Screen printing glass sheet discharging mechanism

By designing a screen-printed glass sheet unloading mechanism, and using push-pull components and a power telescopic cylinder to transport the glass sheet from a high position to a low position, the problem of the glass sheet being difficult to remove from the top of the vertical drying device was solved, and a safe and efficient unloading operation was achieved.

CN223521869UActive Publication Date: 2025-11-07WUHU JIECHUANG XIANFENG AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202423072722.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-11
Publication Date
2025-11-07
Estimated Expiration
2034-12-11

AI Technical Summary

Technical Problem

The dried glass sheets are located at the top of the vertical drying device, making it inconvenient for workers to remove them, posing a significant safety hazard.

Method used

A screen printing glass sheet unloading mechanism was designed, including a glass sheet dropping component and a pushing component. Using a push-pull component and a power telescopic cylinder, the glass sheet is transported from a high place to a low place through a support plate, which facilitates workers to collect and pack it.

Benefits of technology

It improves the safety and convenience of worker operation, reduces the difficulty of operation, protects the safety of glass sheets, and is suitable for vertical air drying equipment for screen-printed glass sheets.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass sheet silk-screen auxiliary equipment, in particular to a silk-screen glass sheet discharging mechanism which comprises a glass sheet falling assembly and a glass sheet pushing assembly, the glass sheet falling assembly comprises two vertically-arranged belt conveyors, the adjacent sides of the two belt conveyors vertically fall and move, and the glass sheet pushing assembly is arranged on the two belt conveyors. A plurality of bearing parts capable of bearing silk-screen glass sheets are arranged between the two belt conveyors, and the glass sheet pushing assembly comprises a rack, a horizontally-arranged supporting plate and a push-pull assembly which is installed on the rack and can drive the supporting plate to be close to or away from the glass sheet falling assembly. According to the device, glass sheets at the high position are conveyed to the low position through the glass sheet falling assembly and the glass sheet pushing assembly, workers can conveniently collect the packaged and dried glass sheets, and compared with a traditional mode that the workers stand at the high position to collect and package the glass sheets, the safety of the workers and the safety of glass can be better protected through the device; meanwhile, the operation difficulty of workers is reduced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass sheet silk screen printing auxiliary equipment technical field especially relates to a silk screen glass sheet unloading mechanism. BACKGROUND

[0002] Glass sheet silk screen printing needs to be dried to solidify the ink, make it firmly adhere to the glass surface, prevent pattern flow or pollution, improve printing quality and durability. The drying process also ensures the smooth progress of subsequent processing steps, avoids product defects and production problems caused by undried ink. The drying method includes natural drying, hot air drying, etc. Select the appropriate method according to the ink type and production requirements.

[0003] In order to realize the continuous drying of glass sheet in the prior art, a long straight conveying line is generally arranged, which means occupying a large factory land area. In order to solve the problem of long conveying line, the silk screen glass sheet vertical drying device is developed, but the glass sheet is located at the top of the vertical drying device after drying, and the position of the glass sheet is relatively high, so it is more troublesome for workers to take down the glass sheet. UTILITY MODEL CONTENT

[0004] The utility model aims at solving the problem that the glass sheet after drying is located at the top of the vertical drying device, and the position of the glass sheet is relatively high, and the workers take down the glass sheet more troublesome, and puts forward a kind of silk screen glass sheet unloading mechanism.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0006] A kind of silk screen glass sheet unloading mechanism, including glass sheet landing subassembly, glass sheet push subassembly, the glass sheet landing subassembly includes two vertical setting belt conveyors, two the adjacent side of the belt conveyor is vertically landed movement, two the belt conveyor between there is a plurality of receiving parts capable of receiving silk screen glass sheet, the glass sheet push subassembly includes rack, horizontally arranged support plate, installation on rack and can drive support plate to be close to or away from glass sheet landing subassembly push-pull subassembly.

[0007] The push-pull subassembly includes support, the support is connected with the support rod capable of horizontal sliding, the support rod is provided with rack portion along its length direction, the support is fixedly installed with reversible motor, the power output end of the reversible motor is installed with the gear engaged with the rack portion, and the support plate is fixed to the end portion of the support rod.

[0008] The push-pull subassembly includes vertically arranged power telescopic cylinder, the cylinder barrel of the power telescopic cylinder is fixed with the rack, and the piston rod is fixed with the support.

[0009] The support rod top is fixedly connected or integrally formed with a sliding block, and the support is fixedly connected with an extension guide rail.

[0010] A plurality of reinforcing rib plates are fixedly connected between the extension guide rail and the support.

[0011] Each belt conveyor comprises two rollers, an annular belt and a rotating power source, the two rollers are distributed above and below and the axes thereof are parallel to the movement direction of the support plate, the annular belt is connected to the two rollers, the rotating power source is in driving connection with one of the rollers, and the annular belt has a plurality of receiving strips arranged in parallel to the movement direction of the support plate on the outer circumferential side thereof, and the receiving strips of the two belt conveyors located on the same horizontal plane form the receiving part.

