Overwater isolation floating body
By setting up connection structures and angular positioning structures that can be connected to each other at both ends of the water isolation float, the problem of floating floats or floating bodies in the existing water isolation device is solved, and the stable positioning and precise angle setting of the isolation float are achieved, making it easier to form a set shape.
Patent Information
- Application Number
- CN202421401459.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-18
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-06-18
AI Technical Summary
The existing water isolation, dirt blocking and track isolation devices are connected in series by ropes, causing the float or float to drift on the water surface and cannot be fixed and moved in the set direction, forming the required shape.
A water isolation float is designed, and a connecting structure that can be connected to each other is provided at both ends of each segment of the isolation float, including an upper and lower connecting parts and an angular positioning structure, so as to realize the solid connection and angular free positioning of two adjacent isolation floats.
Through the interconnected connection structure, the stable positioning and precise angle setting of the isolation float are achieved, which is convenient for forming a set shape, and has the characteristics of easy installation, reliable connection and easy molding.
Smart Images

Figure CN222905827U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a water pollution interception or track isolation device, in particular to a floating body for water isolation. Background Art
[0002] At present, underwater isolation devices such as water isolation, water pollution interception, and water tracks generally connect buoys or floating bodies in series through ropes, and then float the series of buoys or floating bodies on the water surface to play a role in isolation or pollution interception. Currently, for the buoys or floating bodies connected in series through ropes, since the buoys or floating bodies will drift with the water surface on the water and cannot be fixed, when the length of the isolation belt is long, the floating bodies float erratically and are not easy to position, and they cannot move in a set direction as required to form the required shape. Content of the Utility Model
[0003] The purpose of the utility model is to provide a floating body for water isolation. Connecting structures capable of connecting with each other are arranged at both ends of each section of the floating body for water isolation. The connecting structures can realize the fixed connection and free angle positioning of two adjacent floating bodies for water isolation. After several sections of the floating bodies for water isolation are connected end to end to form an isolation belt, only by positioning both ends of the isolation belt can the positioning of the whole isolation belt be realized. It has the characteristics of convenient installation, reliable connection, and easy shaping.
[0004] The following technical solutions are adopted to achieve the above purpose:
[0005] A floating body for water isolation, characterized in that: the floating body for water isolation includes a strip-shaped body. A first connecting part and a second connecting part capable of connecting with each other are respectively arranged at both ends of the strip-shaped body. Two adjacent strip-shaped bodies are connected in a stacked manner through the first connecting part and the second connecting part. An angle positioning structure is also arranged between the first connecting part and the second connecting part.
[0006] The first connecting part includes a lower connecting part extending along the length direction of the strip-shaped body at the lower part of one end of the strip-shaped body; the second connecting part includes an upper connecting part extending along the length direction of the strip-shaped body at the upper part of the other end of the strip-shaped body; the height after the upper and lower connecting parts are connected in a stacked manner is equivalent to the height of the strip-shaped body.
[0007] The angle positioning structure includes a circular convex platform protruding upward on the top surface of the lower connecting part and a circular groove matching the circular convex platform opened on the bottom surface of the upper connecting part. Outer positioning teeth are arranged on the circumferential direction of the circular convex platform, and inner positioning teeth matching the outer positioning teeth are arranged on the side wall of the circular groove. A lower through hole penetrating the lower connecting part is opened at the center of the circular convex platform, and an upper through hole penetrating the upper connecting part is opened at the center of the circular groove.
[0008] A downward upper recessed part is arranged on the top surface of the upper connecting part around the upper through hole, and a nut positioning groove is arranged on the inner wall of the upper port of the upper through hole.
[0009] The bottom surface of the lower connecting part is provided with an upward lower recess around the lower through hole, and anti-loosening tooth patterns are provided on the top surface of the lower recess around the lower through hole.
[0010] The long strip-shaped body is a flat long strip-shaped hollow plastic floating body.
[0011] Axial grooves are also provided on the top and bottom surfaces of the long strip-shaped body.
[0012] Angle scales are provided on the top surface of the upper connecting part and / or the bottom surface of the lower connecting part.
[0013] In the utility model, an upper connecting part and a lower connecting part are respectively arranged at both ends of the flat long strip-shaped hollow plastic floating body. Bolts can connect two adjacent isolation floating bodies by passing through the upper and lower through holes of the upper and lower connecting parts. After connection, the height of the stacked upper and lower connecting parts is equivalent to the height of the long strip-shaped body. At the same time, an angle positioning structure is arranged between the upper and lower connecting parts, which can accurately set the included angle between adjacent long strip-shaped bodies, facilitating the connection of several isolation floating bodies into a set shape. Description of the Drawings
[0014] Figure 1 is the schematic structural diagram (one) of the utility model;
[0015] Figure 2 is the schematic structural diagram (two) of the utility model;
[0016] Figure 3 is the top view of the utility model
[0017] Figure 4 is the utility model Figure 3 the A-A cross-sectional view in;
[0018] Figure 5 is the connection schematic diagram of the utility model. Detailed Implementation Modes
[0019] As Figures 1-5 shown, a kind of water isolation floating body, the isolation floating body is a flat long strip-shaped hollow plastic floating body 1, and axial grooves 11 are also provided on the top and bottom surfaces of the flat long strip-shaped hollow plastic floating body 1. The flat structure is not easy to turn over, which can increase the stability of the floating body on the water. The concave-convex structure is arranged on the surface of the plastic floating body to enhance the surface strength of the plastic floating body.
