Battery transport case

By designing a battery transport box with a detachable fireproof baffle and exhaust hole structure, the problems of battery transport boxes in the existing technology being prone to explosion and combustion and occupying a large space are solved, and the effects of rapid assembly, safe transportation and cost reduction are achieved.

CN223396553UActive Publication Date: 2025-09-30GUANGDONG BRUNP RECYCLING TECH CO LTD +1
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Patent Information

Application Number
CN202422843829.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-20
Publication Date
2025-09-30
Estimated Expiration
2034-11-20

AI Technical Summary

Technical Problem

Existing battery transport boxes are prone to explosion and combustion due to high temperature, extrusion, and collision during packing and transportation, and they take up a lot of space, increasing transportation costs and safety risks.

Method used

A battery transport box is designed, which includes a fireproof bottom plate assembly, a fireproof side plate assembly and a fireproof cover plate assembly. It adopts a detachable fireproof baffle and exhaust hole structure, uses fireproof materials and relieves pressure through the exhaust channel to ensure rapid assembly and safe transportation.

Benefits of technology

The battery transport box can be quickly disassembled and assembled, which reduces the occupied space and transportation costs. The exhaust channel can also reduce the risk of explosion and improve safety and fire resistance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a battery transport case which comprises a fireproof bottom plate assembly, a fireproof side plate assembly and a fireproof cover plate assembly, the fireproof side plate assembly comprises two first fireproof baffles and two second fireproof baffles which are arranged in parallel, the two first fireproof baffles are detachably connected to the two side edges of the fireproof bottom plate assembly, and the two second fireproof baffles are detachably connected to the two side edges of the fireproof bottom plate assembly. The two second fireproof baffles are detachably connected to the other two side edges of the fireproof bottom plate assembly, so that a battery containing groove is jointly formed among the frame bottom plate, the first fireproof baffle and the second fireproof baffles, the two second fireproof baffles are provided with array exhaust holes and are communicated with the battery containing groove to form an exhaust channel, and the fireproof cover plate assembly covers the battery containing groove. The first fireproof baffle and the second fireproof baffle are detachably connected with the fireproof bottom plate assembly to be assembled, the occupied space of the battery transportation box is reduced, storage and transportation of the battery transportation box are facilitated, pressure relief and exhaust are rapidly conducted by forming the exhaust channel, and the safety performance of the battery transportation box is improved.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of battery recycling, and in particular to a battery transport box. Background Art

[0002] During the transportation of recycled power battery packs, the power battery packs cannot be stacked or squeezed. The high temperature, squeezing, and collision inside the vehicle will cause the power battery packs to explode and burn. The power battery packs need to be packed and transported in transport boxes.

[0003] Because shipping boxes take up a lot of space, empty boxes reduce the efficiency of the transport equipment, increasing transportation costs. When recycled battery packs are exposed to high temperatures, compression, and collisions, they can explode and burn, rapidly increasing pressure within the box. If the box cannot be vented and depressurized in time, it can easily explode, causing damage to the surrounding environment and personnel. Utility Model Content

[0004] The purpose of the present invention is to overcome the deficiencies in the prior art and provide a battery transport box that is quick to disassemble and assemble, convenient to store and transport, and safe.

[0005] The purpose of this disclosure is achieved through the following technical solutions:

[0006] A battery transport box includes a fireproof bottom plate assembly, a fireproof side plate assembly and a fireproof cover plate assembly.

[0007] The fireproof side panel assembly includes a first fireproof baffle and a second fireproof baffle, the number of the first fireproof baffle and the number of the second fireproof baffle are both two, the two first fireproof baffles are arranged in parallel, the two first fireproof baffles are detachably connected to two opposite sides of the fireproof bottom panel assembly, the two second fireproof baffles are arranged in parallel, and the two second fireproof baffles are detachably connected to the other two opposite sides of the fireproof bottom panel assembly, so that the fireproof bottom panel assembly, the first fireproof baffle and the second fireproof baffle together form a battery container, and the two second fireproof baffles are both provided with an array exhaust hole, and the array exhaust hole is connected to the battery container to form an exhaust channel;

[0008] The fireproof cover plate assembly is arranged to cover the opening of the battery container.

