CN216401906U - Integrated marinated product packaging production line - Google Patents

Integrated marinated product packaging production line Download PDF

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Publication number
CN216401906U
CN216401906U CN202122857160.6U CN202122857160U CN216401906U CN 216401906 U CN216401906 U CN 216401906U CN 202122857160 U CN202122857160 U CN 202122857160U CN 216401906 U CN216401906 U CN 216401906U
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China
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collecting box
raw materials
slide
packing
sliding plate
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CN202122857160.6U
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Chinese (zh)
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胡占华
石教千
余秉潇
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Wuhan Lvpo Food Co ltd
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Wuhan Lvpo Food Co ltd
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Abstract

The utility model relates to an integration stew in soy sauce goods packaging production line, it includes the vacuum packaging device, the packing platform, closing device and packing box, the packing bench is provided with the collecting box that is used for accepting vacuum packaging device output raw materials, collecting box upper end opening, all around with bottom formation confined space, it is provided with the slide to be parallel to its bottom in the collecting box, the slide slides and sets up in the collecting box, set up the logical groove that supplies slide roll-off collecting box on a certain lateral wall of collecting box, one side that logical groove was kept away from to the slide is provided with when the slide slides and keeps away from the collecting box and be used for pushing together the push pedal of gathering together with the raw materials behind the vacuum packaging in the collecting box. When the follow-up raw materials that need take the vacuum packaging and accomplish bag, slide the slide and keep away from the collecting box, simultaneously under the effect of push pedal, the raw materials after the vacuum packaging is accomplished gathers together in the collecting box, and it is comparatively convenient that operating personnel takes the raw materials after the vacuum packaging.

