Portable breathing training device
The plug-in connection and modular design of the portable breathing trainer solve the problem of traditional breathing trainers being unportable, enabling patients to perform breathing training anytime and anywhere, enhancing respiratory muscle strength and function, and improving ease of use and hygiene.
Patent Information
- Application Number
- CN202422951826.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-02
AI Technical Summary
Traditional breathing training devices are complex in structure and large in size, making them unportable and limiting patients to specific locations for breathing training, thus failing to meet the need for training anytime and anywhere.
A portable breathing trainer has been designed, comprising a mask component and a breathing training component. It features a plug-in connection, a modular design for easy disassembly and cleaning, and includes multiple training balls to provide resistance training. It is suitable for both inhalation and exhalation and can be quickly installed and removed without the need for additional tools.
It enables patients to perform breathing training anytime, anywhere, enhances respiratory muscle strength and function, reduces the difficulty of equipment cleaning, and improves ease of use and hygiene.
Smart Images

Figure CN223732042U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to medical auxiliary equipment technical field especially, relates to a portable breathing training device. BACKGROUND
[0002] The breathing training instrument is a device for helping users to carry out respiratory function training. It is designed based on respiratory physiological mechanism. Normal breathing includes two processes of inhalation and exhalation, and the breathing training instrument can let the respiratory muscles (such as diaphragm, intercostal muscle, etc.) of the user be exercised in a targeted manner through adjusting resistance, pressure and the like. For example, when the user inhales or exhales, the instrument provides certain resistance, so that the respiratory muscles need to contract or relax more forcefully, just like strength training, gradually enhancing muscle strength. For example, chronic obstructive pulmonary disease (COPD) patients, whose respiratory function is impaired, can use the breathing training instrument to help strengthen the respiratory muscles and improve the respiratory efficiency. For example, COPD patients can alleviate the symptoms of dyspnea and improve the activity tolerance by using the breathing training instrument regularly for a long time. For another example, patients after surgery, especially after chest and abdominal surgery. Surgery can affect the breathing mode and respiratory muscle function of the patient. Taking chest surgery as an example, factors such as postoperative wound pain will cause the patient to breathe shallowly and the vital capacity to decrease. The breathing training instrument can help the patient to recover normal respiratory function as soon as possible and prevent lung complications, such as lung infection and atelectasis.
[0003] However, some traditional breathing training instruments have complex structure and large size, are generally installed in fixed training rooms, are inconvenient to use, and limit the patients to only train in specific places, which cannot meet the needs of training anytime and anywhere. Therefore, it is necessary to design a portable breathing rehabilitation training instrument, so that the patient can carry out breathing training at any time and in any place. UTILITY MODEL CONTENT
[0004] In view of the above problems, the utility model provides a portable breathing training device, which can facilitate the patient to carry out breathing training anytime and anywhere without being limited by conditions.
[0005] To achieve the above purpose, the utility model adopts the following technical scheme:
[0006] A portable breathing training device, comprising a mask component and a breathing training component, the mask component comprising a mask body and a first connecting pipe, the first connecting pipe being an L-shaped elbow pipe, the first connecting pipe being fixedly installed on the mask component, one end being located inside the mask body, and the other end penetrating through the mask body, the breathing training component being detachably inserted into the first connecting pipe outside the mask body.
[0007] Preferably, the mouthpiece body is provided with a connecting hole, the mouthpiece body is provided with a mouthpiece protruding mouth corresponding to the mouth, and the connecting hole is arranged at the lower part of the mouthpiece protruding mouth of the mouthpiece body.
[0008] Preferably, the mouthpiece body is further provided with a ventilation hole, the ventilation hole has two and is symmetrically arranged on both sides of the mouthpiece body.
[0009] Preferably, the breathing training component comprises a second connecting pipe, an exhale pipe, an inhale pipe and training balls, the second connecting pipe is detachably connected with the first connecting pipe, the exhale pipe and the inhale pipe are arranged on both sides of the second connecting pipe and are communicated with the second connecting pipe, and the training balls are arranged in the inhale pipe and the exhale pipe in correspondence with activities.
[0010] Preferably, the exhale pipe comprises an exhale pipe body, the exhale pipe body is provided with an exhale hole and an exhaust hole, the exhale hole is arranged at the lower part of the exhale pipe body, and the exhaust hole is arranged at the upper part of the exhale pipe body.
[0011] Preferably, the inhale pipe comprises an inhale pipe body, the inhale pipe body is provided with an inhale hole and an air inlet, the inhale hole is arranged at the top of the inhale pipe body, and the air inlet is arranged at the lower part of the inhale pipe body.
