An electrochemical energy storage whole-process safety management tool
By designing sliding placement plates and rotating connection components, flexible parallel connection and individual disassembly of energy storage batteries can be achieved, solving the problem of inconvenient disassembly and maintenance of energy storage batteries in existing technologies, and improving the efficiency and safety of electrochemical energy storage management.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-12-16
- Publication Date
- 2026-04-10
AI Technical Summary
In existing electrochemical energy storage systems, the parallel connection of energy storage batteries is fixed, which makes disassembly and maintenance inconvenient, affects management efficiency, and makes it difficult to handle problems flexibly when a single energy storage battery malfunctions.
A safety management tool for the entire electrochemical energy storage process, comprising a base, a top plate, and various components, has been designed. Through a sliding placement plate, rotating connection components, temperature sensors, and clamping lifting components, it enables flexible parallel connection and individual disassembly of energy storage batteries, thereby enhancing management efficiency.
It improves the ease of use and management efficiency of energy storage batteries, ensures safety and flexibility during energy storage, facilitates the individual handling of faulty batteries, and enhances the overall management effect of electrochemical energy storage.
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Figure CN116111253B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to an electrochemical energy storage whole process safety management tool, belonging to the technical field of electrochemical energy storage. BACKGROUND
[0002] Energy storage refers to the process of converting energy into a relatively stable form of existence under natural conditions through a medium or device and storing it for release when needed. It can be divided into three categories according to the different forms of energy storage: electrical energy storage, thermal energy storage, and hydrogen energy storage. Electrical energy storage refers to the cycle of storing and releasing electrical energy, which can be divided into electrochemical energy storage and mechanical energy storage. Electrical energy storage is currently the most common method of energy storage. Electrochemical energy storage refers to the use of chemical elements as energy storage media, with chemical reactions or valence changes during charging and discharging. Common electrical energy storage devices include lithium-ion batteries, lead-acid batteries, and sodium-sulfur batteries.
[0003] Currently, in the process of electrochemical energy storage, the energy storage capacity and efficiency of individual energy storage batteries are poor, and parallel connection between energy storage batteries is needed to improve the energy storage capacity of electrochemical energy storage, thereby facilitating management. During the management of the energy storage process, the parallel connection of individual energy storage batteries is fixed, and when individual energy storage batteries are disassembled and maintained after being connected in parallel, it will affect the entire energy storage process, affecting the management effect during the entire electrochemical energy storage process. For example, the battery cluster management device and battery energy storage system disclosed in Publication No. (CN112467839A) includes a networking circuit and a comprehensive controller. The communication circuit of the networking circuit is connected in series with the power conversion circuit, and the comprehensive controller is connected with the communication circuit, the power conversion circuit, and the BMU in the battery cluster. It is used to execute the preset battery management function according to the preset electrical information fed back by the communication circuit and the BMU, and at the same time, the comprehensive controller is also used to control the power conversion circuit to execute the preset current conversion function. In the battery cluster management device provided in the present application, the communication circuit and the conversion circuit are integrated together, which can be produced by the same manufacturer, thereby avoiding the repeated setting of voltage and current detection circuits and the corresponding soft start circuit, effectively improving the integration of the battery cluster management device, thereby improving the integration of the battery energy storage system, and helping to reduce the overall cost. Although this technical solution improves the integration of the battery cluster management device, it is inconvenient to disassemble and maintain individual energy storage batteries during use, which will affect the entire energy storage process, the management efficiency of the energy storage process is low, and the management effect during the entire electrochemical energy storage process is affected, which has certain disadvantages in use.
[0004] Therefore, an electrochemical energy storage whole process safety management tool is proposed. SUMMARY
[0005] The purpose of the present application is to provide an electrochemical energy storage whole process safety management tool to solve the above problems, realize the parallel connection between energy storage batteries, convenient and flexible to use, improve the amount of stored electrical energy, and facilitate the removal and processing of energy storage batteries when problems occur, effectively improve the efficiency of electrochemical energy storage management.
