Aromatherapy hyperbaric oxygen chamber nursing structure

By using steam pretreatment combined with a vibration structure in a hyperbaric oxygen chamber, the problem of decreased drug purity and quality was solved, achieving efficient drug treatment and improving therapeutic effects.

CN223516579UActive Publication Date: 2025-11-07HEBEI PROVINCIAL VETERANS GENERAL HOSPITAL
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Patent Information

Application Number
CN202422880217.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-26
Publication Date
2025-11-07
Estimated Expiration
2034-11-26

AI Technical Summary

Technical Problem

In existing technologies, rinsing medicinal materials with room temperature water fails to effectively remove impurities, resulting in a decrease in the purity and quality of the medicinal solution, which affects the therapeutic effect of hyperbaric oxygen therapy.

Method used

The method combines vibration structure and steam treatment. Steam is injected into the hyperbaric oxygen chamber through a steamer, exhaust fan and pipeline system to pre-treat the medicinal materials. The vibration structure avoids the accumulation of medicinal materials, ensures full penetration of the medicinal materials and reduces volatile odor components.

Benefits of technology

This improved the purity and quality of the medication, avoided energy waste, ensured the therapeutic effect in the hyperbaric oxygen chamber, and met the requirements of high-quality medical care.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an aromatherapy hyperbaric oxygen chamber nursing structure, which belongs to the technical field of hyperbaric oxygen chamber nursing and comprises a hyperbaric oxygen chamber body, a shell is fixedly connected to the outer side wall of the hyperbaric oxygen chamber body, a conveying structure is arranged on the shell, and a vibration structure is arranged on the conveying structure. The conveying structure comprises a steamer fixedly connected to the inner bottom wall of the shell, a first exhaust fan is fixedly connected to the outer side wall of the shell, and a first pipeline is fixedly connected to the outer side wall of the first exhaust fan. According to the hyperbaric oxygen chamber, through cooperative use of the shell and the steamer, steam is conveniently introduced into the hyperbaric oxygen chamber body through the first pipeline by the first exhaust fan, and through cooperative use of the second pipeline and the second exhaust fan, the steam in the shell is conveniently introduced into the protective shell, so that medicinal materials above the supporting plate are pre-treated by the steam of which the medicinal effect is reduced; and meanwhile, steam with the too low medicine effect is used for pretreating the medicinal materials, and therefore waste of energy and resources is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to high pressure oxygen cabin nursing technical field, and specifically relates to a kind of aromatherapy high pressure oxygen cabin nursing structure. BACKGROUND

[0002] In modern medical practice, aromatherapy as a complementary and alternative medicine, has received more and more attention, and aromatherapy uses the aroma emitted by plant extracts to positively affect the psychological and physiological state of patients through inhalation, and high pressure oxygen cabin is commonly used in the treatment of various diseases in clinical practice to create a special treatment environment for patients.

[0003] In the prior art, normal temperature water is generally used to flush the medicinal materials, and then the flushed medicinal materials are subjected to steaming treatment, and the steam generated during the steaming process is introduced into the high pressure oxygen cabin. However, due to the limited flushing effect of normal temperature water on medicinal materials, some impurities attached to the medicinal materials cannot be effectively removed, and in the subsequent steaming stage, these impurities that have not been cleaned will be dissolved together with the effective components of the medicinal materials, which increases the impurity content in the medicinal liquid and reduces the relative proportion of the effective components, thereby seriously affecting the purity and quality of the medicinal liquid and hindering the improvement of the treatment effect in the high pressure oxygen cabin and failing to meet the requirements of high-quality medical care.

[0004] To solve the above problems, an aromatherapy high pressure oxygen cabin nursing structure is proposed in the present application. UTILITY MODEL CONTENTS

[0005] To overcome the above technical problems existing in the prior art, the utility model proposes an aromatherapy high pressure oxygen cabin nursing structure.

[0006] To achieve the above purpose, the utility model adopts the following technical solutions:

[0007] An aromatherapy high pressure oxygen cabin nursing structure includes a high pressure oxygen cabin body, an outer shell fixedly connected to the outer side wall of the high pressure oxygen cabin body, a conveying structure provided on the outer shell, and a vibration structure provided on the conveying structure.

