CN220682729U - Full-automatic opening, packaging and sealing integrated machine - Google Patents

Full-automatic opening, packaging and sealing integrated machine Download PDF

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Publication number
CN220682729U
CN220682729U CN202322243260.9U CN202322243260U CN220682729U CN 220682729 U CN220682729 U CN 220682729U CN 202322243260 U CN202322243260 U CN 202322243260U CN 220682729 U CN220682729 U CN 220682729U
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CN
China
Prior art keywords
box
bottle
conveying
component
sealing
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Active
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CN202322243260.9U
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Chinese (zh)
Inventor
闵维达
朱海龙
张飞鸿
黄龙安
尹波
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Jiangsu Tom Intelligent Equipment Co ltd
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Jiangsu Tom Intelligent Equipment Co ltd
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Priority to CN202322243260.9U priority Critical patent/CN220682729U/en
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Abstract

The utility model discloses a full-automatic opening, packaging and sealing integrated machine, and belongs to the field of automatic packaging. Comprises a frame, an unpacking feeding component, a bottle conveying feeding component, a baffle feeding component and a box body transmission component. The utility model has the advantages that the box filling machine belongs to a compact integrated full-automatic box filling machine, integrates box opening, box filling, box sealing and baffle plate placing, greatly reduces the floor area of the machine, improves the linkage of the whole machine for box opening, box filling and box sealing while compressing the space, improves the packaging efficiency and quality, reduces the labor cost and the operation error, and simultaneously can greatly lighten the working strength of operators. In the design, the position to be grabbed of the bottle, the position to be boxed of the carton and the placing position of the baffle are all positioned at the same reference position, the grabbing and placing process of the bottle is set as a parabolic walking track line, and compared with the conventional linear lifting and translation, more time is saved.

