Bottle cap packaging production line

By designing a bottle cap packaging production line, using the method of horizontally stacking bottle caps, and utilizing lifting lines, feeding slides and material transfer components to achieve automatic palletizing of bottle caps, the problem of tipping caused by vertical stacking of bottle caps is solved, and the packaging efficiency and automation level are improved.

CN223421121UActive Publication Date: 2025-10-10ZHONGSHAN XINGKE AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202423076536.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-10-10
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

In the prior art, bottle caps stacked vertically are prone to tipping over during plastic sealing, making it difficult to achieve high-speed automated packaging. In addition, the vertically stacked bottle caps need to be grabbed or dropped into a support cylinder one by one, which limits packaging efficiency.

Method used

A bottle cap packaging production line is designed, including a loading device, a first feeding conveyor line, a stacking device and a packaging device. A horizontal bottle cap stack structure is adopted. The bottle caps are stacked horizontally through a lifting line, a feeding slide and a material transfer assembly, and a belt conveyor line and a drop hopper are used to realize automatic palletizing of the bottle caps. Finally, the packaging device performs plastic sealing packaging.

Benefits of technology

The horizontal stacking of bottle caps is realized, which facilitates the transportation and packaging of subsequent processes, improves the packaging efficiency and structural complexity, and meets the needs of high-speed automation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bottle cap packaging production line which comprises a feeding device, a first feeding conveying line, a stacking device and a packaging device. The feeding device is used for providing bottle caps; a plurality of transversely arranged first feeding stations are arranged on the first feeding conveying line at intervals; the stacking device is in butt joint between the feeding device and the first feeding conveying line and used for stacking the bottle caps into a transverse bottle cap stack on a first feeding station. The packaging device is in butt joint with the discharging end of the first feeding conveying line and used for conducting plastic packaging on the bottle cap stacks. By means of the structure, the bottle caps can be stacked in the transverse state, conveying and packaging of the later-stage working procedure are facilitated, the packaging efficiency and the structural complexity are greatly improved, and the use requirement is met.
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Description

Technical Field

[0001] The utility model relates to the field of packaging equipment, in particular to a bottle cap packaging production line. Background Art

[0002] Some bottled products need to be opened before use, such as canned yellow peaches and canned pickles. When packaging, the bottle caps are first stacked and then plastic-sealed. In the prior art, vertical stacking is adopted. However, one side of the bottle caps is concave so that they can dock with the bottle body. It is precisely this concave side that makes the vertical stacking easy to topple over, and a support cylinder is required. This stacking structure has the following disadvantages:

[0003] 1. The vertical stacking state is very difficult to seal, and it is also difficult to achieve high-speed automated packaging;

[0004] 2. Vertical stacking requires the use of a material transfer component to grab the bottle caps one by one and then palletize them, or the use of a material feeding component to drop the bottle caps one by one into a support cylinder for palletizing, which also limits the efficiency of packaging;

[0005] Therefore, a bottle cap packaging production line is badly in need of to solve the above problems. Utility Model Content

[0006] The utility model aims to solve at least one of the technical problems in the prior art. To this end, the utility model proposes a bottle cap packaging production line.

[0007] An embodiment of the present invention solves the technical problem by adopting a technical solution: a bottle cap packaging production line, comprising a loading device, a first feeding conveyor line, a palletizing device and a packaging device;

[0008] The feeding device is used to provide bottle caps;

[0009] A plurality of horizontal first feeding stations are arranged at intervals on the first feeding conveyor line;

[0010] The palletizing device is connected between the loading device and the first feeding conveyor line, and is used to stack the bottle caps into a horizontal stack on the first feeding station;

[0011] The packaging device is connected to the discharge end of the first feeding conveyor line and is used for plastic-sealing the bottle cap stacks.

