Can sealing and transferring device for bowl-shaped cans
By designing a sealing and transferring device that includes a feeding conveyor belt, a discharging conveyor belt, a processing table, and a turntable, the problems of complex transfer of bowl-shaped cans and large space occupation are solved, achieving automated transfer and cost reduction.
Patent Information
- Application Number
- CN202520703892.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-04-15
AI Technical Summary
The transfer structure of the bowl-shaped can between various processes is complex, occupies a large production space, and increases production costs.
Design a can sealing and transfer device including a feeding conveyor belt, a discharging conveyor belt, a processing table, a turntable, and a guide plate. The automatic transfer of bowl-shaped cans between different processing devices is achieved through the cooperation of the guide plate and the turntable. The feeding and discharging conveyor belts are set on the same horizontal line to make reasonable use of space.
It enables automatic transfer of bowl-shaped cans between different processing devices, reducing production space occupation and lowering production costs.
Smart Images

Figure CN223919806U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a bowl -shaped can's sealing can transfer device. BACKGROUND
[0002] Many foods in life adopt the packing mode of canning, and the shapes of can bodies are various, for example, the popular "bowl swallow" adopts bowl-shaped cans for packing; bowl-shaped cans need to be sealed after being canned, and processes such as nitrogen filling and top cover installation are needed, the transfer structure between processes is complex, the production space is too large, and the production cost is increased invisibly. CONTENT OF THE UTILITY MODEL
[0003] In view of the deficiencies existing in the above problems, the utility model provides a bowl-shaped can's sealing can transfer device.
[0004] In order to achieve the above object, the utility model provides a bowl-shaped can's sealing can transfer device, including spacing arrangement's feeding conveyor belt, discharge conveyor belt, processing platform between feeding conveyor belt and discharge conveyor belt, be equipped with guide plate between feeding conveyor belt and discharge conveyor belt, the processing platform top is equipped with the first rotating disc for feeding on the side close to feeding conveyor belt, the processing platform top is equipped with the second rotating disc for covering and sealing can assembly on the side close to discharge conveyor belt, bowl-shaped can on feeding conveyor belt is transferred into first rotating disc by feeding guide disc and the cooperation of guide plate, bowl-shaped can on first rotating disc is transferred into second rotating disc by the cooperation of transition guide disc and guide plate, bowl-shaped can on second rotating disc is transferred into discharge conveyor belt by the cooperation of discharge guide disc and guide plate.
[0005] As the further improvement of the utility model, the edge of feeding guide disc is uniformly processed limit slot for accommodating bowl-shaped can along the circumferential direction, the side of guide plate towards feeding guide disc is processed feeding guide slot and is concentric with feeding guide disc, the outer wall of bowl-shaped can in limit slot is in contact with the inner wall of feeding guide slot, the edge of transition guide disc is uniformly processed limit slot I along the circumferential direction, the side of guide plate towards transition guide disc is processed transition guide slot and is concentric with transition guide disc, the outer wall of bowl-shaped can in transition guide disc is in contact with the inner wall of limit slot I, the edge of discharge guide disc is uniformly processed limit slot II along the circumferential direction, the side of guide plate towards discharge guide disc is processed discharge guide slot and is concentric with discharge guide disc, the outer wall of bowl-shaped can in discharge guide disc is in contact with the inner wall of limit slot II.
[0006] As a further improvement of the utility model, the first rotating disc is uniformly provided with first positioning blocks in the circumferential direction near the edge, the second rotating disc is uniformly provided with second positioning blocks in the circumferential direction near the edge, the first positioning blocks and the second positioning blocks are uniformly half circular ring structures and open on the outside, the central arc length between adjacent limiting grooves, the central arc length between adjacent first positioning blocks, the central arc length between adjacent limiting grooves I, the central arc length between adjacent second positioning blocks and the central arc length between adjacent limiting grooves II are matched, and the tangential velocities of the centers of the limiting grooves, the centers of the first positioning blocks, the centers of the limiting grooves I, the centers of the second positioning blocks and the centers of the limiting grooves II are matched.