[0009] In one embodiment, the fireproof bottom plate assembly includes a frame bottom plate and columns, each side of the frame bottom plate is provided with a plurality of pin holes, the bottom of the first fireproof baffle and the second fireproof baffle are provided with pins, the two pins of the first fireproof baffles are inserted into the corresponding pin holes, and the two pins of the second fireproof baffles are inserted into the corresponding pin holes, and the columns are arranged on the side of the frame bottom plate away from the battery compartment.

[0010] In one embodiment, the fireproof base plate assembly also includes an angle iron connecting plate, and the angle iron connecting plate includes a first baffle and a second baffle connected to each other, the first baffle is welded to one side of the column and the frame base plate, and the first baffle is used to limit the first fireproof baffle, and the second baffle is welded to the other side of the column and the frame base plate, and the second baffle is used to limit the second fireproof baffle.

[0011] In one embodiment, the angle iron connecting piece is provided with a positioning bayonet, and the two horizontally extending ends of the second fire baffle are also provided with support columns, and the side walls of the support columns are provided with positioning protrusions, and the positioning protrusions are adapted to be embedded in the positioning bayonet.

[0012] In one embodiment, the column is provided with a flared slot, and the support column is provided with a fixing protrusion, and the fixing protrusion is adapted to the flared slot.

[0013] In one embodiment, the fireproof cover assembly is provided with a mounting notch, and the mounting notch is adapted to accommodate the support column.

[0014] In one embodiment, the battery transport box also includes a snap assembly, which includes a snap member and a snap seat. There are multiple snap members and snap seats, and multiple snap seats are installed at intervals on the edge of the fireproof cover assembly. The first fireproof baffle and the second fireproof baffle are respectively installed with several snap members, and each snap member is snapped to the corresponding snap seat.

[0015] In one embodiment, the inner walls of the fireproof base plate assembly and the fireproof cover plate assembly are provided with flame retardant material; or / and, the inner walls of the first fireproof baffle and the second fireproof baffle are provided with flame retardant material, and the flame retardant material has corresponding through holes at the corresponding positions of the array exhaust holes.

[0016] In one embodiment, the fireproof side panel assembly further includes a first lifting lug and a second lifting lug, wherein the first lifting lug is connected to the first fireproof baffle, and the second lifting lug is connected to the second fireproof baffle; or / and,

[0017] The fireproof bottom plate assembly is further provided with a third lifting lug, the third lifting lug is connected to the frame bottom plate, and the third lifting lug is arranged in the battery container; or / and,

[0018] The fireproof cover assembly includes a frame cover and a fourth lifting lug. The frame cover is arranged to cover the battery container. The fourth lifting lug is connected to a side of the frame cover facing away from the battery container.

[0019] In one embodiment, the fireproof bottom plate assembly further includes a lifting portion, which is disposed on a side of the frame bottom plate away from the battery container, and the lifting portion is provided with a lifting hole.

[0020] Compared with the prior art, the present disclosure has at least the following advantages:

[0021] 1. The battery transport box is detachably connected to the fireproof bottom plate assembly through the first fireproof baffle and the second fireproof baffle, so that the first fireproof baffle, the second fireproof baffle and the frame bottom plate can be quickly assembled, reducing the space occupied by the battery transport box, thereby facilitating the storage and transportation of the battery transport box, and further reducing the transportation cost of the battery transport box;

[0022] 2. The fireproof bottom plate assembly, the first fireproof baffle, the second fireproof baffle and the fireproof cover plate assembly contain fireproof materials, which improve the fireproof performance of the fireproof bottom plate assembly, the first fireproof baffle, the second fireproof baffle and the fireproof cover plate assembly, thereby improving the safety performance of the battery transport box;

[0023] 3. The two array exhaust holes are connected to the battery container to form an exhaust channel, so that the recycled power batteries can be quickly decompressed and exhausted through the exhaust channel when overheating, expansion or explosion occurs, thereby increasing the explosion-proof performance of the battery transport box, reducing damage to the surrounding environment and personnel, and thus improving the safety of the battery transport box. BRIEF DESCRIPTION OF THE DRAWINGS

[0024] In order to more clearly illustrate the technical solutions of the embodiments of the present disclosure, the following briefly introduces the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present disclosure and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.

