Telescopic guide device for plasterboard climbing and conveying

By keeping the guide plate of the telescopic guide device flush with the surface of the climbing conveyor belt, the problem of uneven climbing path of the gypsum board is solved, and the smooth climb of the gypsum board is achieved to avoid slipping and scratching.

CN223175088UActive Publication Date: 2025-08-01BEIXIN BUILDING MATERIALS (KUNMING) CO LTD
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Patent Information

Application Number
CN202422068000.7
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

In the production of existing gypsum board, the climbing path is uneven, resulting in gypsum board slipping and scratching and damage.

Method used

The telescopic guide device is adopted to drive the guide plate to expand and adjust through the telescopic frame to ensure that the guide plate is always flush with the surface of the climbing conveyor belt, avoiding the formation of angles, and achieving a smooth climb of gypsum board.

Benefits of technology

Effectively prevent gypsum board from sliding and scratching, ensure the smoothness of the climbing route, and improve the stability and safety of the conveying process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a telescopic guiding device for gypsum board climbing and conveying. The telescopic guiding device comprises a telescopic frame and a guiding plate. The telescopic frame is arranged at the lower end of the climbing conveying belt and can be telescopically adjusted; the guide plate is arranged above the telescopic frame and can be adjusted along with telescopic adjustment of the telescopic frame, the upper surface of the guide plate is flush with the upper surface of the climbing conveying belt, and the guide plate can be arranged at the node of the main conveying route when extending to the lower limiting position. By arranging the telescopic frame and the guide plate capable of being adjusted along with the telescopic frame in a telescopic mode, the guide plate is driven by the telescopic frame to extend to the node of the main route to guide the gypsum board to climb, and the guide plate is driven to retract when the gypsum board leaves the main route. In the whole process, the upper surfaces of the guide plate and the climbing conveying belt are kept on the same plane, so that the smoothness of a plasterboard climbing route is ensured, and the plasterboard is prevented from sliding off and being scratched.
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Description

Technical Field

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

[0002] In some processes of gypsum board production (such as spot inspection, height-based stacking, layer-by-layer drying, etc.), it is necessary to distribute and convey gypsum boards from the main conveying route to a new route for conveying. In order not to affect the operation of the main route, an independent climbing conveying device is usually used to distribute and convey gypsum boards.

[0003] In the prior art, a guiding device with one end capable of lifting and adjusting is usually used to guide gypsum boards onto the climbing conveyor belt. During operation, one end of the guiding device is lowered and placed at the connection of the main route. At this time, the guiding device and the upper surface of the climbing conveyor belt are in the same plane. When the gypsum board leaves the main conveying route, one end of the guiding device is lifted again. Although this method can guide the gypsum board to climb upward, in order not to affect the operation of the main conveying route, one end of the guiding device is lifted when the gypsum board just leaves the main route. At this time, the gypsum board has not left the guiding device and there is an included angle between the guiding device and the climbing conveyor belt, which is likely to cause the gypsum board to fall off and scrape and damage the gypsum board.

[0004] Therefore, in the existing climbing device with a lifting guiding device, there is an included angle between the climbing device and the climbing conveyor belt during climbing, resulting in an uneven climbing path, which is likely to cause the gypsum board to slide and scrape and damage the gypsum board. Summary of the Utility Model

[0005] The purpose of the utility model is to provide a telescopic guiding device for climbing and conveying gypsum boards, so as to solve the technical problems in the prior art that the climbing path is uneven, which is likely to cause the gypsum board to slide and scrape and damage the gypsum board.

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

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

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

[0009] A telescopic frame, which is arranged at the lower end of the climbing conveyor belt and has the same inclination angle as the climbing conveyor belt. The telescopic frame has a fixed part and a movable part;

[0010] A guide plate, the guide plate being arranged on a movable portion of the telescopic frame, the telescopic frame being capable of telescoping the guide plate to rise or fall, so that when the guide plate is at an upper limit position, its upper end is close to the climbing conveyor belt, or when the guide plate is at a lower limit position, its lower end is placed at a node of the main conveying line;

[0011] During climbing transportation, after the guide plate is moved to the lower limit position by the telescopic frame to guide the gypsum board to leave the main transportation line and be placed on the guide plate, the telescopic frame moves the guide plate to the upper limit position to place the upper part of the gypsum board on the climbing conveyor belt for climbing transportation.

