Inflatable buoy fixing anchor
By introducing a winding roller, reciprocating threaded rod and gear transmission system into the inflatable buoy anchor, combined with the automatic control of a waterproof motor, the problem of entanglement during cable storage is solved, orderly management of the cable and efficient anchoring operation are achieved, and the stability and emergency response capabilities of the equipment are improved.
Patent Information
- Application Number
- CN202422747745.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-09-12
- Estimated Expiration
- 2034-11-12
AI Technical Summary
The existing inflatable buoy anchor cannot straighten out the steel cables when they are stored, causing the steel cables to easily become tangled or knotted, affecting normal use and operating efficiency. In particular, in an emergency, it may be impossible to fix the buoy in time.
The use of a winding roller, reciprocating threaded rod and gear transmission system with a line straightener ensures that the steel cable is neatly wound or released when stored. Automatic control is achieved through a waterproof motor drive, which increases the operating efficiency and reliability of the equipment.
It achieves orderly management of the steel cables, avoids entanglement and knotting, improves the efficiency of the anchoring and recovery process, and significantly improves work efficiency in emergency situations, ensuring the stability and rapid response capability of the buoy.
Smart Images

Figure CN223327673U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of fixed anchors, in particular to an inflatable buoy fixed anchor. Background Art
[0002] The main function of the inflatable buoy anchor is to fix the buoy in a specific position on the water surface to prevent it from drifting with external environmental factors such as water flow and wind. The anchor can also prevent the buoy from drifting in environmentally sensitive areas, thereby reducing damage to the surrounding ecological environment. By connecting the buoy to the bottom of the water, the anchor ensures that it can function safely and effectively in the predetermined position.
[0003] When the existing inflatable buoy anchor is in use, the steel cable cannot be straightened when it is stored. On the one hand, the steel cable is easily knotted or entangled when it is used next time, making it difficult to release or recover the steel cable smoothly, affecting the normal use of the anchor and the stability of the buoy. On the other hand, the entangled or knotted steel cable requires additional time and manpower to untie and handle, delaying the work progress and reducing the work efficiency. In particular, in an emergency, it may be impossible to fix the buoy in time.
[0004] In response to the above problems, we have launched an inflatable buoy fixed anchor. Utility Model Content
[0005] The utility model discloses an inflatable buoy fixed anchor, which aims to solve the technical problem that the steel cables cannot be straightened when they are stored.
[0006] In order to achieve the above purpose, the present invention adopts the following technical solutions:
[0007] An inflatable buoy fixed anchor includes a buoy body, a roller is rotatably connected to the inside of the buoy body, a reciprocating threaded rod is rotatably connected to the inside of the buoy body and below the roller, and a line straightener is connected to the outside of the reciprocating threaded rod through threads, a transmission groove is provided on one side of the inside of the buoy body, one end of the central axis of the roller extends to the inside of the transmission groove and is fixedly connected to a first gear, one end of the reciprocating threaded rod extends to the inside of the transmission groove and is fixedly connected to a second gear, the second gear is meshed with the first gear, and a through groove is provided at the bottom of the buoy body, and the through groove is communicated with the inside of the buoy body.
[0008] The buoy body is the core structure of the equipment, providing buoyancy support. The reel is used to wind and release the steel cable. The reciprocating threaded rod and the line straightener cooperate with each other to ensure that the steel cable is neatly wound or released on the reel, making the management of the steel cable more orderly, avoiding winding chaos, and improving the efficiency and reliability of the anchoring and recovery process. The transmission groove provides space for gear transmission, and the meshing connection between the first gear and the second gear enables synchronous operation between the reel and the reciprocating threaded rod, ensuring a smooth retraction and release process of the steel cable and the accuracy of the anchoring operation.
[0009] In a preferred solution, a steel cable is wound around the outside of the winding roller, and one end of the steel cable passes through the line straightener and the through slot and is fixedly connected to a multi-angle anchor rod.
[0010] A through groove is set up to provide a channel for the steel cable to enter and exit. The steel cable is wrapped around the outside of the drum and extended underwater through the line straightener and the through groove. The polygonal anchor rod is located at the end of the steel cable and is used to fix it to the bottom of the water. The polygonal anchor rod design increases the stability of the anchoring.