[0025] Figure 1 This is a schematic structural diagram of a battery transport box according to an embodiment;

[0026] Figure 2 for Figure 1 Exploded view of the battery shipping box shown;

[0027] Figure 3 for Figure 1 A schematic diagram of a partial structure of a battery transport box is shown;

[0028] Figure 4 for Figure 3 The battery transport box shown is a partial enlarged view at point A;

[0029] Figure 5 for Figure 1 Another structural schematic diagram of the battery transport box shown.

[0030] Reference numerals: 10 - battery transport box; 100 - fireproof bottom plate assembly; 110 - frame bottom plate; 1101 - latch hole; 120 - column; 1201 - expansion slot; 130 - angle iron connecting piece; 131 - first baffle; 132 - second baffle; 1301 - positioning bayonet; 140 - third lifting lug; 150 - lifting part; 1501 - lifting hole; 200 - fireproof side panel assembly; 201 - battery container; 210 -First fireproof baffle; 220-Second fireproof baffle; 2201-Array exhaust hole; 221-Support column; 2211-Positioning protrusion; 2212-Fixing protrusion; 230-First lifting ear; 240-Second lifting ear; 201-Battery container; 300-Fireproof cover assembly; 301-Installation notch; 310-Frame cover; 320-Fourth lifting ear; 400-Snap assembly; 410-Snap fastener; 420-Snap seat. DETAILED DESCRIPTION

[0031] To facilitate understanding of the present disclosure, a more comprehensive description of the present disclosure will be provided below with reference to the accompanying drawings. The accompanying drawings illustrate preferred embodiments of the present disclosure. However, the present disclosure can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the disclosure.

[0032] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly attached to the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only implementation methods.

[0033] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this disclosure pertains. The terms used herein in the specification of this disclosure are intended only to describe specific embodiments and are not intended to limit this disclosure. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0034] In order to better understand the technical solutions and beneficial effects of the present disclosure, the present disclosure is further described in detail below with reference to specific embodiments:

[0035] like Figures 1 to 3 As shown, it is a battery transport box 10 according to an embodiment of the present disclosure, including a fireproof bottom plate assembly 100, a fireproof side plate assembly 200 and a fireproof cover plate assembly 300. The fireproof side plate assembly 200 includes a first fireproof baffle 210 and a second fireproof baffle 220. The number of the first fireproof baffle 210 and the second fireproof baffle 220 are both two. The two first fireproof baffles 210 are arranged in parallel. The two first fireproof baffles 210 are detachably connected to the two opposite sides of the fireproof bottom plate assembly 100. The two second fireproof baffles 220 are arranged in parallel. The two second fireproof baffles 220 are detachably connected to the other two opposite sides of the fireproof base assembly 100, so that a battery container 201 is formed between the fireproof base assembly 100, the first fireproof baffle 210 and the second fireproof baffle 220. The battery container 201 is used to store recycled power batteries. The two second fireproof baffles 220 are both provided with array exhaust holes 2201, and the two array exhaust holes 2201 are connected to the battery container 201 to form an exhaust channel; the fireproof cover assembly 300 covers the opening of the battery container 201.

[0036] In this embodiment, the fireproof bottom plate assembly 100, the first fireproof baffle 210, the second fireproof baffle 220 and the fireproof cover assembly 300 of the battery transport box 10 can be stacked before assembly, so that less space is occupied, and the components of multiple battery transport boxes 10 can be used interchangeably. The two first fireproof baffles 210 and the two second fireproof baffles 220 are assembled with the fireproof bottom plate assembly 100, and the recycled power batteries are packed and the battery container 201 is tightly covered with the fireproof cover assembly 300, and then the packed recycled power batteries are transported; the fireproof bottom plate assembly 100, the first fireproof baffle 210, the second fireproof baffle 220 and the fireproof cover assembly The component 300 is made of fireproof material. For example, the fireproof base plate component 100, the first fireproof baffle 210, the second fireproof baffle 220 and the fireproof cover plate component 300 are made of ceramic fiber or fireproof steel, so that the fireproof base plate component 100, the first fireproof baffle 210, the second fireproof baffle 220 and the fireproof cover plate component 300 all have fireproof functions; the two second fireproof baffles 220 are each provided with an array exhaust hole 2201, so that the array exhaust holes 2201 of the two second fireproof baffles 220 are arranged relative to each other, so that the exhaust channel formed has a better pressure relief and exhaust effect, effectively reducing the pressure in the battery container 201.

