A traditional Chinese medicine preparation device for improving hair quality and promoting proliferation of hair follicle stem cells

CN120695941BActive Publication Date: 2026-09-22ZHEJIANG YANZHIQUAN BIOTECHNOLOGY CO LTD +1
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Patent Information

Application Number
CN202510858167.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-06-25
Publication Date
2026-09-22
Estimated Expiration
2045-06-25

AI Technical Summary

Technical Problem

[0007]针对现有技术的不足,本发明提供了一种改善毛发质量促进毛囊干细胞增殖的中药药剂制备装置,具备能够提高药材粉碎的细密度及大小的均匀性,同时避免高温对热敏性成分破坏,更利于后期提取等优点,解决了现阶段采用传统的粉碎方式,导致热敏性成分降解,无法控制药材的粗细程度的问题

Benefits of technology

[0053]1、该改善毛发质量促进毛囊干细胞增殖的中药药剂制备装置,通过采用冷温筒将制备用的多种中药材进行冷温处理,通过驱动电机运作,使得转动杆带动粉碎刀片对冷温处理后的中药材粉碎并混合处理,粉碎的药剂,通过过滤筒的孔径大小进行筛分,使得满足或小于过滤筒孔径的粉剂流出过滤筒,从而能够在避免药材中热敏性成分受破坏的同时,保证药材粉碎后的粗细的均匀性。

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Abstract

The application relates to the technical field of Chinese medicine mixing preparation, and discloses a Chinese medicine preparation device for improving hair quality and promoting hair follicle stem cell proliferation, which comprises a cover plate, a cold-temperature cylinder and a collecting cylinder, the cover plate and the collecting cylinder are respectively threadedly connected to the top and the bottom interfaces of the cold-temperature cylinder, the cold-temperature cylinder is composed of an outer cylinder and an inner cylinder, a positioning hole is arranged at the central position in the collecting cylinder, a regulating rod is movably sleeved at the central position of the cover plate, and a lifting piece for driving the regulating rod to move up and down is arranged at one end in the cover plate. The Chinese medicinal materials are subjected to cold-temperature treatment before preparation by adopting the cold-temperature cylinder, the driving motor is operated, the rotating rod drives the crushing blades to crush the Chinese medicinal materials after the cold-temperature treatment, the crushed medicine is screened through the pore size of the filter cylinder, the powder meeting or being smaller than the pore size of the filter cylinder flows out of the filter cylinder, so that the uniformity of the thickness of the crushed Chinese medicinal materials can be ensured while avoiding the damage of the heat-sensitive components in the medicinal materials.
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Description

Technical Field

[0001] This invention relates to the field of traditional Chinese medicine preparation technology, specifically to a device for preparing traditional Chinese medicine preparations that improves hair quality and promotes the proliferation of hair follicle stem cells. Background Technology

[0002] Stem cells are cells with unlimited self-renewal capacity and the ability to differentiate into specific tissues. They are undifferentiated cells with the ability to divide and are divided into adult stem cells and embryonic stem cells. Hair follicle stem cells are a type of adult stem cell, possessing pluripotency, slow cell cycle, and the ability to self-renew. In vitro, they can be induced into epidermal cells, neurons, and glial cells.

[0003] The research results indicate that traditional Chinese medicines such as ginseng can promote hair growth, possibly by reducing apoptosis of cells in the telogen phase of hair follicles and thus prolonging the growth phase of hair. This demonstrates that the active ingredients of some traditional Chinese medicines have a promoting effect on hair follicles or hair.

[0004] Ginseng stem and leaf saponins at 12.5 μg / mL promoted the proliferation of hair follicle mesenchymal stem cells to a level comparable to that of human basic fibroblast growth factor at 10 ng / mL. Compared with the proliferation-promoting effect of hair follicle mesenchymal stem cells in basal culture medium containing 10% FBS, ginseng stem and leaf saponins showed a significant promoting effect.

[0005] Currently, when preparing Chinese medicinal materials such as ginseng, the materials are usually placed in a pulverizing device to be pulverized into powder. The pulverizing process generates heat, which causes the degradation of heat-sensitive components in the materials. At the same time, traditional pulverization cannot fully destroy cell walls or cell membranes, affecting the release of exosomes. Furthermore, the fineness of the pulverized materials cannot be selected during the pulverization process, resulting in uneven particle size. Summary of the Invention

[0006] (a) Technical problems to be solved

[0007] To address the shortcomings of existing technologies, this invention provides a traditional Chinese medicine preparation device for improving hair quality and promoting the proliferation of hair follicle stem cells. It has the advantages of improving the fineness and uniformity of the powdered medicinal materials, avoiding the damage of heat-sensitive components by high temperatures, and facilitating subsequent extraction. It solves the problem that the traditional pulverization method currently used leads to the degradation of heat-sensitive components and makes it impossible to control the fineness of the medicinal materials.

[0008] (II) Technical Solution

[0009] To achieve the above objectives, the present invention provides the following technical solution: a traditional Chinese medicine preparation device for improving hair quality and promoting the proliferation of hair follicle stem cells, comprising a cover plate, a cooling cylinder, and a collection cylinder. The cover plate and the collection cylinder are respectively threaded to the top and bottom interfaces of the cooling cylinder. The cooling cylinder consists of an outer cylinder and an inner cylinder. The cooling cylinder uses liquid nitrogen, dry ice materials, and a cooling system to control the temperature of the pulverizing space at a low temperature of -50℃ to -20℃ to achieve cold and warm pulverization of medicinal materials. At the same time, a positioning hole is provided in the center of the collection cylinder.

