CN215707402U - Hot pot seasoning packaging machine in bags - Google Patents

Hot pot seasoning packaging machine in bags Download PDF

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Publication number
CN215707402U
CN215707402U CN202121636361.7U CN202121636361U CN215707402U CN 215707402 U CN215707402 U CN 215707402U CN 202121636361 U CN202121636361 U CN 202121636361U CN 215707402 U CN215707402 U CN 215707402U
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sucker
hot pressing
mounting plate
adsorption
vacuum
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CN202121636361.7U
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黄友主
杨勇
王先进
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Chongqing Haoyuan Food Co ltd
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Chongqing Haoyuan Food Co ltd
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Abstract

The utility model discloses a hot pot seasoning bagging and packaging machine which comprises a machine shell, an adsorption device, a hot pressing device and a vacuumizing device, wherein an upper mounting plate and a lower mounting plate are arranged at the front end of the machine shell, the upper mounting plate and the lower mounting plate are both horizontal and are opposite up and down, the adsorption device comprises an upper sucker, a lower sucker and an adsorption air pump, the upper sucker and the lower sucker are both communicated with the adsorption air pump, the hot pressing device comprises an upper hot pressing plate and a lower hot pressing plate, the vacuumizing device is arranged in the machine shell, and the vacuumizing device comprises a vacuum gun and a vacuum pump. This device designs adsorption equipment, and the upper and lower two-layer of adsorbable wrapping bag to open the sack, vacuum gun inserts the sack automatically, and adsorption equipment's upper and lower sucking disc closes again, and vacuum gun evacuates the back with the interior air of wrapping bag, and hot press unit's hot pressboard merges the back, with the wrapping bag heat-seal, and whole process has realized full mechanization for the encapsulation speed.

