CN113519674A - Haw slice sugar wrapping processing device and using method thereof - Google Patents

Haw slice sugar wrapping processing device and using method thereof Download PDF

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Publication number
CN113519674A
CN113519674A CN202110905992.2A CN202110905992A CN113519674A CN 113519674 A CN113519674 A CN 113519674A CN 202110905992 A CN202110905992 A CN 202110905992A CN 113519674 A CN113519674 A CN 113519674A
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CN
China
Prior art keywords
hawthorn
conveying belt
plate
haw
sugar
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Pending
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CN202110905992.2A
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Chinese (zh)
Inventor
朱传合
朱金星
李坤
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Shandong Agricultural University
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Shandong Agricultural University
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Priority to CN202110905992.2A priority Critical patent/CN113519674A/en
Publication of CN113519674A publication Critical patent/CN113519674A/en
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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23GCOCOA; COCOA PRODUCTS, e.g. CHOCOLATE; SUBSTITUTES FOR COCOA OR COCOA PRODUCTS; CONFECTIONERY; CHEWING GUM; ICE-CREAM; PREPARATION THEREOF
    • A23G3/00Sweetmeats; Confectionery; Marzipan; Coated or filled products
    • A23G3/02Apparatus specially adapted for manufacture or treatment of sweetmeats or confectionery; Accessories therefor
    • A23G3/20Apparatus for coating or filling sweetmeats or confectionery
    • A23G3/24Apparatus for coating by dipping in a liquid, at the surface of which another liquid or powder may be floating
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23GCOCOA; COCOA PRODUCTS, e.g. CHOCOLATE; SUBSTITUTES FOR COCOA OR COCOA PRODUCTS; CONFECTIONERY; CHEWING GUM; ICE-CREAM; PREPARATION THEREOF
    • A23G7/00Other apparatus or process specially adapted for the chocolate or confectionery industry
    • A23G7/02Cooling or drying apparatus

Abstract

The invention relates to a haw slice sugar-wrapping processing device and a use method thereof, wherein the haw slice sugar-wrapping processing device comprises a vibrating screen, a pulp soaking pool and a cooling device which are arranged in sequence, a first conveying belt is arranged in the pulp soaking pool, the first conveying belt is provided with a pulp soaking section which bends downwards below the liquid level of the pulp soaking pool, the feeding end of the first conveying belt corresponds to the discharge hole of the vibrating screen, and the discharge end of the first conveying belt corresponds to the feeding end of the cooling device; the slurry soaking pool carries out layering treatment, and heat preservation liquid is heated through a plurality of heating pipes, so that the syrup on the upper portion is in a melting state, and the syrup solidification caused by too low temperature is avoided.

Description

Haw slice sugar wrapping processing device and using method thereof
Technical Field
The invention relates to the technical field of food processing, in particular to a haw slice sugar-wrapping processing device and a using method thereof.
Background
The hawthorn is a special Chinese medicinal and fruit tree species, has the effects of reducing blood fat, blood pressure, strengthening heart, resisting arrhythmia and the like, is also a good medicament for tonifying spleen, stimulating appetite, promoting digestion, removing food stagnation, promoting blood circulation and reducing phlegm, and has good curative effects on chest, diaphragm, spleen fullness, hernia, blood stasis, amenorrhea and other symptoms.
The hawthorn slices are prepared by slicing the hawthorn and then carrying out vacuum freeze drying, and the hawthorn slices are sour in taste due to the fact that the hawthorn fruits contain more pectin and polysaccharide and are compact in texture. The hawthorn and the sugar are combined with each other, namely, the sugar wrapping treatment is carried out on the surface of the hawthorn piece, so that the palatability of the hawthorn piece can be effectively changed, and a sour, sweet and delicious product is presented and is popular among consumers.
The existing sugar coating mode of hawthorn slices mainly heats and melts white granulated sugar to form syrup, and coats the syrup on the hawthorn slices by utilizing the liquidity of the syrup, but the existing mode is more manual, the production efficiency is low, and the hawthorn slices are seriously adhered after being coated with the syrup. At the same time, the syrup solidifies faster resulting in sucrose waste.
Disclosure of Invention
Aiming at the defects of the prior art, the invention provides the haw slice sugar wrapping processing device and the using method thereof, which realize the rapid sugar wrapping of the haw slices and avoid the serious adhesion of the haw slices after sugar wrapping.
The invention is realized by the following technical scheme, and provides a haw slice sugar-wrapping processing device which comprises a vibrating screen, a pulp soaking pool and a cooling device which are sequentially arranged, wherein a first conveying belt is arranged in the pulp soaking pool, the first conveying belt is provided with a pulp soaking section which is bent downwards to be below the liquid level of the pulp soaking pool, the feeding end of the first conveying belt corresponds to the discharging port of the vibrating screen, and the discharging end of the first conveying belt corresponds to the feeding end of the cooling device.
