Fireproof and explosion-proof energy storage container structure
By using composite fire-proof and explosion-proof steel plates and heat-insulating fire-proof layers in the container, combined with reinforced square steel bars, the problem of the container lacking fire-proof, explosion-proof and heat-insulation is solved, and higher transportation stability and safety are achieved.
Patent Information
- Application Number
- CN202421797457.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Priority Date
- 2024-03-05
- Filing Date
- 2024-07-29
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-29
AI Technical Summary
The existing containers lack fire-proof and explosion-proof functions, and the steel structure leads to rapid heat conduction, affecting the stability of the transportation process.
A composite fire-proof and explosion-proof steel plate and the outer plate body are filled with a heat-insulating and fire-proof layer, and combined with reinforced square steel bars, a fire-proof and explosion-proof energy storage container structure is formed.
Effectively insulate heat conduction, reduce the internal temperature of the container, increase the stability of loading items and transportation processes, and provide fire and explosion-proof safety protection functions.
Smart Images

Figure CN222947395U_ABST
Abstract
Description
[Technical field]
[0001] The present application relates to a container structure, and more particularly to a fireproof and explosion-proof energy storage container structure. [Background technology]
[0002] A container is a steel box that is standardized according to specifications. Its main features are: consistent format and size, safe placement of energy storage batteries or containers, can be stacked layer by layer, so they can be stacked in large quantities and placed on ocean-going container ships, providing manufacturers with a cheap large-scale transportation service, providing loading of various items, and facilitating the transportation of items to the destination.
[0003] Generally, a container is composed of a plurality of cabinet frames, a bottom structure C-shaped steel bar, an external steel plate, and a movable door panel. Although the container provides the convenience of loading and transporting various items, it also has the following disadvantages: (1) It lacks fireproof and explosion-proof functions, which is not safe enough for loading and transporting dangerous goods or valuables; (2) The container body is a steel structure and lacks heat insulation. The heat outside the cabinet is quickly transferred to the items inside, which is prone to quality changes, which is not conducive to the stability of the transportation process. [Contents of the utility model]
[0004] The main purpose of this application is to fill a heat-insulating and fire-proof layer between a composite fireproof and explosion-proof steel plate and an external plate body, so as to effectively block and reduce the heat conduction of the container body, have an energy storage effect, and reduce the temperature inside the container, thereby increasing the stability of the items during loading and transportation.
[0005] The secondary purpose of this application is to further strengthen the container structure by assembling reinforced square steel bars in combination with composite fireproof and explosion-proof steel plates, thereby achieving fireproof and explosion-proof safety protection functions and increasing the safety requirements for loading and transporting items.
[0006] Based on the above purposes, a fireproof and explosion-proof energy storage container structure is applied, comprising: at least one composite fireproof and explosion-proof steel plate, at least one reinforced structural square steel bar, at least one heat-insulating and fireproof layer, at least one external plate, at least one fireproof and explosion-proof steel plate, and a plurality of cabinet frames; wherein, at least one reinforced square steel bar is arranged on the outer side of the at least one composite fireproof and explosion-proof steel plate, a heat-insulating and fireproof layer is filled between the at least one composite fireproof and explosion-proof steel plate and the external plate, the at least one external plate and the bottom structural C-shaped steel bar are assembled and fixed to the plurality of cabinet frames to form a fireproof and explosion-proof energy storage container structure; the present application utilizes composite fireproof and explosion-proof steel plates, assembles reinforced square steel bars, fills the heat-insulating and fireproof layer, and integrates with the container structure to achieve the safety protection function of fireproof and explosion-proof, effectively isolates and reduces the heat conduction of the container body, has good heat insulation, has energy storage effect, and has the benefit of reducing the temperature inside the container.
Brief Description of the Drawings
[0007] Figure 1 This is a three-dimensional schematic diagram of the fireproof and explosion-proof energy storage container structure of this application.
[0008] Figure 2 This is a front view schematic diagram of this application, showing the structure of the door panel.
[0009] Figure 3 It is a cross-sectional schematic diagram of the composite fireproof and explosion-proof steel plate, the reinforcing structural square steel bar, and the heat-insulating and fireproof layer of the present application.
[0010] Figure 4 It is a cross-sectional schematic diagram of the composite fireproof and explosion-proof steel plate and the bottom structural C-shaped steel bar of the present application.
[0011] Figure 5 This is a three-dimensional exploded schematic diagram of the composite fireproof and explosion-proof steel plate of the present application.