Description

Hot pot seasoning packaging machine in bags
Technical Field
The utility model relates to packaging equipment, in particular to a hot pot seasoning bagging and packaging machine.
Background
The production of the existing hotpot seasoning is mainly carried out by frying, stewing, cooling into blocks and bagging and packaging, in the bagging and packaging process, the hotpot seasoning blocks are usually pre-placed into a guarantee bag and then conveyed to a packaging machine, workers need to manually insert a gun nozzle of a vacuumizing gun into the opening of the packaging bag, firstly vacuumize the bag and then seal the bag by hot pressing, and when the gun nozzle is manually inserted, the opening of the packaging bag needs to be manually twisted open and then inserted into the gun nozzle, so that time and labor are wasted.
SUMMERY OF THE UTILITY MODEL
It is an object of the present invention to address at least the above problems.
The utility model aims to provide a hot pot seasoning bagging and packaging machine, which solves the problems that the conventional hot pot seasoning packaging machine needs to manually open a bag opening and then insert a gun nozzle, and is time-consuming and labor-consuming.
In order to achieve the objects and other advantages according to the present invention, there is provided a bottom flavoring bagging packaging machine for chafing dish, comprising a housing, an adsorption device, a hot pressing device and a vacuum extractor, wherein the front end of the housing is provided with an upper mounting plate and a lower mounting plate, the upper mounting plate and the lower mounting plate are both horizontal and are aligned up and down, the adsorption device comprises an upper sucker, a lower sucker and an adsorption air pump, the upper sucker is mounted at the lower end of the upper mounting plate through a first air cylinder, the lower sucker is mounted at the upper end of the lower mounting plate through a second air cylinder, the upper sucker and the lower sucker are both communicated with the adsorption air pump, the upper sucker and the lower sucker are aligned up and down, the hot pressing device comprises an upper hot pressing plate and a lower hot pressing plate, the upper hot pressing plate is mounted at the lower end of the upper mounting plate through a third air cylinder, the lower hot pressing plate is mounted at the upper end of the lower mounting plate through a fourth air cylinder, and the upper hot pressing plate and the lower hot pressing plate are aligned up and down, go up the sucking disc and be located between casing and the last hot pressboard, lower sucking disc is located between casing and the lower hot pressboard, evacuating device sets up in the casing, and evacuating device includes vacuum gun and vacuum pump, the vacuum gun carries out the removal of horizontal direction by the drive of fifth cylinder, and the rifle mouth of vacuum gun can move under to the sucking disc.
In one possible design, the upper sucker and the lower sucker are provided with caulking grooves at positions corresponding to the vacuum gun, after the upper sucker and the lower sucker are attached, the caulking grooves of the upper sucker and the lower sucker are combined to form a caulking hole, and the caulking hole is matched with a gun nozzle of the vacuum gun.
In one possible design, the lower end of the casing is provided with rollers.
In one possible design, a controller is provided on the housing, and the adsorption device, the hot-pressing device and the vacuum-pumping device are all connected to the controller.
In a possible design, the photoelectric sensor comprises a light emitter and a light receiver, the light emitter is installed at one end, away from the shell, of the upper mounting plate, the light receiver is installed at one end, away from the shell, of the lower mounting plate, the light emitter and the light receiver are opposite up and down, and a signal output end of the photoelectric sensor is connected to the controller.
The utility model at least comprises the following beneficial effects: this device designs adsorption equipment, and the upper and lower two-layer of adsorbable wrapping bag to open the sack, vacuum gun inserts the sack automatically, and adsorption equipment's upper and lower sucking disc closes again, and vacuum gun evacuates the back with the interior air of wrapping bag, and hot press unit's hot pressboard merges the back, with the wrapping bag heat-seal, and whole process has realized full mechanization for the encapsulation speed.
Additional advantages, objects, and features of the utility model will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the utility model.
Drawings
FIG. 1 is a side view of the present device;
FIG. 2 is an enlarged view of the direction A in FIG. 1;
FIG. 3 is a schematic structural view of an upper suction cup and a first cylinder in the adsorption device;
FIG. 4 is an enlarged view of the direction B in FIG. 3;
FIG. 5 is a cross-sectional view of the upper and lower suction cups after being attached;
FIG. 6 is a side view of the upper suction cup and the first cylinder in the suction device;
FIG. 7 is a cross-sectional view taken along line C-C of FIG. 6;
reference numbers in the figures: 100-machine shell, 101-upper mounting plate, 102-lower mounting plate, 103-roller, 200-adsorption device, 201-upper sucker, 202-lower sucker, 203-adsorption air pump, 204-first cylinder, 205-second cylinder, 206-adsorption hole, 207-caulking groove, 208-caulking hole, 209-guide plate, 210-guide strip, 300-hot pressing device, 301-upper hot pressing plate, 302-lower hot pressing plate, 303-third cylinder, 304-fourth cylinder, 400-vacuum pumping device, 401-vacuum gun, 402-vacuum pump, 403-fifth cylinder, 404-gun nozzle, 500-controller, 600-photoelectric sensor, 601-light emitter, 602-light receiver.
Detailed Description