[0037] The battery transport box 10 is detachably connected to the fireproof bottom plate assembly 100 through the first fireproof baffle 210 and the second fireproof baffle 220, so that the first fireproof baffle 210, the second fireproof baffle 220 and the frame bottom plate 110 can be quickly assembled, reducing the space occupied by the battery transport box 10, facilitating the storage and transportation of the battery transport box 10, and thus reducing the transportation cost of the battery transport box; the fireproof bottom plate assembly 100, the first fireproof baffle 210, the second fireproof baffle 220 and the fireproof cover assembly 300 contain fireproof materials, so that The fireproof performance of the fireproof bottom plate assembly 100, the first fireproof baffle 210, the second fireproof baffle 220 and the fireproof cover assembly 300 is improved, thereby improving the safety performance of the battery transport box 10; the two array exhaust holes 2201 are connected to the battery container 201 to form an exhaust channel, so that the recycled power batteries can be quickly decompressed and exhausted through the exhaust channel when overheating, expansion or explosion occurs, thereby increasing the explosion-proof performance of the battery transport box 10, reducing damage to the surrounding environment and personnel, and thus improving the safety of the battery transport box 10.

[0038] like Figure 1 As shown, the fireproof base plate assembly 100 includes a frame base plate 110 and a column 120. Each side of the frame base plate 110 is provided with a plurality of pin holes 1101. The bottoms of the first fireproof baffle 210 and the second fireproof baffle 220 are provided with pins. The pins of the two first fireproof baffles 210 are inserted into the corresponding pin holes 1101, and the pins of the two second fireproof baffles 220 are inserted into the corresponding pin holes 1101. The column 120 is arranged on the side of the frame base plate 110 away from the battery compartment 201. In this embodiment, a detachable connection is achieved through the pins of the two first fire baffles 210 and the two second fire baffles 220 and the pin holes 1101 of the frame bottom plate 110, thereby maintaining high stability and reliability between the fire bottom plate assembly 100 and the first fire baffle 210 and the second fire baffle 220, and improving the installation speed between the fire bottom plate assembly 100 and the first fire baffle 210 and the second fire baffle 220, thereby facilitating the storage and transportation of the battery transport box 10.

[0039] like Figure 2 and Figure 3As shown, in one embodiment, the fireproof base plate assembly 100 also includes an angle iron connecting piece 130, and the angle iron connecting piece 130 includes a first baffle 131 and a second baffle 132 connected to each other. The first baffle 131 is welded to one side of the column 120 and the frame base plate 110, and the first baffle 131 is used to limit the first fireproof baffle 210, and the second baffle 132 is welded to the other side of the column 120 and the frame base plate 110, and the second baffle 132 is used to limit the second fireproof baffle 220. In this embodiment, the first baffle 131 is welded to the column 120 and the frame bottom plate 110, and the second baffle 132 is welded to the column 120 and the frame bottom plate 110, thereby increasing the connection strength between the column 120 and the frame bottom plate 110. The first fire baffle 210 is connected to the frame bottom plate 110 through the pin of the first fire baffle 210, and the first baffle 131 limits and blocks the first fire baffle 210, so that the installation position of the first fire baffle 210 and the frame bottom plate 110 is fixed and the fit is tighter. The second fire baffle 220 is connected to the frame bottom plate 110 through the pin of the second fire baffle 220, and the second baffle 132 limits and blocks the second fire baffle 220, so that the installation position of the second fire baffle 220 and the frame bottom plate 110 is fixed and the fit is tighter, thereby improving the overall structural strength of the battery transport box 10.

[0040] like Figure 2 and Figure 3 As shown, in one embodiment, the angle iron connecting piece 130 is provided with a positioning bayonet 1301, and the two horizontally extending ends of the second fire damper 220 are further provided with support columns 221. The side walls of the support columns 221 are provided with positioning protrusions 2211, and the positioning protrusions 2211 are adapted to be embedded in the positioning bayonet 1301. In this embodiment, when installing the second fire damper 220, the positioning protrusions 2211 are aligned and embedded in the positioning bayonet 1301. The positioning bayonet 1301 has the function of positioning and guiding, ensuring that the second fire damper 220 can be accurately installed in the predetermined position. The positioning protrusions 2211 are matched and connected with the positioning bayonet 1301, so that the second fire damper 220 and the fire bottom plate assembly 100 are firmly connected, thereby preventing the second fire damper 220 from loosening with the fire bottom plate assembly 100.

