Adjustable storage battery bracket capable of preventing spontaneous combustion
By designing an adjustable, self-igniting battery tray, which employs an aluminum alloy grid layer, a protective layer, and a detection layer, combined with temperature and humidity sensors and heat dissipation components, the problem of spontaneous combustion of the battery tray upon impact is solved. This achieves lightweight, self-igniting, and flexible adjustment of the tray, while also providing good heat insulation and detection functions.
Patent Information
- Application Number
- CN202422670642.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-11-04
AI Technical Summary
Existing battery trays are prone to spontaneous combustion upon impact or compression, and their size cannot be flexibly adjusted to meet the needs of different batteries.
An adjustable, self-igniting battery holder was designed. It adopts an aluminum alloy grid layer, a protective layer, a detection layer, and an anti-corrosion layer structure. Combined with temperature and humidity sensors and heat dissipation components, the holder can be extended and retracted and dissipated through a telescopic structure. A conductive wire is used to detect collisions and preventive measures are implemented through a PLC controller.
The bracket achieves lightweight, high strength, and good thermal insulation, effectively preventing battery spontaneous combustion. It also prevents potential collisions through detection layers and sensors, and features flexible telescopic and heat dissipation functions.
Smart Images

Figure CN223527291U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of battery bracket, more specifically, the utility model relates to an adjustable anti -ignition battery bracket. BACKGROUND
[0002] A battery bracket is a device used to secure and support batteries, it is usually designed to accommodate one or more battery units, in order to facilitate installation, maintenance and protection of the battery. The design of the battery bracket can be different according to different application scenarios and battery types, they can be simple metal frames, or complex plastic structures, with sliding mechanism or other special functions, to adapt to specific installation requirements and improve the convenience of use;
[0003] For example, application No. CN202020739892.8 discloses a battery bracket, which uses a tray instead of a flat tray, and sets grooves and converging grooves on the tray bottom plate, having temporary storage and drainage functions; The above device mainly solves the problem that when the vehicle is damaged due to collision and other factors, the leaked electrolyte of the battery cannot be temporarily stored, but flows to other positions in the cabin, corroding the related parts of the vehicle. However, the above device only solves the problem that the leaked electrolyte of the battery cannot be temporarily stored, when the battery is collided or pressed, the battery is easy to self-ignite, and most battery brackets are fixed in size, which cannot be adjusted according to the size of the battery.
[0004] Therefore, in view of the above problems, an adjustable anti -ignition battery bracket is proposed. INVENTION CONTENTS
[0005] In order to overcome the above-mentioned defects of the prior art, the utility model provides an adjustable anti -ignition battery bracket to solve the problems raised in the above background art.
[0006] In order to achieve the above-mentioned purpose, the utility model provides the following technical scheme: an adjustable anti -ignition battery bracket, comprising a fixed plate, a bracket body and a heat dissipation assembly, the edge of the upper end face of the bracket body is provided with a connecting plate, and the bracket body is bolted and limited in position on the bottom end face of the fixed plate through the connecting plate, the side wall of the bracket body is provided with a heat dissipation assembly, the upper end face of the bracket body is open, the upper end face of the fixed plate and the side wall and the bottom end face of the bracket body are provided with a telescopic structure, and the telescopic structure is provided with three groups, and two groups of telescopic structures are located on the two sides of the heat dissipation assembly, the bottom of the inner side of the bracket body is provided with a temperature and humidity sensor.
[0007] The bracket body is composed of an aluminum alloy grid layer, a protection layer, a detection layer and an anticorrosion layer, the protection layer is provided with two groups, and the two groups of protection layers are installed on the two sides of the aluminum alloy grid layer, one group of the protection layers is provided with the detection layer away from the side of the aluminum alloy grid layer, the aluminum alloy grid layer, the protection layer and the detection layer are wrapped by the anticorrosion layer, the detection layer comprises an acrylic plate and a conductive wire, the acrylic plate is provided with two layers, and the conductive wire is arranged between the two layers of the acrylic plate, the conductive wire is uniformly arranged in cross, and the telescopic structure comprises a sliding hole and a telescopic plate.
