Battery group transfer device for battery production
By introducing longitudinal and lateral positioning components into the battery pack transfer equipment, combined with blower drying and pressurized transmission, multi-point limiting and reinforcement of the battery pack is achieved, solving the impact and friction problems of the battery pack during the transfer process and improving the stability and safety of the transfer.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- JIANGXI HENGLI TECH BATTERY CO LTD
- Filing Date
- 2023-07-28
- Publication Date
- 2026-04-10
AI Technical Summary
Existing battery pack transfer equipment has limited ability to protect battery packs during transportation, making them susceptible to impacts or friction during transport, which poses safety hazards.
A device comprising a stabilizing base, a transfer box assembly, a blower drying device, a booster transmission assembly, and a battery pack limiting device was designed. Through the cooperation of longitudinal and lateral positioning components, multi-point limiting and reinforcement are achieved to prevent the battery pack from colliding and rubbing during transfer.
It improves the protection capability and transportation stability of the battery pack, prevents the battery pack from colliding and rubbing when shaken, and ensures the safety and stability of the battery pack.
Smart Images

Figure CN116767690B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the battery production industry, in particular to a battery group transfer equipment for battery production. BACKGROUND
[0002] The battery is a kind of chemical power source widely used in the world, with the advantages of stable voltage, safe and reliable, low price, wide application range, abundant raw materials and high recycling rate, with the current expansion of demand for new energy in various industries, the battery related industry develops rapidly.
[0003] The conventional battery is used in the form of battery group after production, the protection ability of the existing transfer equipment for the battery group is limited when the battery group is transferred, so that the battery groups are impacted or rubbed during the transfer process due to the driving conditions of the transfer vehicle, which has certain safety hazards, in view of the above problems, it is urgent to make innovative design on the basis of the existing battery group transfer equipment. SUMMARY
[0004] The purpose of the present application is to provide a battery group transfer equipment for battery production to solve the problems raised in the background art.
[0005] To achieve the above purpose, the present application provides the following technical scheme:
[0006] A battery group transfer equipment for battery production, comprising:
[0007] A stabilizing seat;
[0008] A transfer box assembly connected with the stabilizing seat;
[0009] A blast drying device connected with the transfer box assembly for blast drying inside the transfer box assembly;
[0010] A supercharging transmission assembly connected with the inside of the transfer box assembly and in communication with the blast drying device;
[0011] A battery group limiting device connected with the transfer box assembly;
[0012] The battery group limiting device comprises:
[0013] A longitudinal positioning assembly connected with the transfer box assembly;
[0014] A transverse positioning assembly connected with the longitudinal positioning assembly for limiting and fixing a plurality of battery groups in cooperation with the longitudinal positioning assembly.
[0015] Compared with the prior art, the beneficial effects of the application are that the air blowing drying device can realize the driving of the longitudinal positioning assembly while carrying out the dehumidifying and drying of the transfer box, and can complete the multi-point limiting and reinforcing of the battery pack in cooperation with the pressurization transmission assembly and the transverse positioning assembly, so as to prevent the battery pack from colliding and rubbing when shaking, and further improve the protection capability and the transfer stability of the battery pack. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is an internal structure schematic view of a battery pack transfer equipment for battery production in the embodiment of the application.
[0017] Figure 2 It is an external structure schematic view of a battery pack transfer equipment for battery production in the embodiment of the application.
[0018] Figure 3 It is a partial structure schematic view of A in the figure. Figure 1
[0019] Figure 4 It is a connection schematic view of a linkage frame and a third elastic member in the battery pack transfer equipment for battery production in the embodiment of the application.
[0020] Figure 5 It is a partial structure schematic view of B in the figure. Figure 1
[0021] In the figure: 1-stable seat, 2-transfer box assembly, 3-air blowing drying device, 4-pressurization transmission assembly, 5-battery pack limiting device, 6-longitudinal positioning assembly, 7-transverse positioning assembly, 101-connection female seat, 102-connection male seat, 201-transfer box, 202-bottom net frame, 203-empty slot, 204-internal net frame, 205-anti-skid protrusion, 206-box door, 301-air blowing part, 302-air warehouse, 303-first control part, 304-drying air duct, 401-communication slot warehouse, 402-second control part, 403-first elastic part, 404-piston transmission frame, 405-connection frame, 601-fixed frame, 602-second elastic part, 603-linkage frame, 604-third elastic part, 701-connection rod frame, 702-sleeve frame, 703-anti-skid sleeve plate frame, 704-top frame. DETAILED DESCRIPTION
[0022] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.