[0041] like Figure 1 and Figure 5As shown, in one embodiment, a flared slot 1201 is provided at the bottom of the column 120, and a fixing protrusion 2212 is provided on the top of the support column 221. The fixing protrusion 2212 is adapted to fit within the flared slot 1201. In this embodiment, the flared slot 1201 improves the stability of the support column 120 on the ground. The flared slot 1201 of one battery transport box 10 cooperates with the fixing protrusion 2212 of the support column 221 of another battery transport box 10, allowing the battery transport boxes 10 to be stacked, thereby facilitating the loading of power batteries and improving the power battery loading rate.

[0042] like Figure 2 As shown, in one embodiment, the fireproof cover assembly 300 is provided with a mounting notch 301, which is adapted to receive the support column 221. In this embodiment, when the fireproof cover assembly 300 is installed on the battery compartment 201, the mounting notch 301 receives the support column 221, thereby fixing the installation position of the fireproof cover assembly 300, reducing the deviation of the fireproof cover assembly 300, and thus improving the installation speed of the fireproof cover assembly 300.

[0043] like Figure 1 As shown, in one embodiment, the battery transport box 10 further includes a snap assembly 400, which includes a snap 410 and a snap seat 420. The number of both the snap 410 and the snap seat 420 is multiple, and the multiple snap seats 420 are installed at intervals on the edge of the fireproof cover assembly 300. The first fireproof baffle 210 and the second fireproof baffle 220 are respectively installed with a plurality of snap 410, and each snap 410 is snapped to a corresponding snap seat 420. In this embodiment, the tight snap connection between the multiple snap 410 and the corresponding snap seats 420 forms a stable connection between the first fireproof baffle 210 and the second fireproof baffle 220 and the fireproof cover assembly 300, ensuring the integrity of the battery transport box 10 and the safety of the batteries inside, making it easy to open and close the fireproof cover assembly 300, thereby facilitating the loading and unloading of power batteries.

[0044] In one embodiment, the inner walls of the fireproof base plate assembly 100 and the fireproof cover plate assembly 300 are provided with flame retardant material; or / and, the inner walls of the first fireproof baffle 210 and the second fireproof baffle 220 are provided with flame retardant material, and the flame retardant material has corresponding through holes at the positions corresponding to the array exhaust holes 2201. In this embodiment, the flame retardant material can be made of ceramic fiber fireproof cloth, glass fiber fireproof cloth, asbestos or chemical fiber fireproof cloth, etc. The flame retardant material can be laid on the inner walls of the fireproof base plate assembly 100, the fireproof cover plate assembly 300, the first fireproof baffle 210 and the second fireproof baffle 220, so that the fireproof performance of the battery transport box 10 is improved; when the recycled power batteries collide or vibrate during transportation, the flame retardant material has a certain buffering capacity, and the flame retardant material can also absorb and disperse the impact force, thereby reducing the direct collision between the power batteries and the battery transport box 10, thereby improving the safety performance of the battery transport box 10.

[0045] like Figure 1 As shown, in one embodiment, the fireproof side panel assembly 200 further includes a first lifting lug 230 and a second lifting lug 240. The first lifting lug 230 is fixedly connected to the first fireproof baffle 210, and the second lifting lug 240 is fixedly connected to the second fireproof baffle 220. The fireproof bottom panel assembly 100 is further provided with a third lifting lug 140. The third lifting lug 140 is connected to the frame bottom panel 110 and is disposed in the battery compartment 201. The fireproof cover panel assembly 300 includes a frame cover panel 310 and a fourth lifting lug 320. The frame cover panel 310 covers the battery compartment 201, and the fourth lifting lug 320 is connected to the side of the frame cover panel 310 facing away from the battery compartment 201. In this embodiment, the operator can easily move the first fire baffle 210 and the second fire baffle 220 through the first lifting ear 230 and the second lifting ear 240, separate the first fire baffle 210 from the frame bottom plate 110, and separate the pin of the second fire baffle 220 from the frame bottom plate 110, thereby improving the disassembly efficiency of the battery transport box 10 and reducing the difficulty of disassembly; the loaded power battery can be bundled and fixed through the third lifting ear 140, thereby reducing the shaking of the power battery during transportation, thereby improving the safety performance of the power battery cell during transportation; the fourth lifting ear 320 provides a stable lifting position, and the operator can carry the frame cover 310 through the fourth lifting ear 320, or can bundle the fourth lifting ear 320 and then carry out lifting operations through a lifting machine, thereby further improving the efficiency and safety of carrying the frame cover 310.

