A dermatological medicine atomizing fumigation device
By using a cover plate and a sealing cap to form a highly sealed cavity in the drug atomization fumigation device, combined with a flexible support plate and unit fumigation components, the problem of the inflexibility of existing equipment is solved, achieving a fumigation effect with high sealing and high fit, and improving the targeting and efficiency of fumigation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- HARBIN ENG UNIV
- Filing Date
- 2023-10-10
- Publication Date
- 2026-07-21
AI Technical Summary
Existing drug atomization fumigation equipment cannot flexibly adjust specific fumigation areas while maintaining a high level of sealing, thus failing to achieve highly fitted and targeted fumigation.
A dermatological drug atomization fumigation device was designed, comprising a hinged drug atomization fumigation tank and a cover plate, with a fumigation support platform structure and flexible fumigation components installed inside. A highly sealed cavity is formed by the cover plate and sealing cap, and high sealing and high fit fumigation are achieved by combining the flexible support plate and unit fumigation components.
It achieves flexible adjustment of specific fumigation areas while maintaining a high level of sealing, resulting in highly fitted and targeted fumigation, avoiding drug waste, and enhancing the fumigation effect.
Smart Images

Figure CN117085213B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of skin fumigation technology, and more specifically, to a dermatological drug atomization fumigation device. Background Technology
[0002] Drug atomization fumigation refers to fumigation using the mist produced after boiling. The medicinal heat acts directly on the fumigated area to achieve the effects of dilating local blood vessels, promoting blood circulation, warming and opening blood vessels, detoxifying and sterilizing, relieving itching, cleaning wounds, reducing swelling and relieving pain, and ultimately achieving the purpose of treating diseases, preventing diseases, maintaining health, and beautifying the skin. It can be widely used in the treatment of various skin diseases throughout the body and has good efficacy. In the existing technology, drug atomization fumigation equipment cannot guarantee that, on the basis of high sealing, it can be flexibly adjusted for specific fumigation sites to achieve highly fitted and targeted fumigation.
[0003] For example, there are mature products on the market such as "Chinese herbal fumigation machines" (product number 10082918254787 and item number LJYKsXn4Nak8 / 10 on JD.com), which can only perform fumigation as a whole and cannot be flexibly adjusted for specific fumigation areas to achieve highly fitting and targeted fumigation. For example, the "Dermatological Drug Atomizing Fumigation Device" with application publication number CN115998601A, although it can perform fumigation on localized areas, has poor all-round adaptability. When used on different parts of the body, such as the feet, legs, and back, it needs to be flexibly adjusted to achieve highly fitted and targeted fumigation, thus failing to achieve highly sealed fumigation. Therefore, in response to the problem that "existing drug atomization fumigation equipment cannot guarantee high sealing while allowing for flexible adjustments to specific fumigation sites to achieve highly fitting and targeted fumigation", a drug atomization fumigation device for dermatology is proposed. Summary of the Invention
[0004] Technical Problem: The purpose of this invention is to address the shortcomings of existing technologies: existing drug atomization fumigation equipment cannot guarantee high sealing while allowing for flexible adjustments to specific fumigation sites to achieve highly fitting and targeted fumigation. Therefore, this invention proposes a drug atomization fumigation device for dermatology.