[0023] A battery group transfer device for battery production, in an embodiment of the present application, as shown in Figure 1 and Figure 2 , comprising: a stable seat 1; a transfer box assembly 2 connected with the stable seat 1; a blast drying device 3 connected with the transfer box assembly 2, used for blast drying inside the transfer box assembly 2; a pressurized transmission assembly 4 connected with the inside of the transfer box assembly 2 and in communication with the blast drying device 3; a battery group limiting device 5 connected with the transfer box assembly 2; wherein the battery group limiting device 5 comprises: a longitudinal positioning assembly 6 connected with the transfer box assembly 2; a transverse positioning assembly 7 connected with the longitudinal positioning assembly 6, used for cooperating with the longitudinal positioning assembly 6 to complete the limiting and fixing of several battery groups.
[0024] In an embodiment of the present application:
[0025] As shown in Figure 1 and Figure 2 , the transfer box assembly 2 comprises: a transfer box 201 connected with the stable seat 1; a bottom net rack 202 arranged inside the bottom side of the transfer box 201; at least two empty slot grooves 203 arranged inside the transfer box 201; several built-in net racks 204 connected with the inside of the transfer box 201; several assembly anti-skid protrusions 205 connected with the inside of the transfer box 201; a box door 206 connected with the transfer box 201;
[0026] When placing the battery groups, open the box door 206, place several battery groups on each built-in net rack 204, adjust the distance of the transverse positioning assembly 7 according to the width specifications of the battery groups, so that the transverse positioning assembly 7 abuts against the outside of the battery groups, and then the blast drying device 3 operates, the pressurized transmission assembly 4 moves a certain distance to drive several longitudinal positioning assemblies 6 to move downward, when the longitudinal positioning assemblies 6 move downward, the pressurized fixing of the transverse positioning assembly 7 is realized at the same time as the longitudinal fixing of the several battery groups is realized, the locking of the transverse positioning assembly 7 is completed, and the transverse fixing stability of the several battery groups is further improved, after the fixing is completed, the box door 206 is closed, the blast drying device 3 continuously operates, and the inside air is continuously blown out to the outside of the transfer box 201 in cooperation with the bottom net rack 202 and the several built-in net racks 204, so that the inside of the transfer box 201 is kept dry, thereby preventing the battery groups from being damp.
[0027] In an embodiment of the present application:
[0028] As shown in Figure 1 and Figure 2As shown in the figure, the air blowing drying device 3 comprises: an air blowing part 301 connected with the transfer box 201; the air blowing part 301 is selected from air blowing parts 301; an air warehouse 302 connected with the inside of the transfer box 201 and in communication with the air blowing part 301; a plurality of first control parts 303 connected with the air warehouse 302; the first control part 303 is selected from electromagnetic valves; a drying air duct 304 in communication with the side of the plurality of first control parts 303 away from the air warehouse 302;
[0029] The drying agent (not shown in the figure) is stored in the drying air duct 304; after the plurality of battery groups are placed, the plurality of first control parts 303 are closed, the gas generated by the air blowing part 301 enters the inside of the two sides of the pressurizing transmission assembly 4 through the air warehouse 302, the pressurizing transmission assembly 4 is closed after the movement driving of the longitudinal positioning assembly 6 is completed through the pressurizing transmission assembly 4, the plurality of first control parts 303 are opened, the gas in the air warehouse 302 enters the drying air duct 304, and the gas is introduced into the inside of the transfer box 201 through the drying air duct 304, so that the dehumidification of the inside of the transfer box 201 is realized.
[0030] In an embodiment of the present application:
[0031] As shown in the figure, Figure 1 and Figure 3 The pressurizing transmission assembly 4 comprises: at least two communication groove warehouses 401 in communication with the air warehouse 302; a second control part 402 connected with the communication groove warehouse 401; the second control part 402 is selected from electromagnetic valves; a first elastic part 403 connected with the inside of the communication groove warehouse 401; the first elastic part 403 is selected from springs; a piston transmission frame 404 connected with the first elastic part 403 at one end and connected with the hollow groove 203 at the other end; a plurality of connecting frames 405 fixedly connected with the piston transmission frame 404 in a sleeved manner;
[0032] After the plurality of battery groups are placed, the plurality of first control parts 303 are closed, the two sides of the second control part 402 are opened at a time, the gas in the air warehouse 302 is introduced into the inside of the two sides of the communication groove warehouse 401, the two sides of the piston transmission frame 404 are driven to move downward by a certain distance, and at the same time, the plurality of connecting frames 405 can drive the longitudinal positioning assembly 6 to move downward.