[0046] In one embodiment, the surfaces of the fireproof bottom plate assembly 100, the fireproof side plate assembly 200, and the fireproof cover plate assembly 300 are all covered with a fireproof and rustproof plastic spray layer. In this embodiment, the surfaces of the fireproof bottom plate assembly 100, the fireproof side plate assembly 200, and the fireproof cover plate assembly 300 are sprayed with a fireproof and rustproof plastic spray layer, so that the surfaces of the fireproof bottom plate assembly 100, the fireproof side plate assembly 200, and the fireproof cover plate assembly 300 are covered with a fireproof and rustproof plastic spray layer, thereby improving the fireproof performance of the battery transport box 10 and reducing corrosion and oxidation caused by the fireproof bottom plate assembly 100, the fireproof side plate assembly 200, and the fireproof cover plate assembly 300.

[0047] like Figure 1 As shown, in one embodiment, the fireproof bottom plate assembly 100 further includes a lifting portion 150, which is disposed on a side of the frame bottom plate 110 facing away from the first fireproof baffle 210. The lifting portion 150 is provided with a lifting hole 1501. In this embodiment, the battery transport box 10 can be transported through the lifting hole 1501 of the lifting portion 150, thereby ensuring stable and efficient transport of the battery transport box 10.

[0048] Compared with the prior art, the present disclosure has at least the following advantages:

[0049] 1. The battery transport box 10 is detachably connected to the fireproof bottom plate assembly 100 through the first fireproof baffle 210 and the second fireproof baffle 220, so that the first fireproof baffle 210, the second fireproof baffle 220 and the frame bottom plate 110 can be quickly assembled, reducing the space occupied by the battery transport box 10, facilitating the storage and transportation of the battery transport box 10, and thus reducing the transportation cost of the battery transport box;

[0050] 2. The fireproof bottom plate assembly 100, the first fireproof baffle 210, the second fireproof baffle 220 and the fireproof cover plate assembly 300 contain fireproof materials, which improve the fireproof performance of the fireproof bottom plate assembly 100, the first fireproof baffle 210, the second fireproof baffle 220 and the fireproof cover plate assembly 300, thereby improving the safety performance of the battery transport box 10;

[0051] 3. The two array exhaust holes 2201 are connected to the battery container 201 to form an exhaust channel, so that the recycled power batteries can be quickly depressurized and exhausted through the exhaust channel when overheating, expansion or explosion occurs, thereby increasing the explosion-proof performance of the battery transport box 10, reducing damage to the surrounding environment and personnel, and thus improving the safety of the battery transport box 10.

[0052] The above-described embodiments merely represent several implementation methods of the present disclosure. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the disclosed patent. It should be noted that a person of ordinary skill in the art may make various modifications and improvements without departing from the scope of the present disclosure, all of which fall within the scope of protection of the present disclosure. Therefore, the scope of protection of the disclosed patent shall be determined by the appended claims.

Claims

1. A battery transport box, characterized in that: It includes a fireproof bottom plate assembly (100), a fireproof side plate assembly (200) and a fireproof cover plate assembly (300). The fireproof side panel assembly (200) includes a first fireproof baffle (210) and a second fireproof baffle (220), the number of the first fireproof baffle (210) and the number of the second fireproof baffle (220) are both two, the two first fireproof baffles (210) are arranged in parallel, the two first fireproof baffles (210) are detachably connected to two opposite sides of the fireproof bottom panel assembly (100), the two second fireproof baffles (220) are arranged in parallel, the two second fireproof baffles (220) are detachably connected to the other two opposite sides of the fireproof bottom panel assembly (100), so that the fireproof bottom panel assembly (100), the first fireproof baffle (210) and the second fireproof baffle (220) together form a battery container (201), and the two second fireproof baffles (220) are both provided with an array exhaust hole (2201), and the array exhaust hole (2201) is connected to the battery container (201) to form an exhaust channel; The fireproof cover plate assembly (300) is arranged to cover the opening of the battery container (201).

