Energy-saving heat-insulating drying equipment for wolfberry processing
By introducing the medicinal material laying unit and air supply unit into the wolfberry drying equipment, the problems of uneven heating and low manual collection efficiency during the wolfberry drying process are solved, uniform heating and automated collection are achieved, and drying efficiency and working efficiency are improved.
Patent Information
- Application Number
- CN202510459370.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-14
- Publication Date
- 2025-08-29
- Estimated Expiration
- 2045-04-14
AI Technical Summary
During the drying process, wolfberry accumulates between particles due to its spread thickness, resulting in uneven heat and affects the drying efficiency. After drying, it needs to be collected manually layer by layer, which is inefficient.
The medicinal material laying unit and air supply unit in the insulation drying cabinet are adopted. The laying frame is periodically rotated through the round table and the central shaft drive, and combined with the design of the spiral agitating plate and the air supply duct to ensure uniform distribution of hot air; after drying is completed, automatic collection is achieved using the electric push rod and cone table design of the discharge unit.
The uniform heating of wolfberry is achieved, the drying efficiency is improved, and manual operation is reduced through automated feed discharge, which improves work efficiency.
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Figure CN119983748B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of Chinese medicinal material drying, in particular to energy-saving heat-insulating drying equipment for wolfberry processing. Background Art
[0002] Traditional Chinese medicine is mainly composed of plant medicine, animal medicine and mineral medicine. Since plant medicine accounts for the majority of traditional Chinese medicine, it is also called Chinese herbal medicine. There are about 5,000 kinds of traditional Chinese medicine used in various parts of China, and there are countless prescriptions formed by combining various medicinal materials. In the production process of traditional Chinese medicine, drying is a very important process.
[0003] At present, the drying equipment commonly used for Chinese medicinal materials mainly adopts a static drying method, that is, the Chinese medicinal materials are spread flat on the placement rack. This method can achieve good drying effects when the Chinese medicinal materials are only spread in a single layer and no accumulation occurs. However, when processing medicinal materials such as wolfberry, the wolfberry usually needs to be spread to a certain thickness for drying. This inevitably leads to accumulation between the wolfberry particles, resulting in uneven heating and affecting the drying efficiency. In addition, after drying is completed, the wolfberries need to be manually collected layer by layer. This step is not only cumbersome but also inefficient. Summary of the Invention
[0004] The purpose of the present invention is to solve the problem that when processing medicinal materials such as wolfberries, the wolfberries usually need to be spread to a certain thickness for drying, which inevitably leads to accumulation between the wolfberry particles, resulting in uneven heating and affecting the drying efficiency. An energy-saving and heat-insulating drying equipment for wolfberry processing is proposed.
[0005] In order to achieve the above object, the present invention adopts the following technical solutions:
[0006] An energy-saving heat-insulating drying device for processing wolfberries, comprising a heat-insulating drying cabinet, wherein a medicinal material laying unit is installed in the heat-insulating drying cabinet, wherein the medicinal material laying unit comprises a circular table rotatably connected to the bottom wall of the heat-insulating drying cabinet, and a plurality of laying frames are fixed on the circular table via vertical rods;
[0007] An air supply unit is mounted on the outer wall of the heat preservation and drying cabinet, the air supply unit comprising a central shaft rotatably connected to the heat preservation and drying cabinet, the central shaft being equipped with fan blades, and an air outlet member connected to the central shaft being mounted on the inner wall of the heat preservation and drying cabinet;
[0008] The air outlet component includes an air guide cover and an air supply pipe mounted on the air guide cover. The air supply pipe is provided with a plurality of air supply holes. The bottom of the outer wall of the air supply pipe is provided with a plurality of spiral stirring plates. When the air guide cover rotates along with the central axis, the air blown by the fan blades is sent into the upper and lower spaces in the cabinet, and is dispersed by the spiral stirring plates so that the incoming air can evenly wrap the medicinal materials.
[0009] As a further description of the above technical solution:
[0010] The laying frame comprises a surrounding frame, and two semicircular shelves are rotatably connected to the bottom of the inner wall of the surrounding frame. The semicircular shelves are provided with a plurality of elliptical holes that are adapted to the sizes of the fully dried wolfberries.
[0011] As a further description of the above technical solution:
[0012] One side of the two surrounding frames is equipped with a swing unit;
[0013] The swing unit includes an arc guide seat, one side of the arc guide seat is slidably connected to an arc slider in an arc slide groove, one side of the arc slider is rotatably connected to an arc telescopic rod through a connecting column, and one end of the central axis that penetrates into the heat preservation and drying cabinet is connected to the arc telescopic rod.
