Drying device for battery pole processing

By combining the flattening and drying mechanisms, the problem of battery pole stacking during the drying process is solved, and efficient and energy-saving battery pole drying effects are achieved.

CN223484753UActive Publication Date: 2025-10-28BOLUO COUNTY FUTIAN TOWN QIDA ELECTRONIC HARDWARE CO LTD
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Patent Information

Application Number
CN202422488421.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-15
Publication Date
2025-10-28
Estimated Expiration
2034-10-15

AI Technical Summary

Technical Problem

Battery poles tend to stack together during the drying process, resulting in poor drying results.

Method used

The flattening mechanism uses a servo motor to drive the threaded rod to rotate, and the connecting plate drives the baffle to move up and down to ensure that a single battery pole passes through; the dehydration mechanism sprays air through the air pump nozzle to remove moisture, and the drying mechanism heats the air through the electric heating wire and gathers it in the heat collection hood to accelerate drying.

Benefits of technology

It effectively prevents battery poles from stacking, improves drying efficiency, ensures that each battery pole is fully dried, saves energy and improves drying effect.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223484753U_ABST
    Figure CN223484753U_ABST
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Abstract

The utility model relates to the technical field of battery pole processing, and discloses a drying device for battery pole processing, which comprises a conveying mechanism, and a flattening mechanism is mounted on the left side of the upper part of the conveying mechanism. According to the drying device for battery pole processing, when the servo motor drives the threaded rod to rotate, the connecting plate can drive the baffle to move up and down, so that a gap through which only a single battery pole can pass is reserved in the lower portion of the baffle, and the battery poles are prevented from being stacked together; the battery pole can be better dried through the water removal mechanism and the drying mechanism, an air pump conveys air into a U-shaped pipe through a connecting pipe and a transverse pipe, so that the air is sprayed out from a spray head to the battery pole, water attached to the surface of the battery pole is removed, nearby air is heated through an electric heating wire, and the drying effect is improved. The heated air is blown to the temperature gathering cover through the fan, and high-temperature ventilation is gathered together through the temperature gathering cover, so that the air in the temperature gathering cover is increased, and the drying effect on the battery pole is improved.
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Description

Technical Field

[0001] This utility model relates to the field of battery terminal processing technology, and in particular to a drying device for battery terminal processing. Background Technology

[0002] Battery terminals are another crucial component of a battery. They serve as the current collector and possess a special structure designed for strong corrosion resistance. Battery terminals typically consist of a body, base, and head. Their shape, size, and model must be designed and manufactured according to different battery types, current requirements, and environmental adaptability. The production process of battery terminals involves steps such as cold extrusion, cutting, turning, ultrasonic cleaning, rinsing with clean water, and drying. During the drying process, battery terminals tend to stack together, resulting in poor drying of the stacked terminals. Utility Model Content

[0003] The main objective of this invention is to provide a drying device for processing battery terminals, which can effectively solve the problems in the background art.

[0004] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a drying device for processing battery terminals, including a conveying mechanism, a leveling mechanism installed on the upper left side of the conveying mechanism, a water removal mechanism installed in the middle of the upper side of the conveying mechanism, a drying mechanism installed on the right side of the conveying mechanism, and a water storage tank provided at the lower part of the conveying mechanism;

[0005] The leveling mechanism includes a stand, a threaded rod, a fixed plate, a connecting plate, a baffle, and a servo motor. The lower part of the stand is fixedly connected to the rear left side of the conveying mechanism, and the upper part of the stand is fixedly connected to the rear of the fixed plate. The lower end of the threaded rod is rotatably connected to the front left side of the conveying mechanism, and the upper part of the threaded rod is rotatably connected to the front of the fixed plate. The servo motor is mounted on the upper part of the fixed plate, and the lower output end of the servo motor passes through the fixed plate and is fixedly connected to the upper end of the threaded rod. The rear part of the connecting plate is slidably connected to the outer periphery of the stand, and the front part of the connecting plate is threadedly connected to the outer periphery of the threaded rod. The upper part of the baffle is fixedly connected to the lower part of the connecting plate.

[0006] Preferably, the outer periphery of the stand is provided with a scale.

[0007] Preferably, the water removal mechanism includes multiple U-shaped tubes, multiple nozzles, a horizontal tube, a connecting tube, and an air pump. The lower ends of the multiple U-shaped tubes are located in the middle of the conveying mechanism, and the upper ends of the multiple U-shaped tubes are located in the upper part of the conveying mechanism. The multiple nozzles are installed on the outer periphery of the U-shaped tubes. The middle parts of the U-shaped tubes are connected by the horizontal tube. One end of the connecting tube is fixedly connected to the middle of the horizontal tube, and the other end of the connecting tube is connected to the air pump.

