Lead-acid storage battery shell turnover device
By designing a lead-acid battery casing flipping device, the battery can be automatically flipped using a flipping plate and a rotating mechanism, which solves the problem of time-consuming and labor-intensive manual flipping and improves the level of production automation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2026-04-03
AI Technical Summary
In the production process of lead-acid batteries, the battery casing needs to be flipped manually, which is time-consuming, labor-intensive, and has a low degree of automation.
Design a lead-acid battery casing flipping device. The device uses a first flip plate and a second flip plate to automatically flip the battery 180 degrees through a rotating mechanism. The device is combined with a limit rod and a pushing mechanism to ensure the stability and support of the flipping process.
It enables automated switching of lead-acid batteries, improves production efficiency, reduces manual labor intensity, and enhances the degree of production automation.
Smart Images

Figure CN224076467U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of storage battery production technology, and is particularly related to a lead-acid battery casing flipping device. Background Technology
[0002] In the production process of lead-acid batteries, glue is first applied to the battery casing, and then the rectangular battery casing is inverted and bonded to the casing. To prevent glue from flowing into the casing, the battery needs to be kept inverted until the glue dries before being flipped over, and then the lead terminals are soldered to the wiring terminals. Currently, flipping the batteries is usually done manually. Because the batteries are heavy, flipping them is time-consuming and labor-intensive for workers, resulting in a low level of automation. Therefore, improvements are necessary. Utility Model Content
[0003] To address the aforementioned deficiencies in the prior art, this application provides a lead-acid battery casing flipping device that can automatically flip an inverted battery 180 degrees, facilitating subsequent welding of wiring terminals.
[0004] To achieve the above objectives, the present invention employs the following technology:
[0005] A lead-acid battery casing flipping device, comprising:
[0006] The first flap is hinged in a first hinge seat. One end of the first flap is connected to the rotating end of a first rotating mechanism. The first rotating mechanism is fixed on the first hinge seat. A plurality of first support rods perpendicular to the first flap are arranged in an array along its rotation axis on one side.
[0007] The second flap is hinged to a second hinge seat, which is spaced apart on one side of the first hinge seat. A plurality of second support rods perpendicular to the flap are arranged along the rotation axis on one side of the second flap. One end of the second flap is connected to the rotating end of a second rotating mechanism, which is fixed on the second hinge seat. When both the first and second flaps rotate upward to a vertical position, the first and second support rods are in an interleaved state.
[0008] Furthermore, a pushing mechanism is provided on the side of the second hinge seat away from the first hinge seat. The pushing mechanism is located above the second hinge seat. The extension and retraction direction of the extension and retraction end of the pushing mechanism is parallel to the rotation axis of the second flap. When the extension and retraction end of the pushing mechanism is extended, the extension and retraction end of the pushing mechanism is within the rotation coverage range of the second flap. When the extension and retraction end of the pushing mechanism is retracted, the extension and retraction end of the pushing mechanism is outside the coverage range when the second flap rotates.
[0009] Furthermore, a rectangular receiving groove is provided on the second flap, and multiple rotating rollers are arranged in an array along the rotation axis of the second flap inside the rectangular receiving groove. The circumference of the rotating rollers protrudes from the side of the second flap that connects to the second support rod.
[0010] Furthermore, a first limiting rod is provided on the side of the first hinge seat away from the second hinge seat, and a second limiting rod is provided on the side of the first hinge seat close to the second hinge seat. When the first flap rotates toward the first limiting rod to a horizontal state, the first flap abuts against the top of the first limiting rod. When the first support rod rotates toward the second limiting rod to a horizontal state, the first support rod abuts against the top of the second limiting rod.
[0011] Furthermore, a third limiting rod is provided on the side of the second hinge seat away from the first hinge seat. When the second flap rotates toward the third limiting rod to a horizontal state, the third flap abuts against the top of the third limiting rod.
[0012] The beneficial effects of this utility model are as follows:
[0013] 1. This device can automatically rotate an inverted lead-acid battery 180 degrees, which facilitates subsequent welding of terminals and improves the automation level of lead-acid battery production.
[0014] 2. The first, second, and third limiting rods can prevent the first and second flaps from rotating too much during rotation, limit their maximum rotation angle, and provide support for the first and second flaps, preventing the rotating ends of the first and second rotating mechanisms from being continuously subjected to force when stationary. Attached Figure Description
[0015] Figure 1 This is a first-view perspective view of the overall structure of the device according to an embodiment of this application.
