A ship shore power automatic installation device

By using a cam-driven moving block to clamp the shore power box and combining it with a limit ring locking system, the problem of repeated adjustments required during the installation of existing shore power boxes is solved, enabling rapid installation and disassembly, improving the stability and safety of the equipment, and reducing vibration damage to the equipment.

CN120389302BActive Publication Date: 2026-01-02WEIHAI COSCO SHIPBUILDING TECH CO LTD
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Patent Information

Application Number
CN202510482499.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-17
Publication Date
2026-01-02
Estimated Expiration
2045-04-17

AI Technical Summary

Technical Problem

The existing shore power boxes require repeated adjustments based on the size of the box during installation, which increases the difficulty of installation and reduces efficiency.

Method used

The shore power box is clamped by a cam-driven moving block, combined with a locking system of limit rings and limit holes, and a double telescopic spring group to provide continuous clamping force, ensuring stability and safety; reinforcing ribs improve overall stability, damping rods and springs form a shock absorption system, and the sliding connection of the guide rail to the moving plate facilitates equipment maintenance.

Benefits of technology

It enables rapid installation and disassembly, improves installation efficiency, enhances the stability and safety of the equipment, reduces vibration damage to the equipment, and improves waterproof and protective performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of ship shore power automation installation equipment, belong to port shore power technical field, including mounting plate, the upper portion of the mounting plate is equipped with shore power box, the outer surface of the mounting plate is equipped with installation component for installing shore power box, the outer surface of the shore power box is equipped with, the outer surface of the mounting plate is equipped with connecting component, by the rotation of cam drive moving block clamping shore power box, it is realized to fast installation, when needing to disassemble, just reverse rotation cam, moving block can be easily released, so that disassembly process is also fast, improve work efficiency, reduce the time required for installation and replacement equipment, double telescopic spring group provides sustained elastic clamping force, cooperate with limiting hole grading locking system, it can be adapted to different specifications shore power box, by the cooperation of limiting ring, limiting column and limiting hole, it is guaranteed that moving block can keep locked state after clamping in place, further enhance the stability and security of installation structure.
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Description

TECHNICAL FIELD

[0001] The present application relates to the port shore power technical field, more particularly, to a kind of ship shore power automation installation equipment. BACKGROUND

[0002] Ship shore power system (APS) is replaced by shore power supply during the period of ship berthing diesel power generation, realizes energy saving and emission reduction. The system is composed of shore distribution box, cable connection, ship power receiving three parts.

[0003] The prior art with publication number CN116544794A discloses a yacht marina shore power box, comprising a base, the base top is fixed with a storage box, the storage box top and side wall are through opening structure, the base top is hinged with a flip cover, the flip cover is L-shaped structure, the flip cover is closed to the opening structure of storage box by turning over, two groups of turning over assemblies are connected between the inner wall of flip cover and the inside bottom surface of storage box, the base is internally provided with an adjusting assembly, one side of the adjusting assembly penetrates the base and the bottom surface of storage box. The invention installs the shore power box on the wharf, the personnel on the wharf flips out the inner box and the power connection assembly from the storage box in advance, then inserts the power connection assembly into the inner box to close, so that the power connection assembly is protected when it is turned out for use, and because the power connection assembly and the inner box are stretched out in advance, the personnel on the yacht only need to connect the cable with the power connection assembly through the sleeve, which improves the convenience of yacht cable connection.

[0004] Although the device has many beneficial effects, there are still the following problems: although the shore power box improves the convenience of yacht cable connection, the traditional shore power box cannot be installed according to the size of the shore power box during installation, and needs to be adjusted repeatedly, which increases the installation difficulty and procedure, and reduces the installation efficiency. SUMMARY

[0005] (I) Technical problems solved

[0006] In view of the shortcomings of the prior art, the present application provides a kind of ship shore power automation installation equipment, which solves the above problems.

