New energy storage battery temperature protection device

By employing arrayed surface-mount blocks and air-cooled output components in new energy vehicle batteries, combined with a water-cooled circulation system, the problem of battery temperature accumulation has been solved, thus improving safety.

CN223911701UActive Publication Date: 2026-02-13ANHUI LVWO RECYCLING ENERGY TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202423276253.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-29
Publication Date
2026-02-13
Estimated Expiration
2034-12-29

AI Technical Summary

Technical Problem

In existing new energy vehicle battery temperature protection devices, the high-efficiency heat insulation of the insulation layer leads to heat accumulation, posing a safety risk.

Method used

An array of surface-mounted blocks, along with a through-tube, drive pump, water distribution base, pulverizing coil, and finned assembly, are used in conjunction with an air-cooled output component to form an open structure, enabling effective heat dissipation.

Benefits of technology

It improves battery safety during operation by effectively reducing temperature through a combination of air cooling and water cooling, thereby enhancing equipment safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a new energy storage battery temperature protection device, which comprises a protection combination part and an air cooling output assembly, the inner side of the outer end of the protection combination part is provided with a circulating emission mechanism in sleeved connection, and the air cooling output assembly in bolted connection is arranged above the periphery of the protection combination part. The air cooling output assembly comprises an air cooling frame, a perforated base, an air duct and a driving fan, the air cooling frame is arranged above the periphery of the protective combined part, and the perforated base connected through bolts is arranged above the air cooling frame; according to the temperature protection device for the new energy storage battery, the side of the storage battery body is provided with surface increasing attaching blocks which are distributed in an array mode, the inserted and sleeved shell is tightly inserted and attached, and an air cooling output assembly is matched with a driving water pump, a water distribution base, a smashing coil pipe and a fin set through a penetrating sleeve. And the temperature can be effectively discharged out of the equipment, so that the safety of the equipment in the operation process is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to new energy storage battery technical field, concretely is a new energy storage battery temperature protection device. BACKGROUND

[0002] New energy automobile refers to the unconventional vehicle fuel as power source (or using conventional vehicle fuel, adopting new type vehicle power device), the advanced technology of comprehensive vehicle power control and drive, forms the automobile of advanced technical principle, has new technology, new structure, most new energy automobiles install the battery in the bottom of the car, and are protected by the battery box, in order to guarantee the safety of more batteries as far as possible in the limited space and guarantee the safety of battery, battery generally adopts modularization, and the battery is directly pasted between the battery.

[0003] In the battery temperature protection device field, such as CN202410692005.9 relates to the new energy automobile power supply technical field, specifically a new energy automobile power supply protection device, including protection structure, air inlet structure, air outlet structure and heat dissipation structure, the use of air inlet structure speeds up the speed of air entering the heat dissipation structure, and improves the air flow rate, so that air quickly passes through the heat dissipation structure, greatly improves the heat dissipation capacity of the heat dissipation structure, the use of air outlet structure speeds up the flow rate of air in the heat dissipation structure, so that hot air in the heat dissipation structure is quickly discharged, accelerates heat loss, and prevents water from flowing back, further ensuring the safety of the battery, however, the heat insulation layer is provided with a hollow structure, due to the high heat preservation effect, the heat is easily gathered, and the risk is generated. UTILITY MODEL CONTENT

[0004] The utility model aims at providing a new energy storage battery temperature protection device to solve the problems in the above background technology.

[0005] By adopting the above technical scheme, the edge side of the storage battery body is provided with array distributed face increasing patches, which are tightly inserted and pasted by the plug-in sleeve shell, and the through sleeve, control valve block, driven water pump, water distribution base, crushing snake tube and fin group cooperate with the air cooling output assembly, so that the temperature discharge equipment can be effectively discharged in the open structure, thereby improving the safety of the equipment in the running process.

[0006] To achieve the purpose of the utility model, the utility model realizes the following technical scheme: a new energy storage battery temperature protection device, comprising a protection combination part and an air cooling output assembly, a circulating emission mechanism connected with the sleeve is arranged on the inner side of the outer end of the protection combination part, and the air cooling output assembly is connected with the sleeve.

[0007] The air cooling output assembly comprises an air cooling frame, an open base, an air duct and a driving fan, the air cooling frame is arranged above the four sides of the protection assembly, the open base is arranged above the air cooling frame through bolt connection, the air duct is arranged on the inner side of the open base through bolt sleeve connection, and the driving fan is arranged in the air duct.