The utility model is further described with reference to the following figures and specific embodiments. It should be noted that the description of the embodiments is provided to help understanding of the present invention, but the present invention is not limited thereto. Specific structural and functional details disclosed herein are merely illustrative of example embodiments of the utility model. This invention may, however, be embodied in many alternate forms and should not be construed as limited to the embodiments set forth herein.
It is to be noted that the experimental methods described in the following embodiments are all conventional methods unless otherwise specified, and the reagents and materials, if not otherwise specified, are commercially available; in the description of the present invention, the terms "lateral", "longitudinal", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are only for convenience in describing the present invention and simplifying the description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention.
Referring to fig. 1 to 7, a hot pot seasoning bagging and packaging machine comprises a machine shell 100, an adsorption device 200, a hot pressing device 300 and a vacuum pumping device 400, wherein an upper mounting plate 101 and a lower mounting plate 102 are arranged at the front end of the machine shell 100, the upper mounting plate 101 and the lower mounting plate 102 are both horizontal and are aligned up and down, the adsorption device 200 comprises an upper sucker 201, a lower sucker 202 and an adsorption air pump 203, the upper sucker 201 is mounted at the lower end of the upper mounting plate 101 through a first air cylinder 204, the lower sucker 202 is mounted at the upper end of the lower mounting plate 102 through a second air cylinder 205, the upper sucker 201 and the lower sucker 202 are both communicated with the adsorption air pump 203, the upper sucker 201 and the lower sucker 202 are aligned up and down, the hot pressing device 300 comprises an upper hot pressing plate 301 and a lower hot pressing plate 302, the upper hot pressing plate 301 is mounted at the lower end of the upper mounting plate 101 through a third air cylinder 303, the lower hot pressing plate 302 is mounted at the upper end of the lower mounting plate 102 through a fourth air cylinder 304, go up hot pressboard 301 and hot pressboard 302 just from top to bottom down, go up sucking disc 201 and be located casing 100 and last hot pressboard 301 between, lower sucking disc 202 is located casing 100 and hot pressboard 302 down between, evacuating device 400 sets up in casing 100, and evacuating device 400 includes vacuum gun 401 and vacuum pump 402, vacuum gun 401 is driven by fifth cylinder 403 and is carried out the removal of horizontal direction, and vacuum gun 401's rifle mouth 404 can move to under sucking disc 201.
In this device, the front end of the housing 100 is provided with an upper mounting plate 101 and a lower mounting plate 102 extending forward, the upper mounting plate and the lower mounting plate are horizontally arranged and aligned vertically, the adsorption device 200 and the hot-pressing device 300 are arranged between the two mounting plates, but two suckers of the adsorption device 200 are respectively mounted on the two mounting plates, two hot-pressing plates of the hot-pressing device 200 are also respectively mounted on the two mounting plates, and the hot-pressing device 300 is located outside the adsorption device 200.
Referring to fig. 1 to 7, in the suction device 200, an upper suction cup 201 and a lower suction cup 202, both of which are disc-shaped, are provided with suction holes 206, the upper suction cup is provided with a plurality of suction holes 206, one end of the absorption hole 206 is arranged on the lower end surface of the upper sucker 201, the other end is communicated with a pipeline which is communicated with the absorption air pump 203, similarly, a plurality of absorption holes 206 are also designed in the lower sucker 202, one end of the adsorption hole 206 is positioned on the upper end surface of the lower sucker 202, the other end is communicated with a pipeline which is communicated with the adsorption air pump 203, after the adsorption air pump 203 is started, the air in the pipeline and the adsorption hole 206 is continuously pumped out, vacuum is formed in the suction holes 206, negative pressure is formed at the orifices of the suction holes 206 on the lower end surface of the upper suction cup 201, and negative pressure is formed at the orifices of the suction holes 206 on the upper end surface of the lower suction cup 202, so that the upper suction cup 201 and the lower suction cup 202 have suction force. The adsorption device 200 is per se a prior art.
The hot press apparatus 300, also known in the art, has an upper hot press plate 301 and a lower hot press plate 302, both of which are flat plates, and are designed with heating rods therein for heating the hot press plates, wherein the heating temperature is set according to the material of the packaging bag, such as PE plastic, and the heat sealing temperature is about 150 ℃. After the two hot pressing plates press the packaging bag, the packaging bag is sealed.
In actual use, as shown in fig. 1, the device is arranged beside a conveyor belt, the conveyor belt conveys workpieces (hot pot bottom materials are filled in packaging bags) to the front end of the device, the bag openings of the packaging bags exceed the conveyor belt and are positioned between an upper mounting plate 101 and a lower mounting plate 102, and the bag openings at least extend to be right below an upper suction cup 201. Start adsorption equipment 200, start first cylinder 204 and second cylinder 205 earlier, first cylinder 204 drives sucking disc 201 decline, go up the up end that sucking disc 201 laminated the wrapping bag sack, second cylinder 205 drives down sucking disc 202 and rises, lower sucking disc 202 laminates the lower terminal surface of wrapping bag sack, restart absorption air pump 203, make go up sucking disc 201 and adsorb the upper strata of wrapping bag, lower sucking disc 202 adsorbs the lower floor of wrapping bag, start first cylinder 204 and second cylinder 205, drive and go up sucking disc 201 and separate the certain distance down between sucking disc 202, make the wrapping bag sack open. And then, the fifth air cylinder 403 is started to drive the vacuum gun 401 to move, the gun nozzle 404 of the vacuum gun 401 enters the packaging bag and is positioned at the bag opening of the packaging bag, and the gun nozzle 404 does not exceed the range of the upper sucker 201 in the vertical direction. At this time, the upper and lower suction cups are closed together, the upper and lower suction cups are both attached to the gun nozzle 404, the vacuum pump 402 is started, and the packaging bag is evacuated.
