Energy storage support convenient for routing inspection

By designing energy storage racks that facilitate inspection and using ground rails and pushing mechanisms to move the racks, the problem of difficult inspection of the back side of containerized energy storage facilities has been solved, achieving comprehensive inspection and safety assurance.

CN223779066UActive Publication Date: 2026-01-09HUANMIN (SHANGHAI) CONSTRUCTION ENGINEERING CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520256951.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-18
Publication Date
2026-01-09
Estimated Expiration
2035-02-18

AI Technical Summary

Technical Problem

The containerized design of existing energy storage facilities makes it difficult to inspect the back-side equipment, making it impossible to detect problems such as abnormal temperature, condensation, dust accumulation, and corrosion damage in a timely manner.

Method used

Design an energy storage rack that is easy to inspect. It adopts multiple parallel ground rails and a pushing mechanism to realize the movement of the rack, expose the blind spots on the back side, and provide inspection channels.

Benefits of technology

It enables comprehensive inspection of energy storage facilities, timely detection and elimination of safety hazards, and ensures stable operation of equipment.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223779066U_ABST
    Figure CN223779066U_ABST
Patent Text Reader

Abstract

The utility model discloses an energy storage support convenient for routing inspection, and mainly relates to the field of energy storage related facilities. Comprising a plurality of ground rails arranged at the bottom side by side, two rows of shelves with walking strokes in the length direction of the ground rails are arranged above the ground rails, the length direction of the shelves is perpendicular to the length direction of the ground rails, and pushing mechanisms are arranged at the two ends of the ground rails correspondingly. And the two groups of pushing mechanisms are used for independently controlling the walking strokes of the layer frames on the same side respectively. The beneficial effects of the utility model are that: it can move in a whole row, expose the dead angle on the back side, thereby facilitating the thorough inspection and eliminating the local problem.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to the field of energy storage related facilities, and specifically relates to an energy storage support convenient for inspection. BACKGROUND

[0002] For large-scale energy storage facilities, regular inspection is an important measure to ensure the safe and efficient operation of equipment. During inspection, the appearance, operating state, local environment, data monitoring, etc. of the equipment need to be checked carefully to exclude safety hazards. For container-type energy storage facilities, due to the dense storage batteries placed on both sides of the container through the layer shelf, and in order to facilitate wiring and operation, a passage is left in the middle, and the two sides are close to the tank wall, which results in that only the front side equipment and local environment can be inspected during inspection, and the back side forms a dead angle and is difficult to inspect, so it is difficult to detect problems such as local high temperature, condensation, dust accumulation and local corrosion damage. SUMMARY

[0003] The utility model discloses a kind of energy storage supports convenient for inspection, it can move in whole column, expose back side dead angle, so as to facilitate inspection thoroughly, exclude local problem.

[0004] The utility model discloses a kind of energy storage supports convenient for inspection, it can move in whole column, expose back side dead angle, so as to facilitate inspection thoroughly, exclude local problem.

[0005] A kind of energy storage support convenient for inspection, including multiple parallelly arranged ground rails in bottom, the ground rail is equipped with two columns of layer shelf with walking stroke along its length direction above, the length direction of the layer shelf is vertically arranged with the length direction of ground rail, the ground rail is equipped with push mechanism respectively at both ends, and two groups of push mechanism independently control the walking stroke of same side layer shelf.

[0006] The bottom of the layer shelf is fixed with bottom plate frame, the bottom surface of the bottom plate frame is fixed with the groove frame of door type corresponding to the position of ground rail, the length direction of the groove frame corresponds with the width direction of the layer shelf, a plurality of track wheels are rotatably installed in the groove frame, and the track wheels are matched with the ground rail.

[0007] The central part of the ground rail is protruded with main rail crown upwards, the two sides of the main rail crown are respectively arranged with parallel auxiliary rail crown, and the limit groove is arranged between the main rail crown and the auxiliary rail crown, the central wheel groove is arranged in the central part of the track wheel corresponding to the main rail crown, the limit ring is arranged on the both sides of the central wheel groove corresponding to the limit groove, and the outer side of the limit ring is provided with outer wheel surface matched with the support of the auxiliary rail crown.

[0008] The base plate is provided with a horizontal groove extending along the width direction of the base plate, and the ground rail is fixed in the horizontal groove, and the top surface of the ground rail does not exceed the groove opening.