[0008] The conveying structure includes a steamer fixedly connected to the inner bottom wall of the outer shell, a first exhaust fan fixedly connected to the outer side wall of the outer shell, a first pipeline fixedly connected to the outer side wall of the first exhaust fan, a spray pipe fixedly connected to the outer side wall of the first pipeline, the outer side wall of the first pipeline and the inner bottom wall of the high pressure oxygen cabin body fixedly connected, a second pipeline fixedly connected to the outer side wall of the outer shell, a second exhaust fan fixedly connected to one end of the second pipeline away from the outer shell, a protective shell fixedly connected to the outer side wall of the second exhaust fan, and a supporting plate provided in the protective shell.

[0009] Preferably, the inner side wall of the first pipeline is fixedly connected with a support column, and a fan blade is rotationally connected to the end of the support column away from the first pipeline, so that the gas sprayed from the first pipeline is accelerated to diffuse in the high-pressure oxygen cabin body.

[0010] Preferably, the vibration structure comprises a motor fixedly connected to the inner side wall of the protection shell, an output end of the motor is fixedly connected with a rotating disc, an outer side wall of the rotating disc is fixedly connected with a moving column, an outer side wall of the moving column is slidably connected with a connecting rod, one end of the connecting rod is fixedly connected with a connecting plate, the bottom of the connecting plate is fixedly connected with a protruding block, an outer side wall of the protruding block is fixedly connected with a fixed column, and an outer side wall of the fixed column is movably connected with the inner side wall of the supporting plate, so that the supporting plate vibrates in the protection shell, and the medicine is prevented from accumulating on the supporting plate.

[0011] Preferably, the inner side wall of the protection shell is fixedly connected with a moving seat, and the bottom of the supporting plate is fixedly connected with a limiting rod, and the inner side wall of the moving seat is slidably connected with the outer side wall of the limiting rod, so that the supporting plate is limited and prevented from being stuck when moving.

[0012] Preferably, an outer side wall of the supporting plate is fixedly connected with a handle, so that the supporting plate is convenient for the operator to disassemble.

[0013] Preferably, a top inner wall of the protection shell is fixedly connected with a flow guide plate, and an inner side wall of the protection shell is fixedly connected with a water storage tank, so that the internal liquefied steam is guided, and the liquid is prevented from dropping on the medicine above the supporting plate.

[0014] Preferably, an inner side wall of the protection shell is fixedly connected with a heat insulation sleeve, and the handle is located in the heat insulation sleeve, so that the heat in the protection shell is prevented from being transmitted to the inside of the motor.

[0015] In summary, the technical effects and advantages of the aromatic therapy high-pressure oxygen cabin nursing structure are as follows: the shell and the steamer are used in cooperation, the first exhaust fan is convenient for transmitting the steam into the high-pressure oxygen cabin body through the first pipeline, the second pipeline and the second exhaust fan are used in cooperation, the steam in the shell is convenient for being transmitted into the inside of the protection shell, the steam with reduced medicinal effect is used for pretreating the medicine above the supporting plate, the small amount of volatile peculiar smell components on the medicine are removed, the steam with reduced medicinal effect is used for pretreating the medicine, and energy and resource waste are avoided.

[0016] Through starting the motor, the rotating disc drives the moving column to rotate around the center axis of the rotating disc, through the cooperation of the moving column and the connecting plate, the supporting plate reciprocates in the horizontal direction, thereby driving the slight movement of the medicinal materials on the surface of the supporting plate, avoiding the accumulation of the medicinal materials on the surface of the supporting plate, and enabling the medicinal materials to fully penetrate into the medicinal materials. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is a whole structure schematic view of the utility model;

[0018] Figure 2 It is a first exhaust fan and related structure schematic view of the utility model;

[0019] Figure 3 It is a supporting plate and related structure schematic view of the utility model;

[0020] Figure 4 It is a first pipeline and related structure schematic view of the utility model;

[0021] Figure 5 It is a spray pipe and related structure schematic view of the utility model;

[0022] Figure 6 It is a rotating disc and related structure schematic view of the utility model.

[0023] In the drawing:

[0024] 1, high pressure oxygen cabin body; 2, shell;

[0025] 3, conveying structure; 301, steamer; 302, first exhaust fan; 303, first pipeline; 304, spray pipe; 305, second pipeline; 306, second exhaust fan; 307, protective shell; 308, supporting plate; 309, support column; 310, fan blade;

[0026] 4, vibration structure; 401, motor; 402, rotating disc; 403, moving column; 404, connecting rod; 405, connecting plate; 406, lug; 407, fixed column; 408, moving seat; 409, limiting rod; 410, handle; 411, deflector; 412, water storage tank; 413, heat insulation sleeve. DETAILED DESCRIPTION

[0027] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model, and obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments.