[0008] Preferably, the heat dissipation assembly comprises a first air inlet and a second air inlet, the first air inlet is installed on the side wall of the bracket body, the second air inlet is installed above the first air inlet, one side of the first air inlet is provided with a fan, one side of the second air inlet is provided with a heat dissipation frame, the heat dissipation frame is composed of a heat dissipation copper column and a heat dissipation copper sheet, a plurality of groups of heat dissipation copper sheets are arranged on the outer diameter surface of the heat dissipation copper column, and an air outlet is arranged on the side of the heat dissipation frame away from the second air inlet.
[0009] Preferably, the bracket body is detachably connected with the fixing plate through the connecting plate, the detection layer is installed on the inner wall of the bracket body, and the conductive wire in the detection layer is electrically connected with a PLC controller at both ends, and the PLC controller is electrically connected with the fan and the temperature and humidity sensor.
[0010] Preferably, the telescopic plate and the bracket body form a sliding structure through the sliding hole, a filter plate is installed between the fan and the heat dissipation frame, and the heat dissipation frame is installed on the filter plate in the longitudinal direction, and the inner cavity of the bracket body forms a communication structure with the air outlet through the first air inlet, the second air inlet and the filter plate.
[0011] Preferably, the heat dissipation copper sheets installed on the outer diameter surface of the heat dissipation copper column are arranged in an inclined manner, and the heat dissipation copper sheets are connected with the heat dissipation copper column in a limiting mode through welding.
[0012] The technical effects and advantages of the utility model are as follows:
[0013] Compared with the prior art, the adjustable anti-self-ignition battery bracket has the effects of light weight, high strength and good heat insulation of the bracket body, the bracket body can be detected through the detection layer to prevent the bracket body from being collided, the bracket body can be cooled through the cooling assembly and the bracket body can be telescoped through the telescopic structure, the bracket body can prevent the installed battery from self-ignition, the conductive wire and the temperature and humidity sensor can prevent the bracket body from being collided, and the cooling assembly and the telescopic structure can cool the bracket body and make the bracket body telescope.
[0014] Compared with the prior art, the adjustable anti-self-ignition battery bracket has the effects of light weight, high strength and good heat insulation of the bracket body, the bracket body can be detected through the detection layer to prevent the bracket body from being collided, the bracket body can be cooled through the cooling assembly and the bracket body can be telescoped through the telescopic structure, the bracket body can prevent the installed battery from self-ignition, the conductive wire and the temperature and humidity sensor can prevent the bracket body from being collided, and the cooling assembly and the telescopic structure can cool the bracket body and make the bracket body telescope.
[0015] Compared with the prior art, the adjustable anti-self-ignition battery bracket has the effects of light weight, high strength and good heat insulation of the bracket body, the bracket body can be detected through the detection layer to prevent the bracket body from being collided, the bracket body can be cooled through the cooling assembly and the bracket body can be telescoped through the telescopic structure, the bracket body can prevent the installed battery from self-ignition, the conductive wire and the temperature and humidity sensor can prevent the bracket body from being collided, and the cooling assembly and the telescopic structure can cool the bracket body and make the bracket body telescope. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a three-dimensional structure schematic view of the utility model.
[0017] Figure 2This is a schematic diagram of the cross-sectional structure of the telescopic structure of this utility model.
[0018] Figure 3 This is a schematic diagram of the cross-sectional structure of the bracket body of this utility model.
[0019] Figure 4 This is a side view of the heat dissipation component of this utility model.
[0020] Figure 5 This is a schematic diagram of the front section of the bracket body of this utility model.
