CN109625394B - Big box cartoning machine of chewing gum - Google Patents

Big box cartoning machine of chewing gum Download PDF

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Publication number
CN109625394B
CN109625394B CN201811631394.5A CN201811631394A CN109625394B CN 109625394 B CN109625394 B CN 109625394B CN 201811631394 A CN201811631394 A CN 201811631394A CN 109625394 B CN109625394 B CN 109625394B
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China
Prior art keywords
sugar
stacking device
module
paper
main body
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Application number
CN201811631394.5A
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CN109625394A (en
Inventor
杜国先
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Chengdu Sanke Industry Co Ltd
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Chengdu Sanke Industry Co Ltd
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Priority to CN201811631394.5A priority Critical patent/CN109625394B/en
Publication of CN109625394A publication Critical patent/CN109625394A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B25/00Packaging other articles presenting special problems
    • B65B25/005Packaging other articles presenting special problems packaging of confectionery
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B11/00Wrapping, e.g. partially or wholly enclosing, articles or quantities of material, in strips, sheets or blanks, of flexible material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B35/00Supplying, feeding, arranging or orientating articles to be packaged
    • B65B35/30Arranging and feeding articles in groups
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B35/00Supplying, feeding, arranging or orientating articles to be packaged
    • B65B35/30Arranging and feeding articles in groups
    • B65B35/50Stacking one article, or group of articles, upon another before packaging
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B43/00Forming, feeding, opening or setting-up containers or receptacles in association with packaging
    • B65B43/42Feeding or positioning bags, boxes, or cartons in the distended, opened, or set-up state; Feeding preformed rigid containers, e.g. tins, capsules, glass tubes, glasses, to the packaging position; Locating containers or receptacles at the filling position; Supporting containers or receptacles during the filling operation

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Confectionery (AREA)
  • Auxiliary Devices For And Details Of Packaging Control (AREA)

Abstract

The invention discloses a chewing gum big box packing machine which comprises a box packing machine main body, wherein a paper conveying module, a sugar feeding module, a sugar layer stacking module and a sugar packing module are arranged on the box packing machine main body, the paper conveying module conveys sugar paper to the sugar packing module, sugar materials enter the sugar layer stacking module under the action of the sugar feeding module, the sugar layer stacking module stacks the sugar layers and then places the sugar layers on the sugar paper in the sugar packing module, and the sugar paper is molded in the sugar packing module and is packed in the sugar paper. The chewing gum big box packaging machine provided by the invention has the advantages of simple structure, convenience in use and lower manufacturing cost, and can be used for packaging sugar materials after being laminated according to the requirements of different laminated sugar.

Description

Big box cartoning machine of chewing gum
Technical Field
The invention belongs to the technical field of candy packaging, and particularly relates to a chewing gum big box packaging machine.
Background
At present, with the development of scientific technology, the living standard of people is higher and higher, and the requirements on the quality of life are also higher and higher. At present, not only children like candies, but also adult groups like candies are larger and larger, so that the candy market becomes larger and larger in the process of continuously improving the living standard of people, and the supply of candies becomes more and more along with the increase of the demand on the market.
The traditional candy production and packaging technology is usually operated manually by manpower, and the operation mode is time-consuming and labor-consuming and has lower efficiency. In the long-time production process, the error rate gradually rises due to factors such as fatigue. Thus, with the development of society, the trend of replacing manual work by machines is becoming more and more evident, and the development of technology is making the cost of mechanical work lower and lower.
Disclosure of Invention
The invention aims to solve the problems and provide the chewing gum big box packing machine which has the advantages of simple structure, convenient use and lower manufacturing cost.
In order to solve the technical problems, the technical scheme of the invention is as follows: the utility model provides a big box-packed box machine of chewing gum, includes the cartoning machine main part, is equipped with paper feed module, send the sugar module, the sugar layer fold module and dress sugar module on the cartoning machine main part, and paper feed module carries sugar paper to dress sugar module, and the sugar material gets into sugar layer fold module under the effect of sending the sugar module, and sugar layer fold module is placed on the sugar paper that is arranged in dress sugar module after folding sugar layer, and the sugar paper is formed in dress sugar module and is packed sugar material inside sugar paper.
