Intelligent oral cavity atomization therapeutic apparatus device
By setting up an auxiliary mechanism in the intelligent oral atomization treatment device device, the adjustment of the drug inhalation method and the closing of the drug delivery channel during exhalation is solved, and the problems of waste of drugs and poor treatment effects in the prior art are improved, and the accuracy and efficiency of treatment are improved.
Patent Information
- Application Number
- CN202510408315.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-02
- Publication Date
- 2025-06-27
AI Technical Summary
The existing intelligent oral atomization treatment device cannot adjust the medication inhalation method according to different oral treatment plans, and cannot close the drug delivery channel when exhaling, resulting in waste of drugs and poor treatment effect.
An intelligent oral atomization treatment device is designed, and the adjustment of the drug inhalation method and the closing of the drug delivery channel during exhalation is achieved by setting up auxiliary mechanisms, including a mask, an electric valve, a flow sensor and a tee tube.
The method of inhalation is adjusted according to different oral treatment plans, which improves the accuracy and effectiveness of treatment, and reduces drug waste when exhaling by closing the dosing channel, which improves the treatment effect and the efficiency of the device use.
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Figure CN120204539A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of medical devices, and particularly to an intelligent oral atomization therapy device. Background Art
[0002] Oral diseases, as a common type of health problem, involve lesions in multiple parts such as teeth, gums, and oral mucosa. Traditional treatment methods often face problems such as insufficient drug penetration and limited local concentration. To solve such problems, people generally use intelligent oral atomization therapy devices to assist in the treatment of oral diseases.
[0003] In the prior art, when the existing intelligent oral atomization therapy device is in use, although it can increase the contact area between the drug and the oral lesion tissue, enabling the drug to exert anti-inflammatory, analgesic, and tissue repair-promoting effects faster, thereby effectively shortening the treatment time and accelerating the patient's recovery process, it does not have the function of changing the drug inhalation method and closing the drug delivery channel during exhalation. This not only makes it difficult to adjust the drug inhalation method according to different oral treatment plans, thus affecting the accuracy and effectiveness of the treatment, but also when the drug delivery channel is open during exhalation, some atomized drugs will be discharged with the exhaled gas and cannot be fully absorbed by the human body, resulting in drug waste and affecting the treatment effect. This not only reduces the use effect of the intelligent oral atomization therapy device but also reduces the use efficiency of the intelligent oral atomization therapy device.
[0004] Therefore, we propose an intelligent oral atomization therapy device to solve the problems raised in the above background art. Summary of the Invention
[0005] The purpose of the present invention is to provide an intelligent oral atomization therapy device to solve the problems that the existing intelligent oral atomization therapy device does not have the function of changing the drug inhalation method and closing the drug delivery channel during exhalation. This not only makes it difficult to adjust the drug inhalation method according to different oral treatment plans, thus affecting the accuracy and effectiveness of the treatment, but also when the drug delivery channel is open during exhalation, some atomized drugs will be discharged with the exhaled gas and cannot be fully absorbed by the human body, resulting in drug waste and affecting the treatment effect. This not only reduces the use effect of the intelligent oral atomization therapy device but also reduces the use efficiency of the intelligent oral atomization therapy device.
[0006] To achieve the above purpose, the present invention provides the following technical solution: An intelligent oral atomization therapy device, including a device body, and an auxiliary mechanism is provided on the device body; The auxiliary mechanism includes a face mask and a first electric valve. An installation frame is installed on the outer surface of the face mask. A flow sensor is installed at the discharge end of the first electric valve. A tee is installed at the discharge end of the flow sensor. One of the discharge ends of the tee is installed with a second electric valve, and the other discharge end of the tee is installed with a third electric valve. The discharge end of the second electric valve is installed with an oral tube, and the discharge end of the third electric valve is installed with a nasal tube. A circular tube is fixedly penetrated through the outer surface of the face mask. A one-way valve is installed at the air outlet end of the circular tube. Two symmetrically arranged perforated blocks are fixed on the outer surface of the face mask. An auxiliary belt is installed inside the through hole of each perforated block. A male magic tape is sewn at one end of one of the auxiliary belts, and a female magic tape is sewn at one end of the other auxiliary belt.
