Plastic packaging machine for solid-state battery processing

By introducing components such as negative pressure pumps and micro motors into the plastic sealing machine for solid-state battery processing, the problem of residual impurities in the plastic sealing equipment is solved, the sealing efficiency and temperature control are improved, and the safety and stability of the battery are ensured.

CN223092922UActive Publication Date: 2025-07-11WUHAN GULI NEW ENERGY BATTERY CO LTD
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Patent Information

Application Number
CN202421874373.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-05
Publication Date
2025-07-11
Estimated Expiration
2034-08-05

AI Technical Summary

Technical Problem

When existing plastic packaging equipment is processed with solid-state batteries, it is easy to remain impurities in plastic shells, affecting the sealing effect and use efficiency of the device.

Method used

A plastic sealing machine for solid-state battery processing is designed, including a transportation mechanism and a plastic sealing cleaning mechanism. Components such as negative pressure pumps, micro motors, screws, heating plates and adsorption plates are used to clean impurities on the surface of the heating plate and measure the temperature to ensure effective sealing between the battery and the cover plate.

Benefits of technology

It realizes rapid and efficient cleaning of impurities on the surface of plastic sealing equipment, improves the efficiency of the sealing process and temperature control accuracy, and ensures the safety and stability of the battery.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a plastic packaging machine for solid-state battery processing, which relates to the technical field of solid-state batteries and comprises a conveying mechanism, a plastic packaging cleaning mechanism is arranged above the conveying mechanism and comprises a fixing frame, a controller is fixedly connected to the front face of the fixing frame, and a collecting barrel is fixedly connected to the upper surface of the fixing frame. Two negative pressure pumps are arranged on the upper surface of the collecting barrel, the output end of each negative pressure pump is fixedly communicated with the upper surface of the collecting barrel, the input end of each negative pressure pump is fixedly communicated with a telescopic hose, and the outer surface of each telescopic hose is fixedly connected with the inner wall of the fixing frame. According to the utility model, residual impurities on the surface of the device can be quickly and efficiently cleaned, the temperature of the device in the plastic packaging process can be measured, and the working efficiency of the device is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of solid-state batteries, and particularly relates to a plastic sealing machine for processing solid-state batteries. Background Technique

[0002] A solid-state battery is a battery technology. Different from the currently widely used lithium-ion batteries and lithium-ion polymer batteries, a solid-state battery is a battery that uses solid electrodes and solid electrolytes. Since the scientific community believes that lithium-ion batteries have reached their limits, solid-state batteries have been regarded as batteries that can inherit the status of lithium-ion batteries in recent years. With the continuous development of technology, as the next-generation battery technology, solid-state batteries have the advantages of high energy density, high safety, and long life, and are widely used in fields such as electric vehicles and energy storage systems.

[0003] In the production process of solid-state batteries, plastic sealing is a key process, which is of great significance for protecting the chemical substances inside the battery and improving the safety and stability of the battery. However, when the existing plastic sealing equipment processes solid-state batteries, it generally needs to seal the battery by capping and injection molding. During the use of the existing device, after the device is sealed, impurities of the plastic shell will remain on the heating plate. If they cannot be removed in time, it is not conducive to the next use of the device, and may affect the next sealing effect and use efficiency of the device.

[0004] Therefore, we provide a plastic sealing machine for processing solid-state batteries to solve the above problems. Content of the Utility Model

[0005] The purpose of the utility model is to make up for the deficiencies of the prior art and provide a plastic sealing machine for processing solid-state batteries.

[0006] To achieve the above object, the present utility model provides the following technical solution: A plastic sealing machine for processing solid-state batteries, including a transportation mechanism, above which a plastic sealing and cleaning mechanism is arranged. The plastic sealing and cleaning mechanism includes a fixed frame, on the front of which a controller is fixedly connected. On the upper surface of the fixed frame, a collection cylinder is fixedly connected. On the upper surface of the collection cylinder, two negative pressure pumps are arranged. The output end of each negative pressure pump is fixedly communicated with the upper surface of the collection cylinder, and the input end of each negative pressure pump is fixedly communicated with a telescopic hose. The outer surface of each telescopic hose is fixedly connected to the inner wall of the fixed frame. Two lead screws are rotatably connected to the inner wall of the fixed frame. A slide plate is threadedly connected to the outer surface of each lead screw. A micro motor is fixedly connected to the outer surface of each lead screw. Two telescopic rods are fixedly connected to the bottom surface of each slide plate. The telescopic ends of the two groups of telescopic rods are jointly fixedly connected to a heating plate. Two groups of electric push rods are fixedly connected to the bottom surface of the fixed frame. The telescopic ends of the two groups of electric push rods are jointly fixedly connected to an adsorption plate. Two suction pipe frames are fixedly communicated with the outer surface of each telescopic hose. The outer surface of each telescopic hose is fixedly connected to the inner wall of the heating plate. A temperature sensor is fixedly connected to the upper surface of the heating plate.