This scheme replaces the manual work to carry out the hawthorn piece through mechanical device and wraps up in sugar, during the in-service use, will wait to wrap up on the hawthorn piece of sugar places the shale shaker, utilize the shale shaker with the dispersion of hawthorn piece and carry backward, the hawthorn piece that falls down by the shale shaker discharge gate falls to the feed end of first conveyer belt, first conveyer belt drives the hawthorn piece and realizes wrapping up in sugar when soaking the syrup in the thick liquid pond, the hawthorn piece after wrapping up in sugar is carried to cooling device by first conveyer belt and is cooled off, make the syrup harden, avoid the adhesion.
Preferably, the device further comprises a second conveying belt positioned above the first conveying belt and a lifting mechanism driving the second conveying belt to move vertically, and a hawthorn piece clamping channel is formed by the lower side edge of the second conveying belt and the upper side edge of the first conveying belt. This optimization scheme is through setting up the second conveyer belt, makes the haw piece wrap up in the sugar and carry backward under the clamping action of first conveyer belt and second conveyer belt, realizes pressing from both sides tight fixedly to the haw piece, because the aversion takes place mutual adhesion when avoiding the haw piece to contact with the syrup, has improved the homogeneity of wrapping up in the sugar to the haw piece.
As optimization, the cooling device comprises a support frame, a third conveying belt arranged on the support frame, and a support cover covering the third conveying belt, wherein a refrigerator is arranged on the support cover, and the feeding end and the discharging end of the third conveying belt are respectively positioned at the front side and the rear side of the refrigerator. This optimization scheme's cooling device simple structure realizes the cooling at the in-process that carries the hawthorn piece backward, refrigerates to the support cover inside through the refrigerator, and the hawthorn piece after wrapping up in the sugar realizes the cooling when inside through the support cover, makes the syrup harden.
As the optimization, install the scraper on the support frame, the scraper is located the rear downside of third conveyer belt discharge end, and the top edge of scraper extends to the discharge end surface of third conveyer belt. This optimization scheme is through setting up the scraper, when the hawthorn piece passes through third conveyer belt discharge end, utilizes the scraper to separate the hawthorn piece with the third conveyer belt.
The support frame is fixedly connected with two fixing plates which are oppositely arranged, the two fixing plates are respectively provided with a sliding chute which extends along the vertical direction, a sliding block is arranged in the sliding chute in a sliding manner, the top of the sliding chute is fixedly connected with a supporting block, a pressing rod which extends along the vertical direction is arranged on the supporting block in a penetrating manner, the pressing rod is connected with the supporting block through threads, and the lower end of the pressing rod is rotatably connected with the sliding block; the scraper is fixedly connected with a supporting shaft, two ends of the supporting shaft are respectively rotatably arranged on the sliding blocks on two sides, and the supporting shaft is connected with a locking nut for limiting the rotation of the supporting shaft through threads. According to the arrangement of the optimized scheme, the height adjustment of the sliding block is realized by rotating the pressing rod, so that the height adjustment of the scraper is realized; after the locking nut is loosened, the angle of the scraper is adjusted through the rotary connection of the supporting shaft and the sliding block, and the application range is wider; the supporting shaft is fixed through the locking nut pushing the sliding block tightly, and the locking mechanism is simple in structure and convenient to operate.
As the optimization, the screen cloth both sides of shale shaker are equipped with first baffle respectively, the second baffle, the rigid coupling has the diaphragm that extends to shale shaker discharge gate top on the first baffle, wear to be equipped with along the first regulation pole of vertical extension on the diaphragm, first regulation pole passes through the screw thread and is connected with the diaphragm, the lower extreme of first regulation pole rotates and is connected with the regulating plate that extends towards shale shaker discharge gate bottom plate, form discharging channel between the discharge gate bottom plate of regulating plate and shale shaker, at least one side of regulating plate and the vertical guide rail sliding connection of rigid coupling on first striker plate, set up the guide way with vertical guide rail adaptation on the regulating plate. According to the optimized scheme, the first baffle and the second baffle are arranged, so that the haw flakes are prevented from falling from the side of the screen of the vibrating screen, and meanwhile, an adjusting device of the feeding port provides an installation carrier; the height position of the adjusting plate can be adjusted through the arranged first adjusting rod, so that the height of the discharging channel only allows single hawthorn slices to pass through, and the overlapping of the hawthorn slices is avoided.