[0007] Preferably, the discharge end of the oral tube fixedly penetrates through the outer surface of the face mask, and the discharge end of the nasal tube fixedly penetrates through the outer surface of the face mask. The male magic tape is adapted to the female magic tape.
[0008] Preferably, the device body includes an atomizer main body, and a handle is installed on the top of the atomizer main body.
[0009] Preferably, a placement groove is opened on the front surface of the atomizer main body, and a round rod is fixed inside the placement groove.
[0010] Preferably, a rotating plate is rotatably connected to the outer surface of the round rod through a bearing, and a handle is fixed on the front surface of the rotating plate.
[0011] Preferably, an iron plate is fixedly embedded on the rear surface of the rotating plate, and an installation groove is opened on the inner wall of the placement groove.
[0012] Preferably, an electromagnet is installed inside the installation groove, and a hose is arranged at the liquid outlet end of the atomizer main body.
[0013] Preferably, a housing is installed at the liquid outlet end of the hose, and a housing cover is arranged at the top end of the housing.
[0014] Preferably, the side of the iron plate away from the handle is in contact with the front surface of the electromagnet, and the bottom end of the housing is movably clamped on the card slot of the atomizer main body.
[0015] Preferably, the installation frame is fixedly sleeved on the outer wall of the housing, and the feed end of the first electric valve is installed with the discharge end of the housing.
[0016] Compared with the prior art, the beneficial effects of the present invention are: In the present invention, by providing an auxiliary mechanism, the intelligent oral atomization therapy device can be equipped with the functions of changing the drug inhalation method and closing the drug delivery channel during exhalation. In this way, not only can the drug inhalation method be adjusted according to different oral treatment plans, thereby improving the accuracy and effectiveness of treatment, but also the drug delivery channel can be closed during exhalation, effectively preventing the atomized drug from being discharged with the exhaled gas, thus reducing drug waste and enhancing the treatment effect. This not only improves the usage effect of the intelligent oral atomization therapy device but also improves its usage efficiency. When a patient needs to undergo oral inhalation liquid atomization therapy, first, with the cooperation of the atomizer main body, the second electric valve and the flow sensor can be activated. When the atomizer main body, in cooperation with the flow sensor, detects the patient's inhalation, then, with the cooperation of the first electric valve, the flow sensor, the three-way pipe, the second electric valve, and the oral tube, the aerosol inside the housing can be delivered to the patient's oral cavity for atomization therapy. When the atomizer main body, in cooperation with the flow sensor, detects the patient's exhalation, then, with the cooperation of the atomizer main body, the first electric valve can be closed. Subsequently, with the cooperation of the round tube and the one-way valve, the exhaled gas of the patient can be delivered outside the mask.
[0017] In the present invention, when a patient needs to undergo nasal inhalation liquid atomization therapy, first, with the cooperation of the atomizer main body, the second electric valve can be closed and the third electric valve can be activated. When the atomizer main body, in cooperation with the flow sensor, detects the patient's inhalation, then, with the cooperation of the first electric valve, the flow sensor, the three-way pipe, the third electric valve, and the nasal tube, the aerosol inside the housing can be delivered to the patient's nasal cavity for atomization therapy. When a patient needs to undergo liquid atomization therapy in a combined oral and nasal inhalation manner, the atomizer main body will activate the second electric valve and the third electric valve simultaneously. When the atomizer main body, in cooperation with the flow sensor, detects the patient's inhalation, then, with the cooperation of the first electric valve, the flow sensor, the three-way pipe, the second electric valve, the third electric valve, the oral tube, and the nasal tube, the aerosol inside the housing can be delivered to the patient's nasal cavity and oral cavity for atomization therapy.