[0005] The specific technical solution is as follows: A dermatological drug atomization fumigation device includes a drug atomization fumigation canister and a cover plate connected by hinges. The drug atomization fumigation canister and the cover plate seal the fumigation chamber inside the drug atomization fumigation canister into a high-sealing chamber, which forms an external barrier against the escape of the atomized drug. A fumigation support platform structure is installed inside the fumigation chamber. The fumigation support platform structure includes a sealing cover, a fumigation tank, and a seating support platform. The fumigation tank is located on the seating support platform, and the sealing cover is hinged to the seating support platform on the side of the fumigation tank. The sealing cover is used to seal the fumigation tank, forming an internal barrier against the escape of the atomized drug. The fumigation tank is equipped with a flexible fumigation assembly, which includes a flexible support plate and multiple unit fumigation components. The multiple unit fumigation components are arrayed on the flexible support plate. The unit fumigation components are used to introduce the atomized medicine into the part of the person to be fumigated for fumigation. The flexible support plate is elastically connected to the inside of the fumigation tank. As the part of the person to be fumigated enters the flexible fumigation assembly, the flexible support plate will drive the multiple unit fumigation components to flexibly deform and wrap around the part of the person to be fumigated, so as to flexibly adjust to the part of the person to be fumigated. Combined with the use of multiple unit fumigation components in a local area, a highly fitted and targeted fumigation can be achieved. After a person enters the fumigation chamber, a cover is used to seal the chamber, creating a highly sealed environment that forms an external barrier against the escape of the atomized drug. As the person's fumigated area enters the fumigation tank, a secondary seal is applied using a sealing cover, forming an internal barrier against the escape of the atomized drug. In other words, the external barrier against the escape of the atomized drug formed by the cover and the fumigation chamber, combined with the sealing cover and the fumigation tank, forms an internal barrier against the escape of the atomized drug, achieving highly sealed fumigation from localized to overall coverage. As the person's fumigated area enters the fumigation tank, a sealing cover is used to further seal the internal barrier against the escape of the atomized drug. During the process of the person's fumigated area entering the flexible fumigation components, a flexible support plate causes multiple fumigation units to deform flexibly, wrapping around the person's fumigated area, allowing for flexible adjustment based on the specific area being fumigated. The system combines multiple localized fumigation units to achieve highly targeted fumigation with excellent fit. Simultaneously, the external barrier formed by the cover and fumigation chamber, along with the internal barrier formed by the sealing cover and fumigation tank, ensures highly sealed fumigation from localized to overall coverage. This allows for flexible adjustments to specific fumigation areas while maintaining a high level of sealing, resulting in highly targeted fumigation. As the person being fumigated enters the fumigation tank, their body rests against the individual fumigation units. These units massage acupoints, and the atomized medication adheres more closely to the affected area, leading to more effective and targeted fumigation. This avoids the need for excessive medication in large fumigation spaces, preventing waste.
[0006] In the technical solution of the present invention, the unit fumigation component includes a drug atomizing discharge head, an air guide tube, a sleeve, and an elastic support base; the drug atomizing discharge head is installed at the end of the air guide tube and is in communication with the air guide tube; the elastic support base is sleeved and fixed at the end of the air guide tube away from the drug atomizing discharge head, and a flexible connecting tube is connected to the air guide tube on the side of the elastic support base, the flexible connecting tube being connected to the drug atomizing supply device of the drug atomizing fumigation tank; the sleeve is movably sleeved on the air guide tube and connected to the elastic support base.
[0007] Furthermore, the flexible support plate is made of rubber, and multiple insertion and fixing holes are provided on the flexible support plate in conjunction with multiple unit fumigation components, with the sleeve fixed inside the insertion and fixing holes.
[0008] Furthermore, the elastic support includes a spring and a support ring. The support ring is sleeved and fixed to the end of the air guide tube, and the spring is sleeved on the air guide tube. One end of the spring is connected to the support ring, and the other end is connected to the end of the sleeve.
[0009] Furthermore, the drug nebulizer discharge head includes a pre-nebulization discharge head and a post-nebulization discharge head, which are fixedly connected together and interconnected.
[0010] The optimized version includes a slide plate with multiple elastic support strips fixed on it. The multiple elastic support strips are evenly distributed on the slide plate. Multiple limiting grooves are formed between the multiple elastic support strips. Multiple discharge holes B are opened inside the limiting grooves and are connected to the drug atomization discharge head.
[0011] The drug atomization discharge head includes a support column, and a through-shaped material guiding cavity is opened inside the support column. One end of the material guiding cavity is connected to the discharge hole B, and the other end is connected to the air guiding tube. Multiple discharge holes A are opened around the support column. One end of the discharge hole A is connected to the outside of the support column, and the other end is connected to the material guiding cavity.