[0008] Preferably, the drying mechanism includes a support plate, a fan, a heating wire, and a heat-concentrating hood. The lower part of the heat-concentrating hood is installed on the upper right side of the conveying mechanism. The front and rear sides of the support plate are fixedly connected to the middle right side of the conveying mechanism. The lower part of the fan is installed in the middle of the support plate, and the heating wire is installed on the upper part of the fan.

[0009] Preferably, an exhaust pipe is installed in the middle of the heat-concentrating cover, and the other end of the exhaust pipe is connected to a waste heat recovery device.

[0010] Preferably, the conveying mechanism includes two side plates, four sprockets, two chains, chain plates, and a reduction motor. The lower part of the side plates is fixedly connected to the front and rear sides of the upper part of the water storage tank. The middle part of the sprockets is rotatably connected to the inner sidewalls of the left and right sides of the side plates. The front and rear sprockets are connected by shafts. The chains are internally meshed with the outer circumferences of the left and right sprockets. The front and rear sides of the chain plates are connected to the opposite side of the chains. The reduction motor is installed on one side of the side plate, and the output end of the reduction motor passes through the sidewall of the side plate and is fixedly connected to the middle of one of the sprockets.

[0011] Compared with the prior art, the present invention has the following beneficial effects:

[0012] 1. By standing the connecting plate upright to limit its movement, when the servo motor drives the threaded rod to rotate, the connecting plate will cause the baffle to move up and down, thus leaving a gap at the bottom of the baffle that allows only a single battery terminal to pass through, preventing the battery terminals from stacking together. The dehydration mechanism and drying mechanism can better dry the battery terminals.

[0013] 2. The air pump delivers air into the U-shaped tube through the connecting pipe and horizontal pipe, causing the air to be sprayed from the nozzle onto the battery terminals, thereby removing the water adhering to the surface of the battery terminals. The air near the terminals is heated by the heating wire, and the heated air is blown towards the temperature-gathering hood by the fan. The temperature-gathering hood gathers the high-temperature air, thereby increasing the air volume inside the temperature-gathering hood and improving the drying effect on the battery terminals. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of a drying device for processing battery terminals according to the present invention;

[0015] Figure 2 This is a schematic diagram of the dehydration mechanism of a drying device for battery terminal processing according to the present invention;

[0016] Figure 3 This is a schematic diagram of the flattening mechanism of a drying device for processing battery terminals according to this utility model;

[0017] Figure 4 This is a schematic diagram of the drying mechanism of a drying device for processing battery terminals according to this utility model.

[0018] In the diagram: 1. Conveying mechanism; 101. Side plate; 102. Sprocket; 103. Chain; 104. Chain plate; 105. Gear motor; 2. Leveling mechanism; 201. Standing support; 202. Threaded rod; 203. Fixing plate; 204. Connecting plate; 205. Baffle; 206. Servo motor; 3. Dewatering mechanism; 301. U-shaped tube; 302. Nozzle; 303. Horizontal tube; 304. Connecting tube; 4. Drying mechanism; 401. Support plate; 402. Fan; 403. Heating wire; 404. Temperature-concentrating cover; 405. Exhaust pipe; 5. Water storage tank. Detailed Implementation

[0019] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0020] like Figure 1-4 As shown, a drying device for processing battery terminals includes a conveying mechanism 1, a leveling mechanism 2 installed on the upper left side of the conveying mechanism 1, a dehydration mechanism 3 installed in the upper middle of the conveying mechanism 1, a drying mechanism 4 installed on the right side of the conveying mechanism 1, and a water storage tank 5 provided at the lower part of the conveying mechanism 1. In summary, the drive reduction motor 105 causes the sprocket 102 to rotate the chain plate 104 via the chain 103, thereby moving the battery terminals on the chain plate 104. The connecting plate 204 is limited by the upright 201, so that when the servo motor 206 drives the threaded rod 202 to rotate, the connecting plate 204 will cause the baffle 205 to move up and down, thereby moving the battery terminals on the baffle. A gap is left at the bottom of 205, allowing only a single battery terminal to pass through, to prevent the battery terminals from stacking together. The dehydration mechanism 3 and drying mechanism 4 can better dry the battery terminals. An air pump supplies air into the U-shaped tube 301 through the connecting pipe 304 and the horizontal pipe 303, causing the air to be sprayed from the nozzle 302 onto the battery terminals, thereby removing water adhering to the surface of the battery terminals. The heating wire 403 heats the surrounding air, and the fan 402 blows the heated air towards the temperature-concentrating cover 404. The temperature-concentrating cover 404 concentrates the high-temperature air, thereby increasing the air volume inside the cover 404 and effectively drying the battery terminals.