[0007] As a further improvement of the utility model, the first rotating disc is uniformly provided with first positioning blocks in the circumferential direction near the edge, the second rotating disc is uniformly provided with second positioning blocks in the circumferential direction near the edge, the first positioning blocks and the second positioning blocks are uniformly half circular ring structures and open on the outside, the central arc length between adjacent limiting grooves, the central arc length between adjacent first positioning blocks, the central arc length between adjacent limiting grooves I, the central arc length between adjacent second positioning blocks and the central arc length between adjacent limiting grooves II are matched, and the tangential velocities of the centers of the limiting grooves, the centers of the first positioning blocks, the centers of the limiting grooves I, the centers of the second positioning blocks and the centers of the limiting grooves II are matched.
[0008] As a further improvement of the utility model, the first rotating disc is uniformly provided with first positioning blocks in the circumferential direction near the edge, the second rotating disc is uniformly provided with second positioning blocks in the circumferential direction near the edge, the first positioning blocks and the second positioning blocks are uniformly half circular ring structures and open on the outside, the central arc length between adjacent limiting grooves, the central arc length between adjacent first positioning blocks, the central arc length between adjacent limiting grooves I, the central arc length between adjacent second positioning blocks and the central arc length between adjacent limiting grooves II are matched, and the tangential velocities of the centers of the limiting grooves, the centers of the first positioning blocks, the centers of the limiting grooves I, the centers of the second positioning blocks and the centers of the limiting grooves II are matched.
[0009] As a further improvement of the utility model, the first rotating disc is uniformly provided with first positioning blocks in the circumferential direction near the edge, the second rotating disc is uniformly provided with second positioning blocks in the circumferential direction near the edge, the first positioning blocks and the second positioning blocks are uniformly half circular ring structures and open on the outside, the central arc length between adjacent limiting grooves, the central arc length between adjacent first positioning blocks, the central arc length between adjacent limiting grooves I, the central arc length between adjacent second positioning blocks and the central arc length between adjacent limiting grooves II are matched, and the tangential velocities of the centers of the limiting grooves, the centers of the first positioning blocks, the centers of the limiting grooves I, the centers of the second positioning blocks and the centers of the limiting grooves II are matched.
[0010] As a further improvement of the utility model, the first rotating disc is uniformly provided with first positioning blocks in the circumferential direction near the edge, the second rotating disc is uniformly provided with second positioning blocks in the circumferential direction near the edge, the first positioning blocks and the second positioning blocks are uniformly half circular ring structures and open on the outside, the central arc length between adjacent limiting grooves, the central arc length between adjacent first positioning blocks, the central arc length between adjacent limiting grooves I, the central arc length between adjacent second positioning blocks and the central arc length between adjacent limiting grooves II are matched, and the tangential velocities of the centers of the limiting grooves, the centers of the first positioning blocks, the centers of the limiting grooves I, the centers of the second positioning blocks and the centers of the limiting grooves II are matched.
[0011] The utility model discloses the beneficial effect is:
[0012] The device structure layout is reasonable, and the bowl-shaped tank is automatically transferred between different processing devices, the bowl-shaped tank can be completed loading and capping and sealing tank assembly on one processing table, and the feeding conveyor belt and the discharging conveyor belt are arranged on the same horizontal line, so that space is reasonably utilized and waste is avoided. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a kind of bowl-shaped tank's sealing tank transfer device's plan view of the utility model;
[0014] Figure 2 is a top view of the guide plate 4;
[0015] Figure 3 is a working schematic view of the sealing and transferring device for the bowl-shaped can of the utility model;
[0016] Figure 4 is a front view of the bowl-shaped can 14;
[0017] Figure 5 is a top view of the bowl-shaped can 14.
