Glass conveying line

By designing a double-layer structure for the Y-axis and X-axis conveying tracks, along with a robotic arm and a lifting and rotating device, the problem of large floor space required for glass production equipment was solved, achieving efficient cleaning and transfer, and reducing production costs.

CN223659296UActive Publication Date: 2025-12-12GUANGDONG HUI LIXING SEIKO TECH
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Patent Information

Application Number
CN202423222169.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-25
Publication Date
2025-12-12
Estimated Expiration
2034-12-25

AI Technical Summary

Technical Problem

Existing glass production equipment occupies a large area, resulting in high production costs.

Method used

A glass conveyor line with Y-axis and X-axis conveying tracks was designed. It adopts a double-track structure and combines a robot and a lifting and rotating device to achieve efficient cleaning and transfer of glass while reducing the floor space required.

Benefits of technology

By optimizing the conveyor line structure and equipment, the floor space required was reduced, and production costs were lowered.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223659296U_ABST
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Abstract

The utility model relates to the technical field of glass production equipment, in particular to a glass conveying line. The conveying device comprises a Y-direction conveying rail, one end of the Y-direction conveying rail is an input end, the other end of the Y-direction conveying rail is a transfer end, the Y-direction conveying rail is provided with two layers of rails, namely an upper rail and a lower rail, an X-direction transfer rail is arranged beside the transfer end in a matched mode, a transfer box is movably arranged on the X-direction transfer rail, and the transfer box moves to be in butt joint with the lower rail of the Y-direction conveying rail. A steering end is arranged in the middle of a lower track of the Y-direction conveying track, an X-direction conveying track is arranged beside the steering end, an output end is arranged beside the X-direction conveying track, an upper track of the Y-direction conveying track comprises a cleaning box, a spraying head is installed in the cleaning box, and the spraying head is externally connected with a water pipe; the upper track and the lower track are arranged on the Y-direction conveying track, the glass is cleaned by the cleaning box in the upper track, then the glass is rotated by the lower track and discharged from the output end, the overall occupied area is small, and the production cost can be reduced.
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Description

Technical Field

[0001] This utility model relates to the field of glass production equipment technology, and specifically to a glass conveyor line. Background Technology

[0002] In the large-scale glass production process, the glass needs to be cleaned before it is transferred out. However, the current production lines are quite large, so they occupy a lot of space and have high production costs, which is not conducive to the production and processing of glass.

[0003] Therefore, based on the aforementioned shortcomings of existing glass production equipment, improvements to the existing glass production equipment are necessary. Utility Model Content

[0004] The purpose of this utility model is to provide a glass conveyor line that addresses the shortcomings of existing technologies, such as large floor space requirements.

[0005] To achieve the above objectives, this utility model is implemented through the following technical solution.

[0006] A glass conveying line includes a Y-axis conveying track, with one end being an input end and the other end being a transfer end. The Y-axis conveying track has a double-layer track, namely an upper track and a lower track. An X-axis transfer track is arranged next to the transfer end. A transfer box is movably mounted on the X-axis transfer track and moves to connect with the lower track of the Y-axis conveying track. The lower track of the Y-axis conveying track has a turning end in the middle. An X-axis conveying track is arranged next to the turning end. An output end is arranged next to the X-axis conveying track. The upper track of the Y-axis conveying track includes a cleaning box, and a spray head is installed inside the cleaning box. A water pipe is connected to the outside of the spray head.

[0007] Furthermore, a robotic arm is installed next to the X-axis transfer track. The robotic arm moves the glass from the upper track at the transfer end into the transfer box.

[0008] Furthermore, the output end is conveyed in the Y direction. Material is discharged via the Y direction.

[0009] Furthermore, a robotic arm is installed between the X-axis conveying track and the output end. The robotic arm moves the glass from the X-axis conveying track to a tray placed at the output end for unloading.

[0010] Furthermore, the lower track at the steering end is equipped with a lifting and rotating device, which is rotatably connected to the X-axis conveying track. The lifting and rotating device is used to change the glass feeding direction from Y to X and move it onto the X-axis conveying track.

[0011] Furthermore, the cleaning tank is equipped with an upper spray pipe and a lower spray pipe, each with a spray head. This allows for cleaning of both the upper and lower ends of the glass.

[0012] The beneficial effects of this utility model are as follows: by setting an upper track and a lower track in the Y-direction conveying track, the cleaning box in the upper track cleans the glass, and then the glass is rotated by the lower track and discharged from the output end. The overall footprint is small, which can reduce production costs. Attached Figure Description

[0013] Figure 1 This is a schematic diagram of the planar structure of this utility model.

[0014] Figure 2 This is a partial structural schematic diagram of the present invention.

[0015] Labels and explanations:

[0016] Input end 1, Y-direction conveying track 2, transfer end 3, X-direction transfer track 4, turning end 5, X-direction conveying track 6, output end 7, cleaning box 8, upper spray pipe 9, spray head 10, lower spray pipe 11, upper track 12, lower track 13. Detailed Implementation

[0017] The present invention will be further described below with reference to the accompanying drawings.

