Canned product conveying device

CN224691802UActive Publication Date: 2026-08-28GUANGDONG BEWAGA FLAVORING TECH CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202521177662.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-06-09
Publication Date
2026-08-28
Estimated Expiration
2035-06-09

AI Technical Summary

Technical Problem

[0002]在罐装产品生产行业,罐盖的封装质量直接关系到产品的密封性、保质期以及整体品质;早期的压盖设备多采用简单的冲压式或平板式压盖机构,这种方式难以保证罐盖在压盖过程中均匀受力

Benefits of technology

[0016]本实用新型所涉及的罐装产品输送装置,压盖组件通过压盖升降件驱动压盖件下降,使压盖辊与罐盖接触,随着瓶身移动,压盖辊滚动施压,能使罐盖均匀受力,与瓶口初步紧密贴合,有效固定罐盖。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224691802U_ABST
    Figure CN224691802U_ABST
Patent Text Reader

Abstract

The utility model discloses a canned product conveying device, including the conveyance component for conveying bottle body, install the blanking component on the conveyance component, the cover component for placing the can cover in the bottle mouth, the cover component, and the screw cap component, the cover component includes the cover elevating piece of installing on the conveyance component, the cover piece of connecting on the cover elevating piece, the cover piece includes the cover fixed plate and a plurality of cover rollers of installing on the cover elevating piece, the cover fixed plate is oppositely arranged, and both ends of each cover roller are rotatably connected with one of the cover fixed plate, the canned product conveying device of the utility model, and the cover component is driven to descend through the cover elevating piece of cover component, makes the cover roller contact with the can cover, and along with the bottle body movement, the cover roller rolls and presses, can make the can cover uniform stress, and the bottle mouth is preliminarily closely attached, and effectively fixes the can cover.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of canned product processing technology, and in particular to a canned product conveying device. Background Technology

[0002] In the canned product manufacturing industry, the sealing quality of can lids directly affects the product's sealing performance, shelf life, and overall quality. Early capping equipment often used simple stamping or flat-plate capping mechanisms, which made it difficult to ensure uniform force distribution on the can lids during the capping process. Can lids may deform due to excessive localized force, or uneven force may result in inconsistent fit with the bottle opening, thus affecting the product's sealing performance and making the product more susceptible to external factors during storage and transportation, ultimately reducing product quality. Utility Model Content

[0003] Therefore, the purpose of this utility model is to provide a canned product conveying device.

[0004] The present invention adopts the following technical solution:

[0005] A canned product conveying device includes a conveying assembly for conveying the bottle body, a feeding assembly mounted on the conveying assembly, a cap dispensing assembly for placing the can cap at the bottle opening, a capping assembly, and a cap screwing assembly; the capping assembly includes a capping lifting member mounted on the conveying assembly and a capping member connected to the capping lifting member; the capping member includes a capping fixing plate mounted on the capping lifting member and a plurality of capping rollers; the capping fixing plates are arranged opposite to each other, and the two ends of each capping roller are rotatably connected to one of the capping fixing plates respectively.

[0006] Furthermore, the cap lifting component includes a lifting guide rod mounted on the conveying assembly, a lifting fixing plate mounted on the top of the lifting guide rod, a lifting cylinder mounted on the lifting fixing plate, and a lifting plate mounted on the drive rod of the lifting cylinder; the lifting plate is slidably mounted on the lifting guide rod; and the cap fixing plate is mounted on the lifting plate.

[0007] Furthermore, the cap dispensing assembly includes a cap dispensing bracket mounted on the conveying assembly, a cap dispensing slide disposed on the cap dispensing bracket, a cap dispensing cylinder mounted on the cap dispensing bracket for stacking and dispensing the can caps, an ejection cylinder mounted on the cap dispensing bracket for pushing the can caps out of the cap dispensing cylinder, and a limiting cylinder mounted on the conveying assembly for limiting the bottle body on the conveying assembly; the cap dispensing opening of the cap dispensing cylinder is positioned opposite to the cap dispensing slide; the width of the cap dispensing slide is configured to match the diameter of the can cap.

