Illumination module for deep-sea LED fish gathering lamp

By using a lighting module with hexagonal fiberglass, silicone sealant and 316L stainless steel reinforcement in deep-sea LED fish lamps, the problem of corrosion in seawater by deep-sea trapping lamps is solved, corrosion resistance and stability are improved, and service life is extended.

CN223020215UActive Publication Date: 2025-06-24SHANXI XINCHUANGYUAN TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421765214.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-24
Publication Date
2025-06-24
Estimated Expiration
2034-07-24

AI Technical Summary

Technical Problem

Existing deep-sea trapping lamps are susceptible to corrosion when used in seawater for a long time, resulting in material damage and shortened service life.

Method used

A lighting module for deep-sea LED fish lamps is designed, using hexagonal fiberglass and silicone sealant, combined with 316L stainless steel reinforcement ribs, which enhances the corrosion resistance and stability of the module.

Benefits of technology

By using corrosion-resistant hexagonal fiberglass and silicone sealant, the corrosion resistance of LED lamps underwater is significantly improved, the service life is extended, and the overall stability is enhanced by reinforcement ribs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a lighting module for a deep sea LED fish gathering lamp in the technical field of fish luring equipment, which comprises an upper lamp holder and a lower lamp holder, first mounting seats are fixedly mounted on adjacent sides of the upper lamp holder and the lower lamp holder, six-edge glass fiber reinforced plastic is arranged between the two first mounting seats, and the six-edge glass fiber reinforced plastic is fixedly mounted on the upper lamp holder and the lower lamp holder. Second installation bases are fixedly installed on the upper side and the lower side of the six-edge glass fiber reinforced plastic, the six-edge glass fiber reinforced plastic is arranged, the glass fiber reinforced plastic can be better used for deep sea illumination and has corrosion resistance, sealing layers are arranged on the contact faces of the six-edge glass fiber reinforced plastic and the upper second installation base and the lower second installation base, and the sealing layers are silicone sealants. The silicone sealant can keep stable and durable performance in an underwater environment and has the advantages of being excellent in high temperature resistance, ultraviolet resistance and chemical corrosion resistance, glass fiber reinforced plastic can be installed outside the LED lamp body, the silicone sealant is used for sealing, the underwater corrosion resistance of the whole LED lamp body is greatly improved, the service life of the LED lamp body is prolonged, and the service life of the LED lamp body is prolonged. The practicability is high.
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Description

Technical Field

[0001] The utility model relates to the technical field of fish attracting devices, in particular to an illumination module for a deep-sea LED fish aggregating lamp. Background Art

[0002] Light fishing is a common auxiliary fishing method in the fishing industry. Since most fish attracting lights are installed on boats and the light penetration is not deep enough to attract fish schools deeper underwater, underwater fish aggregating lights have emerged. With the progress of technology, underwater fish aggregating lights have developed from the initial tungsten filament lamps and incandescent lamps to the current metal halide lamps and LED fish aggregating lamps. Compared with metal halide lamps, LED fish aggregating lamps have the following advantages: 1. They are bright immediately when turned on. Metal halide lamps need to be preheated to reach the required brightness, while LED fish aggregating lamps do not have this problem and can reach the maximum brightness as soon as they are turned on; 2. High safety. Metal halide lamps are filled with toxic substances such as mercury, and their outer shells are spherical bulbs made of glass, which are easy to break. While LED fish aggregating lamps use tempered glass, which is impact-resistant and not easy to break; 3. High brightness. The brightness of an LED fish aggregating lamp with the same power is 3 times that of a metal halide lamp, which means a larger range for attracting fish schools. The brightness of an LED fish aggregating lamp with the same power is 3 times that of a metal halide lamp, which means a larger range for attracting fish schools.

[0003] The existing patent with the publication number CN207316860U discloses an underwater fish aggregating lamp with overheat protection, which relates to an underwater fish aggregating lamp and includes a lamp body. A lamp post cylinder is arranged inside the lamp body. It also includes a control box and a cable seat. A waterproof socket is arranged above the top cover of the lamp body. The cable seat is provided with a power cord, a waterproof inlet for the incoming line and a plug. The waterproof socket is connected to the waterproof inlet for the incoming line. An anti-interference circuit board, a leakage switch and a socket are arranged inside the control box, and the plug is inserted into the socket. Compared with the prior art, for the underwater fish aggregating lamp with overheat protection of the present utility model, the lamp body is locked with the power cord to prevent the power cord from leaking water and seeping into the lamp body; the external control of this product is simple. The leakage protection switch and the common mode anti-interference circuit control box can avoid interfering with other shipboard equipment, and have lightning protection and electric shock protection.

