An automatic sorting device for can bodies convenient for production

By designing the automatic can body sorting device, using multiple conveyor belt equipment and misaligned splicing boards, the automatic assembly and adjustment of cans is achieved, and the problem of automatic canned gift box packaging in the existing technology is solved, and the packaging efficiency and applicability are improved.

CN116692131BActive Publication Date: 2025-06-24ANHUI XINMEIGE PACKAGING DEV CO LTD
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Patent Information

Application Number
CN202310814583.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-04
Publication Date
2025-06-24
Estimated Expiration
2043-07-04

AI Technical Summary

Technical Problem

The prior art is difficult to realize the automated gift box packaging of canned items, especially when the types and sizes of canned items are different, and the arrangement intervals and shapes are required manually, and the high cost and complex operation of the robotic arms are not suitable for small and medium-sized enterprises.

Method used

An automatic can body sorting device for easy production is designed, including racks, conveyor belt equipment, sorting components and adjustment components. Through multiple conveyor belt equipment and misaligned splicing plates, the interception, support and combination of cans is realized, and finally assembled on the same horizontal plane, and the arrangement order and spacing are flexibly adjusted by adjusting the components.

Benefits of technology

It effectively reduces the difficulty of canned gift box packaging, improves packaging efficiency, reduces labor costs, and is suitable for small and medium-sized enterprises.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of arrangement and packaging equipment, and specifically relates to an automatic can body sorting device for facilitating production, which comprises a frame and at least two groups of conveyor belt devices. The conveyor belt devices are detachably and fixedly installed on the frame. The conveyor belt devices are evenly arranged along the height direction of the frame, and the conveyor belt devices are used for transporting the can bodies in a directional manner. It further comprises a sorting component for combining the can bodies. The sorting component is installed on the conveyor belt devices, and the sorting component corresponds to the conveyor belt devices one by one. An adjustment component is provided, which cooperates with the sorting component to adjust the parameters of the sorting component. By arranging various canned goods on multiple conveyor belt devices arranged in the height direction and intercepting, supporting and combining the canned goods through multiple splicing plates offset in the horizontal direction, the present invention effectively reduces the difficulty of gift box packaging of the canned goods.
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Description

Technical Field

[0001] The present invention belongs to the technical field of arranging and packaging equipment, and specifically relates to an automatic can body sorting device for facilitating production. Background Art

[0002] Canning is a method of storing items such as food, condiments, and tea. After various sterilization and disinfection treatments, the items are sealed in cans, thereby playing a role in extending the storage time. In our country, the habit of using canning technology to store items has continued for many years.

[0003] With the improvement of the automation level of the production line, the canning process has developed rapidly, and the assembly line operation has greatly improved the production efficiency of the canning process. After the items are sealed in cans, in most cases, a large number of cans need to be centrally sterilized and disinfected, and then the outer surfaces of the cans are cleaned and disinfected, and finally the finished products are output. In the packing link, according to the specific packaging process, in most cases, automated equipment is used to neatly arrange the finished canned products, and then the neatly arranged canned products are synchronously transferred into the box, that is, the automated packaging of the canned products is completed.

[0004] However, this packaging method is not suitable for gift box packaging. When packaging gift boxes, in order to enhance the beauty of the gift boxes, usually, according to the types, sizes, etc. of the canned products, the arrangement intervals and arrangement shapes of the canned products are adjusted. Therefore, when packaging gift boxes, manual packing is usually adopted. According to the placement slots reserved on the pre-filled foam boards, cardboard and other fillers in the gift boxes, the canned products are filled in sequence. In order to enhance the packaging efficiency and reduce the labor cost, there is also a process in the related art of using a robotic arm to replace manual labor to identify, transport, and fill the canned products. However, the robotic arm itself is expensive and difficult to operate when in use, so it is not suitable for small and medium-sized enterprises to use.

[0005] In view of this, the present invention proposes an automatic can body sorting device for facilitating production to solve the above technical problems. Summary of the Invention

[0006] In order to make up for the deficiencies of the prior art and solve the above technical problems, the present invention proposes an automatic can body sorting device for facilitating production.

[0007] The technical solution adopted by the present invention to solve its technical problems is as follows: An automatic can body sorting device for facilitating production according to the present invention includes a frame and at least two groups of conveyor belt devices. The conveyor belt devices are detachably and fixedly installed on the frame. The conveyor belt devices are evenly arranged along the height direction of the frame. The conveyor belt devices are used for transporting the can bodies in a specific direction.

