All-weather high-performance mobile lead-acid gel battery
By designing a removable connector structure and sealing components, the problem of difficult disassembly and insufficient sealing of lead-acid colloidal battery connectors is solved, and the rapid disassembly and high-sealing mobile lead-acid colloidal battery is achieved. It is suitable for all-climate use and reduces handling physical strength.
Patent Information
- Application Number
- CN202510129991.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-05
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2045-02-05
AI Technical Summary
The existing lead-acid colloidal battery connector cannot be disassembled quickly, is inconvenient for maintenance, and is insufficiently sealed to meet the needs of all climate use.
A fully climate high-performance mobile lead-acid colloidal battery is designed, adopting a removable connector structure, which drives the collection wheel to rotate through the No. 1 motor to achieve rapid disassembly of the connector; at the same time, a sealing component, including an air pump and an airbag, is used to improve sealing through the cooperation of the sealing ring and the spring.
It realizes rapid disassembly of lead-acid colloidal battery connector, which is easy to repair, improves the sealing of the battery, adapts to all climate use, and reduces the physical strength of staff to carry.
Smart Images

Figure CN119944104A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of lead-acid colloid batteries, in particular to an all-weather high-performance mobile lead-acid colloid battery. Background Art
[0002] Lead-acid colloidal batteries have been widely used in many fields due to their unique advantages. In renewable energy systems such as solar energy and wind energy, colloidal batteries are used as energy storage devices. Lead-acid colloidal batteries are a new type of battery developed on the basis of traditional lead-acid batteries by introducing colloidal technology. Colloidal batteries convert the electrolyte into a colloidal state and fix it inside the battery, thus avoiding the easy leakage of liquid electrolyte in traditional batteries. However, the connectors of existing lead-acid colloidal batteries cannot be quickly disassembled, making them inconvenient for maintenance, and the sealing cannot be improved, which cannot meet the requirements of all-weather use.
[0003] The defects of existing lead-acid colloid batteries are: 1. Patent document CN108598609B discloses a colloidal power lead-acid battery internal formation process, "adding colloidal electrolyte to the battery, standing for 0.5 to 1 hour, the formation procedure includes ten charging stages, nine alternating discharge stages, a standing stage and an acid extraction stage. The present invention effectively solves the problem that power colloidal batteries are difficult to fully dissolve, can ensure that the positive plate of the colloidal battery is uniformly formed, the active material is fully converted, and the internal formation quality of the colloidal battery is improved. At the same time, the total formation time of the process before the 9th discharge capacity detection and group discharge is 27 to 51 hours, and the total net charge is 3.4 to 8.75 times the rated capacity, which reduces the battery charging capacity and formation time, increases the effective charge of the battery, increases the production capacity of power colloidal batteries, reduces the battery production cost, improves the production efficiency, and improves the competitiveness of the battery in the market", but the connector of the existing lead-acid colloidal battery cannot be quickly disassembled and is inconvenient for maintenance; 2. Patent document CN102780044B discloses a method for preparing a lead-acid battery colloidal electrolyte, "which includes the following raw materials: fumed silica, sulfuric acid, pure phosphoric acid, anhydrous sodium sulfate, stannous sulfate, 1 part lithium iodide, 1 part lithium carbonate, isopropyl alcohol, acrylamide, fluorine-based-silicon-free defoaming agent, anti-aging agent, and deionized water. The colloidal electrolyte prepared by this method can reduce the internal resistance of the lead-acid battery, increase the capacity of the lead-acid battery, and extend the service life of the battery", but the existing lead-acid colloidal batteries cannot improve the sealing and cannot meet the use of all climates; 3. Patent document CN102163751B discloses a method for preparing a colloidal electrolyte for a lead-acid battery. "First, add sodium sulfate to pure water and mix thoroughly. If necessary, adjust by adding phosphoric acid solution. After the pH value reaches the requirement, slowly add fumed silica and stir at different speeds in different stages to fully stir and mix the fumed silica evenly. After the fumed silica is fully mixed, add phosphoric acid as an additive and stir thoroughly to obtain an emulsified colloidal electrolyte. The electrolyte has a small internal resistance and good gel thixotropy. The prepared colloidal battery greatly improves the charge acceptance, large current discharge capacity and cycle life." However, the connecting wires of existing lead-acid colloidal batteries are inconvenient to fix and increase the use efficiency. 4. Patent document CN103000961B discloses a formation method for colloidal lead-acid batteries, "Steps: A. External formation of the plate: placing the plate in an electrolyte with a sulfuric acid density of about d15℃=1.10g / cm3 to 1.15g / cm3 for formation, charging the plate with electricity to meet 8-12 times the rated capacity of the plate during the formation process, and assembling the semi-finished product after drying; B. Preparation of colloidal electrolyte: mixing a sulfuric acid solution with a specific gravity of d15℃=1.30g / cm3 to a pre-set colloidal liquid mother liquor in a volume ratio of 1:10:1. 1.5-2.5:1 ratio, mixed, stirred and made; C. Formation: Add the prepared colloidal electrolyte to the semi-finished battery, adopt a formation method of one discharge and one charge, and charge the battery in the formation process to meet 2-3 times the rated capacity of the battery, so that the colloidal electrolyte is completely converted into gel. The beneficial effects of the present invention are: simplifying the production process, improving battery consistency, reducing energy waste and environmental pollution caused by acid backflow, stable quality and performance, and good battery performance consistency. However, the existing lead-acid colloidal batteries are inconvenient to carry and increase the physical strength of the staff who use them. Summary of the invention
[0004] The purpose of the present invention is to provide an all-weather high-performance mobile lead-acid colloid battery to solve the technical problem that the connector of the existing lead-acid colloid battery mentioned in the above background technology cannot be quickly disassembled and is inconvenient to repair.
