Height difference guiding device for stacked belt conveyor
By introducing a height difference guiding device into the stacked belt conveyor, and utilizing the guiding deceleration and lifting/rotating functions of the pneumatic pressure plate device, the impact problem of raw boards during high-speed transportation was solved, achieving stable stacking and improved production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 春虹自动化科技(辽宁)有限公司
- Filing Date
- 2025-07-30
- Publication Date
- 2026-05-19
AI Technical Summary
On high-speed production lines, raw boards are prone to impact with the side walls and damage when transported to the collection and stacking device, and existing technologies are unable to effectively prevent this problem.
A height difference guiding device for a stacked belt conveyor was designed, including a platform, a conveying device, a pneumatic pressure plate device, a lifting device, and a rotating device. The pneumatic pressure plate device guides and decelerates the raw plates to prevent impact, and the combination of lifting and rotating functions achieves stable stacking.
It effectively prevents the raw boards from being damaged by impacts to the side walls during high-speed transportation, improves production efficiency and the stability of stacking, and ensures the integrity of the raw boards.
Smart Images

Figure CN224257669U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of stacked belt conveyors, specifically a height difference guiding device for stacked belt conveyors. Background Technology
[0002] The emergence and development of pallet conveyors stemmed from the problems of low efficiency, high labor intensity, and easy damage to product quality in traditional pallet transportation and stacking processes. With the continuous advancement of industrial automation technology, the market demand for efficient, precise, and reliable pallet transportation and stacking equipment has become increasingly urgent, leading to the development of pallet conveyors.
[0003] Because the production line for 1.0mm~2.5mm raw boards is fast, and only one end is equipped with a collection and stacking device, the raw boards are easily damaged when they are transported at high speed to the collection and stacking device and hit the side wall.
[0004] To address the aforementioned issues, we propose a height difference guiding device for stacked belt conveyors. Utility Model Content
[0005] The purpose of this invention is to provide a height difference guiding device for a stacked belt conveyor to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a height difference guiding device for a stacked belt conveyor, comprising a frame, a conveying device, a drive assembly structure, a pneumatic pressure plate device, a lifting device, and a rotating device;
[0007] The conveying device is installed inside the frame; the drive assembly structure is installed on the side wall of the frame; the drive end of the drive assembly structure passes through the side wall of the frame and connects to the conveying device; the pneumatic pressure plate device is installed on the top surface of the frame; the lifting device and the rotating device are both installed below the frame; the lifting end of the lifting device is connected to one end of the bottom surface of the frame; the top end of the rotating device is connected to the other end of the bottom surface of the frame.
[0008] Preferably, the platform is equipped with a tray assembly; the top surface of the tray assembly is equipped with the conveying device.
[0009] Preferably, the conveying device includes a tensioning device, a roller, and a conveyor belt; the tensioning device and the roller are connected via the conveyor belt.
[0010] Preferably, the drive assembly structure includes a corner bracket and a drive motor; the corner bracket is disposed on the side wall of the platform; the corner bracket is connected to the drive motor by bolts; the drive end of the drive motor is connected to the roller shaft.
[0011] Preferably, the pneumatic pressure plate device includes a gantry frame, a support beam, a cylinder, and multiple elastic pressure plates;
[0012] The gantry frame is connected to the platform at both ends; the inner wall of the gantry frame is provided with a support beam; the inner top surface of the gantry frame is connected to the fixed end of the cylinder; the pushing end of the cylinder is connected to the top surface of the support beam; a plurality of elastic pressure plates are evenly provided on the bottom surface of the support beam; the bottom surface of the other end of the elastic pressure plate abuts against the outer side of the conveyor belt.
[0013] Preferably, the lifting device includes a lifting motor, two integrated lifting structures, and a connecting shaft; the integrated lifting structure is provided with a worm, a worm wheel, and a lifting rod; the worm meshes with the worm wheel; the inner circumference of the worm wheel is threaded; the outer circumference of the lifting rod is threaded to the inner circumference of the worm wheel; the top end of the lifting rod is fixed to the bottom surface of the platform;
[0014] The drive end of the lifting motor is connected to one end of the worm gear in one of the lifting integrated structures; the other end of the worm gear in one of the lifting integrated structures is connected to one end of the connecting shaft via a coupling; the other end of the connecting shaft is connected to one end of the worm gear in the other lifting integrated structure via a coupling.