[0006] The present application realizes the above-mentioned purpose by the following technical scheme, an electrochemical energy storage whole process safety management tool, comprising a base and a top plate, the top plate is installed on the base through a support column, an installation clamping groove is formed on the base, a placing plate is installed on the installation clamping groove, the placing plate is clamped and arranged in the installation clamping groove through a sliding clamping strip, a limiting baffle is fixedly installed at one end of the top of the placing plate, a limiting clamping groove is formed at the other end of the top of the placing plate, a U-shaped baffle is slidably installed in the limiting clamping groove, an elastic limiting assembly is installed on the side wall of the U-shaped baffle, the elastic limiting assembly corresponds to two pin holes formed on the placing plate, an energy storage battery is arranged on the placing plate, the positive and negative electrodes of the energy storage battery are clamped in the straight slot hole formed on the top plate, a rotating connecting assembly is installed on the top plate, an electrode connecting piece is installed on the rotating connecting assembly, and the rotating connecting assembly and the electrode connecting piece are located on one side of the straight slot hole.
[0007] Preferably, in order to pull the handle to make the sliding pin rod slide up and down on the connecting plate, and at the same time make the circular plate drive the connecting spring to stretch or shrink, the elastic limiting assembly comprises a connecting plate, a sliding pin rod is slidably arranged on the connecting plate, the diameter of the sliding pin rod is the same as that of the two pin holes formed on the placing plate, a circular plate is installed on the sliding pin rod, the circular plate is connected to the top of the connecting plate through a connecting spring, and a handle is welded to the top of the circular plate.
[0008] Preferably, in order to turn on the micro drive motor to make the drive link rotate, thereby driving the insulating plate and the motor connecting piece to rotate, the rotating connecting assembly comprises a mounting seat and a micro drive motor, the micro drive motor is fixed on one end of the side wall of the mounting seat, a drive link is rotatably installed on the inner wall of the mounting seat, one end of the drive link is fixedly connected with the output shaft of the micro drive motor, an insulating plate is rotatably installed on the drive link, and the electrode connecting piece is fixed on the insulating plate.
[0009] Preferably, in order to control the opening of the built-in motor at one end of the serpentine connecting rod, the heat dissipation fan can be rotated to achieve heat dissipation of the energy storage battery, and the temperature sensor can achieve heat sensing between the two energy storage batteries. A square mounting frame is fixed on the base and located between the two energy storage batteries. A temperature sensor is fixed on the inner side wall of the square mounting frame. A refrigerator and a serpentine connecting rod are installed at the bottom of the inner side of the square mounting frame. A heat dissipation fan is rotatably installed at one end of the serpentine connecting rod. The heat dissipation fan is connected with the output shaft of the built-in motor at one end of the serpentine connecting rod.
[0010] Preferably, in order to achieve the charging and discharging function of the energy storage battery through the charging interface and the discharging interface, the external connecting line during charging and discharging can be fixed and moved upward by the clamping and lifting assembly, so that the external connecting line is separated from the charging interface and the discharging interface. A charging interface and a discharging interface are respectively installed at both ends of the top plate. A vertical seat is also installed on the top plate. The vertical seat is located on both sides of the charging interface and the discharging interface. A vertical installation slot is formed in the vertical seat. A clamping and lifting assembly is installed in the vertical installation slot.
[0011] Preferably, in order to control the opening of the built-in motor of the motor seat, the U-shaped limiting rod can be rotated, the one end of the U-shaped limiting rod can be fixedly clamped in the limiting hole, the fixing of the semicircular clamping soft sleeve can be achieved, and by rotating the threaded rotating rod, the two semicircular clamping soft sleeves can be close to the external connecting line to fix the external connecting line. The clamping and lifting assembly of the U-shaped limiting rod comprises a vertical sliding rod, the vertical sliding rod is fixed in the vertical installation slot, a lifting block is slidably provided on the vertical sliding rod, the lifting block is connected with the inner wall at the bottom end of the vertical sliding rod through a lifting spring, a threaded rotating rod is provided on the lifting block, a rotating handle is fixed at one end of the threaded rotating rod, a semicircular clamping soft sleeve is fixedly installed at the other end of the threaded rotating rod, a motor seat is installed on the side wall of the lifting block, a U-shaped limiting rod is rotatably installed on the motor seat, one end of the U-shaped limiting rod is fixedly connected with the output shaft of the built-in motor of the motor seat, and the other end of the U-shaped limiting rod corresponds to the limiting hole formed in the side wall of the vertical seat.
