Carrying mechanism of automatic flower basket barrel tank production line

By combining the can-holding mechanism, guiding mechanism, and opening and closing mechanism, the problem of unequal distance conveying of basket cans is solved, and equidistant conveying of basket cans is achieved, meeting the continuous production requirements of the production line.

CN223962818UActive Publication Date: 2026-03-03TIANJIN WEITIAN COATING PACKING CONTAINER
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

The existing conveyor belt cannot quickly adjust the distance between the baskets and cans to equal distance during the conveying process, which makes it impossible for the equipment at the next station to produce continuously at fixed time intervals.

Method used

The design employs a combination of a can-holding mechanism, a guiding mechanism, an opening and closing mechanism, and a conveying mechanism. Through the coordination of the opening and closing mechanism and the conveying mechanism, the opening and closing action of the can-holding clamp is synchronized with the feeding action, redistributing the position of the basket bucket cans. Furthermore, by aligning the inner clamping groove of the can-holding clamp with the outer curvature of the basket bucket cans, equidistant conveying is achieved.

Benefits of technology

It enables the rapid adjustment of the spacing between flower baskets and cans to equal distances during the conveying process, meeting the continuous production needs of the equipment at the next workstation at fixed time intervals.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a carrying mechanism of an automatic flower basket barrel tank production line, relates to the technical field of flower basket barrel tank production, and aims to solve the technical problem that the distance between flower basket barrel tanks cannot be quickly adjusted to be equal in the conveying process and then the flower basket barrel tanks cannot be conveyed to the next station by an existing conveying belt. The bottom of the can holding mechanism is fixedly connected with a guide mechanism, an opening and closing mechanism and a carrying mechanism are fixedly installed on the guide mechanism, a workbench is arranged above the carrying mechanism, the workbench and the guide mechanism are both fixedly installed on the equipment frame, the can holding mechanism comprises a can holding clamp, and the can holding clamp is fixedly connected with the opening and closing mechanism. The opening and closing state of the opening and closing mechanism is matched with the carrying state of the carrying mechanism, and the can holding mechanism is driven to achieve the opening and closing action and the feeding action of the can holding clamps at the same time. And the positions of the flower basket barrels and tanks can be redistributed in the carrying process.
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Description

Technical Field

[0001] This utility model relates to the field of flower basket barrel and can manufacturing technology, and more specifically, to a conveying mechanism for an automatic production line of flower basket barrels and cans. Background Technology

[0002] Basket containers are specially designed containers primarily used for storing and transporting various liquid or solid materials. During the production process, basket containers are typically moved efficiently between different production stages using conveyor belts or other transport mechanisms.

[0003] While existing conveyor belts can continuously, stably, and quickly transport basket cans from one workstation to the next, they cannot quickly adjust the spacing between basket cans to equal distances during the transport process before transporting them to the next workstation. Transporting basket cans with unequal spacing one by one to the next workstation is not conducive to the equipment at the next workstation to carry out periodic and continuous production at fixed time intervals. In view of this, we propose a conveying mechanism for an automated production line of basket cans. Utility Model Content

[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology, adapt to the needs of reality, and provide a conveying mechanism for an automatic production line of flower baskets and cans, so as to solve the technical problem that the existing conveyor belts cannot quickly adjust the distance between flower baskets and cans to equal distances before conveying them to the next workstation during the conveying process.

[0005] To solve the above technical problems, this utility model provides the following technical solution: a conveying mechanism for an automatic production line of flower basket buckets and cans, including a can-holding mechanism, a guide mechanism fixedly connected to the bottom of the can-holding mechanism, an opening and closing mechanism and a conveying mechanism fixedly installed on the guide mechanism, a workbench provided above the conveying mechanism, and both the workbench and the guide mechanism fixedly installed on the equipment frame;

[0006] The can-holding mechanism includes a can-holding clamp, the inner groove of which has the same arc as the outer arc of the flower basket bucket can, so that the two cans can be used together to clamp the flower basket bucket can.

[0007] The opening and closing mechanism is in coordination with the conveying mechanism in coordination with its opening and closing state.

[0008] Preferably, the can-holding mechanism includes a first connecting rod distributed on both sides of the workbench, and a plurality of can-holding clamps are installed on the first connecting rod in a straight line at equal intervals, with the clamping grooves of the can-holding clamps facing the workbench;

[0009] A second link is fixedly installed at the outer distance of the first link, and a guide mechanism is fixedly clamped at the bottom of the second link by a first fixing clamp.

[0010] Preferably, the guiding mechanism includes a guide rail seat, which is fixedly mounted on the equipment frame. A guide rail is slidably connected inside the guide rail seat, and the guide rail is fixedly clamped in a first fixing clamp.

[0011] Preferably, the opening and closing mechanism includes a double-acting cylinder, and the power output ends at both ends of the double-acting cylinder are hinged to a second fixing clamp via a hinge member, and the second fixing clamp is fixedly clamped outside the guide rail.