2. The battery transport box according to claim 1, characterized in that: The fireproof base plate assembly (100) includes a frame base plate (110) and a column (120), each side of the frame base plate (110) is provided with a plurality of latch holes (1101), the bottoms of the first fireproof baffle (210) and the second fireproof baffle (220) are provided with latches, the latches of the two first fireproof baffles (210) are inserted into the corresponding latch holes (1101), and the latches of the two second fireproof baffles (220) are inserted into the corresponding latch holes (1101), and the column (120) is arranged on the side of the frame base plate (110) away from the battery container (201).

3. The battery transport box according to claim 2, characterized in that: The fireproof base plate assembly (100) further includes an angle iron connecting piece (130), wherein the angle iron connecting piece (130) includes a first baffle (131) and a second baffle (132) connected to each other, wherein the first baffle (131) is welded to one side of the column (120) and the frame base plate (110), and the first baffle (131) is used to limit the first fireproof baffle (210), and the second baffle (132) is welded to the other side of the column (120) and the frame base plate (110), and the second baffle (132) is used to limit the second fireproof baffle (220).

4. The battery transport box according to claim 3, characterized in that: The angle iron connecting piece (130) is provided with a positioning bayonet (1301), and the two horizontally extending ends of the second fire baffle (220) are also provided with support columns (221), and the side walls of the support columns (221) are convexly provided with positioning protrusions (2211), and the positioning protrusions (2211) are adapted to be embedded in the positioning bayonet (1301).

5. The battery transport box according to claim 4, characterized in that: The upright column (120) is provided with a flared slot (1201), and the support column (221) is provided with a fixing protrusion (2212), and the fixing protrusion (2212) is adapted to fit the flared slot (1201).

6. The battery transport box according to claim 4, characterized in that: The fireproof cover assembly (300) is provided with an installation notch (301), and the installation notch (301) is adapted to accommodate the support column (221).

7. The battery transport box according to claim 1, characterized in that: The battery transport box further comprises a snap assembly (400), wherein the snap assembly (400) comprises a snap member (410) and a snap seat (420), wherein the snap members (410) and the snap seats (420) are both plural in number, and the plural snap seats (420) are installed at intervals on the edge of the fireproof cover assembly (300), and the first fireproof baffle (210) and the second fireproof baffle (220) are respectively installed with a plurality of the snap members (410), and each of the snap members (410) is snapped to the corresponding snap seat (420).

8. The battery transport box according to claim 1, characterized in that: The inner walls of the fireproof base plate assembly (100) and the fireproof cover plate assembly (300) are provided with flame retardant material; or / and, the inner walls of the first fireproof baffle (210) and the second fireproof baffle (220) are provided with flame retardant material, and the flame retardant material has corresponding through holes at corresponding locations of the array exhaust holes (2201).

9. The battery transport box according to claim 2, characterized in that: The fireproof side panel assembly (200) further comprises a first lifting lug (230) and a second lifting lug (240), wherein the first lifting lug (230) is connected to the first fireproof baffle (210), and the second lifting lug (240) is connected to the second fireproof baffle (220); or / and, The fireproof bottom plate assembly (100) is further provided with a third lifting lug (140), the third lifting lug (140) being connected to the frame bottom plate (110), and the third lifting lug (140) being arranged in the battery container (201); or / and, The fireproof cover assembly (300) comprises a frame cover (310) and a fourth lifting lug (320), wherein the frame cover (310) covers the battery container (201), and the fourth lifting lug (320) is connected to a side of the frame cover (310) facing away from the battery container (201).

10. The battery transport box according to claim 2, characterized in that: The fireproof bottom plate assembly (100) further includes a lifting portion (150), the lifting portion (150) being arranged on a side of the frame bottom plate (110) away from the battery container (201), and the lifting portion (150) being provided with a lifting hole (1501).