[0018] 3. In the present invention, by providing the device body, the contact area between the drug and the oral lesion tissue can be increased, enabling the drug to exert its medicinal effects such as anti-inflammatory, analgesic, and promoting tissue repair more quickly, thereby effectively shortening the treatment time and accelerating the patient's recovery process. When oral atomization therapy is required, first, with the cooperation of the handle, the atomizer main body can be placed in a suitable position. Subsequently, an appropriate amount of distilled water is injected into the water tank of the atomizer main body, and then an appropriate amount of liquid medicine is injected into the medicine cup of the atomizer main body. After that, with the cooperation of the atomizer main body, the electromagnet can be turned off, and then the atomizer main body is connected to an external power supply. Then, with the cooperation of the round rod, the bearing, and the handle, the rotating plate can be driven to rotate.
[0019] 4. In the present invention, the housing, the housing cover, the hose, and the auxiliary mechanism are all removed from the inside of the placement groove. When the housing, the housing cover, the hose, and the auxiliary mechanism are all removed from the inside of the placement groove, first, by the cooperation of the handle, the round rod, the bearing, the atomizer main body, the electromagnet, and the installation groove, the rotating plate can be reset to its original position. Subsequently, the feeding end of the hose is connected to the atomizer main body. Then, by the cooperation of the two perforated blocks, the two auxiliary belts, the male magic tape, and the female magic tape, the mask can be fixed on the patient's head. After that, by the cooperation of the atomizer main body, the hose, the housing, the housing cover, and the auxiliary mechanism, oral atomization treatment of the patient can be achieved. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 is a perspective view of an intelligent oral atomization treatment device according to the present invention; Figure 2 is another perspective view of an intelligent oral atomization treatment device according to the present invention; Figure 3 is a structural schematic diagram of an intelligent oral atomization treatment device according to the present invention; Figure 4 is a perspective view of the device body part of an intelligent oral atomization treatment device according to the present invention; Figure 5 is a partial perspective view of an intelligent oral atomization treatment device according to the present invention; Figure 6 is a partial perspective view of the auxiliary mechanism part of an intelligent oral atomization treatment device according to the present invention; Figure 7 is another partial perspective view of the device body of an intelligent oral atomization treatment device according to the present invention; Figure 8 is another partial perspective view of the auxiliary mechanism of an intelligent oral atomization treatment device according to the present invention.
[0021] In the figure: 1, device body; 101, atomizer main body; 102, handle; 103, placement groove; 104, round rod; 105, rotating plate; 106, handle; 107, iron plate; 108, installation groove; 109, electromagnet; 110, hose; 111, housing; 112, housing cover; 2, auxiliary mechanism; 201, mask; 202, mounting bracket; 203, first electric valve; 204, flow sensor; 205, tee; 206, second electric valve; 207, third electric valve; 208, oral tube; 209, nasal tube; 210, round tube; 211, check valve; 212, perforated block; 213, auxiliary belt; 214, male magic tape; 215, female magic tape. DETAILED DESCRIPTION OF THE INVENTION
[0022] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0023] Embodiment 1: Please refer to Figures 1 - 6 and Figure 8 As shown, the present invention provides a technical solution: an intelligent oral atomization treatment device, including a device body 1, and an auxiliary mechanism 2 is arranged on the device body 1; The auxiliary mechanism 2 includes a face mask 201 and a first electric valve 203. An installation frame 202 is installed on the outer surface of the face mask 201. The discharge end of the first electric valve 203 is installed with a flow sensor 204. The discharge end of the flow sensor 204 is installed with a three-way pipe 205. One of the discharge ends of the three-way pipe 205 is installed with a second electric valve 206, and the other discharge end of the three-way pipe 205 is installed with a third electric valve 207. The discharge end of the second electric valve 206 is installed with an oral cavity tube 208, and the discharge end of the third electric valve 207 is installed with a nasal cavity tube 209. A round tube 210 is fixedly penetrated through the outer surface of the face mask 201. A one-way valve 211 is installed at the air outlet end of the round tube 210. Two symmetrically arranged perforated blocks 212 are fixed on the outer surface of the face mask 201. An auxiliary belt 213 is installed inside the through hole of each perforated block 212. A male magic tape 214 is sewn at one end of one of the auxiliary belts 213, and a female magic tape 215 is sewn at one end of the other auxiliary belt 213. The male magic tape 214 is adapted to the female magic tape 215. The liquid outlet end of the hose 110 is installed with a housing 111. The installation frame 202 is fixedly sleeved on the outer wall of the housing 111. The feed end of the first electric valve 203 is installed with the discharge end of the housing 111.