[0014] As a further description of the above technical solution:
[0015] The inner top wall of the heat preservation and drying cabinet is rotatably connected to a vertical shaft, a positioning plate is fixed to the bottom end of the vertical shaft, a mounting plate is detachably fixed to the lower surface of the positioning plate, and the top end of the vertical rod is detachably fixed to the lower surface of the mounting plate.
[0016] As a further description of the above technical solution:
[0017] The lower surface of the semicircular shelf is provided with a discharging unit;
[0018] The discharging unit includes a material receiving barrel mounted on a vertical rod, a material discharge trough is provided in the middle of the inner bottom wall of the material receiving barrel, a frustum is clamped in the material discharge trough, a connecting frame is fixed on the frustum through a support, a support frame is provided on the lower surface of the semicircular shelf, and a connecting rod is fixed on the outer walls of multiple support frames, and the connecting frame is detachably fixed to the lower surface of the lowest support frame.
[0019] As a further description of the above technical solution:
[0020] A material guide platform is installed below the heat preservation and drying cabinet. An electric push rod is fixed to the lower surface of the material guide platform. One end of the electric push rod that penetrates into the heat preservation and drying cabinet is connected to the cone through a bearing.
[0021] As a further description of the above technical solution:
[0022] The air guide cover is detachably fixed on the central axis, and one end of the air guide cover is rotatably connected to the inner wall of the heat preservation and drying cabinet.
[0023] As a further description of the above technical solution:
[0024] The air supply unit also includes an air inlet frame fixed on the outer wall of the heat-insulating drying cabinet. A motor is installed in the middle of the outer wall of the air inlet frame. The output end of the motor is spline-connected to one end of the central axis. The top and bottom of the outer wall of the air inlet frame are both equipped with filters by opening air inlet slots.
[0025] As a further description of the above technical solution:
[0026] A mounting bracket is detachably fixed on the inner wall of the air inlet frame, and a plurality of heating wires are arranged on the mounting bracket.
[0027] As a further description of the above technical solution:
[0028] A variable-diameter air outlet channel connected to the air supply pipe is provided in the spiral stirring plate, and air deflecting plates are fixed on one side of the lower surface of the mounting plate and one side of the material receiving barrel.
[0029] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:
[0030] 1. Through the medicinal material laying unit, swing unit and air supply unit, after the wolfberries of the same specifications are placed in the laying frame, the central axis drives the fan blades to send air heated by the electric heating wire into the heat preservation and drying cabinet to dry the wolfberries. During the process, the central axis drives the arc telescopic rod to rotate, and then drives the arc guide seat with the laying frame to rotate left and right periodically through the arc slider, so that the wolfberries remain active during the drying period, avoid being piled up for a long time, and ensure that the wolfberries can be heated evenly;
[0031] At the same time, when supplying air, the air supply pipe can supply air to the upper and lower spaces in the cabinet at intervals during rotation, ensuring uniform temperature in the cabinet. During the rotation process, the spiral stirring plate continuously stirs the hot air in the cabinet, making the hot air distribution more even, avoiding the situation where the temperature of the cabinet space far from the air outlet is lower than that of the space near the air outlet, further ensuring that the wolfberry is heated evenly.
[0032] 2. Through the provision of the semicircular shelf and the discharging unit, during the drying process of the wolfberries, the dried wolfberries gradually fall down layer by layer through the elliptical holes on the surface of the semicircular shelf as the laying frame swings and into the receiving barrel for collection. There is no need for personnel to pour out the wolfberries layer by layer after opening the cabinet door. It is only necessary to place the collection frame for receiving the dried wolfberries in front of the material guide table, and then drive the cone table downward by the electric push rod to open the discharge chute, so that the wolfberries collected in the receiving barrel can fall into the collection frame as a whole. At the same time, after the cone table moves downward, the support frame also moves downward. In this state, the semicircular shelf tilts downward under the action of its own gravity. At this time, the wolfberries left on the surface will also slide down due to the tilting force, thereby ensuring that the wolfberries can be completely collected. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 A schematic diagram of a three-dimensional structure provided in an embodiment of the present invention is shown;
[0034] Figure 2 It shows a schematic diagram of the structure inside the discharging unit when receiving dried wolfberries according to an embodiment of the present invention;
[0035] Figure 3 A schematic structural diagram of a swing unit according to an embodiment of the present invention is shown;
[0036] Figure 4 It shows a schematic diagram of the internal structure of the air inlet frame provided by an embodiment of the present invention after being partially cut away;
[0037] Figure 5 A schematic diagram showing the structure of the interior of a heat preservation and drying cabinet in an initial state according to an embodiment of the present invention is shown;
[0038] Figure 6 It shows a structural schematic diagram of a support frame provided according to an embodiment of the present invention;
[0039] Figure 7 It shows a schematic structural diagram of an air outlet member provided by an embodiment of the present invention from a first viewing angle;
[0040] Figure 8 The embodiment of the present invention provides Figure 2 Enlarged view of point A in the middle;
[0041] Figure 9 The embodiment of the present invention provides Figure 4 Enlarged view of point B in the middle;
[0042] Figure 10 A schematic structural diagram of a second viewing angle of an air outlet member provided by an embodiment of the present invention is shown;
[0043] Figure 11 The embodiment of the present invention provides Figure 10 Enlarged view of point C in the middle.