[0012] Preferably, in order to make the U-shaped detection rod drive the detection sheet to move downward by controlling the telescopic cylinder, the detection sheet can be in contact with the anode and cathode of the energy storage battery, and the position adjustment assembly can be used to adjust the position of the U-shaped detection rod and the detection sheet.
[0013] Preferably, in order to make the U-shaped detection rod drive the detection sheet to move downward by controlling the telescopic cylinder, the detection sheet can be in contact with the anode and cathode of the energy storage battery, and the position adjustment assembly can be used to adjust the position of the U-shaped detection rod and the detection sheet.
[0014] The beneficial effects of the present application are: by controlling the sliding of the placement plate on the base, the placement plate can be slid out of the placement plate, and by controlling the elastic limiting assembly, the energy storage battery can be conveniently limited and fixed, and by controlling the rotating connection assembly to drive the electrode connecting sheet to contact the electrode top end of the energy storage battery, the parallel connection between the energy storage batteries is realized, which is convenient and flexible to use, improves the electric energy storage capacity, and when the energy storage battery has a problem, the energy storage battery can be conveniently removed and handled separately, effectively improving the efficiency of electrochemical energy storage management. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a schematic diagram of the overall structure of the present application.
[0016] Figure 2 It is a schematic diagram of the connection structure of the placement plate and the U-shaped baffle of the present application.
[0017] Figure 3 It is a schematic diagram of the overall structure of the present application Figure 2 It is a schematic diagram of the enlarged structure of A in the present application.
[0018] Figure 4 It is a schematic diagram of the overall structure of the rotating connection assembly of the present application.
[0019] Figure 5 It is a schematic diagram of the internal structure of the square mounting frame of the present application.
[0020] Figure 6 The overall structure diagram of the top plate of the application.
[0021] Figure 7 The connection structure diagram of the vertical seat and the clamping lifting assembly of the application.
[0022] Figure 8 The connection structure diagram of the position adjusting assembly and the L-shaped connecting rod of the application.
[0023] In the figure: 1, base; 2, top plate; 3, support column; 4, placing plate; 5, sliding clamping strip; 6, limiting baffle; 7, U-shaped baffle; 8, elastic limiting assembly; 801, connecting plate; 802, sliding pin; 803, round plate; 804, connecting spring; 805, handle; 9, energy storage battery; 10, rotating connecting assembly; 1001, mounting seat; 1002, micro drive motor; 1003, drive connecting rod; 1004, insulating plate; 11, electrode connecting piece; 12, square mounting frame; 13, temperature sensor; 14, refrigerator; 15, serpentine connecting rod; 16, heat dissipation fan; 17, charging interface; 18, discharging interface; 19, vertical seat; 20, clamping lifting assembly; 2001, vertical sliding rod; 2002, lifting block; 2003, lifting spring; 2004, threaded rotating rod; 2005, rotating handle; 2006, semicircular clamping soft sleeve; 2007, motor seat; 2008, U-shaped limiting rod; 21, position adjusting assembly; 2101, servo motor; 2102, threaded rod; 2103, threaded sliding block; 22, L-shaped connecting rod; 23, horizontal mounting plate; 24, energy storage detector; 25, telescopic air cylinder; 26, connecting sleeve; 27, U-shaped detection rod; 28, detection piece. DETAILED DESCRIPTION
[0024] 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 a person of ordinary skill in the art without creative work fall within the protection scope of the application.