Description

Full-automatic opening, packaging and sealing integrated machine
Technical Field
The utility model belongs to the field of automatic packaging, and particularly relates to a full-automatic opening, packaging and sealing integrated machine.
Background
At present, in a box filling machine commonly used in China, a falling mode and a grabbing mode are mainly adopted for filling boxes. The case packer is a mechanical device for packing glass bottles, plastic bottles (barrels), metal barrels, soft packages, paper boxes and the like into prepared cases in a mechanical transmission manner. The working principle is that products are orderly arranged or metered/counted, and are transmitted in a grabbing/falling mode and are put into a box body. Both the drop type and the grabbing type have the advantages and the disadvantages, the drop type is not suitable for fragile and explosive products, but has high yield and wider selection range of the oriented products; the grabbing type bottle grabbing device has good grabbing stability and small damage to products, but the operation steps are more, and the walking track of the grabbing head is limited by driving in the bottle grabbing and bottle placing processes.
With the development of the packaging machinery industry in China, the requirements of customers on the packaging machinery are continuously improved, and especially, the production capacity is maximized, the safety protection of products and personnel is realized, the occupied area of a production line is increased, and the like. Development of more sophisticated high-precision high-performance automatic intelligent integrated equipment is currently the most important project. The full-automatic opening, packaging and sealing integrated machine has the advantages of complete functions, convenient control, intellectualization and integration. The development of the full-automatic opening, packaging and sealing integrated machine has positive significance for the packaging industry.
Disclosure of Invention
In order to overcome the technical defects, the utility model provides a full-automatic opening, packaging and sealing integrated machine, which aims to solve the problems related to the background technology.
The utility model provides a full-automatic opening, mounting and sealing one-piece machine, which comprises:
a frame;
the box opening and feeding assembly comprises a box storage part, a box opening part and a box closing cover part, wherein the box storage part is arranged on one side of the frame and is suitable for storing and transmitting a packaging box to be unfolded;
the bottle conveying and feeding assembly comprises a bottle conveying component which extends into the frame and is suitable for conveying bottles to be packaged, a bottle whole-row component which is arranged at the tail end of the bottle conveying component and is positioned below the box closing cover component and is used for arranging the bottles in a preset rule, and a bottle body transferring component which is arranged on the frame and is used for transferring the whole-row bottles to the box closing cover component;
the baffle feeding assembly comprises a baffle conveying component, a shaping component and a baffle transferring component, wherein the baffle conveying component extends into the frame and is suitable for conveying a baffle, the shaping component is arranged at the output end of the baffle conveying component, and the baffle transferring component is used for transferring the baffle to the position of the box closing cover component;
the box body transmission assembly comprises a box body transmission part and a sealing part, wherein the box body transmission part is arranged outside the frame along the box body cover closing part, and the sealing part is arranged on the box body transmission part;
the logistics transmission of the unpacking feeding component, the partition plate feeding object and the bottle conveying feeding component are converged on the box closing cover component and are led out through the box body transmission component.
Preferably or alternatively, the tank component comprises:
the storage bin comprises a chute part which is obliquely arranged at one side of the frame, an extension part which is horizontally arranged at the outer edge of the chute part, and a follow-up baffle which is arranged on the chute part and moves along with the thickness change of the stacked and to-be-unfolded packaging boxes;
the box blocking mechanism comprises a cross beam arranged at the upper part of the tail end of the box storage bin, two bending limiting pieces which are arranged on the cross beam and are matched with the upper edge of the to-be-unfolded packing box in a stacked state, and a conical limiting block which is arranged on the cross beam and corresponds to the gap of the upper cover of the to-be-unfolded packing box in the stacked state.
Preferably or alternatively, the unpacking part comprises:
the box opening sucker is arranged on the linear module and is suitable for sucking one side of the outermost packaging box to be unfolded and performing reciprocating linear motion along the direction away from or close to the storage box bin;
