A sweating device for processing Poria cocos

By designing a sweating equipment for Poria cocos processing with a rotating cover and a bottom trough seat, the problem of low manual cleaning efficiency during the sweating process of Poria cocos is solved, and automatic cleaning of the Poria cocos surface and efficient sweating are achieved.

CN116549293BActive Publication Date: 2025-09-19JINGZHOU GUOLING TECH CO LTD
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Patent Information

Application Number
CN202310406000.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-04-14
Publication Date
2025-09-19
Estimated Expiration
2043-04-14

AI Technical Summary

Technical Problem

The existing Poria cocos sweating process requires a lot of manual work to clean the white hairs and gray mold on the surface of the Poria cocos, resulting in low efficiency.

Method used

A sweating device for processing Poria cocos has been designed. The device uses a rotating cover and bottom trough to automatically clean the surface of the Poria cocos. The upper and lower pads are set in the device, and the surface of the Poria cocos can be cleaned by rotating and changing the position.

Benefits of technology

This equipment can automatically clean the white hairs and gray mold on the surface of Poria cocos during the sweating process, reducing manual operations, improving efficiency, and ensuring efficient sweating of Poria cocos.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a sweating device for processing Poria cocos, comprising a box body, wherein a plurality of bottom slot seats for placing Poria cocos are arranged inside the box body, a rotating cover plate is arranged above each bottom slot seat, an upper rotating shaft and an upper laying block are arranged on the rotating cover plate, a rigid support plate tangent to the upper rotating shaft is fixedly arranged on the upper rotating shaft, the upper laying block is fixedly connected to the rigid support plate, a lower rotating shaft, a lower pad and a support assembly are arranged inside the bottom slot seat, a flexible support plate tangent to the lower rotating shaft is fixedly arranged on the lower rotating shaft, and the lower pad is fixedly connected to the flexible support plate. The sweating device for processing Poria cocos in the present invention changes the position state of the upper laying block and the lower pad so that the device not only has the function of sweating Poria cocos, but also can clean the surface of Poria cocos during the sweating process, remove the white fungi produced on the surface of Poria cocos during the sweating process and the gray mold in the later stage, and maintain the efficient sweating of Poria cocos.
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Description

Technical Field

[0001] The present invention relates to the technical field of tuckahoe processing equipment, in particular to a sweating equipment for tuckahoe processing. Background Art

[0002] After the Poria cocos is picked and cleaned, it needs to be sweated. Generally, the sweating treatment requires placing the Poria cocos in an airtight container, arranging them in layers, laying a layer of straw between each layer of Poria cocos, and covering the top with a thick sack to keep it warm and sweat.

[0003] During the sweating process, white hairs (hyphae) will grow on the surface of the Poria cocos. Therefore, the Poria cocos needs to be removed, the white hairs brushed off, and then "sweated" a second time. This process is repeated several times. When the surface of the Poria cocos shrinks and the skin turns brown, the gray mold is brushed off. The Poria cocos is ready for further processing. During the sweating process, the surface of the Poria cocos needs to be cleaned of mycelium and gray mold, which is a labor-intensive and time-consuming process. Summary of the Invention

[0004] The purpose of the present invention is to speed up the cleaning of mycelium on the surface of Poria cocos and the treatment of gray mold in the sweating process of Poria cocos in the prior art, and to propose a sweating equipment for Poria cocos processing, which can clean the surface of Poria cocos during the sweating process, saving manpower and time for Poria cocos sweating.

[0005] In order to achieve the above object, the present invention adopts the following technical solutions:

[0006] A sweating device for processing Poria cocos comprises a box body, wherein a plurality of bottom slot seats for placing Poria cocos are arranged inside the box body, a cover for covering Poria cocos is arranged above each bottom slot seat, and a pad for placing Poria cocos is arranged on the bottom slot seat, and the cover and pad are both made of straw.

