A salvage plate structure for an active water rescue robot

By installing a protective strip at the front end of the retrieval board and securing it with connecting components and positioning pins, the problem of secondary injury caused by the retrieval board to the person falling into the water is solved, achieving a safe and efficient rescue process.

CN224277518UActive Publication Date: 2026-05-26ZHENGZHOU BEIDOU COMM TECH
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHENGZHOU BEIDOU COMM TECH
Filing Date
2025-05-30
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The retrieval board of existing water rescue robots can easily cause secondary injuries to people who have fallen into the water during the rescue process, especially due to the collision between the retrieval board and the front of the person in the water.

Method used

A salvage plate structure for an active water rescue robot was designed. A protective strip is fixed to the front end of the salvage plate through a connecting component. The protective strip contacts the person who has fallen into the water first to avoid direct contact with the salvage plate. The connecting component is fixed with positioning pins and bolts to ensure stability.

Benefits of technology

It effectively avoids secondary injuries to the person who has fallen into the water caused by the retrieval board, improves the safety and smoothness of the rescue, and prevents skin abrasions to the person who has fallen into the water.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model provides a salvage plate structure for an active water rescue robot, belonging to the technical field of water rescue equipment. It includes a split salvage plate, with a grid plate at the top and a support frame at the bottom. Each support frame has a receiving interface on both the left and right sides at its front end. Each receiving interface has a plug-in block on the side furthest from the salvage plate. The receiving interface and the plug-in block are connected and fixed by bolts. A connecting component is provided on the side of the plug-in block furthest from the salvage plate. A protective strip is provided on the side of the connecting component furthest from the salvage plate. This utility model connects the salvage plate to the protective strip through the connecting component, thereby fixing the protective strip to the front end of the salvage plate. When rescuing a person who has fallen into the water, the protective strip will contact the person first, thus avoiding initial contact between the person and the salvage plate and preventing secondary injury to the person.
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Description

Technical Field

[0001] This utility model relates to the field of water rescue equipment technology, specifically to a salvage plate structure for an active water rescue robot. Background Technology

[0002] Water rescue support cabins are typically set up in waterways to house and charge water rescue robots, ensuring that the robots can quickly and easily conduct water rescue operations.

[0003] Related technologies include water rescue support cabins that have already appeared on the market, such as the utility model patent with authorization announcement number CN217893168U (the same applicant as this case), which discloses a water rescue robot cabin. By setting up a movable cabin and cooperating with a lifting motor, it is possible to lift and lower the water rescue robot. By lifting and lowering the salvage plate, the rescue robot can be lifted and released, thereby scooping up and retrieving the person who has fallen into the water.

[0004] Existing salvage boards, made of stainless steel, can cause problems when rescuing people from drowning. As the lifeboat moves the salvage board and scoops the person into it, the front end of the board can easily collide with the person's body, resulting in unnecessary secondary injuries. To address these issues, a salvage board structure for an active water rescue robot is proposed. Utility Model Content

[0005] In view of this, the present invention provides a salvage plate structure for an active water rescue robot. The present invention connects the salvage plate to the protective strip through a connecting component, thereby fixing the protective strip to the front end of the salvage plate. When rescuing a person who has fallen into the water, the protective strip will make contact with the person first, thereby avoiding the person's initial contact with the salvage plate and preventing the salvage plate from causing secondary injury to the person who has fallen into the water.

[0006] To solve the above-mentioned technical problems, this utility model provides a salvage plate structure for an active water rescue robot, including a split salvage plate. The upper part of the salvage plate is a grid plate, and the lower part of the salvage plate is a support frame. A receiving interface is provided on both the left and right sides of the front end of the support frame. A plug-in block is provided on the side of each receiving interface away from the salvage plate. The receiving interface and the plug-in block are adapted to each other and are fixedly connected by bolts. A connecting component is provided on the side of the plug-in block away from the salvage plate. The connecting component is sealed and adapted to the front end of the salvage plate. A protective strip is provided on the side of the connecting component away from the salvage plate.

[0007] The connecting assembly includes a connecting plate for mounting and fixing connecting blocks, and also for sealing and protecting the front end of the retrieval plate. The connecting plate is in the shape of a horizontal U-shape, with the notch facing the retrieval plate. A connecting block is provided at each end of the notch in the connecting plate. The connecting block is used to connect and fix the plug-in block to the connecting plate. The connecting block is in the shape of a vertical U-shape, with the notch facing the retrieval plate.

