High safety energy storage shell

By incorporating fire suppression units, sealing units, and warning mechanisms within the energy storage casing, the problem of uncontrolled fire spread when the battery catches fire in the energy storage casing is solved, enabling rapid fire suppression and personnel alerts, thus improving the safety of the energy storage box.

CN119424976BActive Publication Date: 2026-03-31LIUZHOU LONGJIE AUTOMOBILE PARTS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing energy storage casings are difficult to effectively control when batteries catch fire, leading to uncontrolled fires, affecting safety, and requiring external tools to resolve the issue.

Method used

A high-safety energy storage shell was designed, comprising a fire extinguishing unit, a sealing unit, and an alerting mechanism. The fire extinguishing unit automatically sprays extinguishing agent through a smoke sensor, the sealing unit seals the heat dissipation vents, and the alerting mechanism alerts nearby personnel by striking a gong plate.

Benefits of technology

It enables rapid flame extinguishing, prevents oxygen from entering the energy storage box, reduces the risk of combustion, and improves the safety of the energy storage box by alerting nearby personnel with sound.

✦ Generated by Eureka AI based on patent content.

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    Figure CN119424976B_ABST
Patent Text Reader

Abstract

The application discloses a high-safety energy storage shell and relates to the technical field of energy storage boxes, which comprises an energy storage box body, a mounting rack fixedly connected to the bottom of the energy storage box body, a mounting plate fixedly connected to the front side of the energy storage box body, a positioning rack fixedly connected to the bottom of the inner cavity of the energy storage box body, heat dissipation fans fixedly connected to the two sides of the back of the energy storage box body, and a fire-fighting mechanism fixedly connected to the bottom of the energy storage box body. The high-safety energy storage shell is provided with a fire-fighting unit in the fire-fighting mechanism. When the smoke sensor detects that smoke is generated in the energy storage box body, the pump body is automatically opened, the fire extinguishing agent stored in the liquid storage tank is sprayed in the energy storage box body to extinguish the fire, meanwhile, the fan blades and the rotating rod in the sealing unit are driven to rotate, so that the sealing plate is moved to close the gas conveying shell, the inside of the energy storage box body is isolated from the outside air, and the flame is quickly extinguished, thereby improving the safety of the energy storage box body.
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Description

Technical Field

[0001] This invention relates to the field of energy storage box technology, specifically to a highly secure energy storage shell. Background Technology

[0002] The proportion of new energy in the entire energy system is rapidly increasing, and energy storage technology has become one of the most critical technologies for the development of new energy. As the supporting and protective structure of energy storage units, large-scale and modular energy storage cabinets have emerged. Currently, they are mainly in the form of containerized energy storage, cabinet-type energy storage, and mobile energy storage. They are configured in a four-level modular manner, consisting of battery modules, battery packs, battery clusters, and energy storage boxes, and combined with control and other electronic components to achieve the overall integration of the energy storage system.

[0003] In addition to high strength, high capacity, corrosion resistance, and heat insulation, the most important thing for energy storage boxes is to consider how to implement multiple safety protections. In some cases, if the battery catches fire, the energy storage box is not convenient for controlling the fire. The energy storage box is connected to the outside air, which can lead to the fire getting out of control and even cause injury to nearby people, resulting in poor safety.

[0004] Combining the above issues, we find that the existing high-safety energy storage shells on the market are difficult to avoid the problems mentioned above when in use. Even if they can be solved, they require external tools to solve them, thus failing to achieve the desired effect. Therefore, we propose a high-safety energy storage shell. Summary of the Invention

[0005] The purpose of this invention is to provide a highly safe energy storage housing to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a high-safety energy storage shell, comprising an energy storage box body, a mounting frame fixedly connected to the bottom of the energy storage box body, a mounting plate fixedly connected to the front side of the energy storage box body, a positioning frame fixedly connected to the bottom of the inner cavity of the energy storage box body, cooling fans fixedly connected to both sides of the back of the energy storage box body, and a fire-fighting mechanism fixedly connected to the bottom of the energy storage box body;

[0007] The fire-fighting mechanism includes a fire-extinguishing unit located at the bottom of the energy storage box body, and the fire-extinguishing unit is used for fire extinguishing;

[0008] The fire-fighting mechanism also includes a sealing unit located on the rear side of the inner cavity of the energy storage box body. The sealing unit is used to seal the heat dissipation vents of the energy storage box body.

[0009] A reminder mechanism is provided on the rear side of the energy storage box body, which is used to remind nearby personnel.