[0007] Furthermore, a rotating cover is provided above the bottom trough seat, rotatably connected to the housing. An upper shaft and an upper bed block are provided on the rotating cover, rotatably connected to the rotating cover. A fixed sleeve is provided on the upper shaft, and a rigid support plate tangential to the upper shaft is fixedly mounted on the fixed sleeve. The upper bed block is fixedly connected to the rigid support plate and is made of straw. When all upper beds on the rotating cover are located on the same plane, an upper covering layer of the Poria cocos is formed.

[0008] Furthermore, one end of the upper block extends from one end of the rigid support plate, and the upper rotating shaft can drive the upper block to rotate. When all the upper blocks on the rotating cover plate point to the bottom slot seat, the rotating cover plate rotates, and the end of the upper block extending from the rigid support plate can be used to clean the surface of the Poria cocos on the bottom slot seat.

[0009] Preferably, the rotating cover is provided with a first rotating assembly that drives the upper rotating shaft to rotate. The upper rotating assembly includes an upper rotating gear, an upper rotating rack, a connecting rod, and a rotating drive cylinder. The upper rotating gear meshes with the upper rotating rack, the upper rotating gear is fixedly sleeved on the upper rotating shaft, the upper rotating rack is fixedly connected to the working end of the rotating drive cylinder via a connecting rod, and the rotating drive cylinder is fixedly connected to the rotating cover. The driving cylinder can drive the upper rotating rack to move via the connecting rod, and the upper rotating rack can drive the upper rotating shaft to rotate, thereby changing the position state of the upper block.

[0010] Furthermore, the bottom trough seat is internally provided with a lower rotating shaft, a lower pad, and a support assembly. The lower rotating shaft is rotatably connected to the bottom trough seat, and a flexible support plate tangential to the lower rotating shaft is fixedly mounted on the lower rotating shaft. The flexible support plate has a curling elasticity. The lower pad is fixedly connected to the flexible support plate and is made of woven straw. When all the lower pads on the bottom trough seat are located on the same plane, a bottom layer of Poria cocos is formed.

[0011] Furthermore, a wire drawing roller is provided inside the lower rotating shaft, and the wire drawing roller is wound around one end of the wire drawing, and the other end of the wire drawing extends from the wire drawing channel of the lower rotating shaft to be fixedly connected to the end of the flexible support plate. Since the flexible support plate is curlable, when the wire drawing roller pulls the wire drawing, the flexible support plate can be curled. When the wire drawing is wound to the limit position, the flexible support plate is wrapped around the cylindrical surface of the lower rotating shaft, and the lower pad is wrapped around the lower rotating shaft, and the lower rotating shaft forms a rotating power-assisting roller. The Poria cocos on the lower pad is located between the rotating power-assisting rollers. When the lower rotating shaft rotates, the Poria cocos between the rotating power-assisting rollers will be pushed and rotated, so that the surface of the Poria cocos can be cleaned.

[0012] Furthermore, the support assembly is used to support the end of the flexible support plate. Preferably, the support assembly includes a support cylinder, an intermediate seat, a support rod, a coupling block and a coupling cylinder, wherein one end of the support cylinder is rotatably connected to the bottom groove seat, and its rotation connection point corresponds to the end position of the fully extended flexible support plate, and the other end of the support cylinder is connected to the intermediate seat. A coupling cylinder is provided on the intermediate seat, and the working end of the coupling cylinder is fixedly connected to the support rod. A coupling block is provided at the end of the support rod, and a coupling hole is provided at the end of the flexible support plate, and the coupling block matches the coupling hole.

[0013] In the present invention, the axis of the support cylinder and the axis of the coupling cylinder are perpendicular to each other, and the support rod is arranged parallel to the axis of the support cylinder. The support cylinder and the coupling cylinder cooperate to adjust the position of the coupling block and control the coupling state between the coupling block and the coupling hole on the flexible support plate.

[0014] When the lower pad on the bottom groove seat forms a lower pad layer, the coupling block on the support assembly is inserted into the coupling hole of the flexible support plate. The support cylinder and support rod in the support assembly can form support for the end of the flexible support plate, which is used to maintain the expanded state of the flexible support plate and ensure the supporting ability of the upper and lower pads of the flexible support plate to the Poria cocos.