[0008] The coaxial plug-in block and the connecting block are fixedly connected.

[0009] The inner side of the protective strip is rectangular and connects to the connecting plate, while the outer side of the protective strip is arc-shaped and is far away from the retrieval plate.

[0010] The socket has a first threaded hole in the horizontal direction. The first threaded hole is used to correspond coaxially with the second threaded hole and is also used to install bolts. The plug block has a second threaded hole in the horizontal direction. The second threaded hole is used to install bolts, thereby fixing the plug block in the socket. The first threaded hole and the second threaded hole are appropriately matched and correspond. A bolt is provided on the side of the first threaded hole away from the salvage plate. The bolt is used to fix the plug block on the salvage plate, thereby supporting the connecting components and the protective strip.

[0011] The support frame has multiple positioning slots at the front center, which are used to receive positioning pins. The inner side of the connecting plate has multiple positioning pins, which are used to insert into the positioning slots, thereby strengthening the connection between the retrieval plate and the connecting plate. The positioning slots and positioning pins on the coaxial axis are correspondingly matched.

[0012] Ribs are provided on the upper front surface of the grid plate and on the lower front surface of the support frame. One side of the ribs is attached to the connecting plate. The ribs are used to limit the connection plate, make it smoother for the person who has fallen into the water to enter the retrieval plate, and prevent the person from scratching their skin. The other side of the ribs is arc-shaped.

[0013] In summary, compared with the prior art, this application includes at least one of the following beneficial technical effects:

[0014] 1. The retrieval board is connected to the protective strip by the connecting component, and then the protective strip is fixed to the front end of the retrieval board. When rescuing a person who has fallen into the water, the protective strip will make contact with the person first, thereby avoiding the person's initial contact with the retrieval board and preventing the retrieval board from causing secondary injury to the person who has fallen into the water.

[0015] 2. The positioning pin is used to insert into the positioning groove, thereby strengthening the connection between the retrieval plate and the connecting plate and preventing the connecting plate from falling off.

[0016] 3. Ribs are used to limit the connection plate, make it smoother for the person in the water to enter the retrieval plate, and prevent the person in the water from scratching their skin, thereby improving the safety of the rescue. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0018] Figure 2 This is a top sectional view of the present invention;

[0019] Figure 3 This utility model Figure 2 A magnified view of part A;

[0020] Figure 4 This is a side sectional view of the present invention.

[0021] Explanation of reference numerals in the attached drawings: 100, retrieval plate; 101, mesh plate; 102, support frame; 200, receiving interface; 201, plug-in block; 202, bolt; 203, first threaded hole; 204, second threaded hole; 300, connecting assembly; 301, connecting plate; 302, connecting block; 303, positioning groove; 304, positioning pin; 400, protective strip; 401, rib. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the following will be described in conjunction with the accompanying drawings of the embodiments of this utility model. Figure 1-4 The technical solutions of the embodiments of this utility model are clearly and completely described below. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the described embodiments of this utility model are within the protection scope of this utility model.

[0023] like Figure 1-4 As shown: This embodiment provides a salvage plate structure for an active water rescue robot, including a split salvage plate 100. The upper part of the salvage plate 100 is a mesh plate 101 with a salvage net on its surface. The lower part of the salvage plate 100 is a support frame 102, which is composed of multiple support rods welded together to provide support for the mesh plate 101. The support frame 102 is welded to the mesh plate 101. A receiving interface 200 is provided on both the left and right sides of the front end of the support frame 102. Each receiving interface 200 has a side away from the salvage plate 100. A plug-in block 201 is provided, and a socket 200 is adapted to the plug-in block 201. The socket 200 and the plug-in block 201 are connected and fixed by bolts 202. A connecting component 300 is provided on the side of the plug-in block 201 away from the retrieval plate 100. The connecting component 300 is used to connect the plug-in block 201 and the socket 200. The connecting component 300 is adapted to the front end of the retrieval plate 100. A protective strip 400 is provided on the side of the connecting component 300 away from the retrieval plate 100. The protective strip 400 can be made of environmentally friendly plastic material.