[0008] It further includes a sorting component for sorting the can bodies, and the sorting component is installed on the conveyor belt device, and the sorting component corresponds to the conveyor belt device one by one;

[0009] The sorting component includes a mounting seat, the mounting seat is fixedly installed on the conveyor belt device, and the upper surface of the mounting seat is transitionally connected to the conveyor belt device;

[0010] A limiting clamping plate, the mounting seat is provided with a limiting clamping plate, the limiting clamping plate is an L-shaped plate-like structure, the limiting clamping plate is transitionally connected to the upper surface of the mounting seat, and the limiting clamping plate is used to intercept the can body;

[0011] A splicing plate and a telescopic cylinder, the bottom of the limiting clamping plate is fixedly installed with a telescopic cylinder, the telescopic cylinder is externally connected to a power source, the telescopic cylinder penetrates through the limiting clamping plate, and a splicing plate is fixedly installed on the upper surface of the limiting clamping plate, and multiple splicing plates are designed with a horizontal offset;

[0012] A guiding plate, at least two guiding plates are installed on each mounting seat, the guiding plates extend to the conveyor belt device and the limiting clamping plate, and the multiple guiding plates are arranged along the width direction of the conveyor belt device, and the guiding plates are used to guide the can bodies transported on the conveyor belt device;

[0013] An adjusting component, the adjusting component cooperates with the sorting component to adjust the parameters of the sorting component.

[0014] Preferably, the height of the upper surface of the mounting seat is higher than the conveying plane of the conveyor belt device, and balls are rotatably connected to one ends of the guiding plates away from the limiting clamping plate.

[0015] Preferably, the adjusting component includes a telescopic groove, a telescopic groove is opened at one end of the mounting seat away from the conveyor belt device, and the limiting clamping plate is slidably connected to the mounting seat through the telescopic groove;

[0016] An adjusting bolt, the adjusting bolt is threadedly connected to the mounting seat, the adjusting bolt extends into the telescopic groove, and in the initial state, the adjusting bolt abuts against the limiting clamping plate.

[0017] Preferably, the adjusting component further includes a pressing ring, the pressing ring is a square ring-like structure, the pressing ring is sleeved outside the mounting seat, and the pressing ring is elastically connected to the bottom of the mounting seat through a spring;

[0018] A sliding groove, sliding grooves are opened on the guiding plates, and the guiding plates are arranged on the pressing ring through the sliding grooves.

[0019] Preferably, the sliding grooves extend along the length direction of the conveyor belt device, and the guiding plates increase the sliding distance from the pressing ring through the sliding grooves.

[0020] Preferably, tail plates are hinged to one ends of the guide plates away from the limit clamping plates. Plug rods are elastically connected to the guide plates through springs. Fixing grooves are formed in the tail plates. In an initial state, the plug rods extend into the fixing grooves. The cross sections of the plug rods and the fixing grooves are both polygonal.

[0021] Preferably, a telescopic plate is fixedly installed at the top end of the frame. The limit clamping plate at the lowermost position is fixedly connected to the end of the telescopic plate through a guide rod. An electric slide rail is fixedly installed on the telescopic plate. A lifting rod is installed on the electric slide rail. An adsorption plate is fixedly installed at the bottom end of the lifting rod. A transfer platform is fixedly installed on one side of the frame.

[0022] Preferably, the adsorption plate is preferably an electromagnetic chuck.

[0023] Preferably, the adsorption plate is preferably a pneumatic suction cup.

[0024] The beneficial effects of the present invention are as follows:

[0025] 1. For the automatic can body sorting device for production convenience of the present invention, various canned goods are distributed on a plurality of conveyor belt devices arranged in the height direction, and through a plurality of splicing plates offset in the horizontal direction, the canned goods are intercepted, supported, and combined, and finally various canned goods are assembled on the same horizontal plane. And before arranging, the parameters of the arranging component are adjusted through the adjusting component, and finally the canned goods are flexibly combined on the same horizontal plane. Through the operation of the device, the difficulty of gift box packaging of canned goods is effectively reduced.

[0026] 2. For the automatic can body sorting device for production convenience of the present invention, under the control of a pre-set program, the lifting rod is driven to generate a pre-planned translational movement. The lifting rod is preferably an electric lifting rod, which drives the adsorption plate to generate a movement in the vertical direction. Therefore, under the action of the electric slide rail and the lifting rod, the canned goods and the gift box are assembled through the adsorption plate, thereby enhancing the convenience degree during the packaging of canned goods. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] The present invention will be further described below with reference to the accompanying drawings.