[0015] When the lower pad on the bottom slot seat is wrapped around the cylindrical surface of the lower rotating shaft, the coupling block on the support assembly leaves the coupling hole of the flexible support plate, so that the pull wire can pull the flexible support plate to complete the curling.

[0016] In the present invention, when the Poria cocos is in a sweating state, the upper paving block is located below the upper rotating shaft, and the lower pad is located above the lower rotating shaft. The upper paving block and the lower pad are arranged parallel to each other, and the lower surface of the upper paving block is opposite to the upper surface of the lower pad. At this time, all the upper paving blocks on the rotating cover form an upper covering layer for the Poria cocos, and all the lower pads on the bottom groove seat form a lower covering layer for the Poria cocos. The Poria cocos is located on the lower covering layer and is covered by the upper covering layer.

[0017] When cleaning the surface of the Poria cocos, the upper block is located on one side of the upper shaft, extending from the rigid support plate toward the bottom groove seat, and can be used to clean the surface of the Poria cocos on the bottom groove seat. At this time, the lower pad is wrapped around the cylindrical surface of the lower shaft, which forms a rotating assist roller. The Poria cocos on the lower pad is located between the rotating assist rollers. When the lower shaft rotates, the Poria cocos between the rotating assist rollers will be pushed and rotated, facilitating a more thorough cleaning of the Poria cocos surface.

[0018] Preferably, the housing is provided with a second rotating assembly for driving the rotating cover plate and the lower rotating shaft, and the second rotating assembly comprises a main driving shaft, and an upper driving gear and a lower driving gear are sleeved on the main driving shaft.

[0019] Furthermore, an intermediate gear is provided on the housing, meshing with the upper drive gear and the ring gear, respectively. The ring gear is fixedly sleeved on the exterior of the rotating cover. Rotation of the upper drive gear drives the intermediate gear, which in turn drives the ring gear and the rotating cover, thereby allowing the upper paving block to clean the surface of the poria cocos on the bottom groove seat from the extended end of the rigid support plate.

[0020] Furthermore, the housing is provided with a first synchronous belt, a synchronous gear, and a driving bevel gear. The first synchronous belt connects the lower drive gear and the synchronous gear, and the synchronous gear and the driving bevel gear are coaxially connected. One end of the lower rotating shaft is fixedly sleeved with the lower rotating gear, and each lower rotating gear is connected via a second synchronous belt. The end of one of the lower rotating shafts is fixedly connected to a passive bevel gear, and the passive bevel gear meshes with the driving bevel gear. The lower drive gear can drive the synchronous gear and the driving bevel gear to rotate via the first synchronous belt, and the driving bevel gear drives the passive bevel gear and all the lower rotating shafts to rotate. All the lower rotating shafts rotate in the same direction, which facilitates the rotation of the Poria cocos between the rotating power-assisting rollers.

[0021] The beneficial effect of the present invention is that the sweating equipment for processing Poria cocos in the present invention changes the position status of the upper laying block and the lower pad, so that the equipment not only has the function of sweating Poria cocos, but also can clean the surface of Poria cocos during the sweating process, remove the white fungi produced on the surface of Poria cocos during the sweating process and the gray mold in the later stage, and maintain the efficient sweating of Poria cocos. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 This is a schematic diagram of the structure of the sweating equipment used in the processing of Poria cocos;

[0023] Figure 2 This is a structural diagram of the rotating cover and bottom tank seat of the sweating equipment for Poria cocos processing;

[0024] Figure 3 This is a schematic diagram of the structure of the rotating cover plate of the sweating equipment for Poria cocos processing from a top view;

[0025] Figure 4 This is a structural diagram of the position change of the paving blocks on the sweating equipment for processing Poria cocos;

[0026] Figure 5 This is a structural diagram of the bottom tank seat of the sweating equipment for Poria cocos processing when viewed from above;

[0027] Figure 6 This is a structural diagram showing the state changes of the pad under the sweating equipment for Poria cocos processing;

[0028] Figure 7 This is a schematic diagram of the structure of the support components of the sweating equipment used in Poria cocos processing.

