CN114294924A - A raw materials drying device for preparing natto freeze-dried powder and soybean peptide capsule - Google Patents

A raw materials drying device for preparing natto freeze-dried powder and soybean peptide capsule Download PDF

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Publication number
CN114294924A
CN114294924A CN202111621370.3A CN202111621370A CN114294924A CN 114294924 A CN114294924 A CN 114294924A CN 202111621370 A CN202111621370 A CN 202111621370A CN 114294924 A CN114294924 A CN 114294924A
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CN
China
Prior art keywords
main body
holes
dried powder
drying device
sliding
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CN202111621370.3A
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Chinese (zh)
Inventor
王勇
冯泽华
施小燕
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Kangdao Biology Nantong Co ltd
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Kangdao Biology Nantong Co ltd
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Priority to CN202111621370.3A priority Critical patent/CN114294924A/en
Publication of CN114294924A publication Critical patent/CN114294924A/en
Pending legal-status Critical Current

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Abstract

The invention discloses a raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules, which comprises a main body, wherein the bottom of the main body is connected with a mounting plate, the bottom of the mounting plate is provided with a bottom plate, a plurality of supporting rods are connected between the bottom plate and the mounting plate, a plurality of supporting blocks are connected between the main body and the mounting plate, a drying component for drying soybeans is arranged in the main body, a worker can start the electric heating tubes through the arrangement of the electric heating tubes, the electric heating tubes generate heat, the raw materials to be dried are placed in a placing frame, then a driving motor is started, the driving motor drives a rotating rod to rotate, the rotating rod rotates to drive the placing frame to slowly rotate in the main body, when the rotating rod rotates to drive the placing frame to rotate, the opening of the placing frame is upward under the influence of gravity, so that the raw materials in the placing frame are prevented from being spilled, and the rotating rod can drive the electric heating tubes to rotate when rotating, so that the heat in the main body is uniformly distributed.