[0012] In the technical solution of the present invention, a through hole is provided at the top of the drug atomizing fumigation tank, an elastic sealing strip is installed inside the through hole, and a through hole is provided inside the elastic sealing strip; multiple support feet are fixed at the bottom of the drug atomizing fumigation tank in an array; the drug atomizing fumigation tank and the cover plate are connected by multiple hinges.
[0013] In the technical solution of the present invention, the seating support platform includes a backrest, a buttock support plate, a leg support plate, and a foot support plate; the buttock support plate is fixed to the bottom of the backrest, the buttock support plate and the backrest are perpendicular to each other, and the buttock support plate is set horizontally; the leg support plate is fixed to the buttock support plate; the foot support plate is fixed to the bottom of the leg support plate, the foot support plate is mounted on a mounting plate, and the mounting plate is fixed to the bottom of the fumigation chamber.
[0014] Furthermore, the fumigation tank includes a backrest fumigation tank, a buttocks fumigation tank, a leg fumigation tank, and a foot fumigation tank; the backrest fumigation tank is located on the backrest; the buttocks fumigation tank is located on the buttocks support plate; the leg fumigation tank is located on the foot cloth support platform; and the foot fumigation tank is located on the foot cloth support platform; multiple sealing covers are provided, each corresponding to one of the backrest fumigation tank, buttocks fumigation tank, leg fumigation tank, and foot fumigation tank.
[0015] Compared with existing technologies, the dermatological drug atomizing fumigation device of the present invention can achieve the following: After a person enters the fumigation chamber, a cover plate is used to seal the chamber, creating a highly sealed chamber that forms an external barrier against the escape of atomized drugs. Once the person's fumigated area enters the fumigation tank, a sealing cover is used for a secondary seal, forming an internal barrier against the escape of atomized drugs. In short, the external barrier against the escape of atomized drugs formed by the cover plate and the fumigation chamber, combined with the sealing cover and the fumigation tank, forms an internal barrier against the escape of atomized drugs, achieving highly sealed fumigation from localized to overall coverage. As the person's fumigation area enters the fumigation chamber, a sealing cover is used to seal it, forming an internal barrier against the escape of the atomized drug. During the process of the person's fumigation area entering the flexible fumigation assembly, a flexible support plate causes multiple fumigation units to deform flexibly, wrapping around the person's fumigation area. This allows for flexible adjustment to the fumigation area, and combined with the use of multiple local fumigation units, achieves highly fitted and targeted fumigation. Simultaneously, the external atomized drug escape barrier formed by the cover and fumigation chamber, together with the sealing cover and fumigation chamber, forms an internal atomized drug escape barrier, achieving highly sealed fumigation from local to overall coverage. This ensures that while maintaining a high level of sealing, flexible adjustments can be made to specific fumigation areas, achieving highly fitted and targeted fumigation. During the process of a person's fumigation area entering the fumigation tank, the area will be pressed against the individual fumigation units. On the one hand, multiple individual fumigation units can massage acupoints, and on the other hand, the atomized medicine can be more closely attached to the area being fumigated, resulting in more effective and targeted fumigation. This avoids the need for more medicine in a large fumigation space, which would otherwise lead to waste. Attached Figure Description
[0016] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used in conjunction with embodiments of the invention to explain the invention and do not constitute a limitation thereof. In the drawings: Figure 1 This is a schematic diagram of the structure of a dermatological drug atomizing fumigation device in one embodiment of the present invention; Figure 2 for Figure 1 A schematic diagram of the structure after the cover is opened; Figure 3 for Figure 1 A schematic diagram of the structure after the cover plate has been removed; Figure 4 for Figure 3 A schematic diagram of the structure after the sealing cap has been removed; Figure 5 This is a schematic diagram of the structure of a flexible fumigation assembly in one embodiment of the present invention; Figure 6 for Figure 5 Enlarged structural diagram at point A in the middle; Figure 7 for Figure 5 Schematic diagram of the structure of the fumigation unit in the middle; Figure 8 for Figure 7 A schematic diagram of the structure after the sleeve has been removed; Figure 9 for Figure 7 Schematic diagram of the structure of the medium elastic support base; Figure 10 for Figure 7 Schematic diagram of the structure of the Chinese medicine atomizing head; Figure 11 This is a demonstration diagram of the flexible fumigation component adapting and wrapping the object to be fumigated in an embodiment of the present invention (Note: A is the object to be fumigated just entering the flexible fumigation component; B is the object to be fumigated already entering the flexible fumigation component; C is the object to be fumigated completely entering the flexible fumigation component).