Preferably, the paper conveying module comprises a paper conveying module support, a paper conveying module adsorption piece, a paper conveying module paper storage frame, a paper conveying module sliding piece and a paper conveying module lifting piece, wherein the paper conveying module support is fixedly connected with the box packing machine body, the paper conveying module paper storage frame is rotationally connected with the paper conveying module support, sugar paper in the paper conveying module paper storage frame moves onto the paper conveying module support under the adsorption action of the paper conveying module adsorption piece, meanwhile, the paper conveying module sliding piece moves the sugar paper to the top of the sugar packing module, and the paper conveying module lifting piece pushes the sugar paper into the sugar packing module.
Preferably, the paper conveying module lifting piece comprises a paper conveying module lifting piece rod, a paper conveying module lifting piece plate, a paper conveying module lifting piece sliding rail and a paper conveying module lifting piece sliding block capable of moving up and down, the paper conveying module lifting piece sliding block is in sliding connection with the paper conveying module lifting piece sliding rail, the paper conveying module lifting piece sliding rail is vertically distributed on the boxing machine body, the paper conveying module lifting piece plate is located at the end part of the paper conveying module lifting piece rod, the other end of the paper conveying module lifting piece rod is fixedly connected with the paper conveying module lifting piece sliding block, and the paper conveying module lifting piece sliding block drives the paper conveying module lifting piece to move up and down in the up-and-down movement process, so that the paper conveying module lifting piece rod is of an L-shaped structure.
Preferably, the sugar-containing module comprises a sugar-containing module main body, a sugar-containing module supporting rod capable of moving up and down, a rotatable sugar-containing module rotating rod and a sugar-containing module output device, wherein the sugar-containing module supporting rod is positioned in the sugar-containing module main body, the sugar-containing module output device is positioned at the bottom of the sugar-containing module main body, the sugar-containing module rotating rod is rotationally connected with the end part of the sugar-containing module output device, and sugar paper passing through the sugar-containing module main body moves to a set position through the sugar-containing module output device.
Preferably, the end part of the sugar-containing module supporting rod is provided with a sugar-containing module supporting rod supporting plate, and the sugar-containing module supporting rod supporting plate is positioned in the sugar-containing module main body.
Preferably, the sugar-containing module main body is of a hollow rectangular frame structure, the sugar-containing module main body is outwards protruded to form a first support leg of the sugar-containing module main body and a second support leg of the sugar-containing module main body, the part, opposite to the side of the sugar-containing module main body, of the end part of the first support leg of the sugar-containing module main body is of an inclined structure, and the section of sugar paper is changed into a U-shaped structure after moving in the sugar-containing module main body.
Preferably, the sugar feeding module comprises a transporter bracket part, a transporter rotating frame part and a transporter partition part, wherein the transporter rotating frame part is rotationally connected with the transporter bracket part, the transporter partition part is positioned at the end part of the transporter bracket part, the chewing gum is placed on the transporter bracket part, and the chewing gum is placed at a set position after passing through the transporter partition part.
Preferably, the transporter support member includes a transporter support member body, a rotatable transporter support member belt, transporter support member support feet and transporter support member support blocks, the transporter support member support feet and transporter support member support blocks being disposed at opposite ends of the transporter support member body, the transporter support member belt being mounted on the transporter support member body and rotatable within the transporter support member body.
Preferably, the sugar layer stacking module comprises a stacking device main body, a stacking device first motor, a stacking device second motor, a stacking device first lifting shaft, a stacking device second lifting shaft, a stacking device first screw shaft, a stacking device second screw shaft, a stacking device third motor, a stacking device fourth motor, a stacking device first pushing component and a stacking device second pushing component, wherein the stacking device first motor is connected with the stacking device first lifting shaft, the stacking device second motor is connected with the stacking device second lifting shaft, the stacking device third motor is connected with the stacking device first pushing component, the stacking device fourth motor is connected with the stacking device second pushing component, the stacking device first screw shaft is connected with the stacking device first lifting shaft through a stacking device connecting block, and the stacking device second screw shaft is connected with the stacking device second lifting shaft through a stacking device connecting block; a first lifting block of the stacking device is arranged at the end part of the first lifting shaft of the stacking device, and a second lifting block of the stacking device is arranged at the end part of the second lifting shaft of the stacking device; the stacking device body is provided with a stacking device body first groove and a stacking device body second groove, and the top of the stacking device body first groove is communicated with the top of the stacking device body second groove; the sugar material moves onto the first lifting block of the stacking device through the first pushing component of the stacking device, and when the first lifting block of the stacking device moves to a position communicated with the second groove of the stacking device body along the inner part of the first groove of the stacking device body in the upward movement process of the first lifting shaft of the stacking device, the second pushing component of the stacking device pushes the sugar material to enter the second groove of the stacking device body, and the sugar material positioned in the second groove of the stacking device body moves to the second notch of the stacking device body in the upward movement process of the second lifting shaft of the stacking device.
