Ship climbing simulation trainer

By designing a ship climbing simulator, a rubber rod is used to shake a vertical bar to simulate the swaying motion of sailing. Combined with detachable connecting rods and ropes to prevent tipping, the problem of lacking a realistic environment in ship climbing training is solved, achieving a safe and efficient simulation training effect.

CN223601923UActive Publication Date: 2025-11-28WUHAN GUANDU EQUIP MFG CO LTD
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Patent Information

Application Number
CN202423048745.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2025-11-28
Estimated Expiration
2034-12-11

AI Technical Summary

Technical Problem

Existing technologies struggle to simulate the swaying of a ship during navigation, making it difficult for crew members to effectively conduct climbing training, and there is a lack of simulation training equipment for real-world environments.

Method used

Design a ship climbing simulator. A vertical rod is connected to a rubber rod, which causes the vertical rod to sway, simulating the swaying of a ship during navigation. The connecting rod and connecting ring can be detached to install a regular climbing ladder. Ropes prevent the vertical rod from tipping over, and counterweights improve stability.

Benefits of technology

It provides a climbing training environment that closely resembles actual sailing conditions, improving training effectiveness, enhancing safety and flexibility, and adapting to different training needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of ship climbing training, and discloses a ship climbing simulation training device, which comprises a bottom plate, a vertical plate and two vertical rods, the vertical plate is vertically fixed above the bottom plate and deviates to the front end, a transverse plate is transversely fixed at the top of the vertical plate, the two vertical rods are arranged above the bottom plate on two sides of the front end of the vertical plate, and the two vertical rods are vertically fixed on the bottom plate. Rubber rods are arranged between the two vertical rods and the bottom plate, multiple circles of ring blocks are arranged on the outer rings of the upper portions of the rubber rods in a surrounding mode and embedded into the lower portions of the vertical rods, clamping blocks are fixed to the lower portions of the rubber rods and embedded into the bottom plate, and connecting rings are fixed to the inner sides of the upper portions of the vertical rods through connecting rods. According to the technical scheme, the two vertical rods are arranged on the two sides of the front end of the bottom plate, the bottoms of the two vertical rods are connected with the bottom plate through the rubber rods, and when the rope ladder is fixed to the tops of the vertical rods for climbing training, the rubber rods enable the vertical rods to continuously shake, so that the rope ladder also shakes; a rope ladder which is close to a sailing state is provided for carrying out climbing training.
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Description

TECHNICAL FIELD

[0001] The utility model relates to ship climb training technical field, concretely is a kind of ship climb simulation trainer. BACKGROUND

[0002] Ship climb simulation training has vital significance, by simulating ship climb environment, can help crew familiarize and master correct climbing skill, enhance their body coordination and balance, to reduce the safety accident caused by improper operation in actual work, ship climb simulation training can also improve the ability of crew to deal with emergency, so that they can quickly respond when facing sudden situation, ensure the safety of self and ship, through repeated practice and simulation, crew can accumulate valuable practical experience, lay a solid foundation for actual sea operation.

[0003] Most of the soft ladders used by ships are different from those on ships, as land is not convenient to simulate the sway of the ship during navigation, and crew cannot use soft ladders close to the state of navigation for climbing training. Therefore, we propose a ship climb simulation trainer. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a ship climb simulation trainer, by setting two vertical rods on the front end of the bottom plate, the bottom of the two vertical rods is connected with the bottom plate through a rubber rod, when the fixed soft ladder is on the top of the vertical rod for climbing training, the rubber rod makes the vertical rod sway constantly, which makes the soft ladder sway, providing a soft ladder close to the state of navigation for climbing training, solving the problem proposed in the background technology.

[0005] To achieve the above object, the utility model provides the following technical scheme: a ship climb simulation trainer, comprising a bottom plate, a vertical plate and a vertical rod, the vertical plate is vertically fixed above the bottom plate and deviated to the front end, and a horizontal plate is also horizontally fixed on the top of the vertical plate; the vertical rod is provided with two vertical rods above the bottom plate and placed on both sides of the front end of the vertical plate, rubber rods are arranged between the two vertical rods and the bottom plate, a plurality of ring blocks are arranged around the upper outer ring of the rubber rod and embedded into the lower inner part of the vertical rod, a clamping block is fixed below the rubber rod and embedded into the inner part of the bottom plate, and a connecting ring is fixed on the inner side of the upper vertical rod through a connecting rod.

[0006] By adopting the above technical scheme, the soft ladder is fixed above the two vertical rods, and then during climbing training, the rubber rod makes the vertical rod in a constant state of sway, which makes the soft ladder also in a state of sway, which is conducive to providing a training environment closer to the actual situation.