[0011] In a preferred solution, a first waterproof motor is fixedly connected to one side of the buoy body, and an output shaft of the first waterproof motor extends into the interior of the transmission groove and is fixedly connected to one side of the first gear.
[0012] By setting up a first waterproof motor to drive the rotation of the winding roller and connecting it with the gear system to control the retraction and extension of the steel cable, automatic anchoring and recovery operations under electric control are achieved, which reduces manual intervention, makes the operation more efficient, and is suitable for various underwater operations.
[0013] In a preferred solution, a supporting float is fixedly connected to the top of the buoy body, two second waterproof motors are fixedly connected to both sides of the supporting float, and the output shafts of the second waterproof motors are fixedly connected to propellers.
[0014] By setting up a supporting float to provide additional buoyancy for the buoy body, the second waterproof motor provides thrust through the propeller, so that the buoy body can move in the water, enhancing the flexibility of the buoy, so that it can be freely positioned or adjusted in the water, providing more operational flexibility for the anchoring process.
[0015] In a preferred solution, both ends of the bottom of the buoy body are fixedly connected with support legs, and two support rods are fixedly connected between the bottoms of the two support legs.
[0016] Support legs and support rods are located at the bottom of the pontoon body to provide additional structural support, ensuring the stability of the pontoon body during surface and underwater operations, preventing the pontoon from capsizing or shifting in harsh environments, and ensuring operational safety.
[0017] In a preferred solution, a lifting handle is fixedly connected to the top of the supporting floating plate.
[0018] By arranging the lifting handle at the top of the supporting float, it is convenient for the operator to manually carry or adjust the equipment during deployment or recovery, thereby improving the operating convenience of the equipment.
[0019] In a preferred solution, both the first waterproof motor and the second waterproof motor are electrically connected to an external control device.
[0020] By setting up the first waterproof motor and the second waterproof motor to be electrically connected to the external control device, remote control of the retraction and deployment of the buoy body's steel cable and its movement in the water is allowed, providing automation and remote operation capabilities, enabling the equipment to operate efficiently in complex underwater environments.
[0021] The inflatable buoy anchor provided by the utility model has the following advantages:
[0022] In the present invention, when the above-mentioned inflatable buoy fixed anchor is in use, when the roller retracts the steel cable, the first gear is engaged with the second gear at one end of the reciprocating threaded rod, so that the reciprocating threaded rod drives the line straightener to straighten the steel cable. On the one hand, it can prevent it from being entangled or knotted during the storage process, ensuring that it can be smoothly released and recovered the next time it is used, thereby improving the smoothness of operation. On the other hand, the steel cable is faster to use, which can significantly reduce the time for untying and handling, especially in emergency situations that require quick response, which can improve work efficiency and greatly improve the work quality and use efficiency compared with traditional devices. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 This is a first-perspective stereoscopic schematic diagram of an inflatable buoy anchor proposed by the present invention.
[0024] Figure 2 This is a second perspective stereoscopic schematic diagram of an inflatable buoy fixed anchor proposed by the utility model.
[0025] Figure 3 The utility model is a schematic cross-sectional view of a buoy body of an inflatable buoy fixed anchor.
[0026] Figure 4 This is a schematic diagram of the first gear structure of an inflatable buoy fixed anchor proposed by the utility model.
[0027] In the attached figure: 1. buoy body; 2. winding roller; 3. reciprocating threaded rod; 4. line straightener; 5. transmission groove; 6. first gear; 7. second gear; 8. steel cable; 9. polygonal anchor rod; 10. first waterproof motor; 11. supporting float; 12. second waterproof motor; 13. propeller; 14. through groove; 15. supporting leg; 16. supporting rod; 17. lifting handle. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present application will be clearly and completely described below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all of the embodiments. The components of the embodiments of the present application generally described and marked in the drawings here can be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present application provided in the drawings is not intended to limit the scope of the application for protection, but merely represents the selected embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without making creative work fall within the scope of protection of the present application.
[0029] The inflatable buoy fixed anchor disclosed by the utility model is mainly used in the scene of fixed anchor.