[0010] Preferably, the fire extinguishing unit includes a liquid storage tank, the top of which is fixedly connected to the bottom of the energy storage tank body, a pump body fixedly connected to the back of the liquid storage tank, the input end of the pump body being fixedly connected to the back of the liquid storage tank, the output end of the pump body being fixedly connected to a first connecting pipe, one end of the first connecting pipe being fixedly connected to a liquid delivery shell, the top of the liquid delivery shell being fixedly connected to a second connecting pipe, two liquid outlet pipes being fixedly connected to the surface of the second connecting pipe, the end of the liquid outlet pipe away from the second connecting pipe penetrating into the inner cavity of the energy storage tank body, and a plurality of nozzles being fixedly connected to the surface of the liquid outlet pipe.

[0011] Preferably, a first fixing frame is fixedly connected to both sides of the infusion shell, the front side of the first fixing frame is fixedly connected to the energy storage tank body by bolts, and a second fixing frame is fixedly sleeved on the surface of the infusion pipe, the surface of the second fixing frame is fixedly connected to the inner wall of the energy storage tank body by bolts.

[0012] Preferably, the sealing unit includes an adjustment box located at the rear of the inner cavity of the energy storage box body. The back of the adjustment box is fixedly connected to the inner wall of the energy storage box body. A partition is provided on the front side of the adjustment box. Smoke sensors are fixedly connected to both sides of the front of the partition. Movable plates are provided on both sides of the adjustment box. Gas delivery shells are provided on opposite sides of the two movable plates. The back of the gas delivery shells is fixedly connected to the inner wall of the energy storage box body. The rear side of the gas delivery shells is connected to a cooling fan. A filter plate and a sealing gasket are fixedly connected to the inner wall of the gas delivery shells. The surface of the partition is fixedly connected to the energy storage box body and the gas delivery shells.

[0013] Preferably, a rotating rod is rotatably connected to the front side of the inner cavity of the regulating box via a bearing. The rear end of the rotating rod passes through the regulating box, the energy storage box body, and the infusion shell in sequence and extends to the rear side of the infusion shell. A rotating block and several fan blades are fixedly sleeved on the surface of the rotating rod. The rotating block is located in the inner cavity of the regulating box, and the fan blades are located in the inner cavity of the infusion shell.

[0014] Preferably, the top and bottom of the inner cavity of the regulating box are provided with movable blocks. One side of the movable block penetrates the regulating box and is fixedly connected to the movable plate. The opposite sides of the two movable plates are fixedly connected to sealing plates. The opposite sides of the two sealing plates penetrate into the inner cavity of the air supply shell and contact the sealing gasket. The top and bottom of the inner cavity of the regulating box are fixedly connected to slide rails. The inner cavity of the slide rails is slidably connected to sliders. The opposite sides of the two sliders are fixedly connected to the movable blocks. The surface of the movable block is provided with a limit groove. The surface of the rotating block is fixedly connected to a limit frame that cooperates with the limit groove.

[0015] Preferably, a sliding rod is fixedly connected to the top and bottom of both sides of the adjustment box, a baffle is fixedly connected to the side of the sliding rod away from the adjustment box, a sliding sleeve is fitted on the surface of the sliding rod, the surface of the sliding sleeve is fixedly connected to the moving plate, a tension spring is fitted on the surface of the sliding rod and on one side of the sliding sleeve, the two sides of the tension spring are fixedly connected to the sliding sleeve and the baffle respectively, and a first spring is fixedly connected between the top and bottom of one side of the moving plate and the adjustment box.

[0016] Preferably, a fixing plate is fixedly connected to one side of the gas delivery shell, a limiting box is fixedly connected to the front side of the fixing plate, a limiting plate is provided in the inner cavity of the limiting box, a second spring and a stop are fixedly connected to the front and rear sides of the limiting plate respectively, the front side of the second spring is fixedly connected to the inner wall of the limiting box, the stop is trapezoidal in shape, the rear side of the stop extends to the rear side of the fixing plate, and the surface of the stop contacts the moving plate.

[0017] Preferably, the reminder mechanism includes a cam, the surface of which is fixedly sleeved on the surface of the rotating rod. The cam is located on the rear side of the infusion shell. Adjustment shells are sleeved on both sides of the cam. A fixing box is provided on the opposite side of each of the two adjustment shells. A third fixing frame is fixedly connected to the front side of the fixing box. The front side of the third fixing frame is fixedly connected to the energy storage box body by bolts. A first screw plate is provided on the opposite side of each of the two fixing boxes. A second screw plate is provided on the opposite side of each of the two first screw plates. A fourth fixing frame is fixedly connected to one side of the second screw plate. The front side of the fourth fixing frame is fixedly connected to the energy storage box body by bolts.