[0044] Legend:
[0045] 10. Insulation drying cabinet;
[0046] 20. Medicinal material laying unit; 21. Round table; 22. Vertical rod; 23. Laying frame; 231. Surrounding frame; 232. Semicircular shelf; 233. Oval hole; 24. Mounting plate;
[0047] 30. Swing unit; 31. Arc guide seat; 32. Arc slide; 33. Arc slider; 34. Arc telescopic rod;
[0048] 40. Air supply unit; 41. Central axis; 42. Fan blades; 43. Air outlet; 431. Air guide cover; 432. Air supply pipe; 433. Air supply hole; 434. Spiral stirring plate; 435. Variable diameter air outlet channel; 436. Air deflector; 44. Air inlet frame; 45. Motor; 46. Heating wire;
[0049] 50. Discharging unit; 51. Receiving barrel; 52. Cone; 53. Pillar; 54. Support frame; 55. Connecting rod; 56. Electric push rod; 57. Material guide table. DETAILED DESCRIPTION
[0050] The following will provide a clear and complete description of the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.
[0051] like Figure 1 - Figure 11 As shown, the present invention provides:
[0052] An energy-saving heat-insulating drying device for processing wolfberries includes a heat-insulating drying cabinet 10. A medicinal material laying unit 20 is assembled in the heat-insulating drying cabinet 10. The medicinal material laying unit 20 includes a round table 21 assembled and rotatably connected to the bottom wall of the heat-insulating drying cabinet 10. A plurality of laying frames 23 are fixed to the round table 21 through vertical rods 22. Specifically, a slot that matches the vertical rod 22 is opened on the surface of the round table 21. The bottom end of the vertical rod 22 is inserted into the slot, and a hexagonal bolt is threadedly connected on the outer wall of the round table 21. After the vertical rod 22 is inserted into the slot, the vertical rod 22 can be fixed in the slot by tightening the bolt, and subsequent disassembly is convenient.
[0053] like Figure 2 、 Figure 3 and Figure 8 As shown, the laying frame 23 includes a surrounding frame 231, and two semicircular shelves 232 are rotatably connected to the bottom of the inner wall of the surrounding frame 231. The semicircular shelves 232 are provided with a plurality of elliptical holes 233 that are adapted to the size of the wolfberries after they are fully dried. In particular, when the wolfberries are fully dried, they can fall downward through the elliptical holes 233. Specifically, a first sliding frame adapted to the vertical rod 22 is fixed on the outer wall of the surrounding frame 231, and a first bolt is threadedly connected to the outer wall of the first sliding frame. The vertical rod 22 is provided with a plurality of threaded holes adapted to the first bolt, so that the surrounding frame 231 can be fixed to the vertical rod 22 through the first bolt on the first sliding frame.
[0054] like Figure 2 、 Figure 3 、 Figure 4 and Figure 9As shown, one side of the two surrounding frames 231 is equipped with a swing unit 30;
[0055] The swing unit 30 includes an arc guide seat 31, one side of the arc guide seat 31 is slidably connected to an arc slider 33 through an arc slot 32, one side of the arc slider 33 is rotatably connected to an arc telescopic rod 34 through a connecting column, and one end of the central axis 41 that penetrates into the heat preservation and drying cabinet 10 is connected to the arc telescopic rod 34;
[0056] The inner top wall of the heat-insulating drying cabinet 10 is rotatably connected to a vertical axis, a positioning plate is fixed to the bottom end of the vertical axis, and a mounting plate 24 is detachably fixed to the lower surface of the positioning plate. The top end of the vertical rod 22 is detachably fixed to the lower surface of the mounting plate 24. Specifically, during the rotation of the central axis 41, the arc telescopic rod 34 will be driven to rotate together, thereby driving the arc guide seat 31 through the arc slider 33 to drive the laying frame 23 to rotate back and forth periodically around the vertical axis. At the same time, by adjusting the length of the arc telescopic rod 34, the amplitude of the left and right rotation of the laying frame 23 can be changed. The left and right rotation of the laying frame 23 can make the wolfberries placed in the laying frame 23 shake periodically to avoid accumulation, so that the wolfberries can fully contact with the hot air during the drying period, thereby accelerating the drying process.