[0012] As one of the preferred embodiments of the present invention, the loading device includes a feeding hopper, a lifting line, a feeding chute and a first material moving assembly;

[0013] The feed hopper is used to store bottle caps;

[0014] The feeding end of the lifting line is connected to the feeding hopper to lift the bottle caps to a high place;

[0015] The feeding slide is connected to the discharge end of the lifting line to arrange the bottle caps into rows;

[0016] The first material transfer assembly is connected between the feeding slide and the palletizing device, and is used to transfer the bottle caps to the palletizing device row by row.

[0017] As one of the preferred embodiments of the present invention, the first material moving assembly includes a material moving box and a first driving assembly, and the material moving box has a side end opening and a lower end opening;

[0018] The end of the feeding slideway has an upper open end;

[0019] The side opening of the material transfer box is connected to the discharge port of the feeding slide, and the lower opening is connected to the upper opening of the feeding slide, so that the bottle caps in the feeding slide enter the material transfer box;

[0020] The first driving assembly is connected to the material transfer box and is used to drive the material transfer box to and from between the feeding slide and the palletizing device.

[0021] As one of the preferred embodiments of the present invention, a bottle cap packaging production line also includes a supporting slide connected between the feeding slide and the palletizing device, the material transfer box is located above the supporting slide, and the height of the supporting slide gradually decreases along the feeding slide toward the palletizing device.

[0022] As one of the preferred embodiments of the present invention, the palletizing device includes a belt conveyor line, a plurality of partition rods and a plurality of drop hoppers;

[0023] The feeding end of the belt conveyor line is connected to the loading device;

[0024] The dividing rods are arranged at the discharge end of the belt conveyor line and spaced apart along the width direction of the belt conveyor line to separate a number of stacking channels;

[0025] The first feeding conveyor line is located below the palletizing channel and has an included angle α with the belt conveyor line;

[0026] The drop hopper is connected between the palletizing channel and the first feeding conveyor line;

[0027] The first feeding station can receive the bottle caps dropped from the hopper one by one when passing through the belt conveyor line, so that the bottle caps are stacked into a horizontal bottle cap pile on the first feeding station.

[0028] As one of the preferred embodiments of the present invention, a bottle cap packaging production line further includes a material partition assembly arranged between the belt conveyor line and the drop hopper, which is used to drop the bottles on the belt conveyor line into the drop hopper row by row.

[0029] As one of the preferred embodiments of the present invention, the material separation assembly includes a second driving assembly, a connecting plate and a plurality of material blocking rods;

[0030] The output end of the second driving assembly is connected to the connecting plate;

[0031] The connecting plate extends along the width direction of the belt conveyor line;

[0032] The material blocking rod is installed on the connecting plate;

[0033] The second driving assembly can drive the connecting plate to reciprocate along the width direction of the belt conveyor line, so that the blocking rod extends into the stacking channel or is withdrawn from the stacking channel.

[0034] As one of the preferred embodiments of the present invention, the packaging device includes a second feeding conveyor line, a film feeding assembly, a second material moving assembly and a heat sealing assembly;

[0035] A plurality of horizontal second feeding stations are arranged at intervals on the second feeding conveyor line;

[0036] The film feeding assembly is used to provide the packaging film located above the second feeding station;

[0037] The second material transfer assembly is used to transfer the bottle cap stack on the first feeding station to the second feeding station and press it onto the packaging film;

[0038] The heat sealing component is used for heat-sealing the packaging film so that the packaging film covers the bottle cap stack.

[0039] As one of the preferred embodiments of the present invention, the film feeding assembly includes a first film storage roller, a second film storage roller, a first film feeding roller and a second film feeding roller;

[0040] The first film storage roller and the first film delivery roller are located on one side of the heat sealing assembly and are used to provide the first film body;

[0041] The second film storage roller and the second film delivery roller are located on the other side of the heat sealing assembly and are used to provide a second film body;

[0042] The heat sealing assembly is used to heat seal the ends of the first film body and the second film body to form a packaging film.

[0043] As one of the preferred embodiments of the present invention, a bottle cap packaging production line further includes a label distributing device and a third material transfer component. The label distributing device is used to provide labels, and the third material transfer component is used to transfer the labels one by one to the packaging film.

