Ultrasonic atomization oxygen efficient humidification and flow statistics equipment
Through high-frequency ultrasonic atomization and sensor monitoring and regulation of humidity, combined with flow statistics function, the problems of insufficient humidification and inaccurate flow statistics of oxygen therapy equipment are solved, and the comfort and management efficiency of oxygen therapy are improved.
Patent Information
- Application Number
- CN202422078028.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-26
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-08-26
AI Technical Summary
Existing aerobic therapy equipment cannot effectively humidify, resulting in patients inhaling dry oxygen, unable to adjust humidity according to different conditions and environments, and lack of accurate oxygen flow statistics functions, affecting patient comfort and medical management efficiency.
High-frequency ultrasonic atomization technology is used to generate fine water mist, combined with temperature and humidity sensors to monitor and adjust humidity in real time, built-in high-precision flow sensors to count oxygen consumption, and personalized treatment is achieved through the control panel.
It realizes efficient humidification of oxygen, improves the inhalation comfort of patients, ensures that the humidity meets human needs, and accurately counts oxygen consumption, and improves treatment management efficiency.
Smart Images

Figure CN223112106U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a humidifying device, in particular to an ultrasonic atomizing oxygen high-efficiency humidifying and flow statistics device. Background Technique
[0002] Oxygen therapy is an important treatment method in the fields of modern medicine and healthy life. Existing oxygen therapy devices have the following problems:
[0003] 1. The gas inhaled by patients is too dry. When patients undergo oxygen therapy, the humidity of oxygen is often very low and usually needs to be humidified before being inhaled into the human body. For another example, in winter in the north of China, when people warm themselves by burning fire or using heaters indoors, the indoor air is hot and dry. Humidification can make patients breathe more comfortably, protect the nasal and airway mucous membranes, and prevent nosebleeds and upper airway inflammation.
[0004] 2. The humidity is relatively low under the conditions of high body temperature and dehydration. At the same room temperature and humidity, the higher the body temperature, the greater the degree of humidity loss and the more water is lost from the respiratory tract. In the case of patients with dehydration, the water supply to the airway is insufficient, and the humidification of the inhaled gas cannot be carried out fully and normally. Respiratory secretions will become thick and crusty and are difficult to discharge.
[0005] 3. Respiratory secretions are viscous and difficult to aspirate, and it is necessary to aspirate several times to completely aspirate the sputum in the airway. When suffering from diseases such as chronic bronchitis, bronchiectasis, lung abscess, pulmonary cystic fibrosis, and pneumonia, due to the change of the chemical composition of secretions, the viscosity of sputum will change significantly and it is difficult to expectorate. Strengthening humidification is beneficial to the discharge of secretions. The existing oxygen humidification effect is not good and cannot humidify efficiently, resulting in dry nose discomfort when patients inhale dry oxygen for a long time, and even nose mucosa bleeding in severe cases.
[0006] 4. The temperature and humidity vary greatly in the southern regions, plateaus and central and western cities in China. The humidification requirements of patients during oxygen inhalation are different, and the existing technology cannot adjust the humidity. If a patient needs atomization treatment during oxygen therapy and needs to cooperate with additional atomization equipment and consumables for treatment, it is very inconvenient.
[0007] 5. The oxygen inhalation time of patients with different conditions is long or short, the oxygen flow rate is large or small, there is continuous oxygen inhalation and intermittent oxygen inhalation, and different oxygen inhalation methods have different oxygen consumption. Currently, the calculation of oxygen consumption in each medical institution is only based on the manually accumulated oxygen inhalation time. Therefore, the current clinical calculation of oxygen consumption only by time has the deficiencies of single function, lack of timing and metering functions, and lack of accurate statistics of oxygen flow rate. It can neither meet the scientific metering management of oxygen consumption in medical institutions nor meet the strict monitoring requirements of oxygen usage in home care.
[0008] Therefore, it is crucial to develop a device that integrates efficient humidification and precise flow statistics functions, enabling patients to maintain an appropriate humidity level and accurately monitor oxygen usage during oxygen therapy. Summary of the Utility Model
[0009] The purpose of the present utility model is to provide an ultrasonic atomization oxygen high-efficiency humidification and flow statistics device that can humidify efficiently and count precisely, in order to solve the problems raised in the above-mentioned background technology.