[0012] Preferably, the conveying mechanism includes an electric motor, the power output end of which is connected to a first crank connecting rod, the other end of which is hinged to a second crank connecting rod via a first hinge bolt, and the other end of which is hinged to a connector via a second hinge bolt. Both ends of the connector are fixedly installed on the guide rails at corresponding locations.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. This utility model uses the opening and closing mechanism in its open / closed state and the conveying mechanism in its conveying state to drive the can-holding mechanism to simultaneously perform the can-holding clamp opening and closing action and the feeding action. This can redistribute the position of the basket cans during the conveying process, solving the problem that the existing conveyor belt cannot quickly adjust the distance between the basket cans to equal distance before conveying them to the next workstation.

[0015] 2. This utility model also makes it easier for the can clamps to work together to hold the basket cans by matching the arc of the inner clamping groove of the can clamp with the outer arc of the basket can. This further solves the problem that the existing conveyor belt cannot quickly adjust the distance between basket cans to equal distance before conveying them to the next work station during the conveying process. Attached Figure Description

[0016] Figure 1 This is a side view of the structure of this utility model;

[0017] Figure 2 This is a top view of the structure of this utility model;

[0018] Figure 3 This is a schematic diagram of the opening and closing mechanism of this utility model;

[0019] Figure 4 This is a schematic diagram of the conveying mechanism of this utility model.

[0020] The labels in the diagram are as follows: 1. Can holding mechanism; 2. Guiding mechanism; 3. Opening and closing mechanism; 4. Conveying mechanism; 5. Workbench;

[0021] 101. Can clamp; 102. First connecting rod; 103. Second connecting rod; 104. First fixing clamp;

[0022] 201. Guide rail; 202. Guide rail base;

[0023] 301. Double-acting cylinder; 302. Hinge; 303. Second fixing clamp;

[0024] 401. Electric motor; 402. First crank connecting rod; 403. First hinge bolt; 404. Second crank connecting rod; 405. Second hinge bolt; 406. Connecting component. Detailed Implementation

[0025] like Figures 1 to 4 As shown, this utility model relates to a conveying mechanism for an automatic production line of flower basket cans, including a can-holding mechanism 1. A guide mechanism 2 is fixedly connected to the bottom of the can-holding mechanism 1. An opening and closing mechanism 3 and a conveying mechanism 4 are fixedly installed on the guide mechanism 2. A workbench 5 is provided above the conveying mechanism 4. The workbench 5 and the guide mechanism 2 are both fixedly installed on the equipment frame. The can-holding mechanism 1 includes a can-holding clamp 101. The arc of the inner clamping groove of the can-holding clamp 101 is consistent with the outer arc of the flower basket can, which facilitates the two clamps to cooperate and clamp the flower basket can. The opening and closing state of the opening and closing mechanism 3 is coordinated with the conveying state of the conveying mechanism 4. This utility model drives the can-holding mechanism 1 to realize the opening and closing action of the can-holding clamp 101 and the feeding action simultaneously by coordinating the opening and closing state of the opening and closing mechanism 3 with the conveying state of the conveying mechanism 4. It can redistribute the position of the flower basket can during the conveying process. Furthermore, by making the arc of the inner clamping groove of the can-holding clamp 101 consistent with the outer arc of the flower basket can, it is convenient for the two clamps to cooperate and clamp the flower basket can.

[0026] Furthermore, the can-holding mechanism 1 includes a first connecting rod 102 distributed on both sides of the workbench 5. Several can-holding clamps 101 are installed on the first connecting rod 102 in a straight line at equal intervals. The clamping grooves of the can-holding clamps 101 face the workbench 5, so that the can-holding clamps 101 can be used in pairs to clamp the flower basket bucket can.

[0027] A second link 103 is fixedly installed at the outer distance of the first link 102. The bottom of the second link 103 is fixedly clamped with a guide mechanism 2 by a first fixing clamp 104, which facilitates connection to the can-holding mechanism 1.

[0028] Furthermore, the guiding mechanism 2 includes a guide rail seat 202, which is fixedly installed on the equipment frame. A guide rail 201 is slidably connected inside the guide rail seat 202, and the guide rail 201 is fixedly clamped in the first fixing clamp 104, resulting in a good guiding effect.

[0029] Furthermore, the opening and closing mechanism 3 includes a double-acting cylinder 301. The power output ends of both ends of the double-acting cylinder 301 are hinged to a second fixing clamp 303 through a hinge 302. The second fixing clamp 303 is fixedly clamped outside the guide rail 201. The cylinder rods of the double-acting cylinder 301 extend to open the can holding mechanism 1 and retract to reset and close the can holding mechanism 1.

[0030] Furthermore, the conveying mechanism 4 includes a motor 401. The power output end of the motor 401 is connected to a first crank connecting rod 402. The other end of the first crank connecting rod 402 is hinged to a second crank connecting rod 404 via a first hinge bolt 403. The other end of the second crank connecting rod 404 is hinged to a connector 406 via a second hinge bolt 405. Both ends of the connector 406 are fixedly installed on the guide rails 201 at corresponding locations. When the end of the first crank connecting rod 402 is driven to one end, it drives the can-holding mechanism 1 to translate to one end. When the end of the first crank connecting rod 402 is driven to the other end, it drives the can-holding mechanism 1 to translate to the other end.