[0025] Please refer to Figures 1-8As shown, an electrochemical energy storage whole process safety management tool, including base 1 and top plate 2, top plate 2 is installed on base 1 through support column 3, base 1 is provided with installation clamping groove, installation clamping groove is provided with placing plate 4, placing plate 4 is slidably clamped in installation clamping groove, in use, the control placing plate 4 in installation clamping groove can make placing plate 4 move to a more convenient position, one end of the top of placing plate 4 is fixedly installed with limiting baffle 6, the other end of the top of placing plate 4 is provided with limiting clamping groove, U-shaped baffle 7 is slidably installed in limiting clamping groove, elastic limiting assembly 8 is installed on the side wall of U-shaped baffle 7, elastic limiting assembly 8 corresponds with the two pin holes provided on placing plate 4, energy storage battery 9 is arranged on placing plate 4, the fixing of energy storage battery 9 can be realized through elastic limiting assembly 8, and the energy storage battery 9 is convenient to take down, it is flexible and convenient to use, the management efficiency of the energy storage process is improved, the positive and negative poles of energy storage battery 9 are clamped in the straight slot hole provided in top plate 2, in use, the top plate 2 is taken down without affecting the taking down and fixing of energy storage battery 9, rotating connecting assembly 10 is installed on top plate 2, electrode connecting sheet 11 is installed on rotating connecting assembly 10, rotating connecting assembly 10 and electrode connecting sheet 11 are located on one side of the straight slot hole, electrode connecting sheet 11 can be contacted with the positive and negative poles of energy storage battery 9 through rotating connecting assembly 10, the parallel connection between energy storage batteries 9 is realized, and the total energy storage amount is improved.
[0026] As Figure 3 As shown, elastic limiting assembly 8 includes connecting plate 801, sliding pin 802 is slidably arranged on connecting plate 801, the diameter of sliding pin 802 is same with the two pin holes provided on placing plate 4, round plate 803 is installed on sliding pin 802, connecting spring 804 is connected between the top of connecting plate 801 and round plate 803, handle 805 is welded on the top of round plate 803, in actual use, sliding pin 802 is moved up and down on connecting plate 801 by pulling handle 805, when it is needed to separate sliding pin 802 from the pin hole provided in base 1, handle 805 is pulled upwards to drive sliding pin 802 to move upwards, at this time, connecting spring 804 is stretched under the action of round plate 803, and U-shaped baffle 7 is clamped on one side of energy storage battery 9, at this time, handle 805 is released, round plate 803 and sliding pin 802 are moved downwards under the action of restoring force of connecting spring 804, one end of sliding pin 802 is clamped in another pin hole, and energy storage battery 9 is fixed.
[0027] As Figure 4As shown, the rotating connection assembly 10 includes a mounting seat 1001 and a micro drive motor 1002, the micro drive motor 1002 is fixed on one end of the side wall of the mounting seat 1001, the drive link 1003 is rotatably installed on the inner wall of the mounting seat 1001, one end of the drive link 1003 is fixedly connected with the output shaft of the micro drive motor 1002, the insulating plate 1004 is rotatably installed on the drive link 1003, the electrode connecting piece 11 is fixed on the insulating plate 1004, the rotating connection assembly 10 is used in actual use, the micro drive motor 1002 is controlled to be turned on, the drive link 1003 is rotated, the insulating plate 1004 is rotated when the drive link 1003 is rotated, the energy storage battery 9 is connected in parallel, the insulating plate 1004 is rotated to the direction of the energy storage battery 9, the insulating plate 1004 drives the electrode connecting piece 11 to connect the same electrode of the energy storage battery 9, when the energy storage battery 9 is individually disassembled and maintained, the insulating plate 1004 drives the electrode connecting piece 11 to rotate to the other side, the electrode connecting piece 11 is separated from the electrode end of the energy storage battery 9, the individual energy storage battery 9 is disassembled and maintained without affecting, and the convenience of the energy storage process is effectively improved.
