CN217429207U - Dehydrating device is used in hedgehog hydnum mushroom processing - Google Patents

Dehydrating device is used in hedgehog hydnum mushroom processing Download PDF

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Publication number
CN217429207U
CN217429207U CN202221204912.7U CN202221204912U CN217429207U CN 217429207 U CN217429207 U CN 217429207U CN 202221204912 U CN202221204912 U CN 202221204912U CN 217429207 U CN217429207 U CN 217429207U
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partition plate
box body
ventilation partition
ventilation
shell
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CN202221204912.7U
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Chinese (zh)
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万成
方柳慧
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Fuzhou Forint Biotechnology Co ltd
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Fuzhou Forint Biotechnology Co ltd
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Abstract

The utility model provides a dehydrating device for processing hericium erinaceus, which is provided with a first ventilating baffle, a second ventilating baffle and a dehydrating component which are all arranged in a box body; a first ventilation partition plate is respectively arranged at two sides of the second ventilation partition plate, and a plurality of object placing discs are placed between the first ventilation partition plate and the second ventilation partition plate; a plurality of vent holes are formed in the surfaces, close to the object placing disc, of the first ventilation partition plate and the second ventilation partition plate; openings are formed in the ends, close to the dewatering component, of the first ventilation partition plate and the second ventilation partition plate; the dehydration component comprises a shell, an axial flow fan and a heating pipe; the heating pipe is positioned on one side of the shell close to the air inlet; the axial flow fan is positioned on one side of the shell close to the opening; two sides of the shell are respectively fixedly connected with the box body; axial-flow fan and heating tube are connected with the switch board electricity respectively, not only can carry out high-efficient dehydration to the hedgehog hydnum mushroom, convenient to use moreover, and the cost of manufacture is low.