Preferably, the stacking device body comprises a stacking device body upper part and a stacking device body lower part, the stacking device body upper part and the stacking device body lower part are connected through a stacking device body partition plate, the stacking device first motor, the stacking device second motor, the stacking device first screw shaft and the stacking device second screw shaft are located at the stacking device body lower part, the stacking device third motor, the stacking device fourth motor, the stacking device first pushing component and the stacking device second pushing component are located at the stacking device body upper part, and the stacking device first lifting shaft and the stacking device second lifting shaft penetrate through the stacking device body partition plate.
The beneficial effects of the invention are as follows: the chewing gum big box packaging machine provided by the invention has the advantages of simple structure, convenience in use and lower manufacturing cost, and can be used for packaging sugar materials after being laminated according to the requirements of different laminated sugar.
Drawings
FIG. 1 is a schematic diagram of a gum bulk boxing machine in accordance with the present invention;
FIG. 2 is a schematic diagram of the front view of FIG. 1 in accordance with the present invention;
FIG. 3 is a schematic rear view of the structure of FIG. 1 of the present invention;
FIG. 4 is a schematic view of the structure of the paper feeding module and the sugar feeding module of the present invention;
FIG. 5 is a schematic view of the structure of the main body of the sugar module of the present invention;
FIG. 6 is a schematic diagram of the structure of the sugar feeding module of the present invention;
FIG. 7 is a schematic view of the structure of a partition member of a conveyor in a sugar feeding module according to the present invention;
FIG. 8 is a front view of a conveyor partition assembly in the sugar feeding module of the present invention;
FIG. 9 is a schematic diagram of the front view of a sugar laminating module of the present invention;
FIG. 10 is a schematic side view of a sugar laminating module of the present invention;
FIG. 11 is a schematic rear view of a sugar laminating module of the present invention.
Detailed Description
The invention is further described with reference to the accompanying drawings and specific examples:
As shown in fig. 1 to 11, the invention provides a chewing gum big box packing machine, which comprises a box packing machine main body, wherein a paper conveying module 3, a sugar feeding module 1, a sugar layer stacking module 2 and a sugar packing module 4 are arranged on the box packing machine main body, the paper conveying module 3 conveys sugar paper to the sugar packing module 4, the sugar material enters the sugar layer stacking module 2 under the action of the sugar feeding module 1, the sugar layer stacking module 2 stacks the sugar layer and then places the sugar layer on the sugar paper positioned in the sugar packing module 4, and the sugar paper is formed in the sugar packing module 4 and is packed in the sugar paper.
As shown in fig. 1 to 5, the paper feeding module 3 includes a paper feeding module support 31, a paper feeding module absorbing member 32, a paper feeding module paper storage frame 33, a paper feeding module sliding member and a paper feeding module lifting member 34, the paper feeding module support 31 is fixedly connected with the main body of the boxing machine, the paper feeding module paper storage frame 33 is rotatably connected with the paper feeding module support 31, sugar paper inside the paper feeding module paper storage frame 33 moves onto the paper feeding module support 31 under the adsorption action of the paper feeding module absorbing member 32, and meanwhile, the paper feeding module sliding member moves sugar paper to the top of the sugar filling module 4, and the paper feeding module lifting member 34 pushes sugar paper into the sugar filling module 4.
The paper conveying module lifting piece 34 comprises a paper conveying module lifting piece rod 341, a paper conveying module lifting piece plate 342, a paper conveying module lifting piece sliding rail 343 and a paper conveying module lifting piece sliding block 344 capable of moving up and down, the paper conveying module lifting piece sliding block 344 is in sliding connection with the paper conveying module lifting piece sliding rail 343, the paper conveying module lifting piece sliding rail 343 is vertically distributed on the boxing machine body, the paper conveying module lifting piece plate 342 is located at the end part of the paper conveying module lifting piece rod 341, the other end of the paper conveying module lifting piece rod 341 is fixedly connected with the paper conveying module lifting piece sliding block 344, and the paper conveying module lifting piece sliding block 344 drives the paper conveying module lifting piece 341 to move up and down in the up-and-down movement process, and the paper conveying module lifting piece rod 341 is of an L-shaped structure.
