An online activation method and apparatus

By designing an online activation device, the automatic activation and heat dissipation of multiple batteries are achieved, solving the safety hazards and inconvenient heat dissipation problems of single-battery activation in existing technologies.

CN119650903BActive Publication Date: 2025-12-16ZHEJIANG SAIDES CRYOGENIC EQUIP
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Patent Information

Application Number
CN202411860641.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-12-16
Estimated Expiration
2044-12-17

AI Technical Summary

Technical Problem

Existing technologies can only activate individual batteries, which poses safety risks and is not conducive to heat dissipation.

Method used

An online activation device was designed, comprising an activation box, multiple placement plates, a telescopic air pipe, and a dual-axis motor. The device enables automatic docking and activation of multiple batteries through the telescopic air pipe and wedge-shaped extrusion blocks, and provides internal ventilation and heat dissipation through a fan blade and worm gear system.

Benefits of technology

It enables automated activation of multiple batteries, improves safety, and effectively solves the heat dissipation problem during the activation process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an online activation method and device, and belongs to the field of battery activation. The device comprises an activation device body, the bottom of the activation device body is fixedly connected with an activation box, a plurality of placement plates are fixedly installed in the inside of the activation box, and the rear surface of the activation device body is integrally formed with two activation lines. When activated, the arc-shaped extrusion rods extrude a plurality of push rods in sequence, the plurality of inflation boxes are controlled to inflate into the plurality of telescopic air pipes in sequence, the wedge-shaped extrusion block at the front end of the traction rod slides into the inside of the activation box along the telescopic opening, so that the battery is extruded to move backward and is connected with the docking seat, the plurality of telescopic air pipes are inflated and elongated in sequence, the plurality of batteries can be driven to be activated in sequence, when the telescopic air pipe is contracted, the traction rod is pulled to reset, the wedge-shaped extrusion block at the rear end of the traction rod slides into the inside of the activation box, the battery can be extruded to slide forward and is separated from the docking seat, and the activation is stopped.
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Description

TECHNICAL FIELD

[0001] The present application relates to battery activation, in particular to an online activation method and device. BACKGROUND

[0002] The battery activation instrument is a product for maintaining the lagging battery, which can perform capacity test, intelligent charging or multiple cycle charging and discharging for multiple cycles according to the actual situation of different lagging batteries, so as to activate the active material of the battery plate failure and improve the capacity of the lagging battery, and is widely used in the field of battery activation technology.

[0003] Patent: CN117832659A discloses an intelligent battery activation instrument based on lead-acid battery repair, and relates to the technical field of battery activation instrument, which comprises a battery activation device, a positive and negative plug hole is formed at the tail of the battery activation device, a positive voltage line is clamped in the positive plug hole at the tail of the battery activation device, a negative voltage line is clamped in the negative plug hole at the tail of the battery activation device, through the setting of the locking mechanism, the barrel clamp is pressed and set outside the battery interface, which can effectively avoid the direct contact between the clamping device and the battery connector, reduce the safety risk of electric arc discharge and spark to people, through the setting of the multi-angle clamping mechanism, different shapes and sizes of batteries can be stably clamped, which is suitable for clamping battery interfaces of various specifications and types, increases the applicability and flexibility of the equipment, and can be adjusted according to the actual situation to provide better clamping effect.

[0004] The above-mentioned technology can only activate a single battery, and manual connection is required during activation, which has safety hazards, and the detection device and the battery are not convenient to cool during the activation process, which needs to be improved. Therefore, we propose an online activation method and device. SUMMARY

[0005] The purpose of the present application is to provide a device that can conveniently activate multiple batteries. Another purpose of the present application is to provide a device that facilitates heat dissipation during activation.

