CN218269989U - Folium artemisiae argyi drying device is used in processing of thin moxa stick - Google Patents

Folium artemisiae argyi drying device is used in processing of thin moxa stick Download PDF

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Publication number
CN218269989U
CN218269989U CN202221953260.7U CN202221953260U CN218269989U CN 218269989 U CN218269989 U CN 218269989U CN 202221953260 U CN202221953260 U CN 202221953260U CN 218269989 U CN218269989 U CN 218269989U
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drying
air
cavity
processing
folium artemisiae
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CN202221953260.7U
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孙文涛
郭振
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Henan Sancai Ai Industry Co ltd
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Henan Sancai Ai Industry Co ltd
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Abstract

The utility model relates to the field of drying, in particular to a folium artemisiae argyi drying device for processing thin moxa sticks, which comprises a drying cylinder, a heating mechanism and a gas circulation mechanism; a partition board is arranged in the drying cylinder and divides the drying cylinder into a drying cavity and a treatment cavity, the drying cavity is positioned above the treatment cavity, and the drying cavity is used for containing the folium artemisiae argyi; the heating mechanism is arranged in the processing cavity and is close to the partition plate; the gas circulation mechanism is configured to circulate gas within the drying chamber. The utility model discloses in, heat the air of dry intracavity through heating mechanism to make the air of dry intracavity to last the circulation through gas circulation mechanism, strengthened the drying effect to the chinese mugwort leaf, improved drying efficiency, it is poor to have solved current chinese mugwort leaf drying device drying effect, and drying efficiency is low, has influenced the follow-up problem of going on to chinese mugwort strip processing work.