[0010] The cold-temperature cylinder has interfaces at both the top and bottom. The cover plate is threaded onto the interface at the top of the cold-temperature cylinder, while the collection cylinder is movably connected to the interface at the bottom of the cold-temperature cylinder. This ensures the airtightness of the preparation space during the pulverization and preparation of traditional Chinese medicine, preventing the powder from leaking out. The traditional Chinese medicine powder after being pulverized by the cold-temperature cylinder is collected by the collection cylinder.

[0011] A control rod is movably connected to the center of the cover plate. At the same time, a lifting component is installed at one end of the cover plate to drive the control rod to move up and down, while a driving component is installed at the other end of the cover plate to drive the control rod to rotate.

[0012] The regulating lever includes a rotating rod that is movably sleeved within the centerline of the cover plate. A first mating button is fixed at one end of the rotating rod, and a second mating button is fixed at the other end of the rotating rod.

[0013] When the rotating rod rotates, it can drive the mating buttons at both ends to rotate simultaneously. When the mating buttons are connected to different components, different operating effects can be achieved.

[0014] A filter cylinder is movably connected to the bottom of the cover plate. The filter cylinder is movably fitted inside the inner cylinder. A sealing cap is threaded onto the filter cylinder. A first mating hole is provided on the sealing cap. The first mating button can be inserted into the first mating hole at a set height.

[0015] The first mating button is inserted into the first mating hole, so that when the rotating rod rotates, the rotating rod can drive the sealing cover to rotate, thereby causing the filter cylinder to rotate for powder sieving.

[0016] A sleeve is rotatably connected to the center of the bottom of the sealing cap. A second mating hole is opened at one end of the sleeve. At the same time, a crushing blade is fixed to the side of the sleeve. The crushing blade is movably connected inside the filter cylinder. A mating piece is fixed to the side of the bottom end of the sleeve.

[0017] The side of the sleeve is vertically arranged with multiple layers of pulverizing blades in a ring. When the sleeve rotates, the pulverizing blades come into contact with the Chinese medicine in the filter cylinder, pulverizing the Chinese medicine into powder.

[0018] A sealing plug is movably fitted inside the inner cylinder. The sealing plug fits into the interface at the bottom of the filter cylinder. A rotating column is rotatably connected to the center of the sealing plug. A docking groove is opened at the center of the sealing plug. A docking piece is movably connected in the docking groove. At the same time, a transmission hole is opened on the rotating column. The transmission hole is aligned with the docking groove. The second docking button can be inserted into the transmission hole or the second docking hole at a set height, but the second docking button cannot be inserted into the transmission hole and the second docking hole at the same time.

[0019] The sealing plug is designed in a conical shape, and the maximum diameter of the sealing plug matches the inner diameter of the interface at the bottom of the filter cartridge. When the sealing plug moves upward to its limit, the side of the sealing plug fully closes with the interface at the bottom of the filter cartridge, thereby preventing the un-crushed powder from leaving the filter cartridge.

[0020] The diameter of the side of the docking plate matches the diameter of the docking groove, thereby improving the stability of the crushing blade in crushing Chinese medicinal materials.

[0021] When the first mating button is inserted into the first mating hole, the second mating button is disengaged from the second mating hole; when the second mating button is inserted into the second mating hole, the first mating button is disengaged from the first mating hole.

[0022] When the first mating button is inserted into the first mating hole, the rotating rod rotates, causing the filter cartridge to rotate. When the second mating button is inserted into the second mating hole, the rotating rod rotates, causing the crushing blade to rotate.

[0023] Furthermore, while the first mating button is inserted into the first mating hole, the second mating button is inserted into the transmission hole, and the downward force of the rotating rod pushes the sealing plug and the bottom-mounted component to move downward to their limit simultaneously.

[0024] A rotating paddle is fixed at the bottom of the rotating column. A stabilizing sleeve is set at the center of the bottom of the rotating paddle. A stabilizing rod is movably connected inside the stabilizing sleeve. A positioning button is fixed at one end of the stabilizing rod and is inserted into the positioning hole.

[0025] When the rotating rod moves downward, the stabilizing sleeve moves downward on the side of the stabilizing sleeve rod, improving the stability of displacement and rotation of the rotating column.

[0026] The side of the stabilizing sleeve is rotatably connected to a supporting base plate, the rotating paddle is attached to the supporting base plate, and the supporting base plate is movably sleeved inside the inner cylinder.

[0027] The diameter of the side of the supporting base plate matches the diameter of the inner cylinder. When the rotating rod moves up and down, the supporting base plate moves up and down inside the inner cylinder, improving the stability of the displacement. At the same time, when the sealing plug closes and seals the bottom of the filter cylinder, the supporting base plate divides the inside of the filter cylinder into upper and lower spaces, preventing the powder from leaking from the bottom of the cooling cylinder before the powder is completely crushed and prepared.

[0028] When the sealing plug separates from the interface at the bottom of the filter cylinder, the medicine and uncrushed medicinal materials can slide down the inclined edge of the sealing plug onto the support plate. At this time, the second mating button is inserted into the transmission hole, and when the support plate is attached to the top of the sealing plate, the rotating rod rotates, thereby causing the rotating paddle to rotate and sweep the medicine and uncrushed medicinal materials above the support plate from the discharge port into the collection cylinder.