[0008] Furthermore, the feeding assembly includes a feeding bracket mounted on the conveying assembly, a feeding cylinder mounted on the feeding bracket, a stirring motor mounted inside the feeding cylinder, a stirring roller mounted on the stirring motor, a feeding funnel disposed on the feeding cylinder, and a discharge port disposed on the feeding cylinder.

[0009] Furthermore, the feeding assembly also includes a feeding channel disposed on the discharge cover bracket and a feeding funnel disposed on the feeding channel; the feeding port is disposed opposite to the feeding funnel.

[0010] Furthermore, the feeding assembly also includes a height adjusting cylinder mounted on the discharge cover bracket; the discharge funnel is mounted on the drive rod of the height adjusting cylinder.

[0011] Furthermore, the feeding assembly also includes a first bottle body fixing member installed on the discharge channel relative to the conveying assembly; the first bottle body fixing member includes a first fixing cylinder, a second fixing cylinder, a first fixing arm installed on the first fixing cylinder, and a second fixing arm installed on the second fixing cylinder; the first fixing arm is configured to cooperate with the bottle body at one end near the bottle body, and the second fixing arm is configured to cooperate with the bottle body at one end near the bottle body.

[0012] Furthermore, the capping assembly includes a capping bracket mounted on the conveying assembly, a second bottle body fixing member mounted on the capping bracket, a capping lifting member mounted on the capping bracket, and a capping member mounted on the capping lifting member; the second bottle body fixing member includes a third fixing cylinder and a fourth fixing cylinder mounted opposite to each other on the conveying assembly, a third fixing arm mounted on the third fixing cylinder, and a fourth fixing arm mounted on the fourth fixing cylinder; the third fixing arm and the fourth fixing arm are configured to cooperate with the bottle body at one end near the bottle body.

[0013] Furthermore, the cap lifting component includes a cap guide rod mounted on the cap bracket, a cap fixing plate mounted on the top of the cap guide rod, a cap cylinder mounted on the cap fixing plate, and a cap lifting platform mounted on the drive rod of the cap cylinder; the cap lifting platform is slidably mounted on the cap guide rod; and the cap component is mounted on the cap lifting platform.

[0014] Furthermore, the capping component includes a capping motor mounted on the capping lifting platform, a capping roller mounted on the drive rod of the capping motor, a capping turntable mounted on the capping roller, and a spring sleeved on the capping roller; the end of the capping turntable near the bottle cap is configured to cooperate with the bottle cap.

[0015] The beneficial effects of this utility model are as follows:

[0016] The canned product conveying device involved in this utility model has a capping assembly that drives the capping component to descend through a capping lifting component, so that the capping roller contacts the can cap. As the bottle moves, the capping roller rolls and applies pressure, which can make the can cap evenly stressed and initially tightly fit with the bottle mouth, effectively fixing the can cap. Attached Figure Description

[0017] Figure 1 This is a perspective view of a canned product conveying device according to an embodiment of the present invention;

[0018] Figure 2 for Figure 1 A three-dimensional schematic diagram of the capping assembly of a canned product conveying device;

[0019] Figure 3 for Figure 1 A three-dimensional schematic diagram of the unloading components of a canned product conveying device;

[0020] Figure 4 for Figure 1 A three-dimensional schematic diagram of the feeding and capping components of a canned product conveying device;

[0021] Figure 5 for Figure 1 Exploded view of the feeding and capping components of a canned product conveying device;

[0022] Figure 6 for Figure 1 A three-dimensional schematic diagram of the capping assembly of a canned product conveying device.