[0057] like Figure 4 and Figure 9 As shown, an air supply unit 40 is installed on the outer wall of the heat-insulating drying cabinet 10. Preferably, a discharge hole is opened on one side of the inner wall of the heat-insulating drying cabinet 10, and a solenoid valve is provided in the discharge hole to remotely control the opening and closing of the discharge hole and the flow rate;
[0058] The air supply unit 40 includes a central shaft 41 rotatably connected to the heat preservation and drying cabinet 10, a fan blade 42 is mounted on the central shaft 41, and an air outlet member 43 connected to the central shaft 41 is mounted on the inner wall of the heat preservation and drying cabinet 10;
[0059] The air supply unit 40 also includes an air inlet frame 44 fixed to the outer wall of the heat preservation and drying cabinet 10. A motor 45 is installed in the middle of the outer wall of the air inlet frame 44. The output end of the motor 45 is spline-connected to one end of the central shaft 41. The top and bottom of the outer wall of the air inlet frame 44 are provided with air inlet slots to clamp filters. A mounting bracket is detachably fixed to the inner wall of the air inlet frame 44, and a plurality of heating wires 46 are provided on the mounting bracket.
[0060] Specifically, while the motor 45 is started to control the central axis 41 to drive the fan blades 42 to rotate, the power of the heating wire 46 is turned on, so that the air blown out through the fan blades 42 is heated by the heating wire 46 and enters the heat preservation and drying cabinet 10 to dry the wolfberries.
[0061] like Figure 4 、 Figure 7 、 Figure 9 and Figure 10 As shown, the air outlet member 43 includes an air guide cover 431 and an air supply pipe 432 assembled on the air guide cover 431. The air guide cover 431 is detachably fixed to the central axis 41, and one end of the air guide cover 431 is rotatably connected to the inner wall of the heat preservation and drying cabinet 10. A plurality of air supply holes 433 are opened on the air supply pipe 432, and a plurality of spiral stirring plates 434 are assembled at the bottom of the outer wall of the air supply pipe 432. When the air guide cover 431 rotates along with the central axis 41, the air blown by the fan blades 42 is sent into the upper and lower spaces of the cabinet, and is dispersed by the spiral stirring plates 434 so that the air can evenly wrap the medicinal materials.
[0062] A variable diameter air outlet channel 435 communicating with the air supply pipe 432 is provided in the spiral stirring plate 434. Preferably, the inner diameter of the variable diameter air outlet channel 435 decreases from the air inlet to the air outlet, so that the air entering the variable diameter air outlet channel 435 can be accelerated before being delivered. An air deflector plate 436 is fixed to one side of the lower surface of the mounting plate 24 and one side of the receiving barrel 51.
[0063] Specifically, during the left and right periodic rotation of the laying frame 23, the mounting plate 24 and the material receiving barrel 51 will be driven to move together, so that the air-exchanging plate 436 can swing left and right. During the process, the wind blown out from the air supply hole 433 can be expelled to both sides, thereby improving the fluidity of the hot air and making the hot air distribution more even. At the same time, during the rotation of the air supply pipe 432, when the air supply hole 433 rotates to the bottom to supply air to the lower space, the spiral stirring plate 434 is at the top, and the wind accelerated by the variable diameter air outlet channel 435 will impact the hot air in the upper space. Similarly, during the rotation process, the wind sent out by the variable diameter air outlet channel 435 will continuously impact the hot air at different positions, thereby improving the fluidity of the hot air.