[0009] The pushing mechanism further comprises a hydraulic cylinder and a lifting frame, the bottom end of the hydraulic cylinder is provided with a cylinder rod in telescopic cooperation with the hydraulic cylinder, the lifting frame of each group of pushing mechanisms is two groups and is arranged at the two ends of one side of the long side of the base plate, the lifting slide block is in upper and lower sliding cooperation with the lifting frame, the side adjacent to the two lifting slide blocks on the same side is respectively fixed with a cross bar, and the center of the cross bar is connected with the bottom end of the cylinder rod.

[0010] The two ends of one side of the long side of the base plate are respectively fixed with L-shaped vertical plates, and a group of lifting frames is respectively fixed on the inner side end faces of the vertical plates, each group of lifting frames comprises two straight and vertically extending light rod slide rails, the two ends of the light rod slide rails are respectively provided with mounting seats for fixing the light rod slide rails on the vertical plates, and two slide sleeves in upper and lower sliding cooperation with the two light rod slide rails are fixed on the lifting slide block.

[0011] The top surface of the base plate is provided with a horizontal groove extending along the width direction of the base plate, and the ground rail is fixed in the horizontal groove, and the top surface of the ground rail does not exceed the groove opening.

[0012] The groove opening of the horizontal groove is fixed with a blocking strip.

[0013] A plurality of support frames are arranged equidistantly and side by side along the length direction of the base plate frame, the support frame is a square frame structure extending vertically, and opposite support frames are arranged between adjacent support frames, and each group of support frames is a pair of oppositely arranged L-shaped strip plates.

[0014] Compared with the prior art, the utility model has the beneficial effects that:

[0015] In the normal use, two rows of shelves are arranged close to the two sides and close to the side wall of the container, so that a channel for operation and main inspection is formed in the center. In the case of regular overall inspection, the two shelves can be moved to the center of the container, so that a channel for walking and inspection is formed between the back side of the shelf and the container wall, which facilitates the staff to investigate the back side, timely measure and find the temperature abnormal area, observe the dust condition, observe the condensation condition and other damage conditions, and timely eliminate the damage conditions, so that the safe and stable operation of the power grid facility is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1Is the schematic diagram of the utility model.

[0017] Figure 2 Is the side view of the utility model.

[0018] Figure 3 Is the utility model's plan view.

[0019] Figure 4 Is the schematic diagram of the utility model push mechanism and bottom plate.

[0020] Figure 5 Is the schematic diagram of the utility model track wheel and ground rail.

[0021] The label shown in the drawing:

[0022] 1, shelf, 2, bottom plate frame, 3, support frame, 4, support frame, 5, bottom plate, 6, ground rail, 7, groove frame, 8, track wheel, 9, main rail crown, 10, auxiliary rail crown, 11, limit slot, 12, central wheel groove, 13, limit ring, 14, outer wheel surface, 15, baffle, 16, hydraulic cylinder, 17, cylinder rod, 18, first connecting rod, 19, second connecting rod, 20, drive connecting rod, 21, lifting frame, 22, lifting slide, 23, hinged seat, 24, cross bar, 25, light pole slide rail. Specific embodiments

[0023] The utility model is further described below in combination with specific embodiments. It should be understood that these embodiments are only used for illustrating the utility model and are not used for limiting the scope of the utility model. In addition, it should be understood that after reading the content taught by the utility model, those skilled in the art can make various changes or modifications to the utility model, and these equivalent forms also fall within the scope defined by the present application.

[0024] Embodiment:

[0025] The energy storage support adopts an integrated structure, comprising shelf 1, ground rail 6, push mechanism, bottom plate 5;

[0026] The two layer racks 1 are arranged in parallel and vertically in the container, and the layer rack 1 adopts the structure of the energy storage layer rack 1 commonly used in the prior art. In this case, based on the concept of lightweight and simplicity, a frame structure is adopted, including a bottom plate 5 frame 2. The bottom plate 5 frame 2 is long strip-shaped, and serves as the bottom support of the entire layer rack 1 to support the weight and movement of the entire layer rack 1. A plurality of support frames 3 are arranged in parallel on the bottom plate 5 frame 2 at equal intervals along the length direction thereof. The support frames 3 are vertically extended square frame structures, and opposite support frames 4 are arranged between adjacent support frames 3. Each group of support frames 4 is a pair of oppositely arranged L-shaped strip plates symmetrically fixed between adjacent support frames 4 to form a mounting position for a battery. The fixation between the battery and the mounting position can be further achieved by bolts or fasteners. Without being limited to this example, other layer rack 1 structures can be adopted based on the bottom plate 5 frame 2 without affecting the implementation of the design effect.

