Power supply device capable of independently moving
Through the independently moving power supply device, the combination of support columns and pushing components is used to realize the precise pick-up and placement of glass sheets in a large storage warehouse, solving the problems of complex and high cost in the traditional driving method, reducing production costs and improving operating accuracy.
Patent Information
- Application Number
- CN202422844617.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-20
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2034-11-20
AI Technical Summary
Traditional glass sheet storage platforms require multiple motor reducers to drive, resulting in complex structure, high cost and difficult to accurately control.
The independently movable power supply device is adopted, including support columns, moving parts and pushing parts. A set of power devices realizes the pick-up and placement of the plates in any position, and a mobile motor reducer and pushing cylinder are used to achieve accurate operation.
It simplifies the structure, reduces production costs, and accurately controls the pick-up and placement of the board to meet the needs of large storage warehouses.
Smart Images

Figure CN223280159U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of power supply devices, in particular to an independently movable power supply device. Background Art
[0002] Sheets, especially glass, are widely used in the fields of architecture, automobiles, etc. The production and processing of glass sheets generally requires a series of processes such as raw sheet forming, raw sheet extraction, cutting, edge grinding and chamfering, tempering, printing, cleaning, and testing.
[0003] After each processing step, semi-finished or finished glass sheets require a conveyor system for transport or storage. When storing glass sheets in a large warehouse, if individual sheets on any layer need to be accessible, each storage platform must be powered. However, the traditional method involves installing a motor reducer on each storage platform to drive the sheet. The larger the warehouse capacity, the more motor reducers are required, resulting in a complex structure, high cost, and limited stability, making precise control difficult. Utility Model Content
[0004] The purpose of the present invention is to overcome the shortcomings of the existing technology and provide an independently movable power supply device, which can provide the required power to the plate storage platform. It is easy to operate and only requires one set of power to achieve the picking and placing of plates at any position. It has a simple structure, greatly saves production costs, is practical and reliable, and is suitable for storing a large number of plates.
[0005] The inventive object of the utility model is achieved as follows: an independently movable power supply device comprises a plate warehouse frame and a storage layer picking and placing connecting member installed in the corresponding plate warehouse, wherein the plate warehouse frame is provided with a power supply combination device, and the power supply combination device comprises a supporting column, a plate picking and placing power member, a moving component, and a pushing component, the supporting column is installed on the plate warehouse frame, the supporting column is provided with a moving platform, the moving component is installed on the moving platform, and the output end of the moving component is connected to the supporting column, thereby driving the moving platform to slide up and down on the supporting column; the moving component is provided with a pushing platform, the pushing component is installed on the pushing platform, and the pushing end of the pushing component is connected to the plate picking and placing power member, thereby pushing the plate picking and placing power member to slide back and forth on the pushing platform, so that the plate picking and placing power member and the storage layer picking and placing connecting member can be separated and connected.
[0006] According to the above optimization, the moving parts include a moving motor reducer, a moving gear, and a moving rack. The moving motor reducer is installed on the moving platform and its output shaft is installed with a moving gear. The moving rack is installed on one side of the support column. The moving gear is meshed and connected to the moving rack and is driven by the moving motor reducer to drive the moving platform to slide on the support column.
[0007] According to the above optimization, one side of the support column is provided with a movable guide block for sliding connection with the movable platform.
[0008] According to the above optimization, the pushing component includes a pushing cylinder, and the pushing cylinder can be disassembled and assembled on the mobile platform, and the pushing rod of the pushing cylinder is connected to the pushing platform.
[0009] According to the above optimization, the mobile platform is provided with a pushing guide block for pushing the platform to slide.
[0010] According to the above optimization, the plate picking and placing power parts include a plate picking and placing motor reducer and a clutchable six-claw fork. The plate picking and placing motor reducer is installed on the pushing platform and its output end is connected to the six-claw fork and controls its clutch so that the six-claw fork is connected and separated with the corresponding storage layer picking and placing connecting parts.