[0006] Technical solution: an online activation device, including activation device body, the bottom of the activation device body is fixedly connected with activation box, a plurality of placement plates are fixedly installed in the inside of the activation box, the rear surface of the activation device body is integrally formed with two activation lines, the output end of the activation line is integrally formed with an activation seat on the rear surface of the activation box, the front surface of the activation seat is located in the inside of the activation box and above a plurality of the placement plates, and the plug-in seat is integrally formed on the front surface of the activation seat, and the activation seat is fixedly connected with the activation box; the right side of the activation box is fixedly connected with the mounting box, the mounting box and the activation box are fixedly connected with each other, and a plurality of expansion openings are symmetrically arranged on the front and back of the mounting box and above a plurality of the placement plates, the inside of the mounting box is fixedly connected with a round rod, a plurality of traction rods are rotatably connected to the outer side wall of the round rod through a rotating shaft, both ends of the traction rod are rotatably connected with a rotating connecting piece through a rotating shaft, the left end of the rotating connecting piece is fixedly connected with a wedge-shaped extrusion block on the inside of the expansion opening, the upper surface of the traction rod is rotatably connected with a telescopic air pipe through a rotating shaft, the right end of the telescopic air pipe is fixedly connected with the inside of the mounting box, and the right side of the telescopic air pipe is fixedly connected with a docking mouth one on the right side of the mounting box.

[0007] Further, the inside of the activation box is fixedly connected with a support, the right side of the support is fixedly connected with a double-shaft motor, the output shaft right end of the double-shaft motor is fixedly connected with a worm, the outer side wall of the worm is meshingly connected with a worm gear, the center shaft front end of the worm gear is fixedly connected with a shaft rod, the front end of the shaft rod penetrates through the front surface of the activation box and is fixedly connected with a rotating rod, and the left end of the rotating rod is fixedly connected with an arc-shaped extrusion rod.

[0008] Further, the front surface of the activation box is fixedly connected with a plurality of inflatable boxes on the outside of the rotating rod, the outer side wall of the inflatable box is integrally formed with a docking mouth two, the inside of the inflatable box is slidably connected with a piston plate, the piston plate and the inflatable box are fixedly connected with a spring one, and the end of the piston plate close to the rotating rod is fixedly connected with a push rod on the outside of the inflatable box.

[0009] Further, the output shaft right end of the double-shaft motor is fixedly connected with a fan blade.

[0010] Further, the inside of the activation box is fixedly connected with a collection cavity, the left side of the collection cavity is fixedly connected with a branch pipe one and a branch pipe two on the right side of the activation box, the top end of the branch pipe one is connected with the inside of the activation device body, the top end of the branch pipe two is fixedly connected with a transfer cavity, the right side of the transfer cavity is fixedly connected with the left side of the activation box, a plurality of docking holes one are arranged on the right side of the transfer cavity and above a plurality of the placement plates, and the docking holes one are communicated with the inside of the activation box.

[0011] Further, the inner rear surface of the activation box and above the plurality of placement plates are fixedly connected with two springs two, the front ends of two adjacent springs two are fixedly connected with an L-shaped sealing baffle, a plurality of penetrating butt joints two are formed in the left side of the L-shaped sealing baffle, and a strip-shaped magnetic block is integrally formed on the front surface of the L-shaped sealing baffle.

[0012] Further, the inner lower side of the activation box is clamped with a filter screen, and the front surface of the activation box is detachably installed with a box cover through bolts.

[0013] Further, the front surface of the activation box is rotatably connected with a box door through a hinge, and a penetrating air vent is formed in the front surface of the box door.

[0014] Further, the inner side of the air vent is rotatably connected with a sealing piece through a rotating shaft, the inner left side of the box door is provided with a linkage cavity, the inner side of the linkage cavity is slidably connected with a T-shaped rack, the left side of the sealing piece is fixedly connected with a gear on the inner side of the linkage cavity, the gear is meshingly connected with the T-shaped rack, a sliding groove is formed in the right side of the linkage cavity, a sliding block is slidably connected in the inner side of the sliding groove, a wedge-shaped magnetic block is fixedly connected to the left side of the sliding block, the inclined surface of the wedge-shaped magnetic block is in contact with the bottom end of the T-shaped rack, and a plurality of springs three are fixedly connected between the T-shaped rack and the linkage cavity.

