Poria cocos and peach kernel particle fumigator

The zizyphus jujube and peach kernel steam inhalation device addresses inefficiencies in traditional absorption methods by using a press net and ultrasonic oscillators to enhance the release and absorption of active components, improving therapeutic efficacy through steam inhalation.

CN223095804UActive Publication Date: 2025-07-15HEFEI BAIWEIYUAN BIOPHARMACEUTICAL CO LTD
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Patent Information

Application Number
CN202420970477.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-07
Publication Date
2025-07-15
Estimated Expiration
2034-05-07

AI Technical Summary

Technical Problem

The traditional Chinese medicine absorption method of Poria and peach kernel is inefficient and difficult to meet the needs of drug absorption and tonic.

Method used

A Poria peach kernel granule fumigator is designed, and the medicinal materials are extruded with a press mesh and an ultrasonic oscillator are used to accelerate the release of active ingredients of the drug and steam generation, and transport it to the fumigation plate through the trachea for fumigation treatment.

Benefits of technology

It improves the absorption effect of the drug during fumigation, improves the release efficiency and user experience of drug ingredients.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a poria cocos and peach kernel particle fumigator, and particularly relates to the technical field of fumigators, which comprises a fumigating box and a box cover movably hinged on the fumigating box, an air pipe communicated with the inside of the fumigating box is mounted on the outer wall of the fumigating box, and a fumigating plate is mounted at the other end of the air pipe, and is characterized in that a circle of annular plate is mounted on the inner wall of the fumigating box; a container assembly for containing fumigated medicinal materials is hung in the annular plate, a movable pressing net is arranged in the container assembly, the pressing net extrudes the medicinal materials to the bottom of an inner cavity of the container assembly, and a heating assembly is installed at the bottom of the container assembly. According to the utility model, the medicine is extruded by the pressing net and is matched with the combined action of ultrasonic waves at the bottom, so that the effective component overflow efficiency of the medicine in the fumigation process is improved, the effective component release effect is improved, and the medicine absorption effect of a user in the fumigation process is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of fumigators, and more specifically, to a poria cocos and peach kernel granule fumigator. Background Art

[0002] Traditional Chinese medicine fumigation is a means of traditional Chinese medicine treatment. After traditional Chinese medicine is boiled, steam is used to fumigate the whole body or a part of the user, so that the medicine is absorbed through the skin surface, permeated through the cutin layer and transported through the dermis into the blood circulation to exert pharmacological effects and treat the user. As a kind of traditional Chinese medicine, poria cocos and peach kernels have certain differences in pharmacological absorption during the absorption process by traditional methods such as medicine and food and soaking in water. The traditional methods are difficult to meet the absorption and tonic needs, while the fumigation method can improve the drug absorption effect. Content of the Utility Model

[0003] To solve the above technical problems, the utility model provides a poria cocos and peach kernel granule fumigator, which includes a fumigation box and a box cover movably hinged on the fumigation box. An air pipe communicated with the inside of the fumigation box is installed on the outer wall of the fumigation box, and a fumigation plate is installed at the other end of the air pipe. A circular plate is installed on the inner wall of the fumigation box, and a container assembly for accommodating fumigation medicinal materials is suspended inside the circular plate. A movable pressing net is arranged inside the container assembly, and the pressing net squeezes the medicinal materials to the bottom of the inner cavity of the container assembly. A heating assembly is installed at the bottom of the container assembly. When the box cover is combined to the top of the fumigation box, the inside of the fumigation box is sealed, and the medicinal material steam is transported to the fumigation plate along the air pipe.

[0004] In a preferred embodiment, the container assembly includes an outer frame attached to the circular plate and a fumigation groove located inside the circular plate. The outer frame is fixed at the edge of the top end of the fumigation groove, and the fumigation groove is recessed downward inside the circular plate;

[0005] A gap is left between the bottom end of the fumigation groove and the bottom of the inner cavity of the fumigation box, and a plurality of ultrasonic oscillators are installed in the gap. The top ends of the ultrasonic oscillators are attached to the bottom of the fumigation groove.

