Dendrobium officinale peeling device and method with intelligent control function

The intelligently controlled Dendrobium officinale peeling device solves the problem of incomplete removal of surface hairs by using a spiral brush and a feeding and dispensing device, thus improving peeling efficiency and effectiveness.

CN120959424AActive Publication Date: 2025-11-18ZHANGZHOU INST OF TECH
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Patent Information

Application Number
CN202511483470.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-10-17
Publication Date
2025-11-18
Estimated Expiration
2045-10-17

AI Technical Summary

Technical Problem

Existing Dendrobium officinale peeling devices have difficulty effectively removing the fuzz on the surface of Dendrobium officinale during the processing, resulting in poor peeling results.

Method used

An intelligent control device for peeling Dendrobium officinale was designed, comprising a cabinet, a cylinder, a discharge pipe, a top cover, an L-shaped pipe, a U-shaped frame, a motor, a disc, an arc plate, a hollow cylinder, and a filter screen. The device removes the lint by rotating the brush on the spiral plate under the action of friction, and separates the clumps and controls the feeding speed through a material distribution and feeding device.

Benefits of technology

It achieves efficient removal of the fuzz on the surface of Dendrobium officinale, preventing clumping and accumulation, and improving peeling efficiency and effectiveness.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a dendrobium officinale peeling device and method with intelligent control, and relates to the technical field of dendrobium officinale peeling. The dendrobium officinale peeling device comprises a cabinet, a cylinder and a discharging pipe are fixed to the top face of the cabinet in a penetrating mode, the discharging pipe is fixed to the bottom of the left side of the cylinder in a penetrating mode, and a top cover is fixedly installed on the top face of the cylinder. A feeding port is formed in the right side of the top surface of the top cover, an L-shaped pipe penetrates through and is fixed to the middle of the top surface of the top cover, a U-shaped frame is fixed to the bottom of the inner wall of the cabinet, a motor is fixedly installed in the middle of the top surface of the U-shaped frame, and a rotating shaft of the motor penetrates through and is rotatably installed in the middle of the bottom surface of a cylinder; fluff on the surface of dendrobium officinale is removed through a brush on a spiral plate, and therefore the problem that the dendrobium officinale peeling effect is poor due to the fact that the fluff on the surface of dendrobium officinale is inconvenient to remove is solved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of Dendrobium candidum peeling, in particular to a Dendrobium candidum peeling device with intelligent control and method. BACKGROUND

[0002] Dendrobium candidum is a traditional Chinese medicine and health food material, and the value of Dendrobium candidum is extremely high, but its processing link, especially peeling (removing the surface fluff of Dendrobium candidum), has been a bottleneck for industrialization for a long time, and the main function of the Dendrobium candidum peeling device with intelligent control is to remove the surface fluff of Dendrobium candidum fresh strips and improve the peeling efficiency of Dendrobium candidum.

[0003] The patent No. CN220557338U discloses a Dendrobium candidum production peeling device, which comprises a cylinder with an open upper end, a peeling cylinder arranged in the cylinder, a plurality of through holes formed in the side wall of the peeling cylinder, a driving device connected with the peeling cylinder, and a negative pressure device attached to the outer wall of the peeling cylinder; the negative pressure device comprises a negative pressure cylinder, a negative pressure pipe connected with the negative pressure cylinder, and a negative pressure machine connected with the negative pressure pipe; the upper and lower ends of the negative pressure cylinder are in abutment with the outer side wall of the peeling cylinder, and the peeling device for Dendrobium candidum production can immediately suck off the epidermis after it falls off, avoiding the epidermis staying on the stem for a long time.

[0004] However, the current Dendrobium candidum production peeling device has the following problems: since the peeling device is used to process Dendrobium candidum, the roughness of the surface of Dendrobium candidum is different, and it is not convenient to remove the fluff on the surface of Dendrobium candidum, which leads to poor peeling effect of Dendrobium candidum, therefore, we propose a Dendrobium candidum peeling device with intelligent control and method. SUMMARY

[0005] In view of the deficiencies of the prior art, the present application provides a Dendrobium candidum peeling device with intelligent control and method, which solves the problems raised in the background art.