[0007] Preferably, a fixed frame is fixedly connected to the outer surface of the controller, and the back surface of the fixed frame is fixedly connected to the front surface of the fixed frame.

[0008] Preferably, a fixed shell is fixedly connected to the outer surface of the collection cylinder, and the bottom surface of the fixed shell is fixedly connected to the upper surface of the fixed frame.

[0009] Preferably, two connecting frames are fixedly connected to the outer surface of two of the suction pipe frames, and the bottom surface of each connecting frame is fixedly connected to the upper surface of the heating plate.

[0010] Preferably, a fixed ring is fixedly connected to the outer surface of the temperature sensor, and the outer surface of the fixed ring is fixedly connected to the upper surface of the heating plate.

[0011] Preferably, a fixed block is fixedly connected to the outer surface of each negative pressure pump, and the bottom surface of each fixed block is fixedly connected to the upper surface of the collection cylinder. Beneficial effects

[0012] Compared with the prior art, the plastic sealing machine for processing solid-state batteries has the following beneficial effects:

[0013] The utility model can quickly and efficiently clean the impurities remaining on the surface of the device, and can efficiently measure the temperature of the device during the plastic sealing process, further improving the working efficiency of the device. Place the battery and the battery sealing cover to be sealed on the conveyor belt of the transport mechanism. Driven by the motor, the conveyor belt drives the battery to move directly below the fixed frame and then stops moving. Then, the staff uses the controller to control the micro-motor to work. Supported by the fixed frame, the micro-motor drives the lead screw to rotate. The lead screw is threadedly connected to the outer surface of the slide plate. The rotation of the lead screw drives the slide plate, the telescopic rod, the heating plate, the suction pipe holder, the connecting frame, and the telescopic hose to move along the inside of the fixed frame. At this time, directly below the adsorption plate is the battery to be plastic-sealed. Use the controller to control the telescopic rod to work, and heat the bottom surface of the heating plate and the upper surface of the battery box body. Then, the staff uses the controller to control the electric push rod to extend and retract, and the extension and retraction of the electric push rod control the adsorption plate to contact and adsorb the battery box cover. Then, the staff uses the controller to control the micro-motor to work. The micro-motor drives the overall combination of the lead screw, the slide plate, the heating plate, the telescopic rod, and the suction pipe holder to reset. Then, the heating plate moves directly below the adsorption plate. At the same time, use the controller to control the heating plate to work. The upper surface of the heating plate contacts and emulsifies the bottom surface of the battery cover plate adsorbed on the bottom surface of the adsorption plate. Then, use the controller to control the lead screw to rotate again. The rotation of the lead screw drives the slide plate, the telescopic rod, the heating plate, the suction pipe holder, the connecting frame, and the telescopic hose to move along the inside of the fixed frame, and move the heating plate out from directly below the fixed frame. At this time, use the controller to control the electric push rod to move downward, and the emulsified battery cover plate adsorbed below the adsorption plate and the emulsified battery box body on the transport mechanism are adhesively connected to each other under the pressure of the electric push rod. At the same time, the staff uses the controller to control the negative pressure pump to work. The negative pressure pump generates negative pressure, and under the action of the negative pressure, the plastic impurities remaining on the surface of the heating plate are effectively adsorbed into the inside of the collection cylinder to realize the recovery of impurities. At the same time, use the controller to control the temperature sensor to work and detect the temperature on the surface of the heating plate, effectively improving the plastic sealing efficiency of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 is a three-dimensional structural schematic diagram of the fixed frame of the utility model;

[0015] Figure 2 is a three-dimensional structural schematic diagram of the lead screw of the utility model;

[0016] Figure 3 is a three-dimensional structural schematic diagram of the electric push rod of the utility model;

[0017] Figure 4 is a three-dimensional structural schematic diagram of the telescopic hose of the utility model.

[0018] In the figure: 1. Transportation mechanism; 2. Plastic sealing and cleaning mechanism; 201. Fixed frame; 202. Controller; 203. Fixed frame; 204. Fixed shell; 205. Negative pressure pump; 206. Collection cylinder; 207. Fixed block; 208. Telescopic hose; 209. Slide plate; 210. Lead screw; 211. Micro motor; 212. Electric push rod; 213. Adsorption plate; 214. Heating plate; 215. Straw holder; 216. Connecting frame; 217. Telescopic rod; 218. Fixed ring; 219. Temperature sensor. Specific implementation mode

[0019] The principles and features of the present utility model will be described below in conjunction with the attached drawings. The examples given are only used to explain the present utility model and are not intended to limit the scope of the present utility model.