[0028] Reference Figure 1 , Figure 2 and Figure 4The utility model provides an aromatherapy hyperbaric oxygen chamber nursing structure, including the hyperbaric oxygen chamber body 1, the outside wall of hyperbaric oxygen chamber body 1 is fixedly connected with the shell 2, be provided with the delivery structure 3 on the shell 2, be provided with vibration structure 4 on the delivery structure 3,

[0029] The delivery structure 3 includes a steamer 301 fixedly connected to the inner bottom wall of the shell 2, the steamer 301 is a DL-001 type medical steam generator, a first exhaust fan 302 is fixedly connected to the outer side wall of the shell 2, the first exhaust fan 302 is an APB20-4-1, the first exhaust fan 302 penetrates the outer side wall of the shell 2, a first pipe 303 is fixedly connected to the outer side wall of the first exhaust fan 302, a valve is arranged on the outer side wall of the first pipe 303, a plurality of nozzles 304 are arranged on the outer side wall of the first pipe 303, the plurality of nozzles 304 are uniformly arranged on the outer side wall of the first pipe 303, and the plurality of nozzles 304 are located inside the hyperbaric oxygen chamber body 1, the outer side wall of the first pipe 303 is fixedly connected to the inner bottom wall of the hyperbaric oxygen chamber body 1, and the first pipe 303 penetrates the outer side wall of the hyperbaric oxygen chamber body 1, a second pipe 305 is fixedly connected to the outer side wall of the shell 2, the second pipe 305 is an APB20-4-1, a valve is arranged on the second pipe 305, the second pipe 305 and the first pipe 303 are located on both sides of the top of the shell 2, and the second pipe 305 and the first pipe 303 are symmetrically distributed about the central axis of the shell 2, a second exhaust fan 306 is fixedly connected to one end of the second pipe 305 away from the shell 2, a protective shell 307 is fixedly connected to the outer side wall of the second exhaust fan 306, and the second exhaust fan 306 penetrates the outer side wall of the protective shell 307, a supporting plate 308 is arranged in the protective shell 307, a plurality of holes are arranged on the surface of the supporting plate 308, and two supporting plates 308 are arranged in the protective shell 307, and the two supporting plates 308 are arranged in a vertical manner.

[0030] In use, medicinal materials are added to the steamer 301, the first exhaust fan 302 is started, the valve above the second pipe 305 is closed, steam in the shell 2 is transmitted into the first pipe 303, and then the steam is sprayed into the hyperbaric oxygen chamber body 1 through the nozzles 304, after a period of time, the medicinal effect of the steam in the shell 2 is reduced, the valve above the second pipe 305 is opened, and the second exhaust fan 306 is started, so that the steam with reduced medicinal effect in the shell 2 is transmitted into the protective shell 307 through the second pipe 305, thereby steam heating treatment is performed on the medicinal materials above the supporting plate 308, and a small amount of volatile odor components on the medicinal materials are removed.

[0031] Reference Figure 5The inner side wall of the first pipeline 303 is fixedly connected with support columns 309, the number of the support columns 309 is equal to that of the spray pipes 304, and the support columns 309 are one-to-one corresponding, the ends, away from the first pipeline 303, of the support columns 309 are all rotationally connected with flaps 310, the number of the flaps 310 is equal to that of the support columns 309, and the flaps 310 are one-to-one corresponding, and the center points of the spray pipes 304, the support columns 309 and the flaps 310 are located on the same straight line, when the steam is sprayed out through the spray pipes 304, the flaps 310 are driven to rotate on the support columns 309, so that the gas flow is accelerated, and then the gas diffusion is promoted.