[0007] (II) Technical solutions

[0008] In order to achieve the above-mentioned purpose, the present application provides the following technical scheme: A ship shore power automatic installation equipment, including the installation plate, the top of the installation plate is equipped with the shore power box, the outer surface of the installation plate is equipped with the installation assembly for installing the shore power box, the outer surface of the shore power box is equipped with, the outer surface of the installation plate is equipped with the connecting assembly, the installation assembly includes, the connecting column, the extension spring one, the sliding groove and the connecting block, the top of the installation plate is equipped with two symmetrical distribution moving blocks, the shore power box is located between the two moving blocks, the top of the installation plate is equipped with two symmetrical distribution sliding grooves, the inside of the two sliding grooves is slidably connected with the two moving blocks, the two moving blocks are arranged in the form of π, two symmetrical distribution connecting columns are movably sleeved between the two moving blocks, the shore power box is located between the two connecting columns, the outer surface of the two connecting columns is sleeved with the extension spring one, the two extension springs one are located between the two moving blocks, the end of the two connecting columns is fixedly connected with the connecting block.

[0009] Preferably, the installation assembly further includes a handle and a cam, the top of the installation plate is rotatably connected with the cam, the cam is located between the connecting block and the adjacent moving block and is movably connected therewith, the bottom of the cam is fixedly installed with the handle.

[0010] Preferably, the outer surface of the connecting block is provided with a rectangular groove, the inside of the rectangular groove is slidably connected with a limiting ring, the outer surface of the limiting ring is inserted with a limiting column, the inside of the rectangular groove is provided with a plurality of equidistant distribution limiting holes, the limiting column is movably inserted with the corresponding limiting hole, and the limiting ring is sleeved with the handle.

[0011] Preferably, the two sides and four corners of the installation plate are provided with mounting holes, and the bottom of the installation plate is provided with a plurality of equidistant distribution heat dissipation holes.

[0012] Preferably, it further includes a protective reinforcing assembly, the protective reinforcing assembly includes a reinforcing rib, a damping rod and a spring, the two outer surfaces of the shore power box are fixedly connected with the reinforcing rib, the two reinforcing ribs are arranged in the form of X, the bottom inner wall of the shore power box is fixedly connected with a plurality of equidistant distribution damping rods, and the outer surfaces of the plurality of damping rods are sleeved with springs.

[0013] Preferably, the top of the shore power box is provided with a plurality of equidistant distribution heat dissipation through holes, the plurality of damping rods are located on both sides of the plurality of heat dissipation through holes, and the rear outer surface of the shore power box is provided with a plurality of equidistant distribution through holes.

[0014] Preferably, the protective reinforcing assembly further includes a moving plate and a guide rail, the top of the shore power box is fixedly connected with two symmetrical distribution guide rails, and the outer surfaces of the two guide rails are slidably connected with the moving plate.

[0015] Preferably, the rear side top of the shore power box is fixedly connected with a water blocking edge, and the top of the moving plate is fixedly installed with an air bag.

[0016] Preferably, the connecting assembly comprises a shell, a plug-in column and a second elastic spring, four shells of the same structure are fixedly connected at the four corners of the top, the second elastic spring is elastically connected in the interiors of the four shells, the plug-in column is slidably connected in the interiors of the shells, and the plug-in column is in movable contact with the second elastic spring.

[0017] Preferably, an L-shaped limiting groove is formed in the outer surface of the shell, a clamping column is slidably connected in the limiting groove, the clamping column is fixedly connected with the plug-in column, and the four plug-in columns are movably plugged into the corresponding mounting holes.

[0018] (Three) beneficial effects

[0019] Compared with the prior art, the present application provides a ship shore power automatic installation equipment, which has the following beneficial effects:

[0020] 1. The ship shore power automatic installation equipment, by rotating the cam to drive the moving block to clamp the shore power box, realizes quick installation, when disassembly is needed, only reverse rotation of the cam is needed, the moving block can be easily released, the disassembly process is also quick, the working efficiency is improved, the time required for installation and replacement of equipment is reduced, the double-elastic spring set provides continuous elastic clamping force, and the limiting hole step locking system can adapt to shore power boxes of different specifications.

[0021] 2. The ship shore power automatic installation equipment, by cooperation of the limiting ring, the limiting column and the limiting hole, it is ensured that the moving block can keep locked after clamping in place, even if the pressure of the cam is released, the equipment will not loosen automatically, and this double protection mechanism further enhances the stability and safety of the installation structure.