[0028] Figure 1 is a perspective view of the present invention;

[0029] Figure 2 is a partial structure diagram of the present invention;

[0030] Figure 3 is an assembly diagram of the limit clamping plate and the splicing plate;

[0031] Figure 4 is an assembly diagram of the limit clamping plate and the pressing ring;

[0032] Figure 5 It is the left view of this application;

[0033] Figure 6 It is the assembly drawing of the guide plate and the tail plate;

[0034] In the figure: 1. Frame; 11. Conveyor belt equipment; 2. Mounting seat; 21. Limit clamping plate; 22. Splicing plate; 23. Telescopic cylinder; 24. Guide plate; 3. Telescopic groove; 31. Adjusting bolt; 32. Pressure ring; 33. Sliding groove; 34. Tail plate; 4. Insert rod; 41. Fixed groove; 5. Telescopic plate; 51. Electric slide rail; 52. Lifting rod; 53. Adsorption plate; 6. Transfer platform. Specific embodiments

[0035] In order to make the technical means, creative features, achieved purposes and effects of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments.

[0036] As Figures 1 to 6 shown, an automatic can body sorting device for convenient production according to the present invention includes a frame 1 and at least two groups of conveyor belt equipment 11. The conveyor belt equipment 11 is detachably and fixedly installed on the frame 1. The conveyor belt equipment 11 is uniformly arranged along the height direction of the frame 1. The conveyor belt equipment 11 is used for transporting can bodies in a specific direction;

[0037] It further includes a sorting component for combining can bodies. The sorting component is installed on the conveyor belt equipment 11, and the sorting component corresponds to the conveyor belt equipment 11 one by one;

[0038] The sorting component includes a mounting seat 2. The mounting seat 2 is fixedly installed on the conveyor belt equipment 11. The upper surface of the mounting seat 2 is in transitional connection with the conveyor belt equipment 11;

[0039] A limit clamping plate 21. The limit clamping plate 21 is installed on the mounting seat 2. The limit clamping plate 21 is an L-shaped plate-like structure. The limit clamping plate 21 is in transitional connection with the upper surface of the mounting seat 2. The limit clamping plate 21 is used for intercepting can bodies;

[0040] A splicing plate 22 and a telescopic cylinder 23. The telescopic cylinder 23 is fixedly installed at the bottom of the limit clamping plate 21. The telescopic cylinder 23 is externally connected to a power source. The telescopic cylinder 23 penetrates through the limit clamping plate 21, and a splicing plate 22 is fixedly installed on the upper surface of the limit clamping plate 21. Multiple splicing plates 22 are designed to be offset in the horizontal direction;

[0041] A guide plate 24. At least two guide plates 24 are installed on each mounting seat 2. The guide plate 24 extends to the conveyor belt equipment 11 and the limit clamping plate 21. Multiple guide plates 24 are arranged along the width direction of the conveyor belt equipment 11. The guide plate 24 is used for guiding the can bodies transported on the conveyor belt equipment 11;

[0042] Adjusting component, which cooperates with the sorting component and is used to adjust the parameters of the sorting component;

[0043] When the canned goods that have been produced and manufactured are packaged in a gift box on the canned goods production line, by docking the conveyor belt device 11 with the canned goods transportation device, the canned goods after production are sequentially conveyed onto the conveyor belt device 11 and move forward under the drive of the conveyor belt device 11. During the forward movement of the canned goods, the sorting component intercepts and combines the canned goods, arranging and grouping canned goods of different varieties or specifications in different orders, and then assembling them with the gift box. Specifically, during the operation of the conveyor belt device 11, the canned goods are sequentially transported onto the mounting seat 2 under the guidance of the guide plate 24. Since the mounting seat 2 is transitionally connected to the conveying plane of the conveyor belt device 11, it is convenient for the canned goods to move onto the mounting seat 2. Under the continuous pushing of the subsequent canned goods, the canned goods move towards the limit clamping plate 21 and are finally intercepted by the limit clamping plate 21. By installing a sensor on the limit clamping plate 21 and connecting it to the conveyor belt device 11 under the control of a preset program, when the canned goods move onto the splicing plate 22 at the end of the limit clamping plate 21, the conveyor belt device 11 stops operating. Subsequently, the telescopic cylinder 23 is activated. In this application, the telescopic cylinder 23 is preferably an electric or hydraulic multi-stage telescopic cylinder 23. The telescopic cylinder 23 extends to push the splicing plate 22 upward. And under the control of a preset program, after multiple telescopic cylinders 23 extend, their ends are on the same horizontal plane. Since the multiple splicing plates 22 are arranged in a staggered manner on the horizontal plane, the multiple splicing plates 22 are on the same horizontal plane, thereby realizing combining the canned goods conveyed on multiple conveyor belt devices 11 in sequence, facilitating the subsequent packing process of the canned goods. At the same time, when changing different arrangement orders and arrangement methods, the arrangement component is adjusted through the adjusting component, thereby adjusting the order and spacing of multiple canned goods finally combined on the same horizontal plane.