[0005] To achieve the above object, the present invention provides the following technical solution: an all-weather high-performance mobile lead-acid colloid battery, comprising a shell, a top cover, a storage battery, a connector, a connecting column and a fixing assembly, wherein the storage battery is installed on the inner wall of the shell, the connecting column is installed through the outer wall of the storage battery, the top of the shell is installed with a connector, the top of the connector is covered with a top cover, the inner wall of the top cover is installed with a fixing assembly, and the inner wall of the top cover is installed with a sealing assembly; The fixing assembly includes a rod No. 1, a cylinder No. 1, a limit rod, a spring No. 1, a frame No. 1, a clamp No. 1, a slot No. 1, and a motor No. 1. The rod No. 1 is located on the inner wall of the top cover, the cylinder No. 1 is located on the outer wall of the rod No. 1, the limit rod is located on the inner wall of the rod No. 1, the spring No. 1 is located on the inner wall of the top cover, the frame No. 1 is located on the outer wall of the spring No. 1, the clamp No. 1 is located on the outer wall of the frame No. 1, the slot No. 1 is opened on the outer wall of the connector, the motor No. 1 is located on the outer wall of the rod No. 1, the output end of the motor No. 1 is equipped with a collecting wheel No. 1, the outer wall of the collecting wheel No. 1 is equipped with a pull rope No. 1, and one end of the pull rope No. 1 is connected to the outer wall of the frame No. 1.
[0006] Preferably, the No. 1 frame is located on one side of the limiting rod, the No. 1 cylinder is moved by the support of the No. 1 rod, and the No. 1 clamp can be clamped into the No. 1 slot.
[0007] Preferably, the sealing assembly includes a support plate, a No. 1 port, a sealing ring, an air pump, an airbag, a No. 2 spring, a No. 2 groove, and a No. 2 rod, the support plate is located on the inner wall of the top cover, the No. 1 port is opened at the bottom of the support plate, the sealing ring passes through the inner wall of the No. 1 port, the air pump is located at the top of the support plate, the airbag is located at the top of the sealing ring, and the outer wall of the airbag is connected to the inner wall of the support plate, the output end of the air pump extends to the inner wall of the airbag, the No. 2 groove is opened on the outer wall of the connecting head, the No. 2 spring is located on the outer wall of the sealing ring, and one end of the No. 2 spring is connected to the inner wall of the support plate, the No. 2 rod is located on the inner wall of the support plate, the outer wall of the No. 2 rod is installed with a No. 2 tube, and the outer wall of the No. 2 tube is connected to the outer wall of the sealing ring.
[0008] Preferably, the sealing ring can be inserted into the inner wall of the No. 2 groove, and the No. 2 tube moves with the support of the No. 2 rod.
[0009] Preferably, a wire pressing assembly is installed through the outer wall of the connecting column, a bottom plate is installed at the bottom of the shell, and a portable assembly is installed through the inner wall of the bottom plate.
[0010] Preferably, the wire pressing assembly includes a No. 3 pressure head, a connecting port, a fixed pressure block, a pressing plate, a No. 4 cylinder, a No. 1 pull rod, a No. 4 port, a No. 4 rod, and a rubber clamp. The No. 3 pressure head passes through one end of the connecting column, the connecting port is opened on the outer wall of the connecting column, the fixed pressure block is located at the bottom of the No. 3 pressure head, the pressing plate is located on the inner wall of the connecting column, the No. 4 cylinder passes through the outer wall of the connecting column, the No. 1 pull rod passes through the inner wall of the No. 4 cylinder, the No. 4 port is opened on the outer wall of the connecting column, the No. 4 rod passes through the inner wall of the No. 4 port, and one end of the No. 4 rod is connected to the outer wall of the No. 1 pull rod, the rubber clamp is located on the outer wall of the No. 1 pull rod, the outer wall of the No. 3 pressure head is opened with a No. 6 port, and one end of the rubber clamp is clamped into the inner wall of the No. 6 port, the inner wall of the connecting column is installed with a No. 6 spring, and one end of the No. 6 spring is connected to the outer wall of the rubber clamp.
[0011] Preferably, the clamping plate is located above the fixed clamping block, the No. 1 pull rod is moved by the support of the No. 4 tube, and the No. 4 rod is moved by the No. 4 opening.
[0012] Preferably, the portable component comprises a No. 6 rod, a No. 6 cylinder, a No. 7 mouth, a No. 3 motor, a No. 3 collecting wheel, a rope body, a universal wheel, a No. 7 spring, and a No. 8 mouth, the No. 6 rod is located on the inner wall of the bottom plate, the No. 6 cylinder is located on the outer wall of the No. 6 rod, the No. 7 mouth is opened at the bottom of the bottom plate, the No. 6 rod is opened on the outer wall of the No. 6 rod, the No. 3 motor is located on the outer wall of the No. 6 rod, the No. 3 collecting wheel is located at the output end of the No. 3 motor, the rope body is located on the outer wall of the No. 3 collecting wheel, the universal wheel is located on the outer wall of the No. 6 cylinder, and one end of the rope body The end is connected to the outer wall of the universal wheel, the No. 7 spring is located on the outer wall of the universal wheel, and one end of the No. 7 spring is connected to the inner wall of the bottom plate, the No. 8 mouth is opened on the outer wall of the No. 6 rod, the No. 8 rod is installed on the outer wall of the No. 8 rod, the No. 9 tube is installed on the outer wall of the No. 9 tube, the inner wall of the No. 9 tube is installed with an electromagnetic block, the outer wall of the electromagnetic block is installed with a No. 9 spring, a fixed rod is installed through the outer wall of the No. 9 tube, the outer wall of the No. 9 spring is connected to the outer wall of the fixed rod, and the fixed rod extends to the inner wall of the No. 8 mouth, and the universal wheel is located above the No. 7 mouth.
[0013] Preferably, the No. 6 cylinder is moved by the support of the No. 6 rod, and the fixed rod is moved by the support of the No. 9 cylinder.
