Novel bagging machine

By designing a new type of bag loading machine, including bag loading mechanism, item loading mechanism to be packaged and bag sealing mechanism, the problems of inconsistency in quality, low efficiency and high cost in large-scale production of traditional packaging methods are solved, and an efficient and accurate packaging process is achieved.

CN119929272APending Publication Date: 2025-05-06DONGGUAN LIANHAO PACKAGING EQUIP CO LTD
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Patent Information

Application Number
CN202510356384.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-25
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

Traditional manual or semi-automated packaging methods are difficult to meet the needs of large-scale production, especially in terms of product quality consistency, production efficiency and cost control.

Method used

A new type of bagging machine is designed, including a workbench, a bag loading mechanism, a packing mechanism to be packed, a hot-cut bag sealing mechanism and a second pressing mechanism. The bag packing machine realizes an efficient and accurate packaging process through the collaborative work of the bag push assembly, the to-be-packaged push assembly and the hot-cut bag sealing mechanism.

Benefits of technology

It improves the consistency of packaging efficiency and product quality, reduces production costs, and solves the shortcomings of traditional packaging methods in large-scale production.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention relates to a novel bagging machine which comprises a workbench, a packaging bag feeding mechanism, a to-be-packaged object feeding mechanism and a hot cutting and bag sealing mechanism, and the packaging bag feeding mechanism and the to-be-packaged object feeding mechanism are both arranged in front of the hot cutting and bag sealing mechanism; the packaging bag feeding mechanism comprises a packaging bag discharging assembly and a packaging bag pushing assembly, the packaging bag discharging assembly is arranged on the workbench and used for discharging packaging bags to the packaging bag pushing assembly, and the packaging bag pushing assembly is arranged on the workbench and used for pushing the packaging bags to advance to the hot cutting bag sealing mechanism; the to-be-packaged object feeding mechanism comprises a to-be-packaged object conveying assembly and a to-be-packaged object pushing assembly, the to-be-packaged object conveying assembly is used for conveying to-be-packaged objects to the to-be-packaged object pushing assembly, and the to-be-packaged object pushing assembly is used for pushing the to-be-packaged objects into the bags; the hot cutting and bag sealing mechanism is arranged on the workbench and used for conducting hot cutting and bag sealing on the bags. The packaging device has the effect of improving the packaging efficiency.
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Description

Technical Field

[0001] The present invention relates to the field of packaging, and more particularly to a novel bagging machine. Background Art

[0002] With the widespread application of cards, sheets, books or boxes, the market is increasingly in need of efficient, accurate and automated new bagging machines. In the context of the deep integration of digital economy and intelligent manufacturing, traditional manual or semi-automatic packaging methods can no longer meet the needs of large-scale production, especially in terms of product quality consistency, production efficiency and cost control. Summary of the invention

[0003] In order to improve the packaging efficiency of cards, sheets, books or boxes, the present application provides a new bagging machine.

[0004] The new bagging machine provided in this application adopts the following technical solution:

[0005] A novel bagging machine comprises a workbench, a bag feeding mechanism, a material feeding mechanism for objects to be packaged, a hot-cutting and sealing mechanism, and a second pressing wheel mechanism, wherein the bag feeding mechanism and the material feeding mechanism for objects to be packaged are both arranged before the hot-cutting and sealing mechanism;

[0006] The bag feeding mechanism comprises a bag discharging component and a bag pushing component, wherein the bag discharging component is arranged on the workbench and used to discharge bags to the bag pushing component, and the bag pushing component is arranged on the workbench and used to push bags forward to the hot cutting and sealing mechanism;

[0007] The object-to-be-packaged feeding mechanism comprises an object-to-be-packaged conveying component and an object-to-be-packaged pushing component, wherein the object-to-be-packaged conveying component is used to convey the object-to-be-packaged to the object-to-be-packaged pushing component, and the object-to-be-packaged pushing component is used to push the object-to-be-packaged into the bag;

[0008] The heat-cutting and bag-sealing mechanism is arranged on the workbench and is used for heat-cutting and bag-sealing the bags;

[0009] The second pressing wheel mechanism is arranged behind the hot cutting and sealing mechanism, the second pressing wheel mechanism comprises a second pressing wheel assembly and a pressing wheel driving assembly, the second pressing wheel pressure rod, the second pressing wheel slider, the second pressing wheel pressure block, the second pressing wheel spring and a plurality of second pressing wheel bodies, the second pressing wheel pressure rod is rotatably arranged on the workbench, the second pressing wheel slider can be slidably arranged on the second pressing wheel pressure rod, the second pressing wheel pressure block is rotatably arranged on the second pressing wheel slider, one end of the second pressing wheel spring is fixedly connected to the second pressing wheel slider, the other end of the second pressing wheel spring is fixedly connected to the second pressing wheel pressure block, each of the second pressing wheel bodies is fixedly arranged on the second pressing wheel pressure block, each of the first pressing wheel bodies is abutted against the surface of the bag, and the pressing wheel driving assembly is arranged on the workbench and is used to drive the second pressing wheel pressure rod to rotate.