[0028] As shown in Figure 5 The base 1 is fixed with a square mounting frame 12, and the square mounting frame 12 is located between the two energy storage batteries 9, the temperature sensor 13 is fixed on the inner side wall of the square mounting frame 12, the refrigerating device 14 and the serpentine connecting rod 15 are installed on the inner side bottom of the square mounting frame 12, the heat dissipation fan 16 is rotatably installed on one end of the serpentine connecting rod 15, the heat dissipation fan 16 is connected with the built-in motor output shaft at one end of the serpentine connecting rod 15, in actual use, the built-in motor at one end of the serpentine connecting rod 15 is controlled to be turned on, the heat dissipation fan 16 is rotated, the cold air in the refrigerating device 14 is blown to the energy storage battery 9, the cooling in the charging and discharging process of the energy storage battery 9 is realized, when the temperature continuously rises in the charging and discharging process of the energy storage battery 9, it is judged that the energy storage battery 9 has a problem, the temperature in this process is sensed by the temperature sensor 13, when the energy storage battery 9 has a problem, the charging and discharging process can be disconnected in time, the safety of the energy storage process is improved, and safety management is realized.
[0029] As shown in Figure 6As shown, the top plate 2 top two ends are respectively mounted with charging interface 17 and discharging interface 18, the top plate 2 is also provided with vertical seat 19, the vertical seat 19 is located on both sides of the charging interface 17 and the discharging interface 18, the vertical seat 19 is provided with a vertical installation slot, the vertical installation slot is provided with clamping and lifting assembly 20, in use, the charging interface 17 is used for external charging line, the energy storage battery 9 is charged, the discharging interface 18 is used for external discharging line, the clamping and lifting assembly 20 is clamped and fixed to the charging and discharging line, when the temperature sensor 13 senses that the temperature continues to rise, the control clamping and lifting assembly 20 can drive the external charging and discharging line interface to move upward, so that the external charging line is separated from the charging interface 17 or the discharging interface 18, the charging process is stopped, the energy storage battery 9 is protected, and the safety management effect is realized.
[0030] As shown in the figure, Figure 7 The clamping and lifting assembly 20 includes a vertical sliding rod 2001, the vertical sliding rod 2001 is fixed in the vertical installation slot, the vertical sliding rod 2001 is slidably provided with a lifting block 2002, the lifting block 2002 is connected with the inner wall of the bottom end of the vertical sliding rod 2001 through a lifting spring 2003, a threaded rotating rod 2004 is provided on the lifting block 2002, one end of the threaded rotating rod 2004 is fixed with a rotating handle 2005, the other end of the threaded rotating rod 2004 is fixedly provided with a semicircular clamping soft sleeve 2006, a motor seat 2007 is mounted on the side wall of the lifting block 2002, a U-shaped limiting rod 2008 is rotatably mounted on the motor seat 2007, one end of the U-shaped limiting rod 2008 is fixedly connected with the output shaft of the built-in motor of the motor seat 2007, the other end of the U-shaped limiting rod 2008 corresponds to the limiting hole provided on the side wall of the vertical seat 19, in actual use, one end of the U-shaped limiting rod 2008 is fixedly clamped in the limiting hole, at this time the lifting spring 2003 is in a compressed state, rotating the rotating handle 2005 makes the threaded rotating rod 2004 rotate, so that the threaded rotating rod 2004 drives the semicircular clamping soft sleeve 2006 to move inward, so that the semicircular clamping soft sleeve 2006 fixes the external connecting line, when the temperature of the energy storage battery 9 is too high, the built-in motor of the motor seat 2007 drives the U-shaped limiting rod 2008 to rotate, so that one end of the U-shaped limiting rod 2008 is separated from the limiting hole, under the action of the restoring force of the lifting spring 2003, the lifting block 2002 moves upward along the vertical sliding rod 2001, drives the semicircular clamping soft sleeve 2006 to move upward, under the action of the semicircular clamping soft sleeve 2006, the external connecting line is lifted, so that the external connecting line is separated from the charging interface 17 or the discharging interface 18.