[0022] 3. The ship shore power automatic installation equipment, by the X-shaped reinforcing ribs, the overall stability and rigidity of the shore power box are greatly improved, which helps to maintain the stability of the shore power box and the internal equipment in complex working environment.

[0023] 4. The ship shore power automatic installation equipment, by the damping rod and the spring composed of the damping system, external impact and vibration can be effectively absorbed and slowed down, the internal equipment is protected from damage, vibration transmission is further reduced, and the overall shockproof effect is improved.

[0024] 5. The ship shore power automatic installation equipment, by the moving plate slidably connected with the guide rail, it is convenient for the staff to open and close, which protects the equipment at the top and facilitates the maintenance of the equipment, the design of the water blocking edge and the air bag further improves the waterproof and protective performance of the shore power box, and ensures the safety of the equipment. BRIEF DESCRIPTION OF DRAWINGS

[0025] Figure 1 It is a structural schematic view of the embodiment of the present application;

[0026] Figure 2 It is a structural schematic view of the mounting assembly of the present application;

[0027] Figure 3 It is a structural schematic view of the limiting ring of the present application;

[0028] Figure 4 It is a structural schematic view of the present application Figure 3 It is a partial enlarged structural schematic view of A in the present application;

[0029] Figure 5 It is a structural schematic view of the heat dissipation hole of the present application;

[0030] Figure 6 It is a structural schematic view of the reinforcing rib of the present application;

[0031] Figure 7 It is a partial structural enlarged schematic view of B in the present application; Figure 6

[0032] Figure 8 It is a structural schematic view of the damping rod of the present application;

[0033] Figure 9 It is a structural schematic view of the clamping block of the present application;

[0034] Figure 10 It is a structural schematic view of the connecting assembly of the present application.

[0035] In the figure: 1, mounting plate; 2, shore power box; 3, mounting assembly; 301, cam; 302, moving block; 303, connecting column; 304, extension spring one; 305, sliding groove; 306, connecting block; 307, mounting hole; 308, limiting ring; 309, handle; 310, rectangular groove; 311, limiting hole; 312, limiting column; 313, heat dissipation hole; 4, protective reinforcing assembly; 401, reinforcing rib; 402, moving plate; 403, air bag; 404, heat dissipation through hole; 405, through hole; 406, guide rail; 407, damping rod; 408, spring; 409, water retaining edge; 5, connecting assembly; 501, shell; 502, plug-in column; 503, limiting groove; 504, extension spring two; 505, clamping column. DETAILED DESCRIPTION

[0036] ​With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative effort belong to the scope of the present application.

[0037] Please refer to Figures 1-10 The present application provides a technical solution:

[0038] Embodiment one:

[0039] A ship shore power automatic installation equipment, including installation plate 1, the top of installation plate 1 is equipped with shore power box 2, the outer surface of installation plate 1 is equipped with installation assembly 3 for installing shore power box 2, the outer surface of shore power box 2 is equipped with 4, the outer surface of installation plate 1 is equipped with connecting assembly 5, installation assembly 3 includes 302, connecting column 303, telescopic spring one 304, sliding groove 305 and connecting block 306, the top of installation plate 1 is equipped with two symmetrical distribution moving blocks 302, shore power box 2 is located between two moving blocks 302, the top of installation plate 1 is equipped with two symmetrical distribution sliding grooves 305, the inside of two sliding grooves 305 is slidably connected with two moving blocks 302, two moving blocks 302 are arranged in π-shaped structure, two moving blocks 302 are movably sleeved with two symmetrical distribution connecting columns 303, shore power box 2 is located between two connecting columns 303, the outer surface of two connecting columns 303 is sleeved with telescopic spring one 304, two telescopic springs one 304 are located between two moving blocks 302, the end of two connecting columns 303 is fixedly connected with connecting block 306.

[0040] Installation assembly 3 further includes 301 and handle 309, the top of installation plate 1 is rotatably connected with cam 301, cam 301 is located between connecting block 306 and adjacent moving block 302 and movably connected therewith, the bottom of cam 301 is fixedly installed with handle 309.