[0012] As a preferred solution of the present invention, the upper surface of the guide plate is flush with the upper surface of the climbing conveyor belt, and the length of the guide plate is less than the length of a single gypsum board.

[0013] As a preferred solution of the present invention, the fixed portion of the telescopic frame includes a support frame, the inclined upper end of the support frame is fixed to the inclined lower end of the climbing conveyor belt;

[0014] The movable part of the telescopic frame is a telescopic cylinder symmetrically arranged on both sides of the support frame. The cylinder rod of the telescopic cylinder is tilted downward and can be telescopically adjusted along the tilt direction.

[0015] As a preferred solution of the present invention, a plurality of guide blocks are fixedly provided on the support frame, the upper surface of the guide blocks is flush with the upper surface of the climbing conveyor belt, and the inclined upper end of the guide block is close to the climbing conveyor belt;

[0016] The inclined upper end of the guide plate is provided with a plurality of notches matching the guide block, and when the guide plate is telescopically adjusted to the upper limit, the guide block can be inserted into the notches and fit into the guide plate;

[0017] Wherein, the length of the guide block is greater than or equal to the length of the notch.

[0018] As a preferred solution of the present invention, the inclined lower end of the guide plate is fixed to the end of the cylinder rod of the telescopic cylinder, and the inclined upper end of the guide plate is slidably arranged on the cylinder body of the telescopic cylinder.

[0019] As a preferred solution of the present invention, guide rails are provided on the cylinder bodies of the two telescopic cylinders, each of the guide rails has a slide seat, and the inclined upper end of the guide plate is fixed on the two slide seats.

[0020] Compared with the prior art, the present invention has the following beneficial effects:

[0021] The utility model sets a telescopic frame and a guide plate that can be adjusted in length along with the telescopic frame. The telescopic frame drives the guide plate to extend to the main route node to guide the gypsum board to climb, and drives the guide plate to retract when the gypsum board leaves the main route. During the whole process, the upper surface of the guide plate and the climbing conveyor belt are kept in the same plane, ensuring the flatness of the climbing route of the gypsum board and preventing the gypsum board from slipping and rubbing. Description of the Drawings

[0022] 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 use in the description of the embodiments or the prior art. Obviously, the drawings described below are only exemplary. For those of ordinary skill in the art, without creative efforts, other implementation drawings can also be obtained according to the provided drawings.

[0023] Figure 1 It is a schematic structural diagram of a telescopic guiding device for gypsum board climbing and conveying provided by an embodiment of the present utility model;

[0024] Figure 2 It is a schematic structural diagram of a telescopic frame provided by an embodiment of the present utility model;

[0025] Figure 3 It is a schematic structural diagram of a guide plate and a guide block provided by an embodiment of the present utility model;

[0026] Figure 4 It is a schematic top view partial structural diagram of a telescopic guiding device for gypsum board climbing and conveying provided by an embodiment of the present utility model.

[0027] The reference numerals in the drawings are respectively represented as follows:

[0028] 1 - telescopic frame; 2 - guide plate;

[0029] 11 - support frame; 12 - telescopic cylinder; 13 - guide block; 21 - notch;

[0030] 121 - guide rail; 122 - sliding seat. Detailed Embodiment

[0031] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model with reference to the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present utility model.

[0032] As Figure 1As shown, the utility model provides a telescopic guiding device for climbing and conveying gypsum boards, comprising:

[0033] A climbing conveyor belt is arranged obliquely above the main conveying line to transport gypsum boards upward;

[0034] The telescopic frame 1 is arranged at the lower end of the climbing conveyor belt and has the same inclination angle as the climbing conveyor belt. The telescopic frame 1 has a fixed part and a movable part;

[0035] The guide plate 2 is arranged on the movable portion of the telescopic frame 1. The telescopic frame 1 can adjust the guide plate 2 to rise or fall, so that when the guide plate 2 is located at the upper limit position, its upper end is close to the climbing conveyor belt, or when the guide plate 2 is located at the lower limit position, its lower end is placed at the node of the main conveying line;

[0036] During climbing transportation, after the guide plate 2 is moved to the lower limit position by the telescopic frame 1 to guide the gypsum board to leave the main conveying line and be placed on the guide plate 2, the telescopic frame 1 moves the guide plate 2 to the upper limit position to place the upper part of the gypsum board on the climbing conveyor belt for climbing transportation.