the box pushing mechanism comprises an arc-shaped guide plate arranged on one side of the linear module, so that the other side of the packaging box to be unfolded moves gradually to one side close to the linear module.
Preferably or alternatively, the box cover part comprises: the two cover closing pushing plates are arranged on two sides of the movement direction of the box opening sucker, and the scissor type lifting pushing plate is arranged at the bottom of the box opening sucker.
Preferably or optionally, the scissor lift push plate includes: the two cover closing cylinders are respectively driven to rotate.
Preferably or optionally, a box opening guiding component is further arranged above the box closing cover component; the box opening guide member includes: four box supporting plates which move along the center position close to or far away from the packing box.
Preferably or alternatively, the bottle alignment means comprises:
the bottle conveying device comprises a bottle conveying component, a bottle conveying platform and a bottle conveying platform, wherein a limit plate is arranged on one side, far away from the bottle conveying component, of the bottle conveying platform;
the bottle clamping mechanism is arranged at the tail end of the bottle conveying component and is suitable for adjusting the transmission beat of the tail end of the bottle conveying component;
the bottle pushing mechanism is arranged on one side of the bottle arranging platform, so that the bottle moves towards the limiting plate along the tail end of the bottle conveying part;
the bottle buffering mechanism is arranged on one side of the bottle arranging platform and penetrates through the bottle arranging platform, and is suitable for limiting the movement amplitude of the bottle pushing mechanism.
Preferably or alternatively, the bottle transfer member comprises: the bottle grabbing device comprises a mounting bracket arranged between the bottle arranging component and the box closing cover component, a lifting platform arranged on the mounting bracket and capable of horizontally moving along the mounting bracket, a lifting device arranged on the lifting platform, and a bottle grabbing module arranged on the output end of the lifting device in a separable mode.
Preferably or alternatively, the case transfer part includes: the conveying board is arranged on the conveying board, a plurality of conveying rollers are arranged at preset intervals, clamping belts are arranged on two sides of the conveying rollers, and a conveying motor is in transmission connection with the clamping belts.
The utility model relates to a full-automatic opening, packaging and sealing integrated machine, which has the following beneficial effects compared with the prior art: the utility model has the advantages that the box filling machine belongs to a compact integrated full-automatic box filling machine, integrates box opening, box filling, box sealing and baffle plate placing, greatly reduces the floor area of the machine, improves the linkage of the whole machine for box opening, box filling and box sealing while compressing the space, improves the packaging efficiency and quality, reduces the labor cost and the operation error, and simultaneously can greatly lighten the working strength of operators. In the design, the position to be grabbed of the bottle, the position to be boxed of the carton and the placing position of the baffle are all positioned at the same reference position, the grabbing and placing process of the bottle is set as a parabolic walking track line, and compared with the conventional linear lifting and translation, more time is saved. The feeding of baffle adopts belt conveyor's mode, and the manual work only need put the baffle of whole stack on the belt can, need not the manual work and watch often, and the lack of materials can report to the police, safe and reliable and use manpower sparingly.
Drawings
Fig. 1 is a plan view of the present utility model.
Fig. 2 is a schematic structural view of the present utility model.
Fig. 3 is a schematic structural view of an open-box feeding assembly according to the present utility model.
Fig. 4 is a schematic structural diagram of an open-box feeding assembly according to the second embodiment of the present utility model.
Fig. 5 is an enlarged view of a part of the port guide member of the present utility model.
FIG. 6 is a schematic view of the structure of the bottle alignment means of the present utility model.
FIG. 7 is a schematic view showing the structure of a bottle body transferring member according to the present utility model.
FIG. 8 is a schematic view of a separator feeding assembly according to the present utility model.
Fig. 9 is a schematic view of the structure of the case transfer part in the present utility model.
Fig. 10 is a schematic view of the structure of the barrier seal member of the present utility model.
The reference numerals are:
100. a frame;