The sugar-containing module 4 comprises a sugar-containing module main body 40, a sugar-containing module supporting rod 41 capable of moving up and down, a rotatable sugar-containing module rotating rod 42 and a sugar-containing module output device 43, wherein the sugar-containing module supporting rod 41 is positioned in the sugar-containing module main body 40, the sugar-containing module output device 43 is positioned at the bottom of the sugar-containing module main body 40, the sugar-containing module rotating rod 42 is rotationally connected with the end part of the sugar-containing module output device 43, and sugar paper passing through the sugar-containing module main body 40 moves to a set position through the sugar-containing module output device 43.
The sugar-containing module output device 43 is a device with a rotatable belt, and sugar materials on the sugar-containing module output device 43 can be transported to a station to be processed under the action of the rotatable belt in the sugar-containing module output device 43.
The end of the sugar module support bar 41 is provided with a sugar module support bar support plate, which is located inside the sugar module main body 40.
The sugar-containing module main body 40 is of a hollow rectangular frame structure, a first support leg 401 of the sugar-containing module main body and a second support leg 402 of the sugar-containing module main body are formed by protruding outwards on the sugar-containing module main body 40, the part, opposite to the edge of the sugar-containing module main body 40, of the end part of the first support leg 401 of the sugar-containing module main body is of an inclined structure, and sugar paper changes into a U-shaped structure in section after moving in the sugar-containing module main body 40.
As shown in fig. 6 to 8, the sugar feeding module 1 includes a conveyor stand member 10, a conveyor turning frame member 11, and a conveyor partition member 12, the conveyor turning frame member 11 is rotatably connected to the conveyor stand member 10, the conveyor partition member 12 is located at an end of the conveyor stand member 10, chewing gum is placed on the conveyor stand member 10, and is placed at a set position after passing through the conveyor partition member 12.
The transporter support member 10 includes a transporter support member body 101, transporter support member support legs 102 and transporter support member support blocks 103, the transporter support member support legs 102 and transporter support member support blocks 103 being distributed at both ends of the transporter support member body 101, and a transporter support member belt mounted on and rotatable within the transporter support member body. The transporter bracket part body 101 is of a groove type structure, and sugar enters the inside of the transporter bracket part body 101 through the end part of the transporter bracket part body 101. The sugar materials can be fed into the conveying device by external equipment to sequentially push and move in the conveying device bracket main body 101, or a rotatable belt can be arranged in the groove-shaped structure of the conveying device bracket main body 101, and the belt drives the sugar materials to move.
The number of transporter support member support feet 102 is four, and the transporter support member support feet 102 are evenly distributed across the transporter support member body 101.
The other end of the conveyor stand part main body 101 is connected with a conveyor sugar trough 104, the conveyor sugar trough 104 is of an inclined structure, and sugar in the conveyor sugar trough 104 moves to the other end along the interior of the conveyor stand part main body 101 after moving to the conveyor stand part main body 101.
The transporter turret section 11 includes a transporter turret section body first lever 110, a transporter turret section body second lever 111, a transporter turret section connecting lever 112, and a transporter turret section fixing lever 113, the bottom of the transporter turret section fixing lever 113 being fixedly connected to the transporter support section body 101, the top of the transporter turret section fixing lever 113 being rotatably connected to the end of the transporter turret section connecting lever 112, the other end of the transporter turret section connecting lever 112 being fixedly connected to the transporter turret section body first lever 110, the transporter turret section body first lever 110 being fixedly connected to the transporter turret section body second lever 112 by a bolt.
The transporter turret block body first lever 110 and the transporter turret block body second lever 111 are each of a rectangular parallelepiped structure.
The number of the transporter turret block connecting rods 112 and the transporter turret block fixing rods 113 is two and distributed at both ends of the transporter turret block main body first rod 110. The number of conveyor turret block connecting rods 112 may be varied depending on the actual application.
A transporter turret handle 114 is provided on the transporter turret member body first lever 110. An operator can rotate the transporter turret block body first lever 110 through the transporter turret block connecting lever 112 by rotating the transporter turret handle 114.