As optimization, the second adjusting rod located in front of the adjusting plate is transversely arranged on the first baffle in a penetrating mode, the second adjusting rod is connected with the first baffle through threads, one end, extending to the discharge port of the vibrating screen, of the second adjusting rod is rotatably connected with the first baffle, the first baffle is connected with the second baffle through a connecting rod mechanism, the distance between the lower edge of the connecting rod mechanism and the bottom plate of the discharge port of the vibrating screen is smaller than the thickness of the single hawthorn piece, and the distance between the lower edge of the first baffle and the bottom plate of the discharge port of the vibrating screen is smaller than the thickness of the single hawthorn piece. The arrangement of the optimized scheme leads the connecting rod mechanism and the first material baffle plate to form the guide for discharging the hawthorn, and leads the hawthorn to pass through one by one, thereby avoiding the overlapping of the hawthorn pieces when the hawthorn pieces fall to the first conveying belt.
As optimization, the link mechanism comprises a second material retaining plate and a third material retaining plate which are vertically arranged, one end of the second material retaining plate is hinged to the first material retaining plate, the other end of the second material retaining plate is hinged to the third material retaining plate, and one end, far away from the second material retaining plate, of the third material retaining plate is hinged to the second material retaining plate. The link mechanism of the optimized scheme has a simple structure, ensures the movement of the first striker plate, and simultaneously realizes the guiding of the hawthorn slices.
As optimization, the bottom of the slurry soaking pool is provided with a heating cavity, and heat preservation liquid and a heating pipe for heating the heat preservation liquid are arranged in the heating cavity. This optimization scheme heats heat preservation liquid through the heating pipe, heats or keeps warm through heat preservation liquid to the syrup in soaking the thick liquid pond, avoids the syrup to solidify to cane sugar waste has been avoided.
This scheme still provides a haw flakes wraps up in sugared processingequipment's application method, includes following aspect:
1. the height of the adjusting plate is adjusted by rotating the first adjusting rod, so that the distance between the adjusting plate and the bottom plate of the discharge port of the vibrating screen is larger than the thickness of a single hawthorn piece and smaller than the sum of the thicknesses of two hawthorn pieces;
the distance between the first material baffle and the first baffle only allows the single hawthorn slices to transversely pass through by rotating the second adjusting rod, namely the distance between the first material baffle and the first baffle is matched with the maximum length of the single hawthorn slices;
2. loosening the locking nut, and adjusting the angle of the scraper to ensure that the upper edge of the scraper extends to the outer surface of the discharge end of the third conveying belt;
3. the haw flakes to be coated with sugar are put into a vibrating screen through a feeding bin, the haw flakes are dispersed by the vibration of the vibrating screen and are conveyed to a discharge port, and the haw flakes are moved out from the discharge port one by the arrangement of an adjusting plate and a first baffle plate of the discharge port of the vibrating screen;
4. the hawthorn pieces moving out from the discharge port of the vibrating screen fall to a first conveying assembly, the hawthorn pieces are conveyed backwards by the first conveying assembly, the hawthorn pieces moving out from the discharge end of the first conveying assembly fall to a first conveying belt in a slurry soaking pool, the hawthorn pieces are driven by the first conveying belt to enter the position below the liquid level of syrup and move backwards under the clamping of the first conveying belt and a second conveying belt, and the hawthorn pieces are coated with sugar when passing through the syrup;
5. the hawthorn slices shifted out from the discharge end of the first conveying belt fall to a second conveying assembly, the second conveying assembly is used for conveying the hawthorn slices to a third conveying belt of a cooling device, the third conveying belt is used for driving the hawthorn slices to move backwards, and the hawthorn slices pass through a supporting cover and are cooled by refrigeration of a refrigerator, so that syrup coated by the hawthorn slices is hardened; when the cooled sugared haw flakes move to the discharge end of the third conveyer belt, the haw flakes are separated from the third conveyer belt through the scraper.
The invention has the beneficial effects that:
1. the hawthorn slices enter a first conveying belt in a pulp soaking pool to be subjected to pulp soaking and sugar wrapping treatment, and are matched with the first conveying belt through a second conveying belt and move in the same direction and at the same speed, so that the hawthorn slices are clamped and conveyed, mutual adhesion between the hawthorn slices and syrup is avoided, and uniform sugar wrapping of the hawthorn slices is realized; the slurry soaking pool is used for carrying out layering treatment, and the heat preservation liquid is heated through a plurality of heating pipes, so that the syrup on the upper part is in a melting state, and the syrup solidification caused by too low temperature is avoided;
2. the adjusting device is arranged at the discharge port of the vibrating screen, and the separation of the hawthorn slices at the discharge port is realized through the height adjustment of the adjusting plate, so that the hawthorn slices are prevented from being overlapped; the second adjusting rod is rotated to drive the first material baffle to move back and forth, the width of the discharge port is adjusted, the limiting of the width and the height is realized through the adjusting device, and the hawthorn pieces are ensured to pass through the discharge port one by one;
3. the cooled hawthorn slices are reliably separated from the third conveying belt by arranging the scraper, so that the hawthorn slices are prevented from being adhered to each other to form slices, the vertical height and the rotating angle of the scraper are adjusted, and the application range is wider;
4. simple structure realizes wrapping up in sugar fast to every hawthorn piece and handles, has improved production efficiency.