[0012]
Explanation of symbols
[0013] 10: Composite fireproof and explosion-proof steel plate
[0014] 11: Coated punched steel plate
[0015] 12: Reinforced fiberboard
[0016] 20: Reinforcement structural square steel bars
[0017] 30: Thermal insulation and fireproof layer
[0018] 40:External panel
[0019] 50: Bottom structure C-shaped steel bar
[0020] 60: Cabinet frame
[0021] 70: Door panel [Specific implementation method]
[0022] Please refer to Figure 1 to Figure 5 , as shown in the figure: The fireproof and explosion-proof energy storage container structure of the present application includes:
[0023] At least one composite fireproof and explosion-proof steel plate 10, the composite fireproof and explosion-proof steel plate 10 is composed of at least two coated punching steel plates 11, fixedly clamped with at least one reinforced fiberboard 12;
[0024] At least one reinforcing structural square steel bar 20, the reinforcing structural square steel bar 20 is arranged at intervals outside the composite fireproof and explosion-proof steel plate 10, and is vertically arranged between the plurality of cabinet frames 60;
[0025] At least one heat-insulating and fire-proofing layer 30, which is disposed between the reinforcing structural square steel bars 20, and between the composite fireproof and explosion-proof steel plate 10 and at least one external plate body 40;
[0026] At least one external plate 40, the external plate 40 is assembled between a plurality of cabinet frames 60;
[0027] At least one bottom structure C-shaped steel bar 50, on which the at least one composite fireproof and explosion-proof steel plate 10 is laid, and which is vertically assembled between the plurality of cabinet frames 60 below;
[0028] and a plurality of cabinet frames 60;
[0029] The at least one composite fireproof and explosion-proof steel plate 10, the at least one reinforcing structural square steel bar 20, the at least one heat-insulating and fireproof layer 30, the at least one external plate 40, the bottom structural C-shaped steel bar 50, and the plurality of cabinet frames 60 are assembled to form a fireproof and explosion-proof energy storage container structure.
[0030] In this embodiment, the coated perforated steel plate 11 of the at least one composite fireproof and explosion-proof steel plate 10 is a galvanized perforated steel plate.
[0031] The punching holes of the coated punching steel plate 11 of the at least one composite fireproof and explosion-proof steel plate 10 are sawtooth-shaped circular punching holes, referring to Figure 5 .
[0032] The reinforced fiber board 12 of the at least one composite fireproof and explosion-proof steel plate 10 is a reinforced fiber cement board.
[0033] refer to Figure 2 , is a front schematic diagram of the present application, showing that the fireproof and explosion-proof energy storage container structure is provided with at least one door panel 70, and the structure of the door panel 70 is assembled from the inside in sequence with at least one composite fireproof and explosion-proof steel plate 10, at least one reinforcing structural square steel bar 20 is arranged at intervals, and at least one heat-insulating and fire-proofing layer 30 is filled between the reinforcing structural square steel bars 20.
[0034] The at least one reinforcing structural square steel bar 20 is arranged at an interval of 60 cm.
[0035] The at least one heat-insulating and fire-proofing layer 30 may be heat-insulating and fire-proofing rock wool.
[0036] The above description is only a preferred embodiment of the present application, and it cannot be used to limit the scope of patent protection of the present application. Any simple equivalent changes and substitutions made according to the patent scope of the present application and the contents of the specification should still fall within the scope of protection covered by the patent scope of the present application.
Claims
1. A fireproof and explosion-proof energy storage container structure, characterized in that: Include: At least one composite fireproof and explosion-proof steel plate, which is composed of at least two coated perforated steel plates fixedly sandwiched with at least one reinforced fiberboard; At least one reinforcing structural square steel bar, which is arranged at intervals outside the composite fireproof and explosion-proof steel plate and vertically arranged between the plurality of cabinet frames; At least one heat-insulating and fire-proofing layer, which is disposed between the square steel bars of the reinforcing structure, and between the composite fireproof and explosion-proof steel plate and at least one external plate body; At least one external plate, the external plate is assembled between a plurality of cabinet frames; At least one bottom structure C-shaped steel bar, on which the at least one composite fireproof and explosion-proof steel plate is laid, and which is vertically assembled between the plurality of cabinet frames; and a plurality of cabinet frames; The at least one composite fireproof and explosion-proof steel plate, the at least one reinforcing structural square steel bar, the at least one heat-insulating and fireproof layer, the at least one external plate, the bottom structural C-shaped steel bar, and the plurality of cabinet frames are assembled to form a fireproof and explosion-proof energy storage container structure.
2. The fireproof and explosion-proof energy storage container structure according to claim 1, characterized in that: At least one coated perforated steel plate of the composite fireproof and explosion-proof steel plate is a galvanized perforated steel plate.
3. The fireproof and explosion-proof energy storage container structure according to claim 1, characterized in that: The punching holes of the coated punching steel plate of at least one composite fireproof and explosion-proof steel plate are sawtooth-shaped circular punching holes.
4. The fireproof and explosion-proof energy storage container structure according to claim 1, characterized in that: The reinforced fiberboard of at least one composite fireproof and explosion-proof steel plate is a reinforced fiber cement board.
5. The fireproof and explosion-proof energy storage container structure according to claim 1, characterized in that: At least one reinforcing structural square steel bar is arranged at an interval of 60 cm.
6. The fireproof and explosion-proof energy storage container structure according to claim 1, characterized in that: At least one heat-insulating and fire-proofing layer is heat-insulating and fire-proofing rock wool.
7. The fireproof and explosion-proof energy storage container structure according to claim 1, characterized in that: The fireproof and explosion-proof energy storage container structure is provided with at least one door panel, at least one composite fireproof and explosion-proof steel plate is assembled in sequence on the inner side of the door panel, at least one reinforcing structural square steel bar is arranged at intervals, and at least one heat-insulating and fire-proof layer is filled between the reinforcing structural square steel bars.
8. The fireproof and explosion-proof energy storage container structure according to claim 7, characterized in that: At least one reinforcing structural square steel bar is arranged at an interval of 60 cm.
9. The fireproof and explosion-proof energy storage container structure according to claim 7, characterized in that: At least one heat-insulating and fire-proofing layer is heat-insulating and fire-proofing rock wool.