A gypsum board transfer device
By designing a gypsum board transfer device, the alignment problem during gypsum board transfer was solved by utilizing the coordinated movement of the conveyor belt, positioning baffles, and alignment blocks, thus achieving neat stacking of gypsum boards and improving packaging efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TAISHAN GYPSUM (JIANGXI) CO LTD
- Filing Date
- 2025-06-27
- Publication Date
- 2026-05-26
AI Technical Summary
In existing technologies, gypsum boards cannot be effectively aligned during transport, resulting in uneven stacking and affecting packaging efficiency.
A gypsum board transfer device was designed, comprising a conveyor belt, positioning baffles, stacking platform and alignment blocks. The conveyor belt and alignment blocks are driven by hydraulic cylinders and air cylinders to coordinate their movements, so that the gypsum boards are aligned on the stacking platform and slowly descend, achieving neat stacking.
This technology enables effective alignment and neat stacking of gypsum boards on the stacking platform, improving packaging efficiency.
Smart Images

Figure CN224278538U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of gypsum board transfer, and in particular to a gypsum board transfer device. Background Technology
[0002] After the gypsum boards are produced, they need to be stacked together and then sent to the packaging area for packaging and transfer. When the conveyor belt transports and stacks the gypsum boards, although inertia will push them a little distance, they still cannot be aligned. Therefore, based on this technical problem, we designed a gypsum board transfer device. Summary of the Invention
[0003] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to practical needs, and provide a gypsum board transfer device, including a conveyor belt, a positioning baffle, and a stacking platform. The conveyor belt has multiple equally spaced conveyor belts, and the drive wheels sleeved on the conveyor belts are all mounted on the same rotating shaft for coaxial transmission. A liftable stacking platform is provided at the end of the conveyor belt, and a hydraulic cylinder is provided below the stacking platform. A hydraulic cylinder above the hydraulic cylinder is connected to the stacking platform. A positioning baffle is provided on the side of the stacking platform away from the conveyor belt. A push plate is provided on the side of the stacking platform, the conveyor belt, and the positioning baffle adjacent to the positioning baffle. The other side of the stacking platform opposite the push plate is an output platform.
[0004] A first alignment block is provided above the two adjacent sides of the stacking platform and the positioning baffle. The first alignment block is driven by a first cylinder to push and align the plasterboard on the stacking platform.
[0005] A second alignment block is provided between the drive wheels at the end of the conveyor belt. The upper part of the second alignment block is a right-angled triangle and the lower part is a rectangle. The inclined surface of the upper part of the second alignment block faces the stacking platform. Multiple second alignment blocks are connected to a connecting horizontal plate. A second cylinder is provided below the connecting horizontal plate. Under normal conditions, the second alignment block is located below the surface of the conveyor belt. The second cylinder drives the second alignment block to move up and down.
[0006] The height of the plasterboard at the top of the stacking platform is always lower than the height of the conveyor belt surface.
[0007] The beneficial effects of this utility model are as follows:
[0008] This device uses two first alignment blocks to align the plasterboards pushed onto the stacking platform, and a positioning baffle and a second alignment block to align the other two sides of the plasterboards. As the number of plasterboards increases, the stacking platform slowly descends, completing the stacking process. Attached Figure Description
[0009] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0010] Figure 1 This is a schematic diagram of the present invention.
[0011] Figure 2 This is a partially enlarged schematic diagram of the present invention;
[0012] Figure 3 This is a partial sectional view of the present invention. Detailed Implementation
[0013] The present invention will be further described below with reference to the accompanying drawings and embodiments:
[0014] See Figure 1-3 .
