CN117190654B - Air-curing device for processing Polygonatum kingianum slices - Google Patents

Air-curing device for processing Polygonatum kingianum slices Download PDF

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Publication number
CN117190654B
CN117190654B CN202311478684.1A CN202311478684A CN117190654B CN 117190654 B CN117190654 B CN 117190654B CN 202311478684 A CN202311478684 A CN 202311478684A CN 117190654 B CN117190654 B CN 117190654B
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frame
sunning
fixing
grooves
rotating
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CN117190654A (en
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肖良俊
王高升
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Yunnan Academy of Forestry and Grassland Sciences
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Yunnan Academy of Forestry and Grassland Sciences
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P60/00Technologies relating to agriculture, livestock or agroalimentary industries
    • Y02P60/80Food processing, e.g. use of renewable energies or variable speed drives in handling, conveying or stacking
    • Y02P60/85Food storage or conservation, e.g. cooling or drying

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Abstract

The invention belongs to the technical field of Polygonatum kingianum slice drying, and discloses a drying device for Polygonatum kingianum slice processing, which is technically characterized in that: including the mount, the support frame is installed in the mutual rotation of the both sides wall that the mount is relative, be provided with the sunning frame between the support frame inner wall, the dwang that the multiunit side by side was installed in the mutual rotation of the both sides wall that the sunning frame is relative, dwang fixed surface installs the otter board, annular fender area has been cup jointed in the support frame outside, the sunning mouth has been seted up on fender area surface, the support frame tip is provided with the locating component who is connected with the fender area, sunning frame surface is provided with the shedding mechanism that mutually support with the dwang, shedding mechanism is including rotating component and spacing subassembly, has solved current sunning mode and can only carry out sunning processing to the sliced single face of yunnan sealwort, and manual turning slicing efficiency is lower, can not guarantee that all slices are whole to overturn, problem that sunning efficiency is lower.

Description

Air-curing device for processing Polygonatum kingianum slices
Technical Field
The invention relates to the technical field of Polygonatum kingianum slice drying, in particular to an airing device for Polygonatum kingianum slice processing.
Background
Polygonatum kingianum (Polygonatum kingianum) is a perennial herb of Polygonatum genus of Liliaceae family, and is used as a rhizome for medicine or food. Rhizoma Polygonati is one of three crude drugs (rhizoma Polygonati, rhizoma Polygonati and Polygonatum cyrtonema Fabricius) specified in Chinese pharmacopoeia, and contains rhizoma Polygonati crude polysaccharide, oligosaccharide, rhizoma Polygonati saponin, amino acid, flavone, anthraquinone, etc. as main ingredients, wherein rhizoma Polygonati polysaccharide has various pharmacological effects of enhancing organism immunity, reducing blood sugar, reducing blood lipid, delaying aging, etc.
In the production process, the Polygonatum kingianum is sliced and then aired or baked to form the Polygonatum kingianum slices. At present, the sliced sunning of yunnan rhizoma Polygonati is mainly placed the section and is carried out the sunning naturally on the otter board surface, but current this kind of sunning mode can only carry out sunning to the sliced single face of yunnan rhizoma Polygonati and handle, and sliced back can't be shone by sunshine, and manual turning slicing efficiency is lower to can not guarantee that all sections are whole to turn over, sunning efficiency is lower.
Disclosure of Invention
The invention aims to provide a drying device for processing Polygonatum kingianum slices, which aims to solve the problems in the background technology.
In order to achieve the above purpose, the present invention provides the following technical solutions:
the utility model provides a yun rhizoma Polygonati section processing is with drying device, includes the mount, the mount is rectangle annular structure, fixed mounting has the supporting leg all around of mount diapire, the support frame is installed in the mutual rotation of the both sides wall that the mount is relative, the support frame is rectangle annular structure, be provided with the sunning frame between the support frame inner wall, the dwang that multiunit side by side distributes is installed in the mutual rotation of the both sides wall that the sunning frame is relative, dwang fixed surface installs the otter board, the annular retaining band has been cup jointed in the support frame outside, the sunning mouth has been seted up on retaining band surface, the support frame tip is provided with the locating component who is connected with the retaining band, the locating component is used for controlling the retaining band and rotates in the support frame outside, the sunning frame surface is provided with the shedding mechanism of mutually supporting with the dwang, shedding mechanism is including rotating component and spacing subassembly, rotating component is located sunning frame lateral wall and rotating rod and is connected with rotating component, spacing subassembly is located sunning frame diapire and rotating component and is connected with rotating component, spacing subassembly and rotating component mutually support frame inner rotating frame control frame position adjustment are used for carrying out the setting up the telescopic bracket and the side wall.