[0029] A sealing plate is fixed at the bottom of the filter cylinder, and a discharge port is opened on the side of the filter cylinder, near the sealing plate. The discharge port is connected to the inside of the collection cylinder, and the top surface of the supporting bottom plate is flush with the bottom of the discharge port at a set height.

[0030] When the rotating rod moves downward to its limit, the bottom of the supporting base plate is pressed against the top of the sealing plate. At this time, the top surface of the supporting base plate is flush with the bottom of the discharge port, so that when the rotating paddle rotates, it can sweep the powder after crushing and preparation out of the discharge port.

[0031] As a further improvement to the above solution, the lifting component includes an electric telescopic rod fixed inside the cover plate, and a connecting rod fixed on the first docking button. A rotating knob is rotatably connected to the connecting rod, and a linkage plate is fixed on the side of the rotating knob. One end of the linkage plate is fixed to the output end of the electric telescopic rod.

[0032] Through the above technical solution, when the output end of the electric telescopic rod moves in extension and retraction, the rotating knob is driven to operate synchronously through the linkage plate, so that the rotating rod moves up and down to adjust the height position, thereby realizing the effect of plugging and separating the docking button from the docking hole and the transmission hole.

[0033] As a further improvement to the above solution, the driving component includes a drive motor fixed inside the cover plate, a drive gear fixed on the output end of the drive motor, a gear tube fixed on the side of the connecting rod, a rotating gear movably sleeved on the side of the gear tube, and a transmission toothed belt meshing on the sides of the drive gear and the rotating gear.

[0034] With the above technical solution, when the drive motor is running, the output end of the motor drives the drive gear to rotate, and under the transmission of the transmission belt, the rotating gear drives the gear tube to rotate. At this time, the first docking button drives the rotating rod to rotate, thus achieving the effect of rotating the filter cylinder, the rotating paddle, and the crushing blade.

[0035] As a further improvement to the above scheme, toothed racks are provided on the side of the gear tube and the inside of the rotating gear, and the toothed racks mesh with each other.

[0036] Through the above technical solution, when the output end of the electric telescopic rod moves in extension and retraction, the gear tube moves up and down with the rotating gear. When the rotating gear rotates, it can drive the gear tube to rotate synchronously, thereby achieving the effect that the rotating gear can drive the rotating rod to rotate at any height or position on the side of the gear tube.

[0037] As a further improvement to the above solution, a positioning pin is movably sleeved at the bottom of the cover plate, and a tension spring is installed on the positioning pin. At the same time, an annular groove is opened on the side of one end of the filter cylinder, and one end of the positioning pin is slidably connected in the annular groove.

[0038] With the above technical solution, the tension spring is installed at the tail end of the positioning pin. Under the push of the tension spring, the front end of the positioning pin is slidably connected in the annular groove, thereby realizing the connection between the filter cylinder and the cover plate, and achieving the effect that the filter cylinder can rotate when the cover plate is stationary.

[0039] As a further improvement to the above solution, a spring rod is movably sleeved on the side of the rotating rod, and the two ends of the spring rod are respectively fixed between the second mating button and the second mating hole.

[0040] Through the above technical solution, the spring rod has a tensile force. When the output end of the electric telescopic rod moves upward, the spring rod is used to pull the second docking button back into the second docking hole.

[0041] As a further improvement to the above solution, a limiting notch is provided at the bottom of the supporting base plate, and a limiting protrusion is provided on the sealing plate.

[0042] With the above technical solution, when the supporting base plate is attached to the sealing plate, the limiting notch is sleeved on the side of the limiting protrusion, thereby avoiding the effect of the rotating paddle causing the supporting base plate to rotate at the same time, and improving the stability of the supporting base plate.

[0043] As a further improvement to the above solution, multiple connection ports are vertically opened on the side of the inner cylinder. A right-angle plate is rotatably connected in the connection port, and a cleaning brush is fixed on the side of the right-angle plate. When the right-angle plate is at a set angle, the cleaning brush is attached to the side of the filter cylinder.

[0044] Through the above technical solution, the length and width of one side of the right-angle plate match the size of the connection port. When the Chinese medicinal materials are crushed, the right-angle plate seals the connection port to prevent powder from seeping into the space between the inner and outer cylinders. A cleaning brush is installed on the opposite inner side of the right-angle plate. The right-angle plate rotates to allow the cleaning brush to leak into the inner cylinder, so that the front end of the cleaning brush is attached to the side of the filter cylinder. Thus, when the filter cylinder rotates, the powder attached to the filter cylinder can be swept away, achieving a self-cleaning effect.

[0045] As a further improvement to the above scheme, a connecting gear is fixed to the side of the right-angle plate, and a toothed plate is movably connected between the inner cylinder and the outer cylinder, with the toothed plate meshing with the connecting gear.

[0046] With the above technical solution, the toothed plate meshes with the connecting gears on multiple right-angle plates. When the toothed plate moves downward, it causes the right-angle plates to rotate, and the cleaning brushes on the right-angle plates are parallel to the outside of the filter cylinder. When the toothed plate moves upward to reset, it causes the right-angle plates to rotate in the opposite direction, and the cleaning brushes on the right-angle plates are parallel to each other in the space between the inner and outer cylinders.

[0047] Furthermore, when the right-angle plate rotates, the cleaning brush fits against the edge of the connection port, and the elasticity of the bristles shakes the powder adhering to the cleaning brush into the inner cylinder, thereby achieving the self-cleaning effect of the cleaning brush.