[0017] The attached diagram lists the components represented by each number as follows: Drug atomizing fumigation tank body 100; elastic sealing strip 110, through hole 120, support foot 130, fumigation chamber 140; Cover plate 200; Hinges 210; Fumigation support platform structure 300; sealing cover 310, fumigation tank 320 (backrest fumigation tank 321, buttocks fumigation tank 322, leg fumigation tank 323, foot fumigation tank 324), seating support platform 330 (backrest 331, buttocks support plate 332, leg support plate 333, foot cloth support platform 334), mounting plate 340; Flexible fumigation assembly 400; flexible support plate 410; unit fumigation component 420; drug atomization discharge head 421; air guide tube 422; sleeve 423; flexible connecting tube 424; elastic support seat 425; drug atomization pre-discharge head 4211 (support column 42111, discharge hole A 42112); drug atomization post-discharge head 4212 (slide plate 42121, elastic support strip 42122, discharge hole B 42123, limiting groove 42124); spring 4251; support ring 4252. Implementation
[0018] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to specific embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without inventive effort are within the scope of protection of this invention.
[0019] In embodiments of the present invention, such as Figure 1-3 As shown: A dermatological drug atomization fumigation device includes a drug atomization fumigation canister 100 and a cover plate 200 connected by hinges. The drug atomization fumigation canister 100 and the cover plate 200 seal the fumigation chamber 140 opened inside the drug atomization fumigation canister 100 into a high-sealing chamber. The high-sealing chamber is used to form an external barrier to prevent the atomized drug from escaping. Based on the above description, it can be concluded that: the fumigation chamber 140 inside the drug atomizing fumigation canister 100 is opened by the cover plate 200. After a person enters, the fumigation chamber 140 is sealed by the cover plate 200, so that the fumigation chamber 140 is made into a highly sealed chamber, and the highly sealed chamber forms an external barrier to prevent the atomized drug from escaping. Furthermore, it should be noted that the method of adding the drug to the drug atomizing fumigation tank 100, the method of boiling the drug, and the method of transmitting the generated mist into the fumigation chamber 140 are all existing technologies. Their detailed structures can be found in existing literature and journals, and they can also be purchased directly on the market, or the components can be purchased on the market to assemble them. These are not the features to be protected by this invention, and will not be described in detail here, nor are they shown in the accompanying drawings. like Figure 2 and Figure 3 As shown: A fumigation support platform structure 300 is installed inside the fumigation chamber 140. The fumigation support platform structure 300 includes a sealing cover 310, a fumigation tank 320, and a seating support platform 330. The fumigation tank 320 is opened on the seating support platform 330, and the sealing cover 310 is hinged to the seating support platform 330 on the side of the fumigation tank 320. The sealing cover 310 is used to seal the fumigation tank 320, forming an internal atomized drug escape barrier. Based on the above description, it can be concluded that: after a person enters the fumigation chamber 140, the cover plate 200 is used to seal the fumigation chamber 140, making the fumigation chamber 140 a highly sealed chamber, forming an external barrier against the escape of atomized drugs; when the part of the person to be fumigated enters the fumigation tank 320, the sealing cover 310 is used for secondary sealing, forming an internal barrier against the escape of atomized drugs; that is, the external barrier against the escape of atomized drugs formed by the cover plate 200 and the fumigation chamber 140, combined with the sealing cover 310 and the fumigation tank 320, forms an internal barrier against the escape of atomized drugs, achieving highly sealed fumigation from local to overall; like Figure 5-7 As shown in Figure 11: The fumigation tank 320 is equipped with a flexible fumigation component 400, which includes a flexible support plate 410 and multiple unit fumigation components 420. The multiple unit fumigation components 420 are arrayed on the flexible support plate 410. The unit fumigation components 420 are used to introduce the atomized medicine into the part of the person to be