Multi-size cable sensor device for acoustic suspended sediment detector

The separation and limiting mechanism solves the problem of multi-size cables getting tangled during underwater exploration, achieving stable cable management and reliable signal transmission, and reducing the risk of equipment failure.

CN223911075UActive Publication Date: 2026-02-13CHUZHOU JINGGE INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520677648.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-11
Publication Date
2026-02-13
Estimated Expiration
2035-04-11

AI Technical Summary

Technical Problem

In existing technologies, multi-size cables are prone to tangling during underwater exploration, which affects signal transmission, increases the risk of equipment failure, and requires time and effort to clean up the tangled cables.

Method used

The system employs a separation mechanism, including a first circular plate, a second circular plate, a separator plate, and an arc-shaped seat, combined with a limiting mechanism and connecting ropes, to achieve comprehensive and orderly management of cables of various sizes and prevent tangling.

Benefits of technology

It effectively prevents cable tangling, reduces the risk of equipment failure, improves operating efficiency and maintenance convenience, and ensures signal transmission stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multi-size cable sensor device for an acoustic suspended sediment detector, which relates to the technical field of cable sensor devices and comprises a cable sensor assembly, and one end of the cable sensor assembly is provided with a separation mechanism. According to the utility model, three cables can be limited from multiple dimensions, all-dimensional regular management of the multi-size cables is realized, and the limiting mode effectively prevents mutual winding of the multi-size cable assemblies because once the cables are wound, electromagnetic interference is caused in the signal transmission process, and then signal transmission of the cables is severely influenced. By means of the design, the risk of equipment failures is greatly reduced, meanwhile, the situation that a large amount of time and energy need to be consumed for cleaning the wound cable due to cable winding is avoided, and the operation efficiency and maintenance convenience of equipment are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cable sensor device technical field especially relates to a kind of multi-size cable sensor devices for acoustic suspended sediment detector. BACKGROUND

[0002] From early simple single-beam echo sounder, underwater topography and geomorphology depth is measured using acoustic waves, to the emergence of multi-beam sonar technology, which can measure the three-dimensional structure of underwater topography and geomorphology, acoustic detection technology has made breakthroughs. Based on the principle of acoustic detection equipment gradually becomes the important means of ocean and underwater environment detection, laid the foundation for the development of acoustic suspended sediment detector, also put forward higher requirements for cable sensor device cooperating with it, prompting multi-size cable sensor device to be born, to meet the detection needs of different precision and range.

[0003] But in prior art, in underwater use process, multi-size cable will be intertwined, especially in the case where water flow is strong or the topography of detection area is complex, the condition of cable entanglement is greater, cable entanglement not only can affect signal transmission, but also can cause cable damage, increase the risk of equipment failure, and cleaning entangled cable also needs to consume a lot of time and energy. UTILITY MODEL CONTENT

[0004] The utility model aims at solving the problems of prior art that cable entanglement not only can affect signal transmission, but also can cause cable damage, increase the risk of equipment failure, and cleaning entangled cable also needs to consume a lot of time and energy, and proposes a kind of multi-size cable sensor devices for acoustic suspended sediment detector.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a kind of multi-size cable sensor devices for acoustic suspended sediment detector, including cable sensor component, one end of the cable sensor component is provided with separation mechanism, the separation mechanism includes a circular ring plate and limiting mechanism, the side of the a circular ring plate is provided with a second circular ring plate, the middle of the a circular ring plate and the second circular ring plate are fixedly installed with separation plate, the one end of two groups of separation plates is fixedly installed with three groups of arc-shaped seats.

[0006] Preferably, the limiting mechanism includes six groups of protective boxes, the side of six groups of arc-shaped seats is provided with limiting arc plate, the inside of six groups of protective boxes is fixedly installed with two groups of supporting springs, the inside of six groups of protective boxes is slidably installed with convex push rod.

[0007] Preferably, one end of the first and second circular ring plates are fixedly installed with three groups of first magnetic bases, and the other end of the second circular ring plate is fixedly installed with three groups of second magnetic bases.