[0004] When the existing deep-sea fishing lamps are used in seawater for a long time, they may be corroded by seawater, resulting in damage to the materials of the fishing lamps, which may further cause the fishing lamps to be unable to be used and affect the service life of the fishing lamps. For this reason, we propose an illumination module for a deep-sea LED fish aggregating lamp to solve the above-mentioned problems. Summary of the Utility Model

[0005] The purpose of this section is to outline some aspects of the embodiments of the present utility model and briefly introduce some preferred embodiments. In this section, as well as in the abstract of the specification and the name of the utility model, some simplifications or omissions may be made to avoid obscuring the purpose of this section, the abstract of the specification, and the name of the utility model, and such simplifications or omissions shall not be used to limit the scope of the present utility model.

[0006] Therefore, the purpose of the present utility model is to provide an illumination module for a deep - sea LED fish - attracting lamp, which can solve the problem that when the existing deep - sea trapping lamp is used in seawater for a long time, it may be corroded by seawater, resulting in damage to the materials of the trapping lamp, further causing the trapping lamp to be unable to be used and affecting the service life of the trapping lamp.

[0007] To solve the above - mentioned technical problems, the present utility model provides an illumination module for a deep - sea LED fish - attracting lamp, adopting the following technical solutions: It includes an upper lamp base and a lower lamp base. On one side adjacent to each other of the upper lamp base and the lower lamp base, a first mounting seat is fixedly installed. Between the two first mounting seats, there is a hexagonal glass fiber reinforced plastic. On the upper and lower sides of the hexagonal glass fiber reinforced plastic, a second mounting seat is fixedly installed. A sealing layer is adhesively provided on the contact surfaces between the hexagonal glass fiber reinforced plastic and the upper and lower second mounting seats, and the sealing layer is silicone sealant.

[0008] Optionally, on the circumferential outer walls of the first mounting seat and the second mounting seat, a first connecting plate and a second connecting plate are respectively fixedly installed at equal angles, and threaded grooves are formed on the surfaces of the first connecting plate and the second connecting plate.

[0009] Optionally, a washer and a first bolt are threadedly and movably connected between the threaded grooves of the first connecting plate and the second connecting plate, and the bottom of the first bolt is closely attached to the upper surface of the washer.

[0010] Optionally, an LED lamp body is fixedly installed between the two second mounting seats, and a plurality of fluorescent layers are fixedly arranged on the inner side wall of the hexagonal glass fiber reinforced plastic.

[0011] Optionally, a plurality of reinforcing ribs are provided at equal angles between the upper lamp base and the lower lamp base, and each reinforcing rib is a 316L stainless steel pipe.

[0012] Optionally, at the upper and lower ends of each reinforcing rib, a second bolt and a spherical nut are threadedly and movably connected. The spherical nut is located at the outermost end of the reinforcing rib, and the spherical nut and the second bolt are tightened against each other.

[0013] Optionally, both the first bolt and the second bolt are 316L stainless steel external hexagonal bolts.

[0014] Optionally, the spherical nut is a 316L stainless steel spherical nut.

[0015] In summary, the utility model includes at least one of the following beneficial effects: 1. By setting a hexagonal fiberglass reinforced plastic (FRP), the FRP can be better used for lighting in the deep sea and has corrosion resistance. By providing a sealing layer on the contact surfaces between the hexagonal FRP and the upper and lower second mounting seats, and the sealing layer is silicone sealant, the silicone sealant can maintain stable and durable performance in an underwater environment and has excellent characteristics of high temperature resistance, ultraviolet resistance, and chemical corrosion resistance. It achieves the installation of FRP outside the LED lamp body and uses silicone sealant for sealing, greatly improving the corrosion resistance of the overall LED lamp body underwater, extending the service life of the LED lamp body, and having strong practicability.

[0016] 2. By providing a plurality of reinforcing ribs between the upper lamp holder and the lower lamp holder, the reinforcing ribs are made of 316L stainless steel pipes. The 316L stainless steel pipes have strong corrosion resistance and stability, and also have the characteristics of high temperature and high pressure resistance. By threadedly and movably connecting a second bolt and a spherical nut at the upper and lower ends of the reinforcing rib respectively, and tightening the spherical nut against the second bolt, the second bolt is stretched within the screwed section, while the spherical nut is compressed, thus constituting the longitudinal compression of the threaded connection pair, improving the anti-loosening effect and achieving the enhancement of the stability of the overall fish attracting lamp. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings required for describing the embodiments will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0018] Figure 1 It is a schematic diagram of the overall structure of the present utility model;

[0019] Figure 2 It is a schematic internal sectional view of the overall structure of the present utility model;

[0020] Figure 3 It is another schematic diagram of the overall structure of the present utility model;

[0021] Figure 4 For the present utility model Figure 3 It is an enlarged schematic view of part A in the present utility model.