[0027] The ground rail 6 extends along the width direction of the layer rack 1, and is arranged below the layer rack 1 to provide guidance for the overall movement of the layer rack 1. The ground rail 6 can be installed in a sunken manner on the floor surface in the container or directly installed on the floor surface in the container. In order to achieve modular pre-assembly, the bottom plate 5 is matched in this case, and the ground rail 6 is installed in a sunken manner on the bottom plate 5, and the top side of the ground rail 6 is slightly lower than or flush with the top surface of the bottom plate 5 to avoid the risk of stumbling. A horizontal groove is formed on the bottom plate 5 along the width direction of the container and the layer rack 1, and the ground rail 6 is fixedly installed in the horizontal groove. The ground rail 6 can be provided as multiple ground rails, and at least two ground rails are provided. In this example, four ground rails 6 are designed to achieve stable support and guidance of the layer rack 1. After the structure of the bottom plate 5 is added, overall assembly can be achieved in the workshop, and the device is installed with external batteries (convenient for operation). After completion, the entire device is introduced into the container to achieve rapid and modular assembly.

[0028] A door-shaped groove frame 7 is fixedly arranged on the bottom surface of the bottom plate 5 frame 2 corresponding to the position of the ground rail 6. A plurality of track wheels 8 are rotatably installed in the groove frame 7. Each groove frame 7 has at least two track wheels 8. The length direction of the groove frame 7 corresponds to the width direction of the layer rack 1. The bottom peripheral surface of the track wheel 8 protrudes downward out of the groove frame 7.

[0029] In this example, in order to improve stability, a main rail crown 9 is protruded upward in the center of the ground rail 6. A pair of auxiliary rail crowns 10 are symmetrically arranged on both sides of the main rail crown 9. A limiting groove 11 is arranged between the main rail crown 9 and the auxiliary rail crown 10.

[0030] The height of the main rail crown 9 is higher than that of the auxiliary rail crown 10. A central wheel groove 12 is arranged in the center of the track wheel 8 corresponding to the rail crown. Limiting rings 13 are arranged on both sides of the central wheel groove 12. An outer wheel surface 14 is arranged on the outer side of the limiting ring 13 to support and cooperate with the auxiliary rail crown 10.

[0031] Supported by the central wheel groove 12 and the outer wheel surface 14, and limited by the central limiting groove 11, deviation in movement is avoided.

[0032] The two sides of the transverse groove are respectively fixed with a blocking strip 15, which can be an angle plate, narrowing and shielding the gap.

[0033] The pushing mechanism is two groups, respectively arranged on both sides of the bottom plate 5, that is, arranged near the container side wall.

[0034] The pushing mechanism includes a centrally fixed and installed hydraulic cylinder 16, the bottom end of the hydraulic cylinder 16 is provided with a cylinder rod 17 which is telescopic with the hydraulic cylinder 16, and the hydraulic cylinder 16 is used as a power source.

[0035] The pushing mechanism further includes a first connecting rod 18, a second connecting rod 19, a driving connecting rod 20, a lifting frame 21, and a lifting slider 22 which are symmetrically arranged on both sides of the shelf 1.

[0036] The bottom end of the first connecting rod 18 is hinged on a hinge seat 23, the hinge seat 23 is arranged at the edge position of the long side of the bottom plate 5, the hinge seats 23 on the same side are symmetrically arranged relative to the shelf 1, the bottom end of the second connecting rod 19 is hinged on both sides of the frame 2 of the bottom plate 5, the top end of the first connecting rod 18 is hinged with the top end of the second connecting rod 19, and the bottom end of the driving connecting rod 20 is hinged on the middle part of the first connecting rod 18. The top end of the driving connecting rod 20 is hinged on the lifting slider 22, the lifting slider 22 is connected with the lifting frame 21 in up-down sliding manner, specifically, an L-shaped vertical plate can be fixed at both ends of one side of the long side of the bottom plate 5, a group of lifting frames 21 are respectively fixed on the inner side end face of the vertical plate, each group of lifting frames 21 includes two straightly extending light rod sliding rails 25, the two ends of the light rod sliding rails 25 are respectively provided with mounting seats for fixing the light rod sliding rails 25 on the vertical plate, and two slide sleeves which are respectively in up-down sliding cooperation with the two light rod sliding rails 25 are fixed on the lifting slider 22, so as to stabilize the lifting stroke.

[0037] A hinge shaft which extends horizontally and is axially consistent with the length direction of the shelf 1 is fixed on the slider, and the top end of the driving connecting rod 20 is hinged on the hinge shaft, so as to drive the shelf 1 to push or retract to the middle part based on the up-down movement of the lifting slider 22.