[0031] As shown in the figure, Figure 8As shown, the top plate 2 is provided with a limiting sliding groove, a position adjusting assembly 21 is installed in the limiting sliding groove, an L-shaped connecting rod 22 is installed on the position adjusting assembly 21, a horizontal mounting plate 23 is fixed at one end of the L-shaped connecting rod 22, an energy storage detector 24 and a telescopic cylinder 25 are respectively fixed at the top and bottom of the horizontal mounting plate 23, a connecting sleeve 26 is installed at the telescopic end of the telescopic cylinder 25, a U-shaped detection rod 27 is fixedly penetrated through the connecting sleeve 26, detection sheets 28 are installed at both ends of the U-shaped detection rod 27, the detection sheets 28 are electrically connected with the energy storage detector 24, in actual use, the position adjusting assembly 21 is controlled to move the L-shaped connecting rod 22 and the horizontal mounting plate 23, so as to drive the telescopic cylinder 25 and the U-shaped detection rod 27 to move, so that the detection sheets 28 are located above the positive and negative electrodes of the single energy storage battery 9, the telescopic cylinder 25 is controlled to be telescopic, so that the detection sheets 28 are in contact with the positive and negative electrodes of the single energy storage battery 9, under the action of the energy storage detector 24, the detection of the single energy storage battery 9 is realized, without disassembly, the efficiency of the energy storage management process is improved.
[0032] As shown in the figure, Figure 8 The position adjusting assembly 21 comprises a servo motor 2101 and a threaded rod 2102, the servo motor 2101 is fixed on the inner wall of one end of the limiting sliding groove, the threaded rod 2102 is rotatably installed on the inner wall of the other end of the limiting sliding groove, one end of the threaded rod 2102 is fixedly connected with the output shaft of the servo motor 2101, a threaded sliding block 2103 is threadedly installed on the threaded rod 2102, the threaded sliding block 2103 is slidingly clamped in the limiting sliding groove, and the L-shaped connecting rod 22 is fixed on the threaded sliding block 2103, in actual use, the position adjusting assembly 21 controls the servo motor 2101 to be turned on, so that the threaded rod 2102 rotates to drive the threaded sliding block 2103 to slide in the limiting sliding groove, so as to drive the L-shaped connecting rod 22 to move.
[0033] In use, first pull the placement plate 4, pull the placement plate 4 out of the base 1, conveniently make the energy storage battery 9 placed on the placement plate 4, control the elastic limiting assembly 8 drives the U-shaped baffle 7 to limit and fix one side of the energy storage battery 9, wherein the elastic limiting assembly 8 includes the connecting plate 801, the sliding pin 802 is slidably arranged on the connecting plate 801, the sliding pin 802 is the same diameter as the two pin holes opened on the placement plate 4, the circular plate 803 is installed on the sliding pin 802, the circular plate 803 is connected with the top of the connecting plate 801 through the connecting spring 804, the handle 805 is welded on the top of the circular plate 803, and the other side of the energy storage battery 9 is fixedly attached to the limiting baffle 6, which is convenient for disassembling and individually managing and maintaining the energy storage battery 9, and the rotating connecting assembly 10 is controlled to make the electrode connecting piece 11 contact with the positive and negative poles of the energy storage battery 9, wherein the rotating connecting assembly 10 includes the mounting seat 1001 and the micro drive motor 1002, the micro drive motor 1002 is fixed on one end of the side wall of the mounting seat 1001, the drive connecting rod 1003 is rotatably installed on the inner wall of the mounting seat 1001, one end of the drive connecting rod 1003 is fixedly connected with the output shaft of the micro drive motor 1002, the insulating plate 1004 is rotatably installed on the drive connecting rod 1003, and the electrode connecting piece 11 is fixed on the insulating plate 1004. The energy storage battery 9 can be connected in parallel to improve the total energy storage capacity. In the energy storage process, the built-in motor at one end of the snake-shaped connecting rod 15 is started to make the cooling fan 16 rotate, blow the cold air in the refrigerator 14 to the energy storage battery 9, and cool the energy storage battery 9. When the temperature of the energy storage battery 9 continuously rises during the charging and discharging process, it is judged that the energy storage battery 9 has a problem. The temperature in this