[0030] Reference Figure 2 and Figure 3 , an inflatable buoy fixed anchor, including a buoy body 1, an internal rotatable connection with a roller 2, an internal buoy body 1 and a reciprocating threaded rod 3 rotatably connected to the bottom of the buoy body 1, the external thread of the reciprocating threaded rod 3 is connected to a line straightener 4, a transmission groove 5 is opened on one side of the interior of the buoy body 1, one end of the central axis of the roller 2 extends to the interior of the transmission groove 5 and is fixedly connected to a first gear 6, one end of the reciprocating threaded rod 3 extends to the interior of the transmission groove 5 and is fixedly connected to a second gear 7, the second gear 7 is meshed with the first gear 6, and a through groove 14 is opened at the bottom of the buoy body 1, the through groove 14 is communicated with the interior of the buoy body 1.
[0031] In this embodiment: the buoy body 1 is the core structure of the equipment, providing buoyancy support; the reel 2 is used to wind and release the steel cable 8; the reciprocating threaded rod 3 cooperates with the line straightener 4 to ensure that the steel cable 8 is neatly wound or released on the reel 2, making the management of the steel cable 8 more orderly, avoiding winding chaos, and improving the efficiency and reliability of the anchoring and recovery process; the transmission groove 5 provides space for gear transmission; the meshing connection between the first gear 6 and the second gear 7 enables synchronous operation between the reel 2 and the reciprocating threaded rod 3, ensuring a smooth retraction and release process of the steel cable 8 and ensuring the accuracy of the anchoring operation.
[0032] Reference Figure 3 and Figure 4 In a preferred embodiment, a steel cable 8 is wound around the outside of the roller 2 , one end of the steel cable 8 passes through the line aligner 4 and the through slot 14 and is fixedly connected to a polygonal anchor rod 9 .
[0033] In this embodiment: the through groove 14 provides a channel for the steel cable 8 to enter and exit. The steel cable 8 is wound around the outside of the roller 2 and extends underwater through the line spool 4 and the through groove 14. The polygonal anchor rod 9 is located at the end of the steel cable 8 and is used to be fixed to the bottom of the water. The design of the polygonal anchor rod 9 increases the stability of the anchoring.
[0034] Reference Figure 2 and Figure 3 In a preferred embodiment, a first waterproof motor 10 is fixedly connected to one side of the buoy body 1 , and an output shaft of the first waterproof motor 10 extends to the inside of the transmission groove 5 and is fixedly connected to one side of the first gear 6 .
[0035] In this embodiment: the first waterproof motor 10 is used to drive the rotation of the roller 2, and by connecting with the gear system, controls the retraction and extension of the steel cable 8, realizing automatic anchoring and recovery operations under electric control, reducing manual intervention, and making the operation more efficient, which is suitable for various underwater operations.
[0036] Reference Figure 1 and Figure 2 In a preferred embodiment, a supporting float 11 is fixedly connected to the top of the buoy body 1, two second waterproof motors 12 are fixedly connected to both sides of the supporting float 11, and the output shafts of the second waterproof motors 12 are fixedly connected to propellers 13.
[0037] In this embodiment: the supporting float 11 provides additional buoyancy for the buoy body 1, and the second waterproof motor 12 provides thrust through the propeller 13, so that the buoy body 1 can move in the water, thereby enhancing the flexibility of the buoy, allowing it to be freely positioned or adjusted in the water, and providing more operational flexibility for the anchoring process.
[0038] Reference Figure 1 and Figure 2 In a preferred embodiment, both ends of the bottom of the buoy body 1 are fixedly connected with support legs 15, and two support rods 16 are fixedly connected between the bottoms of the two support legs 15.
[0039] In this embodiment, the support legs 15 and the support rods 16 are located at the bottom of the buoy body 1 to provide additional structural support, thereby ensuring the stability of the buoy body 1 when operating on the water surface and underwater, preventing the buoy from capsizing or shifting in harsh environments, and ensuring operational safety.
[0040] Reference Figure 1 and Figure 2 In a preferred embodiment, a lifting handle 17 is fixedly connected to the top of the supporting floating plate 11 .
[0041] In this embodiment, the lifting handle 17 is located on the top of the supporting float 11, which facilitates the operator to manually carry or adjust the equipment during deployment or recovery, thereby improving the operational convenience of the equipment.
[0042] Reference Figure 1 and Figure 2 In a preferred embodiment, the first waterproof motor 10 and the second waterproof motor 12 are both electrically connected to an external control device.
