Guiding device for plasterboard split-flow conveying

By introducing independent lifting racks and guide plate devices on the gypsum board production line, the interference problem caused by the connection of the gypsum board guide climbing device and the main route is solved, and efficient gypsum board climbing and transportation is achieved without affecting the operation of the main route.

CN223175089UActive Publication Date: 2025-08-01BEIXIN BUILDING MATERIALS (KUNMING) CO LTD
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Patent Information

Application Number
CN202422068005.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-08-01
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

The existing gypsum board guide climbing device is connected to the main route and it is difficult to work independently, resulting in interference with the gypsum board conveying of the main route during the guide climbing process, affecting the production progress.

Method used

A lifting rack and guide plate device independent of the main route is designed. The guide plate is driven to drop to the main conveying route connection through the lifting rack to guide the gypsum board to climb, and the guide plate is lifted after the gypsum board leaves the main route to avoid interfering with the operation of the main route.

Benefits of technology

It realizes efficient climbing and transport of gypsum board without interfering with the main route transportation, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a guiding device for plasterboard split-flow conveying. The guiding device comprises a lifting frame and a guiding plate. The lifting frame is rotationally connected to the inclined lower end of the climbing conveying belt. One end of the lifting frame can be adjusted in a lifting mode. The guide plate is arranged above the lifting frame, the inclined lower end of the guide plate can be adjusted in a lifting mode along with the lifting frame, the inclined lower end of the guide plate can be arranged at the connecting position of the main conveying line when falling to the lower limit along with the lifting frame, and at the moment, the upper surface of the guide plate and the upper surface of the climbing conveying belt are located on the same plane. According to the utility model, the lifting frame and the guide plate which are independent from the main route are arranged, the guide plate falls down through the lifting frame so as to guide the gypsum board, and the guide plate is lifted after the gypsum board leaves the main route, so that the gypsum board is guided to complete climbing under the condition of not interfering the conveying of the main route, and the working efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of gypsum production, and particularly relates to a guiding device for shunting and conveying gypsum boards. Background Art

[0002] After the produced gypsum boards are dried, they need to be conveyed to the edge sealing and trimming process through a conveyor belt. During this process, the gypsum boards usually need to be spot-checked. In order not to interfere with the operation of the production line, the sampled gypsum boards are usually shunted and conveyed to the inspection area.

[0003] At present, the climbing conveyor of gypsum boards mainly uses a section of conveyor belt in the main conveying route as a climbing device for guiding and conveying gypsum boards. By controlling one end of the conveyor belt in this section to be lifted, the gypsum boards are guided to climb to a new route at a high place and fall back to the original position after the climbing is completed. This solution can guide and convey the gypsum boards to the inspection area. However, since the belt conveyor in this solution is a section of the main conveying route, it is easy to interfere with the conveying of gypsum boards on the production line, and when a failure occurs, it will cause the main route to stop for maintenance, affecting the progress.

[0004] Therefore, the existing gypsum board guiding and climbing device is connected to the main route and is difficult to work independently, so it is easy to interfere with the conveying of gypsum boards on the main route during the guiding and climbing process. Summary of the Utility Model

[0005] The purpose of the utility model is to provide a guiding device for shunting and conveying gypsum boards, so as to solve the technical problem that the existing gypsum board guiding and climbing device is connected to the main route and is difficult to work independently, so it is easy to interfere with the conveying of gypsum boards on the main route during the guiding and climbing process.

[0006] To solve the above technical problems, the utility model specifically provides the following technical solutions:

[0007] A guiding device for shunting and conveying gypsum boards, comprising:

[0008] A climbing conveyor belt, which is inclined above the main conveying route to climb and convey gypsum boards upward;

[0009] A lifting frame, which is rotatably connected to the inclined lower end of the climbing conveyor belt, and the inclined lower end of the lifting frame can be lifted and adjusted;

[0010] A guiding plate is arranged above the lifting frame, and the inclined lower end of the guiding plate can be lifted and adjusted along with the inclined lower end of the lifting frame. When the guiding plate falls to the lower limit position, its upper surface is flush with the climbing conveyor belt, and its inclined lower end is placed at the connection of the main conveying route;

[0011] When it is necessary to climb and convey the gypsum board, the lifting frame lowers the guiding plate until its end is located at the connection of the main conveying route. After the guiding plate guides the gypsum board on the main conveying line to its surface, the lifting frame raises the guiding plate to disengage from the main conveying route and enables the gypsum board to be climbed and conveyed upward by the climbing conveyor belt.

[0012] As a preferred embodiment of the present utility model, the length of the guiding plate is less than the length of a single gypsum board.

[0013] As a preferred embodiment of the present utility model, the lifting frame includes a frame body and a lifting assembly. The lifting assembly includes a pair of lifting cylinders symmetrically arranged on both sides of the main conveying route and a translation assembly.

[0014] As a preferred embodiment of the present utility model, the upper end of the frame body is rotatably arranged on the roller of the lower end of the climbing belt conveyor, and the guiding plate is arranged on the frame body.

