一种辊式散包机的装配结构
By designing the assembly structure of the roller-type bulk packaging machine, including components such as the base frame, vertical frame, support legs, and pulley system, the problems of large footprint, high power consumption, and unstable assembly of traditional bulk packaging machines have been solved, achieving continuous feeding and discharging and stable operation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHANDONG JIEFENG MACHINERY MFG
- Filing Date
- 2025-06-13
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional rotary drum bulk packaging machines suffer from problems such as large footprint, high power consumption, small processing capacity, low level of intelligence, and uneven packaging. Furthermore, the assembly structure of roller bulk packaging machines is unstable when used in conjunction with conveyors.
Design an assembly structure for a roller-type bulk packaging machine, including components such as a base frame, vertical frame, support legs, crossbeam, frame body, panel, pulley block, and cylinder, to construct a continuous feeding and discharging channel, and use the cylinder to drive the pulley block to press the paper packages, ensuring the stability of the whole machine.
It achieves effective coordination with the conveyor, constructs a continuous feeding and discharging channel, and improves the stability of the assembly structure and the unpacking effect.
Smart Images

Figure CN224507243U_ABST
Abstract
Claims
1. An assembly structure for a roller-type bulk packaging machine, characterized in that... The components include a base frame (1), a vertical frame (2), a front support leg (3), a rear support leg (4), a base plate (5), a rear crossbeam (6), a frame body (7), a panel (8), a first rib plate (9), a pressure head (10), a pulley block (11), a pulley guide rail (12), a cylinder fixing bracket (13), a cylinder (14), a front crossbeam (15), a sub-frame (16), a secondary support leg (17), a geared motor (18), a bearing bracket (19), and a bulk packaging roller (20). Two base frames (1) are provided, and both are fixedly connected to the inner sides of the base frames (1). There is a vertical frame (2). Front support legs (3) and rear support legs (4) are fixedly connected to the front and rear sides of the bottom frame (1), respectively. Base plates (5) are fixedly connected to the bottom ends of the front support legs (3) and the rear support legs (4). A rear crossbeam (6) is fixedly connected between the top ends of the two rear support legs (4) and the top ends of the two vertical frames (2). A frame body (7) is fixedly connected between the rear crossbeam (6) and the top ends of the two vertical frames (2). A panel (8) is welded to the hollow position of the frame body (7). A first rib (9) is provided on the panel (8). (9) Welded to the frame (7), a pulley guide rail (12) is provided on the frame (7), and a pulley group (11) is provided on the pressure head (10). The pulley group (11) and the pulley guide rail (12) cooperate with each other. A cylinder fixing bracket (13) is fixedly connected to the vertical frame (2). One end of the cylinder (14) is fixedly connected to the cylinder fixing bracket (13), and the other end of the cylinder (14) is connected to the pulley group (11) or the pressure head (10). A front crossbeam (15) is fixedly connected between the front ends of the two bottom frames (1). The front crossbeam (15) and the vertical frame (2) are connected to each other. The bottom ends are connected, and a sub-frame (16) is provided above one of the bottom frames (1). The sub-frame (16) is fixedly connected to the side end of the vertical frame (2). The sub-support leg (17) at the bottom end of the sub-frame (16) is fixedly connected to the bottom frame (1). A reduction motor (18) is fixedly connected to the sub-frame (16). A bearing frame (19) is fixedly connected to the vertical frame (2). A bearing is provided on the bearing frame (19). A loose packaging roller (20) is rotatably connected to the bearing. The loose packaging roller (20) is located above the front crossbeam (15) and between the two vertical frames (2).
2. A roll bale opener according to claim 1 wherein, The front crossbeam (15) and the vertical sides of the two vertical frames (2) together form a trough-shaped feed inlet. The feed inlet is located in a vertical plane. The bulk roll (20) is located at the feed inlet. A feed conveyor is provided in front of the feed inlet.
3. The assembly of a roll bale opener according to claim 1, wherein The horizontal sides of the rear crossbeam (6) and the two vertical frames (2) together form a trough-shaped discharge port. The discharge port is located in the horizontal plane and is located below the frame (7). A discharge conveyor is provided below the discharge port.
4. The assembly of a roll bale opener according to claim 1, characterized in that The bulk packaging roller (20) includes a main shaft (21), a bulk packaging roller (22), a connecting plate (23), a round nut (24), a mounting base (25), a second base plate (26), bolts (27), and a blade (28). The main shaft (21) passes through the bulk packaging roller (22). A connecting plate (23) is provided on both sides of the bulk packaging roller (22). The bulk packaging roller (22) is locked to the main shaft (21) by the connecting plate (23) on both sides and the round nut (24). The main shaft (21) is connected to the bearing. Several mounting bases (25) are provided on the outer wall of the bulk packaging roller (22). The blade (28) is fixedly connected to the second base plate (26). The second base plate (26) is fastened to the mounting base (25) by several bolts (27).
5. The assembly of a roll bale opener according to claim 1, wherein, The blade (28) includes a concave cutting edge (29) on its front side and a convex cutting edge (30) on its rear side.
6. The assembly of a roll bale opener according to claim 1, wherein A second rib (31) is welded between vertically adjacent frames.