[0044] The beneficial effects of the present utility model are as follows: a bottle cap packaging production line comprises a loading device, a first feeding conveyor line, a stacking device and a packaging device; the loading device is used to provide bottle caps; a plurality of horizontal first feeding stations are arranged at intervals on the first feeding conveyor line; the stacking device is connected between the loading device and the first feeding conveyor line, and is used to stack the bottle caps on the first feeding station into a horizontal bottle cap stack; the packaging device is connected to the discharge end of the first feeding conveyor line, and is used to plastic-seal the bottle cap stack; through the above structure, the bottle caps can be stacked in a horizontal state, which is convenient for transportation and packaging in the subsequent process, greatly improving the packaging efficiency and the complexity of the structure, and meeting the use requirements. BRIEF DESCRIPTION OF THE DRAWINGS

[0045] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments in conjunction with the following drawings, in which:

[0046] Figure 1 This is a first structural schematic diagram of a bottle cap packaging production line;

[0047] Figure 2 This is a second structural schematic diagram of a bottle cap packaging production line;

[0048] Figure 3 This is a partial structural diagram of a bottle cap packaging production line;

[0049] Figure 4 for Figure 3 A partial enlarged view of area A in the middle;

[0050] Figure 5 for Figure 3 A partial enlarged view of the middle B area;

[0051] Figure 6 It is a structural schematic diagram of the packaging device;

[0052] Figure 7 It is a cross-sectional view of part of the packaging device structure. DETAILED DESCRIPTION

[0053] This section will describe in detail the specific embodiments of the present invention. The preferred embodiments of the present invention are shown in the accompanying drawings. The purpose of the accompanying drawings is to supplement the description of the text part of the specification with graphics, so that people can intuitively and vividly understand each technical feature and overall technical solution of the present invention, but it cannot be understood as a limitation on the scope of protection of the present invention.

[0054] In the description of this utility model, "above," "below," and "within" are understood to be exclusive of the number indicated, while "above," "below," and "within" are understood to be inclusive of the number indicated. The use of "first" and "second" is solely for the purpose of distinguishing technical features and is not to be construed as indicating or implying relative importance, or implicitly specifying the number or order of the technical features indicated.

[0055] In the description of the present invention, it should be understood that descriptions involving orientations, such as up, down, front, back, left, right, etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on the present invention.

[0056] In this utility model, unless otherwise expressly defined, terms such as "disposed," "installed," and "connected" should be interpreted broadly. For example, they may refer to direct connection or indirect connection through an intermediate medium; fixed connection or detachable connection or integral molding; mechanical connection; internal communication between two components or interaction between two components. Those skilled in the art can reasonably determine the specific meanings of these terms in this utility model based on the specific content of the technical solution.

[0057] Reference Figures 1 to 7 , a bottle cap packaging production line, including a loading device 100, a first feeding conveyor line 200, a palletizing device 300 and a packaging device 400;

[0058] The feeding device 100 is used to provide bottle caps;

[0059] The first feeding conveyor line 200 is provided with a plurality of horizontal first feeding stations at intervals;

[0060] The palletizing device 300 is connected between the loading device 100 and the first feeding conveyor line 200, and is used to stack the bottle caps on the first feeding station into a horizontal stack of bottle caps;

[0061] The packaging device 400 is connected to the discharge end of the first feeding conveyor line 200 and is used to perform plastic-sealing packaging on the bottle cap stacks.

[0062] 1)Reference Figures 1-3In some embodiments, the feeding device 100 comprises a feeding hopper 110, a lifting line 120, a feeding slide 130, and a first transferring assembly 140; the feeding hopper 110 is used for storing bottle caps; the feeding end of the lifting line 120 is connected to the feeding hopper 110, and is used for lifting the bottle caps to a high position; the feeding slide 130 is connected to the discharging end of the lifting line 120, and is used for arranging the bottle caps in a row; the first transferring assembly 140 is connected between the feeding slide 130 and the stacking device 300, and is used for transferring the bottle caps to the stacking device 300 row by row.