[0012] The end of the support plate away from the glass sheet falling assembly is provided with a limiting plate.

[0013] The silkscreen glass sheet unloading mechanism has the advantages that the device can convey glass sheets from a high position to a low position through the glass sheet falling assembly and the glass sheet pushing assembly, workers can conveniently collect and package the dried glass sheets, the device can better protect the safety of workers and the safety of glass, and the operation difficulty of workers is reduced. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 is a three-dimensional structural schematic view of the device;

[0015] Figure 2 is a front view structural schematic view of the device.

[0016] In the drawing: belt conveyor 1, receiving strip 2, roller 3, annular belt 4, support plate 5, limiting plate 6, power telescopic cylinder 7, support 8, forward-reverse rotation motor 9, extension guide rail 10, reinforcing rib plate 11, support rod 12, sliding block 13, rack part 14, gear 15, glass sheet pushing assembly 16, glass sheet falling assembly 17. DETAILED DESCRIPTION

[0017] The technical solutions in the embodiments of the device will be clearly and completely described below with reference to the drawings in the embodiments of the device, and obviously, the described embodiments are only part of the embodiments of the device, rather than all the embodiments of the device.

[0018] Reference Figures 1-2The utility model provides a silk screen glass sheet unloading mechanism, including glass sheet falling assembly 17, glass sheet push assembly 16, glass sheet falling assembly 17 includes two vertical setting belt conveyer 1, and the adjacent side of two belt conveyer 1 is vertical falling motion, and there is a plurality of receiving parts that can receive silk screen glass sheet between two belt conveyer 1, and glass sheet push assembly 16 includes frame, horizontal setting support plate 5, and the push-pull assembly that can drive support plate 5 to be close to or away from glass sheet falling assembly 17 is installed on the frame.

[0019] Reference Figure 1 The utility model discloses a silk screen glass sheet unloading mechanism, including glass sheet falling assembly 17, glass sheet push assembly 16, glass sheet falling assembly 17 includes two vertical setting belt conveyer 1, and the adjacent side of two belt conveyer 1 is vertical falling motion, and there is a plurality of receiving parts that can receive silk screen glass sheet between two belt conveyer 1, and glass sheet push assembly 16 includes frame, horizontal setting support plate 5, and the push-pull assembly that can drive support plate 5 to be close to or away from glass sheet falling assembly 17 is installed on the frame.

[0020] The utility model discloses a silk screen glass sheet unloading mechanism, including glass sheet falling assembly 17, glass sheet push assembly 16, glass sheet falling assembly 17 includes two vertical setting belt conveyer 1, and the adjacent side of two belt conveyer 1 is vertical falling motion, and there is a plurality of receiving parts that can receive silk screen glass sheet between two belt conveyer 1, and glass sheet push assembly 16 includes frame, horizontal setting support plate 5, and the push-pull assembly that can drive support plate 5 to be close to or away from glass sheet falling assembly 17 is installed on the frame.

[0021] Reference Figure 1 、 Figure 2 The utility model discloses a silk screen glass sheet unloading mechanism, including glass sheet falling assembly 17, glass sheet push assembly 16, glass sheet falling assembly 17 includes two vertical setting belt conveyer 1, and the adjacent side of two belt conveyer 1 is vertical falling motion, and there is a plurality of receiving parts that can receive silk screen glass sheet between two belt conveyer 1, and glass sheet push assembly 16 includes frame, horizontal setting support plate 5, and the push-pull assembly that can drive support plate 5 to be close to or away from glass sheet falling assembly 17 is installed on the frame.

[0022] Further, in order to facilitate the support plate 5 to pick up and put down the glass sheet, the push-pull assembly includes a vertically arranged power telescopic cylinder 7, the cylinder barrel of the power telescopic cylinder 7 is fixed with the rack, the piston rod is fixed with the support 8, the support 8 is driven downward by the power telescopic cylinder 7, the support rod on the support 8 drives the support plate 5 to move downward to below the glass sheet, then the support rod 12 is driven to extend to the glass sheet direction by the forward and reverse motor 9, then the power telescopic cylinder 7 is retracted to drive the support 8 to move upward, the glass sheet is lifted by the support plate 5, then the support rod 12 is driven to move to the glass sheet landing assembly 17 direction by the forward and reverse motor 9, when the glass sheet moves to the receiving part position of the glass sheet landing assembly 17, the power telescopic cylinder 7 is extended, the glass sheet on the support plate 5 is supported on the receiving part of the glass sheet landing assembly 17, then the support rod 12 is driven to retreat to the right by the reverse of the forward and reverse motor 9, the glass sheet is completed to the glass sheet landing assembly 17, then the glass sheet landing assembly 17 moves downward by one station, the vertical drying device moves upward by one station, and the above operation can be repeated.

[0023] The device is preferably applied to a silk-screen glass sheet vertical drying device applied by the applicant, application No. 2024230151442, and of course if it is adapted to be applied to other existing silk-screen glass sheet vertical drying devices, it is also within the scope of the application.