[0023] 10. Conveying assembly; 20. Feeding assembly; 30. Capping assembly; 40. Capping assembly; 50. Capping assembly; 41. Capping lifting component; 42. Capping component; 420. Capping fixing plate; 421. Capping roller; 410. Lifting guide rod; 411. Lifting fixing plate; 412. Lifting cylinder; 413. Lifting plate; 31. Capping bracket; 32. Capping slide; 33. Capping cylinder; 34. Push-out cylinder; 35. Limit cylinder; 21. Feeding bracket; 22. Feeding cylinder; 23. Mixing motor; 25. Feeding hopper; 26. Discharge port; 24. Discharge channel; 28. Discharge hopper; 29. ​​High 27. Degree Adjustment Cylinder; 270. First Bottle Body Fixing Component; 271. First Fixing Cylinder; 272. Second Fixing Cylinder; 273. Second Fixing Arm; 51. Capping Bracket; 52. Second Bottle Body Fixing Component; 53. Capping Lifting Component; 54. Capping Component; 520. Third Fixing Cylinder; 521. Fourth Fixing Cylinder; 522. Third Fixing Arm; 523. Fourth Fixing Arm; 530. Capping Guide Rod; 531. Capping Fixing Plate; 532. Capping Cylinder; 533. Capping Lifting Platform; 540. Capping Motor; 541. Capping Roller; 542. Capping Turntable; 543. Spring. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] In the description of this utility model, it should be noted that the terms "vertical direction," "up," "down," and "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0026] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or a connection through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0027] Please see Figures 1 to 6 This invention provides a canned product conveying device according to one embodiment of the present invention, comprising a conveying assembly 10 for conveying the bottle body, a feeding assembly 20 mounted on the conveying assembly 10, a cap dispensing assembly 30 for placing the can cap at the bottle opening, a capping assembly 40, and a capping assembly 50. The capping assembly 40 includes a capping lifting member 41 mounted on the conveying assembly 10 and a capping member 42 connected to the capping lifting member 41. The capping member 42 includes two capping fixing plates 420 mounted on the capping lifting member 41 and a plurality of capping rollers 421. The capping fixing plates 420 are arranged opposite to each other, and the two ends of each capping roller 421 are rotatably connected to one of the capping fixing plates 420 respectively. In this embodiment, the conveying assembly 10 is a conveyor belt. In this embodiment, a plurality of capping rollers 421 are rotatably mounted side by side on the capping fixing plates 420; the outer surface of the capping rollers 421 is provided with a flexible part; specifically, the flexible part is a rubber layer.

[0028] The working principle of the canned product conveying device of this utility model is as follows: According to the needs of the product, the feeding component 20 installed on the conveying component 10 accurately fills the required material into the bottle body; the feeding amount and speed can be adjusted according to production needs to ensure that the amount of material in each bottle body is consistent; when the bottle body moves with the conveying component 10 to the position of the cap dispensing component 30, the cap dispensing component 30 takes out the cap from the storage position and accurately places the cap on the bottle mouth so that the subsequent capping operation can be carried out smoothly; the bottle body with the placed cap continues to move to the position of the capping component 40; at this time, the capping lifting component 41 is activated, driving the capping component 42 moves downwards, causing the capping roller 421 on the capping fixing plate 420 to contact the can lid; as the bottle continues to move, the capping roller 421 rolls on the can lid, applying a certain pressure to the can lid, so that the can lid initially fits against the bottle mouth, playing a role in initially fixing the can lid; the bottle body, after initial capping, continues to move with the conveyor belt to the position of the capping assembly 50; the capping assembly 50 tightly screws the can lid onto the bottle mouth, completing the sealing process of the canned product; the canned product after capping continues to move with the conveyor assembly 10, and is finally conveyed to the designated position, where it is collected, packaged, or directly enters the next production process.

[0029] Compared to existing technologies, the canned product conveying device of this utility model uses a capping assembly 40 driven by a capping lifting component 41 to lower the capping component 42, causing the capping roller 421 to contact the can lid. As the bottle moves, the capping roller 421 rolls and applies pressure, ensuring the can lid is evenly stressed and initially tightly fitted to the bottle opening, effectively fixing the can lid and preparing it for screwing on. This method can also adapt to can lids of different shapes and sizes. All components work together, from bottle conveying, material filling, can lid placement, capping to screwing on, the entire canning process requires minimal manual intervention, reducing labor costs, improving production efficiency, and minimizing errors and mistakes caused by human factors, thus ensuring product quality. The material feeding component 20 can precisely adjust the feeding amount and speed according to production needs, ensuring that the amount of material in each bottle is consistent, which helps to ensure product consistency and standardization and meet the filling requirements of different products; the cap dispensing component 30 can accurately place the cap on the bottle mouth, providing a good precondition for subsequent capping and screw capping operations, reducing sealing problems caused by improper cap placement, and improving the product sealing quality and pass rate; the screw capping component 50 tightly screws the cap that has undergone preliminary capping onto the bottle mouth, completing high-quality sealing, ensuring the airtightness of the canned product, preventing product leakage or deterioration, and facilitating product storage and transportation.