[0032] With reference to Figure 3 and Figure 6 The vibration structure 4 comprises a motor 401 fixedly connected to the inner side wall of the protection shell 307, the output end of the motor 401 is fixedly connected with a rotating disc 402, the outer side wall of the rotating disc 402 is fixedly connected with a moving column 403, the moving column 403 is located at the edge of the outer side wall of the rotating disc 402, the outer side wall of the moving column 403 is slidingly connected with a connecting rod 404, one end of the connecting rod 404 is fixedly connected with a connecting plate 405, the connecting plate 405 is provided with two, the two connecting plates 405 are symmetrically distributed with the central axis of the connecting rod 404 as the center, the bottom of the connecting plate 405 is fixedly connected with a plurality of protrusions 406, the plurality of protrusions 406 are divided into two groups, each group of protrusions 406 is installed on the bottom of each connecting plate 405, the outer side wall of the protrusion 406 is fixedly connected with a fixed column 407, the number of the fixed column 407 is equal to that of the protrusion 406, and the fixed column 407 is one-to-one corresponding, the outer side wall of the fixed column 407 is movably connected with the inner side wall of the supporting plate 308, the supporting plate 308 is inserted on the connecting plate 405 through the fixed column 407, in use, the motor 401 is started, the output end of the motor 401 drives the rotating disc 402 to rotate, the rotating disc 402 drives the moving column 403 to rotate around the central axis of the rotating disc 402, so that the moving column 403 drives the connecting rod 404 to move reciprocatingly in the horizontal direction, the connecting plate 405 moves synchronously with the connecting rod 404, the supporting plate 308 is sleeved on the fixed column 407, so that the supporting plate 308 moves reciprocatingly with the connecting plate 405, thereby driving the medicinal materials on the surface of the supporting plate 308 to move slightly, avoiding the accumulation of the medicinal materials on the surface of the supporting plate 308, so that the medicinal materials can be fully penetrated into the medicinal materials.

[0033] With reference to Figure 3 The inner side wall of the protection shell 307 is fixedly connected with moving seats 408, each group of moving seats 408 is provided with two, the two groups of moving seats 408 are located in the interior of the protection shell 307 and are distributed in an up-down manner, the bottom of the supporting plate 308 is fixedly connected with limit rods 409, the number of the moving seats 408 is the same as that of the limit rods 409, and the moving seats 408 and the limit rods 409 are one-to-one corresponding, the inner side wall of the moving seat 408 is slidingly connected with the outer side wall of the limit rod 409, and the outer side wall of the limit rod 409 is matched with the inner side wall of the moving seat 408, so as to limit the supporting plate 308, avoiding the supporting plate 308 from being stuck when moving.

[0034] With reference to Figure 3 , the outer side wall of the supporting plate 308 is fixedly connected with a handle 410, the handle 410 is provided with four, the four handles 410 are divided into two groups, and the two groups of handles 410 are located at the top of the two supporting plates 308 respectively. By pulling the handle 410, the supporting plate 308 is separated from the protective shell 307, so as to facilitate the taking out and placing of the medicinal materials on the surface of the supporting plate 308.

[0035] With reference to Figure 2 and Figure 3 , the inner top wall of the protective shell 307 is fixedly connected with a flow guide plate 411, the longitudinal section of the flow guide plate 411 is inverted V-shaped, the inner side wall of the protective shell 307 is fixedly connected with a water storage tank 412, the water storage tank 412 is provided with two, and the two water storage tanks 412 are located below the two sides of the flow guide plate 411 respectively. When the steam flows from bottom to top and contacts the flow guide plate 411, water droplets are formed by condensation of the steam. By guiding the water droplets, the water droplets flow into the inside of the water storage tank 412, so as to avoid the water droplets directly dropping on the medicinal materials.

[0036] With reference to Figure 2 and Figure 3 , the inner side wall of the protective shell 307 is fixedly connected with a heat insulation sleeve 413, the handle 410 is located inside the heat insulation sleeve 413, the outer wall of the motor 401 is attached to the inner wall of the heat insulation sleeve 413, and the heat insulation sleeve 413 avoids that the steam flowing from bottom to top directly impacts on the motor 401, so as to reduce the heat transfer from the inside of the protective shell 307 to the inside of the motor 401.