[0048] As a further improvement to the above solution, an adjustment control is installed on the side of the stabilizing sleeve. The adjustment control includes a linkage bar fixed to one side of the stabilizing sleeve, a linkage rod fixed to one end of the linkage bar, and a linkage rod fixed to the bottom of the toothed plate.

[0049] With the above technical solution, when the stabilizing sleeve moves downward, the connecting rod is driven to move downward at the same time through the connecting bar. At this time, the connecting rod pulls the toothed plate, so that the toothed plate and the connecting gear mesh with each other, and the right-angle plate is flipped.

[0050] As a further improvement to the above solution, a spring ring is movably connected between the bottom of the linkage and the positioning button.

[0051] With the above technical solution, when the rotating rod moves upward to reset, the tension of the spring ring pushes the supporting base plate, rotating paddle and sealing plug to reset, so that the sealing plug re-seals the interface at the bottom of the filter cylinder.

[0052] Compared with the prior art, the present invention provides a traditional Chinese medicine preparation device for improving hair quality and promoting the proliferation of hair follicle stem cells, which has the following beneficial effects:

[0053] 1. This device for preparing traditional Chinese medicine to improve hair quality and promote the proliferation of hair follicle stem cells uses a cold-temperature cylinder to treat various traditional Chinese medicinal materials. The drive motor operates, causing the rotating rod to drive the pulverizing blades to pulverize and mix the pulverized medicinal materials. The pulverized medicine is then sieved through the pore size of a filter cylinder, allowing powder that meets or is smaller than the pore size of the filter cylinder to flow out. This ensures the uniformity of the fineness of the pulverized medicine while avoiding damage to heat-sensitive components in the medicinal materials.

[0054] 2. This device for preparing traditional Chinese medicine to improve hair quality and promote the proliferation of hair follicle stem cells uses an electric telescopic rod to drive the rotating rod to push the sealing plug and rotating paddle downwards. At the same time, the second docking button is inserted into the transmission hole, which opens the bottom interface of the filter cylinder, allowing the pulverized medicine to flow out. Then, the drive motor is controlled to operate, causing the rotating rod to drive the rotating paddle to sweep the fallen powder from the discharge port into the collection cylinder, thereby effectively discharging excess medicine from the cold and warm cylinder.

[0055] 3. This device for preparing traditional Chinese medicine to improve hair quality and promote the proliferation of hair follicle stem cells, through the second docking button and the transmission hole, causes the rotating paddle and sealing plug to descend. At the same time, the connecting rod is driven to descend by the connecting bar. Under the force of the meshing of the toothed plate and the connecting gear, the right-angle plate flips, so that the front end of the cleaning brush is attached to the side of the filter cylinder. At the same time, the first docking button and the first docking hole are inserted. Thus, under the operation of the drive motor, the filter cylinder is rotated. The cleaning brush sweeps off the dust attached to the filter cylinder, thereby achieving a self-cleaning effect and further improving the flexibility of the device. Attached Figure Description

[0056] Figure 1 This is a schematic diagram of the overall external structure of the device of the present invention;

[0057] Figure 2 This is a schematic cross-sectional view of the cover plate and filter cylinder of the present invention;

[0058] Figure 3 For the present invention Figure 2 Schematic diagram of the structure at point A in the middle;

[0059] Figure 4 For the present invention Figure 2 Schematic diagram of the structure at point B;

[0060] Figure 5 This is a schematic diagram of the connection structure between the cooling cylinder and the regulating rod of the present invention;

[0061] Figure 6 This is a schematic diagram of the connection structure between the control rod and the rotating column, rotating paddle and connecting bar of the present invention;

[0062] Figure 7 This is a schematic cross-sectional view of the device of the present invention;

[0063] Figure 8 This is a schematic cross-sectional view of the cooling cylinder and collecting cylinder of the present invention;

[0064] Figure 9 For the present invention Figure 8 Schematic diagram of the structure at point C;

[0065] Figure 10 This is a schematic diagram of the closed structure of the internal sealing plug and filter cylinder of the device of the present invention;

[0066] Figure 11 This is a schematic diagram of the internal sealing plug and filter cartridge separation structure of the device of the present invention;

[0067] Figure 12 For the present invention Figure 10 Schematic diagram of the structure at point D;

[0068] Figure 13 For the present invention Figure 10 Schematic diagram of the structure at point E in the middle;

[0069] Figure 14 For the present invention Figure 10 Schematic diagram of the structure at point F;

[0070] Figure 15 This is a schematic diagram of the drive gear and rotating gear transmission structure of the present invention.

[0071] The attached diagram lists the components represented by each number as follows:

[0072] 1. Cover plate;

[0073] 11. Adjusting lever; 101. Rotating lever; 102. First docking button; 103. Connecting rod; 104. Gear tube; 1041. Toothed rack; 105. Rotating gear; 106. Rotating button; 107. Linkage plate; 108. Second docking button; 109. Positioning pin; 110. Tension spring; 111. Annular groove;

[0074] 12. Lifting components; 1201. Electric telescopic pole;

[0075] 13. Driving components; 1301. Drive motor; 121. Drive gear; 122. Transmission toothed belt;

[0076] 14. Filter cartridge; 112. Sealing cover; 113. First mating hole; 114. Sleeve; 115. Second mating hole; 116. Spring rod; 117. Mat; 118. Sealing plate; 119. Discharge port; 120. Limiting protrusion;

[0077] 15. Shredder blades;

[0078] 2. Cooling / warming cylinder; 21. Outer cylinder; 22. Inner cylinder; 201. Connecting port; 202. Right-angle plate; 203. Cleaning brush; 204. Linking gear;