[0022] Explanation of reference numerals: 1. Upper lamp holder; 2. Lower lamp holder; 3. First mounting seat; 4. Hexagonal fiberglass reinforced plastic; 5. Second mounting seat; 6. Sealing layer; 7. First connecting plate; 8. Second connecting plate; 9. Threaded groove; 10. Washer; 11. First bolt; 12. LED lamp body; 13. Fluorescent layer; 14. Reinforcing rib; 15. Second bolt; 16. Spherical nut. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0023] The following will further elaborate on the present utility model in conjunction with the attached Figures 1-4 drawings.

[0024] Example 1. Referring to Figures 1-4 , in this example, in order to solve the problem that when the existing deep - sea trawl lights are used in seawater for a long time, they may be corroded by seawater, resulting in damage to the trawl light materials, and further causing the trawl lights to be unusable and affecting the service life of the trawl lights, the present utility model discloses an illumination module for a deep - sea LED fish - aggregating lamp,

[0025] which includes an upper lamp holder 1 and a lower lamp holder 2. On one adjacent side of the upper lamp holder 1 and the lower lamp holder 2, a first mounting seat 3 is fixedly installed. A hexagonal fiberglass 4 is provided between the two first mounting seats 3. On the upper and lower sides of the hexagonal fiberglass 4, a second mounting seat 5 is fixedly installed. A sealing layer 6 is adhesively provided on the contact surface between the hexagonal fiberglass 4 and the upper and lower second mounting seats 5. The sealing layer 6 is silicone sealant. Specifically, the hexagonal fiberglass 4 can resist the corrosion of various chemical substances, including acids, alkalis, salts, etc. Compared with traditional metal materials, such as steel and aluminum, fiberglass shows better tolerance in corrosive environments such as strong acids and strong alkalis. Silicone sealant is a very common sealing material, which can maintain stable and durable performance in an underwater environment and has excellent characteristics of high temperature resistance, ultraviolet resistance, and chemical corrosion resistance.

[0026] On the circumferential outer walls of the first mounting seat 3 and the second mounting seat 5, a first connecting plate 7 and a second connecting plate 8 are respectively fixedly installed at equal angles. Threaded grooves 9 are provided on the surfaces of the first connecting plate 7 and the second connecting plate 8. Specifically, the first mounting seat 3 and the second mounting seat 5 are connected and installed through the first connecting plate 7 and the second connecting plate 8 on their surfaces.

[0027] A washer 10 and a first bolt 11 are threadedly movably connected between the threaded grooves 9 of the first connecting plate 7 and the second connecting plate 8. The bottom of the first bolt 11 is closely attached to the upper surface of the washer 10. Specifically, the washer 10 is a 304 stainless - steel washer 10, which serves to prevent the first bolt 11 from pressing and damaging the surfaces of the first connecting plate 7 and the second connecting plate 8.

[0028] An LED lamp body 12 is fixedly installed between the two second mounting seats 5. A plurality of fluorescent layers 13 are fixedly arranged on the inner side wall of the hexagonal fiberglass 4.

[0029] The specific working principle is as follows: By setting the hexagonal fiberglass 4, the fiberglass can be better used for deep-sea lighting and has corrosion resistance. By providing a sealing layer 6 on the contact surfaces between the hexagonal fiberglass 4 and the upper and lower second mounting seats 5, the sealing layer 6 is silicone sealant. The silicone sealant can maintain stable and durable performance in the underwater environment and has excellent characteristics of high temperature resistance, ultraviolet resistance, and chemical corrosion resistance, greatly improving the corrosion resistance of the overall LED lamp body 12 underwater.

[0030] Example 2. Refer to Figures 1-3 , in this embodiment, in order to solve the problems of insufficient overall firmness and poor compressive resistance of the existing LED fish-aggregating lamp, based on the same concept as in the above Example 1, the lighting module for the deep-sea LED fish-aggregating lamp further includes:

[0031] A plurality of reinforcing ribs 14 are equiangularly provided between the upper lamp base 1 and the lower lamp base 2. Each reinforcing rib 14 is a 316L stainless steel pipe. Specifically, 316L stainless steel pipes are widely used in the marine environment because it has strong corrosion resistance and stability, and also has the characteristics of high temperature and high pressure resistance.

