Double-air-cabin type plastic buoy

By designing a dual-air-chamber plastic pontoon and utilizing a structure connecting an annular buffer pad and cylindrical filling components, the problem of uneven buoyancy of a single pontoon was solved, thereby improving the stability and impact resistance of the pontoon.

CN223618887UActive Publication Date: 2025-12-02TONGTU TECH CO LTD
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Patent Information

Application Number
CN202520132726.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-12-02
Estimated Expiration
2035-01-21

AI Technical Summary

Technical Problem

Existing single-buoy plastic pontoons are prone to uneven buoyancy during use, which can cause impacts, affecting their shielding performance and service life.

Method used

A dual-air-chamber plastic pontoon was designed, comprising a pontoon rod and two air chambers, with annular buffer pads and cylindrical filling components inside. The air chambers contain pontoons and flexible pads, which are connected by annular plates and insert slots to enhance stability and impact resistance.

Benefits of technology

It improves the stability and impact resistance of the pontoons, reduces impact, and extends their service life.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223618887U_ABST
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Abstract

The utility model discloses a double air cabin type plastic float bowl which comprises a float bowl body, the float bowl body comprises a float bowl rod, a first air cabin and a second air cabin are arranged at the two ends of the float bowl rod respectively, the interior of the float bowl rod is a cavity, the float bowl rod is cylindrical, an annular buffering cushion is arranged in the float bowl rod, and the first air cabin and the second air cabin are arranged in the annular buffering cushion. Cylindrical filling components are arranged in the annular buffer pad, the cylindrical filling components comprise a first cylindrical filling component and a second cylindrical filling component, the first cylindrical filling component and the second cylindrical filling component are arranged in the annular buffer pad, and first cavities are formed in the first cylindrical filling component and the second cylindrical filling component; a first protruding annular plate and a second protruding annular plate are arranged at the joint of the first cylindrical filling component and the second cylindrical filling component correspondingly. The plastic buoy has the advantages that under the action of the first air cabin and the second air cabin, the stability of the plastic buoy is high, and the impact resistance of the buoy is improved.
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Description

Technical Field

[0001] This utility model relates to the technical field of plastic pontoons, and in particular to a double-air-chamber type plastic pontoon. Background Technology

[0002] Although existing plastic pontoons can float, they still have defects: 1. Existing pontoons are single pontoons. When in use, one end often rises first, while the other end rises to the surface more slowly. When the other end rises more slowly, it is easy for it to rise under the action of buoyancy, causing the net to impact upwards. This affects the instantaneous shielding effect of the net below the water surface and makes it easy to impact with other objects, resulting in a reduction in service life. Utility Model Content

[0003] The purpose of this invention is to overcome the shortcomings of the prior art and provide a dual-air-chamber plastic pontoon that enhances the stability of the plastic pontoon and improves its impact resistance under the action of the first and second air chambers.

[0004] The purpose of this utility model is achieved through the following technical solution: a double-air-chamber plastic pontoon, including a pontoon body, the pontoon body including a pontoon rod, and a first air chamber and a second air chamber respectively provided at both ends of the pontoon rod, the interior of the pontoon rod is hollow, and the pontoon rod is cylindrical, and an annular buffer pad is provided inside the pontoon rod, and a cylindrical filling component is provided inside the annular buffer pad.

[0005] The cylindrical filling component includes a first cylindrical filling component and a second cylindrical filling component. The first and second cylindrical filling components are disposed inside the annular buffer pad, and the first and second cylindrical filling components are provided with a cavity. The connection between the first and second cylindrical filling components is provided with a protruding annular plate and a protruding annular plate, respectively. The ends of the protruding annular plate and the protruding annular plate are provided with flexible pads. The protruding annular plate and the protruding annular plate are respectively provided with a rod and a slot that cooperates with the rod. The first and second air chambers are each provided with a float.

[0006] In the dual-air-chamber plastic pontoon of this utility model, the first air chamber and the second air chamber have the same structure. Both the first air chamber and the second air chamber are made of plastic. A fixing rod 1 is provided on one side wall of the pontoon inside the first air chamber and the second air chamber, and a fixing rod 2 is provided on the other side. A protective plastic plate 1 is provided on the fixing rod 1, and a protective plastic plate 2 is provided on the fixing rod 2.

