Safety barrier cabinet for battery detection
Through the design of the combination of gear drive and temperature detector, the inconvenience of operation and safety hazards of the safety barrier cabinet for battery detection is solved, convenient placement of the battery and real-time monitoring and adjustment of temperature are achieved, and the safety and controllability of battery detection are improved.
Patent Information
- Application Number
- CN202421788911.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-26
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-07-26
AI Technical Summary
The existing safety barrier cabinets for battery detection are inconvenient to operate and have safety risks, especially safety hazards when manually placing batteries, as well as the risk of high-temperature fire caused by the inability to effectively monitor and adjust the cabinet temperature.
The gears and driving crossbars are used to drive the charging and discharge base to perform linear movement through a servo motor, which facilitates the placement and handling of the battery. It is equipped with a temperature detector and a hairdryer system to monitor and adjust the temperature of the partition box in real time.
It realizes convenient operation of battery detection, reduces the safety risks of human operation, and reduces the probability of fire caused by high temperature through temperature control, improving overall safety and controllability.
Smart Images

Figure CN223092098U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of battery detection, in particular to a safety barrier cabinet for battery detection. Background Technique
[0002] A battery detection cabinet is a device used to test a series of parameters of a battery, such as current, voltage, capacity, cycle life, internal resistance, etc. A safety barrier cabinet for battery detection is a battery detection cabinet with a safety partition, which can perform the same or different tests on the battery to be tested in different partitions.
[0003] Most of the battery charge and discharge bases of the existing safety barrier cabinets for battery detection are fixed. When performing battery detection, testers need to reach their hands into the partition box to place or take out the battery, which is inconvenient to operate and has a certain safety risk. Moreover, the existing safety barrier cabinets for battery detection cannot monitor and adjust the temperature in the cabinet body, and it is easy to generate high temperature during charge and discharge detection, which may cause the circuit to burn and lead to a fire. Summary of the Utility Model
[0004] Aiming at the deficiencies of the prior art, the utility model provides a safety barrier cabinet for battery detection that is more convenient and safer for taking or placing batteries.
[0005] The technical solution adopted by the utility model to solve the above technical problems is as follows:
[0006] A safety barrier cabinet for battery detection includes a cabinet body. A plurality of partition boxes are arranged inside the cabinet body. Switch doors are provided at the front ends of the plurality of partition boxes. Charge and discharge bases are arranged inside the plurality of partition boxes. A driving cross bar is arranged at the bottom end of the charge and discharge base. An installation base is arranged on the outer surface of the bottom of the driving cross bar. A gear is arranged on one side of the installation base through a notch. A servo motor is arranged at the bottom of the gear. A limiting cross bar is arranged at the bottom end of the charge and discharge base on one side of the driving cross bar. A limiting base is arranged on the outer surface of the bottom of the limiting cross bar.
[0007] Furthermore, an operation assembly is arranged at the upper part of the front end of the cabinet body. The operation assembly includes an operation screen and a data transmission system. The operation assembly is electrically connected to the controller and the servo motor.
[0008] Furthermore, two air guide cylinders are arranged inside the partition box at the rear end of the charge and discharge base. Hair dryers are arranged inside the two air guide cylinders. The two hair dryers are commonly connected to a controller through a wire group. The controller is controlled by the operation assembly. When it is necessary to reduce the temperature inside the partition box, the controller receives the instruction sent by the operation assembly and drives the hair dryers to operate, blowing air into the partition box to reduce the temperature inside the partition box and reduce the probability of fire occurrence.
[0009] Furthermore, a temperature detector is provided on one side of the charging and discharging base, and the temperature detector is electrically connected to the operating assembly. The temperature detector monitors the internal temperature of the partition box and feeds back the temperature to the operating assembly. The operating assembly displays the internal temperature of the partition box through an operating screen. If the temperature is too high, the hair dryer can be started by the operating assembly to cool it down, thereby improving the controllability of the internal temperature of each partition box.
[0010] Furthermore, long grooves are provided on both sides of the limit base, and fixed plug plates are provided on both sides of the limit cross bar inside the long groove, so that the limit cross bar can be clamped by the limit base, ensuring the stability of the charging and discharging base so that it will not fall off during linear movement.
[0011] Furthermore, a toothed portion is provided on one side of the driving cross bar, and the outer surface of the gear extends to the inside of the mounting base and is meshed with the toothed portion provided on one side of the driving cross bar. When the gear rotates, the driving cross bar is driven to perform linear motion, which facilitates the placement and removal of the battery and improves the convenience of using the safety barrier cabinet for battery testing.