Description

A raw materials drying device for preparing natto freeze-dried powder and soybean peptide capsule
Technical Field
The invention relates to the technical field of food processing, in particular to a raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules.
Background
According to the application number: CN201710009302.9 can know, a control by temperature change formula soybean drying-machine, including the heating bucket, set up at the inside rotatory bucket of heating bucket, fix the support frame on the heating bucket, set up the driving motor in rotatory bucket below, be connected with rotatory bucket and driving motor simultaneously and establish drive structure's transmission sleeve in and, set up the fan in heating bucket top to and the cooling regulation and control circuit that is connected with the fan is constituteed. The temperature control type soybean dryer provided by the invention can well combine the processes of baking and impurity removal of soybeans, and can also quickly reduce the baking temperature, improve the quality of soybean oil, reduce the production cost of enterprises and well promote the development of the enterprises.
At present, the soybean drying device has some defects, such as: the drying of soybean generally adopts the drying tower, because the drying tower structure is complicated, the drying-machine stoving is thorough, not abundant, and drying efficiency is not good.
Disclosure of Invention
The invention aims to solve the defects that a drying tower is generally adopted for drying soybeans in the prior art, and due to the complex structure of the drying tower, the drying machine cannot completely and fully dry soybeans, and the drying efficiency is poor, and provides a raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules.
In order to achieve the purpose, the invention adopts the following technical scheme:
the utility model provides a raw materials drying device for preparing natto freeze-dried powder and soybean peptide capsule, includes the main part, the bottom of main part is connected with the mounting panel, the bottom of mounting panel is equipped with the bottom plate, the bottom plate with be connected with a plurality of bracing pieces between the mounting panel, the main part with be connected with a plurality of supporting shoes between the mounting panel, be equipped with the stoving subassembly that is used for drying the soybean in the main part.
Above-mentioned technical scheme is further, stoving subassembly includes the opening, and it sets up the lateral wall of main part, one side of main part is equipped with the side cover, the position of side cover covers the opening, the connecting hole has been seted up to one side of main part, the bearing groove has been seted up to inside one side of main part, the bearing inslot is equipped with the bearing, the perforation has been seted up to inside one side of bearing groove, the perforation internal rotation cover is equipped with the dwang, the other end of dwang with the connecting hole rotates the cover and establishes, the outside of dwang is equipped with a plurality of frames of placing, a plurality of water conservancy diversion holes have been seted up respectively to four sides of placing the frame, the lateral wall of dwang is connected with a plurality of electrothermal tubes, be equipped with on the dwang and be used for connecting the coupling assembling of placing the frame.
Through setting up the electrothermal tube, the staff can start the electrothermal tube, and the electrothermal tube gives out heat, places the raw materials that will dry in placing the frame, and the dwang is rotated to the back, drives and places the frame slowly rotatory in the main part, dries by the heat to the raw materials of placing in the frame, simultaneously, establishes a plurality of electrothermal tubes in the outside of dwang, and the dwang also can drive the electrothermal tube when rotating and rotate, makes the heat distribution in the main part even.
Above-mentioned technical scheme is further, coupling assembling includes a plurality of connecting rods, and a plurality of connecting rods are connected respectively the both ends position of the lateral wall of dwang, one side of connecting rod is connected with the spliced pole, the outside of spliced pole is rotated the cover and is equipped with the rotating tube, the lateral wall of rotating tube with place the frame and connect, the one end of spliced pole is connected with the stopper.
Through setting up the rotating tube, the dwang rotates to drive and places the frame when rotating, places the frame and receives its opening of gravity influence up to place the raw materials spill in the frame.
The technical scheme is that the drying assembly further comprises an inner frame, the inner frame is movably sleeved in the placing frame, a plurality of side holes are formed in four sides of the inner frame respectively and communicated with the flow guide holes, a plurality of bottom holes are formed in the bottom of the inner frame, a plurality of heat conduction holes are formed in the bottom of the placing frame, and the heat conduction holes are communicated with the bottom holes.
Through setting up the inside casing, the staff can place in the inside casing to the raw materials in advance, and the back is established the inside casing cover and is placed the frame in to do benefit to the staff and deposit and withdraw the raw materials.