Drawings
FIG. 1 is a schematic structural view of the present invention;
FIG. 2 is a front view of the slurry assembly of the present invention;
FIG. 3 is a left side view of the first adjustment assembly of the present invention;
FIG. 4 is a top view of a second adjustment assembly of the present invention;
FIG. 5 is a front view of the scraping assembly of the present invention;
shown in the figure:
1. the vibrating screen, 2, first conveying subassembly, 3, soak thick liquid subassembly, 5, second conveying subassembly, 7, scraping components, 8, adjusting device, 11, feeding storehouse, 12, first baffle, 31, soak thick liquid pond, 32, heating chamber, 33, heating pipe, 34, first conveyer belt, 41, carriage, 42, second conveyer belt, 61, refrigerator, 62, supporting cover, 63, third conveyer belt, 64, support frame, 71, fixed plate, 72, depression bar, 73, spout, 74, slider, 75, scraper, 76, lock nut, 81, first regulation pole, 82, regulating plate, 83, vertical guide rail, 84, link mechanism, 85, second regulation pole.
Detailed Description
In order to clearly illustrate the technical features of the present solution, the present solution is explained below by way of specific embodiments.
As shown in fig. 1, a sugar processingequipment is wrapped up in to haw piece, including shale shaker 1 that sets gradually from the past backward, soak thick liquid subassembly 3 and cooling device, soak thick liquid subassembly including soaking thick liquid pond 31 and setting up the first conveyer belt 34 in soaking thick liquid pond, be equipped with first guide pulley group in soaking thick liquid pond, first conveyer belt is around establishing in each guide pulley outside of first guide pulley group, carry haw piece backward, first conveyer belt 34 middle part is equipped with and bends to soaking thick liquid section below the thick liquid pond liquid level downwards, the feed end of first conveyer belt corresponds with the discharge gate of shale shaker, the discharge end of first conveyer belt corresponds with cooling device's feed end. In order to improve the conveying effect of the hawthorn slices, a first conveying assembly 2 is arranged between a vibrating screen 1 and a slurry soaking assembly 3, a second conveying assembly 5 is arranged between the slurry soaking assembly 3 and a cooling device, the first conveying assembly and the second conveying assembly are both of belt type conveying structures, the feeding end of the first conveying assembly extends to the lower portion of the discharging port of the vibrating screen to receive and convey the hawthorn slices falling from the vibrating screen, the discharging end of the first conveying assembly 2 extends to the upper portion of the feeding end of a first conveying belt 34 to convey the hawthorn slices to the first conveying belt; the feeding end of the second conveying assembly 5 extends to the lower portion of the discharging end of the first conveying belt, the sugar-coated hawthorn sheets output by the first conveying belt are received and conveyed, the discharging end of the second conveying assembly extends to the upper portion of the feeding end of the cooling device, the sugar-coated hawthorn sheets fall onto a third conveying belt of the cooling device through the discharging end of the second conveying assembly, and the outlet of the second conveying assembly 5 is 20-30cm higher than the feeding end of the third conveying belt. The second conveying assembly 5 and the third conveying belt 63 of the cooling device have a fall, so that burrs of syrup on the surfaces of the hawthorn slices are effectively reduced.
As shown in fig. 2, the slurry dipping assembly of this embodiment further includes a second conveyor belt 42 located above the first conveyor belt, and a lifting mechanism for driving the second conveyor belt to move vertically, the second conveyor belt is mounted on a supporting frame 41, a second guide wheel set is mounted on the supporting frame, the second conveyor belt winds around the outer side of each guide wheel of the second guide wheel set, the second conveyor belt 42 is matched with the upper portion of the first conveyor belt 34, a hawthorn piece clamping channel is formed between the lower side edge of the second conveyor belt and the upper side edge of the first conveyor belt, and the lower side edge of the second conveyor belt and the upper side edge of the first conveyor belt move at the same speed and in the same direction. The supporting frame is connected with the movable end of the lifting mechanism, and the lifting mechanism drives the supporting frame to move up and down, so that the height of the haw slice clamping channel is adjusted, and the requirements of fixing and conveying the haw slices with different thicknesses are met. The first conveying belt 34 and the second conveying belt 42 are respectively provided with a plurality of through holes which are uniformly distributed, the diameter of each through hole is 5-8mm, syrup is contacted with the upper surface and the lower surface of the hawthorn sheet through the through holes, and the uniformity of sugar wrapping is improved.