[0024] The top of the support rod 12 is fixedly connected or integrally formed with a sliding block 13, the support 8 is fixedly connected with an extension guide rail 10, the sliding block 13 is slidingly connected with the extension guide rail 10, the connection length of the extension guide rail 10 and the support rod 12 is extended, and the stability of the support rod 12 is improved.

[0025] A plurality of reinforcing rib plates 11 are fixedly connected between the extension guide rail 10 and the support 8, further improving the stability of the support rod 12.

[0026] As an embodiment, each belt conveyor 1 includes two rollers 3, one endless belt 4, and a rotary power source, the two rollers 3 are distributed above and below and the axes are parallel to the movement direction of the support plate 5, the endless belt 4 connects the two rollers 3, the rotary power source is drivingly connected with one of the rollers 3, the outer circumferential side of the endless belt 4 has receiving strips 2 arranged parallel to the movement direction of the support plate 5, and the receiving strips 2 of the two belt conveyors 1 located on the same horizontal plane form a receiving part.

[0027] The rollers 3 are driven to rotate by the rotary power source, and the belts on the adjacent sides of the two belt conveyors 1 are all moving downward, the device uniformly distributes a plurality of interval horizontally distributed receiving strips on the circumferential side of the endless belt 4, and the silk-screen glass sheet is supported on the two receiving strips on the same horizontal plane, and the belt conveyor 1 descends by one station for each conveyed silk-screen glass sheet.

[0028] In order to better match the vertical air drying device of the silk screen glass sheet applied by the applicant, the belt conveyor 1 of the device is the same as the lifting machine structure in the previous application, only the direction is different during operation, further, the belt conveyor 1 of the device and the lifting machine in the previous application are respectively located on both sides of the drying box, further, exhaust holes are formed on both sides of the drying box, and certain air drying effect can be achieved during the falling of the glass sheet, and the drying effect is improved.

[0029] The end of the supporting plate 5 away from the glass sheet falling assembly 17 is provided with a limiting plate 6, so that the end of the glass sheet is limited.

[0030] The above is only the preferred specific implementation manner of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can obtain the technical scheme, concept and design according to the technical scheme and the concept of the present application within the technical range disclosed by the present application, and the obtained technical scheme, concept and design should be covered in the protection scope of the present application.

Claims

1. A silk screened glass sheet blanking mechanism characterized by, The glass sheet falling assembly (17) comprises two vertically arranged belt conveyors (1), the two belt conveyors (1) are vertically falling and moving at adjacent sides, and a plurality of receiving portions capable of receiving silk-printed glass sheets are arranged between the two belt conveyors (1); the glass sheet pushing assembly (16) comprises a frame, a horizontally arranged support plate (5), and a push-pull assembly installed on the frame and capable of driving the support plate (5) to move close to or away from the glass sheet falling assembly (17).

2. A silk screen glass sheet unloading mechanism according to claim 1, wherein The push-pull assembly comprises a bracket (8) to which a support rod (12) capable of horizontally sliding is connected, the support rod (12) is provided with a rack portion (14) along the length direction thereof, a reversible motor (9) is fixedly installed on the bracket (8), a gear (15) engaged with the rack portion (14) is installed on the power output end of the reversible motor (9), and the support plate (5) is fixed to the end portion of the support rod (12).

3. A silk screen glass sheet unloading mechanism as claimed in claim 2, wherein, The push-pull assembly comprises a vertically arranged power telescopic cylinder (7), the cylinder barrel of the power telescopic cylinder (7) is fixed to the frame, and the piston rod is fixed to the bracket (8).

4. A silk screen glass sheet unloading mechanism as claimed in claim 3, wherein, The support rod (12) is integrally formed with a sliding block (13) at the top portion thereof, the bracket (8) is fixedly connected with an extension guide rail (10), and the sliding block (13) is in sliding connection with the extension guide rail (10).

5. A silk screen glass sheet blanking mechanism according to claim 4, wherein A plurality of reinforcing rib plates (11) are fixed between the extension guide rail (10) and the bracket (8).

6. A silk screen glass sheet blanking mechanism according to any one of claims 1-5, characterized in that, Each belt conveyor (1) comprises two rollers (3), an annular belt (4), and a rotary power source, the two rollers (3) are arranged in an up-down manner and have their axis lines parallel to the moving direction of the support plate (5), the annular belt (4) is connected to the two rollers (3), the rotary power source is in driving connection with one of the rollers (3), and the annular belt (4) is provided with a receiving plate strip (2) parallel to the moving direction of the support plate (5) on the outer circumferential side thereof, and the receiving plate strips (2) of the two belt conveyors (1) located on the same horizontal plane form the receiving portions.

7. A silk screened glass sheet blanking mechanism as claimed in any one of claims 2 to 5, wherein, The end portion of the support plate away from the glass sheet falling assembly (17) is provided with a limiting plate.