[0015] According to another aspect of the present application, an online activation method is provided, comprising the following steps:

[0016] S1, a plurality of batteries to be activated are placed on the upper side of a plurality of placement plates, and the box door is closed;

[0017] S2, the activation device body and the double-shaft motor are started;

[0018] S3, the double-shaft motor drives the fan blades to rotate, thereby ventilating and cooling the inside of the activation box and the inside of the activation device body; S4, the double-shaft motor is started, the worm is controlled to rotate, and then under the rotation of the worm gear, the rotating rod is driven to rotate, so that the arc-shaped extrusion rod can extrude the plurality of push rods in turn, so that the plurality of inflation boxes can be inflated into the plurality of telescopic air tubes in turn, the wedge-shaped extrusion block is controlled to move, and then different positions of the battery and the plug-in seat can be extruded and connected in communication, the battery activation is realized, after the activation is completed, the box door is opened, and the plurality of batteries are taken out.

[0019] Beneficial effect: when activated, the arc-shaped extrusion rod extrudes the plurality of push rods in turn, controls the plurality of inflatable boxes to inflate into the plurality of telescopic air tubes in turn, so that the wedge-shaped extrusion block at the front end of the traction rod slides along the telescopic opening to the inside of the activation box, thereby extruding the battery to move backward and be connected with the plug-in seat, the plurality of telescopic air tubes are inflated and elongated in turn, which can drive the plurality of batteries to be activated in turn, when the telescopic air tube is contracted, the traction rod is pulled to reset, at this time, the wedge-shaped extrusion block at the rear end of the traction rod slides to the inside of the activation box, which can extrude the battery to slide forward and be separated from the plug-in seat, and the activation is stopped;

[0020] When the fan blade rotates, air is drawn in through the air inlet on the right side of the activation box, then enters the branch pipe one and the branch pipe two through the collecting cavity, and then the inside of the battery and the inside of the activation device body can be ventilated and cooled. When the battery is extruded backward by the wedge-shaped extrusion block, the L-shaped sealing baffle is pushed to move backward, at this time, the butt joint hole two and the butt joint hole one are connected in communication, so that the battery storage space part at this position is connected with the branch pipe two, thereby air can be filled into the inside to ventilate and cool the battery at this position;

[0021] When the L-shaped sealing baffle moves backward, the wedge-shaped magnetic block is attracted by the strip-shaped magnetic block, which can pull the wedge-shaped magnetic block to move backward, thereby extruding the T-shaped rack to rise, and the plurality of gears are rotated, thereby the sealing piece is driven to move, at this time, the air inlet is in an open state, which is convenient for ventilation and cooling. When the L-shaped sealing baffle moves forward, the wedge-shaped magnetic block is pushed to move forward, under the pushing of the spring three, the T-shaped rack is lowered, and the gears are rotated to reset, so that the sealing piece re-blocks the air inlet, and the air inlet is in a sealed state. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 is the overall structure schematic diagram of the present application;

[0023] Figure 2 is the internal structure schematic diagram of the present application;

[0024] Figure 3 is the internal structure schematic diagram of the activation box in the side view of the present application;

[0025] Figure 4 is the connection structure schematic diagram of the double-shaft motor, the worm gear, the shaft rod and the arc-shaped extrusion rod of the present application;

[0026] Figure 5 is the cross-sectional structure schematic diagram of the inflatable box of the present application;

[0027] Figure 6 is the structure schematic diagram of the transfer cavity of the present application;

[0028] Figure 7 is the top view structure schematic diagram of the L-shaped sealing baffle and the spring two of the present application;

[0029] Figure 8 is a schematic view of the sectional structure of the box door of the present application;

[0030] Figure 9 is a schematic view of the side structure of the wedge-shaped magnetic block of the present application.

[0031] In the figure: 1, activation device body; 2, activation box; 3, placement plate; 4, activation circuit; 5, activation seat; 6, plug-in seat; 7, mounting box; 8, telescopic opening; 9, round rod; 10, traction rod; 11, rotating connecting piece; 12, wedge-shaped extrusion block; 13, telescopic air pipe; 14, butt joint nozzle one; 15, support; 16, double-shaft motor; 17, worm; 18, worm gear; 19, shaft rod; 20, rotating rod; 21, arc-shaped extrusion rod; 22, inflation box; 23, butt joint nozzle two; 24, piston plate; 25, spring one; 26, push rod; 27, fan blade; 28, collection cavity; 29, branch pipe one; 30, branch pipe two; 31, transfer cavity; 32, butt joint hole one; 33, spring two; 34, L-shaped sealing baffle; 35, butt joint hole two; 36, strip-shaped magnetic block; 37, filter screen; 38, box cover; 39, box door; 40, ventilation opening; 41, sealing piece; 42, linkage cavity; 43, T-shaped rack; 44, gear; 45, sliding groove; 46, sliding block; 47, wedge-shaped magnetic block; 48, spring three. DETAILED DESCRIPTION