[0018] Preferably, the inner cavity of the fixed box is provided with a push plate, and the top and bottom of the two adjusting shells on opposite sides are fixedly connected with adjusting rods. One end of the adjusting rod passes through the fixed box and is fixedly connected to the push plate. The opposite sides of the two push plates are fixedly connected with push rods. The side of the push rod away from the push plate passes through the fixed box and is fixedly connected to the first screw plate. Two third springs are fixedly connected to one side of the push plate. The side of the third spring away from the push plate is fixedly connected to the inner wall of the fixed box.

[0019] Compared with the prior art, the beneficial effects of the present invention are:

[0020] 1. This invention incorporates a fire-fighting mechanism. When a smoke sensor detects smoke in the energy storage tank, the pump automatically activates, spraying the extinguishing agent stored in the liquid tank into the energy storage tank to extinguish the fire. Simultaneously, it drives the fan blades and rotating rod in the sealing unit to rotate, thereby moving the sealing plate to seal the gas delivery shell. This isolates the interior of the energy storage tank from the outside air, allowing the flame to be extinguished quickly, improving the safety of the energy storage tank and preventing injury to nearby personnel.

[0021] 2. By setting up a reminder mechanism, the present invention can automatically drive the first gong plate to strike the second gong plate while the fire-fighting mechanism is running. The sound generated by the striking can quickly remind nearby people, improve the safety of the energy storage box and prevent injury to nearby people. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0023] Figure 2 This is a rear view of the energy storage box body in this invention;

[0024] Figure 3 This is a rear sectional view of the energy storage box body and the fire extinguishing unit in this invention;

[0025] Figure 4 This is a cross-sectional view of the energy storage box body in this invention;

[0026] Figure 5 This is a cross-sectional view of the energy storage tank body and the sealing unit in this invention;

[0027] Figure 6 This is a schematic diagram of the sealing unit in this invention;

[0028] Figure 7 In this invention Figure 6 A magnified view of part A in the image;

[0029] Figure 8 This is a schematic diagram of the gas delivery shell in this invention;

[0030] Figure 9 This is a left sectional view of the limiting box in this invention;

[0031] Figure 10 This is a rear sectional view of the energy storage box body and the reminder mechanism in this invention;

[0032] Figure 11 This is a schematic diagram of the structure of the rotating block and the moving block in this invention.

[0033] In the diagram: 1. Energy storage box body; 11. Mounting bracket; 12. Mounting plate; 13. Positioning bracket; 14. Cooling fan; 2. Fire-fighting mechanism; 21. Fire extinguishing unit; 2101. Liquid storage tank; 2102. Pump body; 2103. First connecting pipe; 2104. Liquid delivery shell; 2105. Second connecting pipe; 2106. Liquid outlet pipe; 2107. Nozzle; 2108. First fixing bracket; 2109. Second fixing bracket; 22. Sealing unit; 2201. Adjustment box; 2202. Partition plate; 2203. Smoke sensor; 2204. Moving plate; 2205. Gas delivery shell; 2206. Filter plate; 2207. Sealing gasket; 2208. Rotating rod; 2209. Rotating block; 2210. Fan blade; 2211. 2212. Moving block; 2213. Sealing plate; 2214. Slide rod; 2215. Baffle; 2216. Sliding sleeve; 2217. Tension spring; 2218. First spring; 2219. Fixing plate; 2210. Limiting box; 2221. Limiting plate; 2222. Second spring; 2222. Stop block; 2223. Slide rail; 2224. Slider; 2225. Limiting groove; 2226. Limiting frame; 3. Reminder mechanism; 3001. Cam; 3002. Adjusting shell; 3003. Fixing box; 3004. Third fixing frame; 3005. First gong plate; 3006. Second gong plate; 3007. Fourth fixing frame; 3008. Push plate; 3009. Adjusting rod; 3010. Push rod; 3011. Third spring. Detailed Implementation

[0034] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0035] Example 1: Please refer to Figures 1-5 The present invention provides a technical solution: a high-safety energy storage shell, including an energy storage box body 1, an installation frame 11 fixedly connected to the bottom of the energy storage box body 1, an installation plate 12 fixedly connected to the front side of the energy storage box body 1, a positioning frame 13 fixedly connected to the bottom of the inner cavity of the energy storage box body 1, a heat dissipation fan 14 fixedly connected to both sides of the back of the energy storage box body 1, and a fire-fighting mechanism 2 fixedly connected to the bottom of the energy storage box body 1.