[0014] Preferably, the method for using the lead-acid colloidal battery comprises the following steps: Step S1, the No. 1 motor is started to drive the No. 1 collecting wheel to rotate, the No. 1 collecting wheel rotates to drive the No. 1 pull rope to move, the No. 1 pull rope moves to drive the No. 1 frame to move, the No. 1 frame moves to drive the No. 1 cylinder to move, the No. 1 cylinder moves to drive the No. 1 frame to drive the No. 1 clamp to move, the No. 1 clamp moves to move out of the No. 1 slot, at this time, the connector is pulled to move, so that the connector is removed, and the function of quick disassembly and convenient maintenance of the lead-acid colloid battery connector is realized; Step S2, the function of the No. 1 port is to provide moving support for the sealing ring, the air pump is started to inflate the airbag, the inflation of the airbag drives the sealing ring to move, the movement of the sealing ring drives the No. 2 spring to move, the movement of the No. 2 spring drives the No. 2 tube to move, the movement of the No. 2 tube makes the sealing ring firmly snap into the No. 2 slot, thus realizing the function of improving the sealing performance of the lead-acid colloidal battery to adapt to all-weather use; Step S3, the function of the fixed pressure block is to stably fix the connecting wire, pull the No. 1 pull rod to drive the No. 4 rod to move, the No. 4 rod moves to make the No. 1 pull rod drive the rubber clamp to move, the No. 6 spring moves, and the No. 6 spring moves to make the rubber clamp move out of the No. 6 port, then pull the No. 3 pressure head to open the connecting port, then send the connecting wire into the connecting port, then press the No. 3 pressure head to press the connecting wire to the surface of the pressing plate, release the No. 1 pull rod after the connecting wire is pressed, and clamp the rubber clamp into the No. 6 port through the No. 6 spring to fix the No. 3 pressure head to fix the connecting wire, thus realizing the function of conveniently fixing the connecting wire of the lead-acid colloid battery and improving the use efficiency; Step S4, the function of the No. 7 spring is to facilitate the resetting of the universal wheel. The electromagnetic block is started to generate magnetic force to drive the fixed rod to move, the movement of the fixed rod drives the No. 9 spring to move, and the movement of the No. 9 spring causes the fixed rod to move out of the No. 8 opening. At this time, the No. 3 motor rotates to drive the No. 3 collecting wheel to rotate, the No. 3 collecting wheel rotates to drive the rope body to move, the rope body moves to drive the universal wheel to move, the universal wheel moves to drive the No. 6 cylinder to move, the No. 6 cylinder moves to drive the universal wheel to drive the No. 7 spring to move, the No. 7 spring moves to move the universal wheel out of the bottom plate through the No. 7 opening, at this time, the electromagnetic block is closed and the No. 9 spring drives the fixed rod to be stuck in the No. 8 opening to fix the universal wheel, and the shell is placed on the ground so that the universal wheel contacts the ground, realizing the function of convenient carrying of lead-acid gel batteries and reducing the physical strength of the staff in carrying.
[0015] Compared with the prior art, the present invention has the following beneficial effects: 1. The present invention is provided with a No. 1 motor to start and drive the No. 1 collection wheel to rotate, the No. 1 collection wheel rotates and drives the No. 1 pull rope to move, the No. 1 pull rope moves and drives the No. 1 frame to move, the No. 1 frame moves and drives the No. 1 spring to move, the No. 1 spring moves and drives the No. 1 drum to move, the No. 1 drum moves and drives the No. 1 frame to move the No. 1 clamp, the No. 1 clamp moves and moves it out of the No. 1 slot, at this time, the connector is pulled to move and move it away from the connector, so as to realize the function of quick disassembly and convenient maintenance of the connector of the lead-acid colloid battery; 2. The invention is provided with a No. 1 port to provide a moving support for the sealing ring. When the air pump is started, the airbag is inflated and erected, and the inflation and erection of the airbag drive the sealing ring to move. The movement of the sealing ring drives the No. 2 spring to move. The movement of the No. 2 spring drives the sealing ring to drive the No. 2 tube to move. The movement of the No. 2 tube makes the sealing ring firmly snap into the No. 2 groove, thereby realizing the function of improving the sealing performance of the lead-acid colloid battery to adapt to the use in all climates; 3. The present invention is provided with a fixed pressure block to stably fix the connecting wire. Pulling the No. 1 pull rod drives the No. 4 rod to move. The No. 4 rod moves to drive the No. 1 pull rod to drive the rubber clamp to move. The No. 6 spring moves to move the rubber clamp out of the No. 6 port. At this time, the No. 3 pressure head is pulled to open the connecting port. At this time, the connecting wire is sent into the connecting port. At this time, the No. 3 pressure head is pressed to press the connecting wire to the surface of the pressing plate. After the connecting wire is pressed, the No. 1 pull rod is released. The rubber clamp is clamped into the No. 6 port by the No. 6 spring to fix the No. 3 pressure head so that the connecting wire is fixed. This realizes the function of conveniently fixing the connecting wire of the lead-acid colloid battery and improving the use efficiency. 4. The function of the present invention is to facilitate the resetting of the universal wheel by installing a No. 7 spring. The electromagnetic block is started to generate magnetic force to drive the fixed rod to move, the movement of the fixed rod drives the No. 9 spring to move, and the movement of the No. 9 spring causes the fixed rod to move out of the No. 8 opening. At this time, the No. 3 motor rotates to drive the No. 3 collecting wheel to rotate, the No. 3 collecting wheel rotates to drive the rope body to move, the movement of the rope body drives the universal wheel to move, the movement of the universal wheel drives the No. 6 cylinder to move, the movement of the No. 6 cylinder causes the universal wheel to drive the No. 7 spring to move, and the No. 7 spring moves to cause the universal wheel to move out of the bottom plate through the No. 7 opening. At this time, the electromagnetic block is closed and the No. 9 spring drives the fixed rod to be stuck in the No. 8 opening to fix the universal wheel, and the shell is placed on the ground so that the universal wheel contacts the ground, thereby realizing the function of convenient carrying of the lead-acid colloid battery and reducing the physical strength of the staff in carrying the battery. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a front view structural schematic diagram of the present invention; Figure 2 It is a front structural schematic diagram of the present invention; Figure 3 For the present invention Figure 2 A structural diagram of ; Figure 4 It is a schematic diagram of the sealing ring structure of the present invention; Figure 5 It is a schematic diagram of the structure of the No. 3 pressure head of the present invention; Figure 6 For the present invention Figure 5 Schematic diagram of the C structure; Figure 7 It is a schematic diagram of the structure of the first pull rod of the present invention; Figure 8 For the present invention Figure 5 Schematic diagram of the B structure; Fig. 9 It is a schematic diagram of the universal wheel structure of the present invention; Fig.10 For the present invention Fig. 9 Schematic diagram of the D structure.
