CN113974184A - Automatic device for desalting and rough washing of pickled vegetables - Google Patents

Automatic device for desalting and rough washing of pickled vegetables Download PDF

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Publication number
CN113974184A
CN113974184A CN202111364374.8A CN202111364374A CN113974184A CN 113974184 A CN113974184 A CN 113974184A CN 202111364374 A CN202111364374 A CN 202111364374A CN 113974184 A CN113974184 A CN 113974184A
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CN
China
Prior art keywords
bin
desalting
impurity removing
stirring
rough washing
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CN202111364374.8A
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Chinese (zh)
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王晶
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CHENGDU XINFAN FOOD CO LTD
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CHENGDU XINFAN FOOD CO LTD
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Priority to CN202111364374.8A priority Critical patent/CN113974184A/en
Publication of CN113974184A publication Critical patent/CN113974184A/en
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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23NMACHINES OR APPARATUS FOR TREATING HARVESTED FRUIT, VEGETABLES OR FLOWER BULBS IN BULK, NOT OTHERWISE PROVIDED FOR; PEELING VEGETABLES OR FRUIT IN BULK; APPARATUS FOR PREPARING ANIMAL FEEDING- STUFFS
    • A23N12/00Machines for cleaning, blanching, drying or roasting fruits or vegetables, e.g. coffee, cocoa, nuts
    • A23N12/02Machines for cleaning, blanching, drying or roasting fruits or vegetables, e.g. coffee, cocoa, nuts for washing or blanching
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23LFOODS, FOODSTUFFS OR NON-ALCOHOLIC BEVERAGES, NOT OTHERWISE PROVIDED FOR; PREPARATION OR TREATMENT THEREOF
    • A23L5/00Preparation or treatment of foods or foodstuffs, in general; Food or foodstuffs obtained thereby; Materials therefor
    • A23L5/20Removal of unwanted matter, e.g. deodorisation or detoxification
    • A23L5/23Removal of unwanted matter, e.g. deodorisation or detoxification by extraction with solvents

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  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Health & Medical Sciences (AREA)
  • Nutrition Science (AREA)
  • Cleaning By Liquid Or Steam (AREA)

Abstract

The invention discloses an automatic device for desalting and rough washing of pickled vegetables, which comprises a desalting and rough washing bin, a stirring type cleaning mechanism, a rolling type impurity removing mechanism, a circulating type impurity removing mechanism and a circulating type synergistic mechanism, wherein the stirring type cleaning mechanism is arranged in the desalting and rough washing bin, the stirring type cleaning mechanism comprises a stirring main shaft, a plurality of stirring auxiliary shafts are connected onto the stirring main shaft, a pair of positioning rings are connected onto the stirring auxiliary shafts, a first cleaning wiper is arranged between the pair of positioning rings, and the rolling type impurity removing mechanism is arranged on the desalting and rough washing bin and is used for reducing the possibility that impurities are attached to the pickled vegetables again. According to the invention, through the arrangement of the corresponding mechanism on the pickle desalting rough washing machine, the time for soaking the pickle in the warm water is reduced, the delayed washing efficiency is improved, the time waste is reduced, the influence on the pickle preparation process is reduced, meanwhile, the influence of the warm water on the taste of the pickle is reduced, the public praise of users is improved, and the loss of users is reduced.