[0036] The fire-fighting unit 2 includes a fire-extinguishing unit 21, which is located at the bottom of the energy storage box body 1 and is used for fire extinguishing.

[0037] As a further definition of the fire-fighting mechanism 2 of the present invention, the fire extinguishing unit 21 includes a liquid storage tank 2101. The top of the liquid storage tank 2101 is fixedly connected to the bottom of the energy storage box body 1. A pump body 2102 is fixedly connected to the back of the liquid storage tank 2101. The input end of the pump body 2102 is fixedly connected to the back of the liquid storage tank 2101. The output end of the pump body 2102 is fixedly connected to a first connecting pipe 2103. One end of the first connecting pipe 2103 is fixedly connected to a liquid delivery shell 2104. The top of the liquid delivery shell 2104 is fixedly connected to a second connecting pipe 2105. Two liquid outlet pipes 2106 are fixedly connected to the surface of the second connecting pipe 2105. One end of the liquid outlet pipe 2106 away from the second connecting pipe 2105 extends into the inner cavity of the energy storage box body 1. Several nozzles 2107 are fixedly connected to the surface of the liquid outlet pipe 2106. By setting the liquid storage tank 2101, it can be used to store fire extinguishing agent. By setting the nozzles 2107, it can be used to spray fire extinguishing agent.

[0038] Both sides of the infusion shell 2104 are fixedly connected with a first fixing bracket 2108. The front side of the first fixing bracket 2108 is fixedly connected to the energy storage box body 1 by bolts. The surface of the outlet pipe 2106 is fixedly fitted with a second fixing bracket 2109. The surface of the second fixing bracket 2109 is fixedly connected to the inner wall of the energy storage box body 1 by bolts. By setting the first fixing bracket 2108, the infusion shell 2104 can be fixed. By setting the second fixing bracket 2109, the outlet pipe 2106 can be fixed.

[0039] The specific implementation method of this embodiment is as follows: When a fire occurs in the energy storage tank body 1, smoke will be generated. The smoke sensor 2203 is electrically connected to the pump body 2102. When the smoke sensor 2203 detects smoke, it will control the pump body 2102 to automatically open and extract the extinguishing agent in the liquid storage tank 2101 and deliver it to the first connecting pipe 2103. The extinguishing agent then enters the liquid outlet pipe 2106 through the liquid delivery shell 2104 and the second connecting pipe 2105, and finally is sprayed out through the nozzle 2107. It can be sprayed in the energy storage tank body 1, which can play a role in rapid fire extinguishing and improve the safety of the use of the energy storage tank body 1.

[0040] Example 2: Please refer to Figures 2-9 and Figure 11 The present invention provides a technical solution: a high-safety energy storage shell. The present invention makes corresponding improvements to the technical problems mentioned in the background art. The fire-fighting mechanism 2 also includes a sealing unit 22. The sealing unit 22 is located on the rear side of the inner cavity of the energy storage box body 1. The sealing unit 22 is used to seal the heat dissipation port of the energy storage box body 1.

[0041] As a further definition of the fire-fighting mechanism 2 of the present invention, the sealing unit 22 includes an adjusting box 2201. The adjusting box 2201 is located on the rear side of the inner cavity of the energy storage box body 1. The back side of the adjusting box 2201 is fixedly connected to the inner wall of the energy storage box body 1. A partition 2202 is provided on the front side of the adjusting box 2201. Smoke sensors 2203 are fixedly connected to both sides of the front side of the partition 2202. Movable plates 2204 are provided on both sides of the adjusting box 2201. Air supply shells 2205 are provided on opposite sides of the two movable plates 2204. The back side of the air supply shells 2205 is connected to the inner wall of the energy storage box body 1. The inner wall of the body 1 is fixedly connected, and the rear side of the gas supply shell 2205 is connected to the cooling fan 14. The inner wall of the gas supply shell 2205 is fixedly connected with a filter plate 2206 and a sealing gasket 2207 respectively. The surface of the partition plate 2202 is fixedly connected to the energy storage box body 1 and the gas supply shell 2205 respectively. By setting the partition plate 2202, it can be used to isolate the flame. By setting the smoke sensor 2203, it can detect whether there is smoke in the energy storage box body 1. By setting the filter plate 2206, it can filter the gas. By setting the sealing gasket 2207, it can seal the gas.