[0020] See Figure 1 and Figure 2 , a plastic sealing machine for a solid-state battery processing device, including a transportation mechanism 1. A plastic sealing and cleaning mechanism 2 is arranged above the transportation mechanism 1. The plastic sealing and cleaning mechanism 2 includes a fixed frame 201. A controller 202 is fixedly connected to the front surface of the fixed frame 201. A fixed frame 203 is fixedly connected to the outer surface of the controller 202. The back surface of the fixed frame 203 is fixedly connected to the front surface of the fixed frame 201. By using the fixed frame 203, the outer surface of the controller 202 can be reinforced to avoid the problem of the controller 202 shaking during use.

[0021] See Figure 1 and Figure 2 , a collection cylinder 206 is fixedly connected to the upper surface of the fixed frame 201. A fixed shell 204 is fixedly connected to the outer surface of the collection cylinder 206. The bottom surface of the fixed shell 204 is fixedly connected to the upper surface of the fixed frame 201. By using the fixed shell 204, the collection cylinder 206 can be reinforced to avoid the problem of the collection cylinder 206 shaking during use.

[0022] See Figure 1 and Figure 2 , two negative pressure pumps 205 are arranged on the upper surface of the collection cylinder 206. The output end of each negative pressure pump 205 is fixedly connected and communicated with the upper surface of the collection cylinder 206. The input end of each negative pressure pump 205 is fixedly connected and communicated with a telescopic hose 208. The outer surface of each telescopic hose 208 is fixedly connected to the inner wall of the fixed frame 201. Two lead screws 210 are rotatably connected to the inner wall of the fixed frame 201. Two connecting frames 216 are fixedly connected to the outer surface of two of the straw holders 215. The bottom surface of each connecting frame 216 is fixedly connected to the upper surface of the heating plate 214. By using the connecting frame 216, the straw holder 215 can be fixed, effectively avoiding the problem of the straw holder 215 shaking during use.

[0023] See Figure 1, Figure 2 and Figure 3 , on the outer surface of each lead screw 210 is threadedly connected with a slide plate 209, on the outer surface of each lead screw 210 is fixedly connected with a micro motor 211, on the bottom surface of each slide plate 209 are fixedly connected with two telescopic rods 217, the telescopic ends of the two groups of telescopic rods 217 are commonly fixedly connected with a heating plate 214, on the bottom surface of the fixing frame 201 are fixedly connected with two groups of electric push rods 212, the telescopic ends of the two groups of electric push rods 212 are commonly fixedly connected with an adsorption plate 213, on the outer surface of each telescopic hose 208 are fixedly communicated with two suction pipe brackets 215, on the outer surface of each negative pressure pump 205 is fixedly connected with a fixing block 207, on the bottom surface of each fixing block 207 is fixedly connected with the upper surface of the collection cylinder 206. By using the fixing block 207, the negative pressure pump 205 can be fixed to avoid the problem that the negative pressure pump 205 shakes during use.

[0024] Figure 2 , Figure 3 and Figure 4 , on the outer surface of each telescopic hose 208 is fixedly connected with the inner wall of the heating plate 214, on the upper surface of the heating plate 214 is fixedly connected with a temperature sensor 219, on the outer surface of the temperature sensor 219 is fixedly connected with a fixing ring 218, and the outer surface of the fixing ring 218 is fixedly connected with the upper surface of the heating plate 214. By using the fixing ring 218, the temperature sensor 219 can be reinforced to avoid the problem that the temperature sensor 219 drops during use.