[0041] The outer surface of connecting block 306 is equipped with rectangular groove 310, the inside of rectangular groove 310 is slidably connected with limiting ring 308, the outer surface of limiting ring 308 is inserted with limiting column 312, the inside of rectangular groove 310 is equipped with multiple equidistant distribution limiting holes 311, limiting column 312 is movably inserted with corresponding limiting hole 311, limiting ring 308 is sleeved with handle 309.

[0042] The two sides of installation plate 1 are equipped with mounting holes 307 at four corners, the bottom of installation plate 1 is equipped with multiple equidistant distribution heat dissipation holes 313.

[0043] In the initial installation, the moving block 302 is freely sliding on the top of the installation plate 1 through the sliding groove 305 and is in a relatively loose position, so that the distance between the two moving blocks 302 is greater than the width of the shore power box 2, at this time the telescopic spring one 304 is in a natural elongation state, the connecting column 303 penetrates through the two moving blocks 302, the connecting block 306 is fixed at the end of the connecting column 303, the cam 301 is rotated to the non-working position through the handle 309, and does not contact the connecting block 306 and the moving block 302, the limiting ring 308 in the locking assembly can freely slide in the rectangular groove 310, and the limiting column 312 is not inserted into any limiting hole 311, the shore power box 2 is placed on the top of the installation plate 1 and between the two moving blocks 302, the cam 301 is rotated in the clockwise direction by operating the handle 309, the convex surface of the cam 301 gradually contacts and exerts pressure on the connecting block 306, pushing the connecting block 306 to move to both sides, since the connecting block 306 is fixedly connected with the connecting column 303, the connecting column 303 drives the two moving blocks 302 to slide along the sliding groove 305 to both sides of the shore power box 2, until the two moving blocks 302 tightly clamp the shore power box 2, in this process, the telescopic spring one 304 is compressed, storing elastic potential energy, providing a certain pre-tightening force for clamping, when the two moving blocks 302 clamp the shore power box 2 in place, the limiting ring 308 is manually slid along the rectangular groove 310 to the appropriate position, so that the limiting column 312 on the limiting ring 308 is aligned with a certain limiting hole 311 in the rectangular groove 310, and the limiting column 312 is inserted into the limiting hole 311, realizing the locking function, at this time, even if the pressure of the cam 301 is released, the moving block 302 will not loosen automatically due to the limiting action of the limiting column 312, thereby maintaining the stable clamping of the shore power box 2, since the limiting ring 308 is sleeved with the handle 309, the operator can conveniently drive the sliding of the limiting ring 308 through the rotation of the handle 309, improving the convenience of operation, the heat dissipation holes 313 opened at the bottom of the installation plate 1 help to dissipate the heat generated by the shore power box 2 during work, improving the operation stability, the L-shaped structure design of the installation plate 1 and the installation holes 307 on both sides facilitate the fixed connection of the whole installation structure with other equipment or wall surface, ensuring the stability and reliability of the installation.

[0044] Embodiment two:

[0045] In this embodiment, a protective reinforcing assembly is also included, which comprises a reinforcing rib 401, a damping rod 407 and a spring 408, the two sides of the outer surface of the shore power box 2 are fixedly connected with the reinforcing rib 401, both of the two reinforcing ribs 401 are arranged in an X shape, the inner wall of the bottom of the shore power box 2 is fixedly connected with a plurality of equidistantly distributed damping rods 407, and the outer surfaces of the plurality of damping rods 407 are sleeved with springs 408.

[0046] The top of the shore power box 2 is provided with a plurality of equidistantly distributed heat dissipation through holes 404, a plurality of damping rods 407 are located on both sides of the plurality of heat dissipation through holes 404, and the rear side outer surface of the shore power box 2 is provided with a plurality of equidistantly distributed through holes 405.

[0047] The protective reinforcing assembly further comprises a moving plate 402 and a guide rail 406, and the top of the shore power box 2 is fixedly connected with two symmetrically distributed guide rails 406, and the outer surfaces of the two guide rails 406 are slidingly connected with the moving plate 402.