[0037] Working principle: in use, the medicinal material is added into the steamer 301, the valve above the second pipeline 305 is closed, the first exhaust fan 302 is started, the steam in the shell 2 is transmitted into the first pipeline 303, and then the steam is sprayed into the high-pressure oxygen cabin body 1 through the spray pipe 304, when the steam is sprayed out through the spray pipe 304, the fan blade 310 is driven to rotate on the support column 309, so as to accelerate the flow of gas, and then promote the diffusion of gas, after a period of time, the steam in the shell 2 is reduced, the valve above the second pipeline 305 is opened, the second exhaust fan 306 is started, the steam with reduced medicinal effect in the shell 2 is transmitted into the protective shell 307 through the second pipeline 305, so as to perform steam heat treatment on the medicinal material above the supporting plate 308, which is convenient for removing a small amount of volatile odor components on the medicinal material, at the same time, the motor 401 is started, the output end of the motor 401 drives the rotating disc 402 to rotate, the rotating disc 402 drives the moving column 403 to rotate around the center axis of the rotating disc 402, the moving column 403 drives the connecting rod 404 to move back and forth in the horizontal direction, the connecting plate 405 moves synchronously with the connecting rod 404, the supporting plate 308 is sleeved on the fixed column 407, so that the supporting plate 308 moves back and forth with the connecting plate 405, thereby driving the medicinal material on the surface of the supporting plate 308 to move slightly, avoiding the accumulation of the medicinal material on the surface of the supporting plate 308, so that the medicinal material can be fully penetrated into the medicinal material, after the pretreatment of the medicinal material, the protective shell 307 is opened, the supporting plate 308 is moved out of the protective shell 307 by pulling the handle 410, and the medicinal material above the supporting plate 308 is placed into the steamer 301, so that the device continues to treat the patient in the high-pressure oxygen cabin body 1;

[0038] The above only describes the preferred embodiments of the present application, and is not intended to limit the present application, any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. An aromatherapy hyperbaric chamber care structure comprising a hyperbaric chamber body (1), characterized in that, The outer side wall of the high-pressure oxygen cabin body (1) is fixedly connected with an outer shell (2), and the outer shell (2) is provided with a conveying structure (3) for steam transmission, and the conveying structure (3) is provided with a vibration structure (4) for preventing the accumulation of medicinal materials; The conveying structure (3) comprises a steamer (301) fixedly connected to the inner bottom wall of the outer shell (2), the outer side wall of the outer shell (2) is fixedly connected with a first exhaust fan (302), the outer side wall of the first exhaust fan (302) is fixedly connected with a first pipeline (303), the outer side wall of the first pipeline (303) is fixedly connected with a spray pipe (304), the outer side wall of the first pipeline (303) is fixedly connected with the inner bottom wall of the high-pressure oxygen cabin body (1), the outer side wall of the outer shell (2) is fixedly connected with a second pipeline (305), one end of the second pipeline (305) away from the outer shell (2) is fixedly connected with a second exhaust fan (306), the outer side wall of the second exhaust fan (306) is fixedly connected with a protective shell (307), and the inside of the protective shell (307) is provided with a supporting plate (308).

2. An aromatherapy hyperbaric chamber treatment structure according to claim 1, wherein, The inner side wall of the first pipeline (303) is fixedly connected with a supporting column (309), and one end of the supporting column (309) away from the first pipeline (303) is rotatably connected with a fan blade (310).

3. An aromatherapy hyperbaric chamber treatment structure according to claim 1, wherein, The vibration structure (4) comprises a motor (401) fixedly connected to the inner side wall of the protective shell (307), the output end of the motor (401) is fixedly connected with a rotating disc (402), the outer side wall of the rotating disc (402) is fixedly connected with a moving column (403), the outer side wall of the moving column (403) is slidably connected with a connecting rod (404), one end of the connecting rod (404) is fixedly connected with a connecting plate (405), the bottom of the connecting plate (405) is fixedly connected with a protruding block (406), the outer side wall of the protruding block (406) is fixedly connected with a fixed column (407), and the outer side wall of the fixed column (407) is movably connected with the inner side wall of the supporting plate (308).

4. An aromatherapy hyperbaric chamber treatment structure according to claim 1, wherein, The inner side wall of the protective shell (307) is fixedly connected with a moving seat (408), the bottom of the supporting plate (308) is fixedly connected with a limiting rod (409), and the inner side wall of the moving seat (408) is slidably connected with the outer side wall of the limiting rod (409).

5. An aromatherapy hyperbaric chamber treatment structure according to claim 1, wherein, The outer side wall of the supporting plate (308) is fixedly connected with a handle (410).

6. An aromatherapy hyperbaric chamber treatment structure according to claim 1, wherein, The top inner wall of the protective shell (307) is fixedly connected with a flow guide plate (411), and the inner side wall of the protective shell (307) is fixedly connected with a water storage tank (412).

7. An aromatherapy hyperbaric chamber treatment structure according to claim 3, wherein, The inner side wall of the protective shell (307) is fixedly connected with a heat insulation sleeve (413), and the motor (401) is located in the heat insulation sleeve (413).