Description

Automatic device for desalting and rough washing of pickled vegetables
Technical Field
The invention belongs to the technical field of automation devices, and particularly relates to an automation device for desalting and rough washing of pickled vegetables.
Background
The pickle desalting rough washing machine is a machine for desalting and washing pickled pickle, and usually adopts a water bath type bubble mode to carry out desalting and washing, thereby simulating the basic action of manual washing.
At present, when the pickle desalting rough washing machine is used, the pickle desalting rough washing machine usually adopts a soaking auxiliary bubbling mode to carry out desalting washing, the pickle desalting rough washing machine at the present stage does not have a mechanism capable of assisting washing, in order to improve the quality of desalting washing, the pickle needs to be soaked in warm water for a long time, the efficiency of desalting washing is not high, a large amount of time is wasted, the subsequent processes of pickle preparation are slowed down, the process of pickle preparation is influenced, meanwhile, the taste of the pickle can be influenced by soaking in the warm water for a long time, the public praise of a user is reduced, and the loss of the user is caused.
Therefore, in view of the above technical problems, it is necessary to provide an automatic apparatus for desalting and rough washing of kimchi.
Disclosure of Invention
The invention aims to provide an automatic device for desalting and rough washing of pickled vegetables, which solves the problems that the pickled vegetables are soaked in warm water for a long time, the desalting and washing efficiency is reduced, the subsequent processes of preparing the pickled vegetables are slowed down, and the taste of the pickled vegetables is influenced.
In order to achieve the above object, an embodiment of the present invention provides the following technical solutions:
the automatic device for desalting and rough washing of the pickle comprises: the device comprises a desalting coarse washing bin, a stirring type cleaning mechanism, a rolling type impurity removing mechanism, a circulating type impurity removing mechanism and a circulating type synergistic mechanism;
a stirring type cleaning mechanism is arranged in the desalting rough cleaning bin and comprises a stirring main shaft, a plurality of stirring auxiliary shafts are connected to the stirring main shaft, a pair of positioning rings are connected to the stirring auxiliary shafts, and a first cleaning wiper is arranged between the pair of positioning rings;
the desalting coarse washing bin is provided with a rolling type impurity removing mechanism for reducing the possibility that impurities are attached to the pickled vegetables again;
one side of the rolling type impurity removing mechanism is provided with a circulating type impurity removing mechanism which is used for removing and conveying impurities in the rolling type impurity removing mechanism;
a circulating synergistic mechanism is arranged in the desalting coarse washing bin and used for improving the using effect of the stirring type cleaning mechanism.
Furthermore, a positioning disc is connected between the stirring main shaft and the desalting coarse washing bin and is used for supporting one end of the stirring main shaft;
the stirring main shaft penetrates through the desalting rough washing bin and is used for supporting one end of the stirring main shaft, and meanwhile, the stirring main shaft is conveniently connected with the first motor, so that the balance of the stirring main shaft is guaranteed;
the desalting rough washing bin is connected with a first motor, and is used for providing corresponding power for rotation of the stirring main shaft, so that the stirring main shaft can stably rotate at a constant speed, and the first motor is connected with the stirring main shaft.
Furthermore, the stirring auxiliary shaft is connected with a stirring support rod for supporting the second cleaning wiper and improving the stability of the second cleaning wiper;
the stirring support rod is connected with a pair of second cleaning wipers, so that the possibility of direct impact of the second cleaning wipers and the pickled vegetables is reduced, and the integrity of the pickled vegetables is improved;
the two sides of the stirring support rod are connected with the positioning buttons, so that the position of the second cleaning wiper can be fixed, the possibility of the second cleaning wiper falling is reduced, and the stability of the second cleaning wiper during rotation is improved;
the desalting coarse washing bin is connected with a plurality of pairs of ultrasonic vibrators which can emit ultrasonic waves, so that warm water in the desalting coarse washing bin generates vacuoles, and the cleaning degree of pickled vegetables in the desalting coarse washing bin can be improved.
Furthermore, the rolling type impurity removing mechanism comprises an impurity removing bin, a corresponding space is provided for filtering warm water, and the rotation of the ultramicro filter screen can be accommodated;