[0024] In use, the retrieval plate 100 is connected to the protective strip 400 through the connecting component 300, thereby fixing the protective strip 400 to the front end of the retrieval plate 100. When rescuing a person who has fallen into the water, the protective strip 400 will make contact with the person first, thereby avoiding the person's initial contact with the retrieval plate 100 and preventing the retrieval plate 100 from causing secondary injury to the person who has fallen into the water.

[0025] This embodiment provides a salvage plate 100 structure for an active water rescue robot.

[0026] like Figure 1 , 2 As shown in Figures 3 and 4: The connecting assembly 300 includes a connecting plate 301. The connecting plate 301 and the retrieval plate 100 can be connected and fixed by bolts 202. The connecting plate 301 is used to install and fix the connecting block 302. The connecting plate 301 is also used to seal and protect the front end face of the retrieval plate 100. The connecting plate 301 is in the shape of a horizontal U-shape. The notch of the connecting plate 301 faces the retrieval plate 100. A connecting block 302 is provided at each end of the notch of the connecting plate 301. The connecting plate 301 and the connecting block 302 are welded together. The connecting block 302 is used to connect and fix the plug-in block 201 to the connecting plate 301. The connecting block 302 is in the shape of a vertical U-shape. The notch of the connecting block 302 faces the retrieval plate 100. The coaxial plug-in block 201 is fixedly connected to the connecting block 302.

[0027] Its effects are as follows: the connecting plate 301 is used to install and fix the connecting block 302, the connecting plate 301 is also used to seal and protect the front end face of the salvage plate 100, and the connecting block 302 is used to connect and fix the plug-in block 201 to the connecting plate 301.

[0028] like Figure 1 , 2 As shown: the inner side of the protective strip 400 is rectangular and can be heat-fused to the connecting plate 301, the outer side of the protective strip 400 is arc-shaped, and the outer side of the protective strip 400 is far away from the salvage plate 100.

[0029] like Figure 1 , 2As shown in Figures 3 and 4: The receiving interface 200 is provided with a first threaded hole 203 in the horizontal direction. The first threaded hole 203 penetrates the receiving interface 200 and is embedded in the support frame 102. The bottom of the first threaded hole 203 embedded in the support frame 102 is provided with a nut. The first threaded hole 203 is used to correspond coaxially with the second threaded hole 204. The first threaded hole 203 is also used to install the bolt 202. The plug block 201 is provided with a second threaded hole 204 in the horizontal direction. The second threaded hole 204 is used to install the bolt 202, thereby fixing the plug block 201 in the receiving interface 200. The first threaded hole 203 and the second threaded hole 204 are adapted to each other. The first threaded hole 203 and the second threaded hole 204 are both threaded to fit the bolt 202. A bolt 202 is provided on the side of the first threaded hole 203 away from the retrieval plate 100. The bolt 202 is used to fix the plug block 201 on the retrieval plate 100, thereby supporting the connecting assembly 300 and the protective strip 400.

[0030] Its effect is as follows: the second threaded hole 204 is used to install the bolt 202, thereby fixing the plug block 201 in the socket 200, and fixing the plug block 201 on the retrieval plate 100 by the bolt 202, thereby supporting the connecting assembly 300 and the protective strip 400.

[0031] like Figure 2 , 3 As shown: The support frame 102 has multiple positioning grooves 303 at the front center. The positioning grooves 303 are embedded in the crossbar at the front of the support frame 102. The positioning grooves 303 are used to receive positioning pins 304. The inner side of the connecting plate 301 has multiple positioning pins 304. The positioning pins 304 can be made of stainless steel. The positioning pins 304 and the connecting plate 301 can be welded together. The positioning pins 304 are used to insert into the positioning grooves 303, thereby strengthening the connection between the retrieval plate 100 and the connecting plate 301. The positioning grooves 303 and positioning pins 304 on the coaxial axis are correspondingly matched.

[0032] Its effect is that the positioning pin 304 is inserted into the positioning groove 303, thereby strengthening the connection between the retrieval plate 100 and the connecting plate 301 and preventing the connecting plate 301 from falling off.