[0032] In order to make the technical scheme of the present application clearer, the present application will be further described in detail below in combination with the drawings and specific embodiments.

[0033] Embodiment 1

[0034] As shown in Figure 1 , Figure 3 , Figure 4 and Figure 5 , an online activation device is provided, which comprises an activation device body 1, the bottom of the activation device body 1 is fixedly connected with an activation box 2, the inside of the activation box 2 is fixedly installed with a plurality of placement plates 3, the rear surface of the activation device body 1 is integrally formed with two activation circuits 4, the output end of the activation circuit 4 is integrally formed with an activation seat 5 on the rear surface of the activation box 2, the front surface of the activation seat 5 is integrally formed with a plug-in seat 6 on the inside of the activation box 2 and above the plurality of placement plates 3, and the activation seat 5 is fixedly connected with the activation box 2.

[0035] When the device is used, a plurality of batteries to be activated are placed inside the activation box 2, the battery butt joint port is connected in communication with the plug-in seat 6, and then the activation device body 1 is started to activate the batteries.

[0036] The right side of the activation box 2 is fixedly connected with the installation box 7, and the installation box 7 is provided with the telescopic opening 8 which is symmetrically arranged in front of and behind the multiple placement plates 3 and located above the multiple placement plates 3, the inside of the installation box 7 is fixedly connected with the round rod 9, the outer side wall of the round rod 9 is rotatably connected with the multiple traction rods 10 through the rotating shaft, the two ends of the traction rod 10 are rotatably connected with the rotating connecting plates 11 through the rotating shaft, the left end of the rotating connecting plate 11 is fixedly connected with the wedge-shaped extrusion block 12 which is located inside the telescopic opening 8, the upper surface of the traction rod 10 is rotatably connected with the telescopic air pipe 13 through the rotating shaft, the right end of the telescopic air pipe 13 is fixedly connected with the inside right side of the installation box 7, and the right side of the telescopic air pipe 13 is fixedly communicated with the butt joint nozzle one 14 which is located on the right side of the installation box 7.

[0037] The inside of the activation box 2 is fixedly connected with the support 15, the right side of the support 15 is fixedly connected with the double-shaft motor 16, the output shaft right end of the double-shaft motor 16 is fixedly connected with the worm 17, the outer side wall of the worm 17 is meshingly connected with the worm gear 18, the center shaft front end of the worm gear 18 is fixedly connected with the shaft rod 19, the front end of the shaft rod 19 penetrates through the front surface of the activation box 2 and is fixedly connected with the rotating rod 20, and the left end of the rotating rod 20 is fixedly connected with the arc-shaped extrusion rod 21.

[0038] The front surface of the activation box 2 is fixedly connected with the multiple inflation boxes 22 which are located outside the rotating rod 20, the outer side wall of the inflation box 22 is integrally formed with the butt joint nozzle two 23, the inside of the inflation box 22 is slidably connected with the piston plate 24, the piston plate 24 is fixedly connected with the spring one 25 which is between the piston plate 24 and the inflation box 22, and the end of the piston plate 24 which is close to the rotating rod 20 is fixedly connected with the push rod 26 which is located outside the inflation box 22.