[0030] Please refer to Figure 1 and Figure 2The cap lifting component 41 includes a lifting guide rod 410 mounted on the conveying assembly 10, a lifting fixing plate 411 mounted on the top of the lifting guide rod 410, a lifting cylinder 412 mounted on the lifting fixing plate 411, and a lifting plate 413 mounted on the drive rod of the lifting cylinder 412; the lifting plate 413 is slidably mounted on the lifting guide rod 410; and the cap fixing plate 420 is mounted on the lifting plate 413. The lifting guide rod 410 ensures the precise vertical movement of the capping component 42, avoiding uneven capping caused by lateral swaying or tilting. The lifting plate 413 slides on the lifting guide rod 410, ensuring smooth and uninterrupted vertical movement of the capping component 42, improving the stability and reliability of the equipment. The lifting cylinder 412 can precisely control the rise and fall of the capping component 42, flexibly adjusting the capping height according to different bottle neck heights and cap thicknesses, ensuring the applicability and effectiveness of the capping operation. The drive rod of the lifting cylinder 412 is connected to the lifting plate 413, and the extension and retraction of the cylinder drives the lifting plate 413 to move up and down. The current pressure cap component 42 is precisely adjusted; the lifting fixing plate 411 is installed on the top of the lifting guide rod 410, providing a stable mounting base for the lifting cylinder 412 and ensuring the stable operation of the cylinder; the pressure cap fixing plate 420 is installed on the lifting plate 413 and moves up and down with the lifting plate 413 to ensure the stability and reliability of the pressure cap component 42 during the pressure capping process; each component, such as the lifting guide rod 410, lifting fixing plate 411, lifting cylinder 412 and lifting plate 413, can be installed and maintained independently, which facilitates the adjustment and maintenance of the equipment; if a component is damaged or needs to be replaced, it can be replaced quickly, reducing downtime and improving production efficiency.

[0031] Please refer to Figures 3 to 5The cap dispensing assembly 30 includes a cap dispensing bracket 31 mounted on the conveying assembly 10, a cap dispensing slide 32 disposed on the cap dispensing bracket 31, a cap dispensing cylinder 33 mounted on the cap dispensing bracket 31 for stacking and dispensing can caps, an ejection cylinder 34 mounted on the cap dispensing bracket 31 for pushing can caps out of the cap dispensing cylinder, and a limiting cylinder 35 mounted on the conveying assembly 10 for limiting the bottle body on the conveying assembly 10; the cap dispensing opening of the cap dispensing cylinder 33 is positioned opposite to the cap dispensing slide 32; the width of the cap dispensing slide 32 is configured to match the diameter of the can cap. The width of the cap ejection chute 32 matches the diameter of the can lid, ensuring that the can lid can slide out smoothly and accurately from the cap ejection cylinder 33, avoiding jamming or skew. The cap ejection cylinder 33 is used to stack and store can lids, ensuring that the can lids can be arranged in an orderly manner, facilitating the pushing operation of the ejection cylinder 34. The ejection cylinder 34 is installed on the cap ejection bracket 31, which can precisely control the ejection action of the can lid, ensuring that each can lid can be accurately pushed from the cap ejection cylinder 33 onto the cap ejection chute 32. The cap ejection port of the cap ejection cylinder 33 is opposite to the cap ejection chute 32, ensuring that the can lid can accurately enter the chute and smoothly reach the bottle mouth position when ejected. The limiting cylinder 35 is installed on the conveying assembly 10 to limit the bottle body on the conveying assembly 10, ensuring that the bottle body is fixed in position when the cap ejection assembly 30 is operating, avoiding operation failure due to bottle movement. The design of the cap ejection assembly 30 ensures a continuous supply of can lids, improving the production efficiency of the entire conveying device. With the cooperation of automated equipment, the need for manual operation is reduced, and labor intensity and costs are lowered.