The transportation device partition component 12 comprises a transportation device partition component main body 120, a transportation device partition component cylinder 121, a transportation device partition component spring 122, a transportation device partition component shaft 123 and a transportation device partition component pressing block 124, wherein an output shaft of the transportation device partition component cylinder 121 penetrates through the transportation device partition component main body 120 to be fixedly connected with the transportation device partition component pressing block 124, the end part of the transportation device partition component pressing block 124 is fixedly connected with the transportation device partition component shaft 123, the other end of the transportation device partition component shaft 123 penetrates through the transportation device partition component main body 120, the transportation device partition component spring 122 is sleeved on the transportation device partition component shaft 123, the transportation device partition component main body 120 is sleeved on the end part of the transportation device support component main body 101, and the bottom of the transportation device partition component main body 120 is connected with the end part of the transportation device support component main body 101 through bolts.
The number of the conveyor partition member shafts 123 is two and symmetrically distributed at both ends of the conveyor partition member press block 124. The number of conveyor shut-off member shafts 123 depends on the actual use.
In the actual use process, the rod end of the transportation device partition component cylinder 121 extends outwards to push the transportation device partition component pressing block 124 to move downwards, the transportation device partition component pressing block 124 can partition sugar materials in the transportation device support component main body 101, when the sugar materials are needed, the transportation device partition component cylinder 121 retracts, and the sugar materials pass through the lower end of the transportation device partition component pressing block 124, so that related operations are completed.
As shown in fig. 9 to 11, the sugar layer laminating module 2 includes a laminating apparatus main body, a laminating apparatus first motor 21, a laminating apparatus second motor 22, a laminating apparatus first lift shaft 23, a laminating apparatus second lift shaft 24, a laminating apparatus first screw shaft 25, a laminating apparatus second screw shaft 26, a laminating apparatus third motor 27, a laminating apparatus fourth motor 28, a laminating apparatus first pushing assembly 29, and a laminating apparatus second pushing assembly 20. The first motor 21 of the stacking device is connected with the first lifting shaft 23 of the stacking device, the second motor 22 of the stacking device is connected with the second lifting shaft 24 of the stacking device, the third motor 27 of the stacking device is connected with the first pushing component 29 of the stacking device, the fourth motor 28 of the stacking device is connected with the second pushing component 20 of the stacking device, the first screw shaft 25 of the stacking device is connected with the first lifting shaft 23 of the stacking device through a connecting block of the stacking device, and the second screw shaft 26 of the stacking device is connected with the second lifting shaft 24 of the stacking device through a connecting block of the stacking device. The stacking device first lifting/lowering shaft 23 has a stacking device first lifting/lowering block 231 at an end thereof, and the stacking device second lifting/lowering shaft 24 has a stacking device second lifting/lowering block 241 at an end thereof. The stacking apparatus main body is provided with a stacking apparatus main body first groove 201 and a stacking apparatus main body second groove 202, and the top of the stacking apparatus main body first groove 201 communicates with the stacking apparatus main body second groove 202. The sugar materials move onto the stacking device first lifting block 231 through the stacking device first pushing assembly 29, and when the stacking device first lifting block 231 moves to a position communicated with the stacking device main body second groove 202 along the inner part of the stacking device main body first groove 201 in the upward movement process of the stacking device first lifting shaft 23, the stacking device second pushing assembly 20 pushes the sugar materials to enter the stacking device main body second groove 202, and the sugar materials in the stacking device main body second groove 202 move to the opening of the stacking device main body second groove 202 in the upward movement process of the stacking device second lifting shaft 204.
The stacking apparatus main body includes a stacking apparatus main body upper portion and a stacking apparatus main body lower portion, the stacking apparatus main body upper portion and the stacking apparatus main body lower portion are connected by a stacking apparatus main body partition 203, a stacking apparatus first motor 21, a stacking apparatus second motor 22, a stacking apparatus first screw shaft 25 and a stacking apparatus second screw shaft 26 are located at the stacking apparatus main body lower portion, a stacking apparatus third motor 27, a stacking apparatus fourth motor 28, a stacking apparatus first pushing assembly 29 and a stacking apparatus second pushing assembly 20 are located at the stacking apparatus main body upper portion, and a stacking apparatus first lift shaft 23 and a stacking apparatus second lift shaft 24 are provided to penetrate the stacking apparatus main body partition 203.