the ultramicro filter screen is arranged in the impurity removal bin and used for filtering warm water, so that impurities in the water can be removed, the cleanness degree of the warm water in the desalting coarse washing bin is effectively improved, the possibility that the impurities are attached to the pickled vegetables again is reduced, and the efficiency of desalting and cleaning the pickled vegetables is improved;
the supporting disc is arranged in the ultramicro filter screen and can be matched with the driving disc, the balance of the ultramicro filter screen is improved, the rotating process of the ultramicro filter screen can be more stable, and the supporting disc is connected with the impurity removal bin.
Furthermore, a second motor is arranged on one side of the impurity removing bin, so that corresponding power is provided for rotation of the driving disc, and the second motor penetrates through the impurity removing bin, so that the second motor is conveniently connected with the driving disc;
the second motor is connected with an active disc, the active disc can drive the ultramicro filter screen to rotate, and meanwhile, the active disc can be matched with the supporting disc to improve the stability of the ultramicro filter screen, and the active disc is connected with the ultramicro filter screen.
Furthermore, one side of the desalting coarse washing bin is connected with a surface layer collecting bin, and when warm water in the desalting coarse washing bin fluctuates, part of the warm water enters the surface layer collecting bin through the water overflowing groove;
a water overflowing tank is dug on the desalting coarse washing bin, so that warm water on the surface layer can conveniently enter the surface layer collecting bin;
be connected with top layer communicating pipe between storehouse and the edulcoration storehouse is collected on the top layer, make the warm water in the storehouse is collected on the top layer can get into the edulcoration storehouse, carry out subsequent impurity and get rid of the step, top layer communicating pipe runs through edulcoration storehouse and supporting disk setting.
Furthermore, the circulating impurity removing mechanism comprises an impurity collecting bin which can accommodate impurities removed by the rolling type impurity removing mechanism, so that a user can conveniently clean the impurities at any time;
be connected with pipeline between collection miscellaneous storehouse and the edulcoration storehouse, after accepting half pipe and bearing impurity, can carry to collection miscellaneous storehouse in through pipeline, pipeline runs through collection miscellaneous storehouse, edulcoration storehouse and the setting of ultramicro filter screen.
Furthermore, the conveying pipeline is connected with a receiving half pipe which can receive impurities falling from the ultra-micro filter screen, so that the impurities can be discharged;
the impurity collecting bin is internally provided with a cleaning box, so that impurities can be collected, and a user can clean the impurity collecting bin conveniently.
Furthermore, the impurity removing bin is connected with a first water pump, so that water in the impurity removing bin can be extracted and conveyed into a cavity formed by the bearing partition plate and the impurity removing bin;
be connected with circulation communicating pipe on the first water pump, made things convenient for first water pump to draw water from the edulcoration storehouse, first water pump and circulation communicating pipe all run through the edulcoration storehouse and set up.
Furthermore, a bearing partition plate is connected in the impurity removing bin, so that the impurity removing bin can be partitioned to form two different cavities, and warm water is borne;
the bearing partition plate is connected with a plurality of impurity removal nozzles, warm water can be uniformly sprayed on the ultramicro filter screen, impurities on the ultramicro filter screen drop and fall into the bearing half-pipe, and the impurity removal nozzles penetrate through the bearing partition plate.
Compared with the prior art, the invention has the following advantages:
according to the invention, through the arrangement of the corresponding mechanism on the pickle desalting rough washing machine, the time for soaking the pickle in the warm water is reduced, the delayed washing efficiency is improved, the time waste is reduced, the influence on the pickle preparation process is reduced, meanwhile, the influence of the warm water on the taste of the pickle is reduced, the public praise of users is improved, and the loss of users is reduced.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments described in the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a front sectional view of an automated apparatus for desalting and rough washing kimchi in accordance with an embodiment of the present invention;
FIG. 2 is a schematic view of the structure at A in FIG. 1;
FIG. 3 is a schematic view of the structure at B in FIG. 1;