[0015] Compared with the prior art, the beneficial effects of this utility model are:
[0016] This invention utilizes a pneumatic pressure plate device to guide and decelerate the plate, preventing it from flying out at high speed and impacting the side wall of the collection device, thus preventing damage. Attached Figure Description
[0017] Figure 1 This is a schematic front view of the structure of this utility model;
[0018] Figure 2 This is a left-side view of the structure of this utility model;
[0019] Figure 3 This is a top view of the structure of this utility model.
[0020] In the diagram: 1 - Frame, 11 - Pallet assembly;
[0021] 2-Conveying device, 21-Tensioning device, 22-Roller, 23-Conveyor belt;
[0022] 3-Drive assembly structure, 31-Angle frame, 32-Drive motor;
[0023] 4-Pneumatic pressure plate device, 41-Gantry frame, 42-Support beam, 43-Cylinder, 44-Elastic pressure plate;
[0024] 5-Lifting device, 51-Lifting motor, 52-Lifting integrated structure, 53-Connecting shaft;
[0025] 6-Rotating device. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Please see Figure 1 , Figure 2 , Figure 3 This utility model provides a technical solution: a height difference guiding device for a stacked belt conveyor, including a frame 1, a conveying device 2, a drive assembly structure 3, a pneumatic pressure plate device 4, a lifting device 5, and a rotating device 6.
[0028] The conveying device 2 is provided inside the frame 1. The drive assembly structure 3 is disposed on the side wall of the frame 1. The drive end of the drive assembly structure 3 passes through the side wall of the frame 1 and connects to the conveying device 2. The pneumatic pressure plate device 4 is disposed on the top surface of the frame 1. The lifting device 5 and the rotating device 6 are both disposed below the frame 1. The lifting end of the lifting device 5 is connected to one end of the bottom surface of the frame 1, and the top end of the rotating device 6 is connected to the other end of the bottom surface of the frame 1.
[0029] Furthermore, the platform 1 is provided with a tray assembly 11, and the top surface of the tray assembly 11 is provided with the conveying device 2.
[0030] Furthermore, the conveying device 2 includes a tensioning device 21, a roller 22, and a conveyor belt 23, wherein the tensioning device 21 and the roller 22 are connected through the conveyor belt 23.
[0031] Furthermore, the drive assembly structure 3 includes a corner bracket 31 and a drive motor 32. The corner bracket 31 is disposed on the side wall of the platform 1, and the drive motor 32 is connected to the corner bracket 31 by bolts. The drive end of the drive motor 32 is connected to the roller shaft 22.
[0032] Furthermore, the pneumatic pressure plate device 4 includes a gantry frame 41, a support beam 42, a cylinder 43, and multiple elastic pressure plates 44.
[0033] The gantry frame 41 is connected to the platform 1 at both ends. The inner side wall of the gantry frame 41 is provided with a support beam 42. The inner top surface of the gantry frame 41 is connected to the fixed end of the cylinder 43. The pushing end of the cylinder 43 is connected to the top surface of the support beam 42. The bottom surface of the support beam 42 is evenly provided with a plurality of elastic pressure plates 44 at one end. The bottom surface of the other end of the elastic pressure plate 44 abuts against the outer side of the conveyor belt 23.
[0034] The two ends of the support beam 42 are rotatably connected to the inner side of the gantry frame 41, such as Figure 2 As shown, the two ends of the support beam 42 are connected to the gantry frame 41 via rotating seats, and the pushing end of the cylinder 43 is inclinedly connected to the top of the support beam 42. The rotation angle of the support beam 42 is adjusted by the cylinder 43, thereby achieving the pressing force between the elastic pressure plate 44 and the surface of the conveyor belt 23. When passing through the plain plate, only the elastic pressure plate 44 deforms, while the support beam 42 remains stationary and does not rotate because the cylinder 43 is located at its top.
[0035] Furthermore, the lifting device 5 includes a lifting motor 51, two lifting integrated structures 52, and a connecting shaft 53. The lifting integrated structure 52 is provided with a worm, a worm wheel, and a lifting rod. The worm meshes with the worm wheel, and the inner circumference of the worm wheel is provided with a thread. The outer circumference of the lifting rod is threaded to the inner circumference of the worm wheel, and the top end of the lifting rod is fixed to the bottom surface of the platform 1.
[0036] The drive end of the lifting motor 51 is connected to one end of the worm gear in one of the lifting integrated structures 52, and the other end of the worm gear in one of the lifting integrated structures 52 is connected to one end of the connecting shaft 53 via a coupling. The other end of the connecting shaft 53 is connected to one end of the worm gear in the other lifting integrated structure 52 via a coupling.
