Power supply track for a slip cabin

By installing a power supply via a contact line on the sliding track, the problem of frequent battery replacements for the sliding hull was solved, achieving an efficient and stable power supply system, reducing operating costs and improving equipment operating efficiency and safety.

CN223612822UActive Publication Date: 2025-11-28LISHUI XINYUE AMUSEMENT EQUIPMENT CO LTD
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Patent Information

Application Number
CN202423265618.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-11-28
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

The existing sliding rails lack power supply equipment, which leads to frequent battery replacements for the sliding cabins, increasing operating costs and maintenance time.

Method used

A sliding line is installed on the track, and power is supplied through a pair of sliding mechanisms, eliminating the need for battery power supply. Stable support is provided by connecting plates and baffles to ensure the stability and reliability of the power supply system.

Benefits of technology

It reduces equipment downtime for maintenance, lowers labor and material costs, improves operational efficiency and safety, ensures the continuous operation of the skid hull, and enhances the equipment's environmental adaptability and service life.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223612822U_ABST
    Figure CN223612822U_ABST
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Abstract

A power supply track for a sliding cabin, the track is provided with a plurality of sliding mechanisms for carrying the sliding cabin which can slide along the track, the track comprises two symmetrical guide rails which respectively form a straight section and a bending section after being spliced, each sliding mechanism comprises a carrying seat hung on the guide rail and a carrying column for connecting the sliding cabin, a plurality of connecting plates are arranged between the two guide rails, the track further comprises a touch slide wire which is located between the two guide rails and is fixed with the plurality of connecting plates, the touch slide wire is electrically connected with and supplies power to the sliding mechanisms in pairs, some of the plurality of connecting plates are provided with a baffle which is perpendicular to the upper surface of the connecting plate, and the baffle is fixedly connected with the touch slide wire. The track has the beneficial effects that the touch slide wire supplies power to the sliding mechanism, the traditional power supply mode relying on the battery of the sliding cabin is abandoned, and the problem that a large amount of maintenance time is consumed due to battery replacement is effectively solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of sliding tracks for amusement equipment erection, in particular to a kind of power supply track for sliding cabin. BACKGROUND

[0002] The sliding track for amusement equipment is a special track structure. It is usually made of high-strength metal materials, with good load-bearing capacity and wear resistance. The track is designed with a specific cross-sectional shape to ensure that the sliding parts of the amusement equipment can run smoothly and smoothly on it, reducing friction and jamming. The layout of the track can be flexibly designed according to the needs of the amusement park and equipment, including straight segments, curved segments and other forms, providing a variety of running paths for amusement equipment, increasing the interest and excitement of the amusement experience, and widely used in various amusement park facilities.

[0003] The track in the prior art does not have a power supply device, so it is necessary to set up a battery or other power supply device on the sliding cabin to supply power to the sliding mechanism, so that the sliding mechanism drives the sliding cabin to move on the track. However, this method requires the battery to be replaced during the operation of the sliding cabin (i.e. no tourists or non-operating track maintenance), which greatly increases the number of sliding cabins needed to meet daily operation, greatly increasing the operating costs of the operator. SUMMARY

[0004] To overcome the shortcomings of the prior art, the utility model provides a power supply track for sliding cabin that can supply power to the sliding cabin during operation.

[0005] To achieve the above-mentioned purpose, the technical scheme of the utility model is as follows: a power supply track for sliding cabin, the track is provided with a plurality of sliding mechanisms that can slide along the track, the sliding mechanism is used to carry the sliding cabin, the track includes two symmetrical guide rails, and the two guide rails are connected to form a straight segment and a bending segment respectively, each sliding mechanism includes a carrying seat hung on the guide rail and a carrying column used to connect the sliding cabin, a plurality of connecting plates are arranged between the two guide rails, the track further includes a touch slide wire fixed between the two guide rails and connected with the plurality of connecting plates, the touch slide wire is electrically connected to and powers the sliding mechanism in pairs, some of the plurality of connecting plates are provided with a baffle perpendicular to the upper surface of the connecting plate, and the baffle is fixedly connected with the touch slide wire.

[0006] The utility model discloses a beneficial effect is: the power supply track for the cabin of sliding is through setting touch slide wire between two guide rails, realized the innovative mode of power supply for sliding mechanism. Touch slide wire two two groups of power supply for sliding mechanism, discarded the traditional mode of power supply of relying on cabin of sliding battery, effectively solved the problem of the large amount of maintenance time of battery replacement. This not only significantly reduces the downtime maintenance time of equipment, improves the operation efficiency of cabin of sliding, ensures that it can continuously and stably run on the track, provides more coherent and smooth experience for the tourists, also reduces the human cost and material cost that can be produced because of frequently replacing battery. Meanwhile, the connecting plate that is arranged at intervals on the track and the baffle that is vertically fixed on part connecting plate provide stable support and protection for touch slide wire, enhance the stability and reliability of touch slide wire under various complex environments, further guarantee the safe operation of power supply system. The design of this power supply track optimizes the power supply link of whole cabin of sliding operation system, makes the operation party more convenient and efficient in equipment maintenance management, helps to reduce operating cost, improves operating efficiency, shows outstanding technical advantage and practical value in the application scene of cabin of sliding related facilities.