[0029] In the figure: 1, box body; 2, rotating cover; 3, bottom groove seat; 4, main drive shaft; 5, dehumidification port; 6, upper cover adjustment cylinder; 21, upper rotating shaft; 22, upper paving block; 23, upper rotating gear; 24, upper rotating rack; 25, connecting rod; 26, rotating drive cylinder; 27, gear ring; 28, intermediate gear; 29, synchronous sleeve; 31, lower rotating shaft; 32, lower pad; 33, support assembly; 34, lower rotating gear; 35, second synchronous belt; 36, Moving bevel gear; 41. Upper driving gear; 42. Lower driving gear; 211. Fixed sleeve; 212. Rigid support plate; 311. Wire drawing roller; 312. Wire drawing channel; 313. Wire drawing; 314. Flexible support plate; 315. Combining hole; 331. Support cylinder; 332. Middle seat; 333. Support rod; 334. Combining block; 335. Combining cylinder; 421. First synchronous belt; 422. Middle gear; 423. Active bevel gear. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0031] Reference Figure 1 A sweating device for processing Poria cocos includes a box body 1, and a plurality of bottom slot seats 3 for placing Poria cocos are arranged inside the box body 1. A cover for covering Poria cocos is arranged above each of the bottom slot seats 3, and a pad for placing Poria cocos is arranged on the bottom slot seat 3, and the cover and pad are both made of straw.

[0032] The outer wall of the box body 1 is provided with a temperature regulating member for regulating the temperature at which the Poria cocos sweats. The box body 1 is also provided with a dehumidifying port 5 for taking away the moisture generated by the box body 1.

[0033] Furthermore, a rotating cover plate 2 is provided above the bottom groove seat 3, and the rotating cover plate 2 is rotatably connected to the box body 1. Specifically, an upper cover adjustment cylinder 6 is provided inside the box body 1, and the working end of the upper cover adjustment cylinder 6 is rotatably connected to the rotating cover plate 2. The upper cover adjustment cylinder 6 is used to adjust the distance between the rotating cover plate 2 and the bottom groove seat 3.

[0034] refer to Figure 2 、 3 4. The rotating cover 2 is provided with an upper shaft 21 and an upper covering block 22. The upper shaft 21 is rotatably connected to the rotating cover 2. A fixed sleeve 211 is provided on the upper shaft 21. A rigid support plate 212 tangential to the upper shaft 21 is fixedly mounted on the fixed sleeve 211. The upper covering block 22 is fixedly connected to the rigid support plate 212. The upper covering block 22 is woven from straw. When all the upper covering blocks 22 on the rotating cover 2 are located in the same plane, an upper covering layer of the Poria cocos is formed.

[0035] Furthermore, one end of the upper block 22 extends from one end of the rigid support plate 212, and the upper rotating shaft 21 can drive the upper block 22 to rotate. When all the upper blocks 22 on the rotating cover 2 point to the bottom groove seat 3, the rotating cover 2 rotates, and the protruding end of the upper block 22 from the rigid support plate 212 can be used to clean the surface of the Poria cocos on the bottom groove seat 3.

[0036] In this embodiment, the rotating cover 2 is provided with a first rotating assembly that drives the upper rotating shaft 21 to rotate. Figure 2The upper rotating assembly includes an upper rotating gear 23, an upper rotating rack 24, a connecting rod 25, and a rotating drive cylinder 26. The upper rotating gear 23 meshes with the upper rotating rack 24. The upper rotating gear 23 is fixedly sleeved on the upper rotating shaft 21. The upper rotating rack 24 is fixedly connected to the working end of the rotating drive cylinder 26 via the connecting rod 25. The rotating drive cylinder 26 is fixedly connected to the rotating cover plate 2. The drive cylinder 26 can drive the upper rotating rack 24 to move via the connecting rod 25. The upper rotating rack 24 can drive the upper rotating shaft 21 to rotate, thereby changing the position of the upper bed block 22.