[0007] Optionally, a plurality of screw holes are uniformly arranged on the inner side surface of the vertical rod, and the connecting rod is installed on the upper side edge of the vertical rod by being screwed into the screw holes.

[0008] By adopting the technical scheme, the connecting rod and the connecting ring are detachably arranged, so that the connecting rod and the connecting ring can be detached, and then a common ladder is installed to facilitate training.

[0009] Optionally, a rope is connected between the top of the vertical rod and the horizontal plate, and the length of the rope is greater than the distance between the top of the vertical rod and the horizontal plate.

[0010] By adopting the technical scheme, when the inclination angle of the vertical rod is too large, the rope can pull the vertical rod to prevent it from falling.

[0011] Optionally, the bottom of the rope is connected to the vertical rod through a rope ring at the top of the vertical rod, and the top of the rope is connected to the bottom of the horizontal plate through a secondary lifting ring at the bottom of the horizontal plate.

[0012] Optionally, a main lifting ring is fixed to the bottom of the horizontal plate, and the main lifting ring is fixed to the middle position of the bottom of the horizontal plate.

[0013] By adopting the technical scheme, the main lifting ring can also be connected to a slow descent device, which is connected to a safety belt worn by a training personnel to achieve the purpose of protection.

[0014] Optionally, a counterweight is fixed to the surface of the bottom plate, and the counterweight is located at the rear end of the surface of the bottom plate.

[0015] By adopting the technical scheme, the counterweight is fixed to the surface of the base, which can improve the stability of the device as a whole.

[0016] Compared with the prior art, the beneficial effects of the technical scheme of the present application are as follows:

[0017] 1. The technical scheme of the present application provides a soft ladder that is close to the state of sailing during climbing training by arranging two vertical rods on the front end of the bottom plate, connecting the bottom of the two vertical rods to the bottom plate through rubber rods, and making the rubber rods easily shake the vertical rods and the soft ladder when the fixed soft ladder is on the top of the vertical rod during climbing training.

[0018] 2. The technical scheme of the present application provides a detachable arrangement of the connecting rod and the connecting ring, which facilitates the detachment of the connecting rod and the connecting ring, and then the installation of a common ladder for training through a screw hole.

[0019] 3. The technical scheme of the present application provides a rope connected between the top of the vertical rod and the horizontal plate, and a certain length of the rope is reserved, which can be pulled to prevent the vertical rod from falling when the inclination angle of the vertical rod is too large. BRIEF DESCRIPTION OF DRAWINGS

[0020] Other features, objects and advantages of the present application will become more apparent from the following detailed description of non-limiting embodiments, with reference to the accompanying drawings:

[0021] Figure 1The utility model discloses a whole structure schematic diagram of ship climb simulation training device.

[0022] Figure 2 The utility model discloses a connecting rod connecting structure schematic diagram of ship climb simulation training device.

[0023] Figure 3 The utility model discloses a horizontal plate bottom structure schematic diagram of ship climb simulation training device.

[0024] Figure 4 The utility model discloses a rubber rod connecting structure schematic diagram of ship climb simulation training device.

[0025] In the drawing: 1, bottom plate;11, counterweight block;2, vertical plate;21, horizontal plate;211, main lifting ring;212, auxiliary lifting ring;3, vertical rod;31, rubber rod;311, clamping block;312, ring block;32, screw hole;33, rope ring;4, connecting rod;41, connecting ring;5, rope. Specific implementation

[0026] Please refer to Figures 1-4 The utility model provides a technical scheme: a ship climb simulation training device, including bottom plate 1, vertical plate 2 and vertical rod 3, vertical plate 2 is fixed in the position of the top of bottom plate 1 and is inclined to the front end, and vertical rod 3 is set up two and is placed in the top of bottom plate 1 on the both sides of the front end of vertical plate 2, the height of two vertical rods 3 is same, and rubber rod 31 is arranged between two vertical rods 3 and bottom plate 1, and the outer circle of rubber rod 31 is set up and is embedded into the inside below vertical rod 3 in multiple rings ring block 312, and clamping block 311 is fixed below rubber rod 31 and is embedded into the inside of bottom plate 1, so that rubber rod 31 is connected between the bottom of vertical rod 3 and bottom plate 1, and connecting ring 41 is fixed on the inside above vertical rod 3 through connecting rod 4, when using, through connecting ring 41, soft ladder can be bound and fixed, then the climb training is carried out, because of the action of rubber rod 31, when climbing, vertical rod 3 and soft ladder all will swing greatly, to simulate the more real sailing environment.