Description

Integrated marinated product packaging production line
Technical Field
The application relates to the field of food packaging, in particular to an integrated marinated product packaging production line.
Background
The marinated product is a cooked meat product prepared by taking meat of poultry and livestock as a main raw material, and in order to achieve the purposes of keeping the marinated product for a longer time and ensuring the flavor and taste of the marinated product, the marinated product is usually packaged in vacuum and then packaged in an outer packaging bag for sale.
Integration stew in soy sauce article packaging production line among the correlation technique includes vacuum packaging device, the packing platform, closing device and packing box, vacuum packaging device sets up the foremost in the production line, be used for carrying out vacuum packaging to the raw materials, the discharge gate at vacuum packaging device is connected to the packing platform, the packing platform is used for accepting the raw materials after vacuum packaging accomplishes on the one hand, on the other hand is used for packing into the outer wrapping bag with the raw materials after vacuum packaging, closing device connects the packing platform, be used for sealing the outer wrapping bag, the packing box sets up in the exit of closing device, be used for depositing the stew in soy sauce article outer wrapping bag that the sealing finished.
In view of the related art in the above, the inventors found that the following problems exist: because the raw materials that vacuum packaging accomplished have certain initial velocity when flowing into the packing bench, the raw materials can bump each other, scatter at the packing bench, and it is comparatively inconvenient when operating personnel picks up the raw materials that vacuum packaging accomplished from the packing bench and packs into the outer packing bag.
SUMMERY OF THE UTILITY MODEL
In order to improve the inconvenient problem of operating personnel take the raw materials that flow into behind the vacuum packaging on the packing platform, this application provides an integration stew in soy sauce article packaging production line.
An integrated marinated product packaging production line comprises a vacuum packaging device, a packaging table, a sealing device and a packaging box, wherein the vacuum packaging device is arranged at the foremost end of the production line and used for vacuum packaging of marinated product raw materials, the packaging table is arranged at the rear end of the vacuum packaging device and used for packaging the vacuum packaged raw materials into an outer packaging bag, the sealing device is arranged at the rear end of the packaging table and used for sealing the outer packaging bag, the packaging box is arranged at the outlet of the sealing device and used for storing the marinated product outer packaging bag after sealing, a collecting box used for receiving the output raw materials of the vacuum packaging device is arranged on the packaging table, the upper end of the collecting box is open, a closed space is formed at the periphery and the bottom of the collecting box, a sliding plate is arranged at the bottom of the collecting box in parallel, the sliding plate is arranged in the collecting box in a sliding manner, a through groove for the sliding plate to slide out of the collecting box is formed in one side wall of the collecting box, and a push plate used for pushing and gathering the vacuum-packaged raw materials in the collecting box together when the sliding plate slides to be far away from the collecting box is arranged on one side of the sliding plate, which is far away from the through groove.
Through adopting above-mentioned technical scheme, the raw materials flow out from the vacuum packaging device in the back concentrate on the collecting box, when the raw materials that follow-up needs vacuum packaging accomplished bag, slide the slide and keep away from the collecting box, simultaneously under the effect of push pedal, the raw materials after vacuum packaging accomplished in the collecting box gather together, and it is comparatively convenient that operating personnel takes the raw materials after the vacuum packaging.
Optionally, criss-cross partition plates are arranged below the sliding plate in the collection box.
Through adopting above-mentioned technical scheme, after the raw materials bagging-off that vacuum packaging accomplished was accomplished, with the opening of wrapping bag up, put into the minimum cell that the baffle encloses, can be than the more quick opening of finding outer packing bag when follow-up outer wrapping bag seals, increased work efficiency.
Optionally, the partition plate is designed to be integrally formed and detachably connected in the collecting box.
By adopting the technical scheme, when different size marinated products are packaged, the partition plates with different enclosed minimum unit lattices can be conveniently and adaptively replaced, so that the outer packaging bags with different sizes can be well fixed when being placed into the minimum unit lattices enclosed by the partition plates, and the subsequent operation of sealing the outer packaging bags by taking the outer packaging bags is more convenient.
Optionally, the partition plate is vertically arranged at the bottom of the collecting box.
Through adopting above-mentioned technical scheme, the baffle can be more stable install in the collecting box, and when needing to change the baffle, it is also comparatively convenient to operate.
Optionally, the push plate is hinged to the sliding plate, a limiting component for limiting rotation of the push plate and the sliding plate is arranged between the push plate and the sliding plate, when the push plate pushes the raw materials to gather together, the push plate protrudes upwards out of the sliding plate, and when the push plate and the sliding plate are taken out integrally, the push plate and the sliding plate are arranged in a parallel and level mode.
By adopting the technical scheme, when the push plate and the sliding plate rotate to be flush, the sliding plate and the push plate can be conveniently and integrally taken out of the collecting box, so that the space occupied by the collecting box and the sliding plate is reduced, and an operator can conveniently perform subsequent operation; meanwhile, the push plate can be limited on the sliding plate by keeping a certain angle through limiting, and when the sliding plate slides to be far away from the collecting box, the raw materials can be pushed together by the push plate.