[0042] A rotating rod 2208 is rotatably connected to the front side of the inner cavity of the regulating box 2201 via a bearing. The rear end of the rotating rod 2208 passes through the regulating box 2201, the energy storage box body 1, and the infusion shell 2104 in sequence and extends to the rear side of the infusion shell 2104. A rotating block 2209 and several fan blades 2210 are fixedly sleeved on the surface of the rotating rod 2208. The rotating block 2209 is located in the inner cavity of the regulating box 2201, and the fan blades 2210 are located in the inner cavity of the infusion shell 2104. By setting the rotating block 2209, it can be used to drive the moving block 2211 to move. By setting the fan blades 2210, the water flow will drive the fan blades 2210 to rotate when passing through them.

[0043] Movable blocks 2211 are provided at the top and bottom of the inner cavity of the regulating box 2201. One side of the movable block 2211 penetrates through the regulating box 2201 and is fixedly connected to the movable plate 2204. Sealing plates 2212 are fixedly connected to opposite sides of the two movable plates 2204. The opposite sides of the two sealing plates 2212 penetrate into the inner cavity of the air supply shell 2205 and contact the sealing gasket 2207. Slide rails 2223 are fixedly connected to the top and bottom of the inner cavity of the regulating box 2201. The inner cavity of the slide rails 2223... The sliding connection includes sliders 2224, and the opposite sides of the two sliders 2224 are fixedly connected to the moving block 2211. The surface of the moving block 2211 is provided with a limit groove 2225. The surface of the rotating block 2209 is fixedly connected with a limit bracket 2226 that cooperates with the limit groove 2225. By setting a sealing plate 2212, it can be used to seal the gas delivery shell 2205 to prevent gas from passing through. By setting a slide rail 2223 and sliders 2224, the stability of the movement of the moving block 2211 can be improved.

[0044] Slide rods 2213 are fixedly connected to the top and bottom of both sides of the adjustment box 2201. A baffle 2214 is fixedly connected to the side of the slide rod 2213 away from the adjustment box 2201. A sliding sleeve 2215 is fitted on the surface of the slide rod 2213. The surface of the sliding sleeve 2215 is fixedly connected to the moving plate 2204. A tension spring 2216 is fitted on the surface of the slide rod 2213 and on one side of the sliding sleeve 2215. The two sides of the tension spring 2216 are fixedly connected to the sliding sleeve 2215 and the baffle 2214, respectively. A first spring 2217 is fixedly connected between the top and bottom of one side of the moving plate 2204 and the adjustment box 2201. By setting the slide rods 2213 and the sliding sleeve 2215, the movement of the moving plate 2204 can be prevented. By setting the tension spring 2216, the return of the sliding sleeve 2215 can be facilitated. By setting the baffle 2214, the use of the tension spring 2216 can be facilitated.

[0045] A fixing plate 2218 is fixedly connected to one side of the gas delivery shell 2205. A limiting box 2219 is fixedly connected to the front side of the fixing plate 2218. A limiting plate 2220 is provided in the inner cavity of the limiting box 2219. A second spring 2221 and a stop block 2222 are fixedly connected to the front and rear sides of the limiting plate 2220, respectively. The front side of the second spring 2221 is fixedly connected to the inner wall of the limiting box 2219. The stop block 2222 is trapezoidal in shape. The rear side of the stop block 2222 extends to the rear side of the fixing plate 2218. The surface of the stop block 2222 contacts the moving plate 2204. By setting the fixing plate 2218, the limiting box 2219 can be installed. By setting the stop block 2222, the position of the sealing plate 2212 and the moving plate 2204 can be restricted. By setting the second spring 2221, the limiting plate 2220 and the stop plate 2214 can be easily reset.

