Conveying platform of gypsum plaster board discharging machine

By designing the conveying platform of the paper-faced gypsum board extrusion machine and utilizing the flipping component and buffer mechanism, the collision problem during gypsum board flipping was solved, achieving damage-free flipping and finished product protection.

CN224211862UActive Publication Date: 2026-05-08TAISHAN GYPSUM CHENGDE CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
TAISHAN GYPSUM CHENGDE CO LTD
Filing Date
2025-06-17
Publication Date
2026-05-08

AI Technical Summary

Technical Problem

In the existing technology, during the flipping process of paper-faced gypsum board, if the flipping angle is greater than 90 degrees, the gypsum board will collide with the second flipping plate when falling, causing cracks or damage, which will affect the quality of the finished product.

Method used

A conveying platform for a paper-faced gypsum board output machine was designed. It adopts a symmetrical structure of the first and second flipping components. The built-in motor drives the rotating shaft and connecting rod to rotate the support plate. Combined with the limiting and buffering mechanism of slider, vertical block and buffer block, the gypsum board falling distance is shortened and the impact force is reduced.

Benefits of technology

This technology enables easy flipping of paper-faced gypsum board, reduces the impact force during flipping, prevents cracks or damage to the gypsum board, and improves the quality of the finished product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of gypsum plaster boards, and discloses a conveying platform of a gypsum plaster board discharging machine, which comprises a first supporting piece, a second supporting piece is arranged on one side of the first supporting piece, a built-in motor is arranged on the inner side of the first supporting piece, and a first turn-over assembly and a second turn-over assembly are arranged between the first supporting piece and the second supporting piece. The first turn-over assembly and the second turn-over assembly are symmetrical in structure, the second turn-over assembly comprises a first supporting plate arranged on the inner side of a second supporting piece, a second supporting plate is arranged on the inner side of the second supporting piece, and the first supporting plate and the second supporting plate are the same in structure; according to the turnover device for the gypsum plaster board, the gypsum plaster board can be turned over conveniently, impact force borne by the gypsum plaster board is reduced during turnover, and therefore the gypsum plaster board is prevented from being cracked or damaged, and the falling distance of the gypsum plaster board is shortened by attaching the first turnover assembly to the second turnover assembly; and the impact force borne by the gypsum plaster board during turning is reduced through the buffer blocks.
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Description

Technical Field

[0001] This application relates to the field of paper-faced gypsum board technology, and more specifically, to a conveying platform for a paper-faced gypsum board output machine. Background Technology

[0002] Paper-faced gypsum board is a type of board made from building gypsum as the main raw material, with appropriate additives and fibers mixed in as the core, and special paper as the facing. It is lightweight, soundproof, heatproof, easy to process, and easy to construct. Paper-faced gypsum board can be divided into four categories: ordinary, water-resistant, fire-resistant, and moisture-proof.

[0003] For example, in Chinese patent application CN118419545A, entitled "A Plasterboard Turning Device," during the conveyor belt transport of plasterboard, the reduction motor drives one end of the first and second crank arms to rotate synchronously along the center of the crank wheel, causing the first and second crank arms to move forward and backward respectively. This causes the hinged first and second connecting rods to swing inward and outward along the center of the fixed sleeve. The first flipping fork flips upward, causing the flipped plasterboard to fall onto the second flipping plate, completing the plasterboard turning process. However, since the plasterboard needs to be transported from the first flipping plate to the second flipping plate, the first flipping plate needs to be flipped at an angle greater than 90 degrees. This causes the plasterboard to fall off the first flipping plate due to its own weight and onto the second flipping plate. During the fall, the plasterboard will collide with the second flipping plate, causing cracks or damage to the plasterboard and negatively impacting the quality of the finished plasterboard.

[0004] To address the aforementioned issues, this application provides a conveying platform for a paper-faced gypsum board output machine. Utility Model Content

[0005] The conveying platform of the paper-faced gypsum board output machine provided in this application adopts the following technical solution:

[0006] A conveying platform for a gypsum board output machine includes a first support member, a second support member on one side of the first support member, a built-in motor on the inner side of the first support member, a first flipping assembly and a second flipping assembly between the first and second support members, the first and second flipping assemblies having symmetrical structures, the second flipping assembly including a first support plate disposed on the inner side of the second support member, the second support plate disposed on the inner side of the second support member, the first and second support plates having the same structure, a rotating rod fixedly connected to the outer side of the second support plate, the outer end of the rotating rod being rotatably engaged with the inner sidewall of the second support member, a connecting rod fixedly connected to the inner end of the second support plate, a rotating shaft fixedly connected to the outer end of the second support plate, a sliding groove through one side of the upper end of the second support plate, a vertical groove through the other side of the upper end of the second support plate, a slider slidably connected inside the sliding groove, and a vertical block slidably connected inside the vertical groove.