[0006] In order to achieve the above object, the present application is realized by the following technical scheme: A dendrobium officinale peeling device with intelligent control, comprising: a cabinet, a cylinder is penetrated and fixed on the top surface of the cabinet, a discharge pipe is penetrated and fixed on the bottom of the left side of the cylinder, a top cover is fixedly installed on the top surface of the cylinder, a feeding port is formed on the right side of the top surface of the top cover, an L-shaped pipe is penetrated and fixed on the middle of the top surface of the top cover, a U-shaped frame is fixed on the inner wall of the bottom of the cabinet, an electric motor is fixedly installed on the middle of the top surface of the U-shaped frame, the rotating shaft of the electric motor is penetrated and rotatably installed in the middle of the bottom surface of the cylinder, a disc is fixed on the top surface of the rotating shaft of the electric motor, a plurality of arc plates are fixed on the top surface of the disc, a hollow cylinder is fixed on the middle of the top surface of the disc, the top surface of the hollow cylinder is rotatably connected with the bottom surface of the top cover, a plurality of notches are formed on the outer wall of the hollow cylinder, and filter screens are arranged on the inner walls of the notches of the hollow cylinder, a spiral plate is fixed on the outer wall of the hollow cylinder, and brushes are arranged on the outer wall of the spiral plate, the brushes of the spiral plate are used for removing the fluff on the white surface of the dendrobium officinale, the dendrobium officinale is put into the feeding port of the top cover, the dendrobium officinale falls downwards on the spiral plate, the rotating shaft of the electric motor drives the disc to rotate in the forward direction, the disc drives the arc plates to rotate in the forward direction, the disc drives the hollow cylinder to rotate in the forward direction, and the hollow cylinder drives the spiral plate to rotate in the forward direction, under the action of friction, the brushes on the spiral plate remove the fluff on the surface of the dendrobium officinale in the rotating process.

[0007] According to the above technical scheme, the front plate is fixedly installed on the front surface of the cabinet, the intelligent panel is fixedly installed on the upper side of the front surface of the cabinet, and the intelligent panel is used for controlling the rotating speed of the electric motor.

[0008] According to the above technical scheme, the discharge pipe is penetrated and fixedly connected with the right side of the inner wall of the cabinet, the top surface of the hollow cylinder is rotatably connected with the bottom of the outer wall of the L-shaped pipe, and the left end of the L-shaped pipe is used for connecting the air pump.

[0009] According to the above technical scheme, the cylinder is located above the inside of the cabinet, the arc plates are located below the discharge pipe, and the outer wall of the spiral plate is rotatably connected with the inner wall of the cylinder.

[0010] According to the above technical scheme, the outer wall of the hollow cylinder is provided with a material separating device, the material separating device is used for separating the bunched dendrobium officinale, and the outer wall of the material separating device is provided with a discharging device, and the discharging device is used for uniformly lowering the dendrobium officinale.

[0011] According to the technical scheme, the material distributing device comprises a ring plate one, a straight plate, a ring plate two, and a round roller.

[0012] According to the technical scheme, the bottom surface of the straight plate is fixed with a T-shaped column, the bottom surface of the T-shaped column is fixed with a connecting block, the side of the connecting block close to each other is fixed with an arc-shaped separating plate, and the arc-shaped separating plate is located below the ring plate one.

[0013] According to the technical scheme, the discharging device comprises a ring block, a cylinder, a triangular block, and a round cover.

[0014] According to the technical scheme, the bottom surface of the round cover is fixed with a ring plate three, the outer wall of the ring plate three is fixed with a plurality of round rods, the end of the round rod away from the ring plate three is fixed with a chamfered plate, and the outer wall of the chamfered plate is in rotating contact with the inner wall of the cylinder.