[0048] The rear top of the shore power box 2 is fixedly connected with a water blocking edge 409, and the top of the moving plate 402 is fixedly installed with an air bag 403.

[0049] The two sides of the shore power box 2 are reinforced by the fixedly connected reinforcing ribs 401, the reinforcing ribs 401 are arranged in an X shape, which greatly improves the overall stability and rigidity of the shore power box 2, a plurality of damping rods 407 and springs 408 are combined in the shore power box 2, forming a damping system, when the shore power box 2 is impacted or vibrated by external factors, the damping rods 407 and springs 408 can absorb and reduce the impact and vibration, protecting the equipment inside the shore power box 2 from damage, a plurality of equidistantly distributed heat dissipation through holes 404 are arranged on the top and bottom of the shore power box 2, the heat dissipation through holes 404 are used to help the equipment inside the shore power box 2 dissipate heat and prevent overheating, since the plurality of damping rods 407 are located on both sides of the plurality of heat dissipation through holes 404, the damping effect is ensured without affecting the heat dissipation performance, the top of the shore power box 2 is slidingly connected with the moving plate 402 through the guide rail 406, so that the moving plate 402 can be easily opened and closed, for protecting the equipment on the top of the shore power box 2, the rear top of the shore power box 2 is fixedly provided with a water blocking edge 409 to prevent liquid from entering the inside of the shore power box 2 from the rear side, improving the waterproof performance of the shore power box 2, the top of the moving plate 402 is further fixedly installed with an air bag 403, when the moving plate 402 is closed, the air bag 403 can play a buffering and sealing role, further improving the protection effect, the air bag 403 is made of silica gel and filled with inert gas, and is fixed to the top edge of the moving plate 402, when the moving plate 402 is closed, the air bag 403 is deformed under pressure and forms a sealed contact surface with the top of the shore power box 2.

[0050] Example three:

[0051] The connecting assembly 5 comprises a shell 501, a plug-in column 502 and a telescopic spring two 504, the top of the shell 501 is fixedly connected with the shell 501, the inside of the four shells 501 is elastically connected with the telescopic spring two 504, the inside of the shell 501 is slidingly connected with the plug-in column 502, and the plug-in column 502 is in movable contact with the telescopic spring two 504.

[0052] The outer surface of the shell 501 is provided with an L-shaped limiting groove 503, the inside of the limiting groove 503 is slidably connected with a clamping column 505, the clamping column 505 is fixedly connected with the inserting column 502, and the four inserting columns 502 are movably inserted into the corresponding mounting holes 307.

[0053] The clamping column 505 is clamped above the limiting groove 503, the movement of the clamping column 505 makes the clamping column 505 move along the track of the limiting groove 503, at this time, the second telescopic spring 504 has no extrusion force and drives the pushing clamping column to move to the direction of the mounting hole 307, so that the inserting column 502 is inserted into the mounting hole 307, and the convenience of the connection of the mounting plate 1 is further improved.

[0054] When the staff needs to use, in the initial stage of installation, the moving blocks 302 are freely slid on the top of the mounting plate 1 through the sliding grooves 305 and are in a relatively loose position, so that the distance between the two moving blocks 302 is greater than the width of the shore power box 2, at this time, the first telescopic spring 304 is in a natural elongation state, the connecting column 303 penetrates through the two moving blocks 302, the connecting block 306 is fixed at the end of the connecting column 303, the cam 301 is rotated to a non-working position through the handle 309 and does not contact the connecting block 306 and the moving block 302, the limiting ring 308 in the locking assembly can freely slide in the rectangular groove 310, and the limiting column 312 is not inserted into any limiting hole 311, the shore power box 2 is placed on the top of the mounting plate 1 and between the two moving blocks 302, the cam 301 is rotated in the clockwise direction by operating the handle 309, the convex surface of the cam 301 gradually contacts and applies pressure to the connecting block 306, the connecting block 306 is pushed to move to both sides, since the connecting block 306 is fixedly connected with the connecting column 303, the connecting column 303 drives the two moving blocks 302 to slide along the sliding grooves 305 to both sides of the shore power box 2, until the two moving blocks 302 tightly clamp the shore power box 2;