[0011] The advantages of the present invention are that: by adopting the power supply combination device of the present structure, it is driven by the moving parts to move the plate picking and placing power parts of the device to any position on the supporting column, and then the pushing parts are used to push the plate picking and placing power parts to the required plate storage platform and cooperate with the corresponding storage layer picking and placing connecting parts to provide power to the corresponding storage layer picking and placing connecting parts, so that only one set of power supply devices is needed in a large storage warehouse to realize the picking and placing of plates at any position, precise operation, simple structure, greatly saving production and manufacturing costs, practical and reliable, and suitable for the storage of a large number of plates. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 This is a front view of a preferred embodiment of the utility model.
[0013] Figure 2 This is a structural diagram of a preferred embodiment of the present utility model.
[0014] Figure 3 This is a structural diagram of another angle of a preferred embodiment of the present invention.
[0015] Figure 4 This is a partial enlarged view of a preferred embodiment of the utility model.
[0016] Figure 5 This is a partial enlarged view from another angle of a preferred embodiment of the present invention. DETAILED DESCRIPTION
[0017] The present invention will be further described below in conjunction with the accompanying drawings.
[0018] According to the attached Figures 1 to 5As shown, the independently movable power supply device of the present invention includes a plate warehouse frame and a storage layer pick-up and placement connection member installed in the corresponding plate warehouse. The plate warehouse frame is provided with a power supply assembly device, and the power supply assembly device includes a support column 1, a plate pick-up and placement power member 2, a moving component 3, and a pushing component 4. The support column 1 is installed on the plate warehouse frame, and the support column 1 is provided with a moving platform 5. The moving component 3 is installed on the moving platform 5, and the output end of the moving component 3 is connected to the support column 1, thereby driving the moving platform 5 to slide up and down on the support column 1. The moving component 3 is provided with a pushing platform 6. The pushing component 4 is installed on the pushing platform 6, and the pushing end of the pushing component 4 is connected to the plate pick-up and placement power member 2, thereby pushing the plate pick-up and placement power member 2 to slide back and forth on the pushing platform 6, so that the plate pick-up and placement power member 2 is connected and separated with the storage layer pick-up and placement connection member.
[0019] In this way, by adopting the power supply combination device of this structure, driven by the moving component 3, the plate picking and placing power member 2 of this device is moved to any position on the support column 1, and then the plate picking and placing power member 2 is pushed to the desired plate storage platform by the pushing component 4 and connected with the corresponding storage layer picking and placing connector, which can provide power to the corresponding storage layer picking and placing connector. In this way, only one set of power supply devices is needed to realize the picking and placing of plates at any position in a large storage warehouse. Precise operation, simple structure, great savings in production and manufacturing costs, practicality and reliability, and adaptability to large-scale plate storage.
[0020] Reference Figures 1 to 5 As shown in the figure, the moving component 3 includes a moving motor reducer 31, a moving gear 32, and a moving rack 33. The moving motor reducer 31 is installed on the moving platform 5 and its output shaft is installed with the moving gear 32. The moving rack 33 is installed on one side of the support column 1. The moving gear 32 is meshed with the moving rack 33 and driven by the moving motor reducer 31 to drive the moving platform 5 to slide on the support column 1.
[0021] The pushing component 4 includes a pushing cylinder 41 , which can be detachably mounted on the mobile platform 5 , and a pushing rod of the pushing cylinder 41 is connected to the pushing platform 6 .
[0022] In the optimized solution, the plate picking and placing power unit 2 includes a plate picking and placing electromechanical reducer 21 and a clutchable six-claw fork 22. The plate picking and placing electromechanical reducer 21 is mounted on the pushing platform 6, and its output end is connected to the six-claw fork 22 and controls its clutch to separate and connect the six-claw fork 22 with the corresponding storage layer picking and placing connector.