[0010] By adopting the above technical scheme, when the bagging machine starts working, the bag pushing component starts to push the bags, and as the bag pushing component pushes, the bag discharging component gradually releases the bags, and the to-be-packaged conveying component conveys the objects to be packaged to the to-be-packaged pushing component. When the bag pushing machine pushes the bags to the set position, the to-be-packaged pushing component pushes the objects to be packaged into the bags, and then the bag pushing component pushes the objects to be packaged, and the objects to be packaged drive the bags to be pushed to the bottom of the hot-cutting and sealing mechanism, and then the hot-cutting and sealing mechanism starts, and the hot-cutting and sealing mechanism performs hot-cutting and sealing on the bags, thereby completing the packaging of the objects to be packaged, and repeating this cycle, thereby improving the problem that traditional manual or semi-automatic packaging methods are difficult to meet the needs of large-scale production, especially in terms of product quality consistency, production efficiency and cost control, which have significant shortcomings.

[0011] Optionally, the bag feeding mechanism also includes a sticky tape feeding assembly, which includes a sticky tape feeding roller, a sticky tape guide wheel and a sticky tape receiving roller, the sticky tape feeding roller is rotatably set on the workbench, the sticky tape guide wheel is fixedly set on the workbench, the sticky tape receiving roller is rotatably set on the workbench, the sticky tape of the sticky tape feeding roller is adhered to the bag through the sticky tape guide wheel and is transported along with the bag feeding assembly, and the sticky tape receiving roller reels the protective part of the sticky tape.

[0012] Optionally, the bag feeding mechanism also includes a first pressure wheel assembly, which is arranged between the bag discharge assembly and the bag pushing assembly, the first pressure wheel assembly includes a first pressure wheel rod, a first pressure wheel slider, a first pressure wheel block, a first pressure wheel spring and a plurality of first pressure wheel bodies, the first pressure wheel rod is fixedly arranged on the workbench, the first pressure wheel slider can be slidably arranged on the workbench, the first pressure wheel block is rotatably arranged on the first pressure wheel slider, one end of the first pressure wheel spring is fixedly connected to the first pressure wheel slider, the other end of the first pressure wheel spring is fixedly connected to the first pressure wheel block, each of the first pressure wheel bodies is fixedly arranged on the first pressure wheel block, and each of the first pressure wheel bodies and the first pressure wheel rods are arranged opposite to each other and respectively abut against two sides of the bag.

[0013] Optionally, the bag feeding mechanism also includes a color sensing component, which is arranged between the bag discharging component and the bag pushing component. The color sensing component includes a color sensing seat and a color sensor. The color sensing seat can be movably arranged on the workbench and located on the top of the bag, and the color sensor is fixedly arranged on the color sensing seat.

[0014] Optionally, the bag feeding mechanism also includes a punching assembly, which is arranged between the bag discharging assembly and the bag pushing assembly. The punching assembly includes a punching seat and a puncher. The punching seat is movably arranged on a workbench, and the punching seat is provided with a punching groove, a first through hole and a second through hole that are arranged through the punching groove. The first through hole and the second through hole are both connected to the punching groove, and the first through hole and the second through hole are arranged opposite to each other. The puncher is fixedly arranged on the punching seat and opposite to the first through hole, and the bag is passed through the punching groove.

[0015] Optionally, the bag loading mechanism also includes a support rod assembly, which is arranged between the bag discharge assembly and the bag pushing assembly. The support rod assembly includes a support rod plate and a support rod body. The support rod plate is movably arranged on the workbench, and the support rod body is fixedly arranged on the support rod plate, and the support rod body is penetrated into the interior of the bag and abuts against the interior of the bag.

[0016] Optionally, the bag feeding mechanism also includes a blowing component, which is arranged between the bag pushing component and the hot cutting and sealing mechanism, and the blowing component includes a blowing seat and a blowing rod, the blowing seat is fixedly arranged on the workbench, the blowing rod is fixedly arranged on the blowing seat, the blowing rod is provided with a plurality of blowing nozzles, each of the blowing nozzles is evenly distributed along the length direction of the blowing rod, each of the blowing nozzles is arranged toward the hot cutting and sealing mechanism, and each of the blowing nozzles blows the surface of the bag flat.

[0017] Optionally, it also includes a sticky tape bag sealing mechanism, the second pressure wheel mechanism is arranged behind the hot cutting bag sealing mechanism, the sticky tape bag sealing mechanism includes a pushing and sealing assembly, the pushing and sealing assembly includes a pushing and sealing seat, a pushing and sealing cylinder, a pushing and sealing block, a pushing and sealing brush and a pushing and sealing adjusting rod, the pushing and sealing seat is slidably matched with the workbench, the pushing and sealing cylinder is fixedly arranged on the pushing and sealing seat, the pushing and sealing block is fixedly arranged on the piston rod of the pushing and sealing cylinder, the pushing and sealing block is provided with a plurality of pushing and sealing suction holes arranged through, the pushing and sealing brush is fixedly arranged on the pushing and sealing block, and the pushing and sealing adjusting rod is threadedly connected to the pushing and sealing seat and abuts against the workbench.

[0018] Optionally, the adhesive tape bag sealing mechanism also includes a pressure-sealing component, which includes a pressure-sealing seat, a pressure-sealing cylinder and a pressure-sealing sheet. The pressure-sealing seat is movably arranged on a workbench, the pressure-sealing cylinder is fixedly arranged on the pressure-sealing seat, and the pressure-sealing sheet is fixedly arranged on the piston rod of the pressure-sealing cylinder.