[0064] like Figure 4 、 Figure 5 、 Figure 6 and Figure 8 As shown, the lower surface of the semicircular shelf 232 is provided with a discharge unit 50;
[0065] The discharging unit 50 includes a receiving barrel 51 assembled on the vertical rod 22. Preferably, a plurality of through holes are opened on the inner bottom wall of the receiving barrel 51, and a material discharge trough is opened in the middle of the inner bottom wall of the receiving barrel 51. A frustum 52 is clamped in the material discharge trough, and a connecting frame is fixed to the frustum 52 through a support 53. A support frame 54 is provided on the lower surface of the semicircular shelf 232. A connecting rod 55 is fixed on the outer walls of the plurality of support frames 54. The connecting frame is detachably fixed to the lower surface of the lowest support frame 54. In particular, a plurality of holes larger than the elliptical hole 233 are opened on the surface of the support frame 54 to prevent the wolfberries in the middle position from getting stuck in the holes on the surface of the support frame 54 when falling.
[0066] Specifically, a second sliding frame adapted to the vertical rod 22 is fixed on the outer wall of the receiving barrel 51, and a second bolt is threadedly connected to the outer wall of the second sliding frame. Through the second bolt, the position of the receiving barrel 51 can be fixed after it is sleeved on the surface of the vertical rod 22;
[0067] A material guide platform 57 is installed below the heat preservation and drying cabinet 10. An electric push rod 56 is fixed to the lower surface of the material guide platform 57. One end of the electric push rod 56 that penetrates into the heat preservation and drying cabinet 10 is connected to the cone 52 through a bearing.
[0068] Specifically, after the drying is completed, the collection frame for receiving the dried wolfberries is placed in front of the material guide platform 57, and then the electric push rod 56 is started to drive the cone 52 to move downward, so that the discharge chute is gradually opened, so that the wolfberries collected in the receiving barrel 51 can fall down through the discharge chute to the surface of the material guide platform 57 and then slide into the collection frame for collection. After the cone 52 moves downward, the support 53 will also drive the support frame 54 to move downward, so that the semicircular shelf 232 tilts downward, and the wolfberries left on the surface of the semicircular shelf 232 will slide downward. When there are wolfberries remaining in the elliptical hole 233 on the surface of the semicircular shelf 232, the electric push rod 56 is used to control the cone 52 to move back and forth, so that the semicircular shelf 232 shakes, so that the wolfberries in the hole can also be cleaned out, and no subsequent secondary cleaning is required.
[0069] Specifically, when the energy-saving heat preservation drying equipment for wolfberry processing is working / in use:
[0070] 1. Placement of medicinal materials:
[0071] Spreading a certain amount of wolfberries on each layer of the semicircular shelf 232;
[0072] 2. Start the device:
[0073] The motor 45 is started to rotate the central axis 41, driving the fan blades 42 and the air outlet 43 to rotate. At the same time, the power of the heating wire 46 is turned on to start heating and air supply. The rotation of the central axis 41 also drives the arc guide seat 31 through the arc telescopic rod 34 to drive the laying frame 23 to rotate back and forth periodically, so that the medicinal materials remain in a moving state.
[0074] 3. Drying process monitoring:
[0075] Observe the temperature and humidity changes in the heat preservation drying cabinet 10 to ensure that the drying process proceeds smoothly, and adjust the power and air supply of the heating wire 46 as needed to control the drying speed and effect;
[0076] 4. Discharge after drying:
[0077] Turn off the power of the motor 45 and the heating wire 46, wait for the equipment to cool down, then place the collection frame for receiving dried wolfberries in front of the material guide table 57, then start the electric push rod 56 to drive the cone 52 to move downward, so that the discharge chute gradually opens, and the wolfberries fall into the collection frame from the receiving barrel 51. If there are still residual wolfberries on the surface of the semicircular shelf 232 or in the elliptical hole 233, the electric push rod 56 can be used to control the cone 52 to move back and forth, causing the semicircular shelf 232 to shake, and the residual wolfberries can be cleaned up.
[0078] 5. Equipment cleaning and maintenance:
[0079] Clean the residual medicinal materials and dust inside the heat preservation drying cabinet 10 and on the laying frame 23 and other components, and check whether the various components of the equipment are intact. If there is any damage or wear, replace or repair it in time.
[0080] The above description is only a preferred specific embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any technician familiar with the technical field, within the technical scope disclosed by the present invention, who makes equivalent replacements or changes based on the technical solution and inventive concept of the present invention, should be covered by the scope of protection of the present invention.