Description

Dehydrating device is used in hedgehog hydnum mushroom processing
Technical Field
The utility model relates to a food processing equipment field, in particular to dehydrating unit is used in hedgehog hydnum mushroom processing.
Background
Unsaturated fatty acid contained in Hericium erinaceus is beneficial to blood circulation, can reduce cholesterol content in blood, and is an ideal food for patients with hypertension and cardiovascular diseases. Can improve the immunologic function of human bodies, can delay senility, is beneficial to digestive tract tumor patients and is an ideal food which is suitable for being eaten by medicines.
At present, because the hericium erinaceus is different from other edible fungi in that the hericium erinaceus is large in size and spherical, high in water content, capable of being dehydrated to prepare dry hericium erinaceus, delicious in taste and long in storage time, an existing method for preparing the dry hericium erinaceus is an airing method, but the airing method is low in efficiency, needs a large-area platform, is greatly influenced by weather, and therefore is not convenient for large-scale production.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
In order to solve the above problems in the prior art, the utility model provides a dehydrating unit is used in hedgehog hydnum mushroom processing can dewater the hedgehog hydnum mushroom by the efficient.
(II) technical scheme
In order to achieve the above object, the utility model discloses a main technical scheme include:
a dehydration device for processing hericium erinaceus comprises a box body, a control cabinet, a first ventilation partition plate, a second ventilation partition plate and a dehydration assembly;
an air outlet is formed above the box body, and an air inlet is formed below the box body;
the control cabinet is arranged above the box body;
the first ventilation partition plate, the second ventilation partition plate and the dehydration assembly are arranged in the box body;
a first ventilation partition plate is respectively arranged on two sides of the second ventilation partition plate, and a plurality of object placing discs are placed between the first ventilation partition plate and the second ventilation partition plate;
a plurality of vent holes are formed in one surfaces, close to the object placing plate, of the first ventilation partition plate and the second ventilation partition plate;
one ends of the first ventilation partition plate and the second ventilation partition plate, which are close to the dewatering component, are provided with openings;
the dehydration component comprises a shell, an axial flow fan and a heating pipe;
the heating pipe is positioned on one side of the shell close to the air inlet;
the axial flow fan is positioned on one side of the shell close to the opening;
two sides of the shell are respectively fixedly connected with the box body;
the axial flow fan and the heating tube are respectively electrically connected with the control cabinet.
Furthermore, the interior of the box body is divided into an upper-layer box body and a lower-layer box body;
the first ventilation baffle and the second ventilation baffle are arranged in the upper-layer box body, and the dehydration assembly is arranged in the lower-layer box body.
Furthermore, a singlechip is arranged in the control cabinet;
a display screen, a power switch, a temperature adjusting knob and a wind speed adjusting knob are arranged outside the control cabinet;
the display screen, the power switch, the temperature adjusting knob and the wind speed adjusting knob are respectively and electrically connected with the single chip microcomputer.
Further, the filter screen assembly is also included;
the filter screen assembly is arranged at the air inlet and the air outlet;
the filter screen component comprises a dust screen, air purification cotton and an active carbon adsorption layer from outside to inside.
Further, the device also comprises a roller;
the rollers are arranged at the bottom of the box body.
(III) advantageous effects
The beneficial effects of the utility model reside in that: the first ventilation partition plate, the second ventilation partition plate and the dehydration component are arranged in the box body; a first ventilation partition plate is respectively arranged at two sides of the second ventilation partition plate, and a plurality of object placing discs are placed between the first ventilation partition plate and the second ventilation partition plate; a plurality of vent holes are formed in the surfaces, close to the object placing disc, of the first ventilation partition plate and the second ventilation partition plate; openings are formed in the ends, close to the dewatering component, of the first ventilation partition plate and the second ventilation partition plate; the dehydration component comprises a shell, an axial flow fan and a heating pipe; the heating pipe is positioned on one side of the shell close to the air inlet; the axial flow fan is positioned on one side of the shell close to the opening; two sides of the shell are respectively fixedly connected with the box body; axial-flow fan and heating tube are connected with the switch board electricity respectively, not only can carry out high-efficient dehydration to the hedgehog hydnum mushroom, convenient to use moreover, and the cost of manufacture is low.
Drawings
Fig. 1 is a schematic view of the overall structure of a dehydrating device for processing hericium erinaceus according to an embodiment of the present invention;
fig. 2 is a front view of the dehydrating device for processing hericium erinaceus of the embodiment of the present invention;
fig. 3 is an exploded view of the dehydrating device for processing hericium erinaceus of the embodiment of the present invention;
fig. 4 is a top view of the dehydrating device for processing hericium erinaceus of the embodiment of the present invention;
fig. 5 is the internal structure schematic diagram of the lower box body of the dehydrating device for processing hericium erinaceus provided by the utility model.
[ description of reference ]
1. A box body;
11. an air outlet; 12. an upper layer box body; 13. a lower layer box body; 14. a roller; 15. an air inlet;
2. a control cabinet;
21. a display screen; 22. a power switch; 23. a temperature adjusting knob; 24. a wind speed adjusting knob;
3. a first ventilation barrier;
4. a second ventilation barrier;
5. a dewatering assembly;
51. a housing; 52. an axial flow fan;
6. an opening;
7. and a filter screen layer.
8. Vent hole
Detailed Description
For a better understanding of the present invention, reference will now be made in detail to the present invention, examples of which are illustrated in the accompanying drawings.
Referring to fig. 1 to 5, a dehydrating device for processing hericium erinaceus includes a case 1, a control cabinet 2, a first ventilating partition 3, a second ventilating partition 4, and a dehydrating assembly 5;
an air outlet 11 is arranged above the box body 1, and an air inlet 15 is arranged below the box body 1;
the control cabinet 2 is arranged above the box body 1;
the first ventilation baffle 3, the second ventilation baffle 4 and the dehydration component 5 are all arranged in the box body 1;
two sides of the second ventilating partition plate 4 are respectively provided with a first ventilating partition plate 3, and a plurality of object placing plates are arranged between the first ventilating partition plate 3 and the second ventilating partition plate 4;
a plurality of vent holes 8 are formed in one surfaces, close to the object placing plate, of the first ventilating partition plate 3 and the second ventilating partition plate 4;
one ends of the first ventilation partition plate 3 and the second ventilation partition plate 4 close to the dewatering component 5 are provided with openings 6;
the dewatering component 5 comprises a shell 51, an axial flow fan 52 and a heating pipe;
the heating pipe is positioned on one side of the shell 51 close to the air inlet 15;
the axial fan 52 is positioned on the side of the casing 51 near the opening 6;
two sides of the shell 51 are respectively fixedly connected with the box body 1;
the axial flow fan 52 and the heating tube are electrically connected to the control cabinet 2.
The interior of the box body 1 is divided into an upper layer box body 12 and a lower layer box body 13;
the first ventilation baffle 3 and the second ventilation baffle 4 are both arranged in the upper-layer box body 12, and the dehydration component 5 is arranged in the lower-layer box body 13.
The axial flow fan 52 is low in energy consumption and saves more energy;
ventilating ducts are formed between the first ventilating partition plate 3 and the box body 1 and between the second ventilating partition plate 4 and the box body 1, and the other ends of the first ventilating partition plate 3 and the second ventilating partition plate 4 are sealed with the box body 1, so that air is dehydrated from the ventilating holes 8 of the first ventilating partition plate 3 and the second ventilating partition plate 4 to hericium erinaceus on the object disc;
specifically, the device further comprises a switch door, the switch doors are arranged on the side surfaces of the upper layer box body 12 and the lower layer box body 13, and the switch door of the lower layer box body 13 can be used for replacing a filter screen assembly or periodically cleaning the axial flow fan 52 and the heating tube.
Further, a single chip microcomputer is arranged in the control cabinet 2;
a display screen 21, a power switch 22, a temperature adjusting knob 23 and a wind speed adjusting knob 24 are arranged outside the control cabinet 2;
the display screen 21, the power switch 22, the temperature adjusting knob 23 and the wind speed adjusting knob 24 are electrically connected with the single chip microcomputer respectively.
Specifically, the single chip microcomputer is of an STC12C5412AD single chip microcomputer, and the temperature adjusting knob 23 and the wind speed adjusting knob 24 are arranged, so that the accuracy of temperature and wind speed adjustment can be realized, the dehydration control speed is effectively improved, and the quality of the dried hericium erinaceus is ensured;
also includes a filter screen assembly;
the filter screen assemblies are arranged at the air inlet 15 and the air outlet 11;
the filter screen component 7 comprises a dust screen, air purification cotton and an active carbon adsorption layer from outside to inside.
Specifically, the dust screen, the air purification cotton and the active carbon adsorption layer are arranged, so that dust in the outside air can be effectively prevented from entering the box body 1, and the quality of the dried hericium erinaceus is improved;
the aperture of the dust screen is preferably between 0.5um and 0.6 um.
Further, a roller 14 is also included;
the rollers 14 are arranged at the bottom of the box body 1.
Four corners at the bottom of the box body 1 are respectively provided with a roller 14, so that the dewatering device is convenient to move and use.
The working principle of the utility model is as follows:
during the use, open the switch door of upper box 12 earlier, then take out and put the thing dish, the hericium erinaceus that will treat the dehydration puts into putting the thing dish, then put into the thing dish and put into between first ventilation baffle 3 and the second ventilation baffle 4, then close first switch door, start power button, and adjust the temperature of heating tube and the rotational speed of axial-flow fan 52 through temperature adjusting knob 23 and wind speed adjusting knob 24, the heating tube heats the air earlier, axial-flow fan 52 gets into the air pipe through the opening 6 of first ventilation baffle 3 and second ventilation baffle 4 with the air after the heating, and dewater the hericium erinaceus on the thing dish by the ventilation hole 8 of first ventilation baffle 3 and second ventilation baffle 4, then discharge from air outlet 11.
The above mentioned is only the embodiment of the present invention, and not the limitation of the patent scope of the present invention, all the equivalent transformations made by the contents of the specification and the drawings, or the direct or indirect application in the related technical field, are included in the patent protection scope of the present invention.

