硅酸钙板切割机的推料机构
By designing a collaborative mechanism for pushing, cutting, and stacking materials in a calcium silicate board cutting machine, the synchronization problem of the pushing, cutting, and stacking processes in existing equipment has been solved, achieving efficient cutting and clean processing while reducing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SINO MAGNETICS TECH CO LTD
- Filing Date
- 2025-08-14
- Publication Date
- 2026-07-17
AI Technical Summary
The existing calcium silicate board cutting equipment lacks synchronization in the processes of pushing, cutting, and stacking materials, resulting in low cutting efficiency.
Design a feeding mechanism for a calcium silicate board cutting machine. Through the organic combination of feeding, cutting and stacking mechanisms, servo motors and sensors are used to achieve the coordinated work of each component, realize synchronous longitudinal and transverse cutting during the feeding process, and equip a dust collection system to collect dust.
It improves cutting efficiency, keeps the cutting environment clean, reduces equipment costs and maintenance difficulty, and has multi-functional processing capabilities.
Smart Images

Figure CN224510095U_ABST
Abstract
Claims
1. A pushing mechanism of a calcium silicate board cutting machine, characterized in that, The calcium silicate board cutting machine includes a pushing mechanism, a cutting mechanism, and a stacking mechanism. The pushing mechanism is located upstream of the cutting mechanism and is responsible for starting cutting when the front end of the calcium silicate board to be cut is pushed to the cutting mechanism. When the front end of the calcium silicate board to be cut is pushed to the very front of the pushing frame and the cutting frame, the pushing mechanism stops pushing. The pushing mechanism includes: A pusher longitudinal transfer module, which is horizontally movably mounted on the upper edges of both sides of the pusher frame of the frame mechanism; and Multiple pressing modules are mounted on the pushing longitudinal transfer module, which can be moved up and down.
2. The material pushing mechanism of the calcium silicate board cutting machine according to claim 1, characterized in that, The pusher longitudinal transfer module includes: A pusher mounting plate, which is horizontally movable and connected to the upper edges of both sides of the pusher frame of the frame mechanism; A pusher servo motor is located on the outer side of the pusher mounting plate on one side; A pusher gear is disposed on the inner side of the pusher mounting plate. The pusher gears on both sides are connected by a pusher drive shaft, and one end of the pusher drive shaft is connected to the pusher servo motor; and A pusher rack is disposed on the top surface of the two sides of the pusher frame and the cutter frame, and the pusher gear meshes with the pusher rack; The pusher servo motor drives the pusher mounting plate to move horizontally back and forth along the upper edges on both sides of the frame mechanism via the pusher drive shaft, the pusher gear, and the pusher rack.
3. The pushing mechanism of the calcium silicate board cutting machine according to claim 2, characterized in that, Each of the down-pressing modules includes: The pusher mounting beam has its two ends mounted on the pusher mounting plate and is located in front of the pusher drive shaft; Multiple pusher cylinders are arranged perpendicularly to the pusher mounting beam on the pusher mounting beam; The pusher column is mounted on the cylinder rod of each pusher cylinder and can reciprocate vertically up and down with the cylinder rod of the pusher cylinder. A material pressing slide bar is mounted on the material pusher; The pusher claw is slidably mounted on the pressing slide bar and can move up and down along the pressing slide bar; A pressure spring is sleeved on the pressure slide rod and located above the pusher claw. The pusher claw can be pressed against the rear end of the calcium silicate board by the tension of the pressure spring. A pusher shovel, located at the foremost end of the pusher claw, has a U-shaped structure that precisely engages with the rear and bottom surfaces of the calcium silicate board; and A pusher bearing is disposed at the root of the ┌-shaped structure, and the pusher bearing is used to abut against the rear end face of the calcium silicate board.
4. The feeding mechanism of the calcium silicate board cutting machine as described in claim 3, characterized in that, The height of the ┌-shaped structure of the pusher shovel is smaller than the thickness of the calcium silicate board.
5. The pushing mechanism of the calcium silicate board cutting machine according to claim 3, wherein, The lateral position of the plurality of pusher cylinders on the pusher mounting beam can be adjusted.
6. The pushing mechanism of the calcium silicate board cutting machine according to claim 3, wherein, The distances between the multiple pusher cylinders may be the same or different.
7. The pushing mechanism of the calcium silicate board cutting machine according to claim 3, characterized in that, It also includes a slide rail, which is disposed on the side of the upper edge of the pusher and cutter of the frame mechanism. The slide rail is located below the pusher rack, and the pusher mounting plate can reciprocate along the slide rail.
8. The pusher mechanism of the calcium silicate board cutting machine according to claim 7, characterized in that, It also includes a slider, which is disposed on the lower part of the pusher mounting plate facing the pusher frame. The slider is embedded in the slide rail and can reciprocate along the slide rail.