[0020] A lower connecting part 3 extending along the length direction of the long strip-shaped body is arranged at the lower part of one end of the flat long strip-shaped hollow plastic floating body 1; an upper connecting part 2 extending along the length direction of the long strip-shaped body is arranged at the upper part of the other end of the flat long strip-shaped hollow plastic floating body 1; the height of the stacked upper and lower connecting parts is equivalent to the height of the long strip-shaped body; an angle positioning structure is also arranged between the upper connecting part 2 and the lower connecting part 3.
[0021] The described angle positioning structure includes a circular boss 31 protruding upward on the top surface of the lower connecting part 3 and a circular groove 21 matching the circular boss is provided on the bottom surface of the upper connecting part 2. An outer positioning tooth 32 is provided on the circumference of the circular boss 31, and an inner positioning tooth 22 matching the outer positioning tooth is provided on the side wall of the circular groove 21. A lower through hole 33 penetrating the lower connecting part is provided at the center of the circular boss 31, and an upper through hole 23 penetrating the upper connecting part is provided at the center of the circular groove 21.
[0022] A downward upper recess 24 is provided on the top surface of the upper connecting part 2 around the upper through hole 23, and a nut positioning groove 25 is provided on the inner wall of the upper port of the upper through hole 23;
[0023] An upward lower recess 34 is provided on the bottom surface of the lower connecting part 3 around the lower through hole 33, and an anti-loosening tooth pattern 35 is provided on the top surface of the lower recess 34 around the lower through hole; Angle scales 4 are provided on the top surface of the upper connecting part and / or the bottom surface of the lower connecting part.
[0024] In the utility model, an upper connecting part and a lower connecting part are respectively arranged at both ends of a flat strip-shaped hollow plastic floating body. Bolts can pass through the upper and lower through holes of the upper and lower connecting parts to connect two adjacent isolation floating bodies. After connection, the height of the stacked upper and lower connecting parts is equivalent to the height of the strip-shaped body. At the same time, an angle positioning structure is arranged between the upper and lower connecting parts. The nut positioning groove at the upper port of the upper through hole positions the nut to facilitate installation. The anti-loosening tooth pattern and the anti-loosening nut cooperate to achieve an anti-loosening effect to ensure the reliability of the connection. Angle scales are provided on the top surface of the upper connecting part and / or the bottom surface of the lower connecting part, which can achieve accurate angle positioning and facilitate connecting several isolation floating bodies into a set shape.
[0025] In the utility model, connection structures capable of connecting with each other are arranged at both ends of each section of isolation floating body. The connection structure can realize the fixed connection and free angle positioning of two adjacent isolation floating bodies. After several sections of isolation floating bodies are connected end to end to form an isolation belt, only by positioning both ends of the isolation belt can the positioning of the whole isolation belt be realized. It has the characteristics of convenient installation, reliable connection and easy forming.
Claims
1. An isolation buoy on water, comprising an isolation buoy, characterized in that: The isolation float comprises a long strip body, with a first connection part and a second connection part which can be connected to each other respectively arranged at both ends of the long strip body, two adjacent sections of the long strip body are connected in a stacked manner through the first connection part and the second connection part, and an angle positioning structure is also arranged between the first connection part and the second connection part.
2. The floating isolation body as claimed in claim 1, characterized in that: The first connection part includes a lower connection part extending along the length direction of the long strip body at the lower part of one end of the long strip body; the second connection part includes an upper connection part extending along the length direction of the long strip body at the upper part of the other end of the long strip body; the height of the upper and lower connection parts after being stacked and connected is equivalent to the height of the long strip body.
3. The floating isolation body as claimed in claim 2, characterized in that: The angle positioning structure includes an upwardly protruding circular boss on the top surface of the lower connecting part and a circular groove matching the circular boss on the bottom surface of the upper connecting part, the circular boss is provided with external positioning teeth in the circumference, the side wall of the circular groove is provided with internal positioning teeth matching the external positioning teeth, a lower through hole penetrating the lower connecting part is provided at the center of the circular boss, and an upper through hole penetrating the upper connecting part is provided at the center of the circular groove.
4. The above-water isolation buoy as claimed in claim 3, characterized in that: The top surface of the upper connecting part is provided with an upper concave part facing downwards around the upper through hole, and a nut positioning groove is provided on the inner wall of the upper end of the upper through hole.
5. The above-water isolation buoy as claimed in claim 3, characterized in that: The bottom surface of the lower connecting part is provided with an upward lower concave part around the lower through hole, and the top surface of the lower concave part is provided with anti-loosening tooth patterns around the lower through hole.
6. An above-water isolation buoy as claimed in any one of claims 1 to 4, characterized in that: The long strip body is a flat long strip hollow plastic float.
7. The above-water isolation buoy as claimed in claim 6, characterized in that: Axial grooves are also provided on the top surface and the bottom of the long strip body.
8. The above-water isolation buoy as claimed in claim 3, characterized in that: Angle scales are provided on the top surface of the upper connecting portion and / or the bottom surface of the lower connecting portion.