[0063] Specifically, the bottle caps are placed in the feeding hopper 110, are lifted to a high position by the lifting line 120, and then enter the feeding slide 130 from the discharging end of the lifting line 120, wherein the feeding slide 130 comprises a first linear end 131, an S-shaped section 132, and a second linear section 133 connected in sequence, the second linear section 133 is connected to the stacking device 300, and the bottle caps are arranged in a row in the second linear section 133 and are transferred to the stacking device 300 in the form of a whole row by the first transferring assembly 140.

[0064] 2) With reference to Figures 1-3 Further, the first transferring assembly 140 comprises a transferring box 141 and a first driving assembly 142, the transferring box 141 has a side opening and a lower opening; the end of the feeding slide 130 has an upper opening; the side opening of the transferring box 141 is connected to the discharging opening of the feeding slide 130, and the lower opening is connected to the upper opening of the feeding slide 130, so that the bottle caps in the feeding slide 130 enter the transferring box 141; the first driving assembly 142 is connected to the transferring box 141, and is used for driving the transferring box 141 to reciprocate between the feeding slide 130 and the stacking device 300.

[0065] Specifically, the upper opening of the end of the feeding slide 130 is formed by the second linear section 133, that is, the transferring box 141 is located above the second linear section 133, the bottle caps are arranged in a row in the space enclosed by the transferring box 141 and the second linear section 133, and are scraped by the transferring box 141 to the stacking device 300 under the driving of the first driving assembly 142, specifically, to the belt conveying line 310.

[0066] 3) With reference to Figures 1-3 In some embodiments, a bottle cap packaging production line further comprises a supporting slide plate 500 connected between the feeding slide 130 and the stacking device 300, the transferring box 141 is located above the supporting slide plate 500, and the height of the supporting slide plate 500 gradually decreases along the feeding slide 130 towards the stacking device 300.

[0067] Specifically, the supporting slide 500 is connected between the second straight segment 133 and the palletizing device 300 (belt conveyor line 310), and serves as a supporting bridge for the bottle caps in the process of the transfer box 141 scraping the bottle caps from the second straight segment 133 to the palletizing device 300. Furthermore, the height of the supporting slide 500 is gradually lowered along the feeding slide 130 toward the palletizing device 300, so that after the transfer box 141 scrapes the bottle caps into the palletizing device 300, there is a height difference between the bottle caps and the transfer box 141, which will not hinder the resetting of the transfer box 141.

[0068] 4)Reference Figures 1-5 In some embodiments, the palletizing device 300 includes a belt conveyor line 310, a plurality of dividing rods 320, and a plurality of dropping hoppers 330; the feeding end of the belt conveyor line 310 is connected to the loading device 100; the dividing rods 320 are arranged at the discharging end of the belt conveyor line 310 and are spaced apart along the width direction of the belt conveyor line 310 to separate a plurality of palletizing channels 340; the first feeding conveyor line 200 is located below the palletizing channels 340 and has an angle α with the belt conveyor line 310; the dropping hopper 330 is connected between the palletizing channels 340 and the first feeding conveyor line 200; the first feeding station can receive the bottle caps dropped from the dropping hopper 330 one by one when passing through the belt conveyor line 310, so that the bottle caps are stacked into a horizontal bottle cap stack on the first feeding station.

[0069] Specifically, after the first material moving assembly 140 transfers the bottle caps to the belt conveyor line 310, the belt conveyor line 310 drives the bottle caps to move forward until each row of bottle caps enters the corresponding stacking channel 340, and then falls into the corresponding drop hopper 330 one by one, and finally falls onto the first feeding conveyor line 200 below the drop hopper 330; specifically, while the bottle caps fall into the drop hopper 330, the first feeding conveyor line 200 also moves forward continuously. For example, when the first feeding conveyor line 200 drives the first first feeding station thereon to pass through the first drop hopper 330, due to the angle α between the first feeding conveyor line 200 and the belt conveyor line 310, The first bottle cap will be arranged at the first position of the first first feeding station; when the first feeding conveyor line 200 drives the first first feeding station thereon to pass through the second drop hopper 330, the second bottle cap will be arranged at the second position of the first first feeding station through the second drop hopper 330; when the first feeding conveyor line 200 drives the first first feeding station thereon to pass through the third drop hopper 330, the third bottle cap will be arranged at the third position of the first first feeding station... until the required quantity is stacked; it should be noted that baffles are provided at the front and rear ends of the drop hopper 330 to prevent the bottle caps from tipping forward or backward.