[0046] The specific implementation of this embodiment is as follows: When the sealing plate 2212 is not in use, it does not seal the gas delivery shell 2205. The limiting bracket 2226 is initially stuck in the limiting groove 2225. At this time, the limiting bracket 2226 can restrict the moving block 2211 to prevent the two moving blocks 2211 from moving to opposite sides. Both moving plates 2204 are located between the two stops 2222. When the battery in the energy storage box body 1 catches fire, the pump body 2102 is turned on to drive the fire extinguishing agent to flow. The fire extinguishing agent passes through the delivery... When the liquid shell 2104 is in operation, it will drive the fan blade 2210 to rotate. The fan blade 2210 will drive the rotating rod 2208 to rotate. The rotating rod 2208 will drive the cam 3001 and the rotating block 2209 to rotate. When the rotating block 2209 rotates, it will drive the limit frame 2226 to rotate counterclockwise. The counterclockwise rotation of the limit frame 2226 will disengage it from the limit groove 2225, releasing the restriction on the moving block 2211. At this time, due to the reset of the first spring 2217 and the tension spring 2216, the moving blocks 2211 on both sides and the moving plates on both sides will be driven. As the moving plate 2204 moves away from the two sealing plates 2212, the two sealing plates 2212 move away from each other until the sealing plates 2212 contact the sealing gasket 2207. At this point, the air supply shell 2205 can be sealed by the sealing plates 2212. As the moving plate 2204 moves, it will press the stop block 2222. The elastic coefficient of the second spring 2221 is less than that of the first spring 2217 and the tension spring 2216. The pressing of the stop block 2222 by the moving plate 2204 will cause the stop block 2222 to move forward, and the stop block 2222 will drive the limit switch. Plate 2220 moves forward to compress the second spring 2221 until the two moving plates 2204 move to the opposite side of the two stops 2222. At this time, the second spring 2221 resets and drives the stop 2222 to move backward through the cooperation of the limiting plate 2220, which restricts the moving plate 2204, so that the sealing plate 2212 can be stably placed in the gas delivery shell 2205, preventing external gas from entering the energy storage box body 1. This reduces the oxygen content in the energy storage box body 1, prevents combustion, and improves the safety of the energy storage box body 1.

[0047] Example 3: Please refer to Figure 2 and Figure 10 The present invention provides a technical solution: a highly safe energy storage shell. The present invention makes corresponding improvements to the technical problems mentioned in the background art. A reminder mechanism 3 is provided on the rear side of the energy storage box body 1. The reminder mechanism 3 is used to remind nearby personnel.

[0048] As a further definition of the reminder mechanism 3 of the present invention, the reminder mechanism 3 includes a cam 3001, the surface of which is fixedly sleeved on the surface of the rotating rod 2208. The cam 3001 is located on the rear side of the infusion shell 2104. Adjustment shells 3002 are sleeved on both sides of the cam 3001. A fixing box 3003 is provided on the opposite side of the two adjustment shells 3002. A third fixing bracket 3004 is fixedly connected to the front side of the fixing box 3003. The front side of the third fixing bracket 3004 is fixedly connected to the energy storage box body 1. A first gong plate 3005 is provided on the opposite side of the two fixing boxes 3003. A second gong plate 3006 is provided on the opposite side of the gong plate 3005. A fourth fixing bracket 3007 is fixedly connected to one side of the second gong plate 3006. The front side of the fourth fixing bracket 3007 is fixedly connected to the energy storage box body 1 by bolts. By providing a cam 3001, it can be used to drive the adjustment shell 3002 to move. By providing the first gong plate 3005 and the second gong plate 3006, they can be used to strike each other to generate sound and alert nearby people. By providing a third fixing bracket 3004, it can be used to fix the fixing box 3003. By providing a fourth fixing bracket 3007, it can be used to fix the second gong plate 3006.

[0049] The inner cavity of the fixed box 3003 is provided with a push plate 3008. The top and bottom of the two adjusting shells 3002 on opposite sides are fixedly connected with adjusting rods 3009. One end of the adjusting rod 3009 passes through the fixed box 3003 and is fixedly connected to the push plate 3008. The opposite sides of the two push plates 3008 are fixedly connected with push rods 3010. The side of the push rod 3010 away from the push plate 3008 passes through the fixed box 3003 and is fixedly connected to the first screw plate 3005. Two third springs 3011 are fixedly connected to one side of the push plate 3008. The side of the third spring 3011 away from the push plate 3008 is fixedly connected to the inner wall of the fixed box 3003. By setting the third springs 3011, it is easy for the two push plates 3008 to move towards the middle for reset.