[0008] Preferably, one end of the cable sensor assembly is fixedly installed with three groups of threaded rods, and the other end of the first circular ring plate is fixedly installed with three groups of circular seats, and the interiors of the three groups of circular seats are rotatably installed with threaded cylinders.

[0009] Preferably, the interiors of the three groups of first magnetic base protrusions are fixedly installed with connecting ropes, and the other ends of the three groups of connecting ropes are fixedly connected with the interiors of the three groups of second magnetic bases.

[0010] Preferably, the protruding ends of the six groups of convex push rods pass through one end of the six groups of protection boxes and are in contact with the other sides of the six groups of limiting arc plates, one side of three groups of the protection boxes is fixedly connected with one end of the first circular ring plate, and one side of the other three groups of the protection boxes is fixedly connected with one end of the second circular ring plate.

[0011] Preferably, a part of the three groups of threaded rods is inserted into the interiors of the three groups of threaded cylinders, and the three groups of threaded rods are in threaded connection with the three groups of threaded cylinders.

[0012] Compared with the prior art, the utility model has the advantages and positive effects that:

[0013] 1、In the utility model, under the cooperation of the first circular ring plate, the second circular ring plate, the partition plate and the three arc-shaped seats, multiple size cables can be separated, the layout can limit the three cables from multiple dimensions, realize all-dimensional and regular management of the multiple size cables, this limiting mode effectively prevents the mutual entanglement of the multiple size cable assemblies, because once the cables are entangled, electromagnetic interference will occur in the signal transmission process, thereby seriously affecting the signal transmission of the cables, even causing physical damage to the cables due to uneven local stress, and the design greatly reduces the risk of equipment failure, at the same time, the situation that a lot of time and energy is consumed to clean the entangled cables due to the entanglement of the cables is avoided, and the operation efficiency and maintenance convenience of the equipment are improved.

[0014] 2、In the utility model, the setting of the three groups of connecting ropes adds important guarantee for the structural stability of the whole device, the connecting ropes are made of high-strength aramid fiber material and have excellent tensile strength and wear resistance, the two ends of the connecting ropes are reliably connected with the three groups of first magnetic bases and the second magnetic bases, the connecting mode adopts a special metal fastener, and after strict tension test, the firmness of the connection is ensured. DRAWINGS

[0015] Figure 1The utility model provides a kind of acoustic suspended sediment detector's multi-size cable sensor device's three-dimensional structure schematic diagram;

[0016] Figure 2 The utility model provides a kind of acoustic suspended sediment detector's multi-size cable sensor device's partition mechanism's perspective view;

[0017] Figure 3 The utility model provides a kind of acoustic suspended sediment detector's multi-size cable sensor device's part partition mechanism's structure schematic view;

[0018] Figure 4 The utility model provides a kind of acoustic suspended sediment detector's multi-size cable sensor device's protective box's internal structure schematic view;

[0019] Figure 5 The utility model provides a kind of acoustic suspended sediment detector's multi-size cable sensor device's cable sensor assembly and threaded rod's structure schematic view.

[0020] Legend: 1, cable sensor assembly;2, partition mechanism;21, No. 1 annular plate;22, No. 2 annular plate;23, limiting mechanism;231, protective box;232, limiting arc plate;233, support spring;234, convex push rod;25, threaded rod;26, round seat;27, threaded cylinder;28, No. 1 magnet seat;29, partition plate;210, No. 2 magnet seat;211, arc seat;212, connecting rope. DETAILED DESCRIPTION

[0021] In order to more clearly understand the above-mentioned purposes, features and advantages of the utility model, the utility model will be further described below in conjunction with the drawings and examples. It should be noted that the embodiments of the present application and the features in the examples can be combined with each other without conflict.

[0022] In the following description, many specific details are set forth in order to provide a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, therefore, the present application is not limited to the specific embodiments disclosed in the following disclosure.