[0044] In the present invention, multiple canned goods are distributed on multiple conveyor belt devices 11 arranged in the height direction, and through multiple splicing plates 22 staggered in the horizontal direction, the canned goods are intercepted, supported, and combined. Finally, multiple canned goods are combined on the same horizontal plane. And before arranging, the parameters of the arrangement component are adjusted through the adjusting component, and finally the canned goods are flexibly combined on the same horizontal plane. Through the operation of the device, the difficulty of gift box packaging of canned goods is effectively reduced.

[0045] As a preferred embodiment of the present invention, the height of the upper surface of the mounting seat 2 is higher than the conveying plane of the conveyor belt device 11, and balls are rotatably connected to one ends of the guide plates 24 away from the limit clamping plate 21;

[0046] By making the height of the upper surface of the mounting base 2 higher than the conveying plane of the conveyor belt device 11, and the bottom of the guide plate 24 is rotatably connected with a ball, so that the guide plate 24 is parallel to the plane of the conveyor belt device 11, and the two are connected by rolling through the ball, thereby effectively reducing the friction force given to the guide plate 24 when the conveyor belt device 11 operates and enhancing the stability of the guide plate 24.

[0047] As a preferred embodiment of the present invention, the adjustment assembly includes a telescopic groove 3. The telescopic groove 3 is opened at one end of the mounting base 2 away from the conveyor belt device 11, and the limit clamping plate 21 is slidably connected with the mounting base 2 through the telescopic groove 3;

[0048] An adjusting bolt 31, the adjusting bolt 31 is threadedly connected to the mounting base 2, the adjusting bolt 31 extends into the telescopic groove 3, and in the initial state, the adjusting bolt 31 abuts against the limit clamping plate 21;

[0049] By providing the telescopic groove 3 and the adjusting bolt 31, the limit clamping plate 21 is slidably connected with the mounting base 2. Before arranging the canned goods, after determining the sorting order and the gap, the staff twists the adjusting bolt 31 tightened in the initial state, causing the adjusting bolt 31 to separate from the limit clamping plate 21. Subsequently, the limit clamping plate 21 is manually pushed and pulled, causing the limit clamping plate 21 to slide in the telescopic groove 3, thereby adjusting the distance between the limit clamping plate 21 and the mounting base 2, so that the distance between the end of the limit clamping plate 21 and the conveyor belt device 11 is adjusted. After sequential adjustment, the positions of the ends of the multiple limit clamping plates 21 in the vertical direction are different, that is, the horizontal distance between the splicing plates 22 installed on the limit clamping plate 21 is adjusted. At this time, the adjusting bolt 31 is reversely twisted to fix the limit clamping plate 21 with the adjusting bolt 31. After the canned goods are conveyed, lifted, and combined, the distance between the multiple splicing plates 22 is adjusted, that is, the distance between multiple rows of canned goods can be adjusted.

[0050] As a preferred embodiment of the present invention, the adjustment assembly further includes a pressure ring 32. The pressure ring 32 is a square ring-shaped structure. The pressure ring 32 is sleeved outside the mounting base 2, and the pressure ring 32 is elastically connected with the bottom of the mounting base 2 through a spring;

[0051] A sliding groove 33, the sliding grooves 33 are opened on the guide plates 24, and the guide plates 24 are arranged on the pressure ring 32 through the sliding grooves 33;

[0052] By setting the pressing ring 32 and the sliding groove 33, before sorting the canned goods, according to the requirements of packaging and arrangement, manually pull the pressing ring 32, causing the pressing ring 32 to move upward along the outside of the mounting seat 2. At this time, the guide plate 24 slidably connected to the pressing ring 32 through the sliding groove 33 loses the suppression, and manually adjust the distance between the guide plates 24, thereby adjusting the distance between the canned goods moving onto the same splicing plate 22, further enhancing the adjustment effect of the arrangement distance of the canned goods.