The stacking device first pushing assembly 29 comprises a stacking device first pushing belt 291, a stacking device first pushing rotating shaft 292 and a stacking device first sliding block 293, wherein the end part of the stacking device first sliding block 293 is fixedly connected with the stacking device first pushing belt 291, the stacking device first pushing belt 291 is sleeved on the stacking device first pushing rotating shaft 292, the stacking device first pushing rotating shaft 292 is connected with the rotating shaft of the stacking device third motor 27, and the stacking device third motor 27 drives the stacking device first pushing rotating shaft 292 to rotate when working and drives the stacking device first pushing belt 291 to move.
The stacking device first slider 293 includes a stacking device first slider upper block 2931, a stacking device first slider lower block 2932, and a stacking device first slider rod 2933, the stacking device first slider rod 2933 is fixedly connected to an upper end surface of the stacking device first slider upper block 2931, the stacking device first slider upper block 2931 and the stacking device first slider lower block 2932 are connected by a bolt, and the stacking device first push belt 291 is located between the stacking device first slider upper block 2931 and the stacking device first slider lower block 2932.
The stacking device second pushing assembly 20 comprises a stacking device second pushing belt 205, a stacking device second pushing rotating shaft 206 and a stacking device second sliding block 207, the end portion of the stacking device second sliding block 207 is fixedly connected with the stacking device second pushing belt 205, the stacking device second pushing belt sleeve 205 is arranged on the stacking device second pushing rotating shaft 206, the stacking device second pushing rotating shaft 206 is connected with the rotating shaft of the stacking device fourth motor 28, and the stacking device fourth motor 28 drives the stacking device second pushing rotating shaft 206 to rotate when working and drives the stacking device second pushing belt 205 to move.
The end of the stacking device first lifting shaft 23 is penetrated through the end of the stacking device connecting block and is fixedly connected, the stacking device first screw shaft 25 is penetrated through the other end of the stacking device connecting block, and the stacking device first screw shaft 25 is in threaded connection with the stacking device connecting block. The end of the first screw shaft 25 is sleeved with a first screw shaft rotating wheel 251, the rotating shaft of the first motor 21 is provided with a first motor driving wheel 211, and the first motor driving wheel 211 is connected with the first screw shaft rotating wheel 251 through a belt. The stacking device first motor 21 drives the stacking device first screw shaft 25 to rotate through the stacking device first motor driving wheel 211 in the working process.
The connection relationship between the stacking apparatus second motor 22, the stacking apparatus second lift shaft 24, and the stacking apparatus second screw shaft 26 is the same as the connection relationship between the stacking apparatus first motor 21, the stacking apparatus first lift shaft 23, and the stacking apparatus first screw shaft 25. The second motor 22 drives the second lifting shaft 24 to move up and down, and the first motor 21 drives the first lifting shaft 23 to move up and down.
In the working process, the working steps are as follows:
Step one
The sugar materials are transferred to the stacking apparatus first elevating block 231, and then the stacking apparatus first elevating shaft 23 pushes the stacking apparatus first elevating block 231 upward to a position communicating with the stacking apparatus main body second groove 202, and then pushed into the stacking apparatus main body second groove 202 by the stacking apparatus second pushing member 20.
Step two
Meanwhile, the stacking device second lifting shaft 24 drives the stacking device second lifting block 241 to move downwards, and the distance of the downward movement of the stacking device second lifting block 241 is larger than the height of the sugar materials to be stacked. The previous step is repeated to allow the subsequent candy pieces to be sequentially stacked on the second groove 202 of the stacking apparatus body according to the number required by the design. When the set requirement is met, the second lifting block 241 of the stacking device moves upwards, and the stacked sugar materials are pushed to the position behind the second groove 202 of the main body of the stacking device, so that other equipment can be used conveniently.
The top of the second slot 202 of the stacking device body is provided with a candy toggle member, which can push stacked candy onto candy wrapper located inside the candy containing module body 40. The sugar stirring piece is the equipment in the prior art, and the equipment which can stir the materials in a reciprocating manner can be adopted only. In special cases and use environments, the sugar can be stirred by manual means.
The candy mass folds around the candy wrapper to form a square frame shape in the process china as the candy wrapper moves inside the candy wrapping module body 40. The sugar paper with sugar enters the sugar-containing module output device 43 under the action of the rotation of the sugar-containing module rotating rod 42, and then is output to a specific position, so that the subsequent equipment can carry out processing operation conveniently.