Optionally, a groove is formed in one side, away from the through groove, of the sliding plate, a protruding block extending into the groove is correspondingly arranged on the push plate, and the hinge shaft is arranged at the rotating center of the sliding plate and the protruding block along the raw material conveying direction.
Through adopting above-mentioned technical scheme, realization that can be more convenient keeps the parallel and level with the slide when the push pedal rotates, and follow-up slide and push pedal are whole to be taken out comparatively conveniently.
Optionally, the limiting assembly comprises a hook spring, one end of the hook spring is connected with the other end of the push plate to connect the sliding plate, and the push plate is driven to abut against and fixed on the sliding plate.
Through adopting above-mentioned technical scheme, spacing subassembly is better to the restriction effect of push pedal, can be more stable when the push pedal promotes the raw materials.
Optionally, the packing table is further provided with a flat laying mechanism for dispersing the raw materials flowing into the collecting box after vacuum packing in the collecting box in a mechanical flat pushing manner.
Through adopting above-mentioned technical scheme, after the raw materials in the collecting box is piled up too much, push away the dispersion in the collecting box through tiling mechanism with the accumulational raw materials flat for the raw materials that follow-up vacuum packaging device flows out can be more convenient flow in to the collecting box.
Optionally, the tiling mechanism includes a scraper, and the scraper is disposed on the packing table.
Through adopting above-mentioned technical scheme, utilize the scraper blade manual to pave accumulational raw materials for the operation of paving the raw materials is comparatively convenient.
In summary, the present application includes at least one of the following beneficial technical effects:
1. by arranging the collecting box and arranging the sliding plate and the push plate in the collecting box, raw materials flowing out of the vacuum packaging device can be better concentrated, and follow-up operators can take the vacuum packaged raw materials more conveniently;
2. through set up the baffle under the slide, after the raw materials bagging-off of vacuum packing was accomplished, put into the minimum unit check that the baffle encloses with the opening of wrapping bag up for follow-up can be more quick when sealing the wrapping bag find the opening of wrapping bag, improved work efficiency.
3. Through articulating push pedal and slide and setting up, when push pedal and slide rotate the parallel and level, can be more convenient wholly take out in the collection box with slide and push pedal is whole, reduced the whole space that occupies of collection box and slide for operating personnel is more convenient when follow-up operation.
Drawings
FIG. 1 is a schematic structural view of an integrated marinated product packaging line of the present application;
FIG. 2 is a schematic view of the construction of the collection box of the present application;
FIG. 3 is a schematic cross-sectional view taken along line A-A of FIG. 2;
FIG. 4 is an enlarged view at B in FIG. 3;
figure 5 is a schematic view of the hinge structure of the push plate and the slide plate.
Description of reference numerals: 1. a vacuum packaging device; 11. a material guide plate; 2. a packing table; 21. a squeegee; 3. a sealing device; 4. packing cases; 5. a collection box; 51. a slide plate; 511. a groove; 52. a through groove; 53. pushing the plate; 531. a bump; 54. a partition plate; 55. a limiting component; 551. a hook spring.
Detailed Description
The present application is described in further detail below with reference to figures 1-5.
The embodiment of the application discloses integration stew in soy sauce goods packaging production line.
Referring to fig. 1, the integrated marinated product packaging production line comprises a vacuum packaging device 1, a packaging table 2, a sealing device 3, a packaging box 4 and a collecting box 5, wherein the vacuum packaging device 1 is arranged at the foremost end of the production line and used for vacuum packaging of marinated product raw materials, the packaging table 2 is arranged at the rear end of the vacuum packaging device 1 and used for packaging the vacuum packaged raw materials into outer packaging bags, the sealing device 3 is arranged at the rear end of the packaging table 2 and used for sealing the outer packaging bags, the packaging box 4 is arranged at the outlet of the sealing device 3 and used for storing the sealed marinated product outer packaging bags, the collecting box 5 is arranged on the packaging table 2, a material guide plate 11 is arranged at the outlet of the vacuum packaging device 1, the material guide plate 11 is obliquely downwards connected with the upper end of the collecting box 5, the collecting box 5 is cuboid and provided with an opening at the upper end, and a closed space is formed around and at the bottom, the collecting box 5 is used for receiving the vacuum-packed raw materials output by the vacuum packing device 1.
Referring to fig. 2, a sliding plate 51 is arranged in the collection box 5 in parallel at the bottom thereof, the periphery of the sliding plate 51 contacts with the inner wall of the collection box 5, the sliding plate 51 is arranged in the collection box 5 in a sliding manner along the direction perpendicular to the conveying direction of the raw materials, a through groove 52 for the sliding plate 51 to slide out of the collection box 5 is formed in one side wall of the collection box 5 perpendicular to the conveying direction of the raw materials, a push plate 53 for pushing and gathering the vacuum-packed raw materials in the collection box 5 together when the sliding plate 51 slides away from the collection box 5 is arranged on one side of the sliding plate 51 far away from the through groove 52, the push plate 53 is arranged perpendicular to the sliding plate 51, and two ends of the push plate 53 extend to the inner wall of the collection box 5.