fumigated for fumigation. The flexible support plate 410 is elastically connected to the inside of the fumigation tank 320. During the process of the person's fumigation area entering the flexible fumigation component 400, the flexible support plate 410 will drive multiple unit fumigation components 420 to undergo flexible deformation and wrap around the person's fumigation area, so as to make flexible adjustments for the person's fumigation area. Combined with the use of multiple local unit fumigation components 420, a highly fitted and targeted fumigation can be achieved. Based on the above description, it can be concluded that: when the part of the person to be fumigated enters the fumigation tank 320, it is sealed with a sealing cap 310 to form an internal barrier against the escape of the atomized drug; during the process of the part of the person to be fumigated entering the flexible fumigation component 400, the flexible support plate 410 will drive multiple unit fumigation components 420 to undergo flexible deformation and wrap around the part of the person to be fumigated (see details for reference). Figure 11 The diagram demonstrates how the flexible fumigation component adapts to and wraps the object to be fumigated. In the diagram, A represents the object just entering the flexible fumigation component; B represents the object already entering the flexible fumigation component; and C represents the object completely entering the flexible fumigation component. This allows for flexible adjustment to the fumigated area, and combined with the use of multiple local fumigation units 420, achieves highly fitted and targeted fumigation. At the same time, the external atomized drug escape barrier formed by the cover plate 200 and the fumigation chamber 140, combined with the sealing cover 310 and the fumigation tank 320, forms an internal atomized drug escape barrier, achieving highly sealed fumigation from local to overall. This ensures that while maintaining a high level of sealing, flexible adjustments can be made to specific fumigation areas to achieve highly fitted and targeted fumigation. During the process of a person's fumigation area entering the fumigation tank 320, the person's fumigation area will be pressed against the unit fumigation element 420. On the one hand, multiple unit fumigation elements 420 can massage acupoints locally, and on the other hand, the atomized medicine can be more closely attached to the local area of the person being fumigated, so as to carry out more effective and targeted fumigation, avoiding the need for more medicine in a large fumigation space, which would lead to waste of medicine.
[0020] In embodiments of the present invention, such as Figure 7 and Figure 8 As shown: The unit fumigation component 420 includes a drug atomizing discharge head 421, an air guide tube 422, a sleeve 423, and an elastic support base 425; The drug atomizing head 421 is installed at the end of the air duct 422 and is in communication with the air duct 422; the elastic support 425 is sleeved and fixed at the end of the air duct 422 away from the drug atomizing head 421, and a flexible connecting pipe 424 is connected to the air duct 422 on the side of the elastic support 425. The flexible connecting pipe 424 is connected to the drug atomizing supply device of the drug atomizing fumigation tank 100 (it should be further noted that the drug atomizing supply device of the drug atomizing fumigation tank 100 is prior art, and its detailed structure can be found in existing literature journals. It can also be purchased directly on the market, or components can be purchased on the market and assembled, etc.; it is not protected by this invention, and will not be described in detail here, nor is it shown in the accompanying drawings). The sleeve 423 is movably sleeved on the air guide tube 422 and connected to the elastic support seat 425.
[0021] Based on the above description, it can be concluded that: during the process of a person's fumigated part entering the fumigation tank 320, the person's fumigated part will abut against the unit fumigation component 420. The drug atomizing head 421 installed at the end of the air duct 422 can make the atomized drug adhere more closely to the local area of the person being fumigated. This achieves more effective and targeted fumigation by using the unit fumigation component 420 to elastically massage acupoints through the elastic support seat 425 and then using the drug atomizing head 421 to make the atomized drug adhere more closely to the local area of the person being fumigated.