[0017] In the figure: 1, shell; 2, top cover; 3, battery; 4, connector; 5, connecting column; 6, rod No. 1; 7, cylinder No. 1; 8, limit rod; 9, spring No. 1; 10, frame No. 1; 11, clamp No. 1; 12, slot No. 1; 13, motor No. 1; 14, collecting wheel No. 1; 15, pull rope No. 1; 16, support plate; 17, mouth No. 1; 18, sealing ring; 19, air pump; 20, air bag; 21, spring No. 2; 22, rod No. 2; 23, cylinder No. 2; 24, slot No. 2; 25, pressure head No. 3; 26, connector Interface; 27, fixed pressure block; 28, pressure plate; 29, No. 4 cylinder; 30, No. 1 pull rod; 31, No. 4 mouth; 32, No. 4 rod; 34, No. 6 mouth; 35, rubber clamp; 36, No. 6 spring; 37, bottom plate; 38, No. 7 mouth; 39, No. 6 rod; 40, No. 6 cylinder; 41, universal wheel; 42, No. 3 collecting wheel; 43, No. 3 motor; 44, rope body; 45, No. 7 spring; 46, No. 8 mouth; 47, No. 8 rod; 48, No. 9 cylinder; 49, electromagnetic block; 50, No. 9 spring; 51, fixing rod. DETAILED DESCRIPTION
[0018] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0019] In the description of the present invention, it should be noted that the terms "upper", "lower", "inner", "outer", "front end", "rear end", "two ends", "one end", "the other end" and the like indicate positions or positional relationships based on the positions or positional relationships shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first" and "second" are used for descriptive purposes only and cannot be understood as indicating or implying relative importance.
[0020] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "provided with", "connected", etc. should be understood in a broad sense. For example, "connected" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, it can be understood according to the specific situation.
[0021] Example 1: Please refer to Figure 1 , Figure 2and Figure 3 The present invention provides an embodiment: an all-weather high-performance mobile lead-acid colloid battery, comprising a shell 1, a top cover 2, a battery 3, a connector 4, a connecting column 5 and a fixing assembly, wherein the inner wall of the shell 1 is equipped with the battery 3, the outer wall of the battery 3 is penetrated with the connecting column 5, the top of the shell 1 is equipped with the connector 4, the top of the connector 4 is covered with the top cover 2, the inner wall of the top cover 2 is equipped with a fixing assembly, the inner wall of the top cover 2 is equipped with a sealing assembly, the outer wall of the connecting column 5 is penetrated with the wire pressing assembly, the bottom of the shell 1 is provided with a sealing assembly, and the bottom of the shell 1 is provided with a sealing assembly. A bottom plate 37 is installed on the top cover 2, and a portable component is installed through the inner wall of the bottom plate 37. The battery 3 is a lead-acid colloid battery. The fixed component includes a No. 1 rod 6, a No. 1 cylinder 7, a limit rod 8, a No. 1 spring 9, a No. 1 frame 10, a No. 1 clamp 11, a No. 1 slot 12, and a No. 1 motor 13. The No. 1 rod 6 is located on the inner wall of the top cover 2, the No. 1 cylinder 7 is located on the outer wall of the No. 1 rod 6, the limit rod 8 is located on the inner wall of the No. 1 rod 6, the No. 1 spring 9 is located on the inner wall of the top cover 2, the No. 1 frame 10 is located on the outer wall of the No. 1 spring 9, and the No. 1 clamp 11 is located on the inner wall of the No. 1 rod 6. The outer wall of the No. 1 frame 10 is provided with a No. 1 slot 12, and the No. 1 motor 13 is provided with a No. 1 collecting wheel 14 at the output end of the No. 1 motor 13. The outer wall of the No. 1 collecting wheel 14 is provided with a No. 1 pull rope 15, and one end of the No. 1 pull rope 15 is connected to the outer wall of the No. 1 frame 10. The No. 1 frame 10 is provided at one side of the limit rod 8. The No. 1 cylinder 7 is moved by the support of the No. 1 rod 6. The No. 1 clamping head 11 can be inserted into the No. 1 slot 12, and the No. 1 motor 13 is started to drive the No. 1 collecting wheel 14 to move. The collecting wheel 14 rotates, the No. 1 collecting wheel 14 rotates to drive the No. 1 pull rope 15 to move, the No. 1 pull rope 15 moves to drive the No. 1 frame 10 to move, the No. 1 frame 10 moves to drive the No. 1 spring 9 to move, the No. 1 spring 9 moves to make the No. 1 frame 10 drive the No. 1 cylinder 7 to move, the No. 1 cylinder 7 moves to make the No. 1 frame 10 drive the No. 1 clamp 11 to move, the No. 1 clamp 11 moves to move out of the No. 1 slot 12, at this time, the connecting head 4 is pulled to move, so that the connecting head 4 is removed, thereby realizing the function of quick disassembly and convenient maintenance of the connecting head 4 of the lead-acid colloid battery.
[0022] Example 2: Please refer to Figure 2 and Figure 4, an embodiment provided by the present invention: a sealing assembly includes a support plate 16, a No. 1 port 17, a sealing ring 18, an air pump 19, an airbag 20, a No. 2 spring 21, a No. 2 groove 24, and a No. 2 rod 22, the support plate 16 is located on the inner wall of the top cover 2, the No. 1 port 17 is opened at the bottom of the support plate 16, the sealing ring 18 penetrates the inner wall of the No. 1 port 17, the air pump 19 is located at the top of the support plate 16, the airbag 20 is located at the top of the sealing ring 18, and the outer wall of the airbag 20 is connected to the inner wall of the support plate 16, the output end of the air pump 19 extends to the inner wall of the airbag 20, the No. 2 groove 24 is opened on the outer wall of the connector 4, the No. 2 spring 21 is located on the outer wall of the sealing ring 18, and one end of the No. 2 spring 21 is connected to the inner wall of the support plate 16, The No. 2 rod 22 is located on the inner wall of the support plate 16, and a No. 2 cylinder 23 is installed on the outer wall of the No. 2 rod 22, and the outer wall of the No. 2 cylinder 23 is connected to the outer wall of the sealing ring 18, and the sealing ring 18 can be inserted into the inner wall of the No. 2 groove 24. The No. 2 cylinder 23 is moved by the support of the No. 2 rod 22, and the function of the No. 1 mouth 17 is to provide moving support for the sealing ring 18. The air pump 19 is started to inflate the airbag 20, and the inflation of the airbag 20 drives the sealing ring 18 to move. The movement of the sealing ring 18 drives the No. 2 spring 21 to move. The movement of the No. 2 spring 21 causes the sealing ring 18 to drive the No. 2 cylinder 23 to move. The movement of the No. 2 cylinder 23 causes the sealing ring 18 to be firmly inserted into the No. 2 groove 24, thereby realizing the function of improving the sealing of the lead-acid colloidal battery to adapt to all-weather use.
