston rod is also the convex structure; a gas compression cavity is formed between a convex part at the bottom of the piston rod and an inner wall surface at the bottom of the cylinder body; a concave pit is set on a bottom surface at a position of a step of the inner wall surface of the cylinder body; the concave pit is communicated with the gas compression cavity; a gas inflation / deflation hole is set at one end of the bottom of the piston rod; a baffle ring is fixed at the very bottom of the cylinder body through a bolt; a communication hole is set in the middle of the piston rod; a watertight cable penetrates the middle of the communication hole; a watertightsocket is mounted at the bottom of the communication hole; and a piezoelectric ceramic module is mounted on the top of the communication hole. Through ingenious design of the cylinder body and the piston rod, the gas compression cavity is formed between a piston and the cylinder body, the movement of the piston is realized under an effect of internal and external pressure difference, and the transducing work of the submersible is realized conveniently.

Description

technical field [0001] The invention relates to the technical field of underwater engineering, in particular to a depth self-adaptive telescopic acoustic transducer. Background technique [0002] Underwater motion platforms such as submersibles and underwater robots maneuver in water to perform tasks such as detection or sampling. Since radio signals will rapidly attenuate in water, and sound waves can travel long distances in water, underwater acoustic equipment that uses sound waves to transmit signals is naturally the choice for underwater platforms to detect and transmit signals. The "Jiaolong" manned submersible and the 4,500-meter manned submersible independently developed by our country have independent acoustic systems equipped with various underwater acoustic equipment for ranging, imaging and communication. [0003] Underwater acoustic equipment is a device that performs a two-way conversion process of "acoustic signal-electrical signal-acoustic signal", and its m...

Claims

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Application Information

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IPC IPC(8): H04R17/02
CPCH04R17/02
Inventor 张伟杨冉冉郑鹏谢飞
Owner CHINA SHIP SCIENTIFIC RESEARCH CENTER (THE 702 INSTITUTE OF CHINA SHIPBUILDING INDUSTRY CORPORATION)
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