[0007] Furthermore, the outer end of the rotating shaft is fixedly connected to the output end of the motor built into the inner side of the first support member, and one end of the connecting rod is fixedly connected to one side of the first support plate.

[0008] Through the above technical solution, the built-in motor in the first support member is used to drive the rotating shaft to rotate, and the connecting rod is used to drive the first support plate to rotate synchronously with the second support plate.

[0009] Furthermore, limit grooves are provided on both sides of the slide, and a round rod is fixedly connected to the inner wall of the slide.

[0010] Through the above technical solution, the limiting groove is used to limit the slider and prevent the slider from leaving the groove.

[0011] Furthermore, a slot is provided on the top side of the vertical groove, and a groove is provided on the side wall of the vertical groove, with a long rod fixedly connected to the inner wall of the groove.

[0012] Through the above technical solution, the groove is used to limit the vertical block and prevent the vertical block from leaving the interior of the groove.

[0013] Furthermore, a circular groove is provided through one side of the slider, limit blocks are fixedly connected to both sides of the slider, a first spring is fixedly connected to one side of the slider, a baffle is fixedly connected to the upper end of the slider, the limit blocks are slidably engaged with the limit groove, the circular groove passes through the outer surface of the circular rod, the first spring is located around the circular rod, and one end of the first spring is fixedly connected to the side wall of the groove.

[0014] Through the above technical solution, the baffle is used to support the paper-faced gypsum board and prevent it from continuously sliding along the first support plate and the second support plate, and the first spring is used to support the slider and prevent the paper-faced gypsum board from having too much impact on the slider.

[0015] Furthermore, a buffer block is fixedly connected to the upper end of the vertical block, and protrusions are fixedly connected to both sides of the vertical block. A slot is opened through the upper end of the protrusion, and a second spring is fixedly connected to the lower end of the protrusion. The buffer block is engaged with the corresponding slot, and the protrusion is slidably engaged with the groove. The inside of the slot passes through the outer surface of the long rod. The second spring is located around the long rod, and the lower end of the second spring is fixedly connected to the bottom wall of the groove.

[0016] Through the above technical solution, the second spring is used to support the protrusion and prevent the protrusion from continuously moving down along the groove, and the buffer block is used to buffer the paper-faced gypsum board and prevent the impact force on the paper-faced gypsum board from being too great.

[0017] In summary, this application includes the following beneficial technical effects:

[0018] This application enables convenient flipping of paper-faced gypsum board and reduces the impact force on the paper-faced gypsum board during flipping, thereby preventing cracks or damage to the paper-faced gypsum board. The first flipping component is close to the second flipping component to shorten the distance the paper-faced gypsum board falls, and the buffer block reduces the impact force on the paper-faced gypsum board when flipping. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of this application;

[0020] Figure 2 This is a schematic diagram of the second support plate structure of this application;

[0021] Figure 3 This is a schematic diagram of the slider structure of this application;

[0022] Figure 4 This is a schematic diagram of the vertical block structure of this application.

[0023] Explanation of the labels in the diagram:

[0024] 1. First support component; 2. Second support component; 3. First flipping assembly; 4. Second flipping assembly; 41. First support plate; 411. Rotating rod; 42. Second support plate; 421. Connecting rod; 422. Rotating shaft; 423. Slide groove; 4231. Limiting groove; 4232. Round rod; 424. Vertical groove; 4241. Slot; 4242. Groove; 42421. Long rod; 425. Slider; 4251. Round groove; 4252. Limiting block; 4253. First spring; 4254. Baffle; 426. Vertical block; 4261. Buffer block; 4262. Protrusion; 42621. Groove; 42622. Second spring. Detailed Implementation

[0025] The technical solutions in the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. All other embodiments obtained by those skilled in the art based on the embodiments of this application without creative effort are within the scope of protection of this application.