[0019] In summary, the present application includes at least one of the following beneficial technical effects:

[0020] 1. When the bagging machine starts working, the bag pushing component starts to push the bags. As the bag pushing component pushes, the bag discharging component gradually releases the bags. The to-be-packaged conveying component conveys the objects to be packaged to the to-be-packaged pushing component. When the bag pushing machine pushes the bags to the set position, the to-be-packaged pushing component pushes the objects to be packaged into the bags. Then the bag pushing component pushes the objects to be packaged, and the objects to be packaged drive the bags to be pushed to the bottom of the hot-cutting and sealing mechanism. Then the hot-cutting and sealing mechanism starts, and the hot-cutting and sealing mechanism performs hot-cutting and sealing on the bags, thereby completing the packaging of the objects to be packaged. This cycle is repeated, which improves the problem that traditional manual or semi-automatic packaging methods are difficult to meet the needs of large-scale production, especially in terms of product quality consistency, production efficiency and cost control. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] Figure 1 This is a schematic diagram of the overall structure of the embodiment of the present application. Figure 1 ;

[0022] Figure 2 This is a schematic diagram of the overall structure of the embodiment of the present application. Figure 2 ;

[0023] Figure 3 This is a schematic diagram of the bag discharge component of the embodiment of the present application Figure 1 ;

[0024] Figure 4 This is a schematic diagram of the bag discharge component of the embodiment of the present application Figure 2 ;

[0025] Figure 5 This is a schematic diagram of the bag discharge component of the embodiment of the present application Figure 3 ;

[0026] Figure 6 This is a schematic diagram of the structure of a bag pushing component according to an embodiment of the present application;

[0027] Figure 7 This is a schematic diagram of the structure of the adhesive tape feeding assembly of the embodiment of the present application;

[0028] Figure 8 It is a schematic diagram of the structure of the first pressure wheel assembly in an embodiment of the present application;

[0029] Fig. 9 is a schematic diagram of the structure of a color sensor component according to an embodiment of the present application;

[0030] Fig.10 This is a schematic diagram of the structure of the punching assembly of an embodiment of the present application;

[0031] Fig.11 is a schematic diagram of the structure of the support rod assembly according to an embodiment of the present application;

[0032] Fig.12 This is a schematic diagram of the structure of the flattening component of the embodiment of the present application;

[0033] Fig.13 This is a schematic diagram of the structure of the package conveying component in the embodiment of the present application. Figure 1 ;

[0034] Fig.14 This is a schematic diagram of the structure of the package conveying component in the embodiment of the present application. Figure 2 ;

[0035] Fig.15 This is a schematic diagram of the structure of the push assembly for the packaged object in the embodiment of the present application. Figure 1 ;

[0036] Fig.16 This is a schematic diagram of the structure of the push assembly for the packaged object in the embodiment of the present application. Figure 2 ;

[0037] Fig.17 It is a schematic diagram of the structure of the second pressing wheel mechanism in the embodiment of the present application;

[0038] Fig.18 This is a schematic diagram of the structure of the push-seal assembly of an embodiment of the present application;

[0039] Fig.19 It is a schematic diagram of the structure of the compression seal assembly according to an embodiment of the present application.

[0040] Description of the accompanying drawings: 1. workbench; 11. first working part; 12. second working part; 2. bag feeding mechanism; 21. bag unloading assembly; 211. unloading seat; 212. unloading roller; 213. lead screw motor; 214. first conveying roller; 215. second conveying roller; 216. abutment rod; 217. abutment spring; 218. abutment roller; 219. film support rod; 22. bag pushing assembly; 221. pushing linear module; 222. pushing plate; 23. adhesive tape feeding assembly; 231. adhesive tape unloading roller; 232. adhesive tape guide wheel; 233. receiving rod; 2 34. Adhesive tape receiving roller; 24. First pressing wheel assembly; 241. First pressing wheel pressure rod; 242. First pressing wheel slider; 243. First pressing wheel pressure block; 244. First pressing wheel spring; 245. First pressing wheel body; 25. Color sensor assembly; 251. Color sensor seat; 252. Color sensor; 26. Punching assembly; 261. Punching seat; 262. Puncher; 27. Support rod assembly; 271. Support rod plate; 272. Support rod body; 28. Blowing flat assembly; 281. Blowing seat; 282. Blowing rod; 2821. Blowing nozzle; 3. Material loading mechanism for packaging materials; 31 , conveying assembly for objects to be packaged; 311, conveying module for objects to be packaged; 312, conveying belt for objects to be packaged; 313, conveying rod; 314, conveying baffle; 32, pushing assembly for objects to be packaged; 321, pushing plate for objects to be packaged; 322, turning rod; 323, turning block; 324, turning cylinder; 325, pushing claw; 326, pushing cam; 327, pushing rod; 328, connecting wheel; 329, pushing connecting rod; 320, bag support plate; 4, hot cutting and sealing mechanism; 5, second pressing wheel mechanism; 51, second pressing wheel assembly; 511, second pressing wheel pressing rod; 512, first Second pressure wheel slider; 513, second pressure wheel pressure block; 514, second pressure wheel spring; 515, second pressure wheel body; 52, pressure wheel drive assembly; 521, pressure wheel drive cam; 522, pressure wheel drive plate; 523, pressure wheel return spring; 524, pressure wheel drive block; 525, pressure wheel drive connecting rod; 6, adhesive tape bag sealing mechanism; 61, push sealing assembly; 611, push sealing seat; 612, push sealing cylinder; 613, push sealing block; 614, push sealing brush; 615, push sealing adjusting rod; 62, pressure sealing assembly; 621, pressure sealing seat; 622, pressure sealing cylinder; 623, pressure sealing sheet. DETAILED DESCRIPTION

[0041] The following is combined with Figure 1-9 This application is described in further detail.

