Cockroach killer packaging equipment

By designing the lid processing, box body processing, lid closing and sealing mechanism of cockroach poison packaging equipment, the problems of cockroach poison box lid deformation and gnawing were solved, and a stable connection between the plastic box body and the lid was achieved, improving packaging efficiency and safety.

CN224225470UActive Publication Date: 2026-05-12ZHEJIANG LITAI INTELLIGENT MASCH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHEJIANG LITAI INTELLIGENT MASCH CO LTD
Filing Date
2025-05-16
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing cockroach bait boxes use cardboard lids that are easily deformed and degraded, and cockroaches may gnaw and damage the packaging structure. Plastic lids are more ideal, but existing equipment cannot achieve effective packaging of both the plastic box body and lid.

Method used

A cockroach bait packaging device was designed, including lid processing, box body processing, lid closing and sealing mechanism. The plastic lid and box body are connected by hot pressing or ultrasonic welding. A flipping component is used to ensure that the box body is closed with the front side facing up. An ultrasonic welding device is used for sealing.

Benefits of technology

This achieves a stable connection between the plastic lid and the box body, improving drug preservation, reducing the risk of accidental ingestion, and enhancing the efficiency and stability of packaging equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses cockroach killer packaging equipment which comprises a box cover processing mechanism, a box body processing mechanism, a cover closing mechanism and a sealing mechanism, the box cover processing mechanism comprises a box cover conveying device, a box cover unwinding component, a box cover heating component and a box cover forming component, and the box cover conveying device is provided with a box cover forming station and a box cover taking station; the box body processing mechanism comprises a box body conveying device, a box body unwinding component, a box body heating component and a box body forming component; the box body conveying device is provided with a box body forming station, a feeding station, a cover closing station and a sealing station; the cover closing mechanism conveys the box covers on the box cover taking station to the box bodies on the cover closing station. The box cover adopts the box cover processing mechanism to heat and soften a plastic roll material and is formed through the box cover forming part, the box body adopts the box body processing mechanism to heat and soften the plastic roll material and is formed through the box body forming part, the formed box cover is conveyed to the formed box body through the cover closing mechanism, and the formed box cover enters the sealing station to be sealed after being closed, so that the box cover is connected with the box body.
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Description

Technical Field

[0001] This utility model relates to an improved packaging equipment, and more particularly to a cockroach bait packaging equipment. Background Technology

[0002] Cockroach bait boxes are highly effective at attracting and killing cockroaches, and they reduce the risk of accidental ingestion by pets and children. Current cockroach bait boxes use a plastic body and a cardboard lid, sealed together by heat pressing. However, cardboard lids are prone to deformation, degradation, and damage under high temperatures and environmental conditions, affecting the preservation of the bait. Furthermore, cockroaches themselves may gnaw on the cardboard, damaging the packaging structure. Therefore, a plastic lid is more effective, but current cockroach bait packaging equipment cannot yet accommodate both the plastic body and lid. Summary of the Invention

[0003] In view of the technical problems existing in the background art, the technical problem solved by this utility model is to provide a cockroach poison packaging device with a plastic box body and a box lid.

[0004] To solve the above-mentioned technical problems, this utility model provides the following technical solution: This cockroach bait packaging equipment is characterized by comprising a lid processing mechanism, a box body processing mechanism, a lid closing mechanism, and a sealing mechanism.

[0005] The box lid processing mechanism includes a box lid conveying device, a box lid unwinding component, a box lid heating component, a box lid forming component, and a box lid traction component. The box lid conveying device is provided with a box lid forming station and a box lid unloading station.

[0006] The box processing mechanism includes a box conveying device, a box unwinding component, a box heating component, a box forming component, and a box traction component. The box conveying device is provided with a box forming station, a feeding station, a lid closing station, and a sealing station.

[0007] The lid-closing mechanism delivers the lid from the lid-retrieving station to the box body at the lid-closing station.

[0008] The sealing mechanism is located at the sealing station.