[0026] In the description of this application, it should be noted that the terms "upper," "lower," "inner," "outer," "top / bottom," etc., indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this application. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0027] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installed," "equipped with," "sleeved / connected," "connected," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium; it can be a connection within two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0028] Example:

[0029] This application discloses a conveying platform for a paper-faced gypsum board output machine. Please refer to [link / reference]. Figures 1-4The system includes a first support member 1, a second support member 2 on one side of the first support member 1, a built-in motor on the inner side of the first support member 1, a first flipping assembly 3 and a second flipping assembly 4 between the first support member 1 and the second support member 2, the first flipping assembly 3 and the second flipping assembly 4 having symmetrical structures, the second flipping assembly 4 including a first support plate 41 disposed on the inner side of the second support member 2, and a second support plate 42 disposed on the inner side of the second support member 2, the first support plate 41 and the second support plate 42 having the same structure. A rotating rod 411 is fixedly connected to the outer side of the second support plate 42. The outer end of the rotating rod 411 is rotatably engaged with the inner side wall of the second support member 2. A connecting rod 421 is fixedly connected to the inner side of the second support plate 42. A rotating shaft 422 is fixedly connected to the outer side of the second support plate 42. A sliding groove 423 is provided through one side of the upper end of the second support plate 42. A vertical groove 424 is provided on the other side of the upper end of the second support plate 42. A slider 425 is slidably connected inside the sliding groove 423. A vertical block 426 is slidably connected inside the vertical groove 424.

[0030] The outer end of the rotating shaft 422 is fixedly connected to the output end of the motor built into the inner side of the first support member 1, and one end of the connecting rod 421 is fixedly connected to one side of the first support plate 41.

[0031] The built-in motor in the first support member 1 is used to drive the rotating shaft 422 to rotate, and the connecting rod 421 is used to drive the first support plate 41 to rotate synchronously with the second support plate 42.

[0032] Limiting grooves 4231 are provided on both sides of the slide 423, and a round rod 4232 is fixedly connected to the inner wall of the slide 423.

[0033] The limiting groove 4231 is used to limit the slider 425 and prevent the slider 425 from disengaging from the groove 423.

[0034] The top side of the vertical groove 424 is provided with a slot 4241, and the side wall of the vertical groove 424 is provided with a groove 4242. A long rod 42421 is fixedly connected to the inner wall of the groove 4242.

[0035] The groove 4242 is used to limit the vertical block 426 and prevent the vertical block 426 from leaving the interior of the vertical groove 424.

[0036] A circular groove 4251 is provided through one side of the slider 425. Limiting blocks 4252 are fixedly connected to both sides of the slider 425. A first spring 4253 is fixedly connected to one side of the slider 425. A baffle 4254 is fixedly connected to the upper end of the slider 425. The limiting block 4252 is slidably engaged with the limiting groove 4231. The circular groove 4251 passes through the outer surface of the round rod 4232. The first spring 4253 is located around the round rod 4232. One end of the first spring 4253 is fixedly connected to the side wall of the groove 423.

[0037] The baffle 4254 is used to support the paper-faced gypsum board and prevent it from continuously sliding along the first support plate 41 and the second support plate 42. The first spring 4253 is used to support the slider 425 and prevent the paper-faced gypsum board from having too much impact on the slider 425.

[0038] A buffer block 4261 is fixedly connected to the upper end of the vertical block 426, and protrusions 4262 are fixedly connected to both sides of the vertical block 426. A slot 42621 is opened through the upper end of the protrusion 4262, and a second spring 42622 is fixedly connected to the lower end of the protrusion 4262. The buffer block 4261 is engaged with the slot 4241, and the protrusion 4262 is slidably engaged with the groove 4242. The interior of the slot 42621 passes through the outer surface of the long rod 42421. The second spring 42622 is located around the long rod 42421, and the lower end of the second spring 42622 is fixedly connected to the bottom wall of the groove 4242.

[0039] The second spring 42622 is used to support the protrusion 4262 and prevent the protrusion 4262 from moving continuously down along the groove 4242. The buffer block 4261 is used to buffer the paper-faced gypsum board and prevent the impact force on the paper-faced gypsum board from being too great.