[0042] The present application embodiment discloses a new type of bagging machine. Figure 1 and Figure 2A new bagging machine includes a workbench 1, a bag feeding mechanism 2, a feeding mechanism for objects to be packaged 3, and a hot cutting and sealing mechanism 4. The workbench 1 includes a first working part 11 and a second working part 12. The first working part 11 is rectangular in a top view. In the embodiment of the present application, the width direction of the first working part 11 is set as the transverse direction, and the length direction of the second working part 12 is set as the longitudinal direction. The first working part 11 and the second working part 12 are perpendicular to each other and fixedly connected. The bag feeding mechanism 2 and the hot cutting and sealing mechanism 4 are both arranged in the first working part 11, and the feeding mechanism 3 for objects to be packaged is arranged in the second working part 12.

[0043] Reference Figure 3 The bag loading mechanism 2 includes a bag unloading assembly 21, which includes a unloading seat 211, a unloading roller 212 and a screw motor 213. The unloading seat 211 slides and cooperates with the first working part 11 in the transverse direction. The unloading roller 212 is rotatably set on the unloading seat 211 and is used to roll up the bags. The screw motor 213 is fixedly set on the first working part 11. The screw of the screw motor 213 is threadedly connected with the unloading seat 211. The screw motor 213 drives the unloading seat 211 to move in the transverse direction and drive the unloading roller 212 to move in the transverse direction, thereby changing the unloading position of the unloading roller 212.

[0044] Reference Figure 4 and Figure 5 The bag unloading assembly 21 also includes a plurality of first conveying rollers 214, second conveying rollers 215, abutting rods 216, abutting springs 217, abutting rollers 218 and film-supporting rods 219. Each of the first conveying rollers 214 and the second conveying rollers 215 is rotatably arranged on the first working part 11. The bag is unloaded from the unloading roller 212 and is sequentially wound around the outer circumference of each of the first conveying rollers 214 and the second conveying rollers 215. The second conveying roller 215 is driven to rotate by the driving module, so that the second conveying roller 215 rotates to contact the bag. The bag is conveyed, the abutment rod 216 slides in the longitudinal direction and cooperates with the first working part 11, one end of the abutment spring 217 is fixedly connected to the abutment rod 216, and the other end of the abutment spring 217 is fixedly connected to the first working part 11, the abutment roller 218 is rotatably set on the abutment rod 216 and is directly opposite to the second conveying roller 215, the second conveying roller 215 and the abutment roller 218 abut against both sides of the bag, and the film supporting rod 219 is fixedly set on the workbench 1 and abuts against the bag, so that the bag is in a taut state.

[0045] Reference Figure 6 The bag feeding mechanism 2 also includes a bag pushing component 22, which includes a pushing linear module 221 and a pushing plate 222. The pushing linear module 221 is arranged on the first working part 11 along the longitudinal direction, and the pushing plate 222 is fixedly arranged on a slider of the pushing linear module 221. When the pushing linear module 221 is driven, the pushing plate 222 pushes the bag.

[0046] Reference Figure 7 The bag unloading mechanism can also include a tape loading component 23, which includes a tape unloading roller 231212, a tape guide wheel 232, a receiving rod 233 and a tape receiving roller 234. The tape unloading roller 231212 is rotatably arranged on the workbench 1, the tape guide wheel 232 is fixedly arranged on the workbench 1, the receiving rod 233 is fixedly arranged on the workbench 1, and the tape receiving roller 234 is rotatably arranged on the workbench 1. The tape receiving roller 234 is driven to rotate by a driving module. The released tape of the tape unloading roller 231212 is wound around the outer peripheral surface of the tape guide wheel 232, and then adheres to the bag of the first conveying roller 214 and is conveyed to the second conveying roller 215 with the bag. After the tape is conveyed to the second conveying roller 215, the adhesive part of the tape continues to be conveyed with the bag, and the protective part of the tape is wound around the receiving rod 233 and is wound around the tape receiving roller 234.

[0047] Reference Figure 8 The bag discharge mechanism can also include a first pressure wheel assembly 24, which is arranged between the bag discharge assembly 21 and the bag pushing assembly 22. The first pressure wheel assembly 24 includes a first pressure wheel pressure rod 241, a first pressure wheel slider 242, a first pressure wheel pressure block 243, a first pressure wheel spring 244 and a plurality of first pressure wheel bodies 245. The first pressure wheel pressure rod 241 is fixedly arranged on the first working part 11, and the first pressure wheel slider 242 is arranged on the first working part 11. The first pressure wheel slider 242 can The position of the first working part 11 is adjusted in the lateral direction to adapt to bags of different specifications. The first pressure wheel block 243 is rotatably set on the first pressure wheel slider 242. One end of the first pressure wheel spring 244 is fixedly connected to the first pressure wheel slider 242. The other end of the first pressure wheel spring 244 is fixedly connected to the first pressure wheel block 243. Each first pressure wheel body 245 is fixedly set on the first pressure wheel block 243. Each first pressure wheel body 245 and the first pressure wheel rod 241 are arranged opposite to each other and respectively abut against both sides of the bag.