As a further scheme of the invention: the positioning assembly comprises fixing grooves formed in two ends of the bearing frame respectively, a rotating column is rotatably mounted in the fixing grooves, fixing rollers are fixedly mounted on the surfaces of the rotating column, and the baffle belts are sleeved on the surfaces of the two groups of fixing rollers.
As a further scheme of the invention: the rotary assembly comprises a cavity which is arranged on one side of a rotary rod and is upwards formed in the bottom wall of the drying rack, one end of the rotary rod extends into the cavity and is fixedly provided with a fixed fluted disc, the bottom wall of the drying rack is slidably provided with a sliding plate, the surface of the sliding plate is fixedly provided with a rack which is meshed and connected with the fixed fluted disc, and the sliding plate is connected with the limiting assembly.
As a further scheme of the invention: the limiting assembly comprises a limiting column which is slidably mounted on the surface of the sliding plate, a limiting groove which is matched with the limiting column is formed in the bottom wall of the drying rack, a fixing ring is fixedly mounted on the surface of the limiting column, and an extrusion spring which surrounds the limiting column and is connected with the fixing ring is fixedly mounted on the surface of the limiting column.
As a further scheme of the invention: the telescopic assembly comprises sliding grooves formed in the periphery of the inner wall of the bearing frame, a sliding block is arranged in the sliding groove in a sliding mode, the sliding block extends to the outer side of the sliding groove and is fixedly connected with the airing frame, and a first reset spring connected with the sliding block is fixedly arranged in the sliding groove.
As a further scheme of the invention: the overturning positioning assembly comprises two groups of positioning grooves which are oppositely distributed and are formed in the side wall of the bearing frame, positioning rods which are matched with the positioning grooves are slidably mounted on the side wall of the fixing frame, telescopic grooves are formed in the fixing frame, control blocks which are slidably connected with the telescopic grooves are fixedly mounted on the surfaces of the positioning rods, second reset springs which are connected with the control blocks are fixedly mounted in the telescopic grooves, the positioning rods extend to the outer side of the fixing frame and are fixedly connected with control plates, and supporting portions are arranged on the surfaces of the control plates.
As still further aspects of the invention: the supporting part comprises a supporting column which is rotatably arranged on the surface of the control board, and a supporting groove which is mutually matched with the supporting column is formed in the side wall of the fixing frame.
Compared with the prior art, the invention has the beneficial effects that: through setting up the shedding mechanism and the fender area that comprise rotating assembly, spacing subassembly, locating component, upset locating component mutually support, control sunning frame upset that can be convenient and then carry out whole upset to the section on otter board surface, can effectually improve sunning efficiency, solved current sunning mode and can only carry out sunning to sliced single face and handle, artifical upset section efficiency is lower, can not guarantee that all sections are whole to turn over, problem that sunning efficiency is lower.
Drawings
Fig. 1 is a schematic structural diagram of an airing device for processing a Polygonatum kingianum slice according to an embodiment of the invention.
Fig. 2 is an enlarged schematic view of the structure of fig. 1 a.
Fig. 3 is a schematic top view of a fixing frame and a connection structure thereof in an airing device for processing a slice of rhizoma polygonati in an embodiment of the invention.
Fig. 4 is an enlarged schematic view of the structure B in fig. 3.
Fig. 5 is a schematic diagram of a rotating rod and a connection structure thereof in an airing device for processing a slice of rhizoma polygonati in an embodiment of the invention.
Fig. 6 is an enlarged schematic view of the structure of fig. 5C.
Fig. 7 is a schematic diagram of a baffle belt and a connection structure thereof in an airing device for processing a slice of rhizoma polygonati in an embodiment of the invention.