When the raw materials which fall into the collecting box 5 and are subjected to vacuum packaging are required to be bagged, the collecting box 5 is moved away, meanwhile, the other collecting box 5 is placed, the sliding plate 51 on the collecting box 5 filled with the raw materials slides away from the collecting box 5, the raw materials subjected to vacuum packaging in the collecting box 5 are pushed together and gathered together under the action of the push plate 53, and the raw materials subjected to vacuum packaging are taken conveniently during subsequent bagging.
Referring to fig. 3, a partition plate 54 for supporting the sliding plate 51 to slide is provided in the collecting box 5 at the bottom of the sliding plate 51, and the sliding plate 51 can slide in the collecting box 5 conveniently under the supporting action of the partition plate 54.
Meanwhile, when the external packaging bag is sealed in a subsequent centralized manner, one side of the opening of the external packaging bag needs to be found firstly, then the opening of the external packaging bag is pressed by a hand, and the external packaging bag is sent into the sealing device 3, so that an operator can conveniently find the opening of the external packaging bag, the operation amount of the external packaging bag during sealing is reduced, and the production efficiency is improved. In this embodiment, the partitions 54 are arranged in a criss-cross manner, and the smallest unit cell surrounded by the partitions 54 is larger than the size of a single vacuum-packed raw material.
After the raw material is bagged, the sliding plate 51 is pulled away, the opening of the outer packaging bag is upwards loaded into the minimum cell surrounded by the partition plate 54, so that the opening of the outer packaging bag can be quickly found when the outer packaging bag is sealed subsequently, and the packaging efficiency is improved.
Baffle 54 in the collecting box 5 sets up for integrated into one piece, and through vertical mode demountable installation in the collecting box 5 bottom of putting in, so when packing the different steamed articles of different sizes, the different baffle 54 of minimum cell that encloses can the change of adaptability for the outer packing bag of equidimension can be by better fixed when putting into the minimum cell that baffle 54 encloses, it is more convenient at the operation that outer packing bag carries out the seal at follow-up taking to the outer packing bag.
For more convenient extraction of the slide plate 51, the push plate 53 and the slide plate 51 are hinged, and a limit assembly 55 for limiting the rotation of the push plate 53 and the slide plate 51 is arranged between the partition plate 54 and the slide plate 51. When the push plate 53 and the slide plate 51 rotate to be flush, the slide plate 51 and the push plate 53 can be conveniently taken out integrally, and after enough space is reserved, the packaging bag can be more conveniently placed in the packaging bag, and the partition plate 54 can be conveniently replaced.
Referring to fig. 4 and 5, a side of the slide plate 51 away from the through groove 52 is provided with a groove 511, the push plate 53 is correspondingly provided with a projection 531 extending into the groove 511, and the hinge shaft passes through the push plate 53 and the center of rotation of the projection 531 simultaneously in the material conveying direction. The limiting assembly 55 comprises two hook springs 551, the two hook springs 551 are arranged on the push plate 53 and are respectively located on two sides of the push plate 53 along the raw material transmission direction, the two hook springs 551 are obliquely arranged on the inner side of a right angle formed by the push plate 53 and the sliding plate 51, the push plate 53 and the sliding plate 51 are provided with hanging rings matched with the hook springs 551, one end of each hook spring 551 is connected with the push plate 53, the other end of each hook spring 551 is connected with the sliding plate 51, and the hook springs 551 are in a stretching state during connection. The push plate 53 is always kept in a vertical state under the action of the pulling force of the hook spring 551, and when the partition plate 54 is replaced, the push plate 53 is rotated to be flush with the sliding plate 51 by overcoming the elastic force of the hook spring 551, so that the sliding plate 51 and the push plate 53 can be conveniently taken out integrally.
Referring to fig. 1, after a period of time, the raw material in the collecting box 5 may be piled up, and when the raw material is piled up too much, the raw material on the material guide plate 11 at the discharge port of the vacuum packing device 1 is inconvenient to flow into the collecting box 5, so that the flat laying mechanism is arranged on the packing table 2, and the raw material which flows into the vacuum packing above the collecting box 5 is dispersed in the collecting box 5 by means of mechanical flat pushing.
The tiling mechanism includes scraper blade 21, and after the raw materials after the vacuum packaging piled up too much, take up scraper blade 21 and manual pushing away the raw materials flat dispersion after the accumulational vacuum packaging in collecting box 5 for the raw materials after follow-up vacuum packaging can be more convenient flow in to collecting box 5.
The implementation principle of the integrated marinated product packaging production line in the embodiment is as follows: the collecting box 5 is arranged to receive the raw materials flowing out of the vacuum packaging device 1, and the raw materials are gathered together through the sliding plate 51 and the push plate 53, so that the raw materials flowing into the packaging table 2 after vacuum packaging are taken by operators conveniently; simultaneously, the sliding partition plates 54 of the supporting sliding plates 51 are arranged in a criss-cross shape, so that after the vacuum-packaged raw material is bagged, the opening of the outer packaging bag is upwards placed into the minimum unit lattice formed by the partition plates 54, the opening of the outer packaging bag can be found more quickly when the outer packaging bag is sealed subsequently, and the working efficiency is improved.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (9)