[0024] In this embodiment, when a patient needs to receive aerosol inhalation therapy by mouth, the atomizer main body 101 directly activates the second electric valve 206 and the flow sensor 204 at this time. When the atomizer main body 101, in cooperation with the flow sensor 204, detects that the patient is inhaling, the atomizer main body 101 directly activates the first electric valve 203 at this time. Then, the atomizer main body 101 conveys the aerosol inside the housing 111 into the first electric valve 203. Subsequently, with the cooperation of the flow sensor 204, the aerosol inside the first electric valve 203 is conveyed into the tee 205. Then, with the cooperation of the second electric valve 206, the aerosol inside the tee 205 is conveyed into the oral tube 208. At this time, the patient can inhale the aerosol inside the oral tube 208 into the mouth for aerosol inhalation therapy. When the atomizer main body 101, in cooperation with the flow sensor 204, detects that the patient is exhaling, the atomizer main body 101 directly closes the first electric valve 203 at this time. Then, the aerosol inside the housing 111 stops being conveyed into the oral tube 208, and the exhaled gas of the patient is conveyed outside the mask 201 with the cooperation of the round tube 210 and the one-way valve 211. When a patient needs to receive aerosol inhalation therapy by nose, the atomizer main body 101 first closes the second electric valve 206 and then activates the third electric valve 207. When the atomizer main body 101, in cooperation with the flow sensor 204, detects that the patient is inhaling, the atomizer main body 101 directly activates the first electric valve 203 at this time. Then, the atomizer main body 101 conveys the aerosol inside the housing 111 into the first electric valve 203. Subsequently, with the cooperation of the flow sensor 204, the tee 205, and the third electric valve 207, the aerosol inside the first electric valve 203 is conveyed into the nasal tube 209. At this time, the patient can inhale the aerosol inside the nasal tube 209 into the nose for aerosol inhalation therapy. When the atomizer main body 101, in cooperation with the flow sensor 204, detects that the patient is exhaling, the atomizer main body 101 directly closes the first electric valve 203. When a patient needs to receive aerosol inhalation therapy by both mouth and nose, the atomizer main body 101 activates the second electric valve 206 and the third electric valve 207 simultaneously. When the atomizer main body 101, in cooperation with the flow sensor 204, detects that the patient is inhaling, the atomizer main body 101 directly activates the first electric valve 203 at this time. Then, the atomizer main body 101 conveys the aerosol inside the housing 111 into the first electric valve 203. Subsequently, with the cooperation of the flow sensor 204, the tee 205, the second electric valve 206, and the third electric valve 207, the aerosol inside the first electric valve 203 is respectively conveyed into the nasal tube 209 and the oral tube 208. At this time, the patient can inhale the aerosol inside the nasal tube 209 and the aerosol inside the oral tube 208 into the nose and the mouth respectively for aerosol inhalation therapy. When the atomizer main body 101, in cooperation with the flow sensor 204,When it is detected that the patient is exhaling, the atomizer main body 101 will directly close the first electric valve 203.