[0079] 3. Collection cylinder; 301. Positioning hole;

[0080] 4. Sealing plug; 401. Connecting groove; 402. Rotating column; 403. Transmission hole; 404. Stabilizing sleeve; 405. Stabilizing rod; 406. Positioning button; 407. Spring ring;

[0081] 5. Rotate the paddle;

[0082] 6. Support plate; 601. Limiting notch;

[0083] 7. Adjustment control; 701. Linkage bar; 702. Linkage rod; 703. Gear plate. Detailed Implementation

[0084] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0085] Example 1

[0086] Please see Figure 1 - Figure 15 As shown in this embodiment, a traditional Chinese medicine preparation device for improving hair quality and promoting the proliferation of hair follicle stem cells includes a cover plate 1, a cooling cylinder 2, and a collection cylinder 3. The cover plate 1 and the collection cylinder 3 are respectively threaded to the top and bottom interfaces of the cooling cylinder 2. The cooling cylinder 2 consists of an outer cylinder 21 and an inner cylinder 22. The cooling cylinder 2 uses liquid nitrogen, dry ice materials, and a cooling system to control the temperature of the pulverizing space at a low temperature of -50℃ to -20℃ to achieve cold and warm pulverization of medicinal materials. At the same time, a positioning hole 301 is provided in the center of the collection cylinder 3.

[0087] The top and bottom of the cooling cylinder 2 have interfaces. The cover plate 1 is threaded to the interface at the top of the cooling cylinder 2, while the collecting cylinder 3 is movably connected to the interface at the bottom of the cooling cylinder 2. This ensures the airtightness of the preparation space during the pulverization and preparation of traditional Chinese medicine, preventing the powder from leaking out. The traditional Chinese medicine powder after being pulverized by the cooling cylinder 2 is collected by the collecting cylinder 3.

[0088] The center of the cover plate 1 is movably sleeved with an adjustment rod 11. At the same time, one end of the cover plate 1 is equipped with a lifting component 12 that drives the adjustment rod 11 to move up and down, while the other end of the cover plate 1 is equipped with a driving component 13 that drives the adjustment rod 11 to rotate.

[0089] The regulating rod 11 includes a rotating rod 101 that is movably sleeved within the axis of the cover plate 1. A first mating button 102 is fixed at one end of the rotating rod 101, and a second mating button 108 is fixed at the other end of the rotating rod 101.

[0090] When the rotating rod 101 rotates, it can drive the docking buttons at both ends to rotate simultaneously. When the docking buttons are connected to different components, different operating effects can be achieved.

[0091] The bottom of the cover plate 1 is movably connected to a filter cylinder 14, which is movably sleeved inside the inner cylinder 22. A sealing cover 112 is threaded onto the filter cylinder 14, and a first mating hole 113 is provided on the sealing cover 112. The first mating button 102 can be inserted into the first mating hole 113 at a set height.

[0092] The first mating button 102 is inserted into the first mating hole 113, so that when the rotating rod 101 rotates, the rotating rod 101 can drive the sealing cover 112 to rotate, thereby causing the filter cylinder 14 to rotate for powder sieving.

[0093] The aperture of the filter cylinder 14 can be changed according to the particle size of the medicine to be pulverized. Various medicinal materials used in the preparation are placed in the filter cylinder 14, and the medicine is pulverized by the rotating pulverizing blade 15.

[0094] A sleeve 114 is rotatably connected to the center of the bottom of the sealing cover 112. A second docking hole 115 is provided at one end of the sleeve 114. At the same time, a crushing blade 15 is fixed to the side of the sleeve 114. The crushing blade 15 is movably connected inside the filter cylinder 14. Meanwhile, a docking piece 117 is fixed to the side of the bottom end of the sleeve 114.

[0095] The sleeve 114 has multiple layers of pulverizing blades 15 arranged in a vertical ring on its side. When the sleeve 114 rotates, the pulverizing blades 15 come into contact with the Chinese medicine in the filter cylinder 14, pulverizing the Chinese medicine into powder.

[0096] A sealing plug 4 is movably sleeved inside the inner cylinder 22. The sealing plug 4 fits into the interface at the bottom of the filter cylinder 14. A rotating column 402 is rotatably connected to the center position inside the sealing plug 4. A docking groove 401 is opened at the center position on the sealing plug 4. A docking piece 117 is movably connected in the docking groove 401. At the same time, a transmission hole 403 is opened on the rotating column 402. The transmission hole 403 is aligned with the docking groove 401. The second docking button 108 can be inserted into the transmission hole 403 or the second docking hole 115 at a set height. However, the second docking button 108 cannot be inserted into the transmission hole 403 and the second docking hole 115 at the same time.

[0097] The sealing plug 4 is designed in a conical shape, and the maximum diameter of the sealing plug 4 matches the inner diameter of the interface at the bottom of the filter cylinder 14. When the sealing plug 4 moves upward to its limit, the side of the sealing plug 4 is fully closed with the bottom interface of the filter cylinder 14, thereby preventing the uncrushed powder from leaving the filter cylinder 14.

[0098] The diameter of the side of the docking plate 117 matches the diameter inside the docking groove 401, thereby improving the stability of the crushing blade 15 in crushing Chinese medicinal materials.

[0099] It should be noted that when the first mating button 102 is inserted into the first mating hole 113, the second mating button 108 disengages from the second mating hole 115, and when the second mating button 108 is inserted into the second mating hole 115, the first mating button 102 disengages from the first mating hole 113.