Description

Folium artemisiae argyi drying device is used in processing of thin moxa stick
Technical Field
The utility model relates to a dry field, concretely relates to folium artemisiae argyi drying device is used in processing of thin moxa stick.
Background
The moxa roll is a cylindrical long roll made by wrapping moxa with cotton paper, is mainly used for moxibustion, is one of the oldest Chinese medical techniques, belongs to a traditional Chinese medicine external treatment method, can warm channel and dispel cold, promote qi and blood circulation and dispel cold and dampness, and is suitable for symptoms such as wind-cold-dampness arthralgia, muscle soreness and numbness, arthralgia and limb pain, cervical spondylosis and the like. In the processing process of the moxa roll, the moxa needs to be dried. But the folium artemisiae argyi drying device among the prior art is carrying out drying process's in-process to the folium artemisiae argyi, and drying effect is poor, and drying efficiency is low, has influenced follow-up going on to moxa stick processing work.
SUMMERY OF THE UTILITY MODEL
The utility model provides a folium artemisiae argyi drying device is used in processing of thin moxa stick to it is poor to solve current folium artemisiae argyi drying device drying effect, and drying efficiency is low, has influenced the follow-up problem of going on to moxa stick processing work.
The utility model discloses a chinese mugwort leaf drying device is used in processing of thin chinese mugwort stick adopts following technical scheme: comprises a drying cylinder, a heating mechanism and a gas circulation mechanism; a partition board is arranged in the drying cylinder and divides the drying cylinder into a drying cavity and a treatment cavity, the drying cavity is positioned above the treatment cavity, and the drying cavity is used for containing the folium artemisiae argyi; the heating mechanism is arranged in the processing cavity and is close to the partition plate; the gas circulation mechanism is configured to circulate gas within the drying chamber.
Furthermore, the heating mechanism is a resistance wire, and the partition plate is made of a material with good heat-conducting property.
Further, the resistance wire disc is formed in a spiral shape.
Further, the gas circulation mechanism comprises a gas guide pipe, a gas pump and a dehumidifying structure; both ends of the air duct are connected with the drying cavity; the air pump is arranged on the air guide pipe to pump the air in the drying cavity out of one end of the air guide pipe and pump the air into the drying cavity from the other end of the air guide pipe; the dehumidifying structure is also arranged on the air pipe and is positioned at the output end of the air pump.
Further, a main shaft is rotatably arranged in the center of the drying cavity; the main shaft is connected with a rotating motor; the main shaft is provided with at least one drying disc, and the drying disc and the main shaft rotate synchronously.
Furthermore, a plurality of vent holes are arranged on the drying tray.
Further, the periphery of the drying disk is fixedly connected with a baffle ring.
Furthermore, a bin door is rotatably arranged on the drying cylinder and is opposite to the drying cavity.
The utility model has the advantages that: the utility model discloses a folium artemisiae argyi drying device is used in processing of thin moxa stick heats the air of dry intracavity through heating mechanism to make the air of dry intracavity to last the circulation through gas circulation mechanism, strengthened the drying effect to the folium artemisiae argyi, improved drying efficiency. The problem of current chinese mugwort leaf drying device drying effect poor, drying efficiency is low, has influenced follow-up going on to chinese mugwort stick processing work is solved.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings needed to be 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 of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive exercise.
Fig. 1 is a schematic structural view of an embodiment of a moxa leaf drying device for processing thin moxa sticks according to the present invention;
FIG. 2 is a front view of an embodiment of a drying device for processing thin moxa sticks according to the present invention;
fig. 3 is a top view of an embodiment of the drying device for processing thin moxa sticks of the present invention;
FIG. 4 is a sectional view taken along line A in FIG. 3;
FIG. 5 is a sectional view taken along line B in FIG. 3;
fig. 6 is a schematic structural view of the embodiment of the folium artemisiae argyi drying device for processing thin folium artemisiae argyi of the present invention when the bin gate is opened;
in the figure: 100. a drying cylinder; 101. a bin gate; 110. a partition plate; 120. a drying chamber; 121. a main shaft; 122. rotating the motor; 123. drying the disc; 124. a vent hole; 125. a baffle ring; 130. a treatment chamber; 200. a heating mechanism; 210. a resistance wire; 220. a switch; 300. a gas circulation mechanism; 310. an air duct; 320. an air pump; 330. a dehumidifying structure.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The embodiment of the folium artemisiae argyi drying device for processing the thin folium artemisiae argyi strip of the utility model is shown in fig. 1 to 6 and comprises a drying cylinder 100, a heating mechanism 200 and a gas circulation mechanism 300; a partition plate 110 is arranged in the drying cylinder 100, the drying cylinder 100 is divided into a drying cavity 120 and a processing cavity 130 by the partition plate 110, the drying cavity 120 is positioned above the processing cavity 130, and the drying cavity 120 is used for containing folium artemisiae argyi; the heating mechanism 200 is disposed in the processing chamber 130 and adjacent to the partition 110; the gas circulation mechanism 300 is configured to circulate gas within the drying chamber 120.
In this embodiment, the heating mechanism 200 is a resistance wire 210, the partition 110 is made of a material with good thermal conductivity, and when the resistance wire 210 is energized, heat is generated and transferred into the drying cavity 120 through the partition 110, so as to dry the folium artemisiae argyi.
In this embodiment, the resistance wire 210 is coiled into a spiral shape, and the resistance wire 210 is disposed under the partition plate 110, so that the heat received by the partition plate 110 is more uniform, and the drying efficiency of the folium artemisiae argyi is improved.
In this embodiment, the gas circulation mechanism 300 includes a gas tube 310, a gas pump 320 and a dehumidifying structure 330; both ends of the air duct 310 are connected to the drying chamber 120; the air duct 310 is hermetically connected with the drying cylinder 100; the air pump 320 is arranged on the air guide tube 310 to pump the air in the drying cavity 120 out of one end of the air guide tube 310 and into the drying cavity 120 from the other end of the air guide tube 310; the dehumidifying structure 330 is also installed in the air pipe and is located at the output end of the air pump 320; after the air in the drying chamber 120 enters the air duct 310 under the action of the air pump 320, the dehumidifying structure 330 reduces the humidity of the air, so that the air re-introduced into the drying cylinder 100 is kept dry, and the drying efficiency of the mugwort leaves is further improved.
In this embodiment, the drying cylinder 100 is provided with a main shaft 121 at the center thereof; the main shaft 121 is connected with a rotating motor 122; two drying disks 123 are arranged on the main shaft 121, and the drying disks 123 and the main shaft 121 are configured through key slots so as to achieve the purpose of synchronous rotation. A plurality of vent holes 124 are formed in the drying tray 123, a baffle ring 125 is fixedly connected to the periphery of the drying tray 123, and when the rotating motor 122 rotates, the main shaft 121 rotates along with the rotating motor 122, so that the drying tray 123 is driven to rotate; so that the moxa on the drying tray 123 is dried synchronously, and after part of the moxa leaves are dried, the other part of the moxa leaves are in a wet state. The ventilation holes 124 enhance the ventilation effect, and the baffle ring 125 prevents the folium artemisiae argyi from falling off the drying tray 123 when the drying tray 123 rotates.
In this embodiment, the drying cylinder 100 is rotatably installed with a bin door 101, and the bin door 101 faces the drying chamber 120; so as to be convenient for taking and placing the folium artemisiae argyi.
With the above embodiments, the utility model discloses a usage principle and working process are as follows: the chamber door 101 is opened, the folium artemisiae argyi to be dried is uniformly laid on the drying disc 123, after the chamber door 101 is closed, the switch 220 is opened to enable the resistance wire 210 to be electrified and heated, and the air pump 320, the rotating motor 122 and the dehumidifying device are started. The heat generated by the resistance wire 210 is transferred to the drying cavity 120 through the partition board 110 to dry the folium artemisiae argyi; after the air in the drying chamber 120 enters the air duct 310 under the action of the air pump 320, the humidity of the air processed by the dehumidifying structure 330 is reduced, and then the air enters the drying chamber 120 again; the gas which is introduced into the drying cylinder 100 again keeps dry, so that the drying efficiency of the folium artemisiae argyi is further improved; when the rotating motor 122 rotates, the main shaft 121 rotates along with the rotating motor 122, and further drives the drying tray 123 to rotate; so that the wormwood on the drying tray 123 is dried synchronously, and the dried wormwood is not partially dried, and the wormwood is partially in a wet state. The ventilation holes 124 enhance the ventilation effect, and the baffle ring 125 prevents the folium artemisiae argyi from falling off the drying tray 123 when the drying tray 123 rotates. And ending the work until the folium artemisiae argyi reaches the drying requirement.
The above description is only a preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (8)