[0015] A use method of a Dendrobium officinale peeling device with intelligent control comprises the following steps. S1, a gas pump is connected to the L-shaped pipe, the gas pump performs air suction through the L-shaped pipe, Dendrobium officinale is placed into the feeding port of the top cover, and the rotation speed of the rotating shaft of the motor is controlled through the intelligent panel. S2, the hollow cylinder drives the ring plate one to rotate forward, the ring plate one drives the straight plate to rotate forward, the straight plate drives the ring plate two to rotate forward, and the ring plate two drives the round roller to rotate forward. S3, the straight plate drives the T-shaped column to rotate forward, the T-shaped column drives the connecting block to rotate forward, and the connecting block drives the arc-shaped separating plate to rotate forward. S4, the T-shaped column drives the ring block to rotate forward, the ring block drives the cylinder to rotate forward, the cylinder drives the triangular block to rotate forward, and the triangular block drives the round cover to rotate forward. S5, the round cover drives the ring plate three to rotate forward, the ring plate three drives the round rod to rotate forward, and the round rod drives the chamfered plate to rotate forward. S6, the disc drives the hollow cylinder to rotate forward, the hollow cylinder drives the spiral plate to rotate forward, the dendrobium officinale falls down to the spiral plate; S7, the fluff of the dendrobium officinale enters the hollow cylinder from the filter screen, the L-shaped pipe inhales the fluff of the dendrobium officinale and discharges; S8, the dendrobium officinale contacts with the arc plate downward, and the arc plate sweeps the peeled dendrobium officinale into the discharge pipe.

[0016] The present application provides a kind of with intelligent control's dendrobium officinale peeling device.There is following beneficial effect: (1) the present application is through cabinet, cylinder, discharge pipe, top cover, L-shaped pipe, U-shaped frame, motor, disc, arc plate, hollow cylinder and filter screen cooperate spiral plate, dendrobium officinale is placed into the feed inlet of top cover, dendrobium officinale falls down to the spiral plate, the rotating shaft of motor drives disc to rotate forward, disc drives arc plate to rotate forward, disc drives hollow cylinder to rotate forward, hollow cylinder drives spiral plate to rotate forward, under the action of friction, the brush on spiral plate removes dendrobium officinale surface fluff in the process of rotation, so that the rotating spiral plate can conveniently brush dendrobium officinale surface fluff, prevent the fluff on the surface of dendrobium officinale from being removed inconveniently to cause dendrobium officinale peeling effect to be poor.

[0017] (2) the present application is through the setting of distributing device, so that ring plate one, straight plate and ring plate two cooperate with round roller, ring plate two drives round roller to rotate forward, in the process that dendrobium officinale falls down, round roller and the dendrobium officinale of agglomeration contact, round roller separates the dendrobium officinale of agglomeration through the surface camber, prevent the dendrobium officinale of agglomeration from falling down together to cause the dendrobium officinale of agglomeration to be difficult to peel.

[0018] (3) the present application is through the setting of distributing device, so that T-shaped column and link block cooperate with arc-shaped division plate, T-shaped column drives link block to rotate forward, link block drives arc-shaped division plate to rotate forward, arc-shaped division plate further separates dendrobium officinale in the process of rotation, prevent dendrobium officinale from being difficult to loosen to cause dendrobium officinale to be poorly discharged.

[0019] (4) the present application is through the setting of discharging device, so that ring block, cylinder and triangular block cooperate with round cover, ring block drives cylinder to rotate forward, cylinder drives triangular block to rotate forward, triangular block drives round cover to rotate forward, dendrobium officinale falls down to round cover, round cover and dendrobium officinale contact, prevent dendrobium officinale from falling down quickly in cylinder to cause dendrobium officinale to be accumulated on spiral plate.

[0020] (5) the present application is through the setting of discharging device, so that ring plate three and round rod cooperate with chamfered plate, round rod drives chamfered plate to rotate forward, chamfered plate removes the fluff on the wall surface of cylinder in the process of rotation, prevent the fluff of dendrobium officinale from being accumulated on the inside of cylinder to cause the fluff of dendrobium officinale to be inconveniently sucked. DRAWINGS

[0021] Figure 1 is a schematic view of the whole of the present application; Figure 2 is a schematic view of the internal components of the present application; Figure 3 is a schematic view of a cross-section at the cylinder of the present application; Figure 4 is a schematic view of the bottom surface at the cylinder of the present application; Figure 5 is a schematic view of the material distribution device of the present application; Figure 6 is a schematic view of the present application Figure 5 is a partial enlarged schematic view of A in the present application; Figure 7 is a schematic view of the material feeding device of the present application; Figure 8 is a schematic view of the present application Figure 7 is a partial enlarged schematic view of B in the present application.