[0007] Further, the carrying seat includes a bottom plate, a side plate and a top plate arranged symmetrically, and the symmetrically arranged bottom plate, side plate and top plate cooperate with the two guide rails to prevent the carrying seat from falling off.

[0008] The symmetrically arranged bottom plate, side plate and top plate cooperate with the two guide rails to form a stable and reliable connection system. The distance between the two side plates is equivalent to the distance between the outer surfaces of the two guide rails, and the precise fit ensures that the carrying seat is closely hung on the guide rail, effectively preventing the carrying seat from falling off during sliding due to various external factors. Under the operating conditions of frequent start, stop and high-speed sliding of the cabin of sliding, the stable connection state can still be maintained, greatly improving the safety and reliability of the sliding mechanism operation.

[0009] Further, the symmetrically arranged bottom plate, side plate and top plate are respectively provided with sliding wheels corresponding to the lower surface, side surface and upper surface of the guide rail matched therewith.

[0010] The sliding wheels arranged on the bottom plate, the side plate and the top plate correspond to the lower surface, the side surface and the upper surface of the guide rail respectively, which greatly optimizes the interaction between the carrying seat and the guide rail. The sliding wheels effectively reduce the friction between the carrying seat and the guide rail during relative movement, so that the movement of the sliding mechanism on the track is smoother and lighter, significantly reducing the power required to drive the sliding cabin, thereby improving energy utilization efficiency and reducing equipment wear. At the same time, the existence of the sliding wheel can also buffer the external impact force to a certain extent, further enhancing the stability and safety of the carrying seat on the track, reducing damage to the equipment caused by vibration or collision, prolonging the service life of the equipment, and reducing the maintenance frequency and cost.

[0011] Further, the carrying seat further comprises mounting columns arranged through the two bottom plates, and mounting seats are clamped on the mounting columns, and mounting grooves for accommodating the mounting columns and forming fixation are arranged in the mounting seats.

[0012] The mounting columns penetrating through the two bottom plates cooperate with the mounting seats clamped thereon, so that the mounting columns can be flexibly moved up and down and rotated in the mounting grooves of the mounting seats. The up-and-down movement function gives the sliding cabin and the sliding mechanism the adjustable spacing characteristic, which can easily adjust the distance between the sliding cabin and the ground according to actual needs. This is particularly important under different site conditions or specific operating requirements, such as passing through different height obstacles, adapting to different platform heights, etc. The height can be flexibly adjusted to ensure the safe and smooth operation of the sliding cabin, enhancing the environmental adaptability of the equipment. The rotation function of the mounting column in the mounting groove plays a key role when the sliding mechanism passes through the track bending section. It can make the cabin more flexibly adjust the direction during bending, avoid collision, jam and other problems caused by rigid connection, ensure the smoothness and stability of the sliding cabin running on the complex track, improve the passenger's riding experience, and reduce the wear and tear of the equipment, prolong the service life of the equipment.

[0013] Further, the side edges of the mounting seat are provided with two pre-tightening plates, an adjustment area is formed between the two pre-tightening plates, and pre-tightening holes for inserting fasteners and being spliced are arranged on the two pre-tightening plates.

[0014] The two pre-tightening plates arranged on the side of the mounting base and the adjustment area formed by the two pre-tightening plates provide a precise and convenient adjustment mode for the fastening degree of the mounting column in the mounting groove. By matching the pre-tightening holes on the pre-tightening plates with the fasteners, the spacing between the two pre-tightening plates can be flexibly changed, so as to exert different degrees of fastening force on the mounting column in the adjustment area. When it is necessary to improve the stability of the sliding cabin body in operation, such as when driving at high speed or passing through a bumpy road section, the pre-tightening plates can be tightened by using the fasteners, so that the mounting column is more firmly fixed in the mounting groove, effectively reducing the shaking and displacement of the mounting column, ensuring the reliability of the connection between the sliding cabin body and the sliding mechanism, reducing the safety hidden danger caused by loose connection, and improving the safety of passengers. When it is necessary to overhaul, maintain or adjust the posture of the sliding cabin body, the fasteners can be appropriately loosened, so that the mounting column has a certain freedom of movement in the mounting groove, facilitating operation. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 is an axonometric view of the embodiment of the utility model;

[0016] Figure 2 is an axonometric view of the sliding mechanism of the embodiment of the utility model;

[0017] Figure 3 is an internal view of the sliding mechanism of the embodiment of the utility model;

[0018] Figure 4 is a local enlarged view of the connecting plate provided with a baffle of the embodiment of the utility model. DETAILED DESCRIPTION

[0019] The power supply track for the sliding cabin body of the embodiment of the utility model is shown in Fig. Figures 1-4 A plurality of sliding mechanisms 2 are arranged on the track 1, and the plurality of sliding mechanisms 2 are connected in pairs to drive the sliding cabin body (not shown in the figure) to move on the track 1.