200. unpacking and feeding components; 210. a tank component; 211. a storage bin; 2111. a chute portion; 2112. an extension part; 2113. a follow-up baffle; 212. a box blocking mechanism; 2121. a cross beam; 2122. bending the limiting piece; 2123. a conical limiting block; 220. a box opening part; 221. a box opening sucker; 222. a linear module; 223. an arc-shaped guide plate; 231. closing a push plate; 232. a scissor type lifting push plate; 2231. a rotating arm; 2232. closing the cover plate; 2233. a closing cylinder; 240. a box opening guide member; 241. a box supporting rod; 242. a box supporting plate;
300. a bottle conveying and feeding assembly; 310. a bottle conveying component; 320. a bottle alignment member; 321. a bottle-finishing platform; 322. a limiting plate; 323. a bottle clamping mechanism; 324. a bottle pushing mechanism; 3241. a bottle-finishing push plate; 325. a bottle buffering mechanism; 3251. a baffle column; 330. a bottle body transferring part; 331. a mounting bracket; 332. a lifting platform; 333. a lifting device; 334. a bottle grabbing module;
400. a baffle plate feeding assembly; 410. a separator conveying member; 420. shaping parts; 430. a separator transfer member;
500. a box body transmission assembly; 510. a case transfer member; 511. a conveying board; 512. a transmission roller; 513. clamping the belt; 514. a conveying motor; 520. a sealing member; 521. a folding cover upper mechanism; 522. sealing the upper cover mechanism; 523. and a bottom sealing cover mechanism.
Detailed Description
In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present utility model. It will be apparent, however, to one skilled in the art that the utility model may be practiced without one or more of these details. In other instances, well-known features have not been described in detail in order to avoid obscuring the utility model.
Referring to fig. 1 to 10, a fully automatic opening and sealing machine comprises: frame 100, unpacking feeding subassembly 200, defeated bottle feeding subassembly 300, baffle feeding subassembly 400 and box transmission subassembly 500.
The frame 100 is used for fixedly installing the unpacking and feeding assembly 200, the bottle conveying and feeding assembly 300, the partition plate feeding assembly 400 and the box body conveying assembly 500, and auxiliary facilities such as an outer frame, a power supply box and the like are arranged on the frame 100, so that the box body conveying and feeding device is specifically unfolded. The unpacking and feeding assembly 200 comprises a box storage part 210 arranged on one side of the frame 100 and suitable for storing and transmitting a packaging box to be unfolded, a unpacking part 220 arranged on one side of the box storage part 210, and a box closing cover part arranged on the unpacking part 220; the bottle conveying and feeding assembly 300 comprises a bottle conveying part 310 extending into the frame 100 and suitable for conveying bottles to be packaged, a bottle arranging part 320 arranged at the tail end of the bottle conveying part 310 and below the box closing part and used for arranging the bottles in a preset rule, and a bottle transferring part 330 arranged on the frame 100 and used for transferring the arranged bottles to the box closing part; the separator feeding assembly 400 includes a separator conveying member 410 extending into the frame 100 and adapted to convey a separator, a shaping member 420 provided at an output end of the separator conveying member 410, and a separator transferring member 430 transferring the separator to a closed-casing member position; the case transfer assembly 500 includes a case transfer part 510 along the outside of the frame 100 by the box closing part, and a sealing part 520 provided on the case transfer part 510; the logistics transmission of the unpacking and feeding assembly 200, the partition plate feeding objects and the bottle conveying and feeding assembly 300 are converged on the box closing cover part and are led out through the box conveying assembly 500. Because collect case, vanning, joint sealing, put baffle in an organic whole, great reduction the area of machine, also improved the complete machine linkage of case opening, vanning, joint sealing when space compression, improved packing efficiency and quality, reduced the error of cost of labor and operation, alleviate operating personnel's working strength to a great extent. The bottle grabbing position, the carton box grabbing position and the baffle placing position are all in the same reference position, the bottle grabbing and placing process is set to be parabolic walking track lines, and compared with the conventional linear lifting translation, more time is saved.