[0022] In the figure: 1, cabinet; 101, front plate; 102, intelligent panel; 2, cylinder; 3, discharge pipe; 4, top cover; 5, L-shaped pipe; 6, U-shaped frame; 7, motor; 8, disc; 9, arc plate; 10, hollow cylinder; 11, filter screen; 12, spiral plate; 13, material distribution device; 131, ring plate one; 132, straight plate; 133, ring plate two; 134, round roller; 135, T-shaped column; 136, linking block; 137, arc-shaped distribution plate; 14, material feeding device; 141, ring block; 142, cylindrical block; 143, triangular block; 144, round cover; 145, ring plate three; 146, round rod; 147, chamfered plate. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments of the present application.

[0024] Please refer to Figures 1-8 , one embodiment of the present application is: a Dendrobium officinale peeling device with intelligent control, comprising: a cabinet 1, the front plate 101 is fixedly installed on the front of the cabinet 1, and the intelligent panel 102 is fixedly installed on the front of the cabinet 1; A cylinder 2 is fixed through and to the top surface of cabinet 1. A discharge pipe 3 is fixed through and to the bottom left side of cylinder 2. A top cover 4 is fixedly installed on the top surface of cylinder 2. A feed inlet is opened on the right side of the top surface of top cover 4. An L-shaped pipe 5 is fixed through and to the middle of the top surface of top cover 4. A U-shaped frame 6 is fixed to the bottom of the inner wall of cabinet 1. A motor 7 is fixedly installed in the middle of the top surface of U-shaped frame 6. A smart panel 102 is used to control the speed of motor 7. The shaft of motor 7 is fixed through and rotatably installed in the middle of the bottom surface of cylinder 2. A disc 8 is fixed to the top surface of the shaft of motor 7. Several arc plates 9 are fixed on the top surface of disc 8. A hollow cylinder 10 is also present. Hollow cylinder 10 is fixed in the middle of the top surface of disc 8. The top surface of hollow cylinder 10 is rotatably connected to the bottom surface of top cover 4. Several slots are opened on the outer wall of hollow cylinder 10. Filter screen 11 and spiral plate 12 are respectively provided on the inner wall of the slots of hollow cylinder 10. Spiral plate 12 is fixed on the outer wall of hollow cylinder 10. Brush is provided on the outer wall of spiral plate 12. The brush of spiral plate 12 is used to remove the fuzz on the surface of Dendrobium officinale. Discharge pipe 3 passes through and is fixedly connected to the right side of the inner wall of cabinet 1. The top surface of hollow cylinder 10 is rotatably connected to the bottom of the outer wall of L-shaped pipe 5. The left end of L-shaped pipe 5 is used to connect to air pump. Cylinder 2 is located inside the upper part of cabinet 1. Arc plate 9 is located below discharge pipe 3. The outer wall of spiral plate 12 is in rotatable contact with the inner wall of cylinder 2. When using this device, cabinet 1 supports the front panel 101 and the cylinder 2. The operator starts the motor 7, and the shaft of the motor 7 on the U-shaped frame 6 begins to rotate forward. The shaft of the motor 7 rotates forward in the cylinder 2, driving the disc 8 to rotate forward. The disc 8 drives the arc plate 9 to rotate forward, which in turn drives the hollow cylinder 10 to rotate forward. The hollow cylinder 10 drives the spiral plate 12 to rotate forward, and the hollow cylinder 10 rotates forward on the top cover 4. The operator connects an air pump to the L-shaped pipe 5, which draws air through the L-shaped pipe 5. The operator places the Dendrobium officinale into the feed inlet of the top cover 4. The operator controls the rotation speed of the motor 7 shaft through the intelligent panel 102, and the Dendrobium officinale falls downward onto the spiral plate 12. Under the action of friction, the brush on the spiral plate 12 removes the surface hairs of Dendrobium officinale during the rotation process, so that the rotating spiral plate 12 can easily sweep the surface hairs of Dendrobium officinale, thereby avoiding the problem of poor peeling effect of Dendrobium officinale due to the inconvenience of removing surface hairs during the peeling process. At the same time, the spiral plate 12 drives Dendrobium officinale to move downward, the L-shaped tube 5 draws gas from the hollow cylinder 10, and the hairs of Dendrobium officinale enter the hollow cylinder 10 from the filter screen 11. The L-shaped tube 5 sucks in the hairs of Dendrobium officinale and discharges them. At the same time, Dendrobium officinale comes into contact with the arc plate 9 downward, and the arc plate 9 sweeps the peeled Dendrobium officinale into the discharge pipe 3. The discharge pipe 3 discharges the peeled Dendrobium officinale. The hollow cylinder 10 is provided with a distributing device 13 on the top of the outer wall, the distributing device 13 is used for separating the Dendrobium candidum in groups, the distributing device 13 is provided with a discharging device 14 on the outer wall, and the discharging device 14 is used for uniformly lowering the Dendrobium candidum.