process is sensed by the temperature sensor 13. When the temperature sensor 13 senses that the temperature continuously rises, the clamping lifting assembly 20 is controlled to drive the external charging and discharging wire interface to move upward, so that the external charging wire is separated from the charging interface 17 or the discharging interface 18, and the energy storage process is stopped. The clamping lifting assembly 20 includes the vertical sliding rod 2001, the vertical sliding rod 2001 is fixed in the vertical mounting slot, the lifting block 2002 is slidably arranged on the vertical sliding rod 2001, the lifting block 2002 is connected with the inner wall at the bottom end of the vertical sliding rod 2001 through the lifting spring 2003, the threaded rotating rod 2004 is arranged on the lifting block 2002, one end of the threaded rotating rod 2004 is fixedly connected with the rotating handle 2005, the other end of the threaded rotating rod 2004 is fixedly connected with the semicircular clamping sleeve 2006, the motor seat 2007 is installed on the side wall of the lifting block 2002, the U-shaped limiting rod 2008 is rotatably installed on the motor seat 2007, one end of the U-shaped limiting rod 2008 is fixedly connected with the output shaft of the built-in motor of the motor seat 2007, the other end of the U-shaped limiting rod 2008 corresponds to the limiting hole opened on the side wall of the vertical seat 19, and the position adjusting assembly 21 is controlled to drive the energy storage detector 24 and the detection piece 28 to test the single energy storage battery 9, check the energy storage battery 9 with problems, and replace it. The safety management in the electrochemical process is realized.The efficiency of electrochemical energy storage management is effectively improved.
[0034] It is apparent to a person skilled in the art that the present application is not limited to the details of the foregoing exemplary embodiments, but can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all respects as illustrative and not restrictive, the scope of the present application being defined by the appended claims rather than the foregoing description, and it is intended that all changes falling within the meaning and range of equivalency of the claims are embraced therein. Any reference signs in the claims should not be construed as limiting the claims to the figures in which the reference signs are used.
[0035] Furthermore, it should be understood that although the present specification describes exemplary embodiments, the present specification does not limit the application to the details of the foregoing description. Rather, the present specification should be understood to cover all modifications, alternatives, and further embodiments falling within the scope of the application as defined by the appended claims. Thus, the scope of the application should be determined by the appended claims and their legal equivalents rather than by the description of the application. It will be understood that, although the claims refer to particular combinations of elements, the application lies in the inventive combination of steps, and no single claim is necessary to embrace all of the changes falling within the scope of the application.
Claims
1. A safety management tool for the entire electrochemical energy storage process, characterized in that: Includes a base (1) and a top plate (2). The top plate (2) is mounted on the base (1) via a support column (3). The base (1) has an installation slot, on which a placement plate (4) is mounted. The placement plate (4) is slidably secured in the installation slot via a sliding strip (5). A limit baffle (6) is fixedly mounted on one end of the top of the placement plate (4), and a limit slot is provided on the other end of the top of the placement plate (4). A U-shaped baffle (7) is slidably mounted in the limit slot. The side wall of the U-shaped baffle (7) An elastic limiting component (8) is installed on the top plate (2), the elastic limiting component (8) corresponds to two pin holes opened on the placement plate (4), the placement plate (4) is provided with an energy storage battery (9), the positive and negative terminals of the energy storage battery (9) are respectively locked in the straight slot holes opened on the top plate (2), the top plate (2) is provided with a rotating connection component (10), the rotating connection component (10) is provided with an electrode connecting piece (11), the rotating connection component (10) and the electrode connecting piece (11) are both located on one side of the straight slot hole; A square mounting frame (12) is fixed on the base (1), and the square mounting frame (12) is located between the two energy storage batteries (9). A temperature