Wherein: the fixing frame 1, the supporting leg 2, the bearing frame 3, the retaining belt 4, the airing port 41, the positioning component 5, the fixing groove 51, the rotating column 52, the fixing roller 53, the airing frame 6, the rotating rod 7, the screen 8, the unloading mechanism 9, the rotating component 91, the cavity 911, the fixing fluted disc 912, the sliding plate 913, the rack 914, the limiting component 92, the limiting groove 921, the limiting column 922, the fixing ring 923, the pressing spring 924, the telescopic component 10, the sliding groove 101, the sliding block 102, the first reset spring 103, the overturning positioning component 11, the positioning groove 111, the positioning rod 112, the telescopic groove 113, the control block 114, the second reset spring 115, the control plate 116, the supporting part 12, the supporting groove 121 and the supporting column 122.
Detailed Description
It should be noted that, without conflict, the embodiments of the present invention and features of the embodiments may be combined with each other.
Specific implementations of the invention are described in detail below in connection with specific embodiments.
As shown in fig. 1, fig. 2, fig. 3, fig. 5, fig. 6, fig. 7, a structure diagram of a drying device for processing slices of rhizoma polygonati in the yunnan is provided for one embodiment of the invention, the drying device comprises a fixing frame 1, the fixing frame 1 is of a rectangular annular structure, supporting legs 2 are fixedly installed around the bottom wall of the fixing frame 1, a bearing frame 3 is installed on two opposite side walls of the fixing frame 1 in a co-rotating manner, the bearing frame 3 is of a rectangular annular structure, a drying frame 6 is arranged between inner walls of the bearing frame 3, a plurality of groups of rotating rods 7 which are distributed in parallel are installed on two opposite side walls of the drying frame 6 in a co-rotating manner, a screen 8 is fixedly installed on the surface of the rotating rod 7, an annular baffle belt 4 is sleeved on the outer side of the bearing frame 3, a drying opening 41 is formed in the surface of the baffle belt 4, a positioning assembly 5 connected with the baffle belt 4 is arranged at the end of the bearing frame 3, the positioning assembly 5 is used for controlling the baffle belt 4 to rotate on the outer side of the bearing frame 3, a discharging mechanism 9 which is mutually matched with the rotating rod 7 is arranged on the surface of the bearing frame 6, the rotating assembly 92 is arranged on the side of the rotating assembly 92, the rotating assembly 92 is connected with the rotating assembly 6 in the rotating assembly 6 and the position of the rotating assembly 1, and the rotating assembly 10 is arranged in the position of the bearing frame 6, and the position of the rotating assembly is adjusted, and the position of the bearing assembly is adjusted, and the position of the assembly is 10, and the position of the assembly is adjusted, and the position of the device is shown in the position. The overturning and positioning assembly 11 is used for adjusting the position of the bearing frame 3 in the fixed frame 1.
When in use, the overturning and positioning assembly 11 controls the bearing frame 3 to keep a horizontal state in the fixing frame 1, the positioning assembly 5 controls the airing opening 41 to be positioned right above the screen plate 8, the Polygonatum kingianum slices are placed on the surface of the screen plate 8 and uniformly paved, sunlight irradiates the surface of the screen plate 8 through the airing opening 41 on the surface of the baffle belt 4, the Polygonatum kingianum slices can be efficiently aired, in the airing process, the baffle belt 4 is positioned below the screen plate 8, sunlight irradiates the baffle belt 4 to further heat the baffle belt 4, the airing effect on the Polygonatum kingianum slices is further improved through the high-temperature transpiration, when the surface airing of the Polygonatum kingianum slices completely needs to be overturned, the airing frame 6 is pressed downwards, the relative distance between the airing frame 6 and the baffle belt 4 below can be conveniently adjusted through the telescopic assembly 10, after the screen plate 8 moves to a proper position, the rotating component 91 and the limiting component 92 are matched with each other to conveniently control the plurality of groups of rotating rods 7 to rotate at a certain angle in the airing rack 6 so as to control the screen plate 8 to move to an inclined position, the overturning and positioning component 11 is used for controlling the bearing rack 3 to synchronously rotate at a certain angle, the Polygonatum kingianum slices on the surface of the screen plate 8 can slide to the surface of the baffle belt 4, the airing rack 6 is further pressed downwards after the Polygonatum kingianum slices integrally slide to the surface of the baffle belt 4, the screen plate 8 on the surface of the airing rack 6 and the baffle belt 4 are matched with each other to extrude and position the Polygonatum kingianum slices, after the positioning of the Polygonatum kingianum slices is stable, the bearing rack 3 is controlled to overturn one hundred eighty degrees so that the bottom wall of the bearing rack 3 is rotated to the upper side, at the moment, the airing rack 6 synchronously overturns one hundred eighty degrees so that the Polygonatum kingianum slices are positioned above the screen plate 8 at the moment, the integral turnup of the Polygonatum kingianum slices is completed at the moment, and the positioning component 5 is matched, the baffle belt 4 is manually pushed to rotate on the surface of the bearing frame 3, so that the airing port 41 rotates to the upper part of the screen plate 8 again, and the efficient airing of the Polygonatum kingianum slices can be continued.