[0025] Working principle: the cabinet 1 supports the cylinder 2, the rotating shaft of the motor 7 on the U-shaped frame 6 rotates forward, the rotating shaft of the motor 7 drives the disc 8 to rotate forward, the disc 8 drives the arc plate 9 to rotate forward, the disc 8 drives the hollow cylinder 10 to rotate forward, the hollow cylinder 10 drives the spiral plate 12 to rotate forward, the hollow cylinder 10 rotates forward on the top cover 4, the gas pump is connected to the L-shaped pipe 5, the gas pump performs air suction through the L-shaped pipe 5, the Dendrobium candidum is placed into the feeding port of the top cover 4, the intelligent panel 102 controls the rotating speed of the rotating shaft of the motor 7, the Dendrobium candidum falls downward on the spiral plate 12, under the action of friction, the brush on the spiral plate 12 removes the fluff on the surface of the Dendrobium candidum in the rotating process, the spiral plate 12 drives the Dendrobium candidum to move downward, the L-shaped pipe 5 extracts the gas in the hollow cylinder 10, the fluff of the Dendrobium candidum enters the hollow cylinder 10 from the filter screen 11, the L-shaped pipe 5 inhales the fluff of the Dendrobium candidum and discharges, the Dendrobium candidum contacts the arc plate 9 downward, and the arc plate 9 sweeps the peeled Dendrobium candidum into the discharge pipe 3, and the discharge pipe 3 discharges the peeled Dendrobium candidum.

[0026] Please refer to Figures 1-8 , on the basis of the above embodiment, in another embodiment of the application, the distributing device 13 comprises: ring plate one 131, the ring plate one 131 is fixed on the top of the outer wall of the cylinder 2, the ring plate one 131 is located below the top cover 4, straight plate 132, the straight plate 132 is respectively fixed on the bottom surface of the ring plate one 131, ring plate two 133, the ring plate two 133 is fixed on the top surface of the straight plate 132, round roller 134, the round roller 134 is respectively rotatably installed on the side of the ring plate one 131 and the ring plate two 133 close to each other, and the round roller 134 is used for separating the Dendrobium candidum in groups. When the disc 8 drives the hollow cylinder 10 to rotate forward, the hollow cylinder 10 drives the ring plate one 131 to rotate forward, the ring plate one 131 drives the straight plate 132 to rotate forward, the straight plate 132 drives the ring plate two 133 to rotate forward, and the ring plate two 133 drives the round roller 134 to rotate forward, in the process that the Dendrobium candidum falls downward, the round roller 134 contacts the Dendrobium candidum in groups, and the round roller 134 separates the Dendrobium candidum in groups through the curved surface on the surface, thereby avoiding the problem that the Dendrobium candidum in groups is not easy to be peeled due to the Dendrobium candidum in groups falling downward during the process that the peeling device processes the Dendrobium candidum.

[0027] The bottom surface of the straight plate 132 is respectively fixed with a T-shaped column 135, the bottom surface of the T-shaped column 135 is respectively fixed with a linking block 136, the side close to each other of the linking block 136 is respectively fixed with an arc-shaped distribution plate 137, and the arc-shaped distribution plate 137 is located below the ring plate one 131. When the ring plate one 131 drives the straight plate 132 to rotate forward, the straight plate 132 drives the T-shaped column 135 to rotate forward, the T-shaped column 135 drives the connecting block 136 to rotate forward, the connecting block 136 drives the arc-shaped sub-plate 137 to rotate forward, and the arc-shaped sub-plate 137 further separates the dendrobium officinale in the rotating process, so that the dendrobium officinale can be dropped on the spiral plate 12 in a loose manner, thereby avoiding the problem that the dendrobium officinale is not easy to be loosened, and the dendrobium officinale is not well discharged in the process of processing the dendrobium officinale by the peeling device.