[0050] The specific implementation of this embodiment is as follows: When a fire occurs in the energy storage tank body 1, the extinguishing agent delivery drives the fan blade 2210 and the rotating rod 2208 to rotate, which in turn drives the cam 3001 to rotate. When the cam 3001 rotates, its convex surface rotates to both sides, which squeezes the adjusting shell 3002, causing the two adjusting shells 3002 to move away from each other. The adjusting shell 3002, through the cooperation of the adjusting rod 3009, drives the two push plates 3008 to move away from each other, squeezing the third spring 3011. The push plates 3008, through the cooperation of the push rod 3010, can drive the two first gong plates 3005 to move away from each other. Until the first gong plate 3005 contacts the second gong plate 3006, when the protruding surface of the cam 3001 releases its pressure on the adjusting shell 3002, the third spring 3011 resets and drives the first gong plate 3005, push plate 3008, push rod 3010, first gong plate 3005, adjusting rod 3009 and adjusting shell 3002 on both sides to move towards the middle to reset. The continuous rotation of the cam 3001 will drive the first gong plate 3005 to move back and forth to strike the second gong plate 3006. The sound produced can remind nearby personnel and further improve the safety of the energy storage box body 1.

[0051] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0052] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A high-safety energy storage shell, comprising an energy storage box body (1), characterized in that: The bottom of the energy storage box body (1) is fixedly connected with a mounting rack (11), the front side of the energy storage box body (1) is fixedly connected with a mounting plate (12), the bottom of the inner cavity of the energy storage box body (1) is fixedly connected with a positioning rack (13), the back of the energy storage box body (1) is fixedly connected with a heat dissipation fan (14) on both sides, and the bottom of the energy storage box body (1) is fixedly connected with a fire-fighting mechanism (2); The fire-fighting mechanism (2) comprises a fire extinguishing unit (21), the fire extinguishing unit (21) is located at the bottom of the energy storage box body (1), the fire extinguishing unit (21) is used for extinguishing fire, and the fire extinguishing unit (21) comprises a liquid conveying shell (2104), the front side of the liquid conveying shell (2104) is fixedly connected with the back of the energy storage box body (1); The fire-fighting mechanism (2) further comprises a sealing unit (22), the sealing unit (22) is located at the back of the inner cavity of the energy storage box body (1), and the sealing unit (22) is used for closing the heat dissipation opening of the energy storage box body (1); The back of the energy storage box body (1) is provided with a reminding mechanism (3), and the reminding mechanism (3) is used for reminding nearby personnel; The sealing unit (22) comprises an adjusting box (2201), the adjusting box (2201) is located at the back of the inner cavity of the energy storage box body (1), the back of the adjusting box (2201) is fixedly connected with the inner wall of the energy storage box body (1), the front side of the adjusting box (2201) is provided with a partition plate (2202), the front side of the partition plate (2202) is fixedly connected with a smoke sensor (2203) on both sides, the both sides of the adjusting box (2201) are provided with a moving plate (2204), the opposite side of the two moving plates (2204) is provided with a gas conveying shell (2205), the back of the gas conveying shell (2205) is fixedly connected with the inner wall of the energy storage box body (1), the back of the gas conveying shell (2205) is communicated with the heat dissipation fan (14), and the inner wall of the gas conveying shell (2205) is fixedly connected with a filter plate (2206) and a sealing gasket (2207) respectively. The front side of the inner cavity of the adjusting box (2201) is rotatably connected with a rotating rod (2208) through a bearing, the rear end of the rotating rod (2208) penetrates the adjusting box (2201), the energy storage box body (1) and the liquid conveying shell (2104) in sequence and extends to the back of the liquid conveying shell (2104), the surface of the rotating rod (2208) is fixedly sleeved with a rotating block (2209) and a plurality of fan blades (2210) respectively, the rotating block (2209) is located in the inner cavity of the adjusting box (2201), and the fan blades (2210) are located in the inner cavity of the liquid conveying shell (2104). The top and bottom of the adjusting box (2201) cavity are provided with moving blocks (2211), one side of the moving blocks (2211) penetrates the adjusting box (2201) and is fixedly connected with the moving plates (2204), the opposite sides of the two moving plates (2204) are fixedly connected with sealing plates (2212), the opposite sides of the two sealing plates (2212) penetrate the inner cavity of the gas conveying shell (2205) and contact the sealing pads (2207), the top and bottom of the adjusting box (2201) cavity are fixedly connected with slide rails (2223), the inner cavities of the slide rails (2223) are slidably connected with sliding blocks (2224), the opposite sides of the two sliding blocks (2224) are fixedly connected with the moving blocks (2211), the surface of the moving block (2211) is provided with a limiting groove (2225), and the surface of the rotating block (2209) is fixedly connected with a limiting frame (2226) used in cooperation with the limiting groove (2225).