[0018] In the figure: 1, feeding conveyor belt; 2, feeding screw; 21, spiral conveying groove; 22, support; 23, motor; 3, feeding guide disc; 31, limiting groove; 4, guide plate; 41, feeding guide groove; 42, transition guide groove; 43, discharging guide groove; 5, processing table; 6, side limiting plate; 7, first rotary disc; 71, first positioning block; 8, transition guide disc; 81, limiting groove I; 9, limiting plate I; 10, second rotary disc; 101, second positioning block; 11, discharging guide disc; 111, limiting groove II; 12, discharging conveyor belt; 13, side baffle; 14, bowl-shaped can. DETAILED DESCRIPTION
[0019] As Figure 1As shown, the utility model discloses a bowl -shaped tank's sealing tank transfer device, including the interval arrangement of feeding conveyor belt 1, the discharge conveyor belt 12, be located between feeding conveyor belt 1 and the processing platform 51 of discharge conveyor belt 12, be equipped with the guide plate 4 between feeding conveyor belt 1 and discharge conveyor belt 12, the side of feeding conveyor belt 1 of processing platform 51 is equipped with first rotating disc 7 for feeding, the side of discharge conveyor belt 12 of processing platform 51 is equipped with second rotating disc 10 for covering and sealing tank assembly, bowl -shaped tank 14 on feeding conveyor belt 1 is by feeding conveyor belt 1 under the cooperation of feeding guide disc 3 and guide plate 4 and is transferred into first rotating disc 7, bowl -shaped tank 14 on first rotating disc 7 is by first rotating disc 7 under the cooperation of transition guide disc 8 and guide plate 4 and is transferred into second rotating disc 10, bowl -shaped tank 14 on second rotating disc 10 is by second rotating disc 10 under the cooperation of discharge guide disc 11 and guide plate 4 and is transferred into discharge conveyor belt 12, the edge of feeding guide disc 3 along the circumferential direction evenly processes limit slot 31 for accommodating bowl -shaped tank 14, the side of guide plate 4 towards feeding guide disc 3 processes feeding guide slot 41 and is concentric with feeding guide disc 3 and is equipped, the outer wall of bowl -shaped tank 14 in limit slot 31 and feeding guide slot 41 inner wall contact, the edge of transition guide disc 8 along the circumferential direction evenly processes limit slot I 81, the side of guide plate 4 towards transition guide disc 8 processes transition guide slot 42 and is concentric with transition guide disc 8 and is equipped, the outer wall of bowl -shaped tank 14 in transition guide disc 8 and limit slot I 81 inner wall contact, the edge of discharge guide disc 11 along the circumferential direction evenly processes limit slot II 111, the side of guide plate 4 towards discharge guide disc 11 processes discharge guide slot 43 and is concentric with discharge guide disc 11 and is equipped, the outer wall of bowl -shaped tank 14 in discharge guide disc 11 and limit slot II 111 inner wall contact, first rotating disc 7 is close to the edge along the circumferential direction and is equipped with first locating block 71, second rotating disc 10 is close to the edge along the circumferential direction and is equipped with second locating block 101, first locating block 71 and second locating block 101 evenly half circular ring structure and outside opening, the central arc length between adjacent limit slot 31, the central arc length between adjacent first locating block 71, the central arc length between adjacent limit slot I 81, the central arc length between adjacent second locating block 101, the central arc length between adjacent limit slot II 111 match, the central arc length between limit slot 31, the central arc length between first locating block 71, the central arc length between limit slot I 81, the central arc length between second locating block 101, the central arc length between limit slot II 111 match, first rotating disc 7 outside, the top of feeding guide disc 3 is equipped with side limit plate 6, and the end of side limit plate 6 extends to the direction of rotation of first rotating disc 7, and the outside of second rotating disc 10, the top of transition guide disc 8 is equipped with limit plate I 9, and the end of limit plate I 9 extends to the direction of rotation of transition guide disc 8, and feeding conveyor belt 1, discharge conveyor belt 12, processing platform 51, first rotating disc 7, second rotating disc 10 are on the same horizontal plane,The distance between the guide plate 4, the feeding guide disc 3, the transition guide disc 8, the discharging guide disc 11 and the processing table 51 is less than the height of the bowl-shaped tank 14, the feeding conveying belt 1 is provided with a feeding screw rod 2 on the side opposite to the feeding guide disc 3, the outer circumferential surface of the feeding screw rod 2 is provided with a spiral conveying groove 21, the two ends of the feeding screw rod 2 are rotationally connected with a support 22 and are driven to rotate by a motor 23, the feeding screw rod 2 controls the bowl-shaped tank 14 to be loaded at equal intervals and is transferred in cooperation with the feeding guide disc 3, the feeding conveying belt 1 and the discharging conveying belt 12 are both provided with side baffles 13, the distance between the side baffles 13 arranged oppositely matches the width of the bowl-shaped tank 14.