[0033] In an embodiment of the present application:
[0034] As shown in the figure, Figure 1 and Figure 4As shown in the figure, the longitudinal positioning assembly 6 comprises: a plurality of fixed frames 601, which are fixedly connected with the inside of the empty slot 203 and movably sleeved on the outside of the piston transmission frame 404; a second elastic member 602, which is connected with the fixed frame 601; the second elastic member 602 is selected from an elastic telescopic rod; a linkage frame 603, which is connected with the end of the second elastic member 602 away from the fixed frame 601 on both sides and movably sleeved with the piston transmission frame 404; a plurality of third elastic members 604, which are movably sleeved with the linkage frame 603; the third elastic member 604 is selected from an elastic telescopic rod;
[0035] According to the placed battery pack specifications, first, the position of the transverse positioning assembly 7 is adjusted, and then the position of the plurality of third elastic members 604 is adjusted along the linkage frame 603, so that the third elastic member 604 is placed above the battery pack. When the piston transmission frame 404 moves downward, the connecting frame 405 abuts against the linkage frame 603, driving the linkage frame 603 and the plurality of third elastic members 604 to move downward, completing the pressure positioning of the transverse positioning assembly 7 and the longitudinal fixation of the battery pack.
[0036] In an embodiment of the present application:
[0037] As shown in the figure, Figure 1 and Figure 5 As shown in the figure, the transverse positioning assembly 7 comprises: a plurality of connecting rod frames 701, which are connected with the inside of the transfer box 201; a sleeve frame 702, which is movably sleeved with the connecting rod frame 701; an anti-skid sleeve plate frame 703, which is fixedly sleeved with the sleeve frame 702; a top frame 704, which is fixedly connected with the anti-skid sleeve plate frame 703;
[0038] According to the battery pack specifications, the position of the plurality of anti-skid sleeve plate frames 703 is adjusted along the connecting rod frame 701, so that the left and right sides of the battery pack abut against the anti-skid sleeve plate frame 703. When the linkage frame 603 moves downward, it can simultaneously abut against the plurality of top frames 704, completing the fixation and locking of the plurality of anti-skid sleeve plate frames 703. When the transfer equipment shakes, the anti-skid sleeve plate frame 703 cooperates with the third elastic member 604 to achieve multi-point limiting, which can effectively maintain the stability of the battery pack and prevent adjacent battery packs from colliding and rubbing each other.
[0039] In an embodiment of the present application:
[0040] As shown in the figure, Figure 1 and Figure 2As shown, the battery production battery pack transfer equipment further comprises: a connecting female seat 101 connected with the transfer box 201; a connecting male seat 102 connected with the transfer box 201 and used for matching the connecting female seat 101 to complete the matching connection of multiple transfer equipment;
[0041] When multiple transfer equipment is stored, the connecting female seat 101 and the connecting male seat 102 of the adjacent transfer equipment are embeddedly connected, which can effectively improve the stability of the transfer equipment when it is shaken, and meanwhile, the clamping grooves 203 arranged on both sides of the transfer box 201 can play a certain buffering role when being impacted, effectively protecting the internal battery pack.
[0042] The working principle of the present application is as follows: when the battery pack is placed, the box door 206 is opened, and a plurality of battery packs are placed on each built-in grid 204. According to the width specification of the battery pack, the spacing of the transverse positioning assembly 7 is adjusted so that the transverse positioning assembly 7 abuts against the outside of the battery pack. Then the air blowing drying device 3 operates, the pressure boosting transmission assembly 4 moves a certain distance, and drives a plurality of longitudinal positioning assemblies 6 to move downward. When the longitudinal positioning assembly 6 moves downward, the transverse positioning assembly 7 is pressurized and fixed, the locking of the transverse positioning assembly 7 is completed, and the stability of the transverse fixation of the plurality of battery packs is further improved. After the fixation is completed, the box door 206 is closed, the air blowing drying device 3 continues to operate, and the internal gas is continuously blown out to the outside of the transfer box 201 in cooperation with the bottom grid 202 and the plurality of built-in grids 204, so as to keep the inside of the transfer box 201 dry, thereby preventing the battery pack from being damp. Dryer (not shown in the figure) is stored in the drying air duct 304. After the plurality of battery packs are placed, the plurality of first control members 303 are closed, the gas generated by the air blowing member 301 enters the inside of the two side pressure boosting transmission assemblies 4 through the air warehouse 302, and the movement of the longitudinal positioning assembly 6 is driven through the pressure boosting transmission assembly 4. After the pressure boosting transmission assembly 4 is closed, the plurality of first control members 303 are opened, the gas in the air warehouse 302 enters the drying air duct 304, and the drying air duct 304 is introduced into the inside of the transfer box 201, so as to realize the dehumidification of the inside of the transfer box 201. After the plurality of battery packs are placed, the plurality of first control members 303 are closed, and the two side second control members 402 are opened at regular intervals. The gas in the air warehouse 302 is introduced into the inside of the two side communication groove 401, drives the two side piston transmission frame 404 to move downward by a certain distance, and simultaneously, the plurality of connecting frames 405 can drive the longitudinal positioning assembly 6 to move downward.