[0037] refer to Figure 2 、 5 6. The bottom trough seat 3 is internally provided with a lower rotating shaft 31, a lower pad 32, and a support assembly 33. The lower rotating shaft 31 is rotatably connected to the bottom trough seat 3. A flexible support plate 314 is fixedly mounted on the lower rotating shaft 31 and is tangential to the lower rotating shaft 31. The flexible support plate 314 has a flexible and elastic nature. The lower pad 32 is fixedly attached to the flexible support plate 314 and is made of woven straw. When all the lower pads 32 on the bottom trough seat 3 are located on the same plane, they form a base layer for the Poria cocos.

[0038] Furthermore, a wire drawing roller 311 and a micro motor for driving the wire drawing roller 311 to unwind are provided inside the lower rotating shaft 31. The wire drawing roller 311 is wound around one end of a wire drawing 313, and the other end of the wire drawing 313 extends from the wire drawing channel 312 of the lower rotating shaft 31 to be fixedly connected to the end of a flexible support plate 314. Since the flexible support plate 314 is curlable, when the wire drawing roller 311 pulls the wire drawing 313, the flexible support plate 314 can be curled. When the wire drawing 313 is wound to the extreme position, the flexible support plate 314 is wrapped around the cylindrical surface of the lower rotating shaft 31, and the lower pad 32 is wrapped around the lower rotating shaft 31. The lower rotating shaft 31 forms a rotating power-assisting roller. The poria cocos on the lower pad 32 is located between the rotating power-assisting rollers. When the lower rotating shaft 31 rotates, the poria cocos between the rotating power-assisting rollers will be pushed and rotated, so that the surface of the poria cocos can be cleaned.

[0039] It is worth noting that the cleaned hyphae and gray mold can enter the bottom tank 3 and be collected. A corresponding collection pipe can be set at the bottom of the bottom tank 3. The edge of the bottom tank 3 needs to have a certain height to ensure that the Poria cocos does not leave the bottom tank 3 when being surface treated.

[0040] Furthermore, the support assembly 33 is used to support the end of the flexible support plate 314. Figure 7The support assembly 33 includes a support cylinder 331, an intermediate seat 332, a support rod 333, a coupling block 334, and a coupling cylinder 335. One end of the support cylinder 331 is rotatably connected to the bottom groove seat 3, and its rotational connection point corresponds to the end position of the fully extended flexible support plate 314. The other end of the support cylinder 331 is connected to the intermediate seat 332. The bottom groove seat 3 is provided with a rotating drive member that drives the support cylinder 331 to rotate. The intermediate seat 332 is provided with a coupling cylinder 335, and the working end of the coupling cylinder 335 is fixedly connected to the support rod 333. The end of the support rod 333 is provided with a coupling block 334, and the end of the flexible support plate 314 is provided with a coupling hole 315. The coupling block 334 matches the coupling hole 315.

[0041] In the present invention, the axis of the support cylinder 331 and the axis of the coupling cylinder 335 are perpendicular to each other, and the support rod 333 is arranged parallel to the axis of the support cylinder 331. The support cylinder 331 and the coupling cylinder 335 cooperate to adjust the position of the coupling block 334 and control the coupling state between the coupling block 334 and the coupling hole 315 on the flexible support plate 314.

[0042] refer to Figure 6 When the lower pad 32 on the bottom groove seat 3 forms a lower cushion layer, the coupling block 334 on the support assembly 33 is inserted into the coupling hole 315 of the flexible support plate 314, and the support cylinder 331 and support rod 333 in the support assembly 33 can form a support for the end of the flexible support plate 314, which is used to maintain the expanded state of the flexible support plate 314 and ensure the supporting ability of the upper and lower pads 32 of the flexible support plate 314 to the Poria cocos.