[0053] As a preferred embodiment of the present invention, the sliding groove 33 extends along the length direction of the conveyor belt device 11, and the guide plate 24 increases the sliding distance from the pressing ring 32 through the sliding groove 33;

[0054] By extending the sliding groove 33 along the length direction of the conveyor belt device 11, since the guide plate 24 is slidably mounted on the pressing ring 32 through the sliding groove 33, extending the sliding groove 33 can adjust the position of the guide plate 24 in the length direction of the conveyor belt device 11. After adjusting the position of the limit clamping plate 21, then adjusting the position of the guide plate 24 can enhance the guiding effect of the guide plate 24 on the canned goods, resulting in enhanced standardization of the moving position of the canned goods onto the splicing plate 22.

[0055] As a preferred embodiment of the present invention, tail plates 34 are hinged to one end of the guide plates 24 away from the limit clamping plates 21. A plug rod 4 is elastically connected to the guide plates 24 through a spring. A fixing groove 41 is formed on the tail plates 34. In the initial state, the plug rod 4 extends into the fixing groove 41, and the cross-sections of the plug rod 4 and the fixing groove 41 are both polygonal;

[0056] By setting the tail plates 34 and connecting the tail plates 34 to the guide plates 24 through the plug rod 4 and the fixing groove 41, when actually adjusting the position of the guide plates 24, the position of the tail plates 34 is adjusted synchronously, causing the angle between the tail plates 34 and the guide plates 24 to change. After the angle changes, the tail plates 34 can selectively close the channels formed by multiple guide plates 24. At the same time, the inclined tail plates 34 can also play a guiding role for the canned goods. Thus, by the cooperation of the tail plates 34 and the guide plates 24, the movement path, transportation channel of the canned goods placed on the conveyor belt device 11, and the final arrangement quantity on the splicing plate 22 are adjusted, further enhancing the arrangement effect of multiple canned goods.

[0057] As a preferred embodiment of the present invention, a telescopic plate 5 is fixedly installed at the top of the frame 1. The limit clamping plate 21 at the lowermost position is fixedly connected to the end of the telescopic plate 5 through a guide rod. An electric slide rail 51 is fixedly installed on the telescopic plate 5. A lifting rod 52 is installed on the electric slide rail 51. The bottom end of the lifting rod 52 is fixedly installed with an adsorption plate 53. A transfer platform 6 is fixedly installed on one side of the frame 1;

[0058] After arranging the canned goods through the arranging components, at this time, multiple splicing plates 22 are on the same horizontal plane. Since the telescopic plate 5 and the lowermost limit clamping plate 21 are fixed by a guide rod, their edges are flush. At this time, the electric slide rail 51 on the telescopic plate 5 installed at the top of the frame 1 is activated, driving the lifting rod 52 and the suction plate 53 to move. The electric slide rail 51 consists of a fixed end and a moving end, where the fixed end is fixed on the telescopic plate 5 and the moving end is fixedly connected to the lifting rod 52. Therefore, after the electric slide rail 51 is activated, under the control of a pre-set program, it drives the lifting rod 52 to generate a pre-planned translational movement. The lifting rod 52 is preferably an electric lifting rod 52, driving the suction plate 53 to generate a movement in the vertical direction. Therefore, under the action of the electric slide rail 51 and the lifting rod 52, the canned goods and the gift box are assembled through the suction plate 53, thereby enhancing the convenience during the packaging of the canned goods.

[0059] As a preferred embodiment of the present invention, the suction plate 53 is preferably an electromagnetic chuck;

[0060] In this embodiment, the suction plate 53 is preferably an electromagnetic chuck. When the canned goods are made of ferromagnetic material, the electric slide rail 51 and the lifting rod 52 drive the suction plate 53 to directly adsorb the canned goods on the splicing plate 22, and then transport them to the transfer platform 6. Preferably, the transfer platform 6 is connected to the gift box conveyor line. Therefore, during the process of the suction plate 53 adsorbing the canned goods, the two can be directly combined, enhancing the packaging convenience of the canned goods.

[0061] As a preferred embodiment of the present invention, the suction plate 53 is preferably a pneumatic suction cup;

[0062] In this embodiment, the suction plate 53 is preferably a pneumatic suction cup. When assembling the canned goods and the gift box, the suction plate 53 can be used to adsorb and transport the canned goods, and can also be used to adsorb and transport the gift box, enhancing the diversity of the combination methods.

[0063] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.