[0023] Example 3: Please refer to Figure 1 , Figure 5 , Figure 6 , Figure 7 and Figure 8The present invention provides an embodiment: the wire pressing assembly includes a No. 3 pressure head 25, a connection port 26, a fixed pressure block 27, a pressing plate 28, a No. 4 tube 29, a No. 1 pull rod 30, a No. 4 port 31, a No. 4 rod 32, and a rubber clamp 35. The No. 3 pressure head 25 passes through one end of the connecting column 5, the connecting port 26 is opened on the outer wall of the connecting column 5, the fixed pressure block 27 is located at the bottom of the No. 3 pressure head 25, the pressing plate 28 is located on the inner wall of the connecting column 5, and the No. 4 tube 29 passes through the connecting column 5. The outer wall of the No. 1 pull rod 30 passes through the inner wall of the No. 4 tube 29, the No. 4 port 31 is opened on the outer wall of the connecting column 5, the No. 4 rod 32 passes through the inner wall of the No. 4 port 31, and one end of the No. 4 rod 32 is connected to the outer wall of the No. 1 pull rod 30, the rubber clamp 35 is located on the outer wall of the No. 1 pull rod 30, the outer wall of the No. 3 pressure head 25 is provided with a No. 6 port 34, and one end of the rubber clamp 35 is clamped into the inner wall of the No. 6 port 34, the inner wall of the connecting column 5 is installed with a No. 6 spring 36, and the No. 6 spring 36 One end is connected to the outer wall of the rubber clamp 35, the pressing plate 28 is located above the fixed pressure block 27, the No. 1 pull rod 30 is moved by the support of the No. 4 tube 29, and the No. 4 rod 32 moves through the No. 4 port 31. The function of the fixed pressure block 27 is to stably fix the connecting line, pull the No. 1 pull rod 30 to drive the No. 4 rod 32 to move, the No. 4 rod 32 moves to make the No. 1 pull rod 30 drive the rubber clamp 35 to move, the rubber clamp 35 moves to drive the No. 6 spring 36 to move, and the No. 6 spring 36 moves. 6 is moved to move the rubber clamp 35 out of the No. 6 port 34. At this time, the No. 3 pressure head 25 is pulled to open the connecting port 26. At this time, the connecting line is sent into the connecting port 26. At this time, the No. 3 pressure head 25 is pressed to press the connecting line to the surface of the pressing plate 28. After the connecting line is pressed and fixed, the No. 1 pull rod 30 is released, and the rubber clamp 35 is clamped into the No. 6 port 34 through the No. 6 spring 36 to fix the No. 3 pressure head 25 to fix the connecting line, thereby realizing the function of conveniently fixing the connecting line of the lead-acid colloid battery and improving the use efficiency.
[0024] Example 4: Please refer to Figure 2 , Fig. 9 and Fig.10The present invention provides an embodiment: the portable component includes a No. 6 rod 39, a No. 6 cylinder 40, a No. 7 mouth 38, a No. 3 motor 43, a No. 3 collecting wheel 42, a rope body 44, a universal wheel 41, a No. 7 spring 45, and a No. 8 mouth 46. The No. 6 rod 39 is located on the inner wall of the bottom plate 37, the No. 6 cylinder 40 is located on the outer wall of the No. 6 rod 39, the No. 7 mouth 38 is opened at the bottom of the bottom plate 37, the No. 6 rod 39 is opened on the outer wall of the No. 6 rod 39, the No. 3 motor 43 is located on the outer wall of the No. 6 rod 39, the No. 3 collecting wheel 42 is located at the output end of the No. 3 motor 43, and the rope body 44 is located at the No. 3 collecting wheel. The outer wall of the wheel 42, the universal wheel 41 is located on the outer wall of the No. 6 cylinder 40, and one end of the rope body 44 is connected to the outer wall of the universal wheel 41, the No. 7 spring 45 is located on the outer wall of the universal wheel 41, and one end of the No. 7 spring 45 is connected to the inner wall of the bottom plate 37, the No. 8 opening 46 is opened on the outer wall of the No. 6 rod 39, the outer wall of the universal wheel 41 is installed with the No. 8 rod 47, the outer wall of the No. 8 rod 47 is installed with the No. 9 cylinder 48, the inner wall of the No. 9 cylinder 48 is installed with an electromagnetic block 49, the outer wall of the electromagnetic block 49 is installed with a No. 9 spring 50, the outer wall of the No. 9 cylinder 48 is penetrated by a fixed rod 51, and the No. 9 spring 5 0 is connected to the outer wall of the fixed rod 51, and the fixed rod 51 extends to the inner wall of the No. 8 mouth 46, the universal wheel 41 is located above the No. 7 mouth 38, the No. 6 cylinder 40 is moved by the support of the No. 6 rod 39, and the fixed rod 51 is moved by the support of the No. 9 cylinder 48. The function of the No. 7 spring 45 is to facilitate the reset of the universal wheel 41. The electromagnetic block 49 is started to generate a magnetic force to drive the fixed rod 51 to move, and the movement of the fixed rod 51 drives the No. 9 spring 50 to move. The movement of the No. 9 spring 50 causes the fixed rod 51 to move out of the No. 8 mouth 46. At this time, the No. 3 motor 43 rotates to drive the No. 3 collecting wheel 42 to rotate, and the No. 3 motor 43 rotates to drive the No. 3 collecting wheel 42 to rotate. The No. 6 collecting wheel 42 rotates to drive the rope body 44 to move, the movement of the rope body 44 drives the universal wheel 41 to move, the movement of the universal wheel 41 drives the No. 6 cylinder 40 to move, the movement of the No. 6 cylinder 40 causes the universal wheel 41 to drive the No. 7 spring 45 to move, the No. 7 spring 45 moves to make the universal wheel 41 move out of the bottom plate 37 through the No. 7 opening 38, at this time the electromagnetic block 49 is closed and the No. 9 spring 50 drives the fixing rod 51 to be clamped into the No. 8 opening 46 to fix the universal wheel 41, the shell 1 is placed on the ground to make the universal wheel 41 contact with the ground, thereby realizing the function of convenient carrying of the lead-acid gel battery and reducing the physical strength of the staff in carrying.