[0025] Embodiment 2: According to Figures 1 - 8 As shown in the figure, the device body 1 includes an atomizer main body 101. A handle 102 is installed on the top of the atomizer main body 101. A placement groove 103 is formed on the front surface of the atomizer main body 101. A round rod 104 is fixed inside the placement groove 103. A rotating plate 105 is rotatably connected to the outer surface of the round rod 104 through a bearing. A handle 106 is fixed on the front surface of the rotating plate 105. An iron plate 107 is fixedly embedded on the rear surface of the rotating plate 105. An installation groove 108 is formed on the inner wall of the placement groove 103. An electromagnet 109 is installed inside the installation groove 108. The liquid outlet end of the atomizer main body 101 is provided with a hose 110. The liquid outlet end of the hose 110 is installed with a housing 111. A housing cover 112 is arranged at the top of the housing 111. One side of the iron plate 107 away from the handle 106 is in contact with the front surface of the electromagnet 109. The bottom end of the housing 111 is movably clamped on the clamping groove of the atomizer main body 101.
[0026] In this embodiment, when oral atomization treatment is required, first, with the cooperation of the handle 102, the atomizer main body 101 is placed in a suitable position. Subsequently, the atomizer main body 101 is connected to an external power supply. Then, the sealing plug at the water inlet of the water tank inside the atomizer main body 101 is removed, and an appropriate amount of distilled water is injected into it through the water inlet. After that, the sealing plug at the liquid inlet of the medicine cup inside the atomizer main body 101 is removed, and an appropriate amount of liquid medicine is injected into it through the liquid inlet. Then, both sealing plugs are reset and moved. When both sealing plugs are reset to their original positions, first, the atomizer main body 101 is used to turn off the electromagnet 109. Subsequently, with the cooperation of the handle 106, the round rod 104, and the bearing, the rotating plate 105 is rotated. At this time, the rotating rotating plate 105 will drive the iron plate 107 to rotate together. When the rotating plate 105 rotates 90 degrees, the iron plate 107 will separate from the electromagnet 109, and at the same time, the rotation of the rotating plate 105 is stopped. At this time, the stopped rotating plate 105 will cause the iron plate 107 to stop rotating. Subsequently, the housing 111, the housing cover 112, the hose 110, and the auxiliary mechanism 2 are all removed from the inside of the placement groove 103. Then, with the cooperation of the handle 106, the round rod 104, and the bearing, the rotating plate 105 is reset to its original position. After that, the atomizer main body 101 is used to start the electromagnet 109. At this time, the rotating plate 105 can be fixed inside the placement groove 103 under the cooperation of the iron plate 107, the activated electromagnet 109, the installation groove 108, the round rod 104, and the bearing. Then, the feeding end of the hose 110 is connected to the liquid outlet end of the atomizer main body 101. Then, the bottom end of the housing 111 is clamped on the clamping groove of the atomizer main body 101 (as Figure 1As shown, when the housing 111 is placed, the patient approaches the mask 201 at this time, opens the mouth, and places his / her mouth and nose inside the mask 201. At this time, the discharge end of the oral cavity tube 208 is just inside the mouth, and the nasal cavity tube 209 is just in front of the nasal septum. Subsequently, one end of each of the two auxiliary bands 213 is wrapped around the back of the head, and then, by the cooperation of the male velcro 214, the female velcro 215, the two auxiliary bands 213 and the two perforated blocks 212, the mask 201 is fixed on the face. After that, a force is applied to the housing 111 to make the housing 111 move vertically upward. At this time, the vertically upward moving housing 111 will drive the housing cover 112, the auxiliary mechanism 2 and the discharge end of the hose 110 to move together. When the housing 111 is separated from the nebulizer main body 101, the movement of the housing 111 can be directly stopped. Subsequently, the nebulizer main body 101 is started. At this time, the started nebulizer main body 101 will atomize the liquid medicine into tiny particles, and under the action of gravity, air flow, etc., form an aerosol. Subsequently, the formed aerosol is transported into the interior of the hose 110, and then the aerosol inside the hose 110 is transported into the interior of the housing 111. After that, with the cooperation of the auxiliary mechanism 2, atomization treatment is carried out on the patient. When the patient completes the atomization treatment, directly perform reverse operations according to the above operation steps, remove the auxiliary mechanism 2, and then disinfect each of the above components. Then, store the auxiliary mechanism 2, the housing 111, the housing cover 112 and the hose 110 inside the placement groove 103.