In a further embodiment, referring to fig. 3 and 4, the tank unit 210 includes: a tank compartment 211 and a baffle mechanism 212. Wherein the bin 211 comprises a side chute portion 2111 which is obliquely arranged on the frame 100, an extension portion 2112 which is horizontally arranged at the outer edge of the chute portion 2111, and a follow-up baffle 2113 which is arranged on the chute portion 2111 and moves along with the thickness change of the stacked package to be unfolded; the baffle box mechanism 212 comprises a cross beam 2121 arranged at the upper part of the tail end of the storage box bin 211, two bending limiting pieces 2122 which are arranged on the cross beam 2121 and are matched with the upper edge of the to-be-unfolded packaging box in a stacked state, and a conical limiting block 2123 which is arranged on the cross beam 2121 and corresponds to the gap of the upper cover of the to-be-unfolded packaging box in the stacked state. The complete shape of the bending stopper changes with the shapes of the chute portion 2111 and the extension portion 2112, so that the bending stopper is positioned in parallel on the tank compartment 211. That is, the stacked packages to be unfolded are arranged along the sliding groove portion 2111 and the extension portion 2112, when a plurality of packages to be unfolded are stacked together, a certain rigidity is provided between the upper covers of the packages to be unfolded in the stacked state, and the stacked packages are neatly placed in the bin 211 under the action of the bending limiting member 2122 and the tapered limiting member 2123.
In a further embodiment, the unpacking part 220 includes: an unpacking sucker 221 and a box pushing mechanism. The unpacking sucker 221 is arranged on the linear module 222, is suitable for sucking one side of the outermost packaging box to be unfolded and makes reciprocating linear motion along the direction away from or close to the storage bin 211; the box pushing mechanism comprises an arc-shaped guide plate 223 arranged on one side of the linear module 222, so that the other side of the packaging box to be unfolded gradually moves to the side close to the linear module 222. In the unpacking process, the unpacking sucker 221 adsorbs one side surface of the outermost packaging box to be unfolded, the packaging box to be unfolded moves along the linear module 222, so that the other side surface of the packaging box to be unfolded gradually moves to one side close to the linear module 222, and an unfolded state is formed.
The box closing cover part includes: two closing cover pushing plates 231 arranged on two sides of the moving direction of the box opening suction disc 221, and a scissor type lifting pushing plate 232 arranged at the bottom of the box opening suction disc 221. The shear type lifting push plate 232 includes: two rotating arms 2231 rotatably installed on the frame 100 and vertically rotatable along a vertical plane, two cover plates 2232 provided on the rotating arms 2231, and two cover cylinder 2233 respectively driving the rotating arms 2231 to rotate. Specifically, the cover closing pushing plates 231 may move along the direction perpendicular to the linear module 222, one cover closing pushing plate 231 is disposed on the box pushing mechanism, and the other cover closing pushing plate 231 is disposed on the box conveying assembly 500 and is respectively located at two sides of the box opening suction disc 221. When the box body is unfolded, the two bottom covers parallel to the linear module 222 are inwards bent to the side face of the packaging box under the action of the cover closing assembly, then are lifted up and down under the action of the scissor lifting push plate 232, and push the two bottom covers perpendicular to the linear module 222 to be folded, so that an unfolding packaging box with an open upper cover is formed.
In a further embodiment, in order to facilitate feeding and ensure the success rate of bottle feeding, a bin opening guiding component 240 is further arranged above the bin closing cover component. Referring to fig. 5, the bin port guide member 240 includes: an adjusting mechanism mounted on the frame 100, two box supporting rods 241 arranged on the adjusting mechanism, and four box supporting plates 242 arranged on the two box supporting rods 241 and capable of being close to and far from the center of the packing box. The adjusting mechanism is suitable for changing the position and the movement direction of the two box supporting rods 241, and is provided with a lifting mechanism and a horizontal movement mechanism, the horizontal movement mechanism drives the two box supporting rods 241 to be close to or far away from each other, each box supporting rod 241 is provided with two box supporting plates 242, the box supporting rods 241 drive the two box supporting plates 242 to be close to or far away from each other, and then the four box supporting plates 242 are close to or far away from the central position of the packaging box, and then the upper cover of the packaging box in an unfolded state is outwards folded by a preset angle, so that feeding of bottles is facilitated.