As shown in fig. 1 and fig. 2, as a preferred embodiment of the present invention, the positioning assembly 5 includes fixing grooves 51 formed at two ends of the carrier 3, a rotating column 52 is rotatably mounted in the fixing grooves 51, a fixing roller 53 is fixedly mounted on a surface of the rotating column 52, and the baffle 4 is sleeved on surfaces of the two sets of fixing rollers 53.
The two groups of fixed rollers 53 support and position the blocking belt 4, so that the annular blocking belt 4 can be sleeved outside the bearing frame 3, and the fixed rollers 53 are rotatably arranged in the fixed grooves 51, so that when a worker applies thrust to the blocking belt 4, the blocking belt 4 can be conveniently controlled to rotate around the bearing frame 3, and the position of the airing opening 41 can be conveniently adjusted.
As shown in fig. 1, 5 and 6, as a preferred embodiment of the present invention, the rotating assembly 91 includes a cavity 911 formed in the bottom wall of the drying rack 6 and located at one side of the rotating rod 7, one end of the rotating rod 7 extends into the cavity 911 and is fixedly provided with a fixed fluted disc 912, the bottom wall of the drying rack 6 is slidably provided with a sliding plate 913, a rack 914 engaged with the fixed fluted disc 912 is fixedly provided on the surface of the sliding plate 913, and the sliding plate 913 is connected with the limiting assembly 92.
Initially, the sliding plate 913 is fixed in sunning frame 6 diapire department, and rack 914 and fixed fluted disc 912 keep the meshing state and then fix a position dwang 7 this moment, and otter board 8 keeps the horizontality, can carry out sunning to the rhizoma polygonati section and handle, when needs turn over the rhizoma polygonati section, spacing subassembly 92 cancel the restriction to sliding plate 913, promote sliding plate 913 and remove along sunning frame 6 diapire, and rack 914 and fixed fluted disc 912 meshing transmission then drive dwang 7 in sunning frame 6 synchronous rotation this moment, and dwang 7 drives otter board 8 and rotates to the incline state, and the rhizoma polygonati section on otter board 8 surface can rotate the skid 4 surface of landing below, and the rhizoma polygonati section is removed to the baffle 4 surface after, promotes sliding plate 913 and reciprocates and then makes otter board 8 rotate to the horizontality again.
As shown in fig. 1, 5 and 6, as a preferred embodiment of the present invention, the limiting assembly 92 includes a limiting post 922 slidably mounted on a surface of a sliding plate 913, a limiting groove 921 matching with the limiting post 922 is formed on a bottom wall of the drying rack 6, a fixing ring 923 is fixedly mounted on a surface of the limiting post 922, and a pressing spring 924 surrounding the limiting post 922 and connected with the fixing ring 923 is fixedly mounted on a surface of the limiting post 922.
When the sliding plate 913 is required to be controlled to move, the limiting columns 922 are pulled outwards to separate the limiting columns 922 from the limiting grooves 921, at this time, the sliding plate 913 is pushed to slide on the bottom wall of the airing frame 6 conveniently, after the sliding plate 913 is moved to a proper position, the extruding springs 924 push the limiting columns 922 to move reversely to enable the limiting columns 922 to be inserted into the limiting grooves 921 at corresponding positions, and the limiting columns 922 are matched with the limiting grooves 921 conveniently to fix the positions of the sliding plates 913.
As shown in fig. 1 and fig. 2, as a preferred embodiment of the present invention, the telescopic assembly 10 includes sliding grooves 101 formed around the inner wall of the carrier 3, a sliding block 102 is slidably mounted in the sliding grooves 101, the sliding block 102 extends to the outside of the sliding groove 101 and is fixedly connected to the drying rack 6, and a first return spring 103 connected to the sliding block 102 is fixedly mounted in the sliding groove 101.