After the wrapping bag has taken out the vacuum, start third cylinder 303 and fourth cylinder 304 this moment, make and go up hot pressboard 301 and lower hot pressboard 302 centre gripping wrapping bag, it is also close to the wrapping bag sack to go up hot pressboard 301, but one section distance of skew (this section distance is used for the sucking disc to laminate the wrapping bag), rifle mouth 404 also can not be located between the hot pressboard, when rifle mouth 404 gos forward promptly, be located between the sucking disc after, just no longer go forward, two hot pressboards can not centre gripping rifle mouth 404 like this, the hot pressboard has the temperature, thereby with the wrapping bag heat-seal, just so the heat-seal of taking out the vacuum has been accomplished.
In the finished packaging bag, the part of the bag opening is not bonded (the part contacting with the sucking disc), and the part which is not bonded can be cut subsequently, so that the packaging bag is more attractive.
As shown in fig. 3 to 7, the control of the upper and lower suction cups 201 and 202 is maintained at three positions as described above, so that the first and second air cylinders 204 and 205 are multi-position air cylinders. As shown in the figure, the upper suction cup 201 is mounted on the first air cylinder 204 through a guide plate 209, a guide strip 210 is arranged on the first air cylinder 204, and the upper suction cup 201 is ensured to move up and down through the cooperation of the guide plate 209 and the guide strip 210.
As shown in fig. 3 to 5, the upper suction plate 201 and the lower suction plate 202 are provided with the caulking grooves 207 at positions corresponding to the vacuum gun 401, and after the upper suction plate 201 and the lower suction plate 202 are attached to each other, the caulking grooves 207 of the upper suction plate 201 and the lower suction plate 202 are combined to form the caulking hole 208, and the caulking hole 208 is engaged with the gun nozzle 404 of the vacuum gun 401. Thus, when the upper suction disc 201 and the lower suction disc 202 clamp the gun nozzle 404, the gun nozzle 404 can be embedded in the embedding hole 208, and the gun nozzle 404 is prevented from being deformed due to the fact that the two suction discs press the gun nozzle 404.
Referring to fig. 1, the lower end of the casing 100 is provided with a roller 103. The movement of the device is facilitated.
Referring to fig. 1, a controller 500 is provided on the casing 100, and the adsorption apparatus 200, the hot press apparatus 300, and the vacuum apparatus 400 are connected to the controller 500. The controller 500 is an industrial control panel through which a worker operates the device. The photoelectric sensor 600 is further included, the photoelectric sensor 600 comprises a light emitter 601 and a light receiver 602, the light emitter 601 is installed at one end of the upper installation plate 101 far away from the cabinet 100, the light receiver 602 is installed at one end of the lower installation plate 102 far away from the cabinet 100, the light emitter 601 and the light receiver 602 are opposite up and down, and a signal output end of the photoelectric sensor 600 is connected to the controller 500. The electronic instrument in the device comprises an adsorption air pump 203, a first air cylinder 204, a second air cylinder 205, an upper hot pressing plate 301 (internal electric heating rod), a lower hot pressing plate 302 (internal electric heating rod), a third air cylinder 303, a fourth air cylinder 304, a vacuum pump 402, a fifth air cylinder 403 and a photoelectric sensor 600. These electronics are all electrically connected to the controller 500. The control ends of the adsorption air pump 203, the first air cylinder 204, the second air cylinder 205, the upper hot pressing plate 301 (internal electric heating rod), the lower hot pressing plate 302 (internal electric heating rod), the third air cylinder 303, the fourth air cylinder 304, the vacuum pump 402 and the fifth air cylinder 403 are connected with the controller 500, and are controlled to be opened and closed by the controller 500.
Through the sensor design, when the workpiece is transmitted to the device, namely the workpiece is positioned between the mounting plates, light emitted by the light emitter 601 is shielded by the workpiece, and after the light receiver 602 cannot receive the signal, the photoelectric sensor 600 sends the signal to the controller 500, the controller 500 can start the packaging process, the process is described above specifically, and the description is omitted here. The controller 500 is an industrial operation screen, and a specific model can adopt BT1932 CX. The photosensor 600 may be of a type such as E3F-20DY 1.
While embodiments of the utility model have been described above, it is not limited to the applications set forth in the description and the embodiments, which are fully applicable in various fields of endeavor to which the utility model pertains, and further modifications may readily be made by those skilled in the art, it being understood that the utility model is not limited to the details shown and described herein without departing from the general concept defined by the appended claims and their equivalents.