[0032] The feeding assembly 20 includes a feeding bracket 21 mounted on the conveying assembly 10, a feeding cylinder 22 mounted on the feeding bracket 21, a stirring motor 23 mounted inside the feeding cylinder 22, a stirring roller mounted on the stirring motor 23, a feeding funnel 25 disposed on the feeding cylinder 22, and a discharge port 26 disposed on the feeding cylinder 22. The feeding cylinder 22 is used to store and control the flow of materials, ensuring that materials can enter the bottle body in an orderly manner from the feeding funnel 25 and finally enter the bottle body through the discharge port 26; the design of the discharge port 26 ensures that materials can enter the bottle body accurately, avoiding waste and overflow; the stirring motor 23 drives the stirring roller to rotate inside the feeding cylinder 22, so that the materials are evenly distributed during the feeding process, avoiding blockage or clumping. This not only improves the uniformity of material feeding but also ensures that the amount of material in each bottle is consistent. The design of the feeding funnel 25 allows the material to enter the feeding cylinder 22 smoothly, avoiding material spillage or blockage during the feeding process. The continuous operation of the stirring motor 23 and the stirring roller ensures the continuous flow of material, improving the efficiency of the entire production process. The feeding assembly 20 can quickly adjust the feeding speed and quantity according to production needs to adapt to different production rhythms. The entire feeding process is controlled by automated equipment, reducing the need for manual operation and lowering labor intensity and costs. By adjusting the speed of the stirring motor 23 and the opening degree of the discharge port 26, the feeding speed and quantity can be precisely controlled according to different production needs.

[0033] The feeding assembly 20 also includes a discharge channel 24 disposed on the discharge cover bracket 31 and a discharge funnel 28 disposed on the discharge channel 24; the discharge port 26 is disposed opposite to the discharge funnel 28. The discharge channel 24 is located on the cap support 31, connecting the discharge port 26 of the feeding cylinder 22 and the discharge funnel 28, ensuring that the material enters the bottle body smoothly and steadily from the feeding cylinder 22. The design of the discharge funnel 28 allows the material to enter the bottle mouth in a concentrated and accurate manner, avoiding splashing or scattering, and ensuring that the amount of material in each bottle is consistent. The discharge channel 24 ensures the smooth flow of material throughout the entire process from the feeding cylinder 22 to the bottle body, reducing the risk of blockage and overflow. The design of the discharge funnel 28 concentrates the inflow point of the material, allowing the material to enter the bottle mouth evenly, avoiding dispersion of the material when entering the bottle mouth. The design of the discharge channel 24 and the discharge funnel 28 ensures a continuous supply of material, improving the efficiency of the entire production process. By adjusting the structure of the discharge channel 24 and the opening size of the discharge funnel 28, the feeding speed and quantity can be quickly adjusted according to production needs.

[0034] The feeding assembly 20 also includes a height adjusting cylinder 29 mounted on the cap bracket 31; the discharging funnel 28 is mounted on the drive rod of the height adjusting cylinder 29. The height adjusting cylinder 29 can precisely control the vertical position of the discharging funnel 28, ensuring that the discharging funnel 28 can accurately align with the bottle opening of each bottle; by adjusting the height of the discharging funnel 28, it can ensure that the material accurately enters the bottle opening, avoiding material splashing or scattering, and improving the filling accuracy; the adjustment function of the height adjusting cylinder 29 allows the feeding assembly 20 to adapt to bottles of different heights without changing equipment or making complex adjustments; this allows the equipment to flexibly cope with bottles of different sizes and shapes, improving the versatility and adaptability of the equipment; the height adjustment of the discharging funnel 28 ensures that the material can accurately enter the bottle opening, reducing material splashing and scattering, thereby reducing waste; by precisely controlling the position of the discharging funnel 28, it can ensure that the amount of material in each bottle is consistent, improving the material utilization efficiency.