[0055] In this process, the first telescopic spring 304 is compressed and stores elastic potential energy, which provides a certain pre-tightening force for clamping, after the two moving blocks 302 clamp the shore power box 2 in place, the limiting ring 308 is manually slid along the rectangular groove 310 to a suitable position, the limiting column 312 on the limiting ring 308 is aligned with a certain limiting hole 311 in the rectangular groove 310, and the limiting column 312 is inserted into the limiting hole 311, so as to realize the locking function, at this time, even if the pressure of the cam 301 is released, the moving blocks 302 will not be loosened automatically due to the limiting action of the limiting column 312, so as to keep the stable clamping of the shore power box 2, since the limiting ring 308 is sleeved with the handle 309, the operator can conveniently drive the sliding of the limiting ring 308 through the rotation of the handle 309, and the convenience of operation is improved.

[0056] The heat dissipation holes 313 opened at the bottom of the mounting plate 1 help dissipate the heat generated by the shore power box 2 during operation, improving its operating stability. The L-shaped structure of the mounting plate 1 and the mounting holes 307 on both sides facilitate the secure connection of the entire installation structure with other equipment or the wall, ensuring the stability and reliability of the installation. The shore power box 2 is reinforced on both sides by the fixed connection of the reinforcing ribs 401, which are arranged in an X shape, greatly improving the overall stability and rigidity of the shore power box 2. The combination of multiple damping rods 407 and springs 408 inside the shore power box 2 forms a damping system that can absorb and reduce external shocks and vibrations when the shore power box 2 is subjected to such shocks or vibrations, protecting the equipment inside the shore power box 2 from damage. The top and bottom of the shore power box 2 are provided with multiple equidistantly distributed heat dissipation holes 404, which help dissipate heat from the equipment inside the shore power box 2 and prevent overheating. Since multiple damping rods 407 are located on both sides of the multiple heat dissipation holes 404, the shockproof effect is ensured without affecting the heat dissipation performance. The top of the shore power box 2 is slidably connected to the moving plate 402 through the guide rail 406, allowing the moving plate 402 to be easily opened and closed to protect the equipment on the top of the shore power box 2. The rear top of the shore power box 2 is fixed with a water barrier 409 to prevent liquid from entering the interior of the shore power box 2 from the rear side, improving the waterproof performance of the shore power box 2. The top of the moving plate 402 is also fixedly installed with an air bag 403 that can act as a buffer and seal when the moving plate 402 is closed, further improving the protection effect. The air bag 403 is made of silicone and filled with inert gas, and is fixed to the top edge of the moving plate 402. When the moving plate 402 is closed, the air bag 403 is deformed under pressure and forms a sealed contact surface with the top of the shore power box 2. The clamping column 505 is clamped above the limiting groove 503, and the moving clamping column 505 moves along the trajectory of the limiting groove 503. At this time, the second extension spring 504 has no extrusion force, and the pushing clamping column moves in the direction of the mounting hole 307, causing the insertion column 502 to insert into the mounting hole 307, further improving the convenience of connecting the mounting plate 1.