sensor (13) is fixed on the inner wall of the square mounting frame (12). A cooler (14) and a serpentine connecting rod (15) are installed on the bottom inner side of the square mounting frame (12). A cooling fan (16) is rotatably installed on one end of the serpentine connecting rod (15). The cooling fan (16) is connected to the built-in motor output shaft at one end of the serpentine connecting rod (15). The top plate (2) is equipped with a charging interface (17) and a discharging interface (18) at its two ends respectively. A vertical seat (19) is also installed on the top plate (2). The vertical seat (19) is located on both sides of the charging interface (17) and the discharging interface (18). A vertical mounting groove is provided on the vertical seat (19), and a clamping and lifting component (20) is installed in the vertical mounting groove. The clamping and lifting assembly (20) includes a vertical slide rod (2001), which is fixed in the vertical mounting groove. A lifting block (2002) slides through the vertical slide rod (2001). The lifting block (2002) is connected to the inner wall of the bottom end of the vertical slide rod (2001) by a lifting spring (2003). A threaded screw rod (2004) passes through the lifting block (2002), and a screw handle (20) is fixed to one end of the threaded screw rod (2004). 05), a semi-circular clamping sleeve (2006) is fixedly installed at the other end of the threaded rod (2004). A motor seat (2007) is installed on the side wall of the lifting block (2002). A U-shaped limiting rod (2008) is rotatably installed on the motor seat (2007). One end of the U-shaped limiting rod (2008) is fixedly connected to the built-in motor output shaft of the motor seat (2007). The other end of the U-shaped limiting rod (2008) corresponds to the limiting hole opened on the side wall of the vertical seat (19).
2. The electrochemical energy storage whole-process safety management tool according to claim 1, characterized in that: The elastic limiting component (8) includes a connecting plate (801), on which a sliding pin (802) is slidably passed. The sliding pin (802) has the same diameter as the two pin holes opened on the placement plate (4). A circular plate (803) is installed on the sliding pin (802). The circular plate (803) is connected to the top of the connecting plate (801) through a connecting spring (804). A handle (805) is welded to the top of the circular plate (803).
3. The electrochemical energy storage whole-process safety management tool according to claim 1, characterized in that: The rotating connection assembly (10) includes a mounting base (1001) and a micro drive motor (1002). The micro drive motor (1002) is fixed on one side wall of the mounting base (1001). A drive link (1003) is rotatably mounted on the inner wall of the mounting base (1001). One end of the drive link (1003) is fixedly connected to the output shaft of the micro drive motor (1002). An insulating plate (1004) is rotatably mounted on the drive link (1003). The electrode connecting piece (11) is fixed on the insulating plate (1004).
4. The electrochemical energy storage whole-process safety management tool according to claim 1, characterized in that: A limiting groove is provided on the top plate (2), and a position adjustment component (21) is installed in the limiting groove. An L-shaped connecting rod (22) is installed on the position adjustment component (21). A horizontal mounting plate (23) is fixed to one end of the L-shaped connecting rod (22). An energy storage detector (24) and a telescopic cylinder (25) are fixed to the top and bottom of the horizontal mounting plate (23), respectively. A connecting sleeve (26) is installed on the telescopic end of the telescopic cylinder (25). A U-shaped detection rod (27) is fixedly inserted on the connecting sleeve (26). Detection plates (28) are installed at both ends of the U-shaped detection rod (27). The detection plates (28) are electrically connected to the energy storage detector (24).
5. The electrochemical energy storage whole-process safety management tool according to claim 4, characterized in that: The position adjustment component (21) includes a servo motor (2101) and a threaded rod (2102). The servo motor (2101) is fixed on the inner wall of one end of the limiting slide groove, and the threaded rod (2102) is rotatably mounted on the inner wall of the other end of the limiting slide groove. One end of the threaded rod (2102) is fixedly connected to the output shaft of the servo motor (2101). A threaded slider (2103) is threadedly mounted on the threaded rod (2102). The threaded slider (2103) is slidably locked in the limiting slide groove, and the L-shaped connecting rod (22) is fixed on the threaded slider (2103).
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