When the yunnan sealwort section on the surface of the screen plate 8 is moved to the surface of the baffle belt 4, the relative position between the screen plate 8 and the baffle belt 4 needs to be adjusted, the airing frame 6 is pressed downwards, the sliding block 102 moves downwards in the sliding groove 101, the height of the airing frame 6 can be conveniently adjusted, the relative position between the screen plate 8 and the baffle belt 4 is further adjusted, the yunnan sealwort section on the surface of the screen plate 8 can be conveniently moved to the surface of the baffle belt 4 integrally, the yunnan sealwort section is prevented from turning over in the moving process, and when the bearing frame 3 needs to be controlled to turn over one hundred eighty degrees, the airing frame 6 can be further pressed downwards, so that the screen plate 8 on the surface of the airing frame 6 and the baffle belt 4 are mutually matched to extrude and position the yunnan sealwort section.
As shown in fig. 1, 3 and 4, as a preferred embodiment of the present invention, the turnover positioning assembly 11 includes two sets of positioning slots 111 that are distributed oppositely and are formed on the side wall of the carrier 3, the side wall of the fixing frame 1 is slidably provided with positioning rods 112 that are matched with the positioning slots 111, a telescopic slot 113 is formed in the fixing frame 1, a control block 114 that is slidably connected with the telescopic slot 113 is fixedly mounted on the surface of the positioning rods 112, a second return spring 115 that is connected with the control block 114 is fixedly mounted in the telescopic slot 113, the positioning rods 112 extend to the outside of the fixing frame 1 and are fixedly connected with a control board 116, and a supporting portion 12 is disposed on the surface of the control board 116.
Initially, the positioning rod 112 is inserted into the positioning groove 111, the carrier 3 can be controlled to keep a horizontal state in the fixing frame 1, when the carrier 3 needs to be controlled to overturn, the control board 116 is pulled to separate the positioning rod 112 from the positioning groove 111, at the moment, the carrier 3 and the drying rack 6 can be conveniently controlled to rotate, after the carrier 3 rotates for one hundred eighty degrees, the positioning rod 112 is reinserted into the positioning groove 111, and the carrier 3 can be stably positioned.
As shown in fig. 1, 3 and 4, as a preferred embodiment of the present invention, the supporting portion 12 includes a supporting column 122 rotatably mounted on a surface of the control board 116, and a supporting groove 121 is formed on a side wall of the fixing frame 1 and is matched with the supporting column 122. After the control board 116 is pulled to the outside of the fixing frame 1, the support column 122 is inserted into the support groove 121, so that the position of the control board 116 can be positioned.
The working principle of the invention is as follows: the two sets of fixed rollers 53 support the location to keep off area 4, can cup joint annular keep off area 4 in the loading frame 3 outside, initially, sunning mouth 41 is in mesh plate 8 directly over, place the section of yunnan rhizoma Polygonati at mesh plate 8 surface and spread evenly, sun light passes the sunning mouth 41 on keep off area 4 surface and shines mesh plate 8 surface, can carry out efficient sunning to the section of yunnan rhizoma Polygonati and handle, in the sunning process, keep off area 4 is in mesh plate 8 below, sunshine shines and keeps off area 4 and then leads to keep off area 4 to intensification, keep off area 4 further improves the sunning drying effect to the section of yunnan rhizoma Polygonati through high temperature transpiration, when the section surface sunning of yunnan rhizoma Polygonati totally needs the turn-over sunning, press sunning frame 6 downwards, sliding block 102 moves down in spout 101, the relative position between section of yunnan rhizoma Polygonati 6 is adjusted to the adjustment 8 that this moment, outwards stimulate spacing post 922 makes spacing post and spacing groove 921 separate, the promotion sliding plate that can be convenient is in mesh plate 6, the side 6 is rotated to the mesh plate 7 and the mesh plate is rotated to the mesh plate 8 to the face side of mesh plate 8, and then the rotation face side is rotated to the rotation of mesh plate 8, and the section is rotated to the mesh plate 7 is rotated to the face down, and the rotation state is rotated down in mesh plate 7 is rotated to the mesh plate 7 and the rotation face side 7 is rotated to the mesh plate is rotated down to the mesh plate 8 and the face down is rotated down to the side down. Further downwards presses the airing rack 6 to enable the screen plate 8 on the surface of the airing rack 6 to be matched with the baffle belt 4 to extrude and position the Polygonatum kingianum slices. Pulling control panel 116 makes locating lever 112 and constant head tank 111 separation, and control that this moment can be convenient bears frame 3 and sunning frame 6 and rotate, after bearing frame 3 rotates one hundred eighty degrees, locating lever 112 reinserts in the constant head tank 111, can carry out stable location to bearing frame 3.