[0037] This embodiment mainly drives the guide plate 2 to extend to the node of the main conveying route through the telescopic frame 1, and guides the gypsum board to climb up to the climbing conveyor belt through the guide plate 2. When the gypsum board climbs up and leaves the main conveying route, the telescopic frame 1 drives the guide plate 2 to retract to the upper limit position as the gypsum board climbs.

[0038] In this embodiment, a telescopic frame 1 and a guide plate 2 are provided. The guide plate 2 extends as the telescopic frame 1 to the node of the main conveying route to guide the gypsum board to climb. When the gypsum board leaves the main conveying route, the telescopic frame 1 drives the guide plate 2 to retract to the upper limit position along with the gypsum board, guiding the entire process. The upper surface of the guide plate 2 and the upper surface of the climbing conveyor belt are maintained in the same plane, ensuring the flatness of the gypsum board climbing route and preventing the gypsum board from slipping and scratching.

[0039] Since the guide plate 2 only plays a guiding role and has no driving ability itself, when the gypsum board starts to climb, it is driven by the main line conveyor belt. After leaving the main conveying route, the gypsum board is driven to climb by the high climbing conveyor belt. Therefore, the following preferred embodiments are proposed.

[0040] like Figure 1 As shown, the upper surface of the guide plate 2 is flush with the upper surface of the climbing conveyor belt, and the length of the guide plate 2 is less than the length of a single gypsum board.

[0041] Specifically, the length of the guide plate 2 is less than that of a single gypsum board, which can ensure that the gypsum board climbs to the climbing conveyor belt before leaving the main conveying route, thereby preventing the gypsum board from staying on the guide plate 2 due to lack of a driving source.

[0042] This device connects the climbing conveyor belt through the fixed part of the telescopic frame 1, and the guide plate 2 is driven by the movable part to expand and contract for adjustment. Therefore, the following preferred embodiments are proposed.

[0043] As Figure 2 shown, the fixed part of the telescopic frame 1 includes a support frame 11, and the upper end of the inclined support frame 11 is fixed to the lower end of the inclined climbing conveyor belt;

[0044] The movable part of the telescopic frame 1 is telescopic cylinders 12 symmetrically arranged on both sides of the support frame 11. The cylinder rods of the telescopic cylinders 12 face obliquely downward and can be telescopically adjusted along the inclined direction.

[0045] Specifically, the telescopic frame 1 is fixed to the lower end of the climbing conveyor belt through the support frame 11, and the guide plate 2 is telescopically adjusted by the telescopic cylinders 12 at both ends of the support frame 11.

[0046] When the guide plate 2 extends with the telescopic frame 1 to the lower limit position, there is a gap between the upper end of the inclined guide plate 2 and the lower end of the inclined climbing conveyor belt. When the gypsum board climbs to this position, it cannot support the gypsum board. Therefore, the following preferred embodiments are proposed.

[0047] As Figures 3 to 4 shown, a number of guide blocks 13 are fixedly arranged on the support frame 11. The upper surface of the guide block 13 is flush with the upper surface of the climbing conveyor belt, and the upper end of the inclined guide block 13 is close to the climbing conveyor belt;

[0048] A number of notches 21 matching the guide blocks 13 are provided at the upper end of the inclined guide plate 2. When the guide plate 2 is telescopically adjusted to the upper limit position, the guide block 13 can be inserted into the notch 21 to be fitted with the guide plate 2;

[0049] Among them, the length of the guide block 13 is greater than or equal to the length of the notch 21.

[0050] Specifically, after the guide plate 2 is telescopically adjusted to the lower limit position with the telescopic frame 2, the guide block 13 can fill the gap between the guide plate 2 and the climbing conveyor belt to support the gypsum board climbing to this position.

[0051] In order to realize the telescopic adjustment of the guide plate 2 and provide sufficient supporting force to support the gypsum board, the following preferred embodiments are proposed.

[0052] As Figure 2 and 4 shown, the lower end of the inclined guide plate 2 is fixed to the end of the cylinder rod of the telescopic cylinder 12, and the upper end of the inclined guide plate 2 is slidably arranged on the cylinder body of the telescopic cylinder 12.