The technical scheme is further that one end of the rotating rod is connected with a connecting disc, a plurality of limiting grooves are formed in the outer side wall of the connecting disc, one side of the main body is connected with a side block, the side block is located on one side of the connecting disc, a sliding hole is formed in one side of the side block, a sliding rod is connected to the inside of the sliding hole in a sliding mode, a moving block is connected to one end of the sliding rod, the other end of the sliding rod is connected with a limiting rod, a spring is sleeved on the outside of the sliding rod, one end of the spring is connected with the moving block, and the other end of the spring is connected with the side block.
Through setting up the connection pad, the staff when the access raw materials, the position of portable gag lever post makes its inside that breaks away from the spacing groove, and the connection pad is rotated to the back, adjusts each position of placing the frame to the staff is placed the frame and is followed the dwang and rotate in the main part when the access raw materials.
The technical scheme is further that a side rod is connected to one side of the connecting disc, and a rotating disc is connected to one end of the side rod.
Through setting up the rolling disc, make things convenient for the staff to rotate the dwang, the position of frame is placed in the adjustment.
The technical scheme is further that a plurality of vent holes are formed in the top of the main body, a sliding plate is arranged at the top of the main body, a plurality of top holes are formed in the top of the sliding plate and communicated with the vent holes, two limiting holes are further formed in the top of the sliding plate, two limiting strips are connected to the top of the main body and sleeved with the limiting holes in a sliding mode, and limiting plates are connected to the tops of the limiting strips.
Through setting up the air vent, when the electrothermal tube heated in to the main part, the moisture accessible air vent diffusion to the main part outside that the raw materials gave out, simultaneously, the slide of setting, the position of portable slide for the size of adjustable air output is misplaced with the air vent to apical pore.
Above-mentioned technical scheme is further, the top of mounting panel is connected with two slide bars, two be connected with the stabilizer bar between the slide bar, the side cover with the slide bar sliding sleeve is established, the outside of slide bar is still slided the cover and is equipped with the rubber tube, the rubber tube is located the bottom of side cover.
Through setting up the rubber tube, can adjust the position of rubber tube upwards or downwards to the position of adjustment side cover.
Above-mentioned technical scheme is further, one side of main part is connected with driving motor, driving motor's drive shaft extends to in the connecting hole and with the dwang is connected.
Through setting up driving motor, driving motor can drive the dwang and rotate.
Above-mentioned technical scheme is further, a plurality of kerfs have been seted up at the top of bottom plate, sliding connection has the storage basket in the kerfs.
Through setting up and taking in the basket, can place the raw materials that have dried or wait to dry in taking in the basket.
Compared with the prior art, the invention has the beneficial effects that:
through setting up the electrothermal tube, the staff can start the electrothermal tube, the electrothermal tube gives off heat, place the raw materials that will dry in placing the frame, back start drive motor, driving motor drives the dwang and rotates, the dwang rotates, it slowly rotates in the main part to drive and place the frame, when the dwang rotates to drive and places the frame and rotate, it influences its opening up to place the frame by gravity, in order to avoid placing the raw materials in the frame and spill, dry by the heat to the raw materials of placing in the frame, and simultaneously, establish a plurality of electrothermal tubes in the outside of dwang, the dwang also can drive the electrothermal tube when rotating and rotate, make the heat distribution in the main part even.
Through setting up the inside casing, the staff can place in the inside casing to the raw materials in advance, and the back is established the inside casing cover and is placed in the frame to do benefit to the staff and deposit and withdraw the raw materials, the staff is when depositing and withdrawing the raw materials, and the position of portable gag lever post makes it break away from the inside of spacing groove, and the connection pad is rotated to the back, adjusts each position of placing the frame, in order to avoid the staff to place the frame when depositing and withdrawing the raw materials and follow the dwang and rotate in the main part.
Through setting up the air vent, when the electrothermal tube heated in to the main part, the moisture accessible air vent diffusion that the raw materials distributed out was outside to the main part, simultaneously, the slide of setting, the position of portable slide for apical pore and air vent dislocation, the size of adjustable air output, through setting up the rubber tube, can upwards or downwards adjust the position of rubber tube, with the position of adjustment side cap.
Drawings
FIG. 1 is a schematic diagram of the overall structure of a raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules provided by the invention;
FIG. 2 is a right-side view schematically showing the overall structure of a raw material drying apparatus for preparing natto freeze-dried powder and soybean peptide capsules according to the present invention;
FIG. 3 is a schematic cross-sectional view taken along the line A-A in FIG. 2;
FIG. 4 is a schematic view showing the separation of the overall structure of a raw material drying apparatus for preparing natto freeze-dried powder and soybean peptide capsules according to the present invention;