[0048] Reference Fig. 9 The bag feeding mechanism 2 can further include a color sensing component 25, which is disposed between the bag discharging component 21 and the bag pushing component 22. The color sensing component 25 includes a color sensing seat 251 and a color sensor 252. The color sensing seat 251 is disposed in the first working part 11 and is located on the top of the bag. The color sensing seat 251 can be adjusted in the lateral direction at the position of the first working part 11 to accommodate bags of different specifications. The color sensor 252 is fixedly disposed on the color sensing seat 251. In the embodiment of the present application, the color sensor 252 is used to sense the pattern on the surface of the bag, so that the pattern on the surface of the bag is always located in a suitable position.

[0049] Reference Fig.10The bag feeding mechanism 2 can also include a punching assembly 26, which is arranged between the bag discharging assembly 21 and the bag pushing assembly 22. The punching assembly 26 includes a punching seat 261 and a puncher 262. The punching seat 261 is arranged on the first working part 11, and the punching seat 261 can be adjusted in the lateral direction to the position of the first working part 11. The punching seat 261 is provided with a punching groove, a first through hole and a second through hole that are arranged through. The first through hole and the second through hole are both connected to the punching groove, and the first through hole and the second through hole are arranged opposite to each other. The puncher 262 is fixedly arranged on the punching seat 261 and faces the first through hole. The bag is passed through the punching groove. When the bag needs to be punched, the position where the bag needs to be punched faces the first through hole, and the puncher 262 punches the bag through the first through hole.

[0050] Reference Fig.11 The bag loading mechanism 2 also includes a support rod assembly 27, which is arranged between the bag discharging assembly 21 and the bag pushing assembly 22. The support rod assembly 27 includes a support rod plate 271 and a support rod body 272. The support rod plate 271 is movably arranged on the workbench 1, and the support rod body 272 is fixedly arranged on the support rod plate 271. The support rod body 272 passes through the interior of the bag and abuts against the interior of the bag, so that the bag is in an open state.

[0051] Reference Fig.12 The bag feeding mechanism 2 also includes a flattening component 28, which is arranged between the bag pushing component 22 and the hot cutting and sealing mechanism 4. The flattening component 28 includes a blowing seat 281 and a blowing rod 282. The blowing seat 281 is fixedly arranged on the workbench 1, and the blowing rod 282 is fixedly arranged on the blowing seat 281. The blowing rod 282 is provided with a plurality of blowing nozzles 2821, and each blowing nozzle 2821 is evenly distributed along the length direction of the blowing rod 282. Each blowing nozzle 2821 is arranged toward the hot cutting and sealing mechanism 4, and each blowing nozzle 2821 blows the surface of the bag flat.

[0052] Reference Fig.13 and Fig.14The material feeding mechanism 3 for the objects to be packaged includes a conveying assembly 31 for the objects to be packaged, and the conveying assembly 31 for the objects to be packaged includes a conveying module 311 for the objects to be packaged, a conveying belt 312 for the objects to be packaged, a plurality of conveying rods 313 and two conveying baffles 314. The conveying module 311 for the objects to be packaged is arranged on the second working part 12, and the conveying belt 312 for the objects to be packaged is wound around the conveying module 311 for the objects to be packaged. When the conveying module 311 for the objects to be packaged is driven, the conveying belt 312 for the objects to be packaged rotates, and each conveying rod 313 is fixedly arranged on the conveying belt 311 for the objects to be packaged. 12, each conveying rod 313 is evenly distributed along the conveying belt 312 of the material to be packaged, and the second working part 12 is provided with a conveying groove in the transverse direction. When each conveying rod 313 is conveying, each conveying rod 313 slides and cooperates with the conveying groove. Two conveying baffles 314 are both arranged on the second working part 12, and the two conveying baffles 314 are symmetrically distributed along the conveying groove. The two conveying baffles 314 can adjust their positions in the longitudinal direction, thereby changing the distance between the two conveying baffles 314, thereby realizing the conveying of materials to be packaged of different sizes.

[0053] When the loading mechanism 3 for the object to be packaged is working, the operator places the object to be packaged on the top of the conveying trough and between each adjacent conveying rod 313, and the conveying module 311 for the object to be packaged is driven, and the conveying module 311 for the object to be packaged drives the conveying belt 312 for the object to be packaged to rotate, thereby driving each conveying rod 313 to slide along the conveying trough and push each object to be packaged to slide along the length direction of the conveying trough body until it is transported to the next process.

[0054] Reference Fig.15 and Fig.16 The loading mechanism 3 for objects to be packaged also includes an object pushing assembly 32 for objects to be packaged, which includes an object pushing plate 321222 for objects to be packaged, a flip rod 322, a flip block 323, a flip cylinder 324 and two pushing claws 325. The object pushing plate 321222 for objects to be packaged slides and cooperates with the second working part 12 in the lateral direction. The flip rod 322 is rotatably arranged on the object pushing plate 321222 for objects to be packaged, the flip block 323 is fixedly arranged on the flip rod 322, the flip cylinder 324 is fixedly arranged on the object pushing plate 321222 for objects to be packaged, and the piston rod of the flip cylinder 324 is rotatably connected to the flip block 323, and the two pushing claws 325 are fixedly arranged on the flip rod 322. When the flip cylinder 324 is driven, the piston rod of the flip cylinder 324 drives the flip block 323 to flip, the flip block 323 drives the flip rod 322 to flip, and the flip rod 322 drives the two flip claws to flip.