[0038] The adjacent side of the two lifting sliders 22 on the same side is respectively fixed with a cross bar 24, the center of the cross bar 24 is connected with the bottom end of the cylinder rod 17, so that the two lifting sliders 22 are simultaneously driven by the hydraulic cylinder 16, thereby controlling and limiting the lifting thereof.

[0039] Through the above structure, after the energy storage support is installed in the container, in the normal use condition, the two rows of shelves 1 are arranged close to the two sides and close to the side wall of the container, thereby forming a channel for operation and main inspection in the center. In the case of regular overall inspection, the two shelves 1 can be moved to the middle of the container respectively, thereby forming a channel for walking and inspection between the back side of the shelf 1 and the container wall, facilitating the staff to investigate the situation of the back side, timely measure and find the temperature abnormal area, observe the dust condition, condensation condition and other damage conditions, so as to ensure the safe and stable operation of the power grid facilities.

Claims

1. An energy storage support facilitating inspection, characterized in that, The application relates to a ground rail conveying device, which comprises a plurality of parallel ground rails arranged at the bottom, two rows of layer racks with walking strokes arranged above the ground rails along the length direction of the ground rails, the length direction of the layer racks being perpendicular to the length direction of the ground rails, and push mechanisms arranged at the two ends of the ground rails respectively, the two groups of push mechanisms being used for independently controlling the walking strokes of the layer racks on the same side. The bottom of the layer rack is fixed with a bottom frame, the ground rails are fixed on a bottom plate in the transverse direction, the two end edges of the longer side of the bottom plate are respectively fixed with hinged seats, the push mechanism comprises first connecting rods and second connecting rods arranged on the two sides of the length direction of the layer rack, the bottom end of the first connecting rod is hinged on the hinged seat, the bottom end of the second connecting rod is hinged on the two ends of the bottom frame, the middle part of the first connecting rod is hinged with a driving connecting rod, the top end of the driving connecting rod is hinged on a lifting slider, the lifting slider has a lifting stroke, the push mechanism further comprises hydraulic cylinders and lifting frames, the bottom end of the hydraulic cylinder is provided with a cylinder rod which is telescopically matched with the hydraulic cylinder, the lifting frames of each group of push mechanisms are two groups and are arranged at the two ends of the longer side of the bottom plate, the lifting slider is slidably matched with the lifting frame, the two lifting sliders on the same side are respectively fixed with cross bars on the adjacent sides, and the central part of the cross bar is connected with the bottom end of the cylinder rod.

2. The energy storage support of claim 1, wherein, The bottom of the layer rack is fixed with a bottom frame, the bottom surface of the bottom frame is fixed with a door-shaped groove frame corresponding to the position of the ground rail, the length direction of the groove frame corresponds to the width direction of the layer rack, and a plurality of track wheels are rotatably arranged in the groove frame and matched with the ground rail.

3. The energy storage support of claim 2, wherein, The central part of the ground rail is protruded upwards with a main rail crown, the two sides of the main rail crown are respectively and symmetrically provided with parallel auxiliary rail crowns, a limiting groove is arranged between the main rail crown and the auxiliary rail crown, a central wheel groove is arranged in the central part of the track wheel and corresponds to the main rail crown, limiting rings corresponding to the limiting groove are arranged on the two sides of the central wheel groove, and outer wheel surfaces matched with the auxiliary rail crown supporting are arranged on the outer sides of the limiting rings.

4. The energy storage support of claim 1, wherein, The two ends of the longer side of the bottom plate are respectively fixed with L-shaped vertical plates, one group of lifting frames is respectively fixed on the inner side end faces of the vertical plates, each group of lifting frames comprises two straight and vertically-extended light rod sliding rails, mounting seats for fixing the light rod sliding rails on the vertical plates are arranged at the two ends of the light rod sliding rails, and two sliding sleeves slidably matched with the two light rod sliding rails are fixed on the lifting slider.

5. The energy storage support of claim 2, wherein, The top surface of the bottom plate is provided with a transverse groove extending along the width direction of the bottom plate, the ground rail is fixed in the transverse groove, and the top surface of the ground rail does not exceed the groove opening of the transverse groove.

6. The energy storage support of claim 5, wherein, A blocking strip is fixed at the groove opening of the transverse groove.

7. The energy storage support of claim 1, wherein, A plurality of support frames are equidistantly and parallelly arranged on the bottom frame along the length direction of the bottom frame, the support frame is a square frame structure extending vertically, and opposite support frames are arranged between adjacent support frames, and each group of support frames is a pair of oppositely arranged L-shaped strip plates.