Claims (5)

1. A hot pot seasoning bagging packaging machine is characterized by comprising a machine shell, an adsorption device, a hot pressing device and a vacuumizing device, wherein an upper mounting plate and a lower mounting plate are arranged at the front end of the machine shell, the upper mounting plate and the lower mounting plate are both horizontal and are opposite to each other from top to bottom, the adsorption device comprises an upper sucker, a lower sucker and an adsorption air pump, the upper sucker is mounted at the lower end of the upper mounting plate through a first air cylinder, the lower sucker is mounted at the upper end of the lower mounting plate through a second air cylinder, the upper sucker and the lower sucker are both communicated with the adsorption air pump, the upper sucker and the lower sucker are opposite to each other from top to bottom, the hot pressing device comprises an upper hot pressing plate and a lower hot pressing plate, the upper hot pressing plate is mounted at the lower end of the upper mounting plate through a third air cylinder, the lower hot pressing plate is mounted at the upper end of the lower mounting plate through a fourth air cylinder, the upper hot pressing plate and the lower hot pressing plate are opposite to each other, and the upper sucker is positioned between the machine shell and the upper hot pressing plate, the lower sucker is positioned between the casing and the lower hot pressing plate, the vacuumizing device is arranged in the casing and comprises a vacuum gun and a vacuum pump, the vacuum gun is driven by a fifth cylinder to move in the horizontal direction, and a gun nozzle of the vacuum gun can move to the position under the upper sucker.
2. The bagging and packaging machine for hotpot condiment according to claim 1, wherein the upper sucker and the lower sucker are provided with caulking grooves at positions corresponding to the vacuum gun, and after the upper sucker and the lower sucker are attached, the caulking grooves of the upper sucker and the lower sucker are combined to form a caulking hole which is matched with a gun nozzle of the vacuum gun.
3. The bagging and packaging machine for hotpot condiment according to claim 1, wherein the lower end of the machine shell is provided with the roller.
4. The apparatus of claim 1, wherein the casing is provided with a controller, and the adsorption means, the hot pressing means and the vacuum pumping means are connected to the controller.
5. The apparatus as claimed in claim 4, further comprising a photo sensor, said photo sensor comprising a light emitter and a light receiver, said light emitter being mounted on an end of said upper mounting plate remote from said housing, said light receiver being mounted on an end of said lower mounting plate remote from said housing, said light emitter and said light receiver being aligned vertically, a signal output of said photo sensor being connected to said controller.
CN202121636361.7U 2021-07-19 2021-07-19 Hot pot seasoning packaging machine in bags Active CN215707402U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121636361.7U CN215707402U (en) 2021-07-19 2021-07-19 Hot pot seasoning packaging machine in bags

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121636361.7U CN215707402U (en) 2021-07-19 2021-07-19 Hot pot seasoning packaging machine in bags

Publications (1)

Publication Number Publication Date
CN215707402U true CN215707402U (en) 2022-02-01

Family

ID=79987606

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121636361.7U Active CN215707402U (en) 2021-07-19 2021-07-19 Hot pot seasoning packaging machine in bags

Country Status (1)

Country Link
CN (1) CN215707402U (en)

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