Soak the thick liquid pond and include upper strata and the lower floor that separates into through heat conduction partition plate, the upper strata is used for holding the syrup, and the lower floor is equipped with heat preservation liquid and a plurality of heating pipes 33 that are used for heating heat preservation liquid for setting up the heating chamber 32 in the bottom in the heating chamber 32, through heating pipe heating heat preservation liquid, utilizes heat preservation liquid heating syrup, makes the syrup be in and melts the state, avoids the temperature to hang down excessively to cause the syrup to solidify.
A feeding bin 11 is arranged above the feeding end of the vibrating screen 1, and hawthorn slices to be wrapped with sugar fall onto the vibrating screen through the feeding bin. The discharge gate of shale shaker is equipped with adjusting device 8, makes the haw flakes arrange one by one through adjusting device 8 and falls into first conveying component 2, and rethread first conveying component 2 conveys the haw flakes to soaking in the thick liquid subassembly 3. Adjusting device includes first adjusting part and second adjusting part, and for the installation of first adjusting part and second adjusting part, the screen cloth both sides of shale shaker are equipped with first baffle 12, second baffle respectively, and the length of first baffle is greater than the length of second baffle.
Specifically, as shown in fig. 3, the first adjusting assembly includes a horizontal plate fixedly connected to the top of the first baffle plate and extending to the upper side of the discharge port of the vibrating screen, and a first adjusting rod 81 which is arranged on the transverse plate in a penetrating way and extends vertically, the first adjusting rod is connected with the transverse plate through threads, the lower end of the first adjusting rod is rotatably connected with an adjusting plate 82 which extends towards the bottom plate of the discharge hole of the vibrating screen through a bearing, a discharge channel is formed between the adjusting plate and the bottom plate of the discharge hole of the vibrating screen, one side edge of the adjusting plate is in sliding connection with a vertical guide rail 83 fixedly connected on the first material baffle plate, a guide groove matched with the vertical guide rail is arranged on the adjusting plate, and the adjusting plate provides guidance for the movement of the adjusting plate through the matching of the guide groove and the vertical guide rail, and the adjusting plate is righted, and the lower edge of the adjusting plate is prevented from inclining, so that the distance between the bottom edge of the adjusting plate and the bottom plate of the discharge hole of the vibrating screen is consistent.
As shown in fig. 4, the second adjusting assembly includes a second adjusting rod 85 transversely penetrating through the first baffle, the second adjusting rod 85 is located in front of the adjusting plate 82, the second adjusting rod is in threaded connection with the first baffle, one end of the second adjusting rod extending to the discharge port of the vibrating screen is connected with a first striker plate through a bearing in a rotating manner, the first striker plate is connected with the second baffle through a link mechanism 84, the lower edge of the link mechanism is spaced from the bottom plate of the discharge port of the vibrating screen, and the lower edge of the first striker plate is spaced from the bottom plate of the discharge port of the vibrating screen and is smaller than the thickness of a single hawthorn slice. The link mechanism comprises a second material retaining plate and a third material retaining plate which are vertically arranged, one end of the second material retaining plate is hinged to the first material retaining plate through a vertical hinge shaft, the other end of the second material retaining plate is hinged to the third material retaining plate through a vertical hinge shaft, and one end, far away from the second material retaining plate, of the third material retaining plate is hinged to the second material retaining plate through a vertical hinge shaft.
The cooling device comprises a support frame 64, a third conveying belt 63 installed on the support frame, and a support cover 62 covering the third conveying belt, wherein a refrigerator 61 is installed on the support cover, the refrigerator cools slurry soaked hawthorn pieces conveyed on the third conveying belt, and the feeding end and the discharging end of the third conveying belt are respectively located on the front side and the rear side of the refrigerator. Through setting up the supporting cover 62, not only effectively prevent dust, make things convenient for the refrigerated air of refrigerator 61 to cool off the hawthorn piece in the passageway that supporting cover 62 formed moreover. The height of the supporting cover 62 is 55mm, each 3m is a length unit, the supporting cover 62 is connected with the refrigerator 61, a refrigeration coil fan is arranged in the supporting cover 62 to achieve the refrigeration purpose, the temperature is adjustable, the range is 0-16 ℃, and the hawthorn slices coated with sugar are effectively cooled through the cooling device.