[0012] Compared with the prior art, the beneficial effects of the utility model are:
[0013] 1. The safety barrier cabinet for battery testing of the present application is used in conjunction with gears and driving cross bars. When the gears rotate, the driving cross bars drive the charging and discharging base to perform linear motion. The charging and discharging base extends out of the partition box. The limit cross bars set at the bottom of the charging and discharging base are clamped by the limit base to ensure the stability of the charging and discharging base. After the charging and discharging base is extended, the battery to be tested is placed inside the charging and discharging base, and then the servo motor is started to drive the charging and discharging base to be retracted into the partition box for battery testing. The testing personnel do not need to put their hands into the partition box for operation, which is convenient to use and more convenient to take or place the battery;
[0014] 2. The present application monitors the internal temperature of the partition box through a temperature detector and feeds back the temperature to the operating assembly. The operating assembly displays the internal temperature of the partition box through the operating screen. If the temperature is too high, a command can be issued through the operating assembly. The controller receives the command issued by the operating assembly to drive the hair dryer to blow air into the partition box, thereby lowering the internal temperature of the partition box and improving the controllability of the internal temperature of each partition box, thereby avoiding accidents such as fire caused by excessive temperature inside the partition box and providing higher safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic diagram of the overall structure of the utility model;
[0016] Figure 2 It is a left-side stereoscopic schematic diagram of the charging and discharging base structure of the utility model;
[0017] Figure 3This is a right-side three-dimensional schematic diagram of the charge and discharge base structure of the present utility model;
[0018] Figure 4 This is a schematic diagram of the hair dryer structure of the present utility model.
[0019] In the figure: 1, cabinet body; 2, operation assembly; 3, partition box; 4, switch door; 5, charge and discharge base; 6, installation base; 7, gear; 8, servo motor; 9, driving cross bar; 10, temperature detector; 11, limit base; 12, long slot; 13, fixed plug board; 14, limit cross bar; 15, air guide tube; 16, hair dryer; 17, controller. Specific embodiments
[0020] Next, the technical solution of the present utility model will be clearly and completely described in conjunction with the accompanying drawings and specific embodiments.
[0021] As Figures 1-4 shown, a safety barrier cabinet for battery detection in this embodiment includes a cabinet body 1. A number of partition boxes 3 are arranged inside the cabinet body 1 to separate and place the batteries to be tested, facilitating the detection of different charge and discharge rates; switch doors 4 are provided at the front ends of the several partition boxes 3, enabling the partition boxes 3 to open the switch doors 4 for ventilation to avoid fire caused by excessive temperature inside the partition boxes 3; charge and discharge bases 5 are arranged inside the several partition boxes 3, facilitating the detection of battery charge and discharge; a driving cross bar 9 is provided at the bottom end of the charge and discharge base 5, and an installation base 6 is provided on the outer surface of the bottom of the driving cross bar 9. A gear 7 is provided through a notch on one side of the installation base 6, and a servo motor 8 is provided at the bottom of the gear 7. The gear 7 is driven by the servo motor 8 to rotate. When the gear 7 rotates, it will drive the driving cross bar 9 to drive the charge and discharge base 5 to perform linear motion; a limit cross bar 14 is provided at the bottom end of the charge and discharge base 5 on one side of the driving cross bar 9, and a limit base 11 is provided on the outer surface of the bottom of the limit cross bar 14. The limit cross bar 14 is limited by the limit base 11 to clamp the charge and discharge base 5 to prevent the charge and discharge base 5 from falling off during linear motion.
[0022] Specifically, an operation assembly 2 is provided at the upper part of the front end of the cabinet body 1. The operation assembly 2 includes an operation screen and a data transmission system, and the operation assembly 2 is electrically connected to the controller 17 and the servo motor 8.
[0023] Furthermore, two air guide tubes 15 are arranged inside the partition box 3 at the rear end of the charge and discharge base 5. Two hair dryers 16 are arranged inside the two air guide tubes 15. The two hair dryers 16 are commonly connected to a controller 17 through a wire group, and the controller 17 is controlled by the operation assembly 2; when it is necessary to reduce the temperature inside the partition box 3, the controller 17 receives an instruction sent by the operation assembly 2 to drive the hair dryers 16 to operate, blowing air into the partition box 3 to reduce the temperature inside the partition box 3 and reduce the probability of fire occurrence.