[0009] The lid of this utility model uses a lid processing mechanism to heat and soften the plastic roll material and form it through a lid forming component. The box body uses a box body processing mechanism to heat and soften the plastic roll material and form it through a box body forming component. The formed lid is sent to the formed box body through a lid closing mechanism. After the lid is closed, it enters the sealing station for sealing, so that the lid and the box body are connected.

[0010] Preferably, the box forming component includes a forming punch and a forming die.

[0011] The forming punch includes a punch base and a plurality of punches. The punches are arranged in a rectangular array on the punch base. A storage groove is provided at the center of the punch. A first protrusion is provided in the storage groove. A plurality of supporting protrusions are provided around the punch. There are channels for entering the storage groove between adjacent supporting protrusions.

[0012] The forming die includes a die base and a plurality of dies, which are matched with punches.

[0013] The molded box is surrounded by support columns and has a storage tank in the center. The cockroach bait is injected into the storage tank. The first protrusion in the storage tank increases the contact area between the bait and the box, so that the bait adheres to the storage tank. The channels between the support columns allow cockroaches to pass through.

[0014] Preferably, the forming punch is an upper die and the forming die is a lower die;

[0015] The box conveying device includes two first transmission chains, which longitudinally circulate and convey the box. The forming die is provided with several uniformly transversely mounted on the two first transmission chains.

[0016] The box processing mechanism also includes a flipping component, and a flipping station is provided between the forming station and the lid closing station.

[0017] When the molded box is formed, the front side is facing down. The flipping component flips the molded box so that the front side is facing up, which is suitable for subsequent lid closing operations.

[0018] Preferably, the flipping station is divided into a first flipping station and a second flipping station, wherein the first flipping station is provided with a first rotating shaft and the second flipping station is provided with a second rotating shaft;

[0019] The flipping component includes a first material-picking component and a second material-picking component. The first material-picking component is mounted on a first rotating shaft and moves radially relative to the first rotating shaft, and the second material-picking component is mounted on a second rotating shaft and moves radially relative to the second rotating shaft.

[0020] After the first material picker picks up the material, the first rotating shaft drives it to rotate so that the front of the formed box faces the second material picker. After the second material picker receives the formed box, the second rotating shaft drives the second material picker to rotate so that the back of the formed box faces the box conveying device and sends it to the forming die of the second flipping station, thus realizing the flipping of the formed box.

[0021] Preferably, both the box body processing mechanism and the box lid processing mechanism include a connecting rib cutting component and a slitting component, which are respectively set at the connecting rib cutting station and the slitting station. The connecting rib cutting station and the slitting station are sequentially set between the box body forming station and the feeding station or between the box lid forming station and the box lid unloading station.

[0022] The plastic roll is formed into multiple molded boxes and lids in one step by the box forming component and the lid forming component. The connecting rib cutting component cuts according to the specifications of each individual box and lid, but retains the connecting ribs to keep the multiple molded boxes and lids connected. During use, the box and lid can be separated by manually breaking or tearing the connecting ribs. According to the product packaging and sales quantity requirements, the slitting component cuts the multiple molded boxes and lids and removes excess waste material, and the number of molded boxes and lids after slitting meets the requirements.

[0023] Preferably, the box processing mechanism further includes a punching component, which is disposed between the box forming station and the connecting rib cutting station; the punching component punches away the waste material between adjacent individual boxes.

[0024] The box body processing mechanism and the box lid processing mechanism also include a waste material winding component. The slit waste material is wound up by the waste material winding component.

[0025] Preferably, the lid forming component includes an upper forming mold and a lower forming mold.

[0026] The forming upper mold includes an upper mold base and a plurality of upper molds. The upper molds are arranged in a rectangular array on the upper mold base. Each upper mold has raised ribs, and a second protrusion is provided at the center of each upper mold.

[0027] The forming lower mold includes a lower mold base and a plurality of lower molds, wherein the lower molds are matched with the upper mold;

[0028] The molding box body has several support columns, and the molding box cover has positioning ribs. The molding box cover is placed on the molding box body, and the positioning ribs cover the support columns.