[0035] The feeding assembly 20 also includes a first bottle body fixing member 27 mounted on the discharge channel 24 relative to the conveying assembly 10. The first bottle body fixing member 27 includes a first fixing cylinder 270, a second fixing cylinder 271, a first fixing arm 272 mounted on the first fixing cylinder 270, and a second fixing arm 273 mounted on the second fixing cylinder 271, all mounted relative to each other on the conveying assembly 10. The first fixing arm 272 is positioned near the bottle body and engages with the bottle body, and the second fixing arm 273 is positioned near the bottle body and engages with the bottle body. The first bottle body fixing member 27, driven by the first fixing cylinder 270 and the second fixing cylinder 271, ensures the stability and fixed position of the bottle body during the feeding process, preventing inaccurate filling or material overflow caused by bottle movement. The fixing of the bottle body ensures that the discharge funnel 28 can be accurately aligned with the bottle mouth, improving the accuracy and consistency of material filling. The first fixing arm 272 and the second fixing arm 273 are adjustable to accommodate bottles of different diameters. By adjusting the stroke of the first fixing cylinder 270 and the second fixing cylinder 271, it can be ensured that the fixing arm can closely fit bottles of different diameters, improving the versatility and adaptability of the equipment; enabling the equipment to flexibly handle bottles of different sizes and shapes, improving the equipment's flexibility and compatibility; the bottle fixing component ensures that the bottle is in a fixed position, reducing material splashing and scattering during the filling process, thereby reducing material waste; by precisely controlling the position of the bottle, it can be ensured that the amount of material in each bottle is consistent, improving material utilization efficiency; the rapid action of the first fixing cylinder 270 and the second fixing cylinder 271 ensures that the fixing arm can quickly clamp and release the bottle, improving the speed and efficiency of the feeding process; the design of the bottle fixing component makes the feeding process more stable, reducing production interruptions caused by bottle movement, and improving the continuity and efficiency of the entire production system.

[0036] Please refer to Figure 6The capping assembly 50 includes a capping bracket 51 mounted on the conveying assembly 10, a second bottle body fixing member 52 mounted on the capping bracket 51, a capping lifting member 53 mounted on the capping bracket 51, and a capping member 54 mounted on the capping lifting member 53; the second bottle body fixing member 52 includes a third fixing cylinder 520 and a fourth fixing cylinder 521 mounted on the conveying assembly 10, a third fixing arm 522 mounted on the third fixing cylinder 520, and a fourth fixing arm 523 mounted on the fourth fixing cylinder 521; the third fixing arm 522 and the fourth fixing arm 523 are arranged to cooperate with the bottle body at one end near the bottle body. The second bottle body fixing component 52, driven by the third fixing cylinder 520 and the fourth fixing cylinder 521, drives the third fixing arm 522 and the fourth fixing arm 523 to ensure the stability and position of the bottle body during the capping process, avoiding inaccurate capping or failure to tighten the cap properly due to bottle movement. The fixing of the bottle body ensures that the capping component 54 can be accurately aligned with the bottle mouth, improving the accuracy and consistency of capping. The third fixing arm 522 and the fourth fixing arm 523 are adjustable to accommodate bottles of different diameters. By adjusting the strokes of the third fixing cylinder 520 and the fourth fixing cylinder 521, it can be ensured that the fixing arm can closely fit bottles of different diameters, improving the versatility and adaptability of the equipment; enabling the equipment to flexibly handle bottles of different sizes and shapes, improving the equipment's flexibility and compatibility; the cap lifting component 53 can precisely control the height of the capping component 54, ensuring that the capping component 54 can accurately align with the bottle mouth and tighten the cap; the design of the capping component 54 ensures that the cap can be tightened evenly and firmly, preventing the cap from loosening or falling off; the rapid action of the third fixing cylinder 520 and the fourth fixing cylinder 521 ensures that the fixing arm can quickly clamp and release the bottle, improving the speed and efficiency of the capping process; the automated control of the bottle fixing component and the capping component 54 makes the capping process more stable, reduces production interruptions caused by bottle movement, and improves the continuity and efficiency of the entire production system.