[0023] Example one: as Figure 1 - Figure 4The utility model provides a kind of multi-size cable sensor device for acoustic suspended sediment detector, including cable sensor component 1, one end of cable sensor component 1 is provided with separation mechanism 2, separation mechanism 2 includes No. 1 annular plate 21 and limiting mechanism 23, one side of No. 1 annular plate 21 is provided with No. 2 annular plate 22, and No. 1 annular plate 21 and No. 2 annular plate 22 are fixedly installed with partition plate 29 in middle, one end of two groups of partition plate 29 is fixedly installed with three groups of arc-shaped seat 211, limiting mechanism 23 includes six groups of protective box 231, one side of six groups of arc-shaped seat 211 is provided with limiting arc plate 232, and the inside of six groups of protective box 231 is fixedly installed with two groups of support spring 233, the inside of six groups of protective box 231 is slidably installed with convex push rod 234, and the protruding end of six groups of convex push rod 234 respectively passes one end of six groups of protective box 231, and respectively with the other side of six groups of limiting arc plate 232 Contact, wherein one side of three groups of protective box 231 is fixed with one end of No. 1 annular plate 21, and one side of other three groups of protective box 231 is fixed with one end of No. 2 annular plate 22.

[0024] The utility model discloses a kind of multi-size cable sensor device for acoustic suspended sediment detector, including cable sensor component 1, one end of cable sensor component 1 is provided with separation mechanism 2, separation mechanism 2 includes No. 1 annular plate 21 and limiting mechanism 23, one side of No. 1 annular plate 21 is provided with No. 2 annular plate 22, and No. 1 annular plate 21 and No. 2 annular plate 22 are fixedly installed with partition plate 29 in middle, one end of two groups of partition plate 29 is fixedly installed with three groups of arc-shaped seat 211, limiting mechanism 23 includes six groups of protective box 231, one side of six groups of arc-shaped seat 211 is provided with limiting arc plate 232, and the inside of six groups of protective box 231 is fixedly installed with two groups of support spring 233, the inside of six groups of protective box 231 is slidably installed with convex push rod 234, and the protruding end of six groups of convex push rod 234 respectively passes one end of six groups of protective box 231, and respectively with the other side of six groups of limiting arc plate 232 Contact, wherein one side of three groups of protective box 231 is fixed with one end of No. 1 annular plate 21, and one side of other three groups of protective box 231 is fixed with one end of No. 2 annular plate 22.

[0025] Under the elastic force of the plurality of sets of supporting springs 233, the whole limiting system is further optimized. The plurality of sets of supporting springs 233 are all made of high-elasticity and corrosion-resistant alloy springs, and the elastic coefficients of the supporting springs 233 are carefully adjusted to maintain stable elastic force output under different environmental temperature and humidity conditions. In the initial state, the supporting springs 233 are in a compressed state and accumulate a certain amount of elastic potential energy. After the device is installed, the plurality of sets of supporting springs 233 will push the six sets of convex push rods 234 to move stably according to the elastic properties of the supporting springs 233. The convex push rods 234 are made of stainless steel and the surface is precisely polished. The connection part between the convex push rods 234 and the supporting springs 233 adopts a riveting and welding combined process to ensure firm connection and prevent loosening during movement. The six sets of convex push rods 234 push the six sets of limiting arc plates 232 to move. The limiting arc plates 232 are made of rubber material with buffering performance. The side in contact with the arc-shaped seat 211 is designed with anti-skid lines to effectively increase the friction until the six sets of limiting arc plates 232 are in close contact with the side walls of the three sets of arc-shaped seats 211, thereby more accurately limiting the cables inside the three sets of arc-shaped seats 211. This design can prevent the cables from moving randomly in the reserved slots inside the partition plate 29, limiting the movement of the cables through multiple lines of defense, further preventing the winding of cables of multiple sizes from the root, and ensuring the stability of the cable operation.