[0100] When the first mating button 102 is inserted into the first mating hole 113, the rotating rod 101 rotates, causing the filter cylinder 14 to rotate. When the second mating button 108 is inserted into the second mating hole 115, the rotating rod 101 rotates, causing the crushing blade 15 to rotate.

[0101] Furthermore, while the first docking button 102 is inserted into the first docking hole 113, the second docking button 108 is inserted into the transmission hole 403. And through the downward force of the rotating rod 101, the sealing plug 4 and the bottom mounted components (rotating paddle 5 and supporting base plate 6) are pushed downward to their limits.

[0102] The bottom of the rotating column 402 is fixed with a rotating paddle 5. A stabilizing sleeve 404 is provided at the center of the bottom of the rotating paddle 5. A stabilizing rod 405 is movably sleeved inside the stabilizing sleeve 404. A positioning button 406 is fixed at one end of the stabilizing rod 405. The positioning button 406 is inserted into the positioning hole 301.

[0103] When the rotating rod 101 moves downward, the stabilizing sleeve 404 moves downward on the side of the stabilizing sleeve rod 405, improving the stability of displacement and rotation of the rotating column 402.

[0104] The side of the stabilizing sleeve 404 is rotatably connected to the supporting base plate 6, the rotating paddle 5 is attached to the supporting base plate 6, and the supporting base plate 6 is movably sleeved inside the inner cylinder 22.

[0105] The diameter of the side of the supporting base plate 6 matches the diameter of the inner cylinder 22. When the rotating rod 101 moves up and down, the supporting base plate 6 moves up and down inside the inner cylinder 22, improving the stability of the displacement. At the same time, when the sealing plug 4 closes and seals the bottom of the filter cylinder 14, the supporting base plate 6 divides the inside of the filter cylinder 14 into upper and lower spaces, preventing the powder from leaking from the bottom of the cooling cylinder 2 before the powder is completely crushed (when the collecting cylinder 3 is not connected to the bottom of the cooling cylinder 2).

[0106] When the sealing plug 4 separates from the interface at the bottom of the filter cylinder 14, the medicine and uncrushed medicinal materials can slide down the inclined surface of the sealing plug 4 onto the support plate 6. At this time, the second mating button 108 is inserted into the transmission hole 403, and when the support plate 6 is attached to the top of the sealing plate 118, the rotating rod 101 rotates, thereby causing the rotating paddle 5 to rotate, sweeping the medicine and uncrushed medicinal materials above the support plate 6 from the discharge port 119 into the collection cylinder 3.

[0107] The bottom of the filter cylinder 14 is fixed with a sealing plate 118. At the same time, a discharge port 119 is opened on the side of the filter cylinder 14, near the end of the sealing plate 118. The discharge port 119 is connected to the inside of the collection cylinder 3. At the same time, the top surface of the supporting bottom plate 6 is flush with the bottom of the discharge port 119 at a set height.

[0108] When the rotating rod 101 moves downward to its limit, the bottom of the supporting base plate 6 is pressed against the top of the sealing plate 118. At this time, the top surface of the supporting base plate 6 is flush with the bottom of the discharge port 119, so that when the rotating paddle 5 rotates, it can sweep the powder after crushing and preparation out of the discharge port 119.

[0109] Furthermore, the lifting component 12 includes an electric telescopic rod 1201 fixed inside the cover plate 1, and a connecting rod 103 fixed on the first docking button 102. A rotating button 106 is rotatably connected to the connecting rod 103, and a connecting plate 107 is fixed on the side of the rotating button 106. One end of the connecting plate 107 is fixed to the output end of the electric telescopic rod 1201.

[0110] More specifically, when the output end of the electric telescopic rod 1201 moves in extension and retraction, the connecting plate 107 drives the rotating knob 106 to operate synchronously, causing the rotating rod 101 to move up and down, adjusting the height position, and realizing the effect of connecting and disconnecting the docking button from the docking hole and the transmission hole 403.

[0111] Furthermore, the driving component 13 includes a driving motor 1301 fixed inside the cover plate 1, a driving gear 121 fixed on the output end of the driving motor 1301, a gear tube 104 fixed on the side of the connecting rod 103, a rotating gear 105 movably sleeved on the side of the gear tube 104, and a transmission toothed belt 122 meshing between the driving gear 121 and the rotating gear 105.

[0112] More specifically, when the drive motor 1301 is operating, the output end of the motor drives the drive gear 121 to rotate, and under the transmission of the transmission belt 122, the rotating gear 105 drives the gear tube 104 to rotate. At this time, the first docking button 102 drives the rotating rod 101 to rotate, thereby achieving the effect of rotating the filter cylinder 14, the rotating paddle 5, and the crushing blade 15.

[0113] Furthermore, toothed racks 1041 are provided on the side of the gear tube 104 and the inner side of the rotating gear 105, and the toothed racks 1041 mesh with each other.

[0114] More specifically, when the output end of the electric telescopic rod 1201 moves in extension and retraction, it causes the gear tube 104 to move up and down on the rotating gear 105. When the rotating gear 105 rotates, it can drive the gear tube 104 to rotate synchronously, thereby achieving the effect that the rotating gear 105 can drive the rotating rod 101 to rotate at any height or position on the side of the gear tube 104.

[0115] Furthermore, a positioning pin 109 is movably sleeved at the bottom of the cover plate 1, and a tension spring 110 is installed on the positioning pin 109. At the same time, an annular groove 111 is opened on the side of one end of the filter cylinder 14, and one end of the positioning pin 109 is slidably connected in the annular groove 111.