[0028] The discharging device 14 comprises ring blocks 141, the ring blocks 141 are fixed on the outer walls of the T-shaped columns 135 respectively, cylindrical columns 142, the cylindrical columns 142 are fixed on the outer walls of the ring blocks 141 respectively, triangular blocks 143, the triangular blocks 143 are fixed on one ends of the cylindrical columns 142 away from the ring blocks 141, and circular covers 144, the circular covers 144 are fixed on the outer walls of the triangular blocks 143, and the circular covers 144 are used for limiting the descending speed of the dendrobium officinale. When the T-shaped column 135 drives the connecting block 136 to rotate forward, the T-shaped column 135 drives the ring block 141 to rotate forward, the ring block 141 drives the cylindrical column 142 to rotate forward, the cylindrical column 142 drives the triangular block 143 to rotate forward, the triangular block 143 drives the circular cover 144 to rotate forward, and in the rotating process of the circular cover 144, the dendrobium officinale falls downward on the circular cover 144, the circular cover 144 contacts the dendrobium officinale, and the falling speed of the dendrobium officinale is slowed down, thereby avoiding the problem that the dendrobium officinale is quickly dropped downward in the cylindrical tube 2 and is accumulated on the spiral plate 12 in the process of processing the dendrobium officinale by the peeling device.

[0029] The circular cover 144 is fixed with a ring plate three 145 at the bottom, the outer wall of the ring plate three 145 is fixed with a plurality of circular rods 146, one end of the circular rod 146 away from the ring plate three 145 is fixed with a chamfered plate 147 respectively, and the outer wall of the chamfered plate 147 is in rotating contact with the inner wall of the cylindrical tube 2. When the triangular block 143 drives the circular cover 144 to rotate forward, the circular cover 144 drives the ring plate three 145 to rotate forward, the ring plate three 145 drives the circular rod 146 to rotate forward, the circular rod 146 drives the chamfered plate 147 to rotate forward, and the chamfered plate 147 scrapes off the fluff on the wall of the cylindrical tube 2 in the rotating process, thereby avoiding the problem that the fluff of the dendrobium officinale is accumulated on the upper part inside the cylindrical tube 2 and is inconvenient to be sucked in the process of processing the dendrobium officinale by the peeling device.

[0030] A use method of a dendrobium officinale peeling device with intelligent control comprises the following steps: S1, a gas pump is connected to the L-shaped tube 5, the gas pump performs air suction through the L-shaped tube 5, the dendrobium officinale is put into the feeding port of the top cover 4, and the rotating speed of the rotating shaft of the motor 7 is controlled through the intelligent panel 102. S2, the hollow cylinder 10 drives the ring plate one 131 forward rotation, the ring plate one 131 drives the straight plate 132 forward rotation, the straight plate 132 drives the ring plate two 133 forward rotation, the ring plate two 133 drives the round roller 134 forward rotation; S3, the straight plate 132 drives the T-shaped column 135 forward rotation, the T-shaped column 135 drives the link block 136 forward rotation, the link block 136 drives the arc-shaped plate 137 forward rotation; S4, the T-shaped column 135 drives the ring block 141 forward rotation, the ring block 141 drives the cylinder 142 forward rotation, the cylinder 142 drives the triangular block 143 forward rotation, the triangular block 143 drives the round cover 144 forward rotation; S5, the round cover 144 drives the ring plate three 145 forward rotation, the ring plate three 145 drives the round rod 146 forward rotation, the round rod 146 drives the chamfered plate 147 forward rotation; S6, the disc 8 drives the hollow cylinder 10 forward rotation, the hollow cylinder 10 drives the spiral plate 12 forward rotation, the dendrobium officinale is dropped to the spiral plate 12 downwards; S7, the fluff of the dendrobium officinale enters the hollow cylinder 10 from the filter screen 11, the L-shaped pipe 5 inhales the fluff of the dendrobium officinale and discharges; S8, the dendrobium officinale contacts the arc plate 9 downwards, and the arc plate 9 sweeps the peeled dendrobium officinale into the discharge pipe 3.