The invention can be connected with subsequent processing equipment of different sugar materials so as to finish the processes of packaging more sugar materials and the like, thereby greatly increasing the application range of the invention.
Those of ordinary skill in the art will recognize that the embodiments described herein are for the purpose of aiding the reader in understanding the principles of the present invention and should be understood that the scope of the invention is not limited to such specific statements and embodiments. Those of ordinary skill in the art can make various other specific modifications and combinations from the teachings of the present disclosure without departing from the spirit thereof, and such modifications and combinations remain within the scope of the present disclosure.

Claims (9)

1. A big box-packed machine of chewing gum, its characterized in that: the boxing machine comprises a boxing machine main body, wherein a paper conveying module, a sugar feeding module, a sugar layer stacking module and a sugar loading module are arranged on the boxing machine main body, the paper conveying module conveys sugar paper to the sugar loading module, sugar materials enter the sugar layer stacking module under the action of the sugar feeding module, the sugar layer stacking module stacks the sugar layers and then places the sugar layers on the sugar paper positioned in the sugar loading module, and the sugar paper is molded in the sugar loading module and is packaged in the sugar paper;
The sugar feeding module comprises a conveying device bracket component, a conveying device rotating frame component and a conveying device partition component, wherein the conveying device rotating frame component is rotationally connected with the conveying device bracket component, the conveying device partition component is positioned at the end part of the conveying device bracket component, chewing gum is placed on the conveying device bracket component, and the chewing gum is placed at a set position after passing through the conveying device partition component;
the transportation device rotating frame component comprises a transportation device rotating frame component main body first rod, a transportation device rotating frame component main body second rod, a transportation device rotating frame component connecting rod and a transportation device rotating frame component fixing rod, the bottom of the transportation device rotating frame component fixing rod is fixedly connected with a transportation device support component main body, the top of the transportation device rotating frame component fixing rod is rotationally connected with the end part of the transportation device rotating frame component connecting rod, the other end of the transportation device rotating frame component connecting rod is fixedly connected with the transportation device rotating frame component main body first rod, and the transportation device rotating frame component main body first rod is fixedly connected with the transportation device rotating frame component main body second rod through bolts.
2. A gum pod cartridge machine according to claim 1, wherein: the paper conveying module comprises a paper conveying module support, a paper conveying module absorption part, a paper conveying module paper storage frame, a paper conveying module sliding part and a paper conveying module lifting part, wherein the paper conveying module support is fixedly connected with the boxing machine main body, the paper conveying module paper storage frame is rotationally connected with the paper conveying module support, sugar paper inside the paper conveying module paper storage frame moves onto the paper conveying module support under the adsorption action of the paper conveying module absorption part, meanwhile, the paper conveying module sliding part moves sugar paper to the top of the sugar filling module, and the paper conveying module lifting part pushes the sugar paper into the sugar filling module.
3. A gum pod cartridge machine according to claim 2, wherein: the paper conveying module lifting piece comprises a paper conveying module lifting piece rod, a paper conveying module lifting piece plate, a paper conveying module lifting piece sliding rail and a paper conveying module lifting piece sliding block capable of moving up and down, the paper conveying module lifting piece sliding rail is connected with the paper conveying module lifting piece sliding rail in a sliding mode, the paper conveying module lifting piece sliding rail is vertically distributed on the boxing machine body, the paper conveying module lifting piece plate is located at the end portion of the paper conveying module lifting piece rod, the other end of the paper conveying module lifting piece rod is fixedly connected with the paper conveying module lifting piece sliding block, and the paper conveying module lifting piece sliding block drives the paper conveying module lifting piece to move up and down in the up-and-down movement process, so that the paper conveying module lifting piece rod is of an L-shaped structure.
4. A gum pod cartridge machine according to claim 1, wherein: the sugar-containing module comprises a sugar-containing module main body, a sugar-containing module supporting rod capable of moving up and down, a rotatable sugar-containing module rotating rod and a sugar-containing module output device, wherein the sugar-containing module supporting rod is positioned inside the sugar-containing module main body, the sugar-containing module output device is positioned at the bottom of the sugar-containing module main body, the sugar-containing module rotating rod is rotationally connected with the end part of the sugar-containing module output device, and sugar paper passing through the sugar-containing module main body moves to a set position through the sugar-containing module output device.