FIG. 5 is a schematic front view showing the overall structure of a raw material drying apparatus for preparing natto freeze-dried powder and soybean peptide capsules according to the present invention;
FIG. 6 is a schematic cross-sectional view taken along line B-B of FIG. 5;
FIG. 7 is an enlarged view of the structure at A in FIG. 3;
FIG. 8 is a schematic diagram of a connection disc structure of a raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules.
In the figure: 100. a main body; 101. mounting a plate; 102. a base plate; 103. a support bar; 104. a support block; 105. an opening; 106. perforating; 107. rotating the rod; 108. placing the frame; 109. a flow guide hole; 110. an electric heating tube; 111. a bearing; 200. a connecting rod; 201. connecting columns; 202. rotating the tube; 203. a limiting block; 204. a bottom hole; 205. an inner frame; 206. a side hole; 207. a heat conduction hole; 300. a connecting disc; 301. a limiting groove; 302. a side block; 303. a slide hole; 304. a slide bar; 305. a moving block; 306. a spring; 307. a limiting rod; 308. a side lever; 309. rotating the disc; 400. a vent hole; 401. a slide plate; 402. a top hole; 403. a limiting aperture; 404. a restriction strip; 405. a limiting plate; 406. a slide bar; 407. a side cover; 408. a rubber tube; 409. a stabilizer bar; 500. a drive motor; 501. connecting holes; 600. a bottom groove; 601. a storage basket.
Detailed Description
The technical solution of the present invention is further explained with reference to the accompanying drawings and specific embodiments.
Example one
As shown in fig. 1-8, the raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules provided by the invention comprises a main body 100, wherein the bottom of the main body 100 is connected with an installation plate 101, the bottom of the installation plate 101 is provided with a bottom plate 102, a plurality of support rods 103 are connected between the bottom plate 102 and the installation plate 101, a plurality of support blocks 104 are connected between the main body 100 and the installation plate 101, and a drying component for drying soybeans is arranged in the main body 100. Drying assembly includes opening 105, it sets up the lateral wall at main part 100, one side of main part 100 is equipped with side cover 407, side cover 407's position covers opening 105, connecting hole 501 has been seted up to one side of main part 100, bearing 111 groove has been seted up to inside one side of main part 100, bearing 111 inslot is equipped with bearing 111, perforation 106 has been seted up to inside one side in bearing 111 groove, perforation 106 internal rotation cover is equipped with dwang 107, the other end and the connecting hole 501 rotation cover of dwang 107 are established, the outside of dwang 107 is equipped with a plurality of frames 108 of placing, place four sides of frame 108 and seted up a plurality of water conservancy diversion holes 109 respectively, the lateral wall of dwang 107 is connected with a plurality of electrothermal tubes 110, be equipped with on the dwang 107 and be used for connecting the coupling assembling of placing frame 108. Through setting up electrothermal tube 110, the staff can start electrothermal tube 110, and electrothermal tube 110 sends the heat, places the raw materials that will dry in placing frame 108, and back rotation dwang 107 drives and places frame 108 and slowly revolve in main part 100, dries the raw materials of placing in frame 108 by the heat, simultaneously, establishes a plurality of electrothermal tubes 110 in the outside of dwang 107, and dwang 107 also can drive electrothermal tube 110 when rotating and rotate for heat in the main part 100 distributes evenly.
In this embodiment, coupling assembling includes a plurality of connecting rods 200, and a plurality of connecting rods 200 are connected respectively at the both ends position of the lateral wall of dwang 107, and one side of connecting rod 200 is connected with spliced pole 201, and the outside of spliced pole 201 is rotated the cover and is equipped with rotating tube 202, and rotating tube 202's lateral wall with place the frame 108 and be connected, and the one end of spliced pole 201 is connected with stopper 203. By providing the rotating pipe 202, when the rotating rod 107 rotates to rotate the placing frame 108, the placing frame 108 is influenced by gravity to have its opening 105 facing upward, so as to prevent the raw material in the placing frame 108 from spilling. The drying assembly further comprises an inner frame 205, the inner frame 205 is movably sleeved in the placing frame 108, a plurality of side holes 206 are respectively formed in four sides of the inner frame 205, the side holes 206 are communicated with the flow guide holes 109, a plurality of bottom holes 204 are formed in the bottom of the inner frame 205, a plurality of heat conduction holes 207 are formed in the bottom of the placing frame 108, and the heat conduction holes 207 are communicated with the bottom holes 204. By arranging the inner frame 205, a worker can place the raw material in the inner frame 205 in advance and then sleeve the inner frame 205 in the placing frame 108, so that the worker can conveniently store and take the raw material.