[0020] The device has reasonable structure layout, can automatically realize the transfer process of the bowl-shaped tank between different processing devices, can complete the loading and the sealing and assembling of the bowl-shaped tank on one processing table, and can reasonably utilize the space by arranging the feeding conveying belt and the discharging conveying belt on the same horizontal line, thereby avoiding waste.
[0021] In specific use, the utility model is described in combination with the drawings for the convenience of understanding the utility model;
[0022] When working, the bowl-shaped tanks are arranged on the feeding conveying belt and move from right to left, the bowl-shaped tanks are arranged at equal intervals along the spiral conveying groove on the feeding screw rod when passing through the feeding screw rod, the bowl-shaped tanks are just clamped into the limiting grooves of the feeding guide disc after moving out of the feeding screw rod, the bowl-shaped tanks are moved from the feeding conveying belt to the processing table by the feeding guide disc cooperating with the guide plate, and then are moved to the first turntable by the processing table, the limiting grooves of the feeding guide disc correspond to the first positioning blocks of the first turntable, the bowl-shaped tanks are transferred into the first positioning blocks of the first turntable, the outer side of the first turntable is provided with a side limiting plate to prevent the bowl-shaped tanks from sliding out of the first turntable with the feeding guide disc, and the feeding guide disc is provided with a feeding mechanism above; when the bowl-shaped tanks complete loading, the bowl-shaped tanks are first transferred from the first turntable to the processing table by the transition guide disc cooperating with the guide plate, and then are transferred to the second positioning blocks of the second turntable by the processing table, the outer side of the second turntable is provided with a limiting plate I to prevent the bowl-shaped tanks from sliding out of the second turntable with the transition guide disc, the second turntable is provided with a sealing and assembling mechanism above, and the bowl-shaped tanks complete sealing and assembling on the second turntable, then the bowl-shaped tanks are first transferred from the second turntable to the processing table by the discharging guide disc cooperating with the guide plate, and then are transferred to the discharging conveying belt by the processing table to be discharged.
[0023] The above merely describes the preferred embodiments of the utility model and is not used for limiting the utility model, and the utility model can be variously changed and varied for the person skilled in the art. Any modification, equivalent replacement, improvement and the like within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A sealing and transferring device for a bowl-shaped can, characterized in that: The system includes a feeding conveyor belt (1) spaced horizontally, a discharging conveyor belt (12), and a processing table (51) located between the feeding conveyor belt (1) and the discharging conveyor belt (12). A guide plate (4) is provided between the feeding conveyor belt (1) and the discharging conveyor belt (12) and above the processing table (51). A first turntable (7) is provided on the processing table (51) near the feeding conveyor belt (1) for feeding materials, and a second turntable (10) is provided on the processing table (51) near the discharging conveyor belt (12) for sealing and assembling cans. The bowl-shaped can (14) on the feeding conveyor belt (1) is transferred from the feeding conveyor belt (1) to the first turntable (7) with the cooperation of the feeding guide plate (3) and the guide plate (4). The bowl-shaped can (14) on the first turntable (7) is transferred from the first turntable (7) to the second turntable (10) with the cooperation of the transition guide plate (8) and the guide plate (4). The bowl-shaped can (14) on the second turntable (10) is transferred from the second turntable (10) to the discharge conveyor belt (12) with the cooperation of the discharge guide plate (11) and the guide plate (4).