[0006] In a preferred embodiment, a heating assembly is installed at the bottom end of the fumigation groove. The heating assembly is located on both sides of a plurality of ultrasonic oscillators. A plurality of fastening bolts penetrate through the outer frame and the circular plate, and the container assembly is fixed on the circular plate through the fastening bolts.

[0007] In a preferred embodiment, the size of the pressing net is larger than the size of the bottom of the fumigation groove. When the edge of the pressing net is in contact with the inner wall of the fumigation groove, a gap is left between the pressing net and the bottom of the fumigation groove. A pull rod extending upward is installed in the middle of the pressing net.

[0008] In a preferred embodiment, the fumigation plate is hollow inside and is in communication with the inside of the trachea. A number of through holes are provided on the fumigation plate. A temperature sensor is installed inside the fumigation plate, and an LED screen is installed on the surface of the fumigation plate.

[0009] Technical effects and advantages of the present utility model:

[0010] By using the pressure net to extrude the medicine in cooperation with the ultrasonic wave at the bottom, the present utility model accelerates the efficiency of the effective ingredient overflow during the fumigation process and improves the effect of the effective ingredient release, thereby enhancing the absorption effect of the medicine by the user during the fumigation process. Description of the drawings

[0011] Figure 1 It is a schematic diagram of the overall structure of the present utility model;

[0012] Figure 2 It is a schematic diagram of the structure when the pressure net of the present utility model is raised;

[0013] Figure 3 It is a schematic diagram of the internal structure of the fumigation box of the present utility model.

[0014] Description of the reference numerals: 1 fumigation box, 2 box cover, 3 trachea, 4 fumigation plate, 5 annular plate, 6 pressure net, 7 outer frame, 8 fumigation tank, 9 ultrasonic oscillator, 10 heating component, 11 fastening bolt, 12 pull rod, 13 through hole, 14 handle, 15 heat dissipation hole. Detailed implementation manners

[0015] The present utility model will be further described in detail below in conjunction with the drawings and specific implementation manners. The embodiments of the present utility model are given for purposes of illustration and description, and are not exhaustive or limit the present utility model to the disclosed form. Many modifications and variations are obvious to those of ordinary skill in the art. The embodiments are selected and described to better illustrate the principles and practical applications of the present utility model, and enable those of ordinary skill in the art to understand the present utility model and design various embodiments with various modifications suitable for specific purposes.

[0016] As Figures 1 - 3 shown, a poria cocos and peach kernel granule fumigator includes a fumigation box 1 and a box cover 2 movably hinged on the fumigation box 1. A trachea 3 communicating with the inside of the fumigation box 1 is installed on the outer wall of the fumigation box 1. A fumigation plate 4 is installed at the other end of the trachea 3. An annular plate 5 is installed on the inner wall of the fumigation box 1. A container assembly for containing fumigation medicinal materials is suspended inside the annular plate 5. A movable pressure net 6 is arranged inside the container assembly. The pressure net 6 extrudes the medicinal materials to the inner cavity bottom of the container assembly. A heating component 10 is installed at the bottom of the container assembly. When the box cover 2 is combined with the top of the fumigation box 1, the inside of the fumigation box 1 is hermetically arranged, and the medicinal material steam is transported to the fumigation plate 4 along the trachea 3;

[0017] On the basis described above, during use, a fumigation water body is injected into the container assembly. Then, peach kernels, poria cocos, and other auxiliary medicinal materials are placed inside the container assembly. The pressing net 6 is lowered, and by the gravity of the pressing net 6 itself, the medicinal materials are squeezed to the bottom of the container assembly. After the box cover 2 is closed on the fumigation box 1, a sealed space is formed inside the fumigation box 1 and the box cover 2. The heating assembly 10 is used to heat the water body and the medicinal materials inside the container assembly in the container assembly to generate steam, and the steam is transported along the trachea 3 to the fumigation plate 4;