[0070] 5)Reference Figures 1-5In some embodiments, a bottle cap packaging production line also includes a material partitioning assembly 600 arranged between the belt conveyor line 310 and the drop hopper 330, which is used to drop the rows on the belt conveyor line 310 into the drop hopper 330; as a preferred embodiment of the material partitioning assembly 600, the material partitioning assembly 600 includes a second drive assembly 610, a connecting plate 620 and a plurality of material blocking rods 630; the output end of the second drive assembly 610 is connected to the connecting plate 620; the connecting plate 620 extends along the width direction of the belt conveyor line 310; the material blocking rod 630 is installed on the connecting plate 620; the second drive assembly 610 can drive the connecting plate 620 to reciprocate along the width direction of the belt conveyor line 310, so that the material blocking rod 630 extends into the stacking channel 340 or is pulled out in the stacking channel 340.

[0071] Specifically, at the first moment, the second drive assembly 610 drives the connecting plate 620 to drive the blocking rod 630 to be withdrawn from the palletizing channel 340, thereby removing the obstruction to the movement of the bottle caps in the palletizing channel 340, so that the bottle caps can smoothly enter the drop hopper 330; at the second moment, the second drive assembly 610 drives the connecting plate 620 to drive the blocking rod 630 to enter the palletizing channel 340, thereby blocking the movement of the bottle caps in the palletizing channel 340, thereby preventing the bottle caps from falling into the drop hopper 330 and affecting the arrangement of the bottle caps on the first feeding station.

[0072] 6)Reference Figures 1-5 In some embodiments, the first feeding conveyor line 200 includes a first chain loop component 210 and a plurality of first supporting rods 220 spaced apart on the first chain loop component 210 , and two adjacent first supporting rods 220 constitute a first feeding station.

[0073] 7)Reference Figures 1-2 and Figures 6-7 In some embodiments, the packaging device 400 includes a second feeding conveyor line 410, a film feeding assembly 420, a second material moving assembly 430 and a heat sealing assembly 440; a plurality of horizontal second feeding stations are arranged at intervals on the second feeding conveyor line 410; the film feeding assembly 420 is used to provide a packaging film located above the second feeding station; the second material moving assembly 430 is used to transfer the stack of bottle caps on the first feeding station to the second feeding station and press them on the packaging film; the heat sealing assembly 440 is used to heat seal the packaging film so that the packaging film covers the stack of bottle caps.

[0074] Specifically, the second feeding conveyor line 410 is parallel to the first feeding conveyor line 200 and adopts the same structure, that is, the second feeding conveyor line 410 includes a second chain circulation component and a plurality of second supporting rods spaced apart on the second chain circulation component, and two adjacent second supporting rods constitute a second feeding station; the working process of the packaging device 400 is as follows: the film feeding component 420 first conveys the packaging film to the top of the second feeding station, and the heat sealing component 440 performs the first heat sealing as the first side end seal of the packaging bag, and then the second material moving component 430 transfers the stack of bottle caps stacked on the first feeding conveyor line 200 to the sealed packaging film, so that the packaging film is pressed against the second feeding station under the action of the gravity of the bottle cap stack, and then the heat sealing component 440 performs the second heat sealing as the second side end seal of the packaging bag, thereby completing the heat sealing of the bottle cap stack; it should be noted that the front and rear end openings of the bottle cap stack can be heat sealed by the second heat sealing component, or can be shrunk by an overheating shrinking furnace.