[0015] As a preferred embodiment of the present utility model, the end of the cylinder rod of the lifting cylinder is rotatably arranged at the inclined lower end of the frame body, and the cylinder body of the lifting cylinder is arranged on the translation assembly.

[0016] As a preferred embodiment of the present utility model, the translation assembly includes a group of translation guide rails symmetrically arranged on both sides of the main conveying route. Each translation guide rail has a translation slide, and the cylinder body of the lifting cylinder is fixed on the translation slide.

[0017] The present utility model has the following beneficial effects compared with the prior art:

[0018] By setting up a lifting frame and a guiding plate that operate independently of the main route, the present utility model lowers the guiding plate through the lifting frame to guide the gypsum board, and raises the guiding plate after the gypsum board leaves the main route, so as to guide the gypsum board to complete climbing without interfering with the main route conveying, thereby improving work efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are only exemplary, and for those of ordinary skill in the art, without creative efforts, other implementation drawings can also be obtained according to the provided drawings.

[0020] Figure 1 Structural schematic diagram of the guiding device for the split conveying of gypsum boards provided by the embodiment of the present utility model;

[0021] Figure 2A schematic diagram of the structure of a telescopic frame is provided for an embodiment of the present utility model;

[0022] The numbers in the figure represent the following:

[0023] 1-lifting frame; 2-guide plate;

[0024] 11-frame; 12-lifting assembly;

[0025] 121-lifting cylinder; 122-translation assembly; 123-translation guide rail; 124-translation slide. DETAILED DESCRIPTION

[0026] 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 embodiments described 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 making creative efforts are within the scope of protection of the present invention.

[0027] like Figure 1 As shown, the utility model provides a guiding device for gypsum board diversion and transportation, comprising:

[0028] The climbing conveyor belt is arranged obliquely above the main conveying route to transport the gypsum board upwards;

[0029] The lifting frame 1 is rotatably connected to the inclined lower end of the climbing conveyor belt, and the inclined lower end of the lifting frame 1 can be raised and lowered;

[0030] The guide plate 2 is arranged above the lifting frame 1, and the inclined lower end of the guide plate 2 can be raised and lowered along with the inclined lower end of the lifting frame 1. When the guide plate 2 falls to the lower limit, its upper surface is flush with the climbing conveyor belt, and its inclined lower end is placed at the connection of the main conveying route;

[0031] When it is necessary to transport the gypsum board by climbing, the lifting frame 1 drops the guide plate 2 until its end is located at the connection with the main conveying route. After the guide plate 2 guides the gypsum board on the main conveying route to its surface, the lifting frame 1 lifts the guide plate 2 to separate from the main conveying route and allow the gypsum board to be transported upward by the climbing conveyor belt.

[0032] This embodiment mainly uses the lifting frame 1 to adjust the guide plate 2 to the lower limit position, so that the guide plate 2 is placed at the connection of the main conveying line, thereby guiding the gypsum board to climb upward. When the gypsum board climbs to leave the main conveying line, the lifting frame 1 lifts the guide plate 2 to leave the main conveying line, and the gypsum board continues to climb upward until it leaves the guide plate 2.

[0033] Compared with the existing solution of lifting part of the belt on the main route to guide the gypsum board to climb upward, in this embodiment, a lifting frame 1 and a guide plate 2 that operate independently of the main route are provided. The lifting frame 1 drives the guide plate frame 2 to drop to the connection of the main conveying route to guide the gypsum board. After guiding the gypsum board to climb away from the main route, the lifting frame 1 then lifts the guide plate frame 2 away from the main route, thereby completing the guidance of the gypsum board climbing without interfering with the operation of the main route.

[0034] When guiding the gypsum board to climb, the gypsum board is first driven to climb upward by the main conveying route. When it climbs to the climbing conveyor belt after passing through the guide plate, the climbing conveyor belt continues to drive the gypsum board to climb upward. In order to prevent the gypsum board from staying on the guide plate 2 due to the lack of a driving source, the following preferred embodiment is proposed.

[0035] As Figure 1 shown, the length of the guide plate 2 is less than the length of a single gypsum board.

[0036] Specifically, the length of the guide plate 2 being less than the length of a single gypsum board can ensure that the gypsum board can climb to the climbing conveyor belt before leaving the main conveying route, thus avoiding the gypsum board staying on the guide plate 2 due to the lack of a driving source.

[0037] The lifting frame 1 can lift and adjust the lower inclined end of the guide plate 2, and at the same time, the upper inclined end of the lifting frame 1 can rotate adaptively around the roller at the lower inclined end of the climbing conveyor belt. Therefore, the following preferred embodiment is proposed.

[0038] As Figure 1 and 2 shown, the lifting frame 1 includes a frame body 11 and a lifting component 12. The lifting component 12 includes a pair of lifting cylinders 121 symmetrically arranged on both sides of the main conveying route and a translation component 122.