[0033] like Figure 1 , 2 As shown: Ribs 401 are provided on the upper front surface of the grid plate 101. The surface of the ribs 401 is provided with arc-shaped corrugations to prevent personnel from colliding with the initial contact point of the retrieval plate 100. Ribs 401 are provided on the lower front surface of the support frame 102. One side of the ribs 401 is in contact with the connecting plate 301. The ribs 401 are used to limit the connection plate 301. The ribs 401 are also used to make it smoother when the person who fell into the water enters the retrieval plate 100. They are also used to prevent the person who fell into the water from scratching their skin, thereby improving the safety performance of the rescue. The other side of the ribs 401 is arc-shaped.

[0034] Its effects are as follows: Ribs 401 are used to limit the connection plate 301, ribs 401 are also used to make the process of the person falling into the water smoother when entering the retrieval plate 100, and also to prevent the person falling into the water from scratching their skin, thereby improving the safety performance of the rescue.

[0035] Working principle: The retrieval plate 100 is connected to the protective strip 400 through the connecting component 300, thereby fixing the protective strip 400 to the front end of the retrieval plate 100. Simultaneously, the positioning pin 304 is inserted into the positioning groove 303. At this time, the connecting plate 301 is sealed and adapted to the front end face of the retrieval plate 100. Then, the bolt 202 passes through the first threaded hole 203 and the second threaded hole 204, thereby fixing the plug block 201 to the retrieval plate 100. When rescuing a person who has fallen into the water, the protective strip 400 will contact the person first, thereby avoiding the person's initial contact with the retrieval plate 100 and preventing the retrieval plate 100 from causing secondary injury to the person who has fallen into the water.

[0036] Furthermore, it should be noted that, in the description of this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0037] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the principle of this utility model, and these improvements and modifications should also be considered within the protection scope of this utility model.

Claims

1. A salvage plate structure for an active water rescue robot, comprising a split salvage plate (100), the upper part of the salvage plate (100) being a grid plate (101), and the lower part of the salvage plate (100) being a support frame (102), characterized in that: The support frame (102) has a receiving interface (200) on both the left and right sides of its front end. Each receiving interface (200) has a plug-in block (201) on the side away from the retrieval plate (100). The receiving interface (200) and the plug-in block (201) are adapted to each other. The receiving interface (200) and the plug-in block (201) are connected and fixed by bolts (202). A connecting component (300) is provided on the side of the plug-in block (201) away from the retrieval plate (100). The connecting component (300) is sealed and adapted to the front end of the retrieval plate (100). A protective strip (400) is provided on the side of the connecting component (300) away from the retrieval plate (100).

2. The salvage plate structure of a waterborne active rescue robot as described in claim 1, characterized in that: The connecting assembly (300) includes a connecting plate (301) which is horizontally U-shaped and the notch of the connecting plate (301) faces the retrieval plate (100). A connecting block (302) is provided at each end of the notch of the connecting plate (301), which is vertically U-shaped and the notch of the connecting block (302) faces the retrieval plate (100).

3. The salvage plate structure of a waterborne active rescue robot as described in claim 2, characterized in that: The coaxial plug-in block (201) is fixedly connected to the connecting block (302).

4. The salvage plate structure of a waterborne active rescue robot as described in claim 3, characterized in that: The inner side of the protective strip (400) is rectangular and connected to the connecting plate (301), the outer side of the protective strip (400) is arc-shaped, and the outer side of the protective strip (400) is far away from the retrieval plate (100).

5. The salvage plate structure of a waterborne active rescue robot as described in claim 4, characterized in that: The receiving interface (200) is provided with a first threaded hole (203) in the horizontal direction, and the plug block (201) is provided with a second threaded hole (204) in the horizontal direction. The first threaded hole (203) and the second threaded hole (204) are matched and correspond to each other. A bolt (202) is provided on the side of the first threaded hole (203) away from the retrieval plate (100).

6. The salvage plate structure of a waterborne active rescue robot as described in claim 5, characterized in that: The support frame (102) has multiple positioning grooves (303) at the front center, and the connecting plate (301) has multiple positioning pins (304) on its inner side. The positioning grooves (303) and positioning pins (304) on the coaxial axis are correspondingly adapted to each other.

7. The salvage plate structure of a waterborne active rescue robot as described in claim 6, characterized in that: The upper front surface of the grid plate (101) is provided with ribs (401), and the lower front surface of the support frame (102) is provided with the ribs (401). One side of the ribs (401) is in contact with the connecting plate (301), and the other side of the ribs (401) is arc-shaped.