Claims

1. An automatic sorting device for can bodies convenient for production, comprising a frame (1) and at least two sets of conveyor belt devices (11). The conveyor belt devices (11) are detachably and fixedly installed on the frame (1). The conveyor belt devices (11) are uniformly arranged along the height direction of the frame (1), and the conveyor belt devices (11) are used for transporting can bodies in a directional manner. It is characterized in that: It further includes a sorting component for combining can bodies. The sorting component is installed on the conveyor belt device (11), and the sorting component corresponds to the conveyor belt device (11) one by one. The sorting component includes a mounting seat (2). The mounting seat (2) is fixedly installed on the conveyor belt device (11), and the upper surface of the mounting seat (2) is in transitional connection with the conveyor belt device (11). A limit clamping plate (21). The limit clamping plate (21) is installed on the mounting seat (2). The limit clamping plate (21) is an L-shaped plate-like structure body. The limit clamping plate (21) is in transitional connection with the upper surface of the mounting seat (2), and the limit clamping plate (21) is used for intercepting can bodies. A splicing plate (22) and a telescopic cylinder (23). The telescopic cylinder (23) is fixedly installed at the bottom of the limit clamping plate (21). The telescopic cylinder (23) is externally connected to a power source. The telescopic cylinder (23) penetrates through the limit clamping plate (21), and a splicing plate (22) is fixedly installed on the upper surface of the limit clamping plate (21). Multiple splicing plates (22) are designed with a horizontal offset. A guide plate (24). At least two guide plates (24) are installed on each mounting seat (2). The guide plate (24) extends to the conveyor belt device (11) and the limit clamping plate (21). Multiple guide plates (24) are arranged along the width direction of the conveyor belt device (11), and the guide plate (24) is used for guiding the can bodies transported on the conveyor belt device (11). An adjustment component, which cooperates with the sorting component to adjust the parameters of the sorting component. The adjustment component includes a telescopic groove (3). A telescopic groove (3) is opened at one end of the mounting seat (2) away from the conveyor belt device (11). The limit clamping plate (21) is slidably connected to the mounting seat (2) through the telescopic groove (3). An adjusting bolt (31). The adjusting bolt (31) is threadedly connected to the mounting seat (2). The adjusting bolt (31) extends into the telescopic groove (3), and in the initial state, the adjusting bolt (31) abuts against the limit clamping plate (21). The adjustment component further includes a pressing ring (32). The pressing ring (32) is a square ring-shaped structure body. The pressing ring (32) is sleeved outside the mounting seat (2), and the pressing ring (32) is elastically connected to the bottom of the mounting seat (2) through a spring. A sliding groove (33). Sliding grooves (33) are opened on the guide plates (24), and the guide plates (24) are arranged on the pressing ring (32) through the sliding grooves (33).

2. The automatic sorting device for can bodies convenient for production according to claim 1, wherein: The height of the upper surface of the mounting seat (2) is higher than the conveying plane of the conveyor belt device (11). Ball bearings are rotatably connected to one ends of the guide plates (24) away from the limit clamping plate (21).

3. An automatic sorting device for can bodies convenient for production according to claim 1, characterized in that: The sliding groove (33) extends along the length direction of the conveyor equipment (11), and the guiding plate (24) increases the sliding distance from the pressing ring (32) through the sliding groove (33).

4. An automatic sorting device for can bodies convenient for production according to claim 3, characterized in that: Tail plates (34) are hinged to one ends of the guiding plates (24) far away from the limit clamping plates (21). Plug rods (4) are elastically connected to the guiding plates (24) through springs. Fixing grooves (41) are formed in the tail plates (34). In an initial state, the plug rods (4) extend into the fixing grooves (41), and the cross sections of the plug rods (4) and the fixing grooves (41) are both polygonal.

5. An automatic sorting device for can bodies convenient for production according to claim 4, characterized in that: A telescopic plate (5) is fixedly installed at the top end of the frame (1). The lowermost limit clamping plate (21) is fixedly connected to the end of the telescopic plate (5) through a guide rod. An electric slide rail (51) is fixedly installed on the telescopic plate (5). A lifting rod (52) is installed on the electric slide rail (51). An adsorption plate (53) is fixedly installed at the bottom end of the lifting rod (52). A transfer platform (6) is fixedly installed on one side of the frame (1).

6. The automatic sorting device for the can body convenient for production according to claim 5, wherein: The adsorption plate (53) is an electromagnetic chuck.

7. An automatic sorting device for can bodies convenient for production according to claim 5, characterized in that: The adsorption plate (53) is a pneumatic suction cup.

Citation Information

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