[0116] More specifically, the tension spring 110 is installed at the tail end of the positioning pin 109. Under the push of the tension spring 110, the front end of the positioning pin 109 is slidably connected in the annular groove 111, thereby achieving the effect that the filter cylinder 14 can rotate while the cover plate 1 is stationary.

[0117] Furthermore, a spring rod 116 is movably sleeved on the side of the rotating rod 101, and the two ends of the spring rod 116 are respectively fixed between the second mating button 108 and the second mating hole 115.

[0118] More specifically, the spring rod 116 has a pulling force. When the output end of the electric telescopic rod 1201 moves upward, the spring rod 116 is used to pull the second docking button upward and retract it into the second docking hole 115.

[0119] Furthermore, a limiting recess 601 is provided at the bottom of the supporting base plate 6, and a limiting protrusion 120 is provided on the sealing plate 118.

[0120] More specifically, when the supporting base plate 6 is attached to the sealing plate 118, the limiting notch 601 is sleeved on the side of the limiting protrusion 120, thereby preventing the supporting base plate 6 from rotating simultaneously when the rotating paddle 5 rotates, thus improving the stability of the supporting base plate 6.

[0121] Example 2

[0122] Please see Figure 10 - Figure 14 As shown, the traditional Chinese medicine preparation device for improving hair quality and promoting the proliferation of hair follicle stem cells proposed in this embodiment, based on the first embodiment, further includes multiple vertically opened connection ports 201 on the side of the inner cylinder 22, a right-angle plate 202 rotatably connected in the connection port 201, and a cleaning brush 203 fixed on the side of the right-angle plate 202. When the right-angle plate 202 is at a set angle, the cleaning brush 203 is attached to the side of the filter cylinder 14.

[0123] More specifically, the length and width of one side of the right-angle plate 202 match the size of the connection port 201. When the Chinese medicinal materials are being crushed, the right-angle plate 202 seals the connection port 201 to prevent powder from seeping out between the inner cylinder 22 and the outer cylinder 21. A cleaning brush 203 is installed on the opposite inner side of the right-angle plate 202. The right-angle plate 202 rotates to allow the cleaning brush 203 to protrude into the inner cylinder 22, so that the front end of the cleaning brush 203 is attached to the side of the filter cylinder 14. Thus, when the filter cylinder 14 rotates, the powder attached to the filter cylinder 14 can be swept away, achieving a self-cleaning effect.

[0124] Furthermore, a connecting gear 204 is fixed to the side of the right-angle plate 202, and a toothed plate 703 is movably connected between the inner cylinder 22 and the outer cylinder 21, with the toothed plate 703 meshing with the connecting gear 204.

[0125] More specifically, the toothed plate 703 meshes with the connecting gears 204 on the multiple right-angle plates 202. When the toothed plate 703 moves downward, it causes the right-angle plates 202 to rotate, and the cleaning brushes 203 on the right-angle plates 202 are parallel to the outside of the filter cartridge 14. When the toothed plate 703 moves upward to reset, it causes the right-angle plates 202 to rotate in the opposite direction, and the cleaning brushes 203 on the right-angle plates 202 are parallel to each other in the space between the inner cylinder 22 and the outer cylinder 21.

[0126] Furthermore, when the right-angle plate 202 rotates, the cleaning brush 203 adheres to the edge of the connection port 201, so that the elasticity of the bristles shakes the powder adhering to the cleaning brush 203 into the inner cylinder 22, thereby achieving the self-cleaning effect of the cleaning brush 203.

[0127] Furthermore, an adjustment control 7 is installed on the side of the stabilizing sleeve 404. The adjustment control 7 includes a linkage bar 701 fixed to one side of the stabilizing sleeve 404. A linkage rod 702 is fixed to one end of the linkage bar 701. One end of the linkage rod 702 is fixed to the bottom of the toothed plate 703.

[0128] When the stabilizing sleeve 404 moves downward, the connecting rod 702 moves downward simultaneously through the connecting bar 701. At this time, the connecting rod 702 pulls the toothed plate 703, so that the toothed plate 703 and the connecting gear 204 mesh with each other, thus achieving the flipping effect of the right angle plate 202.

[0129] Furthermore, a spring ring 407 is movably connected between the bottom of the linkage 701 and the positioning button 406.

[0130] More specifically, when the rotating rod 101 moves upward to reset, the tension of the spring ring 407 pushes the supporting base plate 6, the rotating paddle 5 and the sealing plug 4 to reset, so that the sealing plug 4 re-seals the interface at the bottom of the filter cylinder 14.