[0055] Reference Fig.15 and Fig.16The push assembly 32 for the object to be packaged also includes a push cam 326, a push rod 327, a connecting wheel 328 and a push connecting rod 329. The push cam 326 is rotatably set on the second working part 12 and driven to rotate by the driving module. One end of the push rod 327 is rotatably set on the second working part 12. The connecting wheel 328 is rotatably set on the push rod 327. The connecting wheel 328 abuts against the push cam 326, and when the push cam 326 rotates, the connecting wheel 328 moves along the push cam 326 and around the push cam 326. One end of the push connecting rod 329 is rotatably connected to the push rod 327, and the other end of the push connecting rod 329 is rotatably connected to the push plate 222 with the packaged object.

[0056] When the packaging conveying assembly conveys the objects to be packaged to the packaging pushing assembly 32, the pushing cam 326 rotates, thereby driving the pushing rod 327 to swing toward the direction of the objects to be packaged, thereby driving the pushing plate 321222 of the objects to be packaged to slide toward the direction of the objects to be packaged through the pushing connecting rod 329, and then the two pushing claws 325 flip over and abut against the objects to be packaged, and then the pushing rod 327 drives the pushing plate 321222 of the objects to be packaged to reset, thereby pushing the objects to be packaged into the bag.

[0057] Reference Figure 2 The object pushing assembly 32 also includes a bag support plate 320, which is fixedly arranged on the second working part 12 and located at the top of the conveying trough. The bag support plate 320 is passed through the interior of the bag and abuts against one side of the top of the bag, thereby expanding the bag, making it easier for the object pushing assembly 32 to push the object to be packaged into the bag.

[0058] The heat-cutting and sealing mechanism 4 is disposed on the workbench 1 and is used for heat-cutting and sealing bags. The first working section 11 is provided with a heat-cutting and conveying module, which is located after the heat-cutting and sealing mechanism 4 and conveys the bags after heat-cutting.

[0059] Reference Fig.17 A new bagging machine can also include a second pressing wheel mechanism 5, which is arranged behind the hot cutting and sealing mechanism 4. The second pressing wheel mechanism 5 includes a second pressing wheel assembly 51, and the second pressing wheel assembly 51 includes a second pressing wheel pressure rod 511, a second pressing wheel slider 512, a second pressing wheel pressure block 513, a second pressing wheel spring 514 and a plurality of second pressing wheel bodies 515. The second pressing wheel pressure rod 511 is rotatably arranged on the workbench 1, the second pressing wheel slider 512 can be slidably arranged on the second pressing wheel pressure rod 511, the second pressing wheel pressure block 513 is rotatably arranged on the second pressing wheel slider 512, one end of the second pressing wheel spring 514 is fixedly connected to the second pressing wheel slider 512, and the other end of the second pressing wheel spring 514 is fixedly connected to the second pressing wheel pressure block 513, each second pressing wheel body 515 is fixedly arranged on the second pressing wheel pressure block 513, and each first pressing wheel body 245 is in contact with the surface of the bag.

[0060] Reference Fig.17 The second pressing wheel mechanism 5 also includes a pressing wheel driving assembly 52, which includes a pressing wheel driving cam 521, a pressing wheel driving plate 522, a pressing wheel return spring 523, a pressing wheel driving block 524 and a pressing wheel driving connecting rod 525. The pressing wheel driving cam 521 is rotatably arranged on the first working part 11, and the pressing wheel driving cam 521 is driven to rotate by the driving module. The pressing wheel driving plate 522 is rotatably arranged on the first working part 11, and the pressing wheel driving plate 522 and the pressing wheel driving cam 5 21 abuts, one end of the pressure wheel return spring 523 is fixedly connected to the pressure wheel driving plate 522, and the other end of the pressure wheel return spring 523 is fixedly connected to the first working part 11, so that the pressure wheel driving plate 522 and the pressure wheel driving cam 521 always maintain abutment and cooperation, the pressure wheel driving block 524 is fixedly set on the second pressure wheel pressure rod 511, one end of the pressure wheel driving connecting rod 525 is rotatably connected to the pressure wheel driving plate 522, and the other end of the pressure wheel driving connecting rod 525 is rotatably connected to the pressure wheel driving block 524.

[0061] When the pressure roller driving assembly 52 is driven, the pressure roller driving cam 521 rotates to drive the pressure roller driving plate 522 to swing, and the pressure roller driving plate 522 swings to drive the pressure roller driving block 524 to rotate through the pressure roller driving connecting rod 525, and the rotation of the pressure roller driving block 524 drives the second pressure roller pressure rod 511 to rotate, thereby completing the driving of the second pressure roller assembly 51, so that the second pressure roller body 515 continuously rotates toward or away from the bag, thereby abutting against different hot-cut bags.