[0020] The track 1 comprises two symmetrical guide rails 11 and a touch slide wire 14 arranged between the two guide rails 11 and parallel to the two guide rails 11. A plurality of connecting plates 111 are arranged between the two guide rails 11, and some of the connecting plates 111 are provided with a baffle 112 perpendicular to the upper surface of the connecting plate 111. The plurality of connecting plates 111 are fixed to the lower surface of the touch slide wire 14, and the baffle 112 is fixed to the side surface of the touch slide wire 14 to reinforce the connection between the connecting plate 111 and the touch slide wire 14. The touch slide wire 14 is electrically connected to the two-by-two slide mechanism 2 and provides power to the two-by-two slide mechanism 2 when the two-by-two slide mechanism 2 slides along the track 1. As a preferred mode, a battery (not shown in the figure) with power storage function can be arranged on the slide mechanism 2 or between the slide mechanisms 2 or on the slide cabin to store the excess power provided by the touch slide wire 14 for starting the slide mechanism 2 after stopping.

[0021] The slide mechanism 2 comprises a mounting seat comprising symmetrical bottom plates 21, side plates 22 and top plates 23 matched with the two guide rails 11 to prevent the slide mechanism 2 from falling off, and the symmetrical bottom plates 21, side plates 22 and top plates 23 are respectively arranged between the lower surface, side surface and upper surface of the guide rail 11 matched therewith and provided with a sliding wheel 24 abutting on the guide rail 11. The distance between the two symmetrical side plates 22 is equivalent to the distance between the outer surfaces of the two guide rails 11. A mounting column 25 is arranged between the two bottom plates 21, and a mounting seat 26 is clamped on the mounting column 25. The mounting seat 26 is provided with a mounting groove (not shown in the figure) for inserting and fixing a mounting column 27 for fixing the slide cabin (not shown in the figure). The mounting column 27 can move up and down and rotate in the mounting groove (not shown in the figure). Two pre-tightening plates 262 are arranged on the side of the mounting seat 26, and an adjustment area 264 is formed between the two pre-tightening plates 262. The pre-tightening plates 262 are provided with pre-tightening holes 263 for inserting fasteners and can be spliced.

[0022] The movement of the slide mechanism 2 on the track 1 is as follows: when the slide mechanism 2 moves on the track 1, the bottom plates 21, side plates 22 and top plates 23 of the mounting seat are matched with the lower surface, side surface and upper surface of the two symmetrical guide rails 11 through the sliding wheels 24 to prevent falling off and achieve smooth sliding. The touch slide wire 14 is fixed between the guide rails 11 through the connecting plates 111 and the baffles 112 to provide power to the two-by-two slide mechanism 2. The slide mechanism 2 can store excess power in the battery (not shown in the figure) for starting the slide mechanism 2 after stopping. The mounting column 25 is clamped on the mounting seat 26, and the mounting column 27 can move up and down and rotate in the mounting groove (not shown in the figure). The pre-tightening plates 262 on the side of the mounting seat 26 adjust the state of the mounting column 27 through the pre-tightening holes 263 and fasteners, so that the slide mechanism 2 moves stably on the track 1.

[0023] The above embodiment is only one of preferred specific embodiments of the present application, and the usual changes and replacements made by those skilled in the art within the technical scheme of the present application are included in the protection scope of the present application.

Claims

1. A power supply track for a sliding cabin, wherein a plurality of sliding mechanisms capable of sliding along the track are arranged on the track, the sliding mechanisms are used to carry the sliding cabin, the track comprises two symmetrical guide rails, and the two guide rails respectively form a straight section and a bending section after being spliced, each sliding mechanism comprises a carrying seat hung on the guide rail and a carrying column used to connect the sliding cabin, characterized in that: A plurality of connecting plates are arranged between the two rails, the rail further comprises a touch slide line fixed between the two rails and the plurality of connecting plates, the touch slide line is electrically connected to and supplies power to the two-to-one group of sliding mechanisms, some of the plurality of connecting plates are provided with a baffle plate perpendicular to the upper surface of the connecting plate, and the baffle plate is fixedly connected with the touch slide line.

2. The power supply track for a slip pod according to claim 1, characterized in that: The mounting seat comprises a bottom plate, a side plate and a top plate arranged symmetrically, and the symmetrically arranged bottom plate, side plate and top plate are matched with the two rails to prevent the mounting seat from falling off, and the distance between the two symmetrically arranged side plates is equivalent to the distance between the outer surfaces of the two rails.

3. The power supply track for a slip pod according to claim 2, characterized in that: The symmetrically arranged bottom plate, side plate and top plate are respectively provided with sliding wheels corresponding to the lower surface, side surface and upper surface of the matched rail.

4. The power supply track for a slip pod according to claim 1, characterized in that: The mounting seat further comprises a mounting column arranged through the two bottom plates, the mounting column is clamped with a mounting seat, the mounting seat is provided with a mounting groove for mounting the column and forming a fixed mounting column, and the mounting column can move up and down and rotate in the mounting groove.

5. The power supply track for a slip pod according to claim 4, characterized in that: The side of the mounting seat is provided with two pre-tightening plates, an adjustment area is formed between the two pre-tightening plates, and the pre-tightening plates are provided with pre-tightening holes for inserting fasteners and can be spliced.