[0043] When the lower pad 32 on the bottom groove seat 3 is wrapped around the cylindrical surface of the lower rotating shaft 31, the coupling block 334 on the support assembly 33 leaves the coupling hole 315 of the flexible support plate 314, so that the pull wire 313 can pull the flexible support plate 314 to complete the curling.

[0044] In this embodiment, the box body 1 is provided with a second rotating component for driving the rotating cover plate 2 and the lower rotating shaft 31, and the second rotating component includes a main drive shaft 4, an upper drive gear 41 is movably connected to the main drive shaft 4, and a lower drive gear 42 is fixedly connected to the main drive shaft 4, and a drive motor for driving the main drive shaft 4 is provided on the box body 1.

[0045] Furthermore, an intermediate gear 28 is provided on the housing 1, and the intermediate gear 28 is respectively engaged with the upper drive gear 41 and the ring gear 27, and the ring gear 27 is fixedly sleeved on the outside of the rotating cover 2. The rotation of the upper drive gear 41 can drive the intermediate gear 28 to rotate, and the intermediate gear 28 can drive the ring gear 27 and the rotating cover 2 to rotate, forming the upper block 22 to clean the surface of the Poria cocos on the bottom groove seat 3 from the protruding end of the rigid support plate 212. The rotating cover 2, the intermediate gear 28 and the upper drive gear 41 are connected by a synchronous sleeve 29, which is used to enable the intermediate gear 28 and the upper drive gear 41 to move synchronously with the ring gear 27 on the outside of the rotating cover 2 when the rotating cover 2 moves in the vertical direction.

[0046] Furthermore, a first synchronous belt 421, a synchronous gear 422 and a driving bevel gear 423 are provided on the housing 1. The first synchronous belt 421 connects the lower driving gear 42 and the synchronous gear 422. The synchronous gear 422 and the driving bevel gear 423 are coaxially connected. One end of the lower rotating shaft 31 is fixedly sleeved with the lower rotating gear 34. Each lower rotating gear 34 is connected through a second synchronous belt 35. The end of one of the lower rotating shafts 31 is fixedly connected to the passive bevel gear 36. The passive bevel gear 36 is meshed with the active bevel gear 423. The lower driving gear 42 can drive the synchronous gear 422 and the active bevel gear 423 to rotate through the first synchronous belt 421. The active bevel gear 423 drives the passive bevel gear 36 and all the lower rotating shafts 31 to rotate. The rotation direction of all the lower rotating shafts 31 is the same, which is convenient for promoting the rotation of the Poria cocos between the rotating power-assisting rollers.

[0047] In this embodiment, an openable door panel is provided on one side of the box body 1. The door panel is perpendicular to the axial direction of the lower rotating shaft 31 and is used for putting in and taking out the Poria cocos.

[0048] The working process of the sweating device for processing Poria cocos in this embodiment is as follows:

[0049] (1) When Poria cocos is working to induce sweating

[0050] Step A1: Rotate the upper shaft 21 so that the upper paving block 22 is located below the upper shaft 21, and all the upper paving blocks 22 on the rotating cover plate 2 are located in the same plane, forming an upper covering layer for the Poria cocos. Adjust the position of the lower shaft 31 so that the lower pad 32 is located above the lower shaft 31, and all the lower pads 32 on the bottom groove seat 3 are located in the same plane, forming a lower covering layer for the Poria cocos. At this time, the upper covering layer and the lower covering layer are arranged opposite and parallel to each other, and the coupling block 334 on the support assembly 33 is inserted into the coupling hole 315 of the flexible support plate 314. The support cylinder 331 and support rod 333 in the support assembly 33 can form a support for the end of the flexible support plate 314.

[0051] Step A2: adjusting the distance between the rotating cover plate 2 and the bottom groove seat 3 through the upper cover adjustment cylinder 6 to ensure that the Poria cocos can be placed on the lower cushion layer of the bottom groove seat 3.