[0037] The lifting motor 51 and the drive motor 32 can both be conventional servo motors, which can be flexibly switched on and off and can achieve forward and reverse rotation adjustment.
[0038] Working principle:
[0039] When the lifting device 5 is turned on, the lifting motor 51 is started and drives the lifting rod in the lifting integrated structure 52 to achieve lifting and lowering, and the height of one end of the platform 1 is 90mm lower than the equipment height at the feeding end.
[0040] The drive motor 32 is turned on to drive the conveyor 2, which conveys the first board. The pneumatic pressing device 4 decelerates the board, and the second board is conveyed to press on the first board. The previous action is repeated. The board can be stacked in layers of 12 or even more, and the production line produces the board continuously, improving production efficiency.
[0041] It will be apparent to those skilled in the art that this invention is not limited to the details of the exemplary embodiments described above, and that it can be implemented in other specific forms without departing from the spirit or essential characteristics of this invention. Therefore, the embodiments should be considered illustrative and non-limiting in all respects, and the scope of this invention is defined by the appended claims rather than the foregoing description. Thus, it is intended that all variations falling within the meaning and scope of equivalents of the claims be included within this invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0042] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. A height difference guiding device for a stacked belt conveyor, characterized in that, It includes a platform (1), a conveying device (2), a drive assembly structure (3), a pneumatic pressure plate device (4), a lifting device (5), and a rotating device (6); The platform (1) is equipped with the conveying device (2); the drive assembly structure (3) is located on the side wall of the platform (1); the drive end of the drive assembly structure (3) passes through the side wall of the platform (1) and connects to the conveying device (2); the pneumatic pressure plate device (4) is located on the top surface of the platform (1); the lifting device (5) and the rotating device (6) are both located below the platform (1); the lifting end of the lifting device (5) is connected to one end of the bottom surface of the platform (1); the top end of the rotating device (6) is connected to the other end of the bottom surface of the platform (1).
2. The height difference guiding device for a stacked belt conveyor according to claim 1, characterized in that, The platform (1) is provided with a pallet assembly (11); the top surface of the pallet assembly (11) is provided with the conveying device (2).
3. The height difference guiding device for a stacked belt conveyor according to claim 1, characterized in that, The conveying device (2) includes a tensioning device (21), a roller (22) and a conveyor belt (23); the tensioning device (21) and the roller (22) are connected by the conveyor belt (23).
4. A height difference guiding device for a stacked belt conveyor according to claim 3, characterized in that, The drive assembly structure (3) includes a corner frame (31) and a drive motor (32); the corner frame (31) is disposed on the side wall of the platform (1); the corner frame (31) is connected to the drive motor (32) by bolts; the drive end of the drive motor (32) is connected to the roller shaft (22).
5. A height difference guiding device for a stacked belt conveyor according to claim 3, characterized in that, The pneumatic pressure plate device (4) includes a gantry frame (41), a support beam (42), a cylinder (43), and multiple elastic pressure plates (44). The gantry (41) is connected to the platform (1) at both ends; the inner wall of the gantry (41) is provided with a support beam (42); the inner top surface of the gantry (41) is connected to the fixed end of the cylinder (43); the pushing end of the cylinder (43) is connected to the top surface of the support beam (42); a plurality of elastic pressure plates (44) are evenly provided on the bottom surface of the support beam (42); the bottom surface of the other end of the elastic pressure plate (44) abuts against the outer side of the conveyor belt (23).
6. A height difference guiding device for a stacked belt conveyor according to claim 1, characterized in that, The lifting device (5) includes a lifting motor (51), two lifting integrated structures (52), and a connecting shaft (53); the lifting integrated structure (52) is provided with a worm, a worm wheel, and a lifting rod; the worm meshes with the worm wheel; the inner circumference of the worm wheel is provided with a thread; the outer circumference of the lifting rod is threaded to the inner circumference of the worm wheel; the top of the lifting rod is fixed to the bottom surface of the platform (1); The drive end of the lifting motor (51) is connected to one end of the worm gear in one of the lifting integrated structures (52); the other end of the worm gear in one of the lifting integrated structures (52) is connected to one end of the connecting shaft (53) via a coupling; the other end of the connecting shaft (53) is connected to one end of the worm gear in the other lifting integrated structure (52) via a coupling.