[0029] Preferably, the lid closing mechanism includes a lid taking component, a lid transferring component, and a lid closing component;

[0030] The lid transfer component includes a transversely arranged conveyor belt and a transfer mold arranged on the conveyor belt. The conveyor belt is provided with a feeding station and a discharging station.

[0031] The lid picking component includes a first suction component that moves up and down, and the first suction component reciprocates between the lid picking station and the feeding station.

[0032] The closing component includes a second suction component that moves up and down, and the second suction component reciprocates between the discharge station and the closing station.

[0033] The first suction unit picks up the formed box lid from the lid-picking station and delivers it to the transfer mold at the feeding station. The conveyor belt then transports the transfer mold to the discharge station. The second suction unit delivers the formed box lid from the transfer mold to the lid-closing station. The transfer mold serves a positioning function, preventing the box lid from moving during transport and ensuring that it is accurately delivered to the discharge station, where it is finally placed precisely on the formed box body.

[0034] Preferably, the lid conveying device and the box body conveying device are longitudinally conveyed, the lid picking station and the feeding station are arranged side by side laterally, and the first suction element moves longitudinally in a straight line.

[0035] The discharge station and the cover closing station are arranged in the same row longitudinally, and the second suction component moves laterally in a straight line.

[0036] The first and second suction components can achieve feeding by simply moving in a straight line and lifting up and down. The conveying stroke is short, the operation is simple, and the efficiency is high.

[0037] Preferably, the transfer mold reciprocates between the feeding station and the discharging station.

[0038] The box lid material handling component includes a longitudinal guide component and a first driving component that drives the first suction component to move longitudinally.

[0039] The closing component includes a lateral guide component and a second driving component that drives the second suction component to move laterally.

[0040] The sealing mechanism is an ultrasonic welding device, which includes a welding head.

[0041] The molded box cover is welded to the top of the support column. Attached Figure Description

[0042] Figure 1 This is a perspective view of the present invention.

[0043] Figure 2 This is a top view of the present invention.

[0044] Figure 3 This is a schematic diagram of the lid closing mechanism of this utility model.

[0045] Figure 4 This is the front view of the lid closing mechanism of this utility model.

[0046] Figure 5 This is a schematic diagram of the flipping component of this utility model.

[0047] Figure 6 This is a diagram of a cockroach bait box.

[0048] Figure 7 This is a schematic diagram of the box.

[0049] Figure 8 This is a schematic diagram of the box lid.

[0050] Reference numerals: 1. Lid processing mechanism; 10. Lid conveying device; 11. Lid unwinding component; 12. Lid heating component; 13. Lid forming component; 14. Punching component; 15. Rib cutting component; 16. Slitting component; 17. Lid picking station; 2. Box body processing mechanism; 20. Box body conveying device; 21. Box body unwinding component; 22. Box body heating component; 23. Box body forming component; 24. First flipping station; 241. First rotating shaft; 242. First picking component; 25. Second flipping station; 251. Second rotating shaft; 252. Second picking component; 26. Feeding station; 2 7. Lid closing station; 28. Sealing station; 3. Lid closing mechanism; 31. Lid transfer component; 311. Conveyor belt; 312. Transfer mold; 313. Side baffle; 32. Lid picking component; 321. First suction component; 322. First drive component; 323. Longitudinal guide component; 33. Lid closing component; 331. Second suction component; 332. Second drive component; 333. Lateral guide component; 34. Feeding station; 35. Discharging station; 4. Sealing mechanism; 5. Box body; 51. Storage trough; 52. Support column; 53. First protrusion; 6. Lid; 61. Rib; 62. Second protrusion. Detailed Implementation

[0051] The following description, in conjunction with the accompanying drawings, details the embodiments and working principles of this utility model.

