一种包装机高速夹盒输送装置
By combining servo motor-driven synchronous belt and pneumatic clamping design, the problem of insufficient positioning accuracy of existing box clamping mechanisms during high-speed operation is solved, realizing high-speed and stable conveying and efficient positioning of boxes, reducing maintenance costs and improving the overall efficiency of the production line.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHUCHENG MATSUMOTO FOOD PACKAGING MACHINERY CO LTD
- Filing Date
- 2025-07-04
- Publication Date
- 2026-07-17
AI Technical Summary
Existing box-clamping and moving mechanisms suffer from large start-stop inertia and insufficient positioning accuracy during high-speed operation, leading to box offset, overturning, or deformation. This makes them difficult to match the requirements of high-speed continuous production, and they are also mismatched with the cycle time of upstream and downstream equipment, resulting in high maintenance costs.
The device employs a servo motor-driven synchronous belt to drive the clamping mechanism, combined with a pneumatic clamping design, to achieve high-speed, high-precision box transport. The servo motor's soft start and stop function and positioning slots ensure box stability. The modular design of the synchronous belt and linear guide slider achieves precise and efficient positioning. The detection switch and positioning cylinder work together to achieve accurate initial positioning.
It achieves high-speed and stable conveying of the box, with a positioning accuracy of ±0.5mm, stable operation and spill prevention, strong clamping reliability, low maintenance cost, and improves equipment efficiency and the continuous production capacity of the production line.
Smart Images

Figure CN224511647U_ABST
Abstract
Claims
1. A high speed magazine conveying device for a packaging machine, characterized in that include: The components include a lower base (1), a linear guide rail (7), a linear guide rail slider (15), a slider fixing profile (17), a synchronous belt (14), a cylinder support seat (16), a cylinder support column (18), a box clamping cylinder (8), a box clamping beam (6), a box clamping side beam (3), an inlet conveyor belt (10), an outlet conveyor belt (2), a synchronous shaft (4), a synchronous shaft bearing (5), a lower mold (9), a detection switch (11), and a positioning cylinder (12). The linear guide rail (7) is vertically fixed to both sides of the lower base (1) by bolts. The linear guide rail slider (15) is nested on the linear guide rail (7) and connected to the slider fixing profile by bolts. 17), the synchronous belt (14) is laid along the length of the equipment and its two ends are wrapped around the synchronous shaft (4). The synchronous shaft (4) is supported and fixed by the synchronous shaft bearing (5). The slider fixing profile (17) is rigidly connected to the synchronous belt (14) by a buckle. The cylinder support seat (16) is bolted to the top of the slider fixing profile (17). The cylinder support column (18) is vertically installed on the cylinder support seat (16). The clamping cylinder (8) is fixed to the end of the cylinder support column (18). The clamping crossbeam (6) is connected to the piston rod of the clamping cylinder (8). The clamping side beam (3) is suspended on both sides of the clamping crossbeam (6) by bolts.