[0052] Step A3, placing the Poria cocos on the lower cushion layer of the bottom tank seat 3, and adjusting the distance between the rotating cover plate 2 and the bottom tank seat 3 through the upper cover adjustment cylinder 6 so that the upper covering layer on the rotating cover plate 2 covers the top of the Poria cocos.

[0053] Step A4, through temperature adjustment and dehumidification, the sweating of Poria cocos is carried out.

[0054] (2) When Poria cocos is cleaning the surface

[0055] Step B1, adjusting the distance between the rotating cover plate 2 and the bottom groove seat 3 by the upper cover adjustment cylinder 6 so that the upper covering layer on the rotating cover plate 2 is away from the top of the Poria cocos;

[0056] Step B2: by rotating the upper shaft 21, the upper block 22 is located on one side of the upper shaft 21, and the upper block 22 extends from the end of the rigid support plate 212 toward the bottom groove seat 3;

[0057] At the same time, the coupling block 334 on the support assembly 33 leaves the coupling hole 315 of the flexible support plate 314, the wire roller 311 reels and pulls the wire 313, the wire 313 is reeled to the limit position, the flexible support plate 314 is wrapped around the cylindrical surface of the lower rotating shaft 31, the lower pad 32 is wrapped around the lower rotating shaft 31, the lower rotating shaft 31 forms a rotating power-assisting roller, and the Poria on the lower pad 32 is located between the rotating power-assisting rollers;

[0058] Step B3: The driving motor drives the main driving shaft 4 to rotate, and the upper driving gear 41 drives the ring gear 27 and the rotating cover 2 to rotate through the intermediate gear 28; at the same time, the lower driving gear 42 drives the synchronous gear 422 and the active bevel gear 423 to rotate through the first synchronous belt 421, and the active bevel gear 423 drives the passive bevel gear 36 and all the lower rotating shafts 31 to rotate, and the Poria cocos between the rotating power-assisting rollers is driven to rotate;

[0059] Step B4, adjusting the distance between the rotating cover plate 2 and the bottom groove seat 3 through the upper cover adjustment cylinder 6, so that the upper paving block 22 contacts the Poria cocos on the bottom groove seat 3 from the extended end of the rigid support plate 212, and cleans the surface of the Poria cocos on the bottom groove seat 3.

[0060] Step B5: After cleaning, the upper rotating shaft 21 is rotated so that all the upper covering blocks 22 on the rotating cover plate 2 form an upper covering layer of Poria cocos;

[0061] The angle of the support cylinder 331 and the position of the support rod 333 in the support assembly 33 are adjusted so that the upper coupling block 334 is inserted into the coupling hole 315 of the flexible support plate 314. The wire roller 311 is unwound, and the flexible support plate 314 is unfolded upward until the lower pad 32 on the bottom groove seat 3 forms a lower cushion. During this process, the rotary drive member of the support cylinder 331, the support cylinder 331, and the coupling cylinder 335 cooperate to keep the upper coupling block 334 in the coupling hole 315 of the flexible support plate 314.

[0062] At this time, Poria cocos is still located on the underlying layer, facilitating the next sweating.