[0008] As a preferred embodiment of the utility model, the air duct is arranged in an array along the central axis of the open base.

[0009] As a preferred embodiment of the utility model, the protection assembly comprises a pad substrate, a lower expansion frame, an assembly disc, a shock absorber, a folded shell, a limiting block, a battery body, a surface increasing patch, a plug-in sleeve shell and an outer side frame, the lower expansion frame is arranged on the lower side of the pad substrate through bolt connection, the assembly disc is arranged above the four sides of the pad substrate through bolt connection, the shock absorber is arranged above the assembly disc, and the folded shell is arranged above the shock absorber.

[0010] As a preferred embodiment of the utility model, the limiting block is arranged on the inner side of the folded shell, the battery body is arranged on the opposite side of the limiting block, the surface increasing patches are arranged in an array on the side of the battery body, the plug-in sleeve shell is arranged on the outer side of the surface increasing patches through plug-in installation, and the outer side frame is arranged on the outer side of the plug-in sleeve shell.

[0011] As a preferred embodiment of the utility model, the circulating emission mechanism comprises a through sleeve, an external connecting pipe, a vertical pipe, a water tank, a supporting plate, a water supplementing opening, a control valve block, a driving water pump, a water distribution base, a crushing snake pipe and a fin group, the through sleeve is sleeved on the outer end of the plug-in sleeve shell, the external connecting pipe is arranged at both ends of the through sleeve, the vertical pipe is arranged below the external connecting pipe, the water tank is arranged at one end of the vertical pipe, the supporting plate is arranged below the water tank, and the water supplementing opening is arranged on the outer side of one end of the water tank.

[0012] As a preferred embodiment of the utility model, the control valve block is arranged at the output end of the water tank, the driving water pump is arranged at one end of the control valve block, the water distribution base is arranged at the output end of the driving water pump, the crushing snake pipe is arranged at the output end of the water distribution base, and the fin group is arranged on the outer side of the crushing snake pipe through sleeve installation.

[0013] Compared with the prior art, the new energy storage battery temperature protection device has the advantages that the surface increasing patches arranged in an array on the side of the battery body are used to tightly plug and fit the plug-in sleeve shell, the through sleeve, the control valve block, the driving water pump, the water distribution base, the crushing snake pipe and the fin group are matched with the air cooling output assembly, the temperature can be effectively discharged in an open structure, and the safety of the equipment during operation is improved. Attached Figure Description

[0014] Figure 1 This is a front-view three-dimensional structural schematic diagram of the present invention;

[0015] Figure 2 This is a three-dimensional structural diagram of the present invention viewed from below;

[0016] Figure 3 This is a three-dimensional structural diagram of the surface-enhancing patch and the inserting sleeve of this utility model;

[0017] Figure 4 This is a three-dimensional structural diagram of the pulverizing snake tube and fin assembly of this utility model.

[0018] In the diagram: 1. Protective assembly; 101. Pad base; 102. Lower expansion frame; 103. Assembly tray; 104. Shock absorber; 105. Folded housing; 106. Limiting block; 107. Battery body; 108. Surface-mounting block; 109. Insertion sleeve; 1010. Side frame; 2. Circulating distribution mechanism; 201. Through sleeve; 202. External connecting pipe; 203. Vertical pipe; 204. Water tank; 205. Support plate; 206. Water inlet; 207. Control valve block; 208. Drive water pump; 209. Water distribution base; 2010. Crushing coil; 2011. Fin assembly; 3. Air-cooled output assembly; 301. Air-cooled frame; 302. Perforated base; 303. Air duct; 304. Drive fan. Detailed Implementation

[0019] 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.

[0020] Please see Figures 1-4 This utility model provides a technical solution: a new energy storage battery temperature protection device, including a protective assembly 1 and a wind-cooled output assembly 3. The outer end of the protective assembly 1 is provided with a sleeved circulating dissipation mechanism 2, and the upper periphery of the protective assembly 1 is provided with a bolted wind-cooled output assembly 3.

[0021] The air-cooling output assembly 3 comprises an air-cooling frame 301, an open base 302, an air duct 303, and a driving fan 304. The air-cooling frame 301 is arranged above the four sides of the protection assembly 1. The open base 302 is arranged above the air-cooling frame 301 by screwing. The air duct 303 is arranged on the inner side of the open base 302 by screwing. The driving fan 304 is arranged inside the air duct 303.