[0022] In embodiments of the present invention, such as Figure 5 and Figure 6 As shown: The flexible support plate 410 is made of rubber. Multiple unit fumigation components 420 are provided on the flexible support plate 410 with multiple insertion and fixing holes. The sleeve 423 is fixed inside the insertion and fixing holes.
[0023] like Figure 9As shown: The elastic support seat 425 includes a spring 4251 and a support ring 4252. The support ring 4252 is sleeved and fixed to the end of the air guide tube 422. The spring 4251 is sleeved on the air guide tube 422. One end of the spring 4251 is connected to the support ring 4252, and the other end is connected to the end of the sleeve 423.
[0024] It should be further explained that the elastic support seat 425 can be a spring 4251 and a support ring 4252, or it can be an elastic rubber ring and a support ring 4252, or an elastic pad and a support ring 4252, etc. These are all existing technologies, and there is no limitation on the specific structure, as long as it can satisfy the requirement that the unit fumigation component 420 can elastically massage acupoints through the elastic support seat 425. At the same time, it can be purchased directly on the market, and there are relevant descriptions in relevant journal literature. It is not what this invention is intended to protect, and will not be described in detail here.
[0025] like Figure 10 As shown: The drug nebulizer discharge head 421 includes a drug nebulizer pre-discharge head 4211 and a drug nebulizer post-discharge head 4212, which are fixedly connected together and interconnected.
[0026] In embodiments of the present invention, such as Figure 10 As shown: The drug atomization pre-discharge head 4211 includes a slide plate 42121, on which multiple elastic support strips 42122 are fixed, and the multiple elastic support strips 42122 are distributed at equal intervals on the slide plate 42121; multiple limiting grooves 42124 are formed between the multiple elastic support strips 42122, and multiple discharge holes B42123 are opened inside the limiting grooves 42124, and the discharge holes B42123 are connected to the drug atomization post-discharge head 4212.
[0027] like Figure 10 As shown: The drug atomization discharge head 4212 includes a support column 42111. The support column 42111 has a through-shaped material guiding cavity inside. One end of the material guiding cavity is connected to the discharge hole B42123, and the other end is connected to the air guiding tube 422. The support column 42111 has multiple discharge holes A42112 around its perimeter. One end of the discharge hole A42112 is connected to the outside of the support column 42111, and the other end is connected to the material guide cavity.
[0028] In embodiments of the present invention, such as Figure 1 and Figure 2 As shown: A through hole 120 is provided at the top of the drug atomizing fumigation tank 100, and an elastic sealing strip 110 is installed inside the through hole 120. The elastic sealing strip 110 has a through hole inside; a plurality of support feet 130 are fixed at the bottom of the drug atomizing fumigation tank 100 in an array. The drug atomizing fumigation tank 100 and the cover plate 200 are connected by multiple hinges 210.
[0029] It should be noted that the components inside the drug atomizing fumigation tank 100, except for the fumigation support structure 300 and the flexible fumigation component 400, which are not described, are existing technologies. Their detailed structures can be found in existing literature and journals, and they can also be purchased directly on the market, or components can be purchased on the market and assembled, etc. They are not protected by this invention, and will not be described in detail here, nor are they shown in the accompanying drawings.
[0030] In embodiments of the present invention, such as Figure 2-4 As shown: The seating support platform 330 includes a backrest 331, a buttock support plate 332, a leg support plate 333, and a foot support platform 334. The buttock support plate 332 is fixed to the bottom of the backrest 331. The buttock support plate 332 and the backrest 331 are perpendicular to each other, and the buttock support plate 332 is set horizontally. The leg support plate 333 is fixed on the buttock support plate 332. The foot cloth support platform 334 is fixed to the bottom of the leg support plate 333. The foot cloth support platform 334 is installed on the mounting plate 340, and the mounting plate 340 is fixed to the bottom of the fumigation chamber 140.