1. Integration steamed product packaging production line, including vacuum packaging device (1), packing platform (2), closing device (3) and packing box (4), vacuum packaging device (1) sets up at the foremost of production line for carry out vacuum packaging to steamed product raw materials, packing platform (2) set up the rear end at vacuum packaging device (1), are used for packing into the outer wrapping bag with the raw materials behind the vacuum packaging in, closing device (3) set up the rear end at packing platform (2), are used for sealing outer wrapping bag, packing box (4) set up the exit at closing device (3) for deposit the steamed product outer wrapping bag that the seal finishes, its characterized in that: packing table (2) is last to be provided with collecting box (5) that are used for accepting vacuum packaging device (1) output raw materials, collecting box (5) upper end opening forms confined space with the bottom all around, and its bottom is provided with slide (51) in parallel in collecting box (5), slide (51) slide and set up in collecting box (5), set up logical groove (52) that supply slide (51) roll-off collecting box (5) on a certain lateral wall of collecting box (5), slide (51) are kept away from one side protrusion that leads to groove (52) and are provided with and are used for pushing together push pedal (53) of gathering together the raw materials behind the vacuum packaging in collecting box (5) when slide (51) are slided and are kept away from collecting box (5).
2. The integrated marinated product packaging line of claim 1, wherein: criss-cross partition plates (54) are arranged below the sliding plate (51) in the collecting box (5), and unit lattices for storing bagging-completed raw materials are arranged in the partition plates (54).
3. The integrated marinated product packaging line of claim 2, wherein: the partition plate (54) is designed as an integral molding and is detachably connected in the collection box (5).
4. The integrated marinated product packaging line of claim 3, wherein: the clapboard (54) is vertically arranged at the bottom of the collecting box (5).
5. The integrated marinated product packaging line of claim 1, wherein: the push plate (53) is hinged with the sliding plate (51), a limiting component (55) used for limiting the rotation of the push plate (53) and the sliding plate (51) is arranged between the push plate (53) and the sliding plate (51), when the push plate (53) pushes the raw materials to gather, the push plate (53) protrudes upwards out of the sliding plate (51) and when the push plate (53) and the sliding plate (51) are integrally taken out, the push plate (53) and the sliding plate (51) are arranged in a flush mode.
6. The integrated marinated product packaging line of claim 5, wherein: one side of the sliding plate (51) far away from the through groove (52) is provided with a groove (511), the push plate (53) is correspondingly provided with a lug (531) extending into the groove (511), and the articulated shaft is arranged at the rotating centers of the sliding plate (51) and the lug (531) along the raw material conveying direction.
7. The integrated marinated product packaging line of claim 5, wherein: the limiting assembly (55) comprises a hook spring (551), one end of the hook spring (551) is connected with the push plate (53), the other end of the hook spring is connected with the sliding plate (51), and the push plate (53) is driven to be tightly fixed on the sliding plate (51).
8. The integrated marinated product packaging line of claim 1, wherein: the packing table (2) is also provided with a flat laying mechanism which is used for dispersing the raw materials which flow into the collecting box (5) and are subjected to vacuum packing in the collecting box (5) in a mechanical flat pushing mode.
9. The integrated marinated product packaging line of claim 8, wherein: the flat laying mechanism comprises a scraper (21), and the scraper (21) is arranged on the packing table (2).
CN202122857160.6U 2021-11-20 2021-11-20 Integrated marinated product packaging production line Active CN216401906U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122857160.6U CN216401906U (en) 2021-11-20 2021-11-20 Integrated marinated product packaging production line

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122857160.6U CN216401906U (en) 2021-11-20 2021-11-20 Integrated marinated product packaging production line

Publications (1)

Publication Number Publication Date
CN216401906U true CN216401906U (en) 2022-04-29

Family

ID=81302683

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122857160.6U Active CN216401906U (en) 2021-11-20 2021-11-20 Integrated marinated product packaging production line

Country Status (1)

Country Link
CN (1) CN216401906U (en)

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