[0007] In the dual-air-chamber plastic pontoon of this utility model, a connecting rod 1, a connecting rod 2, and a connecting rod 3 are provided between the first protective plastic plate and the second protective plastic plate. The first connecting rod 1, the second connecting rod 2, and the third connecting rod 3 are made of plastic material. The two ends of the first connecting rod 1, the second connecting rod 2, and the third connecting rod 3 connect the first protective plastic plate and the second protective plastic plate.

[0008] In the dual-air-chamber plastic pontoon of this utility model, the protective plastic plate one and the protective plastic plate two are provided with arc-shaped pop-up components on their sides, and the two ends of the arc-shaped pop-up components are inserted into the slots on the surfaces of the protective plastic plate one and the protective plastic plate two.

[0009] In the dual-air-chamber plastic pontoon of this utility model, the diameter and length of the pontoon rod are provided in at least two ways, and the volume of the first air chamber and the second air chamber are provided in at least two ways.

[0010] This utility model has the following advantages:

[0011] 1. The float body of this utility model includes a float rod, and a first air chamber and a second air chamber are respectively provided at both ends of the float rod. The two-end arrangement is conducive to stable use. The inside of the float rod is hollow and cylindrical. An annular buffer pad is provided inside the float rod, and a cylindrical filling component is provided inside the annular buffer pad, which can reduce impact and prevent the float body from easily deforming.

[0012] The cylindrical filling component includes a first cylindrical filling component and a second cylindrical filling component, which are located inside the annular buffer pad. The first and second cylindrical filling components each have a cavity. A protruding annular plate (first and second) is provided at the connection point of the first and second cylindrical filling components. Flexible pads are provided at the ends of the protruding annular plates (first and second). The length of the float rod is determined according to actual needs. The fit between the protruding annular plates (first and second) facilitates docking operations. Insert rods and slots that cooperate with the insert rods are provided on the protruding annular plates (first and second). Floats (first) are provided inside both the first and second air chambers, ensuring stable buoyancy at both ends. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the structure of this utility model;

[0014] Figure 2 This is a schematic diagram of the structure of the first pontoon in this utility model;

[0015] Figure 3 for Figure 2 A magnified view of a portion of point A in the middle;

[0016] Figure 4 for Figure 1 A magnified view of a portion of point B in the middle;

[0017] Figure 5 for Figure 1 A magnified view of a portion of point C.

[0018] In the figure, the components are: 1. Float body; 2. Float rod; 3. First air chamber; 4. Second air chamber; 5. Annular buffer pad; 6. First cylindrical filling component; 7. Second cylindrical filling component; 8. Cavity 1; 9. Protruding annular plate 1; 10. Protruding annular plate 2; 11. Flexible pad; 12. Insert rod; 13. Slot; 14. Float 1; 15. Fixing rod 1; 16. Protective plastic plate 1; 17. Protective plastic plate 2; 18. Connecting rod 1; and 19. Arc-shaped spring-loaded component. Detailed Implementation

[0019] The present invention will be further described below with reference to the accompanying drawings. The scope of protection of the present invention is not limited to the following description:

[0020] like Figures 1-5 As shown, a dual-air-chamber plastic pontoon includes a pontoon body 1, a pontoon body 1 including a pontoon rod 2, and a first air chamber 3 and a second air chamber 4 respectively provided at both ends of the pontoon rod 2. The interior of the pontoon rod 2 is hollow and cylindrical. An annular buffer pad 5 is provided inside the pontoon rod 2, and a cylindrical filling component is provided inside the annular buffer pad 5, so as to buffer the impact of the water surface on the pontoon rod 2.