5. A gum pod cartridge machine according to claim 4, wherein: the end part of the sugar-containing module supporting rod is provided with a sugar-containing module supporting rod supporting plate, and the sugar-containing module supporting rod supporting plate is positioned inside the sugar-containing module main body.
6. A gum pod cartridge machine according to claim 4, wherein: the sugar-containing module main body is of a hollow rectangular frame structure, a first support leg of the sugar-containing module main body and a second support leg of the sugar-containing module main body are formed by protruding outwards on the sugar-containing module main body, the part, opposite to the side of the sugar-containing module main body, of the end part of the first support leg of the sugar-containing module main body is of an inclined structure, and the section of sugar paper is changed into a U-shaped structure after moving in the sugar-containing module main body.
7. A gum pod cartridge machine according to claim 1, wherein: the transporter support component comprises a transporter support component body, a rotatable transporter support component belt, transporter support component supporting feet and transporter support component supporting blocks, wherein the transporter support component supporting feet and the transporter support component supporting blocks are distributed at two ends of the transporter support component body, and the transporter support component belt is mounted on the transporter support component body and can rotate on the transporter support component body.
8. A gum pod cartridge machine according to claim 1, wherein: the sugar layer stacking module comprises a stacking device main body, a stacking device first motor, a stacking device second motor, a stacking device first lifting shaft, a stacking device second lifting shaft, a stacking device first screw shaft, a stacking device second screw shaft, a stacking device third motor, a stacking device fourth motor, a stacking device first pushing component and a stacking device second pushing component, wherein the stacking device first motor is connected with the stacking device first lifting shaft, the stacking device second motor is connected with the stacking device second lifting shaft, the stacking device third motor is connected with the stacking device first pushing component, the stacking device fourth motor is connected with the stacking device second pushing component, the stacking device first screw shaft is connected with the stacking device first lifting shaft through a stacking device connecting block, and the stacking device second screw shaft is connected with the stacking device second lifting shaft through the stacking device connecting block; a first lifting block of the stacking device is arranged at the end part of the first lifting shaft of the stacking device, and a second lifting block of the stacking device is arranged at the end part of the second lifting shaft of the stacking device; the stacking device body is provided with a stacking device body first groove and a stacking device body second groove, and the top of the stacking device body first groove is communicated with the top of the stacking device body second groove; the sugar material moves onto the first lifting block of the stacking device through the first pushing component of the stacking device, and when the first lifting block of the stacking device moves to a position communicated with the second groove of the stacking device body along the inner part of the first groove of the stacking device body in the upward movement process of the first lifting shaft of the stacking device, the second pushing component of the stacking device pushes the sugar material to enter the second groove of the stacking device body, and the sugar material positioned in the second groove of the stacking device body moves to the second notch of the stacking device body in the upward movement process of the second lifting shaft of the stacking device.
9. A gum pod cartridge machine according to claim 8, wherein: the stacking device body comprises a stacking device body upper portion, a stacking device body lower portion, a stacking device body upper portion and a stacking device body lower portion which are connected through a stacking device body partition plate, a stacking device first motor, a stacking device second motor, a stacking device first screw shaft and a stacking device second screw shaft are located at the stacking device body lower portion, a stacking device third motor, a stacking device fourth motor, a stacking device first pushing component and a stacking device second pushing component are located at the stacking device body upper portion, and a stacking device first lifting shaft and a stacking device second lifting shaft penetrate through the stacking device body partition plate.
CN201811631394.5A 2018-12-29 2018-12-29 Big box cartoning machine of chewing gum Active CN109625394B (en)

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CN113371255A (en) * 2021-07-08 2021-09-10 南通维尔斯机械科技有限公司 Square sugar piece composite packaging system

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CN104773314A (en) * 2015-03-31 2015-07-15 成都三可实业有限公司 Chewing gum outer packaging machine
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CN209521904U (en) * 2018-12-29 2019-10-22 成都三可实业有限公司 A kind of large box packing machine of chewing gum

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CN1718511A (en) * 2005-06-01 2006-01-11 王工一 Packaging technology of candy and its packaging machine
CN104176315A (en) * 2014-08-29 2014-12-03 成都三可实业有限公司 Candy inner paper heat sealing packaging machine
CN104773314A (en) * 2015-03-31 2015-07-15 成都三可实业有限公司 Chewing gum outer packaging machine
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CN209521904U (en) * 2018-12-29 2019-10-22 成都三可实业有限公司 A kind of large box packing machine of chewing gum

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