In this embodiment, a plurality of air vents 400 have been seted up at the top of main part 100, and the top of main part 100 is equipped with slide 401, and a plurality of apical pore 402 have been seted up at the top of slide 401, and apical pore 402 is linked together with air vent 400, and two restriction holes 403 have still been seted up at the top of slide 401, and the top of main part 100 is connected with two restriction strips 404, and restriction strip 404 establishes with restriction hole 403 sliding sleeve, and the top of restriction strip 404 is connected with restriction board 405. Through setting up air vent 400, when electrothermal tube 110 heated in to main part 100, the moisture that the raw materials emanated out can diffuse to the main part 100 outside through air vent 400, simultaneously, the slide 401 of setting, the position of movable slide 401 for top hole 402 misplaces with air vent 400, the size of adjustable air output. The top of the mounting plate 101 is connected with two sliding rods 406, a stabilizing rod 409 is connected between the two sliding rods 406, the side cover 407 is slidably sleeved with the sliding rods 406, the outside of the sliding rods 406 is also slidably sleeved with a rubber tube 408, and the rubber tube 408 is located at the bottom of the side cover 407. By providing the rubber tube 408, the position of the rubber tube 408 can be adjusted upward or downward to adjust the position of the side cover 407.
In this embodiment, a driving motor 500 is connected to one side of the main body 100, and a driving shaft of the driving motor 500 extends into the connecting hole 501 and is connected to the rotation lever 107. By providing the driving motor 500, the driving motor 500 can drive the rotating rod 107 to rotate. A plurality of bottom slots 600 are opened at the top of the bottom plate 102, and a storage basket 601 is slidably connected in the bottom slots 600. By providing the receiving basket 601, the raw material dried or to be dried can be placed in the receiving basket 601.
Example two
Based on the first embodiment, in this embodiment, one end of the rotating rod 107 is connected with the connecting disc 300, the outer side wall of the connecting disc 300 is provided with a plurality of limiting grooves 301, one side of the main body 100 is connected with the side block 302, the side block 302 is located at one side of the connecting disc 300, one side of the side block 302 is provided with the sliding hole 303, the inside of the sliding hole 303 is slidably connected with the sliding rod 304, one end of the sliding rod 304 is connected with the moving block 305, the other end of the sliding rod 304 is connected with the limiting rod 307, the outside of the sliding rod 304 is sleeved with the spring 306, one end of the spring 306 is connected with the moving block 305, and the other end of the spring 306 is connected with the side block 302. Through setting up connection pad 300, when the staff was when the access raw materials, the position of portable gag lever post 307 made it break away from the inside of spacing groove 301, and the connection pad 300 is rotated to the back, adjusts each position of placing frame 108 to the staff is placed frame 108 and is followed the dwang 107 and rotate in main part 100 when the access raw materials. A side lever 308 is connected to one side of the connecting plate 300, and a rotating plate 309 is connected to one end of the side lever 308. Through setting up rolling disc 309, make things convenient for the staff to rotate dwang 107, the position of frame 108 is placed in the adjustment.
The working principle is as follows: through setting up electrothermal tube 110, the staff can start electrothermal tube 110, electrothermal tube 110 gives out heat, place the raw materials that need to dry in placing frame 108, back start driving motor 500, driving motor 500 drives dwang 107 and rotates, dwang 107 rotates, the drive is placed frame 108 and is slowly rotated in main part 100, dwang 107 rotates and drives when placing frame 108 and rotating, it is up to place its opening 105 of frame 108 influenced by gravity, so as to avoid placing the raw materials in frame 108 and spill, dry the raw materials of placing in frame 108 by the heat, and simultaneously, establish a plurality of electrothermal tubes 110 in the outside of dwang 107, dwang 107 also can drive electrothermal tube 110 when rotating and rotate, make the heat distribution in main part 100 even.
Through setting up inside casing 205, the staff can place in inside casing 205 to the raw materials in advance, later establish inside casing 205 cover in placing frame 108 to do benefit to the staff and deposit and withdraw the raw materials, the staff is when depositing and withdrawing the raw materials, and the position of portable gag lever post 307 makes it break away from the inside of spacing groove 301, and the connection pad 300 is rotated to the back, adjusts each position of placing frame 108, so that the staff places frame 108 and follows dwang 107 rotation in main part 100 when depositing and withdrawing the raw materials.
Through setting up air vent 400, when electrothermal tube 110 heated in to main part 100, the moisture that the raw materials emanated out can diffuse to the main part 100 outside through air vent 400, simultaneously, the slide 401 that sets up, the position of movable slide 401 for top hole 402 misplaces with air vent 400, the size of adjustable air output, through setting up rubber tube 408, can upwards or downwards adjust the position of rubber tube 408, with the position of adjustment limit lid 407.
The above description is only for the preferred embodiment of the present invention, but the scope of the present invention is not limited thereto, and any person skilled in the art should be considered to be within the technical scope of the present invention, and the technical solutions and the inventive concepts thereof according to the present invention should be equivalent or changed within the scope of the present invention.