FIG. 4 is a side sectional view of an automated apparatus for desalting and rough washing kimchi in accordance with an embodiment of the present invention;
FIG. 5 is a schematic view of the structure of FIG. 4 at C;
FIG. 6 is a top view of an automated system for desalting and rough washing kimchi in accordance with one embodiment of the present invention;
FIG. 7 is a schematic view of the structure of FIG. 6 at D;
FIG. 8 is a perspective view of an automated apparatus for desalting and rough washing kimchi in accordance with an embodiment of the present invention.
In the figure: 1. the device comprises a desalting coarse cleaning bin, 2, an agitation type cleaning mechanism, 201, an agitation main shaft, 202, an agitation auxiliary shaft, 203, a positioning ring, 204, a first cleaning wiper, 205, a positioning disc, 206, a first motor, 207, an agitation supporting rod, 208, a second cleaning wiper, 209, a positioning knob, 210, an ultrasonic vibrator, 3, a rolling type impurity removing mechanism, 301, an impurity removing bin, 302, an ultramicro filter screen, 303, a supporting disc, 304, a second motor, 305, a driving disc, 306, a surface layer collecting bin, 307, a surface layer communicating pipe, 308, a water diffusion tank, 4, a circulating type impurity removing mechanism, 401, an impurity collecting bin, 402, a conveying pipeline, a receiving semi-pipe, 404, a cleaning box, 405, a first water pump, 406, a circulating communicating pipe, 407, a bearing partition plate, 408, an impurity removing nozzle, 5, a circulating type synergistic mechanism, 501, a temporary storage bin, 502, an efficiency enhancing nozzle, 503, an impurity isolating filter screen, 504, a second water pump, a first water pump, a second water pump, a supporting pipe, a supporting plate, a supporting plate, a supporting plate, 505. And the synergy communicating pipe.
Detailed Description
The present invention will be described in detail below with reference to embodiments shown in the drawings. The embodiments are not intended to limit the present invention, and structural, methodological or functional changes made by those skilled in the art according to the embodiments are included in the scope of the present invention.
The invention discloses an automatic device for desalting and rough washing of pickle, which is shown in a reference figure 1-8 and comprises: a desalting coarse cleaning bin 1, a stirring type cleaning mechanism 2, a rolling type impurity removing mechanism 3, a circulating type impurity removing mechanism 4 and a circulating type synergistic mechanism 5.
Referring to fig. 1-5, an agitating type cleaning mechanism 2 is arranged in the desalting coarse cleaning bin 1, and the agitating type cleaning mechanism 2 comprises an agitating main shaft 201 which can drive an agitating auxiliary shaft 202 to rotate, so that the rotation of the agitating auxiliary shaft 202 is smoother and more stable.
Wherein, a plurality of stirring auxiliary shafts 202 are connected on the stirring main shaft 201, which facilitates the installation of the first cleaning wiper 204 and the rotation of the first cleaning wiper 204 on the positioning ring 203.
In addition, a pair of positioning rings 203 are connected to the agitation sub-shaft 202 to fix the first cleaning wipe 204, thereby reducing the possibility of displacement of the first cleaning wipe 204 and facilitating the rotation of the first cleaning wipe 204.
In addition, a first cleaning wiper 204 is disposed between the pair of positioning rings 203, and when the stirring auxiliary shaft 202 drives the first cleaning wiper 204 to impact the kimchi, the first cleaning wiper 204 can rotate to reduce damage to the kimchi and improve the integrity of the kimchi.
Referring to fig. 6-7, a positioning plate 205 is connected between the stirring spindle 201 and the desalting rough washing bin 1 for supporting one end of the stirring spindle 201, so that the balance of the stirring spindle 201 can be improved, and the possibility of inclination of the stirring spindle 201 during rotation can be reduced.
Wherein, stirring main shaft 201 runs through the setting of the coarse storehouse of washing of desalination 1, can support the other end of stirring main shaft 201 through the coarse storehouse of washing of desalination 1, makes the equilibrium of stirring main shaft 201 obtain the guarantee, conveniently stirs being connected of main shaft 201 and first motor 206 simultaneously.
In addition, the desalting rough washing bin 1 is connected with a first motor 206 which can provide corresponding power for the rotation of the stirring spindle 201, so that the stirring spindle 201 can stably rotate at a uniform speed, and the first motor 206 is connected with the stirring spindle 201.
Referring to fig. 1-7, the agitation secondary shaft 202 is connected with an agitation strut 207, which can support the second cleaning wipe 208, so as to facilitate the fixation of the second cleaning wipe 208, and improve the stability of the second cleaning wipe 208.