[0027] The effects and working principle achieved by its entire mechanism are as follows: When oral atomization treatment is required, first, with the cooperation of the handle 102, place the atomizer main body 101 in a suitable position. Then, connect the atomizer main body 101 to an external power supply. Next, remove the sealing plug at the water inlet of the internal water tank of the atomizer main body 101 and inject an appropriate amount of distilled water into it through the water inlet. After that, remove the sealing plug at the liquid inlet of the medicine cup inside the atomizer main body 101 and inject an appropriate amount of liquid medicine into it through the liquid inlet. Then, move both sealing plugs back to their original positions. When both sealing plugs are reset to their original positions, first, use the atomizer main body 101 to turn off the electromagnet 109. Subsequently, with the cooperation of the handle 106, the round rod 104, and the bearing, make the rotating plate 105 rotate. At this time, the rotating rotating plate 105 will drive the iron plate 107 to rotate together. When the rotating plate 105 rotates 90 degrees, the iron plate 107 will separate from the electromagnet 109, and at the same time, stop the rotation of the rotating plate 105. At this time, the stopped rotating plate 105 will cause the iron plate 107 to stop rotating. Then, remove the housing 111, the housing cover 112, the hose 110, and the auxiliary mechanism 2 from the inside of the placement groove 103. Subsequently, with the cooperation of the handle 106, the round rod 104, and the bearing, reset the rotating plate 105 to its original position. After that, use the atomizer main body 101 to start the electromagnet 109. At this time, with the cooperation of the iron plate 107, the activated electromagnet 109, the installation groove 108, the round rod 104, and the bearing, fix the rotating plate 105 inside the placement groove 103. Then, connect the feeding end of the hose 110 to the liquid outlet end of the atomizer main body 101. Then, connect the bottom end of the housing 111 to the card slot of the atomizer main body 101 (such as Figure 1As shown, when the housing 111 is placed properly, the patient approaches the mask 201 and opens the mouth, so that the mouth and nose are inside the mask 201. At this time, the discharge end of the oral tube 208 is just inside the mouth, and the nasal tube 209 is just in front of the nasal septum. Then, one end of each of the two auxiliary straps 213 is wrapped around the back of the head. Subsequently, with the cooperation of the male magic tape 214, the female magic tape 215, the two auxiliary straps 213 and the two perforated blocks 212, the mask 201 is fixed on the face. After that, a force is applied to the housing 111 to make the housing 111 move vertically upward. At this time, the vertically upward moving housing 111 will drive the housing cover 112, the auxiliary mechanism 2 and the discharge end of the hose 110 to move together. When the housing 111 is separated from the atomizer main body 101, the movement of the housing 111 can be directly stopped. Subsequently, the atomizer main body 101 is started. At this time, the started atomizer main body 101 will atomize the liquid medicine into tiny particles, and under the action of gravity and air flow, etc., form an aerosol. Then, the formed aerosol is transported into the hose 110. Next, the aerosol inside the hose 110 is transported into the housing 111. When the patient needs to perform oral inhalation liquid medicine atomization treatment, at this time, the atomizer main body 101 directly starts the second electric valve 206 and the flow sensor 204. When the atomizer main body 101, in cooperation with the flow sensor 204, detects that the patient is inhaling, at this time, the atomizer main body 101 will directly start the first electric valve 203. At this time, the atomizer main body 101 will transport the aerosol inside the housing 111 into the first electric valve 203. Subsequently, in cooperation with the flow sensor 204, the aerosol inside the first electric valve 203 is transported into the tee 205. Then, in cooperation with the second electric valve 206, the aerosol inside the tee 205 is transported into the oral tube 208. At this time, the patient can inhale the aerosol inside the oral tube 208 into the mouth for atomization treatment. When the atomizer main body 101, in cooperation with the flow sensor 204, detects that the patient is exhaling, at this time, the atomizer main body 101 will directly close the