[0026] The cable sensor assembly 1 can measure a variety of physical quantities with high precision, providing reliable data support for industrial production, scientific experiments, etc. that require accurate temperature control. It can integrate multiple sensor functions into one, simultaneously sense multiple physical or chemical quantities, provide comprehensive data for power grid operation state evaluation, has fast response speed, can sense changes in the measured object in real time and quickly transmit signals to the control system. Taking an industrial automatic production line as an example, the cable sensor assembly 1 can monitor the running state of the production equipment in real time. Once an anomaly is found, it can transmit the signal to the controller within a few milliseconds and take timely measures to avoid production accidents.

[0027] Embodiment two: as Figure 1 , Figure 2 , Figure 3 and Figure 5As shown, one end of the first and second circular plates 21 and 22 is fixedly installed with three groups of first magnetic bases 28, and the other end of the second circular plate 22 is fixedly installed with three groups of second magnetic bases 210, wherein the three groups of first magnetic bases 28 are attracted to the three groups of second magnetic bases 210, and the inside of the protruding part of the three groups of first magnetic bases 28 is fixedly installed with connecting ropes 212, the other end of the three groups of connecting ropes 212 is fixedly installed in the inside of the three groups of second magnetic bases 210, one end of the cable sensor assembly 1 is fixedly installed with three groups of threaded rods 25, the other end of the first circular plate 21 is fixedly installed with three groups of circular bases 26, the inside of the three groups of circular bases 26 is rotatably installed with threaded cylinders 27, and a part of the three groups of threaded rods 25 is respectively inserted into the inside of the three groups of threaded cylinders 27, and the three groups of threaded rods 25 are respectively screwed with the three groups of threaded cylinders 27.

[0028] The effect achieved by the whole embodiment is that under the mutual attraction of the three groups of first magnetic bases 28 and the three groups of second magnetic bases 210, the three groups of second magnetic bases 210 respectively adsorb one side of the three groups of first magnetic bases 28, which can fix the second circular plate 22 on the side close to the first circular plate 21;

[0029] By rotating the three groups of threaded cylinders 27 one by one, the three groups of threaded cylinders 27 are respectively screwed on the outer wall of the threaded rods 25 until the three groups of threaded cylinders 27 are respectively separated from the outer wall of the three groups of threaded rods 25, and in the process, the other part of the three groups of threaded cylinders 27 will also rotate in the inside of the three groups of circular bases 26, at this time, the three groups of threaded cylinders 27 drive the first circular plate 21 to move through the three groups of circular bases 26, and then most of the structure of the separation mechanism 2 can be separated from one side of the cable sensor assembly 1, which is convenient for replacing the separation mechanism 2;

[0030] The setting of the three groups of connecting ropes 212 adds an important guarantee for the structural stability of the whole device, the connecting rope 212 adopts high-strength aramid fiber material, has excellent tensile strength and wear resistance, and its two ends are respectively reliably connected with the three groups of first magnetic bases 28 and the second magnetic bases 210, the connection mode adopts a special metal buckle, which has been strictly tested for tensile force to ensure the firmness of the connection, through the connection of the connecting rope 212, the distance between the first and second circular plates 21 and 22 can be accurately limited, and the existence of the connecting rope 212 can always constrain the distance between the first and second circular plates 21 and 22 under various complex working conditions, ensuring that the multi-size cable is always in a stable bound state, and improving the reliability of the device in complex environments.