[0025] The method for using the lead-acid colloidal battery comprises the following steps: Step S1, the No. 1 motor 13 is started to drive the No. 1 collecting wheel 14 to rotate, the No. 1 collecting wheel 14 rotates to drive the No. 1 pull rope 15 to move, the No. 1 pull rope 15 moves to drive the No. 1 frame 10 to move, the No. 1 frame 10 moves to drive the No. 1 spring 9 to move, the No. 1 spring 9 moves to make the No. 1 frame 10 drive the No. 1 cylinder 7 to move, the No. 1 cylinder 7 moves to make the No. 1 frame 10 drive the No. 1 clamp 11 to move, the No. 1 clamp 11 moves to move out of the No. 1 slot 12, at this time, the connector 4 is pulled to move, so that it is removed from the connector 4, so that the connector 4 of the lead-acid colloid battery can be quickly disassembled for easy maintenance; Step S2, the function of the No. 1 port 17 is to provide moving support for the sealing ring 18, the air pump 19 is started to inflate the airbag 20, the inflated airbag 20 drives the sealing ring 18 to move, the movement of the sealing ring 18 drives the No. 2 spring 21 to move, the movement of the No. 2 spring 21 drives the No. 2 cylinder 23 to move, the movement of the No. 2 cylinder 23 makes the sealing ring 18 firmly snap into the No. 2 groove 24, so as to realize the function of improving the sealing performance of the lead-acid colloid battery to adapt to the use in all climates; Step S3, the function of the fixed pressure block 27 is to stably fix the connecting line, pull the No. 1 pull rod 30 to drive the No. 4 rod 32 to move, the No. 4 rod 32 moves to make the No. 1 pull rod 30 drive the rubber clamp 35 to move, the rubber clamp 35 moves to drive the No. 6 spring 36 to move, the No. 6 spring 36 moves to make the rubber clamp 35 move out of the No. 6 port 34, at this time, pull the No. 3 pressure head 25 to open the connecting port 26, at this time, send the connecting line into the connecting port 26, at this time, press the No. 3 pressure head 25 to press the connecting line to the surface of the pressing plate 28, release the No. 1 pull rod 30 after the connecting line is pressed, and clamp the rubber clamp 35 into the No. 6 port 34 through the No. 6 spring 36 to fix the No. 3 pressure head 25 to fix the connecting line, so as to realize the function of conveniently fixing the connecting line of the lead-acid colloid battery and improving the use efficiency; Step S4, the function of the No. 7 spring 45 is to facilitate the resetting of the universal wheel 41, the electromagnetic block 49 is started to generate magnetic force to drive the fixed rod 51 to move, the movement of the fixed rod 51 drives the No. 9 spring 50 to move, the No. 9 spring 50 moves to make the fixed rod 51 move out of the No. 8 mouth 46, at this time, the No. 3 motor 43 rotates to drive the No. 3 collecting wheel 42 to rotate, the No. 3 collecting wheel 42 rotates to drive the rope body 44 to move, the rope body 44 moves to drive the universal wheel 41 to move, the universal wheel 41 moves to drive the No. 6 cylinder 40 to move the universal wheel 41 drives the No. 7 spring 45 to move, the No. 7 spring 45 moves to make the universal wheel 41 move out of the bottom plate 37 through the No. 7 mouth 38, at this time, the electromagnetic block 49 is closed and the No. 9 spring 50 drives the fixed rod 51 to be stuck in the No. 8 mouth 46 to fix the universal wheel 41, and the shell 1 is placed on the ground to make the universal wheel 41 contact with the ground, realizing the function of convenient carrying of the lead-acid gel battery and reducing the physical strength of the staff in carrying.
[0026] Working principle: No. 1 motor 13 starts to drive No. 1 collecting wheel 14 to rotate, the No. 1 collecting wheel 14 rotates to drive No. 1 pull rope 15 to move, the No. 1 pull rope 15 moves to drive No. 1 frame 10 to move, the No. 1 frame 10 moves to drive No. 1 spring 9 to move, the No. 1 spring 9 moves to make the No. 1 frame 10 drive No. 1 cylinder 7 to move, the No. 1 cylinder 7 moves to make the No. 1 frame 10 drive No. 1 clamp 11 to move, the No. 1 clamp 11 moves to move it out of the No. 1 slot 12, at this time, pull the connector 4 to move it to remove the connector 4, realizing the function of quick disassembly and easy maintenance of the connector 4 of the lead-acid colloid battery, the function of the No. 1 port 17 is to provide mobile support for the sealing ring 18, the air pump 19 starts The airbag 20 is inflated and erected, and the inflated and erected airbag 20 drives the sealing ring 18 to move, and the movement of the sealing ring 18 drives the No. 2 spring 21 to move, and the movement of the No. 2 spring 21 causes the sealing ring 18 to drive the No. 2 cylinder 23 to move, and the No. 2 cylinder 23 moves so that the sealing ring 18 is firmly clamped into the No. 2 groove 24, so that the lead-acid colloid battery improves the sealing performance and adapts to the use of all climates. The function of the fixed pressure block 27 is to stably fix the connecting line, pull the No. 1 pull rod 30 to drive the No. 4 rod 32 to move, and the No. 4 rod 32 moves to cause the No. 1 pull rod 30 to drive the rubber clamp 35 to move, and the rubber clamp 35 moves to drive the No. 6 spring 36 to move, and the No. 6 spring 36 moves to move the rubber clamp 35 out of the No. 6 groove The No. 3 port 34 is opened by pulling the No. 3 pressure head 25, and the connecting port 26 is sent into the connecting port 26. The No. 3 pressure head 25 is pressed to press the connecting port to the surface of the pressing plate 28. After the connecting port is pressed, the No. 1 pull rod 30 is released, and the No. 6 spring 36 is used to clamp the rubber clamp 35 into the No. 6 port 34 to fix the No. 3 pressure head 25 so that the connecting port is fixed, thereby realizing the function of conveniently fixing the connecting port of the lead-acid colloid battery and improving the use efficiency. The function of the No. 7 spring 45 is to facilitate the resetting of the universal wheel 41. The electromagnetic block 49 is started to generate magnetic force to drive the fixed rod 51 to move, and the movement of the fixed rod 51 drives the No. 9 spring 50 to move, and the movement of the No. 9 spring 50 causes the fixed rod 51 to move out of the No. 8 No. 46, at this time, the rotation of the No. 3 motor 43 drives the No. 3 collecting wheel 42 to rotate, the rotation of the No. 3 collecting wheel 42 drives the rope body 44 to move, the movement of the rope body 44 drives the universal wheel 41 to move, the movement of the universal wheel 41 drives the No. 6 cylinder 40 to move, the movement of the No. 6 cylinder 40 causes the universal wheel 41 to drive the No. 7 spring 45 to move, the No. 7 spring 45 moves to make the universal wheel 41 move out of the bottom plate 37 through the No. 7 mouth 38, at this time, the electromagnetic block 49 is closed and the No. 9 spring 50 drives the fixing rod 51 to be stuck in the No. 8 mouth 46 to fix the universal wheel 41, and the shell 1 is placed on the ground to make the universal wheel 41 contact with the ground, thereby realizing the function of convenient carrying of the lead-acid gel battery and reducing the physical strength of the staff in carrying.