While the preferred embodiments of the present invention have been described in detail, the present invention is not limited to the above embodiments, and various changes can be made without departing from the spirit of the present invention within the knowledge of those skilled in the art.

Claims (7)

1. The utility model provides a yun rhizoma Polygonati section processing is with drying device, includes the mount, the mount is rectangle annular structure, fixed mounting has the supporting leg around the mount diapire respectively, a serial communication port, the supporting frame is installed in the mutual rotation of the both sides wall that the mount is relative, the supporting frame is rectangle annular structure, be provided with the sunning frame between the supporting frame inner wall, the dwang that the multiunit side by side distributed is installed in the mutual rotation of the both sides wall that the sunning frame is relative, dwang fixed surface installs the otter board, the supporting frame outside has cup jointed annular fender area, the sunning mouth has been seted up on fender area surface, the supporting frame tip is provided with the locating component who is connected with the fender area, the locating component is used for controlling the fender area and rotates in the supporting frame outside, the supporting frame surface is provided with the shedding mechanism that mutually support with the dwang, shedding mechanism is including rotating component and spacing subassembly, rotating component is located the supporting frame lateral wall and be connected with the dwang, spacing subassembly is located the sunning frame diapire and is connected with rotating component, spacing subassembly and rotating component mutually supporting frame inner rotating frame control frame and the setting up the position adjustment frame is used for carrying out the setting up the telescopic bracket and the position of the supporting frame.
2. The airing device for processing the Polygonatum kingianum slices according to claim 1, wherein the positioning assembly comprises fixing grooves formed in two ends of the bearing frame respectively, a rotating column is rotatably installed in the fixing grooves, fixing rollers are fixedly installed on the surfaces of the rotating column, and the baffle belts are sleeved on the surfaces of the two groups of fixing rollers.
3. The drying device for processing the Polygonatum kingianum slices according to claim 1, wherein the rotating assembly comprises a cavity which is arranged on one side of a rotating rod and is formed by upwards opening the bottom wall of a drying rack, one end of the rotating rod extends into the cavity and is fixedly provided with a fixed fluted disc, the bottom wall of the drying rack is slidably provided with a sliding plate, the surface of the sliding plate is fixedly provided with a rack meshed with the fixed fluted disc, and the sliding plate is connected with the limiting assembly.
4. The drying device for processing the Polygonatum kingianum slices according to claim 3, wherein the limiting assembly comprises a limiting column which is slidably arranged on the surface of the sliding plate, a limiting groove which is matched with the limiting column is formed in the bottom wall of the drying rack, a fixing ring is fixedly arranged on the surface of the limiting column, and an extrusion spring which surrounds the limiting column and is connected with the fixing ring is fixedly arranged on the surface of the limiting column.
5. The drying device for processing the Polygonatum kingianum slices according to claim 1, wherein the telescopic component comprises sliding grooves formed in the periphery of the inner wall of the bearing frame, sliding blocks are slidably mounted in the sliding grooves, the sliding blocks extend to the outer sides of the sliding grooves and are fixedly connected with the drying frame, and first reset springs connected with the sliding blocks are fixedly mounted in the sliding grooves.
6. The drying device for processing the Polygonatum kingianum slices according to claim 1, wherein the overturning and positioning assembly comprises two groups of positioning grooves which are arranged on the side wall of the bearing frame and are distributed oppositely, positioning rods which are matched with the positioning grooves are slidably arranged on the side wall of the fixing frame, telescopic grooves are arranged in the fixing frame, a control block which is slidably connected with the telescopic grooves is fixedly arranged on the surface of the positioning rods, a second reset spring which is connected with the control block is fixedly arranged in the telescopic grooves, the positioning rods extend to the outer side of the fixing frame and are fixedly connected with a control plate, and a supporting part is arranged on the surface of the control plate.
7. The drying device for processing Polygonatum kingianum slices as set forth in claim 6, wherein the support portion comprises a support column rotatably mounted on the surface of the control board, and a support groove is formed in the side wall of the fixing frame and is matched with the support column.
CN202311478684.1A 2023-11-08 2023-11-08 Air-curing device for processing Polygonatum kingianum slices Active CN117190654B (en)

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