[0024] Furthermore, a temperature detector 10 is provided on one side of the charge and discharge base 5. The temperature detector 10 is electrically connected to the operation assembly 2. The temperature detector 10 monitors the internal temperature of the partition box 3 and feeds it back to the operation assembly 2. The operation assembly 2 displays the internal temperature of the partition box 3 through the operation screen. If the temperature is too high, the hair dryer 16 can be started through the operation assembly 2 to cool down, improving the controllability of the internal temperature of each partition box 3.
[0025] Furthermore, long slots 12 are penetrated through both sides of the limit base 11. Fixed insertion plates 13 are provided on both sides of the limit cross bar 14 inside the long slots 12, so that the limit cross bar 14 can be clamped by the limit base 11, ensuring the stability of the charge and discharge base 5 and preventing it from falling off during linear movement.
[0026] Furthermore, a tooth opening is provided on one side of the driving cross bar 9. The outer surface of the gear 7 extends into the installation base 6 and is meshed with the tooth opening provided on one side of the driving cross bar 9. When the gear 7 rotates, the driving cross bar 9 is driven to perform linear movement, facilitating the placement and removal of the battery and improving the convenience of using the safety barrier cabinet for battery detection.
[0027] The usage method of this embodiment is as follows: All electrical components appearing in this application are externally connected to a power supply during use. When performing battery detection, first open the switch door 4 provided at the front end of the partition box 3, and then drive the servo motor 8 to operate through the operation screen of the operation assembly 2. The servo motor 8 drives the gear 7 to rotate. When the gear 7 rotates, it drives the driving cross bar 9 to drive the charge and discharge base 5 to perform linear movement. The limit cross bar 14 provided at the bottom end of the charge and discharge base 5 extending out of the partition box 3 is clamped by the limit base 11 to ensure the stability of the charge and discharge base 5; after the charge and discharge base 5 extends out, place the battery to be detected inside the charge and discharge base 5, and then start the servo motor 8 again to drive the charge and discharge base 5 to retract into the partition box 3 for battery detection; during the detection, the temperature detector 10 monitors the internal temperature of the partition box 3 and feeds it back to the operation assembly 2. The operation assembly 2 displays the internal temperature of the partition box 3 through the operation screen. If the temperature is too high, an instruction can be issued through the operation assembly 2. The controller 17 receives the instruction issued by the operation assembly 2 and drives the hair dryer 16 to operate, blowing air into the partition box 3 to reduce the internal temperature of the partition box 3 and improve the operation safety.
[0028] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Those skilled in the art can modify or equivalently replace the technical solutions recorded in the foregoing embodiments. Any modification, equivalent replacement, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. A safety barrier cabinet for battery detection, comprising a cabinet body (1), characterized in that: Inside the cabinet body (1), several partition boxes (3) are arranged. At the front ends of several said partition boxes (3), switch doors (4) are provided. Inside several said partition boxes (3), charge-discharge bases (5) are arranged. At the bottom end of the charge-discharge base (5), a driving cross bar (9) is provided. On the outer surface of the bottom of the driving cross bar (9), a mounting base (6) is provided. On one side of the mounting base (6), a gear (7) is provided through a notch. At the bottom of the gear (7), a servo motor (8) is provided. At the bottom end of the charge-discharge base (5) on one side of the driving cross bar (9), a limiting cross bar (14) is provided. On the outer surface of the bottom of the limiting cross bar (14), a limiting base (11) is provided.
2. The safety barrier cabinet for battery detection according to claim 1, wherein: At the upper part of the front end of the cabinet body (1), an operation assembly (2) is provided.
3. The safety barrier cabinet for battery detection according to claim 1, characterized in that: Inside the partition box (3) at the rear end of the charge-discharge base (5), two air guide cylinders (15) are arranged. Inside each of the two air guide cylinders (15), a hair dryer (16) is arranged. The two hair dryers (16) are commonly connected to a controller (17) through a wire group.
4. A safety barrier cabinet for battery detection according to claim 2, characterized in that: On one side of the charge-discharge base (5), a temperature detector (10) is provided. The temperature detector (10) is electrically connected to the operation assembly (2).
5. A safety barrier cabinet for battery detection according to claim 1, characterized in that: On both sides of the limiting base (11), long slots (12) are penetrated. On both sides of the limiting cross bar (14) inside the long slots (12), fixed insertion plates (13) are provided.
6. The safety barrier cabinet for battery detection according to claim 1, wherein: On one side of the driving cross bar (9), a tooth opening is provided. The outer surface of the gear (7) extends into the mounting base (6) and is meshed with the tooth opening provided on one side of the driving cross bar (9).