[0037] The cap lifting component 53 includes a cap guide rod 530 mounted on the cap bracket 51, a cap fixing plate 531 mounted on the top of the cap guide rod 530, a cap cylinder 532 mounted on the cap fixing plate 531, and a cap lifting platform 533 mounted on the drive rod of the cap cylinder 532; the cap lifting platform 533 is slidably mounted on the cap guide rod 530; and the capping component 54 is mounted on the cap lifting platform 533. The capping guide rod 530 ensures accurate vertical positioning of the capping lifting platform 533 during its up-and-down movement, preventing offset or wobbling and improving capping precision. The capping fixing plate 531 is fixed to the top of the capping guide rod 530, providing a stable mounting platform for the capping cylinder 532 and ensuring smooth and reliable cylinder driving action. The capping cylinder 532 controls the up-and-down movement of the capping lifting platform 533 via a drive rod, achieving precise positioning of the capping component 54. The precise control of the cylinder ensures that the capping component 54 can accurately align with the bottle mouth, improving capping precision and consistency. The capping lifting platform 533 can slide up and down on the capping guide rod 530, and the height of the capping component 54 can be adjusted by the drive of the capping cylinder 532 to accommodate bottles of different heights, enabling the capping mechanism to rotate smoothly and reliably. The cap assembly 50 can flexibly handle bottles of different heights without requiring equipment changes or complex adjustments, improving the equipment's versatility and adaptability. Precise control of the capping cylinder 532 ensures that the capping component 54 applies capping force evenly, preventing over-tightening or over-loosening, thus improving capping quality and stability. Precise control of the capping force prevents cap damage due to excessive force, ensuring that each bottle cap is securely and properly tightened. The rapid movement of the capping cylinder 532 ensures that the capping lifting platform 533 can quickly adjust to the correct height, improving the speed and efficiency of the capping process. Automated control and precise positioning make the capping process more stable, reducing production interruptions caused by inconsistent heights and improving the continuity and efficiency of the entire production system.

[0038] The capping component 54 includes a capping motor 540 mounted on the capping lifting platform 533, a capping roller 541 mounted on the drive rod of the capping motor 540, a capping turntable 542 mounted on the capping roller 541, and a spring 543 sleeved on the capping roller 541; the capping turntable 542 is provided at one end near the bottle cap to cooperate with the bottle cap. The capping motor 540 controls the rotation of the capping roller 541 and the capping turntable 542 via its drive rod, achieving precise capping action. The precise control of the motor ensures the stability and consistency of the capping process. The capping turntable 542 cooperates with the bottle cap, ensuring that the cap is evenly and firmly screwed onto the bottle neck during the capping process. The design of the capping roller 541 and the capping turntable 542 allows the capping component 54 to adapt to bottle caps of different sizes. By adjusting the position of the capping turntable 542 or replacing it with a different size, it can handle different types of bottle caps. The spring 543, sleeved on the capping roller 541, provides a buffering and adjusting function, allowing the capping turntable 542 to slightly adjust its position during the capping process. To accommodate bottle caps and necks of different sizes; the precise control of the capping motor 540 and the buffering effect of the spring 543 ensure that the capping turntable 542 can apply capping force evenly, avoiding excessively tight or loose capping, and improving the quality and stability of capping; through precise control of the capping force and the buffering effect of the spring 543, damage to the cap due to excessive capping force can be avoided, ensuring that each bottle cap can be firmly and intactly tightened; the rapid action of the capping motor 540 ensures that the capping turntable 542 can start and stop quickly, improving the speed and efficiency of the capping process; automated control and precise capping positioning make the capping process more stable, reduce production interruptions caused by inaccurate capping, and improve the continuity and efficiency of the entire production system.

[0039] The above description merely illustrates the preferred technical solution of this utility model, and while the description is relatively specific and detailed, it should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model, and this utility model also intends to include these modifications and variations.

Claims

1. A canned product conveying device, characterized in that, The device includes a conveying assembly for conveying the bottle body, a feeding assembly mounted on the conveying assembly, a cap dispensing assembly for placing the cap at the bottle opening, a cap pressing assembly, and a cap screwing assembly; the cap pressing assembly includes a cap pressing lifting member mounted on the conveying assembly and a cap pressing member connected to the cap pressing lifting member; the cap pressing member includes a cap pressing fixing plate mounted on the cap pressing lifting member and a plurality of cap pressing rollers; the cap pressing fixing plates are arranged opposite to each other, and the two ends of each cap pressing roller are rotatably connected to one of the cap pressing fixing plates respectively.