[0031] like Figure 2-4 As shown: The fumigation tank 320 includes a backrest fumigation tank 321, a buttocks fumigation tank 322, a leg fumigation tank 323, and a foot fumigation tank 324; The backrest fumigation tank 321 is provided on the backrest 331; the buttock fumigation tank 322 is provided on the buttock support plate 332; the leg fumigation tank 323 is provided on the foot cloth support platform 334; and the foot fumigation tank 324 is provided on the foot cloth support platform 334. Multiple sealing covers 310 are provided, and they correspond one by one to the backrest fumigation tank 321, buttock fumigation tank 322, leg fumigation tank 323 and foot fumigation tank 324.
[0032] Existing drug atomization fumigation equipment cannot guarantee a highly sealed environment while allowing for flexible adjustments to specific fumigation sites to achieve targeted fumigation with high conformity. This invention provides a dermatological drug atomization fumigation device that can achieve this: As the person's fumigated area enters the fumigation tank 320, it is sealed with a sealing cap 310, forming an internal barrier against the escape of atomized drugs. During the process of the person's fumigated area entering the flexible fumigation component 400, the flexible support plate 410 causes multiple fumigation units 420 to deform flexibly and wrap around the person's fumigated area, allowing for flexible adjustment to the fumigated area. Combined with the use of multiple local fumigation units 420, this achieves highly fitted and targeted fumigation. Simultaneously, the external atomized drug escape barrier formed by the cover plate 200 and the fumigation chamber 140, together with the sealing cap 310 and the fumigation tank 320, forms an internal atomized drug escape barrier, achieving highly sealed fumigation from local to overall coverage. This ensures that while maintaining a high level of sealing, flexible adjustments can be made to specific fumigation areas, achieving highly fitted and targeted fumigation. During the process of a person's fumigation area entering the fumigation tank 320, the person's fumigation area will be pressed against the unit fumigation element 420. On the one hand, multiple unit fumigation elements 420 can massage acupoints locally, and on the other hand, the atomized medicine can be more closely attached to the local area of the person being fumigated, so as to carry out more effective and targeted fumigation, avoiding the need for more medicine in a large fumigation space, which would lead to waste of medicine.
[0033] The structures, proportions, sizes, etc. illustrated in this specification are only for the purpose of assisting those skilled in the art in understanding and reading the content disclosed herein, and are not intended to limit the conditions under which the present invention can be implemented. Therefore, they have no substantial technical significance. Any modifications to the structure, changes in the proportions, or adjustments to the size, without affecting the effects and objectives that the present invention can produce, should still fall within the scope of the technical content disclosed in the present invention.
[0034] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A dermatological drug atomizing fumigation device, comprising a drug atomizing fumigation canister (100) and a cover plate (200) connected in a hinged manner, characterized in that, The drug atomizing fumigation tank (100) and the cover plate (200) seal the fumigation chamber (140) inside the drug atomizing fumigation tank (100) into a high-sealing chamber, which is used to form an external atomized drug escape barrier. The fumigation chamber (140) is equipped with a fumigation support platform structure (300), which includes a sealing cover (310), a fumigation tank (320), and a seating support platform (330). The fumigation tank (320) is located on the seating support platform (330), and the sealing cover (310) is hinged to the seating support platform (330) on the side of the fumigation tank (320). The sealing cover (310) is used to seal the fumigation tank (320) to form an internal barrier against the escape of atomized drugs. The fumigation tank (320) is equipped with a flexible fumigation assembly (400) which includes a flexible support plate (410) and multiple unit fumigation components (420). The multiple unit fumigation components (420) are arrayed on the flexible support plate (410). The unit fumigation components (420) are used to introduce the atomized drug into the part of the person to be fumigated for fumigation. The flexible support plate (410) is elastically connected inside the fumigation tank (320). During the process of the person's fumigation part entering the flexible fumigation component (400), the flexible support plate (410) will drive multiple unit fumigation components (420) to undergo flexible deformation and wrap around