[0075] 9)Reference Figures 1-2 and Figures 6-7 In some embodiments, the film feeding assembly 420 includes a first film storage roller 421, a second film storage roller 422, a first film feeding roller 423 and a second film feeding roller 424; the first film storage roller 421 and the first film feeding roller 423 are located on one side of the heat sealing assembly 440, for providing a first film body; the second film storage roller 422 and the second film feeding roller 424 are located on the other side of the heat sealing assembly 440, for providing a second film body; the heat sealing assembly 440 is used to heat seal the first film body and the second film body at their ends to form a packaging film.

[0076] Specifically, at the first moment, the first film feed roller 423 and the second film feed roller 424 respectively feed the film bodies on the first film storage roller 421 and the second film storage roller 422 from both sides of the second feeding station, and then the heat sealing component 440 performs the first heat sealing, and then the bottle cap stack is placed on the sealed packaging film. It should be noted that the second side end seal of the previous bottle cap stack serves as the first side end seal of the next bottle cap stack, and the cycle is repeated.

[0077] 10)Reference Figures 1-2 In some embodiments, a bottle cap packaging production line further includes a label dispensing device 700 and a third material transfer assembly 800. The label dispensing device 700 is used to provide labels, and the third material transfer assembly 800 is used to transfer the labels one by one to the packaging film. The packaging of the bottle cap stack also needs to be accompanied by a corresponding production label, which is marked with the production date, production batch number, product purpose, etc.

[0078] Specifically, the label distribution device 700 provides labels one by one. After the heat sealing component 440 seals the first side end of the packaging film, the third material transfer component 800 transfers the label to the packaging film with the first side end sealed, and then the second material transfer component 430 transfers the bottle cap stack to the packaging film and presses it against the label, and finally performs the second side end sealing.

[0079] 11)Reference Figures 1-2 In some embodiments, the film feeding assembly 420, the second material moving assembly 430 and the heat sealing assembly 440 are provided in two groups and are spaced apart along the length direction of the second feeding conveyor line 410; by providing two groups of mechanisms to match the efficiency of the feeding process of the bottle cap stack with the efficiency of the packaging process of the bottle cap stack, it is beneficial to improve the packaging efficiency of the bottle cap stack.

[0080] 12)Reference Figures 1-2 In some embodiments, a discharging conveying device 900 is further included, which is connected to the discharging end of the packaging device 400 and is used to discharge and convey the packaged bottle cap stacks.

[0081] 13) The advantage of the present invention is that the bottle caps can be stacked in a horizontal position through the above structure, which is convenient for transportation and packaging in the subsequent process, greatly improving the packaging efficiency and structural complexity, and meeting the use requirements.

[0082] Of course, the present invention is not limited to the above-mentioned embodiments. Those skilled in the art may make equivalent modifications or substitutions without violating the spirit of the present invention. These equivalent modifications and substitutions are all included in the scope defined by the claims of this application.

Claims

1. A bottle cap packaging production line, characterized by: It comprises a loading device (100), a first feeding conveyor line (200), a palletizing device (300) and a packaging device (400); The feeding device (100) is used to provide bottle caps; A plurality of horizontal first feeding stations are arranged at intervals on the first feeding conveyor line (200); The stacking device (300) is connected between the loading device (100) and the first feeding conveyor line (200) and is used to stack the bottle caps on the first feeding station into a horizontal bottle cap stack; The packaging device (400) is connected to the discharge end of the first feeding conveyor line (200) and is used to perform plastic-sealing packaging on the bottle cap stacks.

2. The bottle cap packaging production line according to claim 1, characterized in that: The loading device (100) includes a feeding hopper (110), a lifting line (120), a feeding chute (130) and a first material moving assembly (140); The feed hopper (110) is used to store bottle caps; The feeding end of the lifting line (120) is connected to the feeding hopper (110) to lift the bottle caps to a high position; The feeding slideway (130) is connected to the discharge end of the lifting line (120) and is used to arrange the bottle caps into rows; The first material transfer assembly (140) is connected between the feeding slideway (130) and the palletizing device (300) and is used to transfer the bottle caps to the palletizing device (300) row by row.