[0062] Reference Fig.18 and Fig.19 A novel bagging machine can also include a sticky tape bag sealing mechanism 6, a second pressing wheel mechanism 5 is arranged behind the hot cutting bag sealing mechanism 4, the sticky tape bag sealing mechanism 6 includes a push sealing assembly 61, the push sealing assembly 61 includes a push sealing seat 611, a push sealing cylinder 612, a push sealing block 613, a push sealing brush 614 and a push sealing adjustment rod 615, the push sealing seat 611 is slidably matched with the workbench 1, the push sealing cylinder 612 is fixedly arranged on the push sealing seat 611, the push sealing block 613 is fixedly arranged on the piston rod of the push sealing cylinder 612, and the push sealing block 613 is provided with a plurality of The push-seal suction hole is set through the stem, the push-seal brush 614 is fixedly set on the push-seal block 613, and the push-seal adjusting rod 615 is threadedly connected to the push-seal seat 611 and abuts against the workbench 1, so that the push-seal component 61 pushes and seals the bag, so that when the adhesive tape bonded to the bag completes the bonding and sealing of the bag, the push-seal suction hole absorbs the part of the bag bonded with the adhesive tape, and then the part is push-sealed and bent by the push-seal brush 614 until it abuts against the main body of the bag, so that the adhesive tape bonded to the packaging completes the bonding and sealing of the bag.

[0063] Reference Fig.18 and Fig.19The adhesive tape bag sealing mechanism 6 also includes a sealing component 62, which includes a sealing seat 621, a sealing cylinder 622 and a sealing sheet 623. The sealing seat 621 is movably arranged on the workbench 1, the sealing cylinder 622 is fixedly arranged on the sealing seat 621, and the sealing sheet 623 is fixedly arranged on the piston rod of the sealing cylinder 622.

[0064] The implementation principle of a new bagging machine in the embodiment of the present application is as follows: when the bagging machine starts working, the bag pushing component starts to push the bags, and as the bag pushing component 22 pushes, the bag discharging component 21 gradually releases the bags, and the to-be-packaged conveying component conveys the objects to be packaged to the to-be-packaged pushing component 32, and when the bag pushing machine pushes the bags to the set position, the to-be-packaged pushing component 32 pushes the objects to be packaged into the bags, and then the bag pushing component 22 pushes the objects to be packaged, and the objects to be packaged drive the bags to be pushed to the bottom of the hot-cutting and sealing mechanism 4, and then the hot-cutting and sealing mechanism 4 starts, and the hot-cutting and sealing mechanism 4 performs hot-cutting and sealing on the bags, thereby completing the packaging of the objects to be packaged, and repeating this cycle, thereby improving the problem that traditional manual or semi-automatic packaging methods are difficult to meet the needs of large-scale production, especially in terms of product quality consistency, production efficiency and cost control, which have significant shortcomings.

[0065] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.

Claims

1. A new bagging machine, characterized by: It comprises a workbench (1), a bag feeding mechanism (2), a material feeding mechanism for objects to be packaged (3), a hot-cutting and sealing mechanism (4), and a second pressing wheel mechanism (5), wherein the bag feeding mechanism (2) and the material feeding mechanism for objects to be packaged (3) are both arranged before the hot-cutting and sealing mechanism (4); The bag feeding mechanism (2) comprises a bag discharging component (21) and a bag pushing component (22), wherein the bag discharging component (21) is arranged on the workbench (1) and is used to discharge bags to the bag pushing component (22), and the bag pushing component (22) is arranged on the workbench (1) and is used to push bags forward to the hot cutting and sealing mechanism (4); The object-to-be-packaged feeding mechanism (3) comprises an object-to-be-packaged conveying component (31) and an object-to-be-packaged pushing component (32), wherein the object-to-be-packaged conveying component (31) is used to convey the object-to-be-packaged to the object-to-be-packaged pushing component (32), and the object-to-be-packaged pushing component (32) is used to push the object-to-be-packaged into a bag; The heat-cutting and bag-sealing mechanism (4) is arranged on the workbench (1) and is used to perform heat-cutting and bag-sealing on the bags; The second pressing wheel mechanism (5) is arranged behind the hot-cutting and sealing mechanism (4), and the second pressing wheel mechanism (5) comprises a second pressing wheel assembly (51) and a pressing wheel driving assembly (52), a second pressing wheel pressure rod (511), a second pressing wheel slider (512), a second pressing wheel pressure block (513), a second pressing wheel spring (514) and a plurality of second pressing wheel bodies (515), the second pressing wheel pressure rod (511) is rotatably arranged on the workbench (1), the second pressing wheel slider (512) is slidably arranged on the second pressing wheel pressure rod (511), and the second The pressure wheel block (513) is rotatably arranged on the second pressure wheel slider (512), one end of the second pressure wheel spring (514) is fixedly connected to the second pressure wheel slider (512), the other end of the second pressure wheel spring (514) is fixedly connected to the second pressure wheel block (513), each of the second pressure wheel bodies (515) is fixedly arranged on the second pressure wheel block (513), each of the first pressure wheel bodies (245) is in contact with the surface of the bag, and the pressure wheel driving assembly (52) is arranged on the workbench (1) and is used to drive the second pressure wheel rod (511) to rotate.

2. A new bagging machine according to claim 1, characterized in that: The bag feeding mechanism (2) also includes a sticky tape feeding assembly (23), which includes a sticky tape feeding roller (231) (212), a sticky tape guide wheel (232) and a sticky tape receiving roller (234). The sticky tape feeding roller (231) (212) is rotatably disposed on the workbench (1), the sticky tape guide wheel (232) is fixedly disposed on the workbench (1), and the sticky tape receiving roller (234) is rotatably disposed on the workbench (1). The sticky tape of the sticky tape feeding roller (231) (212) is adhered to the bag through the sticky tape guide wheel (232) and is transported along with the bag feeding assembly (21), and the sticky tape receiving roller (234) reels the protective portion of the sticky tape.