the person's fumigation part, so as to make flexible adjustments for the person's fumigation part. Combined with the use of multiple local unit fumigation components (420), a highly fitting and targeted fumigation can be achieved. The unit fumigation component (420) includes a drug atomizing head (421), an air duct (422), a sleeve (423), and an elastic support (425). The drug atomizing head (421) is installed at the end of the air duct (422) and is in communication with the air duct (422). The elastic support (425) is sleeved and fixed at the end of the air duct (422) away from the drug atomizing head (421). A flexible connecting pipe (424) is connected to the air duct (422) on the side of the elastic support (425). The flexible connecting pipe (424) is connected to the drug atomizing supply device of the drug atomizing fumigation tank (100). The sleeve (423) is movably sleeved on the air duct (422) and connected to the elastic support (425). The flexible support plate (410) is made of rubber. Multiple unit fumigation components (420) are provided with multiple through-holes on the flexible support plate (410). The sleeve (423) is fixed inside the through-holes. The elastic support base (425) includes a spring (4251) and a support ring (4252). The support ring (4252) is sleeved and fixed to the end of the air guide tube (422). The spring (4251) is sleeved on the air guide tube (422). One end of the spring (4251) is connected to the support ring (4252), and the other end is connected to the end of the sleeve (423). The drug atomizing head (421) includes a drug atomizing pre-atomizing head (4211) and a drug atomizing post-atomizing head (4212), which are fixedly connected together and interconnected. The drug atomization pre-discharge head (4211) includes a slide plate (42121), on which multiple elastic support strips (42122) are fixed, and the multiple elastic support strips (42122) are distributed at equal intervals on the slide plate (42121); multiple limiting grooves (42124) are formed between the multiple elastic support strips (42122), and multiple discharge holes B (42123) are opened inside the limiting grooves (42124), and the discharge holes B (42123) are connected to the drug atomization post-discharge head (4212); The drug atomization discharge head (4212) includes a support column (42111). The support column (42111) has a through-shaped material guiding cavity inside. One end of the material guiding cavity is connected to the discharge hole B (42123), and the other end is connected to the air guiding pipe (422). Multiple discharge holes A (42112) are opened around the support column (42111). One end of the discharge hole A (42112) is connected to the outside of the support column (42111), and the other end is connected to the material guiding cavity.
2. The dermatological drug atomizing fumigation device according to claim 1, characterized in that, A through hole (120) is provided at the top of the drug atomizing fumigation tank (100), and an elastic sealing strip (110) is installed inside the through hole (120). The elastic sealing strip (110) has a through hole inside. Multiple support feet (130) are fixed at the bottom of the drug atomizing fumigation tank (100) in an array. The drug atomizing fumigation tank (100) and the cover plate (200) are hinged together by multiple hinges (210).
3. A dermatological drug atomizing fumigation device according to claim 1 or 2, characterized in that, The seating support platform (330) includes a backrest (331), a buttock support board (332), a leg support board (333), and a foot support platform (334). The buttock support plate (332) is fixed to the bottom of the backrest (331). The buttock support plate (332) and the backrest (331) are perpendicular to each other. The buttock support plate (332) is set horizontally. The leg support plate (333) is fixed on the buttock support plate (332). The foot cloth support platform (334) is fixed to the bottom of the leg support plate (333). The foot cloth support platform (334) is installed on the mounting plate (340). The mounting plate (340) is fixed to the bottom of the fumigation chamber (140).
4. The dermatological drug atomizing fumigation device according to claim 3, characterized in that, The fumigation tank (320) includes a backrest fumigation tank (321), a buttocks fumigation tank (322), a leg fumigation tank (323), and a foot fumigation tank (324). The backrest fumigation tank (321) is located on the backrest (331); the buttock fumigation tank (322) is located on the buttock support plate (332); the leg fumigation tank (323) is located on the foot cloth support platform (334); the foot fumigation tank (324) is located on the foot cloth support platform (334); Multiple sealing covers (310) are provided, and they correspond one by one to the backrest fumigation tank (321), the buttock fumigation tank (322), the leg fumigation tank (323) and the foot fumigation tank (324).