[0063] 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. A sweating device for processing Poria cocos, comprising a box (1), wherein a plurality of bottom slots (3) for placing Poria cocos are arranged inside the box (1), and a cover for covering the Poria cocos is arranged above each bottom slot (3), characterized in that: A rotating cover plate (2) is provided above the bottom groove seat (3), the rotating cover plate (2) is rotatably connected to the box body (1), an upper rotating shaft (21) and an upper paving block (22) are provided on the rotating cover plate (2), the upper rotating shaft (21) is rotatably connected to the rotating cover plate (2), a rigid support plate (212) tangential to the upper rotating shaft (21) is fixedly provided on the upper rotating shaft (21), the upper paving block (22) is fixedly connected to the rigid support plate (212), and one end of the upper paving block (22) extends from one end of the rigid support plate (212); A lower rotating shaft (31), a lower pad (32) and a support assembly (33) are provided inside the bottom groove seat (3); the lower rotating shaft (31) is rotatably connected to the bottom groove seat (3); a flexible support plate (314) tangential to the lower rotating shaft (31) is fixedly provided on the lower rotating shaft (31); and the lower pad (32) is fixedly connected to the flexible support plate (314); A wire drawing roller (311) is provided inside the lower rotating shaft (31), and the wire drawing roller (311) is wound around one end of a wire drawing wire (313), and the other end of the wire drawing wire (313) extends from the wire drawing channel (312) of the lower rotating shaft (31) to be fixedly connected to the end of the flexible support plate (314); the support assembly (33) is used to support the end of the flexible support plate (314); When the Poria cocos is in a sweating state, the upper paving block (22) is located below the upper rotating shaft (21), the lower pad (32) is located above the lower rotating shaft (31), the upper paving block (22) and the lower pad (32) are arranged in parallel, and the lower surface of the upper paving block (22) is opposite to the upper surface of the lower pad (32); When the surface of the Poria cocos is cleaned, the upper paving block (22) is located on one side of the upper rotating shaft (21), and the upper paving block (22) points from the protruding end of the rigid support plate (212) to the bottom groove seat (3), and the lower pad (32) is wrapped around the cylindrical surface of the lower rotating shaft (31).

2. The sweating device for processing Poria cocos according to claim 1, characterized in that The support assembly (33) comprises a support cylinder (331), an intermediate seat (332), a support rod (333), a coupling block (334) and a coupling cylinder (335); one end of the support cylinder (331) is rotatably connected to the bottom groove seat (3); the other end of the support cylinder (331) is connected to the intermediate seat (332); a coupling cylinder (335) is provided on the intermediate seat (332); a working end of the coupling cylinder (335) is fixedly connected to the support rod (333); and a coupling block (334) is provided at the end of the support rod (333) to match the coupling hole (315) at the end of the flexible support plate (314); The axis of the support cylinder (331) and the axis of the coupling cylinder (335) are perpendicular to each other, and the support rod (333) is arranged in parallel with the axis of the support cylinder (331).

3. The sweating device for processing Poria cocos according to claim 1 or 2, characterized in that: A first rotating assembly for driving the upper rotating shaft (21) to rotate is provided on the rotating cover (2), the first rotating assembly comprising an upper rotating gear (23), an upper rotating rack (24), a connecting rod (25) and a rotating drive cylinder (26), the upper rotating gear (23) being meshed with the upper rotating rack (24), the upper rotating gear (23) being fixedly sleeved on the upper rotating shaft (21), the upper rotating rack (24) being fixedly connected to the working end of the rotating drive cylinder (26) via the connecting rod (25), and the rotating drive cylinder (26) being fixedly connected to the rotating cover (2).

4. The sweating device for processing Poria cocos according to claim 3, characterized in that: The housing (1) is provided with a second rotating assembly for driving the rotating cover plate (2) and the lower rotating shaft (31) to rotate, the second rotating assembly comprising a main driving shaft (4), an upper driving gear (41) and a lower driving gear (42) being sleeved on the main driving shaft (4); An intermediate gear (28) is provided on the housing (1), and the intermediate gear (28) is meshed with the upper drive gear (41) and the ring gear (27) respectively, and the ring gear (27) is fixedly sleeved on the outside of the rotating cover plate (2); The housing (1) is provided with a first synchronous belt (421), a synchronous gear (422) and a driving bevel gear (423); the first synchronous belt (421) connects the lower driving gear (42) and the synchronous gear (422); the synchronous gear (422) and the driving bevel gear (423) are coaxially connected; one end of the lower rotating shaft (31) is fixedly sleeved with the lower rotating gear (34); each lower rotating gear (34) is connected via a second synchronous belt (35); an end of one of the lower rotating shafts (31) is fixedly connected to the driven bevel gear (36); the driven bevel gear (36) is meshed with the driving bevel gear (423).

Citation Information

Patent Citations

  • Sweating equipment for poria cocos processing and production

    CN215426165U

  • Poria cocos sweating machine with waste heat recovery function

    CN217383569U