[0052] See attached Figure 6-8 The cockroach bait box includes a box body 5 and a lid 6. A storage trough 51 is located at the center of the box body, and a first protrusion 53 is provided inside the storage trough 51. Cockroach bait is injected into the storage trough 51. The first protrusion 53 increases the contact area between the bait and the box body 5, allowing the bait to adhere to the storage trough 51. Support pillars 52 are located around the box body, and channels between the support pillars 52 allow cockroaches to pass through. A second protrusion 62 is located at the center of the lid, and raised ribs 61 are provided around the lid. The lid 6 is placed on the box body 5, supported by the support pillars 52, and the raised ribs 61 cover the support pillars 52, making their positions relatively stable. Simultaneously, the second protrusion 62 blocks the bait from above, further preventing the bait from escaping from the storage trough 51.

[0053] This cockroach bait packaging equipment includes a lid processing mechanism 1, a box body processing mechanism 2, a lid closing mechanism 3, and a sealing mechanism 4. The lid processing mechanism 1 includes a lid conveying device 10, a lid unwinding component 11, a lid heating component 12, a lid forming component 13, and a lid traction component. The lid conveying device 10 has a lid forming station and a lid material handling station 17. The box body processing mechanism 2 includes a box body conveying device 20, a box body unwinding component 21, a box body heating component 22, a box body forming component 23, and a box body traction component. The box body conveying device 20 has a box body forming station, a material feeding station 26, a lid closing station 27, and a sealing station 28. The lid conveying device 10 and the box body conveying device 20 can adopt a turntable conveying structure or a longitudinal conveying structure. In the attached diagram, the lid conveying device and the box body conveying device use longitudinal conveying, which occupies less space and has a more reasonable layout. The lid-closing mechanism 3 delivers the lid from the lid-picking station 17 to the box body at the lid-closing station 27. The sealing mechanism 4 is located at the sealing station 28. Plastic sealing can be achieved by heat pressing. In this embodiment, the sealing mechanism 4 is an ultrasonic welding device. The ultrasonic welding device includes a welding head. The top of the support column 52 of the molded box body is welded to the molded box lid 6 through the welding head. Ultrasonic welding is more environmentally friendly, energy-saving, and provides a strong weld.

[0054] The box forming component 23 includes a forming punch and a forming die. The forming punch includes a punch base and several punches arranged in a rectangular array on the punch base. A material storage groove is located at the center of the punch, and a first protrusion is located within the material storage groove. Several supporting protrusions are arranged around the punch, with channels for entering the material storage groove between adjacent supporting protrusions. The forming die includes a die base and several diees, which are matched with the punches. After heating, the plastic roll is hot-pressed or vacuum-formed using the forming punch and forming die, resulting in the box as described above. Multiple boxes can be formed in one operation. Depending on packaging requirements and mold design, the figure shows three sets of boxes formed in one operation, with six boxes in each set. One package can hold six cockroach bait boxes, and one-time forming can be used for three packages.

[0055] The lid forming component 13 includes an upper forming mold and a lower forming mold. The upper forming mold includes an upper mold base and several upper molds arranged in a rectangular array on the upper mold base. The upper molds are provided with raised ribs, and a second protrusion is provided at the center of each upper mold. The lower forming mold includes a lower mold base and several lower molds, which match the upper molds. Similarly, after the plastic roll is heated, it is thermoformed or vacuum-formed through the upper and lower forming molds to form several lids at once, with each lid corresponding to a box body.

[0056] Because multiple boxes and lids are formed at once, for the use, packaging, and separation from the roll material of the cockroach bait box, both the box processing mechanism 2 and the lid processing mechanism 1 include a connecting rib cutting component 15 and a slitting component 16. These are respectively located at the connecting rib cutting station and the slitting station, which are sequentially positioned between the box forming station and the feeding station 26, or between the lid forming station and the lid unloading station 17. The connecting rib cutting component 15 cuts according to the specifications of individual boxes and lids, but retains connecting ribs between individual boxes or lids, ensuring that multiple formed boxes and lids remain connected. During use, the connecting ribs can be manually broken or torn to separate individual boxes and lids. The connecting rib cutting component 15 is existing technology, meaning that the cutting blade of the connecting rib cutting component has a notch corresponding to the connecting rib. The slitting component 16 slits the formed box body and box lid into multiple groups and separates them from the roll material. It also removes excess waste and edge material between each group. The figure shows three groups; the slitting results in three groups of formed box bodies and box lids, with each group containing six box lids or box bodies. The box body processing mechanism 2 also includes a punching component 14, which is located between the box body forming station and the connecting rib cutting station. The punching component 14 punches away the waste material between adjacent individual box bodies. The slitting component 16 and the punching component 14 are also existing technologies; the slitting component 16 can use a slitting blade for cutting, and the punching component 14 can use a punching blade for punching. The box body processing mechanism 2 and the box lid processing mechanism 1 also include a waste material winding component, which winds up the slitting waste material.