[0018] Further, sealing rings are installed on both the box cover 2 and the fumigation box 1. After the box cover 2 and the fumigation box 1 are closed, the sealing rings seal the inside of the fumigation box 1, and the generated steam can enter the trachea 3;

[0019] Among them, fastening components are also installed on the box cover 2 and the fumigation box 1. After the box cover 2 and the fumigation box 1 are combined, the fastening components fix and seal between the box cover 2 and the fumigation box 1;

[0020] A pressure relief valve is also installed on the fumigation box 1. When the container assembly inside the fumigation box 1 generates steam under heating, the air pressure inside the fumigation box 1 will increase. The pressure relief valve sets a pressure threshold, and when the pressure is too high, it relieves the pressure inside the fumigation box 1 to improve safety.

[0021] The container assembly includes an outer frame 7 attached to the annular plate 5 and a fumigation tank 8 located inside the annular plate 5. The outer frame 7 is fixed at the edge of the top of the fumigation tank 8, and the fumigation tank 8 is recessed downward inside the annular plate 5;

[0022] On the basis described above, during operation, poria cocos, peach kernels, and other auxiliary medicinal materials are placed at the bottom of the inner cavity of the fumigation tank 8, and the pressing net 6 is pressed on the medicinal materials. Since the medicinal materials will float when placed in water after drying, and the pressing net 6 can press the medicinal materials inside the water body, facilitating the release of the effective components of the medicinal materials during the steaming process.

[0023] A gap is left between the bottom end of the fumigation tank 8 and the bottom of the inner cavity of the fumigation box 1, and several ultrasonic oscillators 9 are installed in the gap. The top of the ultrasonic oscillator 9 is attached to the bottom of the fumigation tank 8;

[0024] Further, during the process of heating the fumigation tank 8, the ultrasonic oscillators 9 will be started simultaneously. The generated ultrasonic waves will pass through the fumigation tank 8 and act on the water body and the medicinal materials inside it, accelerating the heating rate of the water body and the rate of overflow of the effective components of the medicinal materials, and oscillating the heated water body into a mist state to improve the steam atomization effect.

[0025] The pressing net 6 presses the medicinal materials against the bottom of the fumigation tank 8, reducing the distance between the medicinal materials and the ultrasonic oscillators 9, enabling the medicinal materials to be subjected to a stronger action, which is beneficial to the release of the components of the medicinal materials.

[0026] A heating component 10 is installed at the bottom end of the fumigation tank 8. The heating component 10 is located on both sides of several ultrasonic oscillators 9. A number of fastening bolts 11 penetrate through the outer frame 7 and the annular plate 5. The container assembly is fixed on the annular plate 5 through the fastening bolts 11. Handles 14 are installed on both sides of the outer frame 7;

[0027] Among them, the heating component 10 is a common heating device in the prior art, installed at the bottom of the fumigation tank 8 to heat the inside of the fumigation tank 8. Part of the fumigation tank 8 is fixedly installed on the annular plate 5 through the outer frame 7. When the bottom of the inner cavity of the fumigation tank 8 shows the phenomenon of bottom burning after long-term use, the outer frame 7 and the annular plate 5 can be separated through the fastening bolts 11. After removing the fumigation tank 8 component by holding the handle 14, it can be cleaned and replaced.

[0028] Furthermore, a sealing ring is embedded at the contact part between the outer frame 7 and the annular plate 5 to seal and block the gap between the outer frame 7 and the annular plate 5, preventing the steam in the fumigation tank 8 from entering the heating component 10 and the ultrasonic oscillator 9 below through the gap;

[0029] Furthermore, a number of heat dissipation holes 15 are opened on both sides at the bottom end of the fumigation box 1. The heat dissipation holes are communicated with the area below the fumigation tank 8. Both the ultrasonic oscillator 9 and the heating component 10 are located in this area, facilitating heat dissipation after the device stops working.