[0039] The upper end of the frame body 11 is rotatably arranged on the roller at the lower end of the climbing belt conveyor, and the guide plate 2 is arranged on the frame body 11.

[0040] Specifically, the lifting frame 1 can adjust the guide plate 2 through the lifting cylinder 121, and at the same time, the upper end of the frame body 11 can rotate adaptively.

[0041] The lifting cylinder 121 can adjust the lower inclined end of the guide plate 2. During the adjustment process, the angle between the lifting cylinder 121 and the guide plate 2 will change, and at the same time, the horizontal projection of the guide plate 2 will also change. In order to enable the lifting cylinder 121 to adjust the guide plate 2 and adapt to the angle change of the guide plate 2 and the change of the horizontal projection of the guide plate 2, the following preferred embodiment is proposed.

[0042] As Figure 2As shown, the end of the cylinder rod of the lifting cylinder 121 is rotatably arranged at the inclined lower end of the frame body 11, and the cylinder body of the lifting cylinder 121 is arranged on the translation assembly 122.

[0043] The translation assembly 122 includes a group of translation guide rails 123 symmetrically arranged on both sides of the main conveying route. Each translation guide rail 123 has a translation slide block 124, and the cylinder body of the lifting cylinder 121 is fixed on the translation slide block 124.

[0044] Specifically, when the lifting cylinder 121 adjusts the inclined lower end of the lifting adjustment guide plate 2, the end of the cylinder rod of the lifting cylinder 121 can be adjusted adaptively. At the same time, the cylinder body of the lifting cylinder 121 can make an adaptive slide in the horizontal direction on the translation guide rail 123 through the translation slide block 124.

[0045] According to the above embodiments, during operation, the lower end of the frame body 11 is lowered by the lifting cylinder 121, so that the lower end of the guide plate 2 drops to the connection of the main conveying route. At the same time, the translation slide block 124 slides adaptively in the direction away from the connection of the main route. The gypsum board climbs upward through the guide plate 2. After the gypsum board completely leaves the main conveying route, the lifting cylinder 121 lifts the frame body 11 to make the lower end of the guide plate 2 leave the main conveying route. At the same time, the translation slide block 124 slides adaptively in the direction of the connection of the main route, and the gypsum board continues to climb upward along the conveying route until it leaves the guide plate 2.

[0046] The above embodiments are only exemplary embodiments of the present application and are not used to limit the present application. The protection scope of the present application is defined by the claims. Those skilled in the art can make various modifications or equivalent replacements within the essence and protection scope of the present application, and such modifications or equivalent replacements should also be regarded as falling within the protection scope of the present application.

Claims

1. A guiding device for the shunt conveying of gypsum boards, characterized in that, Including: A climbing conveyor belt, which is inclined and arranged above the main conveying route to convey gypsum boards upward by climbing; A lifting frame (1), which is rotatably connected to the inclined lower end of the climbing conveyor belt, and the inclined lower end of the lifting frame (1) can be adjusted in height; A guiding plate (2) is arranged above the lifting frame (1). The inclined lower end of the guiding plate (2) can be adjusted in height along with the inclined lower end of the lifting frame (1). When the guiding plate (2) drops to the lower limit position, its upper surface is flush with the climbing conveyor belt, and its inclined lower end is placed at the connection of the main conveying route; When it is necessary to convey gypsum boards by climbing, the lifting frame (1) drops the guiding plate (2) until its end is located at the connection of the main conveying route. After the guiding plate (2) guides the gypsum boards on the main conveying line to its surface, the lifting frame (1) lifts the guiding plate (2) to disengage from the main conveying route and enables the gypsum boards to be conveyed upward by the climbing conveyor belt.

2. The guiding device for shunting and conveying gypsum boards according to claim 1, wherein The length of the guiding plate (2) is less than the length of a single gypsum board.

3. The guiding device for shunting and conveying gypsum boards according to claim 1, wherein The lifting frame (1) includes a frame body (11) and a lifting assembly (12). The lifting assembly (12) includes a pair of lifting cylinders (121) symmetrically arranged on both sides of the main conveying route and a translation assembly (122).

4. The guiding device for shunting and conveying gypsum boards according to claim 3, wherein The upper end of the frame body (11) is rotatably arranged on the roller of the lower end of the climbing belt conveyor, and the guiding plate (2) is arranged on the frame body (11).

5. The guiding device for shunting and conveying gypsum boards according to claim 4, wherein The end of the cylinder rod of the lifting cylinder (121) is rotatably arranged at the inclined lower end of the frame body (11), and the cylinder body of the lifting cylinder (121) is arranged on the translation assembly (122).

6. The guiding device for shunting and conveying gypsum boards according to claim 5, wherein The translation assembly (122) includes a group of translation guide rails (123) symmetrically arranged on both sides of the main conveying route. Each translation guide rail (123) is provided with a translation sliding seat (124), and the cylinder body of the lifting cylinder (121) is fixed on the translation sliding seat (124).