[0039] During activation, the double-shaft motor 16 is started, the worm 17 drives the worm gear 18 to rotate, the arc-shaped extrusion rod 21 is controlled to slowly move, the multiple push rods 26 are sequentially extruded by the arc-shaped extrusion rod 21, the multiple inflation boxes 22 are sequentially inflated into the inside of the multiple telescopic air pipes 13, when the telescopic air pipe 13 is inflated, the traction rod 10 is driven to move, the wedge-shaped extrusion block 12 at the front end of the traction rod 10 slides along the telescopic opening 8 into the inside of the activation box 2, thereby extruding the battery to move backward and be connected with the plug-in seat 6, the multiple telescopic air pipes 13 are sequentially inflated and elongated, thereby sequentially activating the multiple batteries, when the telescopic air pipe 13 is contracted, the traction rod 10 is pulled to reset, at this time, the wedge-shaped extrusion block 12 at the rear end of the traction rod 10 slides into the inside of the activation box 2, thereby extruding the battery to slide forward and be separated from the plug-in seat 6, and the activation is stopped.

[0040] As shown in Figure 2 , Figure 6 and Figure 7 , the output shaft right end of the double-shaft motor 16 is fixedly connected with the fan blade 27.

[0041] The outside air is drawn to ventilate and dissipate heat in the inside of the device.

[0042] The inner lower surface of the activation box 2 is fixedly connected with a collection cavity 28. The left side of the collection cavity 28 is fixedly communicated with branch pipe one 29 and branch pipe two 30 on the right side of the activation box 2. The top end of the branch pipe one 29 is communicated with the inside of the activation device body 1. The top end of the branch pipe two 30 is fixedly communicated with a transfer cavity 31. The right side of the transfer cavity 31 is fixedly connected with the left side of the activation box 2. A plurality of docking holes one 32 are formed in the right side of the transfer cavity 31 and above the plurality of placement plates 3. The docking holes one 32 are communicated with the inside of the activation box 2.

[0043] The inner rear surface of the activation box 2 and above the plurality of placement plates 3 are fixedly connected with two spring two 33. The front ends of the adjacent two spring two 33 are fixedly connected with an L-shaped sealing baffle 34. A plurality of through docking holes two 35 are formed in the left side of the L-shaped sealing baffle 34. A strip-shaped magnetic block 36 is integrally formed on the front surface of the L-shaped sealing baffle 34.

[0044] A filter screen 37 is clamped below the inner side of the activation box 2. A box cover 38 is detachably installed on the front surface of the activation box 2 through bolts.

[0045] When the fan blade 27 rotates, air is drawn in through the air inlet on the right side of the activation box 2, then enters the branch pipe one 29 and the branch pipe two 30 through the collection cavity 28, and then the inside of the activation box 2 and the inside of the activation device body 1 can be ventilated and cooled. When the battery is pushed back by the wedge-shaped extrusion block 12, the L-shaped sealing baffle 34 is pushed back. At this time, the docking holes two 35 and the docking holes one 32 are in communication, so that the battery storage space part is in communication with the branch pipe two 30, so that air can be filled into the inside to ventilate and cool the battery.

[0046] The filter screen 37 has a filtering effect on the inhaled air. The box cover 38 is convenient to detach, so as to facilitate the dust removal.

[0047] As shown in Figure 8 and Figure 9 , the front surface of the activation box 2 is rotatably connected with a box door 39 through a hinge. A through ventilation opening 40 is formed in the front surface of the box door 39.

[0048] A sealing piece 41 is rotatably connected with the inner side of the ventilation opening 40 through a rotating shaft. A linkage cavity 42 is formed in the left side of the inside of the box door 39. A T-shaped rack 43 is slidably connected with the inside of the linkage cavity 42. A gear 44 is fixedly connected with the left side of the sealing piece 41 and located in the inner side of the linkage cavity 42. The gear 44 is in meshing connection with the T-shaped rack 43. A sliding groove 45 is formed in the right side of the inside of the linkage cavity 42. A sliding block 46 is slidably connected with the inner side of the sliding groove 45. A wedge-shaped magnetic block 47 is fixedly connected with the left side of the sliding block 46. The inclined surface of the wedge-shaped magnetic block 47 is in contact with the bottom end of the T-shaped rack 43. A plurality of spring three 48 are fixedly connected between the T-shaped rack 43 and the linkage cavity 42.