[0131] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A traditional Chinese medicine preparation device for improving hair quality and promoting the proliferation of hair follicle stem cells, comprising a cover plate (1), a cooling and warming cylinder (2), and a collecting cylinder (3), characterized in that, The cover plate (1) and the collection cylinder (3) are respectively threaded to the top and bottom interfaces of the cold temperature cylinder (2). The cold temperature cylinder (2) is composed of an outer cylinder (21) and an inner cylinder (22). The cold temperature cylinder (2) uses liquid nitrogen, dry ice materials and a cooling system to control the temperature of the crushing space at a low temperature of -50℃ to -20℃, so as to realize the cold temperature crushing of medicinal materials. At the same time, a positioning hole (301) is provided in the center of the collection cylinder (3). The center of the cover plate (1) is movably sleeved with an adjustment rod (11), and at the same time, one end of the cover plate (1) is equipped with a lifting component (12) that drives the adjustment rod (11) to move up and down, while the other end of the cover plate (1) is equipped with a driving component (13) that drives the adjustment rod (11) to rotate. The control rod (11) includes a rotating rod (101) that is movably sleeved within the axis of the cover plate (1). A first mating button (102) is fixed at one end of the rotating rod (101), and a second mating button (108) is fixed at the other end of the rotating rod (101). The lifting component (12) includes an electric telescopic rod (1201) fixed inside the cover plate (1), and a connecting rod (103) fixed on the first docking button (102). A rotating button (106) is rotatably connected to the connecting rod (103), and a connecting plate (107) is fixed on the side of the rotating button (106). One end of the connecting plate (107) is fixed to the output end of the electric telescopic rod (1201). The driving component (13) includes a drive motor (1301) fixed inside the cover plate (1), a drive gear (121) fixed on the output end of the drive motor (1301), and a gear tube (104) fixed on the side of the connecting rod (103). A rotating gear (105) is movably sleeved on the side of the gear tube (104), and a transmission toothed belt (122) meshes with the side of the drive gear (121) and the rotating gear (105). The side of the gear tube (104) and the inside of the rotating gear (105) are provided with tooth profiles (1041), and the tooth profiles (1041) mesh with each other; The bottom of the cover plate (1) is movably connected to a filter cylinder (14), which is movably sleeved inside the inner cylinder (22). A sealing cap (112) is threaded onto the filter cylinder (14), and a first mating hole (113) is provided on the sealing cap (112). The first mating button (102) can be inserted into the first mating hole (113) at a set height. The sealing cap (112) is rotatably connected to the center of the bottom of the sleeve (114). A second docking hole (115) is provided at one end of the sleeve (114). At the same time, a crushing blade (15) is fixed on the side of the sleeve (114). The crushing blade (15) is movably connected inside the filter cylinder (14). At the same time, a docking piece (117) is fixed on the side of the bottom end of the sleeve (114). A spring rod (116) is movably sleeved on the side of the rotating rod (101), and the two ends of the spring rod (116) are respectively fixed between the second mating button (108) and the second mating hole (115). The inner cylinder (22) has multiple vertically opened connection ports (201) on its side. A right-angle plate (202) is rotatably connected in the connection port (201). A cleaning brush (203) is fixed on the side of the right-angle plate (202). When the right-angle plate (202) is at a set angle, the cleaning brush (203) is attached to the side of the filter cylinder (14). The right-angle plate (202) is fixed with a connecting gear (204) on its side, and a toothed plate (703) is movably connected between the inner cylinder (22) and the outer cylinder (21), and the toothed plate (703) meshes with the connecting gear (204); A sealing plug (4) is movably sleeved inside the inner cylinder (22). The sealing plug (4) fits into the interface at the bottom of the filter cylinder (14). A rotating column (402) is rotatably connected to the center position inside the sealing plug (4). A docking groove (401) is opened at the center position on the sealing plug (4). A docking piece (117) is movably connected in the docking groove (401). At the same time, a transmission hole (403) is opened on the rotating column (402). The transmission hole (403) is aligned with the docking groove (401). The second docking button (108) can be inserted into the transmission hole (403) or the second docking hole (115) at a set height. However, the second docking button (108) cannot be inserted into the transmission hole (403) and the second docking hole (115) at the same time. The bottom of the rotating column (402) is fixed with a rotating paddle (5), and a stabilizing sleeve (404) is provided at the center of the bottom of the rotating paddle (5). A stabilizing rod (405) is movably sleeved in the stabilizing sleeve (404), and a positioning button (406) is fixed at one end of the stabilizing rod (405). The positioning button (406) is inserted into the positioning hole (301). The side of the stabilizing sleeve (404) is rotatably connected to a supporting base plate (6), the rotating paddle (5) is attached to the supporting base plate (6), and the supporting base plate (6) is movably sleeved inside the inner cylinder (22); The bottom of the filter cylinder (14) is fixed with a sealing plate (118), and a discharge port (119) is opened on the side of the filter cylinder (14) and at the end close to the sealing plate (118). The discharge port (119) is connected to the inside of the collection cylinder (3), and the top surface of the supporting bottom plate (6) is flush with the bottom of the discharge port (119) at a set height. The side of the stabilizing sleeve (404) is equipped with an adjustment control (7). The adjustment control (7) includes a linkage bar (701) fixed to one side of the stabilizing sleeve (404). One end of the linkage bar (701) is fixed with a linkage rod (702). One end of the linkage rod (702) is fixed to the bottom of the toothed plate (703). A spring ring (407) is movably connected between the bottom of the linkage bar (701) and the positioning button (406).

2. The apparatus for preparing a traditional Chinese medicine preparation for improving hair quality and promoting the proliferation of hair follicle stem cells according to claim 1, characterized in that: The bottom of the cover plate (1) is movably fitted with a positioning pin (109), and a tension spring (110) is installed on the positioning pin (109). At the same time, an annular groove (111) is opened on the side of one end of the filter cylinder (14), and one end of the positioning pin (109) is slidably connected in the annular groove (111).

3. The apparatus for preparing a traditional Chinese medicine preparation for improving hair quality and promoting the proliferation of hair follicle stem cells according to claim 1, characterized in that: The bottom of the supporting base plate (6) has a limiting notch (601), and the sealing plate (118) is provided with a limiting protrusion (120).

Citation Information

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