[0032] At both the upper and lower ends of each reinforcing rib 14, a second bolt 15 and a spherical nut 16 are threadedly and movably connected. The spherical nut 16 is located at the outermost end of the reinforcing rib 14, and the spherical nut 16 and the second bolt 15 are tightened against each other. Specifically, the spherical nut 16 and the second bolt 15 are tightened against each other. The second bolt 15 is stretched within the screwed section, while the spherical nut 16 is compressed, thus forming the longitudinal compression of the threaded connection pair, thereby improving the anti-loosening effect.

[0033] The first bolt 11 and the second bolt 15 are both 316L stainless steel external hexagonal bolts. Specifically, the first bolt 11 and the second bolt 15 can prevent seawater corrosion.

[0034] The spherical nut 16 is a 316L stainless steel spherical nut. Specifically, the spherical nut 16 can prevent seawater corrosion.

[0035] The specific working principle is as follows: By providing a plurality of reinforcing ribs 14 between the upper lamp base 1 and the lower lamp base 2, the reinforcing ribs 14 are made of 316L stainless steel pipes. The 316L stainless steel pipes have strong corrosion resistance and stability, and also have the characteristics of high temperature and high pressure resistance. By threadedly and movably connecting a second bolt 15 and a spherical nut 16 at the upper and lower ends of the reinforcing rib 14 respectively, and tightening the spherical nut 16 and the second bolt 15 against each other, the second bolt 15 is stretched within the screwed section, while the spherical nut 16 is compressed, thus forming the longitudinal compression of the threaded connection pair, thereby improving the anti-loosening effect and improving the compressive capacity of the overall device.

[0036] The above are all preferred embodiments of the present utility model, and the protection scope of the present utility model is not limited thereby. Therefore, all equivalent changes made according to the structure, shape, and principle of the present utility model shall be covered within the protection scope of the present utility model.

Claims

1. A lighting module for a deep-sea LED fish attracting lamp, comprising an upper lamp holder (1) and a lower lamp holder (2), characterized in that: A first mounting seat (3) is fixedly mounted on one side adjacent to the upper lamp holder (1) and the lower lamp holder (2); a hexagonal fiberglass (4) is provided between the two first mounting seats (3); a second mounting seat (5) is fixedly mounted on the upper and lower sides of the hexagonal fiberglass (4); a sealing layer (6) is glued to the contact surface between the hexagonal fiberglass (4) and the upper and lower second mounting seats (5); the sealing layer (6) is a silicone sealant.

2. The lighting module for deep-sea LED fish attracting lamp according to claim 1, characterized in that: A first connecting plate (7) and a second connecting plate (8) are respectively fixedly mounted at equal angles on the circumferential outer walls of the first mounting seat (3) and the second mounting seat (5), and thread grooves (9) are provided on the surfaces of the first connecting plate (7) and the second connecting plate (8).

3. The lighting module for deep-sea LED fish attracting lamp according to claim 2, characterized in that: A washer (10) and a first bolt (11) are movably connected by threads between the thread grooves (9) of the first connecting plate (7) and the second connecting plate (8), and the bottom of the first bolt (11) is tightly attached to the upper surface of the washer (10).

4. The lighting module for deep-sea LED fish attracting lamp according to claim 3, characterized in that: An LED lamp body (12) is fixedly mounted between the two second mounting seats (5), and a plurality of fluorescent layers (13) are fixedly arranged on the inner side wall of the hexagonal fiberglass (4).

5. The lighting module for deep-sea LED fish attracting lamp according to claim 4, characterized in that: A plurality of reinforcing ribs (14) are arranged at equal angles between the upper lamp holder (1) and the lower lamp holder (2), and each of the reinforcing ribs (14) is a 316L stainless steel tube.

6. The lighting module for deep-sea LED fish attracting lamp according to claim 5, characterized in that: The upper and lower ends of each reinforcing rib (14) are movably connected with a second bolt (15) and a spherical nut (16) by threading, the spherical nut (16) is located at the outermost end of the reinforcing rib (14), and the spherical nut (16) and the second bolt (15) are tightened against each other.

7. The lighting module for deep-sea LED fish attracting lamp according to claim 6, characterized in that: The first bolt (11) and the second bolt (15) are both 316L stainless steel hexagonal bolts.

8. The lighting module for deep-sea LED fish attracting lamp according to claim 7, characterized in that: The spherical nut (16) is a 316L stainless steel spherical nut.

Citation Information

Patent Citations

  • Overheat protection underwater fishing lamp

    CN207316860U