[0031] The method for using and the working principle of the device are as follows: firstly, according to the design requirements, the cable sensor assembly 1 is correctly installed at the predetermined position, and attention should be paid to avoid mechanical damage and electromagnetic interference of the cable during the installation process, and the cable sensor assembly 1 also needs to be connected with the detector, and in the cooperation of the partition plate 29 and the three groups of arc-shaped seats 211, the three cables are efficiently separated, the partition plate 29 is made of high-strength and flexible engineering plastic material, the reserved groove of the partition plate 29 is designed through accurate size calculation and simulation analysis, the groove wall is smooth and has appropriate friction, which can avoid scratching damage to the cable skin during installation or movement, and the arc-shaped seat 211 is made of light aluminum alloy, the inner wall of the arc-shaped seat 211 is matched with the outer contour of the cable, and the surface is treated by anodizing, which not only enhances the wear resistance, but also effectively prevents the corrosion of corrosive media such as seawater, it should be noted that the number of the reserved groove of the partition plate 29 and the arc-shaped seat 211 can be flexibly replaced according to the actual number of the cable, so that the two can be accurately matched, in actual application, the three cables can be accurately arranged in the reserved groove of the partition plate 29, and the three cables are also arranged in the three groups of arc-shaped seats 211, such layout can limit the three cables from multiple dimensions, realize the all-dimensional and regular management of the multi-size cable assembly, and effectively prevent the mutual entanglement of the multi-size cable assembly.

[0032] The above is only a preferred embodiment of the present application, and is not intended to limit the present application in other forms. Any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields, but any simple modification, equivalent change and modification of the above embodiments without departing from the technical scheme of the present application, according to the technical essence of the present application, still belongs to the protection scope of the present application.

Claims

1. A multi-size cable sensor device for an acoustic suspended sediment profiler, comprising a cable sensor assembly (1), characterized in that: One end of the cable sensor assembly (1) is provided with a separation mechanism (2), the separation mechanism (2) includes a circular ring plate (21) and a limiting mechanism (23), one side of the circular ring plate (21) is provided with a second circular ring plate (22), the middle of the circular ring plate (21) and the second circular ring plate (22) is fixedly installed with a separation plate (29), one end of the two groups of separation plates (29) is fixedly installed with three groups of arc seats (211).

2. A multi-size cable sensor device for an acoustic suspended sediment profiler according to claim 1, characterized in that: The limiting mechanism (23) includes six groups of protection boxes (231), one side of the six groups of arc-shaped seats (211) is provided with a limiting arc plate (232), the inside of the six groups of protection boxes (231) is fixedly installed with two groups of supporting springs (233), the inside of the six groups of protection boxes (231) is slidably installed with a convex push rod (234).

3. A multi-size cable sensor device for an acoustic suspended sediment profiler according to claim 1, characterized in that: One end of the circular ring plate (21) and the second circular ring plate (22) is fixedly installed with three groups of first iron seat (28), the other end of the second circular ring plate (22) is fixedly installed with three groups of second iron seat (210), wherein the three groups of first iron seat (28) are respectively attracted to the three groups of second iron seat (210).

4. The multi-size cable sensor apparatus for an acoustic suspended sediment profiler according to claim 1, wherein: One end of the cable sensor assembly (1) is fixedly installed with three groups of threaded rods (25), the other end of the circular ring plate (21) is fixedly installed with three groups of circular seats (26), the inside of the three groups of circular seats (26) is rotatably installed with a threaded cylinder (27).

5. A multi-size cable sensor device for an acoustic suspended sediment profiler according to claim 3, wherein: The inside of the protruding part of the three groups of first iron seat (28) is fixedly installed with a connecting rope (212), the other end of the three groups of connecting ropes (212) is respectively fixed in the inside of the three groups of second iron seat (210).

6. A multi-size cable sensor device for an acoustic suspended sediment profiler according to claim 2, characterized in that: The protruding end of the six groups of convex push rods (234) respectively passes through one end of the six groups of protection boxes (231), and respectively contacts the other side of the six groups of limiting arc plates (232), wherein one side of the three groups of protection boxes (231) is fixed with one end of the circular ring plate (21), and the other side of the other three groups of protection boxes (231) is fixed with one end of the second circular ring plate (22).

7. A multi-size cable sensor device for an acoustic suspended sediment profiler according to claim 4, characterized in that: Part of the three groups of threaded rods (25) is respectively inserted into the inside of the three groups of threaded cylinders (27), and the three groups of threaded rods (25) are respectively screwed with the three groups of threaded cylinders (27).