[0021] The leveling mechanism 2 includes a stand 201, a threaded rod 202, a fixed plate 203, a connecting plate 204, a baffle 205, and a servo motor 206. The lower part of the stand 201 is fixedly connected to the rear left side of the conveying mechanism 1, and the upper part of the stand 201 is fixedly connected to the rear of the fixed plate 203. The lower end of the threaded rod 202 is rotatably connected to the front left side of the conveying mechanism 1, and the upper part of the threaded rod 202 is rotatably connected to the front of the fixed plate 203. The servo motor 206 is mounted on the upper part of the fixed plate 203, and the lower output end of the servo motor 206 passes through the fixed plate 203 and is fixedly connected to the upper end of the threaded rod 202. The rear part of the connecting plate 204 is slidably connected to the outer periphery of the upright 201, and the front part of the connecting plate 204 is threadedly connected to the outer periphery of the threaded rod 202. The upper end of the baffle 205 is fixedly connected to the lower part of the connecting plate 204. The upright 201 limits the connecting plate 204, so that when the servo motor 206 drives the threaded rod 202 to rotate, the connecting plate 204 will drive the baffle 205 to move up and down, thereby leaving a gap at the lower part of the baffle 205 that allows only a single battery terminal to pass through, preventing the battery terminals from stacking together. The dehydration mechanism 3 and the drying mechanism 4 can better dry the battery terminals.

[0022] The outer periphery of the upright plate 201 is marked with graduations, which makes it easy to observe and determine the distance between the baffle 205 and the chain plate 104. It can be adjusted to the correct position in one go without repeated adjustments, saving time and making it convenient to use.

[0023] The water removal mechanism 3 includes multiple U-shaped tubes 301, multiple nozzles 302, a horizontal tube 303, a connecting tube 304, and an air pump. The lower ends of the multiple U-shaped tubes 301 are located in the middle of the conveying mechanism 1, and the upper ends of the multiple U-shaped tubes 301 are located on the upper part of the conveying mechanism 1. The multiple nozzles 302 are installed on the outer periphery of the U-shaped tubes 301. The middle parts of the U-shaped tubes 301 are connected by the horizontal tubes 303. One end of the connecting tube 304 is fixedly connected to the middle part of the horizontal tube 303, and the other end of the connecting tube 304 is connected to the air pump. The air pump delivers air into the U-shaped tubes 301 through the connecting tubes 304 and the horizontal tubes 303, so that the air is sprayed from the nozzles 302 to the battery terminals, thereby removing the water adhering to the surface of the battery terminals.

[0024] The drying mechanism 4 includes a support plate 401, a fan 402, a heating wire 403, and a temperature-gathering cover 404. The lower part of the temperature-gathering cover 404 is installed on the upper right side of the conveying mechanism 1. The front and rear sides of the support plate 401 are fixedly connected to the middle right side of the conveying mechanism 1. The lower part of the fan 402 is installed in the middle of the support plate 401. The heating wire 403 is installed on the upper part of the fan 402. The heating wire 403 heats the nearby air, and the fan 402 blows the heated air toward the temperature-gathering cover 404. The temperature-gathering cover 404 gathers the high-temperature air, thereby increasing the air volume inside the temperature-gathering cover 404 and effectively drying the battery terminals.

[0025] An exhaust pipe 405 is installed in the middle of the heat-concentrating cover 404. The other end of the exhaust pipe 405 is connected to a waste heat recovery device. The air containing water vapor inside the heat-concentrating cover 404 is discharged through the exhaust pipe 405, and the waste heat recovery device recovers the waste heat of the high-temperature air, thus saving energy.

[0026] The conveying mechanism 1 includes two side plates 101, four sprockets 102, two chains 103, chain plates 104, and a reduction motor 105. The lower part of the side plates 101 is fixedly connected to the front and rear sides of the upper part of the water storage tank 5. The middle part of the sprockets 102 is rotatably connected to the inner sidewalls of the left and right sides of the side plates 101. The front and rear sprockets 102 are connected by shafts. The chains 103 are internally meshed with the outer circumferences of the left and right sprockets 102. The front and rear sides of the chain plates 104 are connected to the opposite side of the chains 103. The reduction motor 105 is installed on one side of the side plate 101. The output end of the reduction motor 105 passes through the sidewall of the side plate 101 and is fixedly connected to the middle of one of the sprockets 102. Driving the reduction motor 105 causes the sprockets 102 to drive the chain plates 104 to rotate through the chains 103, thereby driving the battery terminals on the chain plates 104 to move.