[0016] Figure 2 This is a second-view perspective structural perspective of the device according to an embodiment of this application.
[0017] Figure 3 This is a third-view perspective view of the overall structure of the device according to an embodiment of this application.
[0018] Figure 4 This is a perspective view of a portion of the structure of the device according to an embodiment of this application.
[0019] Reference numerals: First flap -1, First hinge seat -2, Second flap -3, Second hinge seat -4, Pushing mechanism -5, Rotating roller -6, First limiting rod -7, Second limiting rod -8, Third limiting rod -9, First conveying mechanism -10, Second conveying mechanism -11, First support rod -101, First rotating mechanism -102, Second support rod -301, Second rotating mechanism -302, Rectangular receiving groove -303. Detailed Implementation
[0020] To make the objectives, technical solutions and advantages of the present utility model clearer, the implementation methods of the present utility model will be described in detail below with reference to the accompanying drawings. However, the embodiments described in the present utility model are only some embodiments of the present utility model, and not all embodiments.
[0021] This application provides a lead-acid battery casing flipping device, such as... Figures 1-4 As shown, it includes a first flap 1, a second flap 3, a first rotating mechanism 102, a second rotating mechanism 302, etc.
[0022] Specifically, the first flap 1 is hinged within a first hinge seat 2. The rotating end of the first rotating mechanism 102 is connected to one end of the first flap 1. The first rotating mechanism 102 is fixed to the first hinge seat 2. Multiple first support rods 101 perpendicular to the first flap 1 are arranged in an array along its rotation axis on one side. The second flap 3 is hinged within a second hinge seat 4, which is spaced apart on one side of the first hinge seat 2. Multiple second support rods 301 perpendicular to the second flap 3 are arranged in an array along its rotation axis on one side. The rotating end of the second rotating mechanism 302 is connected to one end of the second flap 3. The second rotating mechanism 302 is fixed to the second hinge seat 4. When both the first flap 1 and the second flap 3 rotate upwards to a vertical position, the first support rods 101 and the second support rods 301 are in a staggered state. Specifically, a cylinder or a rotary motor can be selected as the first rotating mechanism 102 and the second rotating mechanism 302.
[0023] In actual use, such as Figure 1 As shown, when the first flip plate 1 is in a horizontal state and the first support rod 101 is above the first flip plate 1, a first conveying mechanism 10 with the same height as the first flip plate 1 is provided on the side of the first flip plate 1 away from the first support plate, for conveying the inverted lead-acid battery. When the second flip plate 3 is in a horizontal state and the second support rod 301 is above the second flip plate 3, a second conveying mechanism 11 with the same height as the second flip plate 3 is provided at the end of the second flip plate 3 away from the second rotating mechanism 302, for conveying the lead-acid battery after it has been flipped 180 degrees. The specific flipping process is as follows: Figure 1 As shown, firstly, the first flap 1 is rotated to a horizontal position towards the first conveying mechanism 10, and the second flap 3 is rotated upwards towards the first flap 1 to a vertical position. After the inverted lead-acid battery conveyed on the first conveying mechanism 10 is transported onto the first flap 1, as shown... Figure 2 As shown, the first rotating mechanism 102 controls the first flap 1 to rotate 90 degrees toward the second flap 3, so that the first support rod 101 and the second support rod 301 are in a staggered state. Because at this time the lead-acid battery is on the first support rod 101 and has been rotated 90 degrees, as... Figure 3As shown, the second rotating mechanism 302 drives the second flip plate 3 to rotate 90 degrees downward in a direction away from the first flip plate 1. This allows the lead-acid battery to be flipped 90 degrees again via the second support rod 301, achieving a 180-degree flip and reaching the top of the second flip plate 3. Finally, the flipped lead-acid battery is pushed onto the top of the second conveying mechanism 11.
[0024] Specifically, a pushing mechanism 5 is provided on the side of the second hinge seat 4 away from the first hinge seat 2. The pushing mechanism 5 is located above the second hinge seat 4. The extension and retraction direction of the extension and retraction end of the pushing mechanism 5 is parallel to the rotation axis of the second flip plate 3. When the extension and retraction end of the pushing mechanism 5 is extended, the extension and retraction end of the pushing mechanism 5 is within the rotation coverage range of the second flip plate 3. When the extension and retraction end of the pushing mechanism 5 is retracted, the extension and retraction end of the pushing mechanism 5 is outside the coverage range when the second flip plate 3 rotates. This mechanism is used to push the lead-acid battery that has been flipped to the top of the second flip plate 3 onto the second conveying mechanism 11.