[0043] In this embodiment: the first waterproof motor 10 and the second waterproof motor 12 are both electrically connected to an external control device, allowing remote control of the retractable and retractable steel cable 8 of the buoy body 1 and its movement in the water, providing automation and remote operation capabilities, enabling the equipment to operate efficiently in complex underwater environments.
[0044] Working principle: When the above-mentioned inflatable buoy anchor is in use, when the position of the buoy body 1 needs to be adjusted, the second waterproof motor 12 drives the propeller 13 to rotate. By changing the speed and direction of the propeller 13, the forward, backward and direction control of the buoy body 1 can be adjusted to ensure that the buoy body 1 can be accurately moved to the specified position. The support legs 15 and the support rods 16 provide stable support for the buoy to keep it balanced on the water surface. When the buoy body 1 needs to be fixed, the roller 2 releases the steel cable 8, and the polygonal anchor rod 9 sinks to the bottom of the water through the through groove 14 to lock the position of the buoy body 1. When the polygonal anchor rod 9 needs to be retracted, the first waterproof motor 10 starts in reverse to drive The winding roller 2 rewinds the steel cable 8, and the polygonal anchor rod 9 is retracted into the buoy body 1, thereby releasing the fixed state. When the steel cable 8 needs to be retracted, the first waterproof motor 10 is started, and the first gear 6 is driven to rotate through the output shaft. The first gear 6 is engaged with the second gear 7, and then the reciprocating threaded rod 3 is driven to rotate, and the left and right movement of the line straightener 4 is controlled. By controlling the rotation of the winding roller 2 and the reciprocating threaded rod 3, the steel cable 8 can be straightened. The steel cable 8 is faster to use and can significantly reduce the time for untying and processing. Especially in emergency situations that require quick response, it can improve work efficiency and greatly improve the operation quality and use efficiency compared with traditional devices.
[0045] The above description is merely a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. The replacements described may be partial structures, devices, or method steps, or they may be complete technical solutions. Any equivalent replacements or modifications based on the technical solution and the concept of the present invention shall be covered by the scope of protection of the present invention.
Claims
1. An inflatable buoy anchor, comprising a buoy body (1), characterized in that: The interior of the buoy body (1) is rotatably connected to a reel (2), the interior of the buoy body (1) and located below the reel (2) is rotatably connected to a reciprocating threaded rod (3), the external thread of the reciprocating threaded rod (3) is connected to a line straightener (4), a transmission groove (5) is provided on one side of the interior of the buoy body (1), one end of the central axis of the reel (2) extends to the interior of the transmission groove (5) and is fixedly connected to a first gear (6), one end of the reciprocating threaded rod (3) extends to the interior of the transmission groove (5) and is fixedly connected to a second gear (7), the second gear (7) is meshed with the first gear (6), and a through groove (14) is provided at the bottom of the buoy body (1), and the through groove (14) is communicated with the interior of the buoy body (1).
2. The inflatable buoy anchor according to claim 1, characterized in that: A steel cable (8) is wound around the outside of the winding roller (2), and one end of the steel cable (8) passes through the line straightener (4) and the through slot (14) and is fixedly connected to a multi-angle anchor rod (9).
3. The inflatable buoy anchor according to claim 1, characterized in that: A first waterproof motor (10) is fixedly connected to one side of the buoy body (1), and an output shaft of the first waterproof motor (10) extends into the interior of the transmission slot (5) and is fixedly connected to one side of the first gear (6).
4. The inflatable buoy anchor according to claim 3, characterized in that: The top of the buoy body (1) is fixedly connected to a supporting floating plate (11), both sides of the supporting floating plate (11) are fixedly connected to two second waterproof motors (12), and the output shafts of the second waterproof motors (12) are fixedly connected to propellers (13).
5. The inflatable buoy anchor according to claim 1, characterized in that: Support legs (15) are fixedly connected to both ends of the bottom of the buoy body (1), and two support rods (16) are fixedly connected between the bottoms of the two support legs (15).
6. The inflatable buoy anchor according to claim 4, characterized in that: A lifting handle (17) is fixedly connected to the top of the supporting floating plate (11).
7. The inflatable buoy anchor according to claim 4, characterized in that: The first waterproof motor (10) and the second waterproof motor (12) are both electrically connected to external control equipment.