[0023] Through the structural coordination of the moving component 3 with the pushing component 4 and the plate picking and placing power component 2, during operation, the moving motor reducer 31 is actuated to drive the moving gear 32 to rotate, so that the moving gear 32 moves up or down along the moving rack 33, thereby driving the moving platform 5 to move up and down along the supporting platform, so that the power providing combination device can be moved to any position.
[0024] When the moving platform 5 moves to any designated storage layer, the pushing cylinder 41 is activated to move the pushing platform 6 forward or backward, thereby transporting the plate picking and placing power member 2 to any designated layer.
[0025] When the pusher 4 transports the storage layer access connector to the designated position, the six-claw shifter 22 of the storage layer access connector closes and connects with the corresponding storage layer access connector, and the plate removal triggers the motor reducer 21 to operate, thereby driving the storage layer access connector. This simple structure, stable and smooth operation, precise operation, and can provide power to any storage layer, reducing the use of motor reducers and manufacturing costs.
[0026] During this period, one side of the support column 1 is provided with a moving guide block 7 for sliding connection with the moving platform 5; the moving platform 5 is provided with a pushing guide block 8 for sliding the pushing platform 6. This enhances structural stability and smooth operation, is reliable and practical, and ensures the operational quality of the product.
[0027] The above specific embodiments are only specific implementation methods with better effects of the present invention. Any structure that is the same or equivalent to the independently movable power supply device of the present invention is within the protection scope of the present invention.
Claims
1. An independently movable power supply device, comprising a plate storage rack and a storage layer access connector installed in the corresponding plate storage, characterized in that: The plate storage rack power includes a power supply assembly device, which includes a support column (1), a plate picking and placing power member (2), a moving component (3), and a pushing component (4). The support column (1) is installed on the plate storage rack, and the support column (1) is provided with a moving platform (5). The moving component (3) is installed on the moving platform (5), and the output end of the moving component (3) is connected to the support column (1), thereby driving the moving platform (5) to slide up and down on the support column (1); the moving component (3) is provided with a pushing platform (6), and the pushing component (4) is installed on the pushing platform (6), and the pushing end of the pushing component (4) is connected to the plate picking and placing power member (2), thereby pushing the plate picking and placing power member (2) to slide back and forth on the pushing platform (6), so that the plate picking and placing power member (2) and the storage layer picking and placing connecting member are separated and connected.
2. The independently movable power supply device according to claim 1, characterized in that: The moving component (3) includes a moving motor reducer (31), a moving gear (32), and a moving rack (33). The moving motor reducer (31) is installed on the moving platform (5) and its output shaft is installed with a moving gear (32). The moving rack (33) is installed on one side of the supporting column (1). The moving gear (32) is meshed and connected to the moving rack (33) and can be driven by the moving motor reducer (31) to drive the moving platform (5) to slide on the supporting column (1).
3. The independently movable power supply device according to claim 2, characterized in that: A movable guide block (7) for sliding connection with the movable platform (5) is provided on one side of the supporting column (1).
4. The independently movable power supply device according to claim 1, characterized in that: The pushing component (4) includes a pushing cylinder (41), which can be disassembled and assembled on the mobile platform (5), and a pushing rod of the pushing cylinder (41) is connected to the pushing platform (6).
5. The independently movable power supply device according to claim 4, characterized in that: The movable platform (5) is provided with a pushing guide block (8) for pushing the platform (6) to slide.
6. The independently movable power supply device according to claim 1, characterized in that: The plate picking and placing power member (2) comprises a plate picking and placing electromechanical reducer (21) and a clutchable six-claw shift fork (22). The plate picking and placing electromechanical reducer (21) is mounted on the pushing platform (6) and its output end is connected to the six-claw shift fork (22) and controls its clutch so that the six-claw shift fork (22) is connected to and separated from the corresponding storage layer picking and placing connecting member.