[0022] The air duct 303 is arranged in an array along the central axis of the open base 302.

[0023] In this embodiment, during the circulation of the water body, the driving fan 304 on the air duct 303 outputs power to drive the output end to crush the snake pipe 2010 and the fin group 2011 to achieve air-cooling cooling effect, thereby achieving temperature control effect.

[0024] The protection assembly 1 comprises a pad substrate 101, a lower expansion frame 102, an assembly disc 103, a shock absorber 104, a folded shell 105, a limiting block 106, a battery body 107, a surface increasing block 108, a receiving sleeve shell 109, and an edge outer frame 1010. The lower expansion frame 102 is arranged on the lower side of the pad substrate 101 by screwing. The assembly disc 103 is arranged on the upper side of the four sides of the pad substrate 101 by screwing. The shock absorber 104 is arranged on the upper side of the assembly disc 103. The folded shell 105 is arranged on the upper side of the shock absorber 104.

[0025] In this embodiment, when in use, the protection assembly 1 is placed on the upper side of the water tank 204 by the cooperation of the pad substrate 101 and the lower expansion frame 102. Then, the folded shell 105 is assembled and spliced by the cooperation of the shock absorber 104 and the upper assembly disc 103.

[0026] The limiting block 106 is arranged on the inner side of the folded shell 105. The battery body 107 is arranged on the opposite side of the limiting block 106. The surface increasing block 108 is arranged in an array on the side of the battery body 107. The receiving sleeve shell 109 is arranged on the outer side of the surface increasing block 108 by plug-in installation. The edge outer frame 1010 is arranged on the outer side of the receiving sleeve shell 109.

[0027] In this embodiment, the battery body 107 is plug-in installed by the cooperation of the folded shell 105 and the limiting block 106. The receiving sleeve shell 109 is plug-in installed after the surface increasing block 108 on the outer side of the battery body 107 is installed. The protection assembly 1 is assembled by the edge outer frame 1010.

[0028] The circulating diffusion mechanism 2 comprises a through sleeve 201, an outer connecting pipe 202, a vertical pipe 203, a water tank 204, a supporting plate 205, a water supplementing opening 206, a control valve block 207, a driving water pump 208, a water distribution base 209, a crushing snake pipe 2010 and a fin group 2011. The through sleeve 201 is sleeved in the outer end of the receiving sleeve shell 109. The through sleeve 201 is provided with the outer connecting pipe 202 at both ends. The outer connecting pipe 202 is provided with the vertical pipe 203 below. The vertical pipe 203 is provided with the water tank 204 at one end. The water tank 204 is provided with the supporting plate 205 below. The water tank 204 is provided with the water supplementing opening 206 at one end.

[0029] In the embodiment, when the cooling protection effect is needed, the water supplementing opening 206 is opened, and the water tank 204 is used to supplement water to the sufficient effect, so that each component of the circulating diffusion mechanism 2 is sleeved and installed.

[0030] The water tank 204 is provided with the control valve block 207 at the output end. The control valve block 207 is provided with the driving water pump 208 at one end. The driving water pump 208 is provided with the water distribution base 209 at the output end. The water distribution base 209 is provided with the crushing snake pipe 2010 at the output end. The crushing snake pipe 2010 is provided with the sleeved and installed fin group 2011 at the outer side.

[0031] In the embodiment, when the water cooling processing is needed, the control valve block 207 is opened, so that the driving water pump 208 outputs power to drive the output end to run. The through sleeve 201, the outer connecting pipe 202 and the vertical pipe 203 cooperate with the control valve block 207, the driving water pump 208, the water distribution base 209, the crushing snake pipe 2010 and the fin group 2011 to achieve the real-time circulation effect.