[0057] The box conveying device 20 includes two first drive chains. The first drive chains circulate longitudinally. Several forming dies are evenly and laterally mounted on the two first drive chains. The first drive chains deliver the forming dies to various workstations. At the feeding station 26, cockroach bait is injected into the storage tank 51 of the formed box. At the lid closing station 27, the lid 6 is delivered onto the box 5. At the sealing station 28, the lid and box are connected to complete the packaging of the cockroach bait. Similarly, the lid conveying device includes two second drive chains. The second drive chains circulate longitudinally. Several forming lower dies are evenly and laterally mounted on the two second drive chains. The second drive chains deliver the forming lower dies to various workstations.

[0058] If the forming punch is the upper die and the forming die is the lower die, the formed box will face upwards. If the forming punch is the upper die and the forming die is the lower die, the formed box will face downwards. For subsequent lid closing, the box processing mechanism 2 also includes a flipping component. A flipping station is provided between the forming station and the lid closing station 27. The flipping component flips the box facing downwards so that the box faces upwards. The flipping station is divided into a first flipping station 24 and a second flipping station 25. The first flipping station 24 is provided with a first rotating shaft 241, and the second flipping station 25 is provided with a second rotating shaft 251. The flipping component includes a first picking member 242 and a second picking member 252. The first picking member 242 is mounted on the first rotating shaft 241 and moves radially relative to the first rotating shaft 241, and the second picking member 252 is mounted on the second rotating shaft 251 and moves radially relative to the second rotating shaft 251. The first picking component 242 and the second picking component 252 are suction cups. The first picking component 242 moves down to pick up the back of the box at the first flipping station 24, and then moves up and is driven to rotate 90 degrees by the first rotating shaft 241 so that the front of the box faces the second picking component 252. The second picking component 252 picks up the front of the box and is driven to rotate by the second rotating shaft 251 so that the back of the formed box faces the box conveying device. The second picking component 252 moves down and sends the box to the forming die at the second flipping station 25, thus realizing the flipping of the formed box.

[0059] The lid-closing mechanism 3 includes a lid-picking component 32, a lid-transferring component 31, and a lid-closing component 33. The lid-transferring component 31 includes a transverse conveyor belt 311 and transfer molds 312 mounted on the conveyor belt 311. The conveyor belt 311 has an infeed station and an outfeed station. Multiple sets of transfer molds 312 can be provided, with multiple sets of transfer molds evenly distributed on the conveyor belt 311. The conveyor belt 311 can use a circulating conveyor to transport the transfer molds 312 from the infeed station to the outfeed station, and then from the outfeed station back to the infeed station. To reduce costs and shorten the travel distance, a single set of transfer molds 312 can be used, with the conveyor belt 311 moving laterally back and forth, allowing the transfer molds 312 to move back and forth between the infeed and outfeed stations. Side baffles 313 are provided on both sides of the conveyor belt 311, and the distance between the two side baffles 313 matches the width of the transfer molds 312. Improve the stability of the transfer module 312 movement, and further enhance the stability and accuracy of the lifting rope box cover conveying.