Claims (10)

1. The utility model provides a raw materials drying device for preparing natto freeze-dried powder and soybean peptide capsule, a serial communication port, includes main part (100), the bottom of main part (100) is connected with mounting panel (101), the bottom of mounting panel (101) is equipped with bottom plate (102), bottom plate (102) with be connected with a plurality of bracing pieces (103) between mounting panel (101), main part (100) with be connected with a plurality of supporting shoes (104) between mounting panel (101), be equipped with the stoving subassembly that is used for drying the soybean in main part (100).
2. The raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules according to claim 1, wherein the drying assembly comprises an opening (105) which is arranged on the outer side wall of the main body (100), a side cover (407) is arranged on one side of the main body (100), the opening (105) is covered by the side cover (407), a connecting hole (501) is arranged on one side of the main body (100), a bearing (111) groove is arranged on one side of the inside of the main body (100), a bearing (111) is arranged in the bearing (111) groove, a through hole (106) is arranged on one side of the inside of the bearing (111) groove, a rotating rod (107) is rotatably sleeved on the through hole (106), the other end of the rotating rod (107) is rotatably sleeved with the connecting hole (501), and a plurality of placing frames (108) are arranged on the outside of the rotating rod (107), a plurality of flow guide holes (109) are respectively formed in four sides of the placing frame (108), the outer side wall of the rotating rod (107) is connected with a plurality of electric heating tubes (110), and a connecting assembly used for connecting the placing frame (108) is arranged on the rotating rod (107).
3. The raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules according to claim 2, wherein the connecting assembly comprises a plurality of connecting rods (200), the connecting rods (200) are respectively connected at two ends of the outer side wall of the rotating rod (107), one side of the connecting rod (200) is connected with a connecting column (201), the outer rotating sleeve of the connecting column (201) is provided with a rotating pipe (202), the outer side wall of the rotating pipe (202) is connected with the placing frame (108), and one end of the connecting column (201) is connected with a limiting block (203).
4. The raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules according to claim 2, wherein the drying assembly further comprises an inner frame (205), the inner frame (205) is movably sleeved in the placing frame (108), a plurality of side holes (206) are respectively formed in four sides of the inner frame (205), the side holes (206) are communicated with the flow guide holes (109), a plurality of bottom holes (204) are formed in the bottom of the inner frame (205), a plurality of heat conduction holes (207) are formed in the bottom of the placing frame (108), and the heat conduction holes (207) are communicated with the bottom holes (204).
5. The raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules according to claim 2, it is characterized in that one end of the rotating rod (107) is connected with a connecting disc (300), the outer side wall of the connecting disc (300) is provided with a plurality of limiting grooves (301), one side of the main body (100) is connected with a side block (302), the side block (302) is positioned at one side of the connecting disc (300), one side of the side block (302) is provided with a slide hole (303), a sliding rod (304) is connected inside the sliding hole (303) in a sliding manner, one end of the sliding rod (304) is connected with a moving block (305), the other end of the sliding rod (304) is connected with a limiting rod (307), a spring (306) is sleeved outside the sliding rod (304), one end of the spring (306) is connected with the moving block (305), and the other end of the spring (306) is connected with the side block (302).
6. The raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules according to claim 5, wherein a side lever (308) is connected to one side of the connecting disc (300), and a rotating disc (309) is connected to one end of the side lever (308).
7. The raw material drying device for preparing the natto freeze-dried powder and the soybean peptide capsules as claimed in claim 1, wherein a plurality of vent holes (400) are formed in the top of the main body (100), a sliding plate (401) is arranged on the top of the main body (100), a plurality of top holes (402) are formed in the top of the sliding plate (401), the top holes (402) are communicated with the vent holes (400), two limiting holes (403) are further formed in the top of the sliding plate (401), two limiting strips (404) are connected to the top of the main body (100), the limiting strips (404) are slidably sleeved with the limiting holes (403), and a limiting plate (405) is connected to the top of the limiting strips (404).
8. The raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules according to claim 2, wherein two sliding rods (406) are connected to the top of the mounting plate (101), a stabilizing rod (409) is connected between the two sliding rods (406), the side cover (407) is slidably sleeved with the sliding rods (406), a rubber tube (408) is further slidably sleeved outside the sliding rods (406), and the rubber tube (408) is located at the bottom of the side cover (407).
9. The raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules according to claim 2, wherein a driving motor (500) is connected to one side of the main body (100), and a driving shaft of the driving motor (500) extends into the connecting hole (501) and is connected with the rotating rod (107).
10. The raw material drying device for preparing natto freeze-dried powder and soybean peptide capsules according to claim 1, wherein a plurality of bottom grooves (600) are formed in the top of the bottom plate (102), and a containing basket (601) is connected in the bottom grooves (600) in a sliding mode.
CN202111621370.3A 2021-12-28 2021-12-28 A raw materials drying device for preparing natto freeze-dried powder and soybean peptide capsule Pending CN114294924A (en)