2. The sealing and transferring device for a bowl-shaped can according to claim 1, characterized in that: The feed guide plate (3) has a circumferentially uniformly machined limiting groove (31) at its edge to accommodate the bowl-shaped tank (14). The guide plate (4) has a feed guide groove (41) machined on the side facing the feed guide plate (3) and is concentrically arranged with the feed guide plate (3). The outer wall of the bowl-shaped tank (14) in the limiting groove (31) is in contact with the inner wall of the feed guide groove (41). The transition guide plate (8) has a circumferentially uniformly machined limiting groove I (81) at its edge. The guide plate (4) has a transition groove machined on the side facing the transition guide plate (8). The guide groove (42) is concentrically arranged with the transition guide disk (8). The outer wall of the bowl-shaped tank (14) in the transition guide disk (8) is in contact with the inner wall of the limiting groove I (81). The limiting groove II (111) is uniformly machined along the circumferential direction at the edge of the discharge guide disk (11). The discharge guide groove (43) is machined on the side of the guide plate (4) facing the discharge guide disk (11) and is concentrically arranged with the discharge guide disk (11). The outer wall of the bowl-shaped tank (14) in the discharge guide disk (11) is in contact with the inner wall of the limiting groove II (111).
3. The sealing and transfer device for a bowl-shaped can according to claim 2, characterized in that: The first turntable (7) has a first positioning block (71) evenly arranged along the circumferential direction near its edge, and the second turntable (10) has a second positioning block (101) evenly arranged along the circumferential direction near its edge. The first positioning block (71) and the second positioning block (101) have a uniform semi-circular structure and are open on the outside. The arc length of the center between adjacent limiting grooves (31), the arc length of the center between adjacent first positioning blocks (71), the arc length of the center between adjacent limiting groove I (81), the arc length of the center between adjacent second positioning blocks (101), and the arc length of the center between adjacent limiting groove II (111) are matched. The linear velocity of the center of the limiting groove (31), the center of the first positioning block (71), the center of the limiting groove I (81), the center of the second positioning block (101), and the center of the limiting groove II (111) are matched.
4. The sealing and transferring device for a bowl-shaped can according to claim 1, characterized in that: A side limiting plate (6) is provided on the outside of the first turntable (7) and above the feed guide plate (3). The end of the side limiting plate (6) extends in the rotation direction of the first turntable (7). A limiting plate I (9) is provided on the outside of the second turntable (10) and above the transition guide plate (8). The end of the limiting plate I (9) extends in the rotation direction of the transition guide plate (8).
5. The sealing and transferring device for a bowl-shaped can according to claim 1, characterized in that: The feeding conveyor belt (1), the discharging conveyor belt (12), the processing table (51), the first turntable (7), and the second turntable (10) are on the same horizontal plane. The distance between the guide plate (4), the feeding guide plate (3), the transition guide plate (8), the discharging guide plate (11), and the processing table (51) is less than the height of the bowl-shaped tank (14).
6. The sealing and transferring device for a bowl-shaped can according to claim 1, characterized in that: A feeding screw (2) is provided on the side of the feeding conveyor belt (1) opposite to the feeding guide disc (3). The feeding screw (2) has a spiral conveying groove (21) machined on its outer circumference. The two ends of the feeding screw (2) are rotatably connected to the bracket (22) and driven to rotate by the motor (23). The feeding screw (2) controls the cup-shaped tank (14) to feed materials at equal intervals and cooperates with the feeding guide disc (3) for transfer.
7. The sealing and transfer device for a bowl-shaped can according to claim 1, characterized in that: Side baffles (13) are provided on both sides of the feeding conveyor belt (1) and both sides of the discharging conveyor belt (12), and the spacing between the oppositely arranged side baffles (13) matches the width of the bowl-shaped tank (14).