[0010] To achieve the above purpose, the present utility model provides the following technical solutions:
[0011] An ultrasonic atomization oxygen high-efficiency humidification and flow statistics device, including an upper shell, a bottom shell, a main board, and an inhalation mask. The main board is arranged on the upper left side of the upper shell, and an ultrasonic atomization medicine cup and an oxygen loading chamber are placed on the upper right side of the upper shell. A atomization head, a blower, a heating pot, and a power filter are arranged in the cavity between the upper shell and the bottom shell. A sensor, a drain pipe, and an oxygen interface are also arranged on the bottom shell behind the power filter. The inhalation mask is connected to the front side of the bottom shell through an external oxygen three-joint and a hose, and an oxygen flow meter is installed on the hose. A control panel is arranged on the main board. On the upper end of the control panel, a temperature control key, a temperature display board, and a usage time display board are arranged in sequence from left to right. On the lower end of the control panel, a water volume reminder light, an oxygen generation control key, an atomization heat sense control key, a start key, an atomization control key, a wind volume control key, and a stop key are arranged in sequence from left to right.
[0012] Further, the sensor includes a temperature sensor and a humidity sensor.
[0013] Further, a bottom plate is arranged at the bottom of the bottom shell, and an air outlet plug is installed on the bottom plate.
[0014] Further, a pipeline electric heating wire is installed inside the hose.
[0015] Further, a matching mouthpiece is arranged on the inhalation mask.
[0016] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0017] 1. The present utility model adopts high-frequency ultrasonic atomization technology to generate fine water mist, realizing the high-efficiency humidification of oxygen, improving the comfort of inhaled oxygen, and enabling the combination of atomization treatment during the oxygen humidification treatment process.
[0018] 2. The present utility model is provided with a temperature sensor and a humidity sensor, which can monitor and adjust the ambient humidity in real time to ensure that the oxygen humidification output meets the human comfort and medical requirements.
[0019] 3. The utility model is built-in with a high-precision flow sensor, which can count the oxygen consumption in real time and present it to the patient through a visual interface, facilitating monitoring and management.
[0020] 4. The utility model realizes the automatic adjustment of the oxygen flow and humidity level according to the parameters set by the user through the control panel, realizing personalized treatment.
[0021] 5. The utility model is compact in design and easy to operate, and is applicable to various environments such as hospitals and families.
[0022] 6. The utility model can also be externally connected to an oxygen supply device through an oxygen interface and mixed with fine water mist through an adapter to realize oxygen humidification.
[0023] 7. A pipeline electric heating wire is arranged in the hose of the utility model to realize the heating function and reduce the generation of condensed water. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] Figure 1 is one of the structural schematic diagrams of the utility model;
[0025] Figure 2 is the second structural schematic diagram of the utility model.
[0026] In the figure: 1 - upper shell; 2 - bottom shell; 3 - main board; 4 - inhalation mask; 5 - ultrasonic atomization medicine cup; 6 - oxygen loading cabin; oxygen loading cabin 7 - atomization head; 8 - blower; 9 - heating pot; 10 - power filter; 11 - sensor; 12 - drain pipe; 13 - oxygen interface; 14 - external oxygen three-way joint; 15 - hose; 16 - bottom plate; 17 - air outlet plug; 18 - pipeline electric heating wire; 19 - oxygen flow measurement; 20 - mouthpiece; 21 - control panel; 22 - temperature control key; 23 - temperature display board; 24 - usage time display board; 25 - water volume prompt lamp; 26 - oxygen generation control key; 27 - atomization heat sense control key; 28 - start key; 29 - atomization control key; 30 - air volume control key; 31 - stop key. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0027] The technical solutions of this patent will be further described in detail below in conjunction with the specific embodiments.