3. The bottle cap packaging production line according to claim 2, characterized in that: The first material moving assembly (140) comprises a material moving box (141) and a first driving assembly (142), wherein the material moving box (141) has a side end opening and a lower end opening; The end of the feeding slideway (130) has an open upper end; The side opening of the material transfer box (141) is docked with the discharge port of the feeding chute (130), and the lower opening is docked with the upper opening of the feeding chute (130), so that the bottle caps in the feeding chute (130) can enter the material transfer box (141); The first driving assembly (142) is connected to the material transfer box (141) and is used to drive the material transfer box (141) to move back and forth between the feeding slide (130) and the palletizing device (300).

4. The bottle cap packaging production line according to claim 3, characterized in that: The invention also includes a supporting slide (500) connected between the feeding slide (130) and the palletizing device (300), the material transfer box (141) is located above the supporting slide (500), and the height of the supporting slide (500) gradually decreases along the feeding slide (130) toward the palletizing device (300).

5. The bottle cap packaging production line according to claim 1, characterized in that: The palletizing device (300) comprises a belt conveyor line (310), a plurality of partition rods (320) and a plurality of drop hoppers (330); The feeding end of the belt conveyor line (310) is connected to the loading device (100); The dividing rods (320) are arranged at the discharge end of the belt conveyor line (310) and are spaced apart along the width direction of the belt conveyor line (310) to separate a plurality of palletizing channels (340); The first feeding conveyor line (200) is located below the palletizing channel (340) and has an included angle α with the belt conveyor line (310); The drop hopper (330) is connected between the palletizing channel (340) and the first feeding conveyor line (200); The first feeding station can receive the bottle caps dropped from the drop hopper (330) one by one when passing through the belt conveyor line (310), so that the bottle caps are stacked into a horizontal bottle cap pile on the first feeding station.

6. The bottle cap packaging production line according to claim 5, characterized in that: It also includes a material separation assembly (600) arranged between the belt conveyor line (310) and the drop hopper (330), which is used to drop the materials on the belt conveyor line (310) into the drop hopper (330) row by row.

7. The bottle cap packaging production line according to claim 6, characterized in that: The material separation assembly (600) includes a second driving assembly (610), a connecting plate (620) and a plurality of material blocking rods (630); The output end of the second driving component (610) is connected to the connecting plate (620); The connecting plate (620) extends along the width direction of the belt conveyor line (310); The material blocking rod (630) is installed on the connecting plate (620); The second driving assembly (610) can drive the connecting plate (620) to reciprocate along the width direction of the belt conveyor line (310) so that the blocking rod (630) extends into the stacking channel (340) or is withdrawn from the stacking channel (340).

8. The bottle cap packaging production line according to claim 1, characterized in that: The packaging device (400) includes a second feeding conveyor line (410), a film feeding assembly (420), a second material moving assembly (430) and a heat sealing assembly (440); A plurality of transverse second feeding stations are arranged at intervals on the second feeding conveyor line (410); The film feeding assembly (420) is used to provide a packaging film located above the second feeding station; The second material transfer component (430) is used to transfer the bottle cap stack on the first feeding station to the second feeding station and press it onto the packaging film; The heat sealing assembly (440) is used to heat seal the packaging film so that the packaging film covers the bottle cap stack.

9. The bottle cap packaging production line according to claim 8, characterized in that: The film delivery assembly (420) includes a first film storage roller (421), a second film storage roller (422), a first film delivery roller (423) and a second film delivery roller (424); The first film storage roller (421) and the first film delivery roller (423) are located on one side of the heat sealing assembly (440) and are used to provide a first film body; The second film storage roller (422) and the second film delivery roller (424) are located on the other side of the heat sealing assembly (440) and are used to provide a second film body; The heat sealing assembly (440) is used to heat seal the first film body and the second film body at their ends to form the packaging film.

10. The bottle cap packaging production line according to claim 8, characterized in that: It also includes a label distributing device (700) and a third material transfer component (800), wherein the label distributing device (700) is used to provide labels, and the third material transfer component (800) is used to transfer the labels one by one to the packaging film.