The stirring support rod 207 is connected with a pair of second cleaning wipers 208, and when the second cleaning wipers 208 rub the pickled vegetables, the second cleaning wipers 208 can rotate, so that the possibility of direct impact between the second cleaning wipers 208 and the pickled vegetables is reduced, and the integrity of the pickled vegetables is improved.
In addition, the two sides of the stirring rod 207 are connected with the positioning knobs 209, so that the position of the second cleaning wiper 208 can be fixed, the possibility that the second cleaning wiper 208 falls off is reduced, and the stability of the second cleaning wiper 208 during rotation is improved.
In addition, a plurality of pairs of ultrasonic vibrators 210 are connected to the desalting coarse washing bin 1 and can emit ultrasonic waves, so that warm water in the desalting coarse washing bin 1 generates vacuoles, and the cleaning degree of pickled vegetables in the desalting coarse washing bin 1 can be improved.
Referring to fig. 1-5, a rolling type impurity removing mechanism 3 is disposed on the desalting coarse washing bin 1 for reducing the possibility of the impurities adhering to the pickled vegetables again, and the rolling type impurity removing mechanism 3 includes an impurity removing bin 301 for providing a corresponding space for filtering warm water and accommodating the rotation of an ultra-micro filter screen 302.
Wherein, be equipped with ultramicro filter screen 302 in the edulcoration storehouse 301 for to the filtration of warm water, make the impurity of aquatic obtain getting rid of, effectual promoted the desalination and wash the clean degree of 1 interior warm water of storehouse, reduced the possibility that impurity adheres to the pickles again, promoted the abluent efficiency of pickles desalination.
In addition, be equipped with supporting disk 303 in the ultra-fine filter screen 302, can mutually support with initiative dish 305, promote the equilibrium of ultra-fine filter screen 302, make the rotatory process of ultra-fine filter screen 302 can be more stable, and supporting disk 303 is connected with edulcoration storehouse 301.
Referring to fig. 1 to 4, a second motor 304 is disposed at one side of the trash bin 301 to provide corresponding power for rotation of the driving plate 305, and the second motor 304 is disposed through the trash bin 301 to facilitate connection between the second motor 304 and the driving plate 305.
The second motor 304 is connected to an active disc 305, which can drive the ultra-fine filter screen 302 to rotate, and can be matched with the supporting disc 303 to improve the stability of the ultra-fine filter screen 302, and the active disc 305 is connected to the ultra-fine filter screen 302.
Referring to fig. 1-4, a surface collecting bin 306 is connected to one side of the desalting coarse washing bin 1, and when the temperature water in the desalting coarse washing bin 1 fluctuates, part of the temperature water enters the surface collecting bin 306 through a water overflowing tank 308.
Wherein, get into the warm water in the storehouse 306 is collected on the top layer, and most all are the warm water top layer, and when ultrasonic vibrator 210 ran, can produce a large amount of bubbles, these bubbles can carry impurity rising, make impurity float on the surface of water, and this warm water that can make to get into in storehouse 306 is that carry impurity is the most.
In addition, a water overflowing tank 308 is drilled on the desalting coarse washing bin 1, so that warm water on the surface layer can conveniently enter the surface layer collecting bin 306.
In addition, a surface layer communicating pipe 307 is connected between the surface layer collecting bin 306 and the impurity removing bin 301, so that warm water in the surface layer collecting bin 306 can enter the impurity removing bin 301 to perform subsequent impurity removing steps, and the surface layer communicating pipe 307 penetrates through the impurity removing bin 301 and the supporting disc 303.
Referring to fig. 1-5, the circulating impurity removing mechanism 4 includes an impurity collecting bin 401, and the impurity collecting bin 401 can accommodate impurities removed by the rolling impurity removing mechanism 3, so as to facilitate the user to clean the impurities at any time.
Wherein, be connected with conveying pipe 402 between collection miscellaneous storehouse 401 and the edulcoration storehouse 301, after accepting half pipe 403 and bearing impurity, can carry to collection miscellaneous storehouse 401 through conveying pipe 402 in, conveying pipe 402 runs through collection miscellaneous storehouse 401, edulcoration storehouse 301 and the setting of super little filter screen 302.
Referring to fig. 1-5, a receiving half-pipe 403 is connected to the conveying pipe 402 for receiving the impurities dropped from the ultra-fine filter screen 302, so that the impurities can be discharged.
Wherein, be equipped with clearance case 404 in the miscellaneous storehouse of collection 401, can collect impurity, the person's of facilitating the use clearance.
Referring to fig. 1 to 4, a first water pump 405 is connected to the trash bin 301, and can pump water in the trash bin 301 and convey the water to a cavity formed by the bearing partition plate 407 and the trash bin 301.