[0057] The basic principles, main features, and advantages of the present application have been shown and described. Those skilled in the art should understand that the present application is not limited to the above examples, and the above examples and descriptions in the specification are only preferred examples of the present application and are not intended to limit the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements fall within the scope of the claimed application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A shore power automatic installation apparatus for a marine vessel comprising an installation plate (1), characterized in that: The upper side of the mounting plate (1) is provided with a shore power box (2), the outer surface of the mounting plate (1) is provided with a mounting assembly (3) for mounting the shore power box (2), the outer surface of the shore power box (2) is provided with four, the outer surface of the mounting plate (1) is provided with a connecting assembly (5), the mounting assembly (3) comprises (302), a connecting column (303), a telescopic spring (304), a sliding groove (305) and a connecting block (306), the top of the mounting plate (1) is provided with two symmetrically distributed moving blocks (302), the shore power box (2) is located between the two moving blocks (302), the top of the mounting plate (1) is provided with two symmetrically distributed sliding grooves (305), the interiors of the two sliding grooves (305) are slidably connected with the two moving blocks (302), the two moving blocks (302) are arranged in a π-shaped structure, two symmetrically distributed connecting columns (303) are movably sleeved between the two moving blocks (302), the shore power box (2) is located between the two connecting columns (303), the outer surfaces of the two connecting columns (303) are sleeved with telescopic springs (304), the two telescopic springs (304) are located between the two moving blocks (302), the end portions of the two connecting columns (303) are fixedly connected with connecting blocks (306). The mounting assembly (3) further comprises (301) and a handle (309), the top of the mounting plate (1) is rotatably connected with a cam (301), the cam (301) is located between the connecting block (306) and the adjacent moving block (302) and is movably connected therewith, the bottom of the cam (301) is fixedly installed with a handle (309); The outer surface of the connecting block (306) is provided with a rectangular groove (310), the interior of the rectangular groove (310) is slidably connected with a limiting ring (308), the outer surface of the limiting ring (308) is inserted with a limiting column (312), the interior of the rectangular groove (310) is provided with a plurality of equidistantly distributed limiting holes (311), the limiting column (312) is movably inserted with the corresponding limiting hole (311), and the limiting ring (308) is sleeved with the handle (309).

2. A shore power automated installation apparatus for a marine vessel as claimed in claim 1, wherein: The two sides and four corners of the mounting plate (1) are provided with mounting holes (307), and the bottom of the mounting plate (1) is provided with a plurality of equidistantly distributed heat dissipation holes (313).

3. A shore power automated installation apparatus for a marine vessel as claimed in claim 2, wherein: It further comprises a protective reinforcing assembly, the protective reinforcing assembly comprises a reinforcing rib (401), a damping rod (407) and a spring (408), the outer surfaces of the two sides of the shore power box (2) are fixedly connected with reinforcing ribs (401), the two reinforcing ribs (401) are arranged in an X shape, the bottom inner wall of the shore power box (2) is fixedly connected with a plurality of equidistantly distributed damping rods (407), and the outer surfaces of the plurality of damping rods (407) are sleeved with springs (408).

4. A shore power automated installation apparatus for a marine vessel as claimed in claim 3, wherein: The top of the shore power box (2) is provided with a plurality of equidistantly distributed heat dissipation through holes (404), a plurality of damping rods (407) are located on both sides of the heat dissipation through holes (404), and the rear outer surface of the shore power box (2) is provided with a plurality of equidistantly distributed through holes (405).

5. A shore power automated installation apparatus for a marine vessel as claimed in claim 4, wherein: The protective reinforcing assembly further comprises a moving plate (402) and a guide rail (406), and the top of the shore power box (2) is fixedly connected with two symmetrically distributed guide rails (406), and the outer surfaces of the two guide rails (406) are slidingly connected with the moving plate (402).

6. A shore power automated installation apparatus for a marine vessel as claimed in claim 5, wherein: The rear top of the shore power box (2) is fixedly connected with a water retaining rail (409), and the top of the moving plate (402) is fixedly installed with an air bag (403).

7. A shore power automated installation apparatus for a marine vessel as claimed in claim 6, wherein: The connecting assembly (5) comprises a shell (501), a plug-in column (502) and a telescopic spring two (504), the top four corners are fixedly connected with the same structure shell (501), the interiors of the four shells (501) are elastically connected with the telescopic spring two (504), the interiors of the shells (501) are slidingly connected with the plug-in column (502), and the plug-in column (502) is in movable contact with the telescopic spring two (504).

8. A shore power automated installation apparatus for a marine vessel as claimed in claim 7, characterised in that: The outer surface of the shell (501) is provided with an L-shaped limiting groove (503), the limiting groove (503) is slidingly connected with a clamping column (505), the clamping column (505) is fixedly connected with the plug-in column (502), and the four plug-in columns (502) are movably inserted into the corresponding mounting holes (307).

Citation Information

Patent Citations

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    CN116544794A

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    CN211266131U

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