[0032] The working principle of the new energy storage battery temperature protection device is as follows: when in use, the protection assembly 1 is placed above the water tank 204 through the base plate 101 cooperating with the lower expansion frame 102, then the folding shell 105 is used to achieve the effect of assembly and splicing through the shock absorber 104 cooperating with the upper assembly disc 103, then the battery body 107 is inserted and installed through the cooperation of the folding shell 105 and the limiting block 106, and the outer side of the battery body 107 is installed with the increased surface block 108, and then the inserted sleeve shell 109 is used to achieve the effect of insertion and installation, and then the protection assembly 1 is assembled through the outer frame 1010, when cooling protection is needed, the water tank 204 is opened to supply enough water, so that each component of the circulating dissipation mechanism 2 is sleeved and installed, when water cooling is needed, the control valve block 207 is opened, the driving water pump 208 is driven to output power to drive the output end to run, so that the through sleeve pipe 201, the outer connecting pipe 202, the vertical pipe 203 cooperate with the control valve block 207, the driving water pump 208, the water distribution base 209, the crushing snake pipe 2010 and the fin group 2011 to achieve the effect of real-time circulation, and the driving fan 304 on the air duct 303 drives the output end to run on the crushing snake pipe 2010 and the fin group 2011 to achieve the effect of air cooling, and the temperature control effect is realized.

[0033] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

Claims

1. A new energy storage battery temperature protection device, comprising a protection combination component (1) and a wind cooling output assembly (3), characterized in that: The outer end of the protective combination component (1) is provided with a circulating diffusion mechanism (2) connected in a sleeve joint, and the upper periphery of the protective combination component (1) is provided with a bolt-connected air-cooled output assembly (3); The air-cooled output assembly (3) comprises an air-cooled frame (301), an open base (302), an air duct (303) and a driving fan (304), the air-cooled frame (301) is arranged above the periphery of the protective combination component (1), the upper portion of the air-cooled frame (301) is provided with the open base (302) connected in a bolt joint, the inner side of the open base (302) is provided with the air duct (303) connected in a bolt sleeve joint, and the inside of the air duct (303) is provided with the driving fan (304).

2. The new energy storage battery temperature protection device according to claim 1, characterized in that: The air duct (303) is arranged in an array along the central axis of the open base (302).

3. The new energy storage battery temperature protection device according to claim 1, characterized in that: The protective combination component (1) comprises a pad substrate (101), a lower expansion frame (102), an assembly disc (103), a shock absorber (104), a folded casing (105), a limiting block (106), a battery body (107), a surface-increasing patch (108), a plug-in sleeve shell (109) and an edge outer frame (1010), the lower side of the pad substrate (101) is provided with the lower expansion frame (102) connected in a bolt joint, the upper periphery of the pad substrate (101) is provided with the assembly disc (103) connected in a bolt joint, the upper portion of the assembly disc (103) is provided with the shock absorber (104), and the upper portion of the shock absorber (104) is provided with the folded casing (105).

4. The new energy storage battery temperature protection device according to claim 3, characterized in that: The inner side of the folded casing (105) is provided with the limiting block (106), the opposite side of the limiting block (106) is provided with the battery body (107), the side of the battery body (107) is provided with the surface-increasing patch (108) arranged in an array, the outer side of the surface-increasing patch (108) is provided with the plug-in sleeve shell (109) installed in a plug joint, and the outer side of the plug-in sleeve shell (109) is provided with the edge outer frame (1010).

5. The new energy storage battery temperature protection device according to claim 3, characterized in that: The circulating diffusion mechanism (2) comprises a penetrating sleeve (201), an external connecting pipe (202), a vertical pipe (203), a water tank (204), a supporting plate (205), a water supplementing opening (206), a control valve block (207), a driving water pump (208), a water distribution base (209), a crushing snake pipe (2010) and a fin group (2011), the penetrating sleeve (201) is connected in a sleeve joint to the outer end of the plug-in sleeve shell (109), the two ends of the penetrating sleeve (201) are provided with the external connecting pipe (202), the lower portion of the external connecting pipe (202) is provided with the vertical pipe (203), one end of the vertical pipe (203) is provided with the water tank (204), the lower portion of the water tank (204) is provided with the supporting plate (205), and the outer side of one end of the water tank (204) is provided with the water supplementing opening (206).

6. The new energy storage battery temperature protection device according to claim 5, characterized in that: The output end of the water tank (204) is provided with a control valve block (207), one end of the control valve block (207) is provided with a driving water pump (208), the output end of the driving water pump (208) is provided with a water distribution base (209), the output end of the water distribution base (209) is provided with a crushing snake tube (2010), and the outer side of the crushing snake tube (2010) is provided with a sleeve-mounted fin group (2011).

Citation Information

Patent Citations

  • New energy automobile power supply protection device

    CN118554076A