Claims
1. An energy-saving heat preservation and drying equipment for wolfberry processing, comprising a heat preservation and drying cabinet (10), characterized in that: A medicinal material laying unit (20) is installed in the heat-insulating drying cabinet (10), and the medicinal material laying unit (20) includes a round table (21) assembled and rotatably connected to the bottom wall of the heat-insulating drying cabinet (10), and a plurality of laying frames (23) are fixed to the round table (21) via vertical rods (22); An air supply unit (40) is mounted on the outer wall of the heat-insulating drying cabinet (10), the air supply unit (40) comprising a central shaft (41) rotatably connected to the heat-insulating drying cabinet (10), a fan blade (42) mounted on the central shaft (41), and an air outlet member (43) connected to the central shaft (41) mounted on the inner wall of the heat-insulating drying cabinet (10); The air outlet member (43) includes an air guide cover (431) and an air supply pipe (432) mounted on the air guide cover (431), wherein a plurality of air supply holes (433) are provided on the air supply pipe (432), and a plurality of spiral stirring plates (434) are mounted on the bottom of the outer wall of the air supply pipe (432). When the air guide cover (431) rotates along with the central axis (41), the air blown by the fan blades (42) is sent into the upper and lower spaces of the cabinet, and is dispersed by the spiral stirring plates (434) so that the air can evenly wrap the medicinal materials. The laying frame (23) includes a frame (231), the bottom of the inner wall of the frame (231) is rotatably connected to two semicircular shelves (232), and the semicircular shelves (232) are provided with a plurality of elliptical holes (233) adapted to the size of the fully dried wolfberries; The inner top wall of the heat preservation drying cabinet (10) is rotatably connected to a vertical shaft, a positioning plate is fixed to the bottom end of the vertical shaft, a mounting plate (24) is detachably fixed to the lower surface of the positioning plate, and the top end of the vertical rod (22) is detachably fixed to the lower surface of the mounting plate (24). A discharge unit (50) is provided on the lower surface of the semicircular shelf (232), and the discharge unit (50) includes a receiving cylinder (51) assembled on the vertical rod (22); A variable-diameter air outlet channel (435) communicating with the air supply pipe (432) is provided in the spiral stirring plate (434), and air deflecting plates (436) are fixed to one side of the lower surface of the mounting plate (24) and one side of the receiving barrel (51).
2. The energy-saving heat-insulating drying equipment for wolfberry processing according to claim 1, characterized in that: One side of the two surrounding frames (231) is jointly equipped with a swing unit (30); The swing unit (30) includes an arc guide seat (31), one side of the arc guide seat (31) is slidably connected to an arc slider (33) in an arc slot (32), one side of the arc slider (33) is rotatably connected to an arc telescopic rod (34) through a connecting column, and one end of the central axis (41) that penetrates into the heat-insulating drying cabinet (10) is connected to the arc telescopic rod (34).
3. The energy-saving heat-insulating drying equipment for wolfberry processing according to claim 1, characterized in that: A material discharge trough is provided in the middle of the inner bottom wall of the material receiving barrel (51), a cone (52) is clamped in the material discharge trough, a connecting frame is fixed on the cone (52) through a support (53), a support frame (54) is provided on the lower surface of the semicircular shelf (232), and a connecting rod (55) is fixed on the outer wall of multiple support frames (54), and the connecting frame is detachably fixed to the lower surface of the lowest support frame (54).
4. The energy-saving heat-insulating drying equipment for wolfberry processing according to claim 3, characterized in that: A material guide platform (57) is installed below the heat-insulating drying cabinet (10), and an electric push rod (56) is fixed to the lower surface of the material guide platform (57). One end of the electric push rod (56) that penetrates into the heat-insulating drying cabinet (10) is connected to the cone (52) through a bearing.
5. The energy-saving heat-insulating drying equipment for wolfberry processing according to claim 1, characterized in that: The air guide cover (431) is detachably fixed to the central shaft (41), and one end of the air guide cover (431) is rotatably connected to the inner wall of the heat-insulating drying cabinet (10).
6. The energy-saving heat-insulating drying equipment for wolfberry processing according to claim 5, characterized in that: The air supply unit (40) further comprises an air inlet frame (44) fixed on the outer wall of the heat-insulating drying cabinet (10), a motor (45) being mounted in the middle of the outer wall of the air inlet frame (44), an output end of the motor (45) being spline-connected to one end of the central shaft (41), and a filter being clamped at the top and bottom of the outer wall of the air inlet frame (44) by opening an air inlet slot.
7. The energy-saving heat-insulating drying equipment for wolfberry processing according to claim 6, characterized in that: A mounting frame is detachably fixed on the inner wall of the air inlet frame (44), and a plurality of heating wires (46) are provided on the mounting frame.
Citation Information
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