[0028] Please refer to Figure 1-2, An ultrasonic atomization oxygen high-efficiency humidification and flow rate statistical device, comprising an upper shell 1, a bottom shell 2, a main board 3 and an inhalation mask 4. The main board 3 is arranged on the upper left side of the upper shell 1. An ultrasonic atomization medicine cup 5 and an oxygen loading chamber 6 are placed on the upper right side of the upper shell 1. A atomization head 7, a blower 8, a heating pot 9 and a power filter 10 are arranged in the cavity between the upper shell 1 and the bottom shell 2. A sensor 11, a drain pipe 12 and an oxygen interface 13 are also arranged on the bottom shell 2 at the rear side of the power filter 10. The sensor 11 includes a temperature sensor and a humidity sensor. The inhalation mask 4 is connected to the front side of the bottom shell 2 through an external oxygen three-way joint 14 and a hose 15. A bottom plate 16 is arranged at the bottom of the bottom shell 2. An air outlet plug 17 is installed on the bottom plate 16. A pipeline electric heating wire 18 is installed inside the hose 15. An oxygen flow meter 19 is installed on the hose 15. A matching mouthpiece 20 is arranged on the inhalation mask 4.
[0029] A control panel 21 is arranged on the main board 3. A temperature control key 22, a temperature display board 23 and a usage time display board 24 are sequentially arranged from left to right at the upper end of the control panel 21. A water volume reminder lamp 25, an oxygen generation control key 26, an atomization heat sensation control key 27, a start key 28, an atomization control key 29, an air volume control key 30 and a stop key 31 are sequentially arranged from left to right at the lower end of the control panel 21.
[0030] Through the integrated and innovative technical solution, the utility model effectively solves the deficiencies existing in the existing oxygen treatment equipment, and is applicable to various occasions requiring oxygen and atomization treatment, such as hospitals, nursing homes, home care, and the central and western regions and high-altitude regions of our country, etc. It has an efficient humidification function and accurate flow rate statistical ability, and can, while providing oxygen humidification treatment and atomization treatment for patients, intelligently adjust the humidity level according to different regions and actual environments, and accurately count and record the oxygen inhalation volume of patients. It can not only improve the usage experience of patients, but also provide important data support for medical staff, optimize the treatment plan, and is of great significance for improving the comfort and management efficiency of patients' oxygen humidification treatment and atomization treatment. At the same time, it also provides a new technical option for the medical and healthy life fields.
Claims
1. An ultrasonic atomization oxygen high-efficiency humidification and flow rate statistical device, characterized in that It includes an upper shell (1), a bottom shell (2), a main board (3) and an inhalation mask (4). The main board (3) is arranged on the upper left side of the upper shell (1). An ultrasonic atomization medicine cup (5) and an oxygen loading chamber (6) are placed on the upper right side of the upper shell (1). An atomization head (7), a blower (8), a heating pot (9) and a power filter (10) are arranged in the cavity between the upper shell (1) and the bottom shell (2). A sensor (11), a drain pipe (12) and an oxygen interface (13) are also arranged on the bottom shell (2) at the rear side of the power filter (10). The inhalation mask (4) is connected to the front side of the bottom shell (2) through an external oxygen three-way joint (14) and a hose (15). An oxygen flow meter (19) is installed on the hose (15). A control panel (21) is arranged on the main board (3). A temperature control key (22), a temperature display board (23) and a usage time display board (24) are sequentially arranged from left to right at the upper end of the control panel (21). A water volume reminder lamp (25), an oxygen generation control key (26), an atomization heat sensation control key (27), a start key (28), an atomization control key (29), an air volume control key (30) and a stop key (31) are sequentially arranged from left to right at the lower end of the control panel (21).
2. The ultrasonic atomization oxygen high-efficiency humidification and flow rate statistical device according to claim 1, wherein The sensor (11) includes a temperature sensor and a humidity sensor.
3. The ultrasonic atomization oxygen high-efficiency humidification and flow rate statistics device according to claim 1, characterized in that, A bottom plate (16) is arranged at the bottom of the bottom shell (2), and an air outlet plug (17) is installed on the bottom plate (16).
4. The ultrasonic atomization oxygen high-efficiency humidification and flow rate statistical device according to claim 1, characterized in that, A pipeline electric heating wire (18) is installed inside the hose (15).
5. The ultrasonic atomization oxygen high-efficiency humidification and flow rate statistical device according to claim 1, characterized in that, A matching mouthpiece (20) is arranged on the inhalation mask (4).