The discharge end of third conveyer belt is equipped with scrapes material subassembly 7, scrapes material subassembly 7 including installing the fixed plate 71 of the 75 rigid couplings of scraper on the support frame two relative settings on the support frame, and scraper 75 is located between two fixed plates, and the slope sets up, the transport face adaptation of scraper cutting part and third conveyer belt. Specifically, the scraper is located the rear downside of third conveyer belt discharge end, and the top edge of scraper extends to the discharge end surface of third conveyer belt. The two fixing plates are respectively provided with a sliding groove 73 extending vertically, a sliding block 74 is arranged in the sliding groove in a sliding manner, the top of the sliding groove is fixedly connected with a supporting block, a pressing rod 72 extending vertically is arranged on the supporting block in a penetrating manner, the pressing rod is connected with the supporting block through threads, and the lower end of the pressing rod is rotatably connected with the sliding block. The scraper is fixedly connected with a supporting shaft, the two ends of the supporting shaft are respectively rotatably arranged on the sliding blocks on the two sides, the supporting shaft is connected with a locking nut 76 for limiting the rotation of the supporting shaft through threads, the two locking nuts are respectively positioned on one sides, away from the scraper, of the two sliding blocks, and the locking nut is tightly pressed against the sliding blocks to fix the supporting shaft. The upper and lower height adjustment range of the scraper 75 is 8-10mm, the angle adjustment range is 20-50 degrees, the application range is wider, and cooled hawthorn slices are separated from the third conveying belt 63 through the scraper, so that the hawthorn slices are prevented from being adhered to each other to form slices.
The present embodiment further comprises a controller which controls the action of the first conveyor assembly 2, the first conveyor belt 34, the second conveyor belt 42, the second conveyor assembly 5 and the third conveyor belt 63.
The utility model provides a sugared processingequipment is wrapped up in to hawthorn piece when using, wait to wrap up sugared hawthorn piece and fall into shale shaker 1 from feeding storehouse 11, shale shaker 1 is to the vibration of hawthorn piece and the discharge gate department of homodisperse transmission to the rear end, adjusting device 8 of discharge gate department adjusts a plurality of hawthorn pieces, make it get into first conveying component 2 one by one, the rethread first conveying component 2 gets into to soak and starch the processing in soaking thick liquid subassembly 3, the hawthorn piece after soaking thick liquid cools off in getting into cooling device through second conveying component 5, at last backward conveying on third conveyer belt 63, realize breaking away from of hawthorn piece and third conveyer belt 63 through scraping subassembly 7. The device is not only suitable for haw slices, but also suitable for other soaked foods, such as apple slices, banana slices and the like.
The use method of the haw slice sugar-wrapping processing device comprises the following steps:
1. the height of the adjusting plate is adjusted by rotating the first adjusting rod, so that the distance between the adjusting plate and the bottom plate of the discharge port of the vibrating screen is larger than the thickness of a single hawthorn piece and smaller than the sum of the thicknesses of two hawthorn pieces, the separation of the hawthorn pieces at the discharge port is realized by adjusting the height of the adjusting plate 82, and the overlapping of the hawthorn pieces is avoided;
the width of the discharge port of the vibrating screen is adjusted by rotating the second adjusting rod, so that the position limitation of the hawthorn slices with different widths is realized, the distance between the first material baffle and the first baffle only allows the single hawthorn slice to transversely pass through, namely, the distance between the first material baffle and the first baffle is matched with the maximum length size of the single hawthorn slice;
2. loosening the locking nut, and adjusting the angle of the scraper to ensure that the upper edge of the scraper extends to the outer surface of the discharge end of the third conveying belt;
3. the haw flakes to be coated with sugar are put into a vibrating screen through a feeding bin, the haw flakes are dispersed by the vibration of the vibrating screen and are conveyed to a discharge port, and the width and height limitation is realized through an adjusting device 8 by the arrangement of an adjusting plate and a first baffle plate of the discharge port of the vibrating screen, so that the haw flakes are moved out of the discharge port one by one;
4. the hawthorn pieces moving out from the discharge port of the vibrating screen fall to a first conveying assembly, the hawthorn pieces are conveyed backwards by the first conveying assembly, the hawthorn pieces moving out from the discharge end of the first conveying assembly fall to a first conveying belt in a slurry soaking pool, the hawthorn pieces are driven by the first conveying belt to enter the position below the liquid level of syrup and move backwards under the clamping of the first conveying belt and a second conveying belt, and the hawthorn pieces are coated with sugar when passing through the syrup; the first conveying belt and the second conveying belt are used for clamping and fixing the hawthorn slices, so that the hawthorn slices are prevented from being adhered to each other due to displacement when being contacted with syrup;
5. the hawthorn slices shifted out from the discharge end of the first conveying belt fall to a second conveying assembly, the second conveying assembly is used for conveying the hawthorn slices to a third conveying belt of a cooling device, the third conveying belt is used for driving the hawthorn slices to move backwards, and the hawthorn slices pass through a supporting cover and are cooled by refrigeration of a refrigerator, so that syrup coated by the hawthorn slices is hardened; when the cooled sugared haw flakes move to the discharge end of the third conveyer belt, the haw flakes are separated from the third conveyer belt through the scraper.