[0027] If the swing angle of vertical rod 3 is too large when rubber rod 31 makes, is easy to make vertical rod 3 tip over and exist risk, therefore still transversely fixed in the top of vertical plate 2 there is horizontal plate 21, and the top of vertical rod 3 is connected with horizontal plate 21 through rope 5, and the bottom of rope 5 is connected with vertical rod 3 through rope ring 33 in the top of vertical rod 3, and the top of rope 5 is connected with the bottom of horizontal plate 21 through auxiliary lifting ring 212 in the bottom of horizontal plate 21, and the length of rope 5 is greater than the interval of the top of vertical rod 3 from horizontal plate 21, when the top of vertical rod 3 is greatly inclined and makes rope 5 be straightened, will limit and make vertical rod 3 unable to continue to be inclined, to the purpose of preventing vertical rod 3 from toppling.

[0028] In addition, the bottom of the horizontal plate 21 is fixed with a main lifting ring 211, which is fixed at the middle of the bottom of the horizontal plate 21. In order to improve the safety of the trainer, a slow descending device can be installed on the main lifting ring 211, and the trainer can be tied with a safety belt. The slow descending device is connected to the safety belt, which plays a safety protection role during training. A cotton pad can also be laid on the front end of the bottom plate 1 to further improve safety, and the surface of the bottom plate 1 is fixed with a counterweight 11 located at the rear end of the surface of the bottom plate 1, which plays a counterweight role to improve the stability during use.

[0029] The inner surface of the vertical rod 3 is uniformly provided with a plurality of screw holes 32, and the connecting rod 4 is installed on the upper side of the vertical rod 3 by being screwed into the screw holes 32. The screw can be unscrewed and then a common ladder can be installed through the screw holes 32 to provide different training methods.

[0030] During use, the upper end of the soft ladder is connected and fixed to the connecting ring 41 on the upper end of the two vertical rods 3 to fix the soft ladder. In order to ensure safety, a slow descending device is connected and installed below the main lifting ring 211 and connected to the safety belt of the trainer, and then the climbing simulation training can be carried out. During training, the vertical rods 3 on both sides are fixed to the upper end of the bottom plate 1 through the rubber rods 31, and during the climbing training, the vertical rods 3 are easily in a state of constant shaking, so that the soft ladder is also in a state of shaking to simulate the state of a ship sailing, thereby providing a more close-to-reality simulation training environment. Since the top of the vertical rod 3 is connected with the rope 5, when the inclination angle of the vertical rod 3 is too large and it is easy to fall, the rope 5 can play a restraining role to avoid the vertical rod 3 from falling and improve safety. In order to further improve the safety of training, a cotton pad can also be laid on the front end of the bottom plate 1, which is used in cooperation with the slow descending device to improve the safety of the trainer. In addition to training with the soft ladder, the connecting ring 41 can also be rotated to drive the connecting rod 4 to be unscrewed and removed from the screw holes 32, and a common ladder can also be installed through the screw holes 32 for simulation training.

Claims

1. A shipboard climbing simulation trainer comprising a base plate (1), a vertical plate (2) and a vertical pole (3), characterized in that: The vertical plate 2 is vertically fixed above the bottom plate 1 at a position deviated to the front end, and a horizontal plate 21 is further fixed transversely on the top of the vertical plate 2. The vertical rod 3 is arranged above the bottom plate 1 on both sides of the front end of the vertical plate 2, and a rubber rod 31 is arranged between each vertical rod 3 and the bottom plate 1. A plurality of ring blocks 312 are arranged around the upper outer ring of the rubber rod 31 and embedded into the lower inner part of the vertical rod 3. A clamping block 311 is fixed to the lower part of the rubber rod 31 and embedded into the inner part of the bottom plate 1. A connecting ring 41 is fixed to the upper inner side of the vertical rod 3 through a connecting rod 4.

2. The shipboard climbing simulation trainer of claim 1, wherein: A plurality of screw holes 32 are uniformly arranged on the inner side surface of the vertical rod 3, and the connecting rod 4 is installed above the side edge of the vertical rod 3 by being screwed into the screw holes 32.

3. The shipboard climbing simulation trainer of claim 1, wherein: A rope 5 is connected between the top of the vertical rod 3 and the horizontal plate 21, and the length of the rope 5 is greater than the distance between the top of the vertical rod 3 and the horizontal plate 21.

4. The shipboard climbing simulation trainer of claim 3, wherein: The bottom of the rope 5 is connected with the vertical rod 3 through a rope ring 33 on the top of the vertical rod 3, and the upper part of the rope 5 is connected with the bottom of the horizontal plate 21 through a secondary lifting ring 212 on the bottom of the horizontal plate 21.

5. The shipboard climbing simulation trainer of claim 1, wherein: A main lifting ring 211 is fixed to the bottom of the horizontal plate 21 and arranged at the middle position of the bottom of the horizontal plate 21.

6. The shipboard climbing simulation trainer of claim 1, wherein: A counterweight 11 is fixed to the surface of the bottom plate 1 and arranged at the rear end of the surface of the bottom plate 1.