2. The canned product conveying device according to claim 1, characterized in that, The cap lifting component includes a lifting guide rod mounted on the conveying assembly, a lifting fixing plate mounted on the top of the lifting guide rod, a lifting cylinder mounted on the lifting fixing plate, and a lifting plate mounted on the drive rod of the lifting cylinder; the lifting plate is slidably mounted on the lifting guide rod; and the cap fixing plate is mounted on the lifting plate.

3. The canned product conveying device according to claim 1, characterized in that, The cap dispensing assembly includes a cap dispensing bracket mounted on the conveying assembly, a cap dispensing slide rail mounted on the cap dispensing bracket, a cap dispensing cylinder mounted on the cap dispensing bracket for stacking and dispensing the can caps, an ejection cylinder mounted on the cap dispensing bracket for pushing the can caps out of the cap dispensing cylinder, and a limiting cylinder mounted on the conveying assembly for limiting the bottle body on the conveying assembly; the cap dispensing opening of the cap dispensing cylinder is positioned opposite to the cap dispensing slide rail; the width of the cap dispensing slide rail is configured to match the diameter of the can cap.

4. The canned product conveying device according to claim 3, characterized in that, The feeding assembly includes a feeding bracket mounted on the conveying assembly, a feeding cylinder mounted on the feeding bracket, a stirring motor mounted inside the feeding cylinder, a stirring roller mounted on the stirring motor, a feeding funnel disposed on the feeding cylinder, and a discharge port disposed on the feeding cylinder.

5. The canned product conveying device according to claim 4, characterized in that, The feeding assembly further includes a feeding channel disposed on the discharge cover bracket and a feeding funnel disposed on the feeding channel; the feeding port is disposed opposite to the feeding funnel.

6. The canned product conveying device according to claim 5, characterized in that, The feeding assembly also includes a height adjusting cylinder mounted on the discharge cover bracket; the discharge funnel is mounted on the drive rod of the height adjusting cylinder.

7. The canned product conveying device according to claim 5, characterized in that, The feeding assembly further includes a first bottle body fixing component installed on the discharge channel relative to the conveying assembly; the first bottle body fixing component includes a first fixing cylinder, a second fixing cylinder, a first fixing arm installed on the first fixing cylinder, and a second fixing arm installed on the second fixing cylinder; the first fixing arm is configured to cooperate with the bottle body at one end near the bottle body, and the second fixing arm is configured to cooperate with the bottle body at one end near the bottle body.

8. The canned product conveying device according to claim 1, characterized in that, The capping assembly includes a capping bracket mounted on the conveying assembly, a second bottle body fixing component mounted on the capping bracket, a capping lifting component mounted on the capping bracket, and a capping component mounted on the capping lifting component; the second bottle body fixing component includes a third fixing cylinder and a fourth fixing cylinder mounted opposite to each other on the conveying assembly, a third fixing arm mounted on the third fixing cylinder, and a fourth fixing arm mounted on the fourth fixing cylinder; the third fixing arm and the fourth fixing arm are configured to cooperate with the bottle body at one end near the bottle body.

9. The canned product conveying device according to claim 8, characterized in that, The capping lifting component includes a capping guide rod mounted on the capping bracket, a capping fixing plate mounted on the top of the capping guide rod, a capping cylinder mounted on the capping fixing plate, and a capping lifting platform mounted on the drive rod of the capping cylinder; the capping lifting platform is slidably mounted on the capping guide rod; and the capping component is mounted on the capping lifting platform.

10. The canned product conveying device according to claim 9, characterized in that, The capping component includes a capping motor mounted on the capping lifting platform, a capping roller mounted on the drive rod of the capping motor, a capping turntable mounted on the capping roller, and a spring sleeved on the capping roller. The capping turntable is positioned near the end of the bottle cap to cooperate with it.