[0040] The implementation principle of this embodiment is as follows: When it is necessary to flip the paper-faced gypsum board, the paper-faced gypsum board is first placed on the upper end of the first support plate 41 and the second support plate 42. Then, one set of built-in motors is controlled to start and drive the rotating shaft 422 in the second flipping assembly 4 to rotate, so as to drive the first support plate 41 and the second support plate 42 to rotate closer to the first support member 1. At the same time, another set of built-in motors is controlled to start in the opposite direction, so as to drive the first support plate 41 and the second support plate 42 in the first flipping assembly 3 to rotate closer to the first support member 1. After the second flipping assembly 4 is rotated to the point of passing the vertical state, the first support plate 41 and the second support plate 42 are aligned with the paper-faced gypsum board. When the supporting force of the gypsum board disappears, the gypsum board will fall towards the first flipping component 3 under the action of gravity. Because the first flipping component 3 is close to the second flipping component 4, the distance the gypsum board falls is shorter, thereby reducing the impact force on the gypsum board when it flips over. When the gypsum board flips onto the first flipping component 3, it will impact the buffer block 4261, which will compress the second spring 42622. Under the rebound of the second spring 42622, the buffer block 4261 can be pushed outward, thereby causing the buffer block 4261 to offset the impact force on the gypsum board, thus further reducing the impact force on the gypsum board.

[0041] Furthermore, when the first flipping assembly 3 is in an inclined state, the lower end of the gypsum board will impact and move downward against the baffle 4254 in the first flipping assembly 3, thereby compressing the first spring 4253. At this time, the pressure on the baffle 4254 can be reduced under the action of the first spring 4253, and the baffle 4254 can prevent the gypsum board from continuously sliding down and falling to the ground.

[0042] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A conveying platform for a paper-faced gypsum board output machine, comprising a first support member (1), characterized in that: A second support member (2) is provided on one side of the first support member (1). A built-in motor is provided on the inner side of the first support member (1). A first flipping assembly (3) and a second flipping assembly (4) are provided between the first support member (1) and the second support member (2). The structures of the first flipping assembly (3) and the second flipping assembly (4) are symmetrical. The second flipping assembly (4) includes a first support plate (41) provided on the inner side of the second support member (2). A second support plate (42) is provided on the inner side of the second support member (2). The structures of the first support plate (41) and the second support plate (42) are the same. A rotating rod (411) is fixedly connected to the outside of (42). The outer end of the rotating rod (411) is rotatably engaged with the inner wall of the second support member (2). A connecting rod (421) is fixedly connected to the inner end of the second support plate (42). A rotating shaft (422) is fixedly connected to the outer end of the second support plate (42). A sliding groove (423) is opened through one side of the upper end of the second support plate (42). A vertical groove (424) is opened on the other side of the upper end of the second support plate (42). A slider (425) is slidably connected inside the sliding groove (423). A vertical block (426) is slidably connected inside the vertical groove (424).

2. The conveying platform of the paper-faced gypsum board output machine according to claim 1, characterized in that: The outer end of the rotating shaft (422) is fixedly connected to the output end of the built-in motor in the inner side of the first support member (1), and one end of the connecting rod (421) is fixedly connected to one side of the first support plate (41).

3. The conveying platform of the paper-faced gypsum board output machine according to claim 1, characterized in that: Limiting grooves (4231) are provided on both sides of the slide (423), and a round rod (4232) is fixedly connected to the inner wall of the slide (423).

4. The conveying platform of the paper-faced gypsum board output machine according to claim 1, characterized in that: The top side of the vertical groove (424) is provided with a slot (4241), and the side wall of the vertical groove (424) is provided with a groove (4242). A long rod (42421) is fixedly connected to the inner wall of the groove (4242).

5. The conveying platform of the paper-faced gypsum board output machine according to claim 3, characterized in that: A circular groove (4251) is provided through one side of the slider (425). Limiting blocks (4252) are fixedly connected to both sides of the slider (425). A first spring (4253) is fixedly connected to one side of the slider (425). A baffle (4254) is fixedly connected to the upper end of the slider (425). The limiting block (4252) is slidably engaged with the limiting groove (4231). The circular groove (4251) passes through the outer surface of the round rod (4232). The first spring (4253) is located around the round rod (4232). One end of the first spring (4253) is fixedly connected to the side wall of the groove (423).

6. The conveying platform of the paper-faced gypsum board output machine according to claim 4, characterized in that: A buffer block (4261) is fixedly connected to the upper end of the vertical block (426), and protrusions (4262) are fixedly connected to both sides of the vertical block (426). A slot (42621) is opened through the upper end of the protrusion (4262), and a second spring (42622) is fixedly connected to the lower end of the protrusion (4262). The buffer block (4261) is engaged with the corresponding slot (4241), and the protrusion (4262) is slidably engaged with the groove (4242). The interior of the slot (42621) passes through the outer surface of the long rod (42421). The second spring (42622) is located around the long rod (42421), and the lower end of the second spring (42622) is fixedly connected to the bottom wall of the groove (4242).

Citation Information

Patent Citations

  • Gypsum board turnover device

    CN118419545A