[0031] Working Principle: This embodiment provides a conveying mechanism for an automatic production line of flower basket cans. In use, the opening and closing mechanism 3, in its open / closed state, coordinates with the conveying mechanism 4, in its conveying state. This drives the can-holding mechanism 1 to simultaneously perform the opening and closing action of the can-holding clamp 101 and the feeding action. This allows for the redistribution of the flower basket can positions during conveying. Furthermore, by aligning the arc of the inner clamping groove of the can-holding clamp 101 with the outer arc of the flower basket can, it facilitates the clamping of the cans in pairs. Because the opening and closing mechanism 3 coordinates with the conveying mechanism 4 in its conveying state, the can-holding mechanism 1 simultaneously closes to clamp the flower basket can when it moves to one end, and simultaneously opens and lowers the flower basket can when it moves to the other end. External power supply activates the motor 401 and the opening and closing mechanism 3 via an external switch. The motor 401 drives the first crank connecting rod 402 to rotate along its transmission shaft. The other end of the first crank connecting rod 402 makes a circular motion. When the end of the first crank connecting rod 402 moves to one end, it drives the connecting piece 406, the guide rail 201 and the can holding mechanism 1 to move synchronously to one end through the transmission of the second crank connecting rod 404. Since the guide rail 201 is slidably connected in the guide rail seat 202, the can holding mechanism 1 moves to one end. When the end of the first crank connecting rod 402 moves to the other end, the can holding mechanism 1 moves to the other end. The principle is the same as above. When the double-acting cylinder 301 extends its double-end cylinder rod, it drives the hinge 302 and the second fixed clamp 303 to tilt outward as a whole. Since the second fixed clamp 303 is fixedly clamped outside the guide rail 201, the guide rail 201 rotates outward, the can holding mechanism 1 opens, and retracts to reset and close the can holding mechanism 1. The principle is the same as above. (The double-acting cylinder 301 and the motor 401 are both existing products on the market.)

[0032] The embodiments disclosed herein are preferred embodiments, but are not limited thereto. Those skilled in the art can readily grasp the spirit of this utility model based on the above embodiments and make different extensions and variations. However, as long as they do not depart from the spirit of this utility model, they are all within the protection scope of this utility model.

Claims

1. A conveying mechanism for an automated production line of flower baskets, buckets, and cans, characterized in that, It includes a can holding mechanism (1), the bottom of which is fixedly connected to a guide mechanism (2), and an opening and closing mechanism (3) and a conveying mechanism (4) are fixedly installed on the guide mechanism (2). A workbench (5) is provided above the conveying mechanism (4), and the workbench (5) and the guide mechanism (2) are both fixedly installed on the equipment frame. The can-holding mechanism (1) includes a can-holding clamp (101), the curvature of the inner clamping groove of the can-holding clamp (101) is adapted to the outer arc of the flower basket bucket can; The opening and closing mechanism (3) is in a closed state and the conveying mechanism (4) is in a conveying state.

2. The conveying mechanism of the automatic production line for flower baskets and cans according to claim 1, characterized in that, The can-holding mechanism (1) includes a first connecting rod (102) distributed on both sides of the workbench (5). A plurality of can-holding clamps (101) are installed on the first connecting rod (102) in a straight line at equal intervals. The clamping grooves of the can-holding clamps (101) face the workbench (5). A second link (103) is fixedly installed at a distance from the first link (102), and a guide mechanism (2) is fixedly clamped at the bottom of the second link (103) by a first fixing clamp (104).

3. The conveying mechanism of the automatic production line for flower baskets and cans according to claim 2, characterized in that, The guiding mechanism (2) includes a guide rail seat (202), which is fixedly installed on the equipment frame. A guide rail (201) is slidably connected inside the guide rail seat (202), and the guide rail (201) is fixedly clamped in the first fixing clamp (104).

4. The conveying mechanism of the automatic production line for flower baskets and cans according to claim 1, characterized in that, The opening and closing mechanism (3) includes a double-acting cylinder (301). The power output ends of both ends of the double-acting cylinder (301) are hinged to a second fixing clamp (303) through a hinge (302). The second fixing clamp (303) is fixedly clamped outside the guide rail (201).

5. The conveying mechanism of the automatic production line for flower baskets and cans according to claim 3, characterized in that, The conveying mechanism (4) includes a motor (401), the power output end of the motor (401) is connected to a first crank connecting rod (402), the other end of the first crank connecting rod (402) is hinged to a second crank connecting rod (404) through a first hinge bolt (403), the other end of the second crank connecting rod (404) is hinged to a connector (406) through a second hinge bolt (405), and both ends of the connector (406) are fixedly installed on the guide rail (201) at the corresponding positions.