[0049] When the L-shaped sealing baffle 34 moves backward, the wedge-shaped magnetic block 47 can be pulled to move backward by the strip-shaped magnetic block 36, so as to squeeze the T-shaped rack 43 to rise, drive the plurality of gears 44 to rotate, and then drive the sealing sheet 41 to move, at this time, the ventilation opening 40 is in an open state, and ventilation and heat dissipation are facilitated. When the L-shaped sealing baffle 34 moves forward, the wedge-shaped magnetic block 47 is pushed to move forward, and under the pushing of the spring three 48, the T-shaped rack 43 is lowered, and the gear 44 is driven to rotate and reset, so that the sealing sheet 41 re-blocks the ventilation opening 40, and the ventilation opening 40 is in a sealed state.

[0050] According to another aspect of the present application, an online activation method is provided, comprising the following steps:

[0051] S1, the plurality of batteries to be activated are respectively placed above the plurality of placement plates 3, and the box door 39 is closed;

[0052] S2, the activation device body 1 and the double-shaft motor 16 are started;

[0053] S3, the double-shaft motor 16 is started to drive the fan blade 27 to rotate, so as to ventilate and dissipate heat inside the activation box 2 and inside the activation device body 1;

[0054] S4, the double-shaft motor 16 is started to control the rotation of the worm 17, and then under the rotation of the worm wheel 18, the rotation of the rotating rod 20 is driven, so that the arc-shaped extrusion rod 21 can extrude the plurality of push rods 26 in sequence, so that the plurality of inflation boxes 22 can be inflated into the plurality of telescopic air pipes 13 in sequence, the wedge-shaped extrusion block 12 is controlled to move, and then different positions of the battery and the plug-in seat 6 are extruded to be connected and communicated, the battery activation is realized, after the activation is completed, the box door 39 is opened, and the plurality of batteries are taken out.

[0055] The above-described embodiments only express several embodiments of the present application, the description is more specific and detailed, but it cannot be understood as a limitation on the scope of the present application. It should be noted that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications and improvements can be made, which are all within the protection scope of the present application. Therefore, the protection scope of the present application patent should be subject to the appended claims.

Claims

1. An online activation device, comprising an activation device body (1), characterized in that: An activation box (2) is fixedly connected to the bottom of the activation device body (1). Multiple placement plates (3) are fixedly installed inside the activation box (2). Two activation lines (4) are integrally formed on the rear surface of the activation device body (1). An activation seat (5) is integrally formed on the rear surface of the activation box (2). The front surface of the activation seat (5) is located inside the activation box (2) and is integrally formed with a plug-in seat (6) above the multiple placement plates (3). The activation seat (5) is fixedly connected to the activation box (2). An installation box (7) is fixedly connected to the right side of the activation box (2). The installation box (7) is located between the activation box (2) and the multiple placement plates. (3) has telescopic openings (8) symmetrically arranged on the top front and back. A round rod (9) is fixedly connected inside the mounting box (7). Multiple traction rods (10) are rotatably connected to the outer side wall of the round rod (9) through a rotating shaft. Rotary connecting pieces (11) are rotatably connected to both ends of the traction rods (10) through a rotating shaft. A wedge-shaped extrusion block (12) is fixedly connected to the left end of the rotating connecting piece (11) inside the telescopic opening (8). A telescopic air pipe (13) is rotatably connected to the upper surface of the traction rod (10) through a rotating shaft. The right end of the telescopic air pipe (13) is fixedly connected to the right side of the inside of the mounting box (7). A docking nozzle (14) is fixedly connected to the right side of the mounting box (7). The activation box (2) is fixedly connected to a bracket (15). A dual-axis motor (16) is fixedly connected to the right side of the bracket (15). A worm gear (17) is fixedly connected to the right end of the output shaft of the dual-axis motor (16). A worm wheel (18) is meshed with the outer wall of the worm gear (17). A shaft (19) is fixedly connected to the front end of the central shaft of the worm wheel (18). The front end of the shaft (19) extends through to the front surface of the activation box (2) and is fixedly connected to a rotating rod (20). An arc-shaped extrusion rod (21) is fixedly connected to the left end of the rotating rod (20). The front surface of the activation box (2) is fixedly connected to multiple air boxes (22) on the outside of the rotating rod (20). The outer wall of the air box (22) is integrally formed with a second docking nozzle (23). The inside of the air box (22) is slidably connected with a piston plate (24). A spring (25) is fixedly connected between the piston plate (24) and the air box (22). A push rod (26) is fixedly connected to one end of the piston plate (24) near the rotating rod (20) and on the outside of the air box (22).