[0027] It will be apparent to those skilled in the art that the invention is not limited to the details of the exemplary embodiments described above and that the invention can be implemented in other specific forms without departing from the spirit or essential features of the invention. Therefore, the embodiments should be considered exemplary and non-limiting in all respects, and the scope of the invention is defined by the appended claims rather than the foregoing description, and it is intended that all variations falling within the meaning and scope of the equivalent elements of the claims be included in the invention. Any reference numeral in a claim should not be considered as limiting the claim to which it relates.
Claims
1. An all-weather high-performance mobile lead-acid colloid battery, comprising a housing (1), a top cover (2), a storage battery (3), a connector (4), a connecting column (5) and a fixing assembly, characterized in that: A storage battery (3) is installed on the inner wall of the housing (1), a connecting column (5) is installed through the outer wall of the storage battery (3), a connector (4) is installed on the top of the housing (1), a top cover (2) covers the top of the connector (4), a fixing component is installed on the inner wall of the top cover (2), and a sealing component is installed on the inner wall of the top cover (2); The fixing assembly comprises a No. 1 rod (6), a No. 1 cylinder (7), a limiting rod (8), a No. 1 spring (9), a No. 1 frame (10), a No. 1 clamp (11), a No. 1 slot (12), and a No. 1 motor (13); the No. 1 rod (6) is located on the inner wall of the top cover (2); the No. 1 cylinder (7) is located on the outer wall of the No. 1 rod (6); the limiting rod (8) is located on the inner wall of the No. 1 rod (6); the No. 1 spring (9) is located on the inner wall of the top cover (2); and the No. 1 frame (10) is located on the inner wall of the No. 1 rod (6). The outer wall of a No. 1 spring (9), a No. 1 clamp (11) is located on the outer wall of a No. 1 frame (10), a No. 1 groove (12) is opened on the outer wall of the connecting head (4), a No. 1 motor (13) is located on the outer wall of a No. 1 rod (6), a No. 1 collecting wheel (14) is installed at the output end of the No. 1 motor (13), a No. 1 pulling rope (15) is installed on the outer wall of the No. 1 collecting wheel (14), and one end of the No. 1 pulling rope (15) is connected to the outer wall of the No. 1 frame (10).
2. The all-weather high-performance mobile lead-acid gel battery according to claim 1, characterized in that: The No. 1 frame (10) is located on one side of the limiting rod (8), the No. 1 cylinder (7) is moved by the support of the No. 1 rod (6), and the No. 1 clamping head (11) can be clamped into the No. 1 slot (12).
3. The all-weather high-performance mobile lead-acid gel battery according to claim 1, characterized in that: The sealing assembly comprises a support plate (16), a No. 1 port (17), a sealing ring (18), an air pump (19), an air bag (20), a No. 2 spring (21), a No. 2 groove (24), and a No. 2 rod (22), wherein the support plate (16) is located on the inner wall of the top cover (2), the No. 1 port (17) is opened at the bottom of the support plate (16), the sealing ring (18) penetrates the inner wall of the No. 1 port (17), the air pump (19) is located on the top of the support plate (16), the air bag (20) is located on the top of the sealing ring (18), and the air bag (2 The outer wall of the connecting head (4) is connected to the inner wall of the supporting plate (16), the output end of the air pump (19) extends to the inner wall of the air bag (20), the second groove (24) is opened on the outer wall of the connecting head (4), the second spring (21) is located on the outer wall of the sealing ring (18), and one end of the second spring (21) is connected to the inner wall of the supporting plate (16), the second rod (22) is located on the inner wall of the supporting plate (16), the outer wall of the second rod (22) is installed with the second tube (23), and the outer wall of the second tube (23) is connected to the outer wall of the sealing ring (18).
4. The all-weather high-performance mobile lead-acid gel battery according to claim 3, characterized in that: The sealing ring (18) can be inserted into the inner wall of the No. 2 groove (24), and the No. 2 cylinder (23) is moved by being supported by the No. 2 rod (22).
5. The all-weather high-performance mobile lead-acid gel battery according to claim 1, characterized in that: A wire pressing assembly is installed through the outer wall of the connecting column (5), a bottom plate (37) is installed at the bottom of the housing (1), and a portable assembly is installed through the inner wall of the bottom plate (37).
6. The all-weather high-performance mobile lead-acid gel battery according to claim 5, characterized in that: The wire pressing assembly comprises a No. 3 pressing head (25), a connecting port (26), a fixed pressing block (27), a pressing plate (28), a No. 4 tube (29), a No. 1 pull rod (30), a No. 4 port (31), a No. 4 rod (32), and a rubber clamp (35). The No. 3 pressing head (25) penetrates one end of the connecting column (5), the connecting port (26) is opened on the outer wall of the connecting column (5), the fixed pressing block (27) is located at the bottom of the No. 3 pressing head (25), the pressing plate (28) is located on the inner wall of the connecting column (5), the No. 4 tube (29) penetrates the outer wall of the connecting column (5), the No. 1 pull rod (30) penetrates The inner wall of the No. 4 tube (29) is penetrated, the No. 4 port (31) is opened on the outer wall of the connecting column (5), the No. 4 rod (32) passes through the inner wall of the No. 4 port (31), and one end of the No. 4 rod (32) is connected to the outer wall of the No. 1 pull rod (30), the rubber clamp (35) is located on the outer wall of the No. 1 pull rod (30), the outer wall of the No. 3 pressure head (25) is provided with a No. 6 port (34), and one end of the rubber clamp (35) is clamped into the inner wall of the No. 6 port (34), and the inner wall of the connecting column (5) is installed with a No. 6 spring (36), and one end of the No. 6 spring (36) is connected to the outer wall of the rubber clamp (35).
7. The all-weather high-performance mobile lead-acid gel battery according to claim 6, characterized in that: The pressing plate (28) is located above the fixed pressing block (27), the No. 1 pull rod (30) moves through the support of the No. 4 cylinder (29), and the No. 4 rod (32) moves through the No. 4 opening (31).