Wherein, be connected with circulation communicating pipe 406 on the first water pump 405, made things convenient for first water pump 405 to draw water from edulcoration storehouse 301 in, first water pump 405 and circulation communicating pipe 406 all run through edulcoration storehouse 301 and set up.
Referring to fig. 1, a bearing partition plate 407 is connected in the trash bin 301, so that the trash bin 301 can be partitioned to form two different cavities, and warm water can be borne.
Wherein, bearing partition plate 407 is connected with a plurality of impurity removal nozzles 408, which can uniformly spray warm water on the ultrafine filter screen 302, so that the impurities on the ultrafine filter screen 302 fall down into the receiving half-pipe 403, and the impurity removal nozzles 408 are arranged through the bearing partition plate 407.
Referring to fig. 1 to 5, the circulation-type efficiency-increasing mechanism 5 includes a clean temporary storage 501 for temporarily storing the filtered warm water so that the warm water can be filled in the clean temporary storage 501.
Wherein, be connected with a plurality of evenly distributed's increase shower nozzle 502 on the clean temporary storage storehouse 501, after the water pressure in the clean temporary storage storehouse 501 reached certain degree, increase shower nozzle 502 can spray in the coarse storehouse of washing 1 of desalination, and increase shower nozzle 502 runs through clean temporary storage storehouse 501 and sets up.
In addition, when the pickle is washed, the turnover of the pickle can be assisted, the cleaning degree of the stirring type cleaning mechanism 2 for the pickle is improved, meanwhile, the sprayed water can enable the distance between the pickle and the stirring type cleaning mechanism 2 to be shortened, the stirring type cleaning mechanism 2 can more easily contact the pickle, the cleaning effect of the stirring type cleaning mechanism 2 for the pickle is improved, finally, the warm water in the desalting coarse cleaning bin 1 fluctuates more greatly, and the speed of collecting the warm water by the surface layer collecting bin 306 is improved.
In addition, the clean temporary storage bin 501 is connected with an impurity separation filter screen 503, so that the possibility that impurities enter the synergistic spray head 502 can be reduced, and the possibility that the impurities float on the water surface is improved.
Preferably, the desalting coarse washing bin 1 is connected with a second water pump 504, so that the filtered warm water in the impurity removing bin 301 can be conveyed to the clean temporary storage bin 501, and the second water pump 504 penetrates through the desalting coarse washing bin 1 and the clean temporary storage bin 501.
Optionally, a synergistic communicating pipe 505 is connected to the second water pump 504, so that the second water pump 504 can conveniently extract warm water from the impurity removing bin 301, and the synergistic communicating pipe 505 penetrates through the impurity removing bin 301.
Specifically, after the pickles enter the desalting coarse cleaning bin 1, the user turns on the first motor 206 to enable the stirring type cleaning mechanism 2 to stir the hot water in the desalting coarse cleaning bin 1, and turns on the ultrasonic vibrator 210 to clean the pickles by ultrasonic waves, and the first cleaning wiper 204 and the second cleaning wiper 208 can perform contact cleaning on the pickles, so that bubbles are generated in the hot water when the pickles are cleaned by the ultrasonic waves, and the bubbles carry impurities to rise, so that the impurities float on the water surface.
Because stirring formula wiper mechanism 2 stirs the warm water, the warm water appears undulantly, and collect storehouse 306 through the top layer and flow to in removing impurity storehouse 301, filtered by ultramicro filter screen 302, and ultramicro filter screen 302 is through rotatory, can constantly be with impurity transfer to the top, through the spraying of removing impurity shower nozzle 408, fall in accepting half pipe 403, and get into and collect miscellaneous storehouse 401 at last, filter the sewage that can constantly replace in the coarse storehouse 1 of desalination, can reduce impurity and to the secondary of pickles attached, the desalination cleaning efficiency of pickles has been promoted.
Then, the filtered warm water is pumped by the second water pump 504 and injected into the clean temporary storage bin 501, and is sprayed into the desalting coarse cleaning bin 1 through the synergistic spray head 502, so that the cleaning effect of the stirring type cleaning mechanism 2 is further improved.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.
Furthermore, it should be understood that although the present description refers to embodiments, not every embodiment may contain only a single embodiment, and such description is for clarity only, and those skilled in the art should integrate the description, and the embodiments may be combined as appropriate to form other embodiments understood by those skilled in the art.