In a further embodiment, referring to fig. 6, the bottle alignment unit 320 includes: a whole bottle platform 321, a bottle clamping mechanism 323, a bottle pushing mechanism 324 and a bottle slowing mechanism 325. A limit plate 322 is arranged on one side of the whole bottle platform 321 far away from the bottle conveying component 310, and two slide ways are arranged on the whole bottle platform 321, so that a baffle column 3251 of the bottle buffering mechanism 325 is allowed to pass through the slide ways; the bottle clamping mechanism 323 is arranged at the tail end of the bottle conveying component 310 and is suitable for adjusting the transmission beat of the tail end of the bottle conveying component 310; the bottle pushing mechanism 324 comprises a bottle pushing cylinder arranged on one side of the bottle pushing platform 321 and a bottle pushing plate 3241 which is connected with the bottle pushing cylinder and is arranged above the bottle pushing platform 321, so that the bottle moves towards the limiting plate 322 along the tail end of the bottle conveying part 310; the bottle buffering mechanism 325 comprises a bottle buffering cylinder arranged on one side of the bottle arranging platform 321 and penetrates through two blocks on the slide way, and is suitable for limiting the movement amplitude of the bottle pushing mechanism 324. The bottle aligning member 320 is also provided with an adjusting mechanism adapted to adjust the relative position of the bottle aligning mechanism with respect to the bottle conveying member 310. In the bottle arranging process, the conveying beat of the tail end of the bottle conveying component 310 is adjusted through the bottle clamping mechanism 323, so that the bottles are orderly arranged on the front of the bottle arranging push plate 3241, the bottle buffering component adjusts the position of the baffle column 3251 according to the size of the bottles, and then the bottle pushing mechanism 324 drives the bottles to move on the bottle arranging platform 321 until the bottle arranging push plate 3241 abuts against the baffle column 3251, and the arrangement of the bottles in the row is realized. The steps are repeated to continue conveying, shaping and sucking, so that the arrangement of the bottle array is realized in a reciprocating manner, wherein the motion amplitude of the bottle pushing mechanism 324 is limited by the bottle slowing mechanism 325, so that rigid collision between the bottles is avoided, and damage is avoided.
In a further embodiment, referring to fig. 7, the bottle transferring unit 330 includes: the bottle grabbing device comprises a mounting bracket 331 arranged between the bottle arranging part 320 and the box closing part, a lifting platform 332 arranged on the mounting bracket 331 and capable of horizontally moving along the mounting bracket 331, a lifting device 333 arranged on the lifting platform 332, and a bottle grabbing module 334 detachably arranged on the output end of the lifting device 333. It should be noted that, the lifting device 333 is connected with the bottle grabbing module 334 in a separable manner, and a customer can adjust the bottle grabbing modules 334 with different specifications according to the types of the packaging box and the bottle, so as to realize the transfer and packaging of the bottles with various specifications.
In a further embodiment, referring to fig. 8, the separator conveying member 410 is a belt conveying device, the separator moves to the end along the belt conveying device, that is, the end of the separator conveying member 410 is a closed end, so that the separator is aligned in one direction, at least one alignment pushing plate is arranged at two sides of the grabbing station, so that the separator is forced to move in a predetermined position at the center or one side of the separator, the alignment of the separator is realized, and then the separator is transferred into the packing box on the box closing cover member through the separator transferring member 430. For a specific structure of the separator feeding assembly 400, refer to the prior application of this company, publication No. CN105600044a.
In a further embodiment, referring to fig. 9, the box transmission part 510 includes: the conveying board 511, a plurality of conveying rollers 512 arranged on the conveying board 511 at preset intervals, clamping belts 513 arranged on two sides of the conveying rollers 512, and a conveying motor 514 in transmission connection with the clamping belts 513. The transmission roller 512 mainly plays a supporting and driven role, the clamping belt 513 is driven to rotate through the conveying motor 514, the transfer of the packaging box is achieved, meanwhile, the clamping belts 513 on two sides also have a certain limiting effect, the stability of the packaging box is improved, and preparation is made for subsequent sealing. Referring to fig. 10, the opening closure member 520 includes a folding cover upper mechanism 521 and a cover closing mechanism 522 which are installed above the case transfer member 510, and a bottom closing mechanism 523 which is provided below the case transfer member 510. The upper cover and the lower cover of the packing case are sealed by the sealing member 520, respectively. The folding cover upper mechanism 521, the closing cover mechanism 522, and the closing cover mechanism 523 may be conventional techniques, and are not described in detail herein.
In addition, the specific features described in the above embodiments may be combined in any suitable manner without contradiction. The various possible combinations of the utility model are not described in detail in order to avoid unnecessary repetition.