Claims (5)

1. A dehydration device for processing hericium erinaceus is characterized by comprising a box body, a control cabinet, a first ventilation partition plate, a second ventilation partition plate and a dehydration assembly;
an air outlet is formed above the box body, and an air inlet is formed below the box body;
the control cabinet is arranged above the box body;
the first ventilation partition plate, the second ventilation partition plate and the dehydration assembly are arranged in the box body;
a first ventilation partition plate is respectively arranged on two sides of the second ventilation partition plate, and a plurality of object placing discs are placed between the first ventilation partition plate and the second ventilation partition plate;
a plurality of vent holes are formed in one surfaces, close to the object placing plate, of the first ventilation partition plate and the second ventilation partition plate;
one ends of the first ventilation partition plate and the second ventilation partition plate, which are close to the dewatering component, are provided with openings;
the dehydration component comprises a shell, an axial flow fan and a heating pipe;
the heating pipe is positioned on one side of the shell close to the air inlet;
the axial flow fan is positioned on one side of the shell close to the opening;
two sides of the shell are respectively fixedly connected with the box body;
the axial flow fan and the heating tube are respectively electrically connected with the control cabinet.
2. The dehydrating device for processing the hericium erinaceus as defined in claim 1, wherein the interior of the case is divided into an upper case and a lower case;
the first ventilation baffle and the second ventilation baffle are arranged in the upper-layer box body, and the dehydration assembly is arranged in the lower-layer box body.
3. The dehydrating device for processing the hericium erinaceus according to claim 1, wherein a single chip microcomputer is arranged in the control cabinet;
a display screen, a power switch, a temperature adjusting knob and a wind speed adjusting knob are arranged outside the control cabinet;
the display screen, the power switch, the temperature adjusting knob and the wind speed adjusting knob are respectively electrically connected with the single chip microcomputer.
4. The dehydrating apparatus for Hericium erinaceus processing according to claim 1, further comprising a strainer assembly;
the filter screen assembly is arranged at the air inlet and the air outlet;
the filter screen assembly comprises a dust screen, air purification cotton and an active carbon adsorption layer from outside to inside.
5. The dehydrating apparatus for processing hericium erinaceus according to claim 1, further comprising rollers;
the rollers are arranged at the bottom of the box body.
CN202221204912.7U 2022-05-18 2022-05-18 Dehydrating device is used in hedgehog hydnum mushroom processing Active CN217429207U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221204912.7U CN217429207U (en) 2022-05-18 2022-05-18 Dehydrating device is used in hedgehog hydnum mushroom processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221204912.7U CN217429207U (en) 2022-05-18 2022-05-18 Dehydrating device is used in hedgehog hydnum mushroom processing

Publications (1)

Publication Number Publication Date
CN217429207U true CN217429207U (en) 2022-09-16

Family

ID=83221680

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221204912.7U Active CN217429207U (en) 2022-05-18 2022-05-18 Dehydrating device is used in hedgehog hydnum mushroom processing

Country Status (1)

Country Link
CN (1) CN217429207U (en)

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