first electric valve 203. At this time, the aerosol inside the housing 111 will stop being transported into the oral tube 208, and the gas exhaled by the patient will be transported outside the mask 201 in cooperation with the round tube 210 and the one-way valve 211. When the patient needs to perform nasal inhalation liquid medicine atomization treatment, at this time, the atomizer main body 101 will first close the second electric valve 206 and then start the third electric valve 207. When the atomizer main body 101, in cooperation with the flow sensor 204, detects that the patient is inhaling, at this time, the atomizer main body 101 will directly start the first electric valve 203. At this time, the atomizer main body 101 will transport the aerosol inside the housing 111 into the first electric valve 203. Subsequently, in cooperation with the flow sensor 204, the tee 205 and the third electric valve 207, the aerosol inside the first electric valve 203 is transported into the nasal tube 209. At this time, the patient can inhale the aerosol inside the nasal tube 209 into the nasal cavity,Perform atomization therapy. When the atomizer main body 101 detects the patient's exhalation with the cooperation of the flow sensor 204, the atomizer main body 101 will directly close the first electric valve 203. When the patient needs to perform atomization therapy of the medicinal liquid in the way of combined nasal and oral inhalation, the atomizer main body 101 will simultaneously activate the second electric valve 206 and the third electric valve 207. When the atomizer main body 101 detects the patient's inhalation with the cooperation of the flow sensor 204, the atomizer main body 101 will directly activate the first electric valve 203. At this time, the atomizer main body 101 will transport the aerosol inside the housing 111 to the inside of the first electric valve 203. Subsequently, with the cooperation of the flow sensor 204, the tee 205, the second electric valve 206 and the third electric valve 207, the aerosol inside the first electric valve 203 will be respectively transported to the inside of the nasal cavity tube 209 and the inside of the oral cavity tube 208. At this time, the patient can inhale the aerosol inside the nasal cavity tube 209 and the aerosol inside the oral cavity tube 208 into the nasal cavity and the oral cavity respectively for atomization therapy. When the atomizer main body 101 detects the patient's exhalation with the cooperation of the flow sensor 204, the atomizer main body 101 will directly close the first electric valve 203. When the patient finishes the atomization therapy, directly perform the reverse operation according to the above operation steps, remove the mask 201, then disinfect the above-mentioned components, and then store the auxiliary mechanism 2, the housing 111, the housing cover 112 and the hose 110 inside the placement groove 103.
[0028] Among them, the bearing is a common part in real life.
[0029] Among them, the atomizer main body 101 is composed of main components such as an ultrasonic generator, a control system, a wire, a sound transmission membrane, a water tank, a medicine cup and a housing, Its working principle is as follows: The control system activates the ultrasonic generator, and the activated ultrasonic generator generates high-frequency current. This high-frequency current is transmitted through the wire to the sound transmission membrane at the bottom of the medicine cup. The sound transmission membrane has a piezoelectric effect. Under the action of the high-frequency current, it will generate mechanical vibrations of the same frequency. This mechanical vibration is transmitted to the medicinal liquid in the medicine cup in the form of ultrasonic waves. When the ultrasonic waves propagate in the medicinal liquid, countless tiny bubbles will be generated inside the medicinal liquid. These bubbles expand rapidly under the action of the negative pressure phase of the ultrasonic waves and suddenly close under the action of the positive pressure phase. At the moment when the bubbles close, an instantaneous pressure of up to thousands of atmospheres will be generated. This powerful pressure causes the medicinal liquid to be broken into a large number of tiny droplets. These tiny droplets will form an aerosol under the action of gravity and air flow, overflow from the medicine cup, enter the inside of the housing 111 through the hose 110, and then be inhaled by the patient with the cooperation of the auxiliary mechanism 2, so as to achieve the purpose of treatment.