2. The online activation device according to claim 1, characterized in that: The output shaft of the dual-axis motor (16) is fixedly connected to a fan blade (27).

3. The online activation device according to claim 1, characterized in that: The lower inner surface of the activation box (2) is fixedly connected to a collection cavity (28). The left side of the collection cavity (28) is fixedly connected to the right side of the activation box (2) via a branch pipe 1 (29) and a branch pipe 2 (30). The top end of the branch pipe 1 (29) is connected to the interior of the activation device body (1). The top end of the branch pipe 2 (30) is fixedly connected to a transfer cavity (31). The right side of the transfer cavity (31) is fixedly connected to the left side of the activation box (2). The right side of the transfer cavity (31) and above the multiple placement plates (3) are provided with multiple docking holes 1 (32). The docking holes 1 (32) are connected to the interior of the activation box (2).

4. The online activation device according to claim 1, characterized in that: Two springs (33) are fixedly connected to the inner rear surface of the activation box (2) and above the multiple placement plates (3). The front ends of two adjacent springs (33) are fixedly connected to an L-shaped sealing baffle (34). Multiple through-holes (35) are provided on the left side of the L-shaped sealing baffle (34). A strip magnetic block (36) is integrally formed on the front surface of the L-shaped sealing baffle (34).

5. The online activation device according to claim 1, characterized in that: A filter screen (37) is fitted into the lower inner side of the activation box (2), and a box cover (38) is installed on the lower front surface of the activation box (2) by means of bolts.

6. The online activation device according to claim 1, characterized in that: The front surface of the activation box (2) is connected to a door (39) by a hinge, and the front surface of the door (39) has a through-type ventilation opening (40).

7. The online activation device according to claim 6, characterized in that: A sealing plate (41) is rotatably connected to the inner side of the vent (40) via a rotating shaft. A linkage cavity (42) is opened on the left side of the inside of the box door (39). A T-shaped rack (43) is slidably connected inside the linkage cavity (42). A gear (44) is fixedly connected to the left side of the sealing plate (41) inside the linkage cavity (42). The gear (44) meshes with the T-shaped rack (43). A sliding groove (45) is opened on the right side of the inside of the linkage cavity (42). A slider (46) is slidably connected to the inner side of the sliding groove (45). A wedge-shaped magnetic block (47) is fixedly connected to the left side of the slider (46). The inclined surface of the wedge-shaped magnetic block (47) contacts the bottom end of the T-shaped rack (43). A plurality of springs (48) are fixedly connected between the T-shaped rack (43) and the linkage cavity (42).

8. An online activation method, comprising the online activation apparatus according to any one of claims 1-7, characterized in that, Includes the following steps: S1. Place the multiple batteries to be activated on top of the multiple placement plates (3) respectively, and close the box door (39). S2. Start the activation device body (1) and the dual-axis motor (16). S3. The dual-axis motor (16) starts and drives the fan blade (27) to rotate, thereby ventilating and dissipating heat inside the activation box (2) and the activation device body (1); S4. The dual-axis motor (16) starts and controls the worm gear (17) to rotate. Then, under the rotation of the worm wheel (18), it drives the rotating rod (20) to rotate, so that the arc-shaped extrusion rod (21) can extrude multiple push rods (26) in sequence, so that multiple air boxes (22) can inflate multiple telescopic air tubes (13) in sequence, control the movement of the wedge-shaped extrusion block (12), and then extrude the batteries at different positions to connect with the plug-in socket (6) to achieve battery activation. After activation, open the box door (39) and take out multiple batteries.

Citation Information

Patent Citations

  • Intelligent battery activation instrument based on lead-acid storage battery repair

    CN117832659A

  • Integrated fuel pack for fuel cell electric generating system, converter and gas purifier

    CN1460306A

  • System and method for battery charging of a fuel cell plug-in hybrid vehicle having an electric compressor or turbocharger

    US20190160935A1