[0021] The attached diagram is labeled as follows: 1. Fixing plate; 2. Bracket body; 21. Aluminum alloy grille layer; 22. Protective layer; 23. Detection layer; 24. Anti-corrosion layer; 25. Acrylic sheet; 26. Conductive wire; 3. Heat dissipation assembly; 31. First air inlet; 32. Second air inlet; 33. Fan; 34. Heat dissipation frame; 35. Heat dissipation copper column; 36. Heat dissipation copper fin; 37. Exhaust port; 4. Connecting plate; 5. Telescopic structure; 51. Sliding hole; 52. Telescopic plate; 6. Temperature and humidity sensor; 7. PLC controller. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example
[0023] As attached Figures 1 to 3 An adjustable, self-igniting battery bracket is shown, comprising a fixing plate 1, a bracket body 2, and a heat dissipation assembly 3. A connecting plate 4 is provided at the edge of the upper end face of the bracket body 2, and the bracket body 2 is bolted to the bottom end face of the fixing plate 1 via the connecting plate 4. A heat dissipation assembly 3 is provided on the side wall of the bracket body 2. The upper end face of the bracket body 2 is open. A telescopic structure 5 is provided on the upper end face of the fixing plate 1 and the side wall and bottom end face of the bracket body 2. Three sets of telescopic structures 5 are provided, and two sets of telescopic structures 5 are located on both sides of the heat dissipation assembly 3. A temperature and humidity sensor 6 is provided at the bottom of the inner side of the bracket body 2.
[0024] The bracket body 2 is composed of an aluminum alloy grid layer 21, a protection layer 22, a detection layer 23 and a corrosion-resistant layer 24. The protection layer 22 is provided in two groups, and the two groups of protection layers 22 are installed on the two sides of the aluminum alloy grid layer 21. One of the two groups of protection layers 22 is provided with the detection layer 23 away from one side of the aluminum alloy grid layer 21. The aluminum alloy grid layer 21, the protection layer 22 and the detection layer 23 are wrapped by the corrosion-resistant layer 24. The protection layer 22 is made of Torayca T1000G-12K-52S Carbon Fiber Reinforced Polymer material. The detection layer 23 includes an acrylic plate 25 and a conductive wire 26. The acrylic plate 25 is provided in two layers, and the conductive wire 26 is arranged between the two layers of acrylic plates 25. The conductive wire 26 is arranged in a uniform cross pattern. The telescopic structure 5 includes a sliding hole 51 and a telescopic plate 52. The sliding hole 51 is formed in the side wall and the bottom end face of the bracket body 2 where the three groups of telescopic structures 5 are installed, and the sliding hole 51 is slidably connected with the telescopic plate 52.
[0025] The bracket body 2 has the effects of light weight, high strength and good heat insulation due to its special structure. The aluminum alloy grid layer 21 and the protection layer 22 are used to achieve the effects of light weight, high strength and good heat insulation of the bracket body 2. The outer diameter surface of the bracket body 2 is protected by the corrosion-resistant layer 24. The acrylic plate 25 and the conductive wire 26 in the detection layer 23 are used to detect the bracket body 2. When the bracket body 2 collides or bends, the acrylic plate 25 drives the conductive wire 26 to displace, causing the conductive wire 26 to break. Whether the conductive wire 26 breaks or not can determine whether the bracket body 2 collides or not, thereby achieving the effect of prevention. The internal temperature and humidity sensor 6 further detects the inner cavity of the bracket body 2. The temperature and humidity sensor 6 and the conductive wire 26 are electrically connected with the PLC controller 7, thereby achieving the effect of detection and prevention. The telescopic structure 5 is used to achieve the effect of telescoping the bracket body 2. The side wall of the bracket body 2 is telescoped by the sliding hole 51 and the telescopic plate 52. The above structure achieves the effects of heat dissipation and telescoping of the bracket body 2. Embodiment
[0026] Based on the embodiment 1, the scheme in embodiment 1 is further refined in combination with the specific working mode as shown in the following: Figures 1 to 5 The details are described below:
[0027] As a preferred implementation, the heat dissipation assembly 3 comprises a first air inlet 31 and a second air inlet 32, the first air inlet 31 is installed on the side wall of the bracket body 2, and the second air inlet 32 is installed above the first air inlet 31, one side of the first air inlet 31 is provided with a fan 33, and one side of the second air inlet 32 is provided with a heat dissipation rack 34, and the heat dissipation rack 34 is composed of a heat dissipation copper column 35 and a heat dissipation copper sheet 36, a plurality of groups of heat dissipation copper sheets 36 are arranged on the outer diameter surface of the heat dissipation copper column 35, and an exhaust port 37 is arranged on the side of the heat dissipation rack 34 away from the second air inlet 32, wherein the heat dissipation assembly 3 and the telescopic structure 5 are used to realize the heat dissipation of the inner cavity of the bracket body 2 and realize the telescopic effect of the bracket body 2, wherein the inner cavity of the bracket body 2 is in communication with the exhaust port 37 through the first air inlet 31, the second air inlet 32 and the filter plate, wherein the fan 33 rotates, and the fan 33 drives the gas in the inner cavity of the bracket body 2 to pass through the first air inlet 31, the second air inlet 32 and the filter plate and be discharged from the exhaust port 37, and because the heat dissipation rack 34 is composed of the heat dissipation copper column 35 and the heat dissipation copper sheet 36, the heat dissipation copper column 35 and the heat dissipation copper sheet 36 are used for auxiliary heat dissipation, thereby realizing the gas circulation in the inner cavity of the bracket body 2 and realizing the heat dissipation effect.
[0028] As a preferred implementation, the bracket body 2 is detachably connected with the fixed plate 1 through the connecting plate 4 to form a bolt limiting connection structure, the detection layer 23 is installed on the inner wall of the bracket body 2, and the conductive wire 26 in the detection layer 23 is electrically connected with the PLC controller 7 at both ends, and the PLC controller 7 is electrically connected with the fan 33 and the temperature and humidity sensor 6.
[0029] As a preferred implementation, the telescopic plate 52 is slidably connected with the bracket body 2 through the sliding hole 51, the filter plate is installed between the fan 33 and the heat dissipation rack 34, the heat dissipation rack 34 is longitudinally installed on the filter plate, and the inner cavity of the bracket body 2 is in communication with the exhaust port 37 through the first air inlet 31, the second air inlet 32 and the filter plate.
[0030] As a preferred implementation, the heat dissipation copper sheets 36 installed on the outer diameter surface of the heat dissipation copper column 35 are arranged in an inclined manner, and the heat dissipation copper sheets 36 are connected with the heat dissipation copper column 35 in a limiting manner through welding.
[0031] The utility model discloses a working process is as follows: among them utilize aluminium alloy grid layer 21 and protection layer 22 in bracket body 2 are used for realizing bracket body 2 has the effect of light weight, high strength and better heat insulation, through anticorrosive layer 24 to the outer diameter surface protection of bracket body 2, can also through the detection layer 23 in acrylic plate 25 and conductive wire 26 is used for detecting bracket body 2, and then when bracket body 2 collides, bends, acrylic plate 25 drives the displacement of conductive wire 26, and then makes conductive wire 26 break, according to whether the breakage of conductive wire 26, judge whether bracket body 2 collides, and utilize the inside installation of temperature and humidity sensor 6 further detects the inner chamber of bracket body 2, and temperature and humidity sensor 6 and conductive wire 26 are electrically connected with PLC controller 7, and the effect of detection prevention is realized together, wherein the inner chamber of bracket body 2 utilizes first air inlet 31, second air inlet 32 and filter plate and exhaust port 37 constitute the intercommunication structure, utilize fan 33 to drive the gas in the inner chamber of bracket body 2 to pass through first air inlet 31, second air inlet 32 and filter plate and exclude from exhaust port 37, and because the heat dissipation frame 34 is composed of heat dissipation copper column 35 and heat dissipation copper sheet 36, utilize heat dissipation copper column 35 and heat dissipation copper sheet 36 to assist heat dissipation, wherein through telescopic structure 5 realizes the telescopic effect of bracket body 2, wherein the sidewall of bracket body 2 realizes the telescopic effect through slide hole 51 and telescopic plate 52.
