一种压延生产线接料装置
By designing a receiving device for the calendering production line, and using adjusting drive components and platform lifting drive components to control the placement of insulating sheets, the problem of uneven stacking of insulating sheets was solved, improving the neatness of stacking and production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN SHENGPENG TECH CO LTD
- Filing Date
- 2025-09-15
- Publication Date
- 2026-07-17
AI Technical Summary
The existing stacking equipment results in uneven stacking of insulating sheets, which affects the efficiency of subsequent processing operations.
A material receiving device for a calendering production line was designed, including a lifting and stacking assembly and a transfer assembly. The vertical roller is controlled to slide by adjusting the drive component, and the horizontal part of the conveyor belt is kept from rotating by friction. The insulating sheet is slowly laid flat on the stacking platform, and the platform lifting drive component controls the consistent drop height of the insulating sheet to ensure neat stacking.
This allows for the neat stacking of insulating sheets, improving the efficiency of subsequent processing operations.
Smart Images

Figure CN224512833U_ABST
Abstract
Claims
1. A calendering line take-off device comprising a frame (1), characterized in that: The frame (1) is equipped with a lifting and stacking assembly (4) and a transfer assembly (2). The lifting and stacking assembly (4) is used to stack insulating sheets, and the transfer assembly (2) is used to transfer the insulating sheets into the lifting and stacking assembly (4). The transfer assembly (2) includes a transfer frame (20), a conveyor belt (28), conveyor rollers, and an adjusting drive (21). The transfer frame (20) is mounted on the frame (1). The conveyor rollers include a power roller (24), a horizontal roller (27), a vertical roller (26), and a transfer roller (25). The transfer frame (20) is provided with a horizontal chute (200) and a vertical chute (201). The power roller (24) and the transfer roller (25) are both mounted on the transfer frame (20). The horizontal roller (27) can slide in the horizontal chute (200), and the vertical roller (26) can slide in the vertical chute (201). The conveyor belt (28) is wound around the power roller (24), the horizontal roller (27), the vertical roller (26), and the transfer roller (25). The adjusting drive (21) Mounted on the transfer frame (20), the adjusting drive (21) is used to drive the vertical roller (26) to slide in the vertical slide (201); both the horizontal slide (200) and the vertical slide (201) are provided with limit rods (202), and both ends of the horizontal roller (27) and the vertical roller (26) are rotatably connected to slide seats. The limit rod (202) passes through the slide seat. The slide seat connected to the horizontal roller (27) is slidably connected to the horizontal slide (200), and the slide seat connected to the vertical roller (26) is slidably connected to the vertical slide (201). The limit rod (202) in the horizontal slide (200) is provided with a return spring (203). One end of the return spring (203) abuts against the slide seat connected to the horizontal roller (27), and the other end of the return spring (203) abuts against the horizontal slide (200).
2. A calender line take-off device according to claim 1, characterized in that: The horizontal chute (200) is located directly above the lifting and stacking assembly (4).
3. A calender line take-off device according to claim 1, characterized in that: Limiting plates (22) are provided on both sides of the transfer rack (20). The limiting plates (22) are slidably connected to the transfer rack (20) via a light rod. An adjusting screw (23) is provided on the transfer rack (20). The adjusting screw (23) is used to drive the limiting plates (22) to slide on the transfer rack (20).
4. The calender line take-off apparatus of claim 1, wherein: The transfer frame (20) is equipped with a cutting assembly (3). The cutting assembly (3) includes a transverse power slide rail (30), a lifting power slide rail (31), a longitudinal power slide rail (33), and a cutting blade (32). The longitudinal power slide rail (33) is installed on the transfer frame (20). The longitudinal power slide rail (33) is used to drive the transverse power slide rail (30) to move along the direction of the conveyor belt (28). The transverse power slide rail (30) is used to drive the lifting power slide rail (31) to move laterally. The lifting power slide rail (31) is used to drive the cutting blade (32) to rise or fall.
5. A calender line take-off apparatus according to claim 1, wherein: The lifting and stacking assembly (4) includes a platform power slide rail (42), a stacking platform (44) and a guide slide rail (43). The stacking platform (44) is installed on the frame (1) via the guide slide rail (43). The platform power slide rail (42) is installed on the frame (1) and is used to drive the stacking platform (44) to slide on the guide slide rail (43).
6. A calender line take-off apparatus according to claim 5, wherein: A platform lifting drive (40) is provided on the stacking platform (44), and a lifting platform (41) is provided above the platform lifting drive (40). The platform lifting drive (40) is used to drive the lifting platform (41) to rise or fall.
7. A calender line take-off apparatus according to claim 1, wherein: Synchronous teeth are provided on the power roller (24), horizontal roller (27) and vertical roller (26), and a synchronous belt is provided on the conveyor belt (28), which meshes with the synchronous teeth.
8. A calender line take-off apparatus according to claim 6, wherein: A scale (45) is installed on the lifting platform (41), and the scale (45) is parallel to the direction of movement of the conveyor belt (28).