1. The utility model provides a thin chinese mugwort leaf drying device for moxa stick processing which characterized in that: comprises a drying cylinder (100), a heating mechanism (200) and a gas circulation mechanism (300); a partition plate (110) is arranged in the drying cylinder (100), the drying cylinder (100) is divided into a drying cavity (120) and a processing cavity (130) by the partition plate (110), the drying cavity (120) is positioned above the processing cavity (130), and the drying cavity (120) is used for containing folium artemisiae argyi; the heating mechanism (200) is arranged in the processing cavity (130) and is close to the clapboard (110); the gas circulation mechanism (300) is configured to circulate gas in the drying chamber (120).
2. The folium artemisiae argyi drying device for processing the thin folium artemisiae argyi as claimed in claim 1, wherein: the heating mechanism (200) is a resistance wire (210), and the partition plate (110) is made of a material with good heat-conducting property.
3. The moxa leaf drying device for processing fine moxa sticks according to claim 2, wherein the device comprises: the resistance wire (210) is spirally coiled.
4. The drying device of mugwort leaves for processing of fine mugwort sticks according to any one of claims 1 to 3, wherein: the air circulation mechanism comprises an air guide pipe, an air pump and a dehumidification structure; both ends of the air duct are connected with the drying cavity; the air pump is arranged on the air guide pipe to pump the air in the drying cavity out of one end of the air guide pipe and pump the air into the drying cavity from the other end of the air guide pipe; the dehumidifying structure is also arranged on the air pipe, and the air circulating mechanism (300) positioned at the output end of the air pump comprises an air guide pipe (310), an air pump (320) and a dehumidifying structure (330); both ends of the air duct (310) are connected with the drying cavity (120); the air pump (320) is arranged on the air guide pipe (310) to pump out the air in the drying cavity (120) from one end of the air guide pipe (310) and pump the air into the drying cavity (120) from the other end of the air guide pipe (310); the dehumidifying structure (330) is also installed at the air pipe and located at the output end of the air pump (320).
5. The folium artemisiae argyi drying device for processing the thin moxa sticks as claimed in claim 4, wherein: a main shaft (121) is rotatably arranged at the center of the drying cavity (120); the main shaft (121) is connected with a rotating motor (122); at least one drying disc (123) is arranged on the main shaft (121), and the drying disc (123) and the main shaft (121) rotate synchronously.
6. The moxa leaf drying device for processing fine moxa sticks as claimed in claim 5, wherein: a plurality of vent holes (124) are arranged on the drying tray (123).
7. The moxa leaf drying device for processing fine moxa sticks as claimed in claim 5, wherein: the periphery of the drying disk (123) is fixedly connected with a baffle ring (125).
8. The folium artemisiae argyi drying device for processing the thin folium artemisiae argyi as claimed in claim 1, wherein: the drying cylinder (100) is rotatably provided with a bin door (101), and the bin door (101) is opposite to the drying cavity (120).
CN202221953260.7U 2022-07-27 2022-07-27 Folium artemisiae argyi drying device is used in processing of thin moxa stick Active CN218269989U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221953260.7U CN218269989U (en) 2022-07-27 2022-07-27 Folium artemisiae argyi drying device is used in processing of thin moxa stick

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221953260.7U CN218269989U (en) 2022-07-27 2022-07-27 Folium artemisiae argyi drying device is used in processing of thin moxa stick

Publications (1)

Publication Number Publication Date
CN218269989U true CN218269989U (en) 2023-01-10

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221953260.7U Active CN218269989U (en) 2022-07-27 2022-07-27 Folium artemisiae argyi drying device is used in processing of thin moxa stick

Country Status (1)

Country Link
CN (1) CN218269989U (en)

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