[0053] Guide rails 121 are arranged on the cylinder bodies of both telescopic cylinders 12, and each guide rail 121 has a sliding seat 122. The upper end of the inclined guide plate 2 is fixed to the two sliding seats 122.

[0054] Specifically, the inclined lower end of the guide plate 2 is fixed to the end of the cylinder rod of the telescopic cylinder 12. To adjust along with the telescopic cylinder 12, the inclined upper end of the guide plate 2 is slidably arranged on the guide rail 121 through a slide block 122, and can provide sufficient supporting force through the cylinder body of the telescopic cylinder 12 during telescopic adjustment.

[0055] Based on the above embodiments, the telescopic cylinder 12 drives the guide plate 2 to extend to the node of the main conveying route to guide the gypsum board to climb. During the climbing process, the guide block 13 assists in guiding and supporting the gypsum board. When the gypsum board climbs upward and leaves the main conveying route, the telescopic cylinder 12 drives the guide plate 2 to retract along with the climbing of the gypsum board. During the retracting process, the upper surfaces of the guide plate 2, the guide block 13, and the climbing conveyor belt always remain in the same plane.

[0056] 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 telescopic guiding device for climbing and conveying gypsum boards, characterized in that, include: A climbing conveyor belt is arranged obliquely above the main conveying line to transport gypsum boards upward; A telescopic frame (1), the telescopic frame (1) being arranged at the lower end of the climbing conveyor belt and having the same inclination angle as the climbing conveyor belt, the telescopic frame (1) comprising a fixed portion and a movable portion; A guide plate (2), the guide plate (2) being arranged on a movable portion of the telescopic frame (1), the telescopic frame (1) being capable of telescopically adjusting the guide plate (2) to rise or fall, so that when the guide plate (2) is located at an upper limit position, its upper end is close to the climbing conveyor belt, or when the guide plate (2) is located at a lower limit position, its lower end is located at a node of a main conveying line; During climbing conveying, after the guide plate (2) is moved to the lower limit position by the telescopic frame (1) to guide the gypsum board to leave the main conveying line and be placed on the guide plate (2), the telescopic frame (1) moves the guide plate (2) to the upper limit position to place the upper part of the gypsum board on the climbing conveyor belt for climbing conveying.

2. A telescopic guiding device for climbing and conveying gypsum boards according to claim 1, characterized in that: The upper surface of the guide plate (2) is flush with the upper surface of the climbing conveyor belt, and the length of the guide plate (2) is less than the length of a single gypsum board.

3. The telescopic guiding device for climbing and conveying gypsum boards according to claim 1, characterized in that: The fixed portion of the telescopic frame (1) comprises a support frame (11), the inclined upper end of the support frame (11) being fixed to the inclined lower end of the climbing conveyor belt; The movable part of the telescopic frame (1) is a telescopic cylinder (12) symmetrically arranged on both sides of the support frame (11); the cylinder rod of the telescopic cylinder (12) faces obliquely downward and can be telescopically adjusted along the oblique direction.

4. A telescopic guiding device for climbing and conveying gypsum boards according to claim 3, characterized in that: A plurality of guide blocks (13) are fixedly provided on the support frame (11), the upper surfaces of the guide blocks (13) are flush with the upper surface of the climbing conveyor belt, and the inclined upper ends of the guide blocks (13) are close to the climbing conveyor belt; The inclined upper end of the guide plate (2) is provided with a plurality of notches (21) that match the guide block (13); when the guide plate (2) is telescopically adjusted to the upper limit, the guide block (13) can be inserted into the notches (21) and fit into the guide plate (2); Wherein, the length of the guide block (13) is greater than or equal to the length of the notch (21).

5. A telescopic guiding device for climbing and conveying gypsum boards according to claim 4, characterized in that: The inclined lower end of the guide plate (2) is fixed to the cylinder rod end of the telescopic cylinder (12), and the inclined upper end of the guide plate (2) is slidably arranged on the cylinder body of the telescopic cylinder (12).

6. A telescopic guiding device for climbing and conveying gypsum boards according to claim 5, characterized in that: Guide rails (121) are provided on the cylinder bodies of the two telescopic cylinders (12), each of the guide rails (121) has a sliding seat (122), and the inclined upper end of the guide plate (2) is fixed to the two sliding seats (122).