[0025] Preferably, the second flap 3 has a rectangular receiving groove 303, and multiple rotating rollers 6 are arranged in an array along the rotation axis of the second flap 3 within the rectangular receiving groove 303. The circumferential side of the rotating rollers 6 protrudes from the side of the second flap 3 connected to the second support rod 301. When it is necessary to push the lead-acid battery after it has been flipped 180 degrees, the lead-acid battery and the rotating rollers 6 will generate rolling friction, effectively reducing the friction during the pushing process.
[0026] Specifically, a first limiting rod 7 is provided on the side of the first hinge seat 2 away from the second hinge seat 4, and a second limiting rod 8 is provided on the side of the first hinge seat 2 closer to the second hinge seat 4. When the first flap 1 rotates towards the first limiting rod 7 to a horizontal state, the first flap 1 abuts against the top of the first limiting rod 7. When the first support rod 101 rotates towards the second limiting rod 8 to a horizontal state, the first support rod 101 abuts against the top of the second limiting rod 8. More specifically, a third limiting rod 9 is provided on the side of the second hinge seat 4 away from the first hinge seat 2. When the second flap 3 rotates towards the third limiting rod 9 to a horizontal state, the third flap abuts against the top of the third limiting rod 9. This arrangement prevents the first flap 1 and the second flap 3 from rotating too much during rotation, limiting their maximum rotation angle, and provides support for the first flap 1 and the second flap 3, preventing the rotating ends of the first rotating mechanism 102 and the second rotating mechanism 302 from being continuously subjected to force when stationary.
[0027] The above are only some of the embodiments listed in this application and are not intended to limit this application.
Claims
1. A lead acid battery case turnover device characterized by, The utility model relates to a kind of folding table, including: First flap (1) is hinged in a first hinged seat (2), one end of first flap (1) is connected with the rotating end of a first rotating mechanism (102), first rotating mechanism (102) is fixed on first hinged seat (2), and a plurality of first support bars (101) perpendicular to it are arranged along the rotation axis of one side of first flap (1); Second flap (3) is hinged in a second hinged seat (4), second hinged seat (4) is spaced apart on the side of first hinged seat (2), a plurality of second support bars (301) perpendicular to it are arranged along the rotation axis of one side of second flap (3), one end of second flap (3) is connected with the rotating end of a second rotating mechanism (302), second rotating mechanism (302) is fixed on second hinged seat (4), when first flap (1), second flap (3) are all rotated to vertical state upwards, first support bar (101) and second support bar (301) are in the state of being staggered with each other.
2. A lead-acid battery case turnover device according to claim 1, characterized in that, The side of second hinged seat (4) away from first hinged seat (2) is provided with a pushing mechanism (5), the pushing mechanism (5) is above second hinged seat (4), the extension direction of the extension end of pushing mechanism (5) is parallel to the rotation axis of second flap (3), when the extension end of pushing mechanism (5) is pushed out, the extension end of pushing mechanism (5) is in the rotation coverage range of second flap (3), when the extension end of pushing mechanism (5) is retracted, the extension end of pushing mechanism (5) is outside the coverage range when second flap (3) rotates.
3. A lead-acid battery case inverting apparatus according to claim 2, characterized in that, Rectangular accommodating groove (303) is opened on second flap (3), a plurality of rotating rollers (6) are arranged along the rotation axis of second flap (3) in rectangular accommodating groove (303), and the side of rotating roller (6) protrudes from the side of second flap (3) connected with second support bar (301).
4. A lead-acid battery case inverting apparatus according to claim 1, characterized by The side of first hinged seat (2) away from second hinged seat (4) is provided with a first limiting rod (7), and the side of first hinged seat (2) close to second hinged seat (4) is provided with a second limiting rod (8), when first flap (1) rotates to horizontal state towards first limiting rod (7), first flap (1) abuts the top of first limiting rod (7), when first support bar (101) rotates to horizontal state towards second limiting rod (8), first support bar (101) abuts the top of second limiting rod (8).
5. A lead-acid battery case inverting apparatus according to claim 1, wherein The side of second hinged seat (4) away from first hinged seat (2) is provided with a third limiting rod (9), when second flap (3) rotates to horizontal state towards third limiting rod (9), third flap abuts the top of third limiting rod (9).