Claims (9)

1. A full-automatic opening and sealing one-piece machine, comprising:
a frame (100);
the unpacking and feeding assembly (200) comprises a box storage component (210) which is arranged on one side of the frame (100) and is suitable for storing and conveying a packaging box to be unfolded, a unpacking component (220) which is arranged on one side of the box storage component (210), and a box closing cover component which is arranged on the unpacking component (220);
the bottle conveying and feeding assembly (300) comprises a bottle conveying component (310) which extends into the frame (100) and is suitable for conveying bottles to be packaged, a bottle arranging component (320) which is arranged at the tail end of the bottle conveying component (310) and is positioned below the box closing cover component and is used for arranging the bottles in a preset rule, and a bottle body transferring component (330) which is arranged on the frame (100) and is used for transferring the arranged bottles to the box closing cover component;
a separator feeding assembly (400) comprising a separator conveying member (410) extending into the frame (100) and adapted to convey a separator, a shaping member (420) provided at an output end of the separator conveying member (410), and a separator transferring member (430) transferring the separator to a closed-box cover member position;
a case transfer assembly (500) including a case transfer member (510) extended from the casing closing member to the outside of the frame (100), and a sealing member (520) provided on the case transfer member (510);
the logistics transmission of the unpacking feeding assembly (200), the partition plate feeding objects and the bottle conveying feeding assembly (300) are converged on the box closing cover part and led out through the box body transmission assembly (500).
2. The fully automatic opening and sealing all-in-one machine according to claim 1, wherein the tank component (210) comprises:
the storage bin (211) comprises a side chute portion (2111) which is obliquely arranged on the frame (100), an extension portion (2112) which is horizontally arranged at the outer edge of the chute portion (2111), and a follow-up baffle (2113) which is arranged on the chute portion (2111) and moves along with the thickness change of a packaging box to be unfolded after stacking;
the box blocking mechanism (212) comprises a cross beam (2121) arranged at the upper part of the tail end of the box storage bin (211), two bending limiting pieces (2122) which are arranged on the cross beam (2121) and are matched with the upper edge of a to-be-unfolded packing box in a stacked state, and a conical limiting block (2123) which is arranged on the cross beam (2121) and is corresponding to a gap of an upper cover of the to-be-unfolded packing box in the stacked state.
3. The fully automatic unpacking and sealing all-in-one machine according to claim 2, wherein the unpacking part (220) comprises:
the unpacking sucker (221) is arranged on the linear module (222) and is suitable for adsorbing one side of the outermost packaging box to be unfolded and performing reciprocating linear motion along the direction away from or close to the storage bin (211);
the box pushing mechanism comprises an arc-shaped guide plate (223) arranged on one side of the linear module (222) so that the other side of the packaging box to be unfolded gradually moves towards one side close to the linear module (222).
4. A fully automatic opening, closing and sealing all-in-one machine according to claim 3, wherein the box cover component comprises: two cover closing pushing plates (231) arranged on two sides of the moving direction of the box opening sucker (221), and a scissor type lifting pushing plate (232) arranged at the bottom of the box opening sucker (221).
5. The fully automatic opening and sealing all-in-one machine according to claim 4, wherein the scissor lift push plate (232) comprises: two rotating arms (2231) rotatably installed on the frame (100) and rotatable up and down along a vertical plane, two cover plates (2232) provided on the rotating arms (2231), and two cover cylinder (2233) respectively driving the rotating arms (2231) to rotate.
6. The fully automatic opening, packaging and sealing integrated machine according to claim 4, wherein a box opening guide component (240) is further arranged above the box closing cover component; the box mouth guide member (240) includes: four gussets (242) that move along a position near or away from the center of the package.
7. The fully automatic opening and sealing all-in-one machine according to claim 1, wherein the bottle alignment means (320) comprises:
a bottle arranging platform (321), wherein a limiting plate (322) is arranged on one side of the bottle arranging platform (321) far away from the bottle conveying component (310);
the bottle clamping mechanism (323) is arranged at the tail end of the bottle conveying component (310) and is suitable for adjusting the transmission beat of the tail end of the bottle conveying component (310);
the bottle pushing mechanism (324) is arranged on one side of the bottle arranging platform (321) and enables the bottle to move towards the limiting plate (322) along the tail end of the bottle conveying component (310);
and the bottle slowing mechanism (325) is arranged on one side of the bottle arranging platform (321) and penetrates through the bottle arranging platform (321) and is suitable for limiting the movement amplitude of the bottle pushing mechanism (324).
8. The fully automatic opening and sealing all-in-one machine according to claim 1, wherein the bottle transfer member (330) comprises: the bottle grabbing device comprises a mounting bracket (331) arranged between the bottle arranging component (320) and the box closing cover component, a lifting platform (332) arranged on the mounting bracket (331) and capable of horizontally moving along the mounting bracket (331), a lifting device (333) arranged on the lifting platform (332), and a bottle grabbing module (334) detachably arranged on the output end of the lifting device (333).
9. The fully automatic opening and sealing all-in-one machine according to claim 1, wherein the box conveying part (510) includes: the conveying device comprises a conveying board (511), a plurality of conveying rollers (512) arranged on the conveying board (511) at preset intervals, clamping belts (513) arranged on two sides of the conveying rollers (512), and a conveying motor (514) in transmission connection with the clamping belts (513).
CN202322243260.9U 2023-08-21 2023-08-21 Full-automatic opening, packaging and sealing integrated machine Active CN220682729U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322243260.9U CN220682729U (en) 2023-08-21 2023-08-21 Full-automatic opening, packaging and sealing integrated machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322243260.9U CN220682729U (en) 2023-08-21 2023-08-21 Full-automatic opening, packaging and sealing integrated machine

Publications (1)

Publication Number Publication Date
CN220682729U true CN220682729U (en) 2024-03-29

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ID=90411188

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322243260.9U Active CN220682729U (en) 2023-08-21 2023-08-21 Full-automatic opening, packaging and sealing integrated machine

Country Status (1)

Country Link
CN (1) CN220682729U (en)

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