[0018] See Figure 1 —— Figure 2 This utility model discloses a glass conveying line, comprising: a Y-axis conveying track 2, wherein the Y-axis conveying track 2 is equipped with conveying rollers, and the conveying direction of the conveying rollers is Y-axis. One end of the Y-axis conveying track 2 is an input end 1, and the other end is a transfer end 3. The Y-axis conveying track 2 has double-layer tracks, namely an upper track 12 and a lower track 13. Conveying rollers for conveying glass are arranged in the upper track 12 and the lower track 13, and the conveying direction of the conveying rollers is Y-axis.

[0019] The present invention includes an X-axis transfer track 4 next to the transfer end 3, on which a transfer box is movable. The transfer box moves and docks with the lower track 13 of the Y-axis conveying track 2. A conveying roller is installed inside the transfer box, and the conveying direction of the conveying roller is Y-axis. A robotic arm is installed next to the X-axis transfer track 4 to move the glass sent from the upper track 12 of the transfer end 3 into the transfer box on the X-axis transfer track 4. The transfer box returns to the transfer end 3 and docks with the lower track 13. The glass is then conveyed along the lower track 13 to the turning end 5.

[0020] The Y-axis conveying track 2 of this invention has a turning end 5 in the middle of its lower track 13. An X-axis conveying track 6 is located next to the turning end 5, and the conveying direction of the conveying rollers on the X-axis conveying track 6 is X-axis. An output end 7 is located next to the X-axis conveying track 6, and the conveying direction of the conveying rollers on the output end 7 is Y-axis. A robotic arm is installed between the X-axis conveying track 6 and the output end 7 to grab the glass delivered by the X-axis conveying track 6 and place it into a tray on the output end 7 before transferring it out.

[0021] The lower track 13 of the turning end 5 of this utility model is equipped with a conveying roller, and the conveying direction of the conveying roller is Y. At the same time, the lower track 13 of the turning end 5 is equipped with a lifting and rotating device, which is used to lift the glass being transferred upward, then rotate it from the Y direction to the X direction, and then lower it to dock with the X direction conveying track 6, so that the glass is transferred to the X direction conveying track 6.

[0022] The upper track of the Y-axis conveying track 2 of this utility model includes a cleaning tank 8. An upper spray pipe 9 and a lower spray pipe 11 are installed inside the cleaning tank 8. Each of the upper spray pipe 9 and lower spray pipe 11 is equipped with a spray head 10. The spray head 10 is connected to a water pipe for spraying water to clean the glass. A water outlet pipe is connected to the bottom of the cleaning tank 8.

[0023] Glass is input from input end 1 and enters the upper rail 12 of Y-direction conveying track 2 for cleaning. After cleaning, it is transferred to the upper rail 12 located at transfer end 3. Then, the glass is transferred to the transfer box on the lower X-direction transfer track 4. The transfer box moves along the X-direction transfer track 4 to the lower rail 13 of transfer end 3. The glass is then transferred from the lower rail 13 to the turning end 5, lifted and rotated by the lifting and rotating device to connect with the X-direction conveying track 6, and then transferred to the X-direction conveying track 6. Finally, it is transferred to the tray at output end 7 and discharged, completing the glass cleaning process.

[0024] Of course, the above-described embodiments are merely preferred examples of this utility model and are not intended to limit the scope of implementation of this utility model. Therefore, all equivalent changes or modifications made to the structure, features and principles described in the claims of this utility model should be included within the scope of the claims of this utility model.

Claims

1. A glass conveying line, characterized in that: It includes a Y-axis conveyor track, with one end being the input end and the other end being the transfer end. The Y-axis conveyor track has two layers: an upper track and a lower track. An X-axis transfer track is provided next to the transfer end. A transfer box is movable on the X-axis transfer track and moves to connect with the lower track of the Y-axis conveyor track. The lower track of the Y-axis conveyor track has a turning end in the middle. The X-axis conveyor track is provided next to the turning end. An output end is provided next to the X-axis conveyor track. The upper track of the Y-axis conveyor track includes a cleaning tank. Spray heads are installed inside the cleaning tank and connected to water pipes.

2. The glass conveying line according to claim 1, characterized in that: A robotic arm is installed next to the X-axis transfer track.

3. A glass conveying line according to claim 1, characterized in that: The output terminal transmits in the Y direction.

4. A glass conveying line according to claim 1, characterized in that: A robotic arm is installed between the X-axis conveying track and the output end.

5. A glass conveying line according to claim 1, characterized in that: The lower track at the steering end is equipped with a lifting and rotating device, which is rotatably connected to the X-direction conveying track.

6. A glass conveying line according to claim 1, characterized in that: The cleaning tank is equipped with an upper spray pipe and a lower spray pipe, and each of the upper and lower spray pipes is equipped with a spray head.