3. A new bagging machine according to claim 1, characterized in that: The bag feeding mechanism (2) further comprises a first pressing wheel assembly (24), the first pressing wheel assembly (24) being arranged between the bag discharging assembly (21) and the bag pushing assembly (22), the first pressing wheel assembly (24) comprising a first pressing wheel pressure rod (241), a first pressing wheel slider (242), a first pressing wheel pressure block (243), a first pressing wheel spring (244) and a plurality of first pressing wheel bodies (245), the first pressing wheel pressure rod (241) being fixedly arranged on the workbench (1), the first pressing wheel slider (242) being capable of The first pressure wheel pressing block (243) is rotatably arranged on the workbench (1), one end of the first pressure wheel spring (244) is fixedly connected to the first pressure wheel sliding block (242), the other end of the first pressure wheel spring (244) is fixedly connected to the first pressure wheel pressing block (243), each of the first pressure wheel bodies (245) is fixedly arranged on the first pressure wheel pressing block (243), and each of the first pressure wheel bodies (245) and the first pressure wheel pressure rod (241) are arranged opposite to each other and respectively abut against two sides of the bag.

4. A new bagging machine according to claim 1, characterized in that: The bag feeding mechanism (2) further comprises a color sensing component (25), wherein the color sensing component (25) is arranged between the bag discharging component (21) and the bag pushing component (22), and the color sensing component (25) comprises a color sensing seat (251) and a color sensor (252), wherein the color sensing seat (251) is movably arranged on the workbench (1) and is located on the top of the bag, and the color sensor (252) is fixedly arranged on the color sensing seat (251).

5. A new bagging machine according to claim 1, characterized in that: The bag feeding mechanism (2) further comprises a punching assembly (26), wherein the punching assembly (26) is arranged between the bag discharging assembly (21) and the bag pushing assembly (22), wherein the punching assembly (26) comprises a punching seat (261) and a puncher (262), wherein the punching seat (261) is movably arranged on the workbench (1), wherein the punching seat (261) is provided with a punching groove, a first through hole and a second through hole which are arranged through the punching groove, wherein the first through hole and the second through hole are both connected to the punching groove, and the first through hole and the second through hole are arranged opposite to each other, wherein the puncher (262) is fixedly arranged on the punching seat (261) and opposite to the first through hole, and the bag is passed through the punching groove.

6. A new bagging machine according to claim 1, characterized in that: The bag loading mechanism (2) further comprises a support rod assembly (27), wherein the support rod assembly (27) is arranged between the bag discharging assembly (21) and the bag pushing assembly (22), and the support rod assembly (27) comprises a support rod plate (271) and a support rod body (272), wherein the support rod plate (271) is movably arranged on the workbench (1), and the support rod body (272) is fixedly arranged on the support rod plate (271), and the support rod body (272) is penetrated into the interior of the bag and abuts against the interior of the bag.

7. A new bagging machine according to claim 1, characterized in that: The bag feeding mechanism (2) further comprises a flattening component (28), wherein the flattening component (28) is arranged between the bag pushing component (22) and the hot cutting and sealing mechanism (4), wherein the flattening component (28) comprises a blowing seat (281) and a blowing rod (282), wherein the blowing seat (281) is fixedly arranged on the workbench (1), and the blowing rod (282) is fixedly arranged on the blowing seat (281), and the blowing rod (282) is provided with a plurality of blowing nozzles (2821), wherein each of the blowing nozzles (2821) is evenly distributed along the length direction of the blowing rod (282), each of the blowing nozzles (2821) is arranged toward the hot cutting and sealing mechanism (4), and each of the blowing nozzles (2821) blows the surface of the bag flat.

8. A new bagging machine according to claim 2, characterized in that: The invention also comprises a sticky tape bag sealing mechanism (6), wherein the second pressing wheel mechanism (5) is arranged behind the hot-cut bag sealing mechanism (4), the sticky tape bag sealing mechanism (6) comprises a push-seal assembly (61), the push-seal assembly (61) comprises a push-seal seat (611), a push-seal cylinder (612), a push-seal block (613), a push-seal brush (614) and a push-seal adjusting rod (615), the push-seal seat (611) is slidably matched with the workbench (1), the push-seal cylinder (612) is fixedly arranged on the push-seal seat (611), the push-seal block (613) is fixedly arranged on the piston rod of the push-seal cylinder (612), the push-seal block (613) is provided with a plurality of push-seal suction holes arranged through, the push-seal brush (614) is fixedly arranged on the push-seal block (613), and the push-seal adjusting rod (615) is threadedly connected to the push-seal seat (611) and abuts against the workbench (1).

9. A new bagging machine according to claim 8, characterized in that: The adhesive tape bag sealing mechanism (6) further comprises a pressure-sealing assembly (62), the pressure-sealing assembly (62) comprising a pressure-sealing seat (621), a pressure-sealing cylinder (622) and a pressure-sealing sheet (623), the pressure-sealing seat (621) being movably arranged on the workbench (1), the pressure-sealing cylinder (622) being fixedly arranged on the pressure-sealing seat (621), and the pressure-sealing sheet (623) being fixedly arranged on the piston rod of the pressure-sealing cylinder (622).