[0030] Among them, the electromagnet 109 is electrically connected to the atomizer main body 101, the first electric valve 203 is electrically connected to the atomizer main body 101, the flow sensor 204 is electrically connected to the atomizer main body 101, the second electric valve 206 is electrically connected to the atomizer main body 101, and the third electric valve 207 is electrically connected to the atomizer main body 101.
[0031] Among them, the atomizer main body 101, the electromagnet 109, the first electric valve 203, the flow sensor 204, the second electric valve 206, and the third electric valve 207 are all prior arts, and their working principles are all publicly known technologies. Their models can be selected according to actual situations and will not be elaborated here.
[0032] 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 perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.
Claims
1. An intelligent oral atomization therapeutic device, characterized in that: It comprises a device body (1), on which an auxiliary mechanism (2) is arranged; The auxiliary mechanism (2) comprises a mask (201) and a first electric valve (203); a mounting frame (202) is mounted on the outer surface of the mask (201); a flow sensor (204) is mounted on the discharge end of the first electric valve (203); a three-way pipe (205) is mounted on the discharge end of the flow sensor (204); a second electric valve (206) is mounted on one of the discharge ends of the three-way pipe (205); a third electric valve (207) is mounted on the other discharge end of the three-way pipe (205); and an oral tube (207) is mounted on the discharge end of the second electric valve (206). 8), a nasal tube (209) is installed at the discharge end of the third electric valve (207), a round tube (210) is fixedly passed through the outer surface of the mask (201), a one-way valve (211) is installed at the air outlet end of the round tube (210), and two symmetrical perforated blocks (212) are fixedly provided on the outer surface of the mask (201), an auxiliary belt (213) is installed inside the through hole of each perforated block (212), one end of one of the auxiliary belts (213) is sewn with a sub-velcro (214), and one end of the other auxiliary belt (213) is sewn with a main-velcro (215).
2. The intelligent oral atomization therapeutic device according to claim 1, characterized in that: The outlet end of the oral tube (208) is fixedly passed through the outer surface of the mask (201), the outlet end of the nasal tube (209) is fixedly passed through the outer surface of the mask (201), and the sub-velcro (214) is compatible with the main Velcro (215).
3. The intelligent oral atomization therapeutic device according to claim 1, characterized in that: The device body (1) comprises an atomizer body (101), and a handle (102) is installed on the top of the atomizer body (101).
4. The intelligent oral atomization therapeutic device according to claim 3, characterized in that: A placement groove (103) is provided on the front surface of the atomizer body (101), and a round rod (104) is fixed inside the placement groove (103).
5. The intelligent oral atomization therapeutic device according to claim 4, characterized in that: The outer surface of the round rod (104) is rotatably connected to a rotating plate (105) via a bearing, and a handle (106) is fixed to the front surface of the rotating plate (105).
6. The intelligent oral atomization therapeutic device according to claim 5, characterized in that: An iron plate (107) is fixedly embedded on the rear surface of the rotating plate (105), and a mounting groove (108) is provided on the inner wall of the placement groove (103).
7. The intelligent oral atomization therapeutic device according to claim 6, characterized in that: An electromagnet (109) is installed inside the installation groove (108), and a hose (110) is provided at the liquid outlet end of the atomizer body (101).
8. The intelligent oral atomization therapeutic device according to claim 7, characterized in that: A housing (111) is installed at the liquid outlet end of the hose (110), and a housing cover (112) is provided at the top end of the housing (111).
9. The intelligent oral atomization therapeutic device according to claim 8, characterized in that: A side of the iron plate (107) away from the handle (106) contacts the front surface of the electromagnet (109), and the bottom end of the housing (111) is movably engaged with a slot of the atomizer body (101).
10. The intelligent oral atomization therapeutic device according to claim 8, characterized in that: The mounting frame (202) is fixedly sleeved on the outer wall of the housing (111), and the feed end of the first electric valve (203) is mounted on the discharge end of the housing (111).