[0060] The lid-picking component 32 includes a first suction component 321 that moves up and down, reciprocating between the lid-picking station 17 and the feeding station of the lid conveying device. The lid-closing component 33 includes a second suction component 331 that moves up and down, reciprocating between the discharge station and the lid-closing station 27 of the box body conveying device. The lid conveying device delivers the formed lid to the lid-picking station 17. The first suction component 321 moves down to absorb the formed lid at the lid-picking station 17, then moves up and above the feeding station, and then moves down to deliver the formed lid to the transfer mold 312. After the transfer mold 312 receives the formed lid, the conveyor belt 311 delivers the transfer mold 312 to the discharge station. The first suction component 321 then moves up and returns to above the lid-picking station 17 for the next picking operation. The second suction component 331 moves downward to attract the formed box lid on the transfer mold 312 at the discharge station, and then delivers the formed box lid to the box body at the closing station 27. The transfer mold 312 plays a positioning role, preventing the box lid from shifting during the conveying process, and can accurately deliver the box lid to the discharge station. Then, the first suction component 321 and the second suction component 331 accurately deliver the formed box lid to the formed box body to achieve closing. After closing, the box body conveying device delivers the closed box body and box lid to the sealing station 28, where the ultrasonic welding device welds the box lid to the support column 52 to achieve cockroach medicine packaging.

[0061] See attached Figure 1 and 2 The lid conveying device transports materials longitudinally, and the lid picking station 17 and the feeding station are arranged horizontally side by side. The first suction component 321 moves longitudinally in a straight line. The box body conveying device transports materials longitudinally, and the discharge station and the lid closing station 27 are arranged longitudinally in the same row. The second suction component 331 moves horizontally in a straight line. The lid conveying device and the box body conveying device are arranged parallel to each other. The first suction component 321 only needs to move up and down and longitudinally in a straight line, and the second suction component 331 only needs to move up and down and laterally in a straight line. This utility model simplifies the structure and operation of each component through structural layout, improves the overall processing speed and stability, and makes the feeding of the first suction component 321 and the second suction component 331 more stable, faster, and more accurate.

[0062] The lid-feeding component 32 includes a longitudinal guide component 323 and a first driving component 322 that drives the first suction component 321 to move longitudinally. The lid-closing component 33 includes a transverse guide component 333 and a second driving component 332 that drives the second suction component 331 to move transversely. The longitudinal guide component 323 and the transverse guide component 333 can adopt structures such as linear guide rails and sliders or guide rods and guide sleeves. The first driving component 322 and the second driving component 332 can adopt cylinders or motors combined with lead screw mechanisms or linkage mechanisms.

[0063] The working principle of the preferred embodiment will be further explained below with reference to the accompanying drawings:

[0064] The box body and lid are formed by the box body processing mechanism 2 and the lid processing mechanism 1, respectively. The plastic roll material undergoes the same processes of heating, forming, punching, connecting rib cutting, and slitting. If the box body needs to be flipped, the slitting box body enters the flipping station, where the flipping component flips the box body so that the front side faces up. Then, the box body enters the feeding station 26, where cockroach bait is injected into the storage tank 51. After feeding, the box body enters the lid closing station 27, and the lid enters the lid picking station 17. The lid closing mechanism 3 delivers the lid from the lid picking station 17 to the box body at the lid closing station 27. The support column 52 of the box body supports the lid, and the ribs 61 of the lid cover the support column 52, maintaining a stable closed state. Then, the box body conveying device sends it to the sealing station 28, where the ultrasonic welding head welds the lid to the support column 52, completing the cockroach bait packaging of the plastic box body and lid.

Claims

1. A cockroach bait packaging device, characterized in that: It includes a lid processing mechanism, a box body processing mechanism, a lid closing mechanism, and a sealing mechanism. The box lid processing mechanism includes a box lid conveying device, a box lid unwinding component, a box lid heating component, a box lid forming component, and a box lid traction component. The box lid conveying device is provided with a box lid forming station and a box lid unloading station. The box processing mechanism includes a box conveying device, a box unwinding component, a box heating component, a box forming component, and a box traction component. The box conveying device is provided with a box forming station, a feeding station, a lid closing station, and a sealing station. The lid-closing mechanism delivers the lid from the lid-retrieving station to the box body at the lid-closing station. The sealing mechanism is located at the sealing station.