2. The high security energy storage housing of claim 1, wherein: The fire extinguishing unit (21) comprises a liquid storage tank (2101), the top of the liquid storage tank (2101) is fixedly connected with the bottom of the energy storage tank body (1), the back surface of the liquid storage tank (2101) is fixedly connected with a pump body (2102), the input end of the pump body (2102) is fixedly communicated with the back surface of the liquid storage tank (2101), the output end of the pump body (2102) is fixedly communicated with a first connecting pipe (2103), one end of the first connecting pipe (2103) is fixedly communicated with a liquid conveying shell (2104), the top of the liquid conveying shell (2104) is fixedly communicated with a second connecting pipe (2105), the surface of the second connecting pipe (2105) is fixedly communicated with two liquid outlet pipes (2106), one end of the liquid outlet pipe (2106) away from the second connecting pipe (2105) penetrates into the inner cavity of the energy storage tank body (1), and the surface of the liquid outlet pipe (2106) is fixedly communicated with a plurality of spray heads (2107).

3. The high security energy storage housing of claim 2, wherein: The two sides of the liquid conveying shell (2104) are fixedly connected with first fixing frames (2108), the front sides of the first fixing frames (2108) are fixedly connected with the energy storage tank body (1) through bolts, and the surface of the liquid outlet pipe (2106) is fixedly sleeved with a second fixing frame (2109).

4. The high security energy storage housing of claim 1, wherein: The top and bottom of the adjusting box (2201) are fixedly connected with slide rods (2213), one side of the slide rod (2213) away from the adjusting box (2201) is fixedly connected with a baffle (2214), the surface of the slide rod (2213) is sleeved with a sliding sleeve (2215), the surface of the sliding sleeve (2215) is fixedly connected with the moving plate (2204), the surface of the slide rod (2213) and located at one side of the sliding sleeve (2215) is sleeved with a tension spring (2216), the two sides of the tension spring (2216) are fixedly connected with the sliding sleeve (2215) and the baffle (2214) respectively, and the top and bottom of one side of the moving plate (2204) are fixedly connected with first springs (2217) between the moving plate (2204) and the adjusting box (2201).

5. The high security energy storage housing of claim 1, wherein: One side of the gas conveying shell (2205) is fixedly connected with a fixed plate (2218), the front side of the fixed plate (2218) is fixedly connected with a limiting box (2219), the inner cavity of the limiting box (2219) is provided with a limiting plate (2220), the front side and the rear side of the limiting plate (2220) are fixedly connected with second springs (2221) and stop blocks (2222) respectively, the front side of the second spring (2221) is fixedly connected with the inner wall of the limiting box (2219), the stop block (2222) is trapezoidal in shape, the rear side of the stop block (2222) penetrates through the rear side of the fixed plate (2218), the surface of the stop block (2222) is in contact with the moving plate (2204), and the number of the second springs (2221) is two.

6. The high security energy storage housing of claim 1, wherein: The reminding mechanism (3) comprises a cam (3001), the surface of the cam (3001) is fixedly sleeved on the surface of the rotating rod (2208), the cam (3001) is located at the rear side of the infusion shell (2104), the two sides of the cam (3001) are sleeved with adjusting shells (3002), the opposite sides of the two adjusting shells (3002) are provided with fixed boxes (3003), the front side of the fixed box (3003) is fixedly connected with a third fixed frame (3004), the front side of the third fixed frame (3004) is fixedly connected with the energy storage box body (1) through bolts, the opposite sides of the two fixed boxes (3003) are provided with first clappers (3005), the opposite sides of the two first clappers (3005) are provided with second clappers (3006), one side of the second clapper (3006) is fixedly connected with a fourth fixed frame (3007), and the front side of the fourth fixed frame (3007) is fixedly connected with the energy storage box body (1) through bolts.

7. The high security energy storage housing of claim 6, wherein: The inner cavity of the fixed box (3003) is provided with a push plate (3008), the top and bottom of the opposite sides of the two adjusting shells (3002) are fixedly connected with adjusting rods (3009), one end of the adjusting rod (3009) penetrates through the fixed box (3003) and is fixedly connected with the push plate (3008), the opposite sides of the two push plates (3008) are fixedly connected with push rods (3010), the side, away from the push plate (3008), of the push rod (3010) penetrates through the fixed box (3003) and is fixedly connected with the first bell plate (3005), one side of the push plate (3008) is fixedly connected with two third springs (3011), and the side, away from the push plate (3008), of the third spring (3011) is fixedly connected with the inner wall of the fixed box (3003).

Citation Information

Patent Citations

  • Energy storage station with automatic fire fighting equipment

    CN118236657A

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