[0031] Working principle: the hollow cylinder 10 drives the ring plate one 131 forward rotation, the ring plate one 131 drives the straight plate 132 forward rotation, the straight plate 132 drives the ring plate two 133 forward rotation, the ring plate two 133 drives the round roller 134 forward rotation, the round roller 134 contacts the bunched dendrobium officinale, and the round roller 134 separates the bunched dendrobium officinale through the surface arc surface; The straight plate 132 drives the T-shaped column 135 forward rotation, the T-shaped column 135 drives the link block 136 forward rotation, the link block 136 drives the arc-shaped plate 137 forward rotation, and the arc-shaped plate 137 further separates the dendrobium officinale in the rotating process; The T-shaped column 135 drives the ring block 141 forward rotation, the ring block 141 drives the cylinder 142 forward rotation, the cylinder 142 drives the triangular block 143 forward rotation, the triangular block 143 drives the round cover 144 forward rotation, and the dendrobium officinale is dropped to the round cover 144 downwards; The round cover 144 drives the ring plate three 145 forward rotation, the ring plate three 145 drives the round rod 146 forward rotation, the round rod 146 drives the chamfered plate 147 forward rotation, and the chamfered plate 147 scrapes off the fluff on the wall surface of the cylinder 2 in the rotating process.

[0032] The above-described, only for the preferred specific embodiments of the present application, but the protection scope of the present application is not limited to this, any person skilled in the art in the technical range disclosed by the present application, according to the technical scheme of the present application and the invention concept to replace or change, should be covered in the protection scope of the present application.

Claims

1. A device for peeling Dendrobium officinale with intelligent control, comprising: A cabinet (1) has a cylinder (2) that runs through and is fixed to the top surface of the cabinet (1); The discharge pipe (3) passes through and is fixed to the bottom left side of the cylinder (2); Top cover (4), the top cover (4) is fixedly installed on the top surface of the cylinder (2), and a feed inlet is provided on the right side of the top surface of the top cover (4); L-shaped tube (5), which is inserted through and fixed in the middle of the top surface of the top cover (4); U-shaped frame (6), the U-shaped frame (6) is fixed to the bottom of the inner wall of the cabinet (1); The electric motor (7) is fixedly installed in the middle of the top surface of the U-shaped frame (6), and the rotating shaft of the electric motor (7) is installed through and rotatably in the middle of the bottom surface of the cylinder (2); A disc (8) is fixed on the top surface of the rotating shaft of the motor (7), and a number of arc plates (9) are fixed on the top surface of the disc (8). Hollow cylinder (10), the hollow cylinder (10) is fixed in the middle of the top surface of the disc (8), the top surface of the hollow cylinder (10) is rotatably connected to the bottom surface of the top cover (4), the outer wall of the hollow cylinder (10) is provided with several slots, and the inner wall of the slots of the hollow cylinder (10) is provided with filter screens (11). Spiral plate (12), the spiral plate (12) is fixed on the outer wall of hollow cylinder (10), the outer wall of the spiral plate (12) is provided with a brush, the brush of the spiral plate (12) is used to remove the fuzz on the surface of Dendrobium officinale.

2. The intelligent control device for peeling Dendrobium officinale according to claim 1, characterized in that: The front panel (101) is fixedly installed on the front of the cabinet (1), and the smart panel (102) is fixedly installed on the top of the front of the cabinet (1). The smart panel (102) is used to control the speed of the motor (7).

3. The intelligent control device for peeling Dendrobium officinale according to claim 2, characterized in that: The discharge pipe (3) passes through and is fixedly connected to the right side of the inner wall of the cabinet (1). The top surface of the hollow cylinder (10) is rotatably connected to the bottom of the outer wall of the L-shaped pipe (5). The left end of the L-shaped pipe (5) is used to connect to the air pump.

4. The intelligent control device for peeling Dendrobium officinale according to claim 3, characterized in that: The cylinder (2) is located inside the cabinet (1) above the interior, the arc plate (9) is located below the discharge pipe (3), and the outer wall of the spiral plate (12) is in rotational contact with the inner wall of the cylinder (2).