[0025] Working principle: First, connect the controller 202, negative pressure pump 205, micro motor 211, slide plate 209, adsorption plate 213, heating plate 214, and temperature sensor 219 to the power supply. Place the battery and battery sealing cover to be sealed on the conveyor belt of the transportation mechanism 1. Driven by the motor, the conveyor belt drives the battery to move directly below the fixed frame 201, and then stops moving. Then, the operator uses the controller 202 to control the micro motor 211 to work. Supported by the fixed frame 201, the micro motor 211 drives the lead screw 210 to rotate. The lead screw 210 is threadedly connected to the outer surface of the slide plate 209. The rotation of the lead screw 210 drives the slide plate 209, telescopic rod 217, heating plate 214, suction pipe holder 215, connecting frame 216, and telescopic hose 208 to move along the inside of the fixed frame 201. At this time, directly below the adsorption plate 213 is the battery to be heat-sealed. Use the controller 202 to control the telescopic rod 217 to work to heat and melt the bottom surface of the heating plate 214 and the upper surface of the battery case. Then, the operator uses the controller 202 to control the electric push rod 212 to extend and retract, and the extension and retraction of the electric push rod 212 control the adsorption plate 213 to contact and adsorb the battery cover. Then, the operator uses the controller 202 to control the micro motor 211 to work. The work of the micro motor 211 drives the overall assembly composed of the lead screw 210, slide plate 209, heating plate 214, telescopic rod 217, and suction pipe holder 215 to reset. Then, the heating plate 214 moves directly below the adsorption plate 213. At the same time, use the controller 202 to control the heating plate 214 to work. The upper surface of the heating plate 214 contacts and melts the bottom surface of the battery cover plate adsorbed on the bottom surface of the adsorption plate 213. Then, use the controller 202 to control the lead screw 210 to rotate. The rotation of the lead screw 210 drives the slide plate 209, telescopic rod 217, heating plate 214, suction pipe holder 215, connecting frame 216, and telescopic hose 208 to move along the inside of the fixed frame 201, and move the heating plate 214 out from directly below the fixed frame 201. At this time, use the controller 202 to control the electric push rod 212 to move downward, and the emulsified cover plate adsorbed below the adsorption plate 213 and the emulsified battery case on the transportation mechanism 1 are adhesively joined under the pressure of the electric push rod 212. At the same time, the operator uses the controller 202 to control the negative pressure pump 205 to work. The work of the negative pressure pump 205 generates negative pressure, and under the action of the negative pressure, the plastic impurities remaining on the surface of the heating plate 214 are effectively adsorbed into the interior of the collection cylinder 206 to achieve the recovery of impurities. At the same time, use the controller 202 to control the temperature sensor 219 to work to detect the temperature on the surface of the heating plate 214, effectively improving the heat-sealing efficiency of the device. Through this device, the impurities remaining on the surface of the device can be quickly and efficiently cleaned, and at the same time, the temperature during the heat-sealing process of the device can be efficiently measured, further improving the working efficiency of the device.

[0026] The above are only the preferred embodiments of the present utility model, and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A plastic sealing machine for processing solid-state batteries, comprising a transportation mechanism (1), characterized in that: Above the transportation mechanism (1), there is a plastic-sealing cleaning mechanism (2). The plastic-sealing cleaning mechanism (2) includes a fixing frame (201). On the front surface of the fixing frame (201), there is a controller (202) fixedly connected. On the upper surface of the fixing frame (201), there is a collection cylinder (206). On the upper surface of the collection cylinder (206), there are two negative pressure pumps (205). The output end of each negative pressure pump (205) is fixedly communicated with the upper surface of the collection cylinder (206). The input end of each negative pressure pump (205) is fixedly communicated with a telescopic hose (208). The outer surface of each telescopic hose (208) is fixedly connected with the inner wall of the fixing frame (201). Inside the fixing frame (201), there are two screw rods (210) rotatably connected. The outer surface of each screw rod (210) is threadedly connected with a slide plate (209). The outer surface of each screw rod (210) is fixedly connected with a micro motor (211). On the bottom surface of each slide plate (209), there are two telescopic rods (217). The telescopic ends of the two groups of telescopic rods (217) are fixedly connected to a heating plate (214). On the bottom surface of the fixing frame (201), there are two groups of electric push rods (212). The telescopic ends of the two groups of electric push rods (212) are fixedly connected to an adsorption plate (213). The outer surface of each telescopic hose (208) is fixedly communicated with two suction pipe frames (215).

2. The plastic sealing machine for processing solid-state batteries according to claim 1, wherein: On the outer surface of the controller (202), there is a fixing frame (203) fixedly connected. The back surface of the fixing frame (203) is fixedly connected with the front surface of the fixing frame (201).

3. A plastic sealing machine for processing solid-state batteries according to claim 1, characterized in that: On the outer surface of the collection cylinder (206), there is a fixing shell (204) fixedly connected. The bottom surface of the fixing shell (204) is fixedly connected with the upper surface of the fixing frame (201).

4. A plastic sealing machine for processing solid-state batteries according to claim 1, characterized in that: On the outer surface of two of the suction pipe frames (215), there are two connecting frames (216) fixedly connected. The bottom surface of each connecting frame (216) is fixedly connected with the upper surface of the heating plate (214).

5. A plastic sealing machine for processing solid-state batteries according to claim 1, characterized in that: The outer surface of each telescopic hose (208) is fixedly connected with the inner wall of the heating plate (214). On the upper surface of the heating plate (214), there is a temperature sensor (219) fixedly connected.

6. A plastic sealing machine for processing solid-state batteries according to claim 5, characterized in that: On the outer surface of the temperature sensor (219), there is a fixing ring (218) fixedly connected. The outer surface of the fixing ring (218) is fixedly connected with the upper surface of the heating plate (214).

7. A plastic sealing machine for processing solid-state batteries according to claim 1, characterized in that: On the outer surface of each negative pressure pump (205), there is a fixing block (207) fixedly connected. The bottom surface of each fixing block (207) is fixedly connected with the upper surface of the collection cylinder (206).