2. The cockroach bait packaging equipment according to claim 1, characterized in that: The box forming component includes a forming punch and a forming die. The forming punch includes a punch base and a plurality of punches. The punches are arranged in a rectangular array on the punch base. A storage groove is provided at the center of the punch. A first protrusion is provided in the storage groove. A plurality of supporting protrusions are provided around the punch. There are channels for entering the storage groove between adjacent supporting protrusions. The forming die includes a die base and a plurality of dies, which are matched with punches.

3. The cockroach bait packaging equipment according to claim 2, characterized in that: The forming punch is an upper die, and the forming die is a lower die; The box conveying device includes two first transmission chains, which longitudinally circulate and convey the box. The forming die is provided with several uniformly transversely mounted on the two first transmission chains. The box processing mechanism also includes a flipping component, and a flipping station is provided between the forming station and the lid closing station.

4. The cockroach bait packaging equipment according to claim 3, characterized in that: The flipping station is divided into a first flipping station and a second flipping station. The first flipping station is equipped with a first rotating shaft, and the second flipping station is equipped with a second rotating shaft. The flipping component includes a first material-picking component and a second material-picking component. The first material-picking component is mounted on a first rotating shaft and moves radially relative to the first rotating shaft, and the second material-picking component is mounted on a second rotating shaft and moves radially relative to the second rotating shaft.

5. The cockroach bait packaging equipment according to claim 1, characterized in that: Both the box body processing mechanism and the box lid processing mechanism include a connecting rib cutting component and a slitting component, which are respectively set at the connecting rib cutting station and the slitting station. The connecting rib cutting station and the slitting station are sequentially set between the box body forming station and the material feeding station or between the box lid forming station and the box lid material taking station.

6. The cockroach bait packaging equipment according to claim 5, characterized in that: The box processing mechanism also includes a punching component, which is disposed between the box forming station and the rib cutting station. The box body processing mechanism and the box lid processing mechanism also include a waste material winding component.

7. The cockroach bait packaging equipment according to claim 2, characterized in that: The lid forming component includes an upper forming mold and a lower forming mold. The forming upper mold includes an upper mold base and a plurality of upper molds. The upper molds are arranged in a rectangular array on the upper mold base. Each upper mold has raised ribs, and a second protrusion is provided at the center of each upper mold. The forming lower mold includes a lower mold base and a plurality of lower molds, wherein the lower molds are matched with the upper mold; The molding box body has several support columns, and the molding box cover has positioning ribs. The molding box cover is placed on the molding box body, and the positioning ribs cover the support columns.

8. The cockroach bait packaging equipment according to any one of claims 1-7, characterized in that: The lid closing mechanism includes a lid picking component, a lid conveying component, and a lid closing component; The lid transfer component includes a transversely arranged conveyor belt and a transfer mold arranged on the conveyor belt. The conveyor belt is provided with a feeding station and a discharging station. The lid picking component includes a first suction component that moves up and down, and the first suction component reciprocates between the lid picking station and the feeding station. The closing component includes a second suction component that moves up and down, and the second suction component reciprocates between the discharge station and the closing station.

9. The cockroach bait packaging equipment according to claim 8, characterized in that: The lid conveying device and the box body conveying device convey longitudinally, the lid picking station and the feeding station are arranged side by side laterally, and the first suction element moves longitudinally in a straight line. The discharge station and the cover closing station are arranged in the same row longitudinally, and the second suction component moves laterally in a straight line.

10. The cockroach bait packaging equipment according to claim 8, characterized in that: The transfer mold moves back and forth between the feeding station and the discharging station; The box lid material handling component includes a longitudinal guide component and a first driving component that drives the first suction component to move longitudinally. The closing component includes a lateral guide component and a second driving component that drives the second suction component to move laterally. The sealing mechanism is an ultrasonic welding device, which includes a welding head. The molded box cover is welded to the top of the support column.