5. The intelligent control device for peeling Dendrobium officinale according to claim 4, characterized in that: The hollow cylinder (10) is provided with a material distribution device (13) on the top of its outer wall. The material distribution device (13) is used to separate the clumps of Dendrobium officinale. The outer wall of the material distribution device (13) is provided with a feeding device (14), which is used to uniformly lower the Dendrobium officinale.

6. The intelligent control device for peeling Dendrobium officinale according to claim 5, characterized in that: The material distribution device (13) includes: a ring plate (131), which is fixed to the top of the outer wall of the cylinder (2) and is located below the top cover (4); Straight plate (132), the straight plate (132) is fixed to the bottom surface of ring plate (131); Ring plate two (133), said ring plate two (133) is fixed on the top surface of several straight plates (132); Circular rollers (134) are rotatably mounted on the sides of ring plate one (131) and ring plate two (133) that are close to each other; The roller (134) is used to separate clumps of Dendrobium officinale.

7. The intelligent control device for peeling Dendrobium officinale according to claim 6, characterized in that: A T-shaped column (135) is fixed to the bottom surface of the straight plate (132), and a connecting block (136) is fixed to the bottom surface of the T-shaped column (135). An arc-shaped dividing plate (137) is fixed to the side of the connecting blocks (136) that are close to each other. The arc-shaped dividing plate (137) is located below the ring plate (131).

8. The intelligent control device for peeling Dendrobium officinale according to claim 7, characterized in that: The feeding device (14) includes: a ring block (141), which is fixed on the outer wall of the T-shaped column (135); A cylinder (142) is fixed to the outer wall of the ring block (141); A triangular block (143) is fixed to one end of the cylinder (142) away from the ring block (141); A circular cover (144) is fixed to the outer wall of the triangular block (143) and is used to limit the descent speed of Dendrobium officinale.

9. A peeling device for Dendrobium officinale with intelligent control according to claim 8, characterized in that: The bottom surface of the circular cover (144) is fixed with a ring plate three (145), and a number of round rods (146) are fixed on the outer wall of the ring plate three (145). A chamfer plate (147) is fixed at the end of the round rod (146) away from the ring plate three (145). The outer wall of the chamfer plate (147) is in rotational contact with the inner wall of the cylinder (2).

10. A method of using an intelligently controlled Dendrobium officinale peeling device, comprising the intelligently controlled Dendrobium officinale peeling device as described in claim 9, characterized in that: Includes the following steps: S1. Connect an air pump to the L-shaped tube (5). The air pump draws air through the L-shaped tube (5) and puts the Dendrobium officinale into the feed inlet of the top cover (4). Control the rotation speed of the motor (7) through the smart panel (102). S2. Hollow cylinder (10) drives ring plate one (131) to rotate forward, ring plate one (131) drives straight plate (132) to rotate forward, straight plate (132) drives ring plate two (133) to rotate forward, and ring plate two (133) drives round roller (134) to rotate forward. S3, the straight plate (132) drives the T-shaped column (135) to rotate forward, the T-shaped column (135) drives the connecting block (136) to rotate forward, and the connecting block (136) drives the arc-shaped plate (137) to rotate forward; S4, T-shaped column (135) drives ring block (141) to rotate clockwise, ring block (141) drives cylinder (142) to rotate clockwise, cylinder (142) drives triangular block (143) to rotate clockwise, triangular block (143) drives dome (144) to rotate clockwise; S5, the round cover (144) drives the ring plate three (145) to rotate forward, the ring plate three (145) drives the round rod (146) to rotate forward, and the round rod (146) drives the chamfer plate (147) to rotate forward; S6. The disc (8) drives the hollow cylinder (10) to rotate clockwise, and the hollow cylinder (10) drives the spiral plate (12) to rotate clockwise. The Dendrobium officinale falls downward onto the spiral plate (12). S7. The villi of Dendrobium officinale enter the hollow cylinder (10) through the filter screen (11), and the L-shaped tube (5) sucks in the villi of Dendrobium officinale and discharges them. S8. Dendrobium officinale is placed downwards and contacts the arc plate (9). The arc plate (9) sweeps the peeled Dendrobium officinale into the discharge pipe (3).

Citation Information

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