The haw slice sugar-wrapping processing device is simple in structure, the haw slices are uniformly distributed and arranged through the vibrating screen 1 and are transmitted into the pulp soaking pool 31 one by one, the first conveying belt 34 and the second conveying belt 42 are used for fixing and synchronously conveying the haw slices, and the syrup is ensured to be in contact with the haw slices, so that the sugar-wrapping amount on the haw slices is uniform, the haw slices are prevented from being seriously adhered after being wrapped with sugar, the haw slices are transmitted into the cooling device to be rapidly cooled, the scraping component 7 effectively realizes the separation of the haw slices after being wrapped with sugar and cooled, the haw slices are prevented from being adhered to the third conveying belt, the whole structure can realize automatic sugar wrapping, the manual operation is avoided, and the efficiency is higher.
Of course, the above description is not limited to the above examples, and the undescribed technical features of the present invention can be implemented by or using the prior art, and will not be described herein again; the above embodiments and drawings are only for illustrating the technical solutions of the present invention and not for limiting the present invention, and the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that changes, modifications, additions or substitutions within the spirit and scope of the present invention may be made by those skilled in the art without departing from the spirit of the present invention, and shall also fall within the scope of the claims of the present invention.

Claims (10)

1. The utility model provides a haw slice wraps up sugared processingequipment which characterized in that: including shale shaker (1), the pond of soaking (31) and the cooling device that set gradually, be equipped with first conveyer belt (34) in the pond of soaking, first conveyer belt is equipped with and bends to the section of soaking below the pond liquid level of soaking downwards, and the feed end of first conveyer belt corresponds with the discharge gate of shale shaker, and the discharge end of first conveyer belt corresponds with cooling device's feed end.
2. The haw slice sugar-coated processing device according to claim 1, characterized in that: the hawthorn slice clamping device further comprises a second conveying belt (42) positioned above the first conveying belt and a lifting mechanism driving the second conveying belt to move vertically, and a hawthorn slice clamping channel is formed by the lower side edge of the second conveying belt and the upper side edge of the first conveying belt.
3. The haw slice sugar-coated processing device according to claim 1, characterized in that: the cooling device comprises a support frame (64), a third conveying belt (63) arranged on the support frame and a support cover (62) covered above the third conveying belt, wherein a refrigerator (61) is arranged on the support cover, and the feeding end and the discharging end of the third conveying belt are respectively positioned at the front side and the rear side of the refrigerator.
4. The haw slice sugar-coated processing device according to claim 3, characterized in that: install scraper (75) on the support frame, the scraper is located the rear downside of third conveyer belt discharge end, and the top edge of scraper extends to the discharge end surface of third conveyer belt.
5. The haw slice sugar-coated processing device according to claim 4, wherein: the supporting frame is fixedly connected with two fixing plates (71) which are oppositely arranged, the two fixing plates are respectively provided with a sliding chute which extends along the vertical direction, a sliding block (74) is arranged in the sliding chute in a sliding manner, the top of the sliding chute is fixedly connected with a supporting block, a pressing rod (72) which extends along the vertical direction is arranged on the supporting block in a penetrating manner, the pressing rod is connected with the supporting block through threads, and the lower end of the pressing rod is rotatably connected with the sliding block;
the scraper is fixedly connected with a supporting shaft, two ends of the supporting shaft are respectively rotatably arranged on the sliding blocks at two sides, and the supporting shaft is connected with a locking nut (76) for limiting the rotation of the supporting shaft through threads.
6. The haw slice sugar-coated processing device according to claim 1, characterized in that: the screen cloth both sides of shale shaker are equipped with first baffle (12) respectively, the second baffle, the rigid coupling has the diaphragm that extends to shale shaker discharge gate top on the first baffle, wear to be equipped with along vertical first regulation pole (81) of extending on the diaphragm, first regulation pole passes through the screw thread and is connected with the diaphragm, the lower extreme of first regulation pole rotates and is connected with regulating plate (82) that extend towards shale shaker discharge gate bottom plate, form discharging channel between the discharge gate bottom plate of regulating plate and shale shaker, vertical guide rail (83) sliding connection on the first striker plate of at least one side and rigid coupling of regulating plate, set up the guide way with vertical guide rail adaptation on the regulating plate.