[0043] According to the specifications of the placed battery pack, first adjust the position of the transverse positioning assembly 7, and then slide the position of the plurality of third elastic members 604 along the linkage frame 603, so that the third elastic members 604 are placed above the battery pack. When the piston transmission frame 404 moves down, the connecting frame 405 abuts against the linkage frame 603, driving the linkage frame 603 and the plurality of third elastic members 604 to move down, completing the pressurization positioning of the transverse positioning assembly 7 and the longitudinal fixation of the battery pack. According to the specifications of the battery pack, slide the position of the plurality of anti-skid sleeve plate frames 703 along the connecting rod frame 701, so that the left and right sides of the battery pack abut against the anti-skid sleeve plate frames 703. When the linkage frame 603 moves down, it can simultaneously abut against the plurality of top frames 704, completing the fixation and locking of the plurality of anti-skid sleeve plate frames 703. When the transfer equipment shakes, the anti-skid sleeve plate frames 703 cooperate with the third elastic members 604 to achieve multi-point positioning, which can effectively maintain the stability of the battery pack and prevent adjacent battery packs from colliding and rubbing each other. When multiple transfer equipment are stored, the connecting female seat 101 of the adjacent transfer equipment is embeddedly connected with the connecting male seat 102, which can effectively improve the stability of the transfer equipment when it shakes. At the same time, the clamping grooves 203 provided on both sides of the transfer box 201 can play a certain buffering role when they are impacted, effectively protecting the internal battery pack.
[0044] In summary, the air blowing drying device 3 can realize the movement driving of the longitudinal positioning assembly 6 while performing the dehumidification and drying of the transfer box 201, in cooperation with the pressurization transmission assembly 4. At the same time, in cooperation with the transverse positioning assembly 7, the multi-point positioning and reinforcement of the battery pack can be completed, preventing the battery pack from colliding and rubbing when it shakes, further improving the protection capability and transfer stability of the battery pack.
[0045] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution. The description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.
Claims
1. A battery transfer apparatus for use in the production of batteries, characterized by, include: Stabilizer; A transfer box assembly, which is connected to a stabilizing base; A forced-air drying device, which is connected to a transfer box assembly, is used for forced-air drying inside the transfer box assembly; A booster drive assembly, which is internally connected to the transfer box assembly and communicates with the blower drying device; a battery pack limiting device, which is connected to the transfer box assembly. The battery pack limiting device includes: A longitudinal positioning component, which is connected to the transfer box assembly; A lateral positioning component, which is connected to a longitudinal positioning component, is used to cooperate with the longitudinal positioning component to complete the limiting and fixing of several battery packs; The transfer box assembly includes: A transfer box, which is connected to a stabilizing base; At least two clamping slots are provided inside the transfer box; The blower drying device includes: The air chamber is connected to the interior of the transfer box and is also connected to the blower. The booster drive assembly includes: At least two interconnected compartments, which are connected to the air chamber; The second control element is connected to the connecting hopper; The first elastic element is connected to the interior of the communicating hopper; A piston drive frame, one end of which is connected to a first elastic element, and the other end of which is connected through a clamping groove; Several connecting brackets are fixedly connected to the piston transmission bracket; The longitudinal positioning component includes: Several fixed frames are fixedly connected to the inside of the clamping groove and are movably fitted onto the outside of the piston transmission frame; The second elastic element is connected to the fixed frame; The linkage frame has through-hole slots on both sides and is connected to the end of the second elastic element away from the fixed frame, and is movably connected to the piston transmission frame. Several third elastic elements are movably connected to the linkage frame assembly.
2. The battery transfer apparatus for battery production according to claim 1, characterized by The transfer box assembly also includes: A bottom-mounted mesh frame is installed inside the bottom side of the transfer box; Several built-in wire mesh frames are connected to the interior of the transfer box; Several anti-slip protrusions are connected to the inside of the transfer box; The box door is connected to the transfer box.
3. The battery transfer apparatus for battery production according to claim 2, characterized by The blower drying device also includes: A blower component, which is connected to a transfer box; Several first control components, each of which is connected to the air chamber; The drying air duct is connected to the side of several first control components away from the air chamber.
4. The battery transfer apparatus for battery production according to claim 1, characterized by The lateral positioning component includes: Several connecting rod frames are connected to the interior of the transfer box; A sleeve frame, wherein the sleeve frame is movably connected to the connecting rod frame; Anti-slip sleeve frame, wherein the anti-slip sleeve frame is fixedly connected to the sleeve frame; The top frame is fixedly connected to the anti-slip sleeve frame.
5. The battery transfer apparatus for battery production according to claim 1, wherein The battery pack transfer equipment for battery production also includes: A connecting female connector is connected to the transfer box; A male connector is connected to a transfer box and is used to cooperate with a female connector to complete the matching connection of multiple transfer devices.
Citation Information
Patent Citations
Dehumidifying and drying device for storage battery processing
CN116379730A
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CN208882406U