[0015] This utility model discloses a gypsum board transfer device, including a conveyor belt 1, a positioning baffle 2, and a stacking platform 3. The conveyor belt has multiple equally spaced conveyor belts 4, and the transmission wheels 6 sleeved on the conveyor belt are all coaxially driven on the same rotating shaft 5. A liftable stacking platform is provided at the end of the conveyor belt, and a hydraulic cylinder 7 is provided below the stacking platform. A hydraulic cylinder above the hydraulic cylinder is connected to the stacking platform. A positioning baffle 2 is provided on the side of the stacking platform away from the conveyor belt. A pusher plate 8 is provided on the side adjacent to the stacking platform, the conveyor belt, and the positioning baffle. The pusher plate 8 pushes out the gypsum board 10 through a pusher cylinder 9.
[0016] A first alignment block 11 is provided above the two adjacent sides of the stacking platform and the positioning baffle. The first alignment block is driven by the first cylinder 12 to push and align the plasterboard on the stacking platform.
[0017] A second alignment block 13 is provided between the drive wheels at the end of the conveyor belt. The upper part of the second alignment block is a right-angled triangle and the lower part is a rectangle. The inclined surface of the upper part of the second alignment block faces the stacking platform. Multiple second alignment blocks are connected to the connecting horizontal plate 14 below. A second cylinder 15 is provided below the connecting horizontal plate. Under normal conditions, the second alignment block is located below the surface of the conveyor belt. The second cylinder drives the second alignment block to move up and down.
[0018] The height of the plasterboard at the top of the stacking platform is always lower than the height of the conveyor belt surface.
[0019] Specific operations
[0020] First, the produced gypsum boards are fed out via conveyor belt 1. The height of the stacking platform 3 is lower than the height of the conveyor belt, and the gypsum boards are smoothly delivered to the stacking platform 3. When they leave the conveyor belt, they will still move forward a short distance. The first alignment blocks 11 on both sides move simultaneously to push the gypsum boards in the middle to align them. Meanwhile, the second alignment block 13 on one side of the conveyor belt is driven upward by a cylinder to align the other two sides of the gypsum boards. The stacking platform 3 descends in sequence. After a predetermined number of boards are stacked, the stacking platform 3 continues to descend a certain distance so that the height of the highest gypsum board is lower than the height of the first alignment block. Then, it is sent out via push plate 8.
[0021] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent modifications made based on the content of this utility model specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A gypsum board transfer device, characterized in that: The system includes a conveyor belt (1), a positioning baffle (2), and a stacking platform (3). The conveyor belt has multiple equally spaced conveyor belts (4), and the transmission wheels (6) on the conveyor belt are all coaxially driven on the same rotating shaft (5). The end of the conveyor belt is equipped with a stacking platform that can be raised and lowered. A hydraulic cylinder (7) is provided below the stacking platform, and the hydraulic cylinder above the hydraulic cylinder is connected to the stacking platform. A positioning baffle (2) is provided on the side of the stacking platform away from the conveyor belt. A pusher plate (8) is provided on the side of the stacking platform, the conveyor belt, and the positioning baffle. The pusher plate (8) pushes out the plasterboard (10) through a pusher cylinder (9).
2. The gypsum board transfer device according to claim 1, characterized in that: The stacking platform and the positioning baffle are provided with a first alignment block (11) on the upper sides of the adjacent sides. The first alignment block is driven by a first cylinder (12) to push and align the gypsum board on the stacking platform.
3. The gypsum board transfer device according to claim 1, characterized in that: A second alignment block (13) is provided between the drive wheels at the end of the conveyor belt. The upper part of the second alignment block is a right triangle and the lower part is a rectangle. The inclined surface of the upper part of the second alignment block faces the stacking platform. Multiple second alignment blocks are connected to the connecting horizontal plate (14) below. A second cylinder (15) is provided below the connecting horizontal plate. Under normal conditions, the second alignment block is located below the upper surface of the conveyor belt. The second cylinder drives the second alignment block to move up and down.
4. The gypsum board transfer device according to claim 1, characterized in that: The height of the plasterboard at the top of the stacking platform is always lower than the height of the conveyor belt surface.