7. The haw slice sugar-coated processing device according to claim 6, wherein: the second that lies in regulating plate (82) the place ahead is worn to be equipped with along transversely on the first baffle and is adjusted pole (85), the second is adjusted the pole and is passed through threaded connection with first baffle, the one end rotation that the second adjusted the pole extended the shale shaker discharge gate is connected with first striker plate, first striker plate passes through link mechanism (84) with the second baffle and is connected, the interval of link mechanism lower limb and shale shaker discharge gate bottom plate, and the interval of first striker plate lower limb and shale shaker discharge gate bottom plate all is less than the thickness of monolithic hawthorn piece.
8. The haw slice sugar-coated processing device according to claim 7, characterized in that: the link mechanism comprises a second material retaining plate and a third material retaining plate which are vertically arranged, one end of the second material retaining plate is hinged to the first material retaining plate, the other end of the second material retaining plate is hinged to the third material retaining plate, and one end, far away from the second material retaining plate, of the third material retaining plate is hinged to the second material retaining plate.
9. The haw slice sugar-coated processing device according to claim 1, characterized in that: the bottom of the pulp soaking pool is provided with a heating cavity (32), and heat preservation liquid and a heating pipe (33) used for heating the heat preservation liquid are arranged in the heating cavity (32).
10. The use method of the haw slice sugar-wrapping processing device is characterized by comprising the following steps:
(1) the height of the adjusting plate is adjusted by rotating the first adjusting rod, so that the distance between the adjusting plate and the bottom plate of the discharge port of the vibrating screen is larger than the thickness of a single hawthorn piece and smaller than the sum of the thicknesses of two hawthorn pieces;
the distance between the first material baffle plate and the first baffle plate is only allowed to allow a single hawthorn slice to transversely pass through by rotating the second adjusting rod;
(2) loosening the locking nut, and adjusting the angle of the scraper to ensure that the upper edge of the scraper extends to the outer surface of the discharge end of the third conveying belt;
(3) the haw flakes to be coated with sugar are put into a vibrating screen through a feeding bin, the haw flakes are dispersed by the vibration of the vibrating screen and are conveyed to a discharge port, and the haw flakes are moved out from the discharge port one by the arrangement of an adjusting plate and a first baffle plate of the discharge port of the vibrating screen;
(4) the hawthorn pieces moving out from the discharge port of the vibrating screen fall to a first conveying assembly, the hawthorn pieces are conveyed backwards by the first conveying assembly, the hawthorn pieces moving out from the discharge end of the first conveying assembly fall to a first conveying belt in a slurry soaking pool, the hawthorn pieces are driven by the first conveying belt to enter the position below the liquid level of syrup and move backwards under the clamping of the first conveying belt and a second conveying belt, and the hawthorn pieces are coated with sugar when passing through the syrup;
(5) the hawthorn slices shifted out from the discharge end of the first conveying belt fall to a second conveying assembly, the second conveying assembly is used for conveying the hawthorn slices to a third conveying belt of a cooling device, the third conveying belt is used for driving the hawthorn slices to move backwards, and when the hawthorn slices pass through a supporting cover, the hawthorn slices are cooled by refrigeration of a refrigerator, so that syrup coated by the hawthorn slices is hardened; when the cooled sugared haw flakes move to the discharge end of the third conveyer belt, the haw flakes are separated from the third conveyer belt through the scraper.
CN202110905992.2A 2021-08-09 2021-08-09 Haw slice sugar wrapping processing device and using method thereof Pending CN113519674A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202110905992.2A CN113519674A (en) 2021-08-09 2021-08-09 Haw slice sugar wrapping processing device and using method thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202110905992.2A CN113519674A (en) 2021-08-09 2021-08-09 Haw slice sugar wrapping processing device and using method thereof

Publications (1)

Publication Number Publication Date
CN113519674A true CN113519674A (en) 2021-10-22

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202110905992.2A Pending CN113519674A (en) 2021-08-09 2021-08-09 Haw slice sugar wrapping processing device and using method thereof

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Country Link
CN (1) CN113519674A (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117301267A (en) * 2023-11-20 2023-12-29 广州镁宝板业有限公司 Glass magnesium fireproof plate production and processing equipment

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117301267A (en) * 2023-11-20 2023-12-29 广州镁宝板业有限公司 Glass magnesium fireproof plate production and processing equipment
CN117301267B (en) * 2023-11-20 2024-03-12 广州镁宝板业有限公司 Glass magnesium fireproof plate production and processing equipment

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