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Application Number Priority Date Filing Date Title
CN202111621370.3A CN114294924A (en) 2021-12-28 2021-12-28 A raw materials drying device for preparing natto freeze-dried powder and soybean peptide capsule

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Application Number Priority Date Filing Date Title
CN202111621370.3A CN114294924A (en) 2021-12-28 2021-12-28 A raw materials drying device for preparing natto freeze-dried powder and soybean peptide capsule

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CN114294924A true CN114294924A (en) 2022-04-08

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2004329012A (en) * 2003-04-30 2004-11-25 Kazuki Takahashi Device for producing dry persimmon
CN108709389A (en) * 2018-07-07 2018-10-26 将乐县佳丰木业有限公司 A kind of novel timber overturning drying unit
CN109307413A (en) * 2018-10-16 2019-02-05 安徽格瑞农业开发有限公司 A kind of efficient chrysanthemum drying unit
CN210441583U (en) * 2019-07-22 2020-05-01 苏州新南河环保科技有限公司 Drying equipment of filter screen
CN211552341U (en) * 2020-02-03 2020-09-22 青岛藻蓝生物有限公司 Large-scale drying-machine is used to marigold
CN211837064U (en) * 2020-03-24 2020-11-03 池州市银旺钙业有限公司 Waste gas purification device is used in calcium oxide production

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2004329012A (en) * 2003-04-30 2004-11-25 Kazuki Takahashi Device for producing dry persimmon
CN108709389A (en) * 2018-07-07 2018-10-26 将乐县佳丰木业有限公司 A kind of novel timber overturning drying unit
CN109307413A (en) * 2018-10-16 2019-02-05 安徽格瑞农业开发有限公司 A kind of efficient chrysanthemum drying unit
CN210441583U (en) * 2019-07-22 2020-05-01 苏州新南河环保科技有限公司 Drying equipment of filter screen
CN211552341U (en) * 2020-02-03 2020-09-22 青岛藻蓝生物有限公司 Large-scale drying-machine is used to marigold
CN211837064U (en) * 2020-03-24 2020-11-03 池州市银旺钙业有限公司 Waste gas purification device is used in calcium oxide production

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