Claims (10)

1. The automatic device for desalting and rough washing of the pickle is characterized by comprising:
a desalting coarse washing bin (1);
the stirring type cleaning mechanism (2) is arranged in the desalting coarse cleaning bin (1), the stirring type cleaning mechanism (2) comprises a stirring main shaft (201), a plurality of stirring auxiliary shafts (202) are connected to the stirring main shaft (201), a pair of positioning rings (203) are connected to the stirring auxiliary shafts (202), and a first cleaning wiper (204) is arranged between the pair of positioning rings (203);
the rolling type impurity removing mechanism (3) is arranged at the lower side of the desalting coarse washing bin (1) and is used for filtering sewage in the desalting coarse washing bin (1);
the circulating impurity removing mechanism (4) is arranged on one side of the rolling type impurity removing mechanism (3) and is used for removing and conveying impurities in the rolling type impurity removing mechanism (3);
and the circulating synergistic mechanism (5) is arranged in the desalting coarse washing bin (1) and is used for improving the using effect of the stirring type cleaning mechanism (2).
2. The automatic pickle desalting and rough washing device as claimed in claim 1, wherein a positioning plate (205) is connected between the stirring main shaft (201) and the desalting and rough washing bin (1), the stirring main shaft (201) is arranged through the desalting and rough washing bin (1), a first motor (206) is connected to the desalting and rough washing bin (1), and the first motor (206) is connected with the stirring main shaft (201).
3. The automatic device for desalting and rough washing of pickled vegetables as claimed in claim 2, wherein the stirring auxiliary shaft (202) is connected with a stirring strut (207), the stirring strut (207) is arranged through the stirring auxiliary shaft (202), the stirring strut (207) is connected with a pair of second cleaning wipers (208), both sides of the stirring strut (207) are connected with positioning knobs (209), and both sides of the desalting and rough washing bin (1) are connected with a plurality of ultrasonic vibrators (210).
4. The automatic pickle desalting and rough washing device according to claim 1, wherein the rolling type impurity removing mechanism (3) comprises an impurity removing bin (301), an ultramicro filter screen (302) is arranged in the impurity removing bin (301), a supporting disc (303) is connected to the inner side wall of the impurity removing bin (301), and the ultramicro filter screen (302) is arranged outside the supporting disc (303).
5. The automatic pickle desalting and rough washing device as claimed in claim 4, wherein a second motor (304) is arranged on one side of the impurity removing bin (301), the second motor (304) penetrates through the impurity removing bin (301), a driving disc (305) is connected to the second motor (304), and the driving disc (305) is connected to the ultra-fine filter screen (302).
6. The automatic pickle desalting and rough washing device according to claim 5, wherein a surface layer collecting bin (306) is connected to one side of the desalting and rough washing bin (1), a water overflowing tank (308) is drilled on the desalting and rough washing bin (1), a surface layer communicating pipe (307) is connected between the surface layer collecting bin (306) and the impurity removing bin (301), and the surface layer communicating pipe (307) penetrates through the impurity removing bin (301) and the supporting disc (303).
7. The automatic pickle desalting and rough washing device according to claim 4, wherein the circulating impurity removing mechanism (4) comprises an impurity collecting bin (401), a conveying pipeline (402) is connected between the impurity collecting bin (401) and the impurity removing bin (301), and the conveying pipeline (402) penetrates through the impurity collecting bin (401), the impurity removing bin (301) and the ultramicro filter screen (302).
8. The automatic device for the desalting and rough washing of kimchi according to claim 7, wherein a receiving half-pipe (403) is connected to said transportation pipe (402), and a cleaning box (404) is provided in said trash collecting bin (401).
9. The automatic device for desalting and rough washing of pickled vegetables as claimed in claim 8, wherein a first water pump (405) is connected to the impurity removing bin (301), a circulating communicating pipe (406) is connected to the first water pump (405), and both the first water pump (405) and the circulating communicating pipe (406) are arranged to penetrate through the impurity removing bin (301).
10. The automatic pickle desalting and rough washing device as claimed in claim 9, wherein a bearing partition plate (407) is connected in the impurity removing bin (301), a plurality of impurity removing nozzles (408) are connected on the bearing partition plate (407), and the impurity removing nozzles (408) penetrate through the bearing partition plate (407).
CN202111364374.8A 2021-11-17 2021-11-17 Automatic device for desalting and rough washing of pickled vegetables Pending CN113974184A (en)

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Application Number Priority Date Filing Date Title
CN202111364374.8A CN113974184A (en) 2021-11-17 2021-11-17 Automatic device for desalting and rough washing of pickled vegetables

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CN202111364374.8A CN113974184A (en) 2021-11-17 2021-11-17 Automatic device for desalting and rough washing of pickled vegetables

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
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CN112890239A (en) * 2021-01-20 2021-06-04 青岛颐晟泰海洋生物科技有限公司 Cleaning device and cleaning method for agricultural product processing

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JPH06154714A (en) * 1992-11-19 1994-06-03 Nippon Petrochem Co Ltd Cleaning equipment
JPH11114319A (en) * 1997-10-15 1999-04-27 Ishigaki:Kk How to clean and regenerate the filter media layer
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Publication number Priority date Publication date Assignee Title
CN116280939A (en) * 2023-05-24 2023-06-23 泉州市南方食品机械有限公司 Automatic transportation processing line with spiral conveying device and transportation processing technology
CN116280939B (en) * 2023-05-24 2023-08-08 泉州市南方食品机械有限公司 Automatic transportation processing line with spiral conveying device and transportation processing technology

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