[0021] In this embodiment, the cylindrical filling component includes a first cylindrical filling component 6 and a second cylindrical filling component 7. The first cylindrical filling component 6 and the second cylindrical filling component 7 are disposed inside the annular buffer pad 5, and the first cylindrical filling component 6 and the second cylindrical filling component 7 are provided with a cavity 8. The connection between the first cylindrical filling component 6 and the second cylindrical filling component 7 is provided with a protruding annular plate 9 and a protruding annular plate 10, respectively. When the first cylindrical filling component 6 and the second cylindrical filling component 7 have the same inner diameter as the annular buffer pad 5, the protruding annular plate 9 and the protruding annular plate 10 may not be provided. The ends of the protruding annular plate 9 and the protruding annular plate 10 are provided with flexible pads 11. The protruding annular plate 9 and the protruding annular plate 10 are respectively provided with insert rods 12 and slots 13 that cooperate with the insert rods 12. The first air chamber 3 and the second air chamber 4 are both provided with floats 14.

[0022] In this embodiment, the first air chamber 3 and the second air chamber 4 have the same structure. Both the first air chamber 3 and the second air chamber 4 are made of plastic. The float 14 inside the first air chamber 3 and the second air chamber 4 is provided with a fixing rod 15 on the side wall and a fixing rod 2 on the other side. The fixing rod 15 is provided with a protective plastic plate 16 and the fixing rod 2 is provided with a protective plastic plate 27.

[0023] In this embodiment, a connecting rod 18, a connecting rod 2, and a connecting rod 3 are provided between the protective plastic plate 16 and the protective plastic plate 2 17. The connecting rod 18, the connecting rod 2, and the connecting rod 3 are made of plastic material. The two ends of the connecting rod 18, the connecting rod 2, and the connecting rod 3 connect the protective plastic plate 16 and the protective plastic plate 2 17, so that the inner layer can protect the float.

[0024] In this embodiment, the protective plastic plate 16 and the protective plastic plate 2 are provided with arc-shaped pop-up components 19 on their sides, and the two ends of the arc-shaped pop-up components 19 are inserted into the slots on the surface of the protective plastic plate 16 and the protective plastic plate 2 17. The slots are set according to actual needs.

[0025] In this embodiment, the diameter and length of the float rod 2 are provided in at least two ways, and the volume of the first air chamber 3 and the second air chamber 4 are provided in at least two ways, so that the air chambers at both ends improve the stability of the float in use.

[0026] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A dual-air-chamber type plastic pontoon, characterized in that: The system includes a pontoon body, which includes a pontoon rod. A first air chamber and a second air chamber are respectively located at both ends of the pontoon rod. The pontoon rod is cylindrical and has an internal cavity. An annular buffer pad is located inside the pontoon rod, and a cylindrical filling component is located inside the annular buffer pad. The cylindrical filling component includes a first cylindrical filling component and a second cylindrical filling component, both located inside the annular buffer pad. A cavity is located inside both the first and second cylindrical filling components. A protruding annular plate and a protruding annular plate are respectively located at the connection point of the first and second cylindrical filling components. Flexible pads are located at the ends of the protruding annular plates. Insert rods and slots that cooperate with the insert rods are respectively located on the protruding annular plates. A pontoon is located inside both the first and second air chambers.

2. The dual-air-chamber plastic pontoon according to claim 1, characterized in that: The first air chamber and the second air chamber have the same structure. Both the first air chamber and the second air chamber are made of plastic. The first air chamber and the second air chamber have a fixing rod 1 on one side wall of the float and a fixing rod 2 on the other side. The fixing rod 1 has a protective plastic plate 1 and the fixing rod 2 has a protective plastic plate 2.

3. The dual-air-chamber plastic pontoon according to claim 2, characterized in that: Connecting rod 1, connecting rod 2, and connecting rod 3 are provided between the first protective plastic plate and the second protective plastic plate. The first connecting rod, connecting rod 2, and connecting rod 3 are made of plastic material. The two ends of the first connecting rod, connecting rod 2, and connecting rod 3 connect the first protective plastic plate and the second protective plastic plate.

4. The dual-air-chamber plastic pontoon according to claim 2, characterized in that: The protective plastic plate one and the protective plastic plate two are provided with arc-shaped pop-up components on their sides, and the two ends of the arc-shaped pop-up components are inserted into the slots on the surface of the protective plastic plate one and the protective plastic plate two.

5. A dual-air-chamber plastic pontoon according to claim 1, characterized in that: The diameter and length of the pontoon rod are provided in at least two different ways, and the volume of the first air chamber and the second air chamber are provided in at least two different ways.