Claims
1. An adjustable anti-sparking battery holder comprising a fixing plate (1), a holder body (2) and a heat dissipation assembly (3), characterized in that: The edge of the upper end face of the bracket body (2) is provided with a connecting plate (4), and the bracket body (2) is bolted and positioned on the bottom end face of the fixed plate (1) through the connecting plate (4), the side wall of the bracket body (2) is provided with a heat dissipation assembly (3), the upper end face of the bracket body (2) is open, the upper end face of the fixed plate (1) and the side wall and the bottom end face of the bracket body (2) are provided with a telescopic structure (5), and the telescopic structure (5) is provided with three groups, and two groups of the telescopic structure (5) are located on the two sides of the heat dissipation assembly (3), and the bottom of the inner side of the bracket body (2) is provided with a temperature and humidity sensor (6). The bracket body (2) is composed of an aluminum alloy grid layer (21), a protection layer (22), a detection layer (23) and a corrosion-resistant layer (24), the protection layer (22) is provided with two groups, and the two groups of protection layers (22) are installed on the two sides of the aluminum alloy grid layer (21), one group of the protection layer (22) is provided with a detection layer (23) away from one side of the aluminum alloy grid layer (21), the aluminum alloy grid layer (21), the protection layer (22) and the detection layer (23) are wrapped by the corrosion-resistant layer (24), the detection layer (23) includes an acrylic plate (25) and a conductive wire (26), the acrylic plate (25) is provided with two layers, and the conductive wire (26) is arranged between the two layers of the acrylic plate (25), the conductive wire (26) is arranged in cross and uniform arrangement, the telescopic structure (5) includes a sliding hole (51) and a telescopic plate (52), the sliding hole (51) is formed in the side wall and the bottom end face of the bracket body (2) where the three groups of telescopic structures (5) are installed, and the sliding hole (51) is slidably connected with the telescopic plate (52).
2. An adjustable, self-ignition resistant battery carrier as defined in claim 1, wherein: The heat dissipation assembly (3) includes a first air inlet (31) and a second air inlet (32), the first air inlet (31) is installed on the side wall of the bracket body (2), and the second air inlet (32) is installed above the first air inlet (31), one side of the first air inlet (31) is provided with a fan (33), one side of the second air inlet (32) is provided with a heat dissipation rack (34), and the heat dissipation rack (34) is composed of a heat dissipation copper column (35) and a heat dissipation copper sheet (36), the outer diameter surface of the heat dissipation copper column (35) is provided with a plurality of groups of heat dissipation copper sheets (36), and one side of the heat dissipation rack (34) away from the second air inlet (32) is provided with an air outlet (37).
3. An adjustable, self-ignition resistant battery carrier as defined in claim 2, wherein: The bracket body (2) and the fixed plate (1) constitute a detachable bolt limiting connection structure through the connecting plate (4), the detection layer (23) is installed on the inner wall of the bracket body (2), and the conductive wire (26) in the detection layer (23) is electrically connected with a PLC controller (7) at both ends, and the PLC controller (7) is electrically connected with the fan (33) and the temperature and humidity sensor (6).
4. An adjustable, self-ignition resistant battery carrier as defined in claim 2, wherein: The telescopic plate (52) and the bracket body (2) form a sliding structure through the sliding hole (51), a filter plate is installed between the fan (33) and the heat dissipation frame (34), the heat dissipation frame (34) is longitudinally installed on the filter plate, and the inner cavity of the bracket body (2) forms a communication structure with the exhaust port (37) through the first air inlet (31), the second air inlet (32) and the filter plate.
5. An adjustable, self-ignition resistant battery carrier as defined in claim 2, wherein: The heat dissipation copper sheets (36) installed on the outer diameter surface of the heat dissipation copper column (35) are arranged in an inclined manner, and the heat dissipation copper sheets (36) are limitingly connected with the heat dissipation copper column (35) through welding connection.
Citation Information
Patent Citations
Storage battery bracket
CN211789197U