[0027] Working principle:

[0028] The drive reduction motor 105 causes the sprocket 102 to rotate the chain plate 104 via the chain 103, thereby moving the battery terminals on the chain plate 104. The connecting plate 204 is limited by the upright 201, so when the servo motor 206 drives the threaded rod 202 to rotate, the connecting plate 204 will drive the baffle 205 to move up and down, thus leaving a gap at the bottom of the baffle 205 that only allows a single battery terminal to pass through, preventing the battery terminals from stacking together. The dehydration mechanism 3 and the drying mechanism 4 can better dry the battery terminals. The air pump delivers air into the U-shaped tube 301 through the connecting pipe 304 and the horizontal pipe 303, so that the air is sprayed from the nozzle 302 onto the battery terminals, thereby removing the water adhering to the surface of the battery terminals. The heating wire 403 heats the nearby air, and the fan 402 blows the heated air toward the temperature-gathering cover 404. The temperature-gathering cover 404 gathers the high-temperature air, thereby increasing the air volume inside the temperature-gathering cover 404, and thus effectively drying the battery terminals.

[0029] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A drying apparatus for processing battery terminals, comprising a conveying mechanism (1), characterized in that: A leveling mechanism (2) is installed on the upper left side of the conveying mechanism (1), a water removal mechanism (3) is installed in the middle of the upper side of the conveying mechanism (1), a drying mechanism (4) is installed on the right side of the conveying mechanism (1), and a water storage tank (5) is provided at the lower part of the conveying mechanism (1). The leveling mechanism (2) includes a stand (201), a threaded rod (202), a fixing plate (203), a connecting plate (204), a baffle (205), and a servo motor (206). The lower part of the stand (201) is fixedly connected to the rear left side of the conveying mechanism (1), and the upper part of the stand (201) is fixedly connected to the rear of the fixing plate (203). The lower end of the threaded rod (202) is rotatably connected to the front left side of the conveying mechanism (1), and the upper part of the threaded rod (202) is rotatably connected to... The servo motor (206) is mounted on the upper part of the fixed plate (203) and connected to the front part of the fixed plate (203). The lower output end of the servo motor (206) passes through the fixed plate (203) and is fixedly connected to the upper end of the threaded rod (202). The rear part of the connecting plate (204) is slidably connected to the outer periphery of the upright (201). The front part of the connecting plate (204) is threadedly connected to the outer periphery of the threaded rod (202). The upper end of the baffle (205) is fixedly connected to the lower part of the connecting plate (204).

2. The drying apparatus for battery terminal processing according to claim 1, characterized in that: The outer periphery of the stand (201) is provided with a scale.

3. The drying apparatus for battery terminal processing according to claim 1, characterized in that: The water removal mechanism (3) includes multiple U-shaped tubes (301), multiple nozzles (302), a horizontal tube (303), a connecting tube (304), and an air pump. The lower ends of the multiple U-shaped tubes (301) are located in the middle of the conveying mechanism (1), and the upper ends of the multiple U-shaped tubes (301) are located on the upper part of the conveying mechanism (1). The multiple nozzles (302) are installed on the outer periphery of the U-shaped tubes (301). The middle parts of the U-shaped tubes (301) are connected through the horizontal tubes (303). One end of the connecting tube (304) is fixedly connected to the middle part of the horizontal tube (303), and the other end of the connecting tube (304) is connected to the air pump.

4. The drying apparatus for battery terminal processing according to claim 1, characterized in that: The drying mechanism (4) includes a support plate (401), a fan (402), a heating wire (403), and a heat-concentrating cover (404). The lower part of the heat-concentrating cover (404) is installed on the upper right side of the conveying mechanism (1). The front and rear sides of the support plate (401) are fixedly connected to the middle right side of the conveying mechanism (1). The lower part of the fan (402) is installed in the middle of the support plate (401), and the heating wire (403) is installed on the upper part of the fan (402).

5. A drying apparatus for processing battery terminals according to claim 4, characterized in that: An exhaust pipe (405) is installed in the middle of the heat-concentrating cover (404), and the other end of the exhaust pipe (405) is connected to the waste heat recovery device.

6. The drying apparatus for battery terminal processing according to claim 1, characterized in that: The conveying mechanism (1) includes two side plates (101), four sprockets (102), two chains (103), chain plates (104), and a reduction motor (105). The lower part of the side plate (101) is fixedly connected to the front and rear sides of the upper part of the water storage tank (5). The middle part of the sprocket (102) is rotatably connected to the inner sidewalls of the left and right sides of the side plate (101). The front and rear sprockets (102) are connected by a shaft. The chain (103) is internally meshed with the outer periphery of the left and right sprockets (102). The front and rear sides of the chain plate (104) are connected to the opposite side of the chain (103). The reduction motor (105) is installed on one side of the side plate (101). The output end of the reduction motor (105) passes through the sidewall of the side plate (101) and is fixedly connected to the middle part of one of the sprockets (102).