8. The all-weather high-performance mobile lead-acid gel battery according to claim 5, characterized in that: The portable assembly comprises a No. 6 rod (39), a No. 6 cylinder (40), a No. 7 mouth (38), a No. 3 motor (43), a No. 3 collecting wheel (42), a rope body (44), a universal wheel (41), a No. 7 spring (45), and a No. 8 mouth (46). The No. 6 rod (39) is located on the inner wall of the bottom plate (37), the No. 6 cylinder (40) is located on the outer wall of the No. 6 rod (39), the No. 7 mouth (38) is opened at the bottom of the bottom plate (37), the No. 6 rod (39) is opened on the outer wall of the No. 6 rod (39), the No. 3 motor (43) is located on the outer wall of the No. 6 rod (39), the No. 3 collecting wheel (42) is located at the output end of the No. 3 motor (43), the rope body (44) is located on the outer wall of the No. 3 collecting wheel (42), the universal wheel (41) is located on the outer wall of the No. 6 cylinder (40), and the rope body (4 4) is connected to the outer wall of the universal wheel (41), a No. 7 spring (45) is located on the outer wall of the universal wheel (41), and one end of the No. 7 spring (45) is connected to the inner wall of the bottom plate (37), an No. 8 opening (46) is opened on the outer wall of the No. 6 rod (39), an No. 8 rod (47) is installed on the outer wall of the No. 8 rod (47), a No. 9 cylinder (48) is installed on the outer wall of the No. 9 cylinder (48), an electromagnetic block (49) is installed on the inner wall of the No. 9 cylinder (48), a No. 9 spring (50) is installed on the outer wall of the No. 9 cylinder (48), a fixed rod (51) is installed through the outer wall of the No. 9 spring (50), the outer wall of the No. 9 spring (50) is connected to the outer wall of the fixed rod (51), and the fixed rod (51) extends to the inner wall of the No. 8 opening (46), and the universal wheel (41) is located above the No. 7 opening (38).
9. The all-weather high-performance mobile lead-acid gel battery according to claim 8, characterized in that: The sixth cylinder (40) moves by being supported by the sixth rod (39), and the fixed rod (51) moves by being supported by the ninth cylinder (48).
10. A method for using an all-weather high-performance mobile lead-acid colloid battery, applicable to an all-weather high-performance mobile lead-acid colloid battery according to any one of claims 1 to 9, characterized in that: The method for using the lead-acid colloidal battery comprises the following steps: Step S1, the No. 1 motor (13) is started to drive the No. 1 collecting wheel (14) to rotate, the No. 1 collecting wheel (14) rotates to drive the No. 1 pull rope (15) to move, the No. 1 pull rope (15) moves to drive the No. 1 frame (10) to move, the No. 1 frame (10) moves to drive the No. 1 spring (9), the No. 1 spring (9) moves to make the No. 1 frame (10) drive the No. 1 cylinder (7) to move, the No. 1 cylinder (7) moves to make the No. 1 frame (10) drive the No. 1 clamp (11) to move, the No. 1 clamp (11) moves to move out of the No. 1 slot (12), at this time, the connector (4) is pulled to move, so that it is removed from the connector (4), thereby realizing the function of quick disassembly and convenient maintenance of the connector (4) of the lead-acid colloid battery; Step S2, the function of the No. 1 port (17) is to provide a moving support for the sealing ring (18), the air pump (19) is started to inflate the airbag (20), the inflation and erection of the airbag (20) drives the sealing ring (18) to move, the movement of the sealing ring (18) drives the No. 2 spring (21) to move, the movement of the No. 2 spring (21) drives the No. 2 cylinder (23) to move, the movement of the No. 2 cylinder (23) causes the sealing ring (18) to be firmly inserted into the No. 2 groove (24), thereby realizing the function of improving the sealing performance of the lead-acid colloid battery to adapt to all-weather use; Step S3, the function of the fixed pressure block (27) is to stably fix the connecting wire, pull the No. 1 pull rod (30) to drive the No. 4 rod (32) to move, the No. 4 rod (32) moves to make the No. 1 pull rod (30) drive the rubber clamp (35) to move, the No. 6 spring (36) moves to make the rubber clamp (35) move out of the No. 6 port (34), then pull the No. 3 pressure head (25) to open the connecting port (26), then send the connecting wire into the connecting port (26), then press the No. 3 pressure head (25) to press the connecting wire to the surface of the pressing plate (28), after the connecting wire is pressed and fixed, release the No. 1 pull rod (30), clamp the rubber clamp (35) into the No. 6 port (34) through the No. 6 spring (36), fix the No. 3 pressure head (25) to fix the connecting wire, thereby realizing the function of conveniently fixing the connecting wire of the lead-acid colloid battery and improving the use efficiency; Step S4, the function of the No. 7 spring (45) is to facilitate the reset of the universal wheel (41), the electromagnetic block (49) is started to generate magnetic force to drive the fixed rod (51) to move, the fixed rod (51) moves to drive the No. 9 spring (50), the No. 9 spring (50) moves to make the fixed rod (51) move out of the No. 8 opening (46), at this time, the No. 3 motor (43) rotates to drive the No. 3 collection wheel (42) to rotate, the No. 3 collection wheel (42) rotates to drive the rope body (44) to move, the rope body (44) moves to drive the universal wheel (41), the universal wheel (41) moves The sixth cylinder (40) is driven to move, and the sixth cylinder (40) moves so that the universal wheel (41) drives the seventh spring (45) to move, and the seventh spring (45) moves so that the universal wheel (41) moves out of the bottom plate (37) through the seventh opening (38). At this time, the electromagnetic block (49) is closed, and the ninth spring (50) drives the fixing rod (51) to snap into the eighth opening (46) to fix the universal wheel (41). The housing (1) is placed on the ground so that the universal wheel (41) contacts the ground, thereby realizing the function of conveniently carrying the lead-acid colloid battery and reducing the physical strength of the staff in carrying it.
Citation Information
Patent Citations
Preparation method of gel electrolyte for lead-acid battery
CN102163751B
A preparation method of a colloidal electrolyte for a lead-acid battery
CN102780044B
A kind of forming method of colloidal lead-acid storage battery
CN103000961B
An internal formation process for gel-type power lead-acid batteries
CN108598609B
Product quality inspection equipment based on quality management and quality management method
CN115524475A