[0030] The size of the pressing net 6 is larger than the size of the bottom of the fumigation tank 8. When the edge of the pressing net 6 is in contact with the inner wall of the fumigation tank 8, there is a gap between the pressing net 6 and the bottom of the fumigation tank 8. A pull rod 12 extending upward is installed in the middle of the pressing net 6;

[0031] Furthermore, after the medicinal materials are placed, they are located in the gap between the pressing net 6 and the fumigation tank 8. The pressing net 6 can be conveniently lifted and lowered through the pull rod 12.

[0032] The fumigation plate 4 is hollow inside and communicated with the inside of the trachea 3. A number of through holes 13 are opened on the fumigation plate 4. A temperature sensor is installed inside the fumigation plate 4, and an LED screen is installed on the surface of the fumigation plate 4.

[0033] When steam is generated during the fumigation process, it enters the hollow fumigation plate 4 along the trachea 3 and is discharged to the outside from the through holes 13;

[0034] Furthermore, the trachea 3 is a bendable elastic hose, and several layers of heat insulation layers are wrapped on the surface of the trachea 3, so that the trachea 3 will not be hot when being held and pulled. Users can freely adjust the angle of the fumigation plate 4 according to the usage requirements, so that the fumigation plate 4 fits the fumigation part for fumigation physiotherapy;

[0035] Among them, the heating component 10 performs intermittent heating to prevent the steam temperature generated during the fumigation process from being too high. The temperature sensor on the fumigation plate 4 will detect the steam temperature and display it on the LED screen. When the temperature display range is appropriate, the user can perform fumigation physiotherapy to avoid scalding.

[0036] Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of them. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art and related fields without creative efforts shall fall within the scope of protection of the present invention. The structures, devices, and operation methods not specifically described and explained in the present invention shall be implemented by conventional means in the art without special description and limitation.

Claims

1. A Poria cocos and peach kernel granule fumigator, comprising a fumigation box and a box cover movably hinged on the fumigation box. An air pipe communicating with the inside of the fumigation box is installed on the outer wall of the fumigation box, and a fumigation plate is installed at the other end of the air pipe. It is characterized in that, A circular plate is installed on the inner wall of the fumigation box. A container assembly for holding fumigation medicinal materials is suspended inside the circular plate. An active pressing net is arranged inside the container assembly, and the pressing net squeezes the medicinal materials to the bottom of the inner cavity of the container assembly. A heating assembly is installed at the bottom of the container assembly. When the box cover is combined to the top of the fumigation box, the inside of the fumigation box is sealed, and the medicinal material steam is transported to the fumigation plate along the trachea.

2. The Poria cocos and Prunus persica granule fumigator according to claim 1, wherein: The container assembly includes an outer frame attached to the circular plate and a fumigation groove located inside the circular plate. The outer frame is fixed at the edge of the top end of the fumigation groove, and the fumigation groove is recessed downward inside the circular plate. A gap is left between the bottom end of the fumigation groove and the bottom of the inner cavity of the fumigation box, and several ultrasonic oscillators are installed in the gap. The top ends of the ultrasonic oscillators are attached to the bottom of the fumigation groove.

3. The fumigator for Poria cocos and Prunus persicae granules according to claim 2, wherein: A heating assembly is installed at the bottom end of the fumigation groove. The heating assembly is located on both sides of several ultrasonic oscillators. Several fastening bolts penetrate through the outer frame and the circular plate, and the container assembly is fixed on the circular plate through the fastening bolts.

4. The Poria cocos and Prunus persica granule fumigator according to claim 2, characterized in that: The size of the pressing net is larger than the size of the bottom of the fumigation groove. When the edge of the pressing net is in contact with the inner wall of the fumigation groove, a gap is left between the pressing net and the bottom of the fumigation groove. A pull rod extending upward is installed in the middle of the pressing net.

5. The Poria cocos and Prunus persica granule fumigator according to claim 1, characterized in that: The inside of the fumigation plate is hollow and communicates with the inside of the trachea. Several through holes are opened on the fumigation plate. A temperature sensor is installed inside the fumigation plate, and an LED screen is installed on the surface of the fumigation plate.