[0012] Preferably, the breathing training component further comprises a communicating pipe, the communicating pipe comprises a first communicating pipe and a second communicating pipe, the first communicating pipe is arranged at the lower part of the exhale pipe so that the second connecting pipe is communicated with the exhale pipe, and the second communicating pipe is arranged at the upper part of the inhale pipe so that the second connecting pipe is communicated with the inhale pipe.
[0013] Preferably, the exhale pipe and the inhale pipe are further provided with digital marks so as to facilitate user identification.
[0014] Preferably, the exhale pipe has a plurality of exhale pipes, the plurality of exhale pipes are communicated through the first communicating pipe, the inhale pipe has a plurality of inhale pipes, and the plurality of inhale pipes are communicated through the second connecting pipe.
[0015] Preferably, the mouthpiece component further comprises a blowing nozzle, and the blowing nozzle is arranged at the first connecting rod port on the inner side of the mouthpiece body.
[0016] Compared with the prior art, the utility model has the beneficial effects that:
[0017] 1. The device comprises a mask component and a breathing training component, the mask component comprises a mask body, the mask body is designed to be made of hard material to ensure that the mask body is not easy to deform, a first connecting pipe is arranged in the mask body, one end of the first connecting pipe is fixed in the mask body, and the other end penetrates through the outside of the mask to facilitate connection with the breathing training component. The connection mode of the first connecting pipe and the breathing training component is plug-in type, the user can quickly disassemble or install the breathing training component according to the need, without the help of additional tools, the user only needs to wear the mask component, and after connecting the training component, the training can be started through normal inhalation and exhalation action.
[0018] 2. The utility model adopts modular design, and the requirements of easy cleaning and hygiene are considered, each component can be disassembled and cleaned, and the hygiene of the equipment is maintained.
[0019] 3. The breathing training component of the utility model is improved by the first connecting pipe and the first connecting pipe, and the airway of the breathing training component is improved to realize that the breathing training component can perform exhalation training and inhalation training without inversion. DRAWINGS
[0020] In order to more clearly illustrate the technical scheme of the embodiment of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment description.
[0021] Figure 1 It is the overall structure schematic view of the utility model;
[0022] Figure 2 It is the side view of the utility model Figure 1 .
[0023] Figure 3 It is the overall structure schematic view of the mask body in the utility model;
[0024] Figure 4 It is the overall structure schematic view of the first connecting pipe in the utility model
[0025] Figure 5 It is the overall structure schematic view of the breathing training component in the utility model;
[0026] Figure 6 It is the sectional view of the breathing training component in the utility model.
[0027] Reference signs: 1, mask component; 100, mask body; 101, first connecting pipe; 102, air vent; 103, blowing nozzle; 104, connecting hole; 105, mask protruding nozzle; 2, breathing training component; 201, second connecting pipe; 202, inhalation pipe body; 2021, inhalation hole; 2022, air inlet hole; 203, exhalation pipe body; 2031, exhalation hole; 2032, air outlet hole; 204, training ball; 205, first communication pipe; 206, second communication pipe. DETAILED DESCRIPTION
[0028] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0029] In the description of the present application, it should be pointed out that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second", "third" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0030] In the description of the present application, it should be pointed out that unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances. In addition, the technical features involved in the different embodiments of the present application described below can be combined with each other as long as they do not conflict with each other.
[0031] The present application provides a portable breathing training device, which aims to make up for the limitations of traditional equipment in use scenarios, especially to enable users to perform breathing training at any time in daily life, thereby improving the strength and function of their respiratory muscles. For example Figures 1-6As shown, the device includes a mask component 1 and a breathing training component 2, which is simple in structure and efficient, fully considering the convenience and comfort of use. The mask component 1 includes a mask body 100, which is designed to be made of hard material to ensure that the mask body 100 is not easily deformed. In order to wear comfortably, a soft pad can be provided inside the mask body 100 to avoid user discomfort. The front of the mask body 100 is provided with an L-shaped elbow, i.e. a first connecting pipe 101, one end of which is fixed in the mask body 100, and the other end passes through the outside of the mask to facilitate connection with the breathing training component 2.
[0032] The connection between the first connecting pipe 101 and the breathing training component 2 is plug-in type, which makes the device very convenient to use. Users can quickly disassemble or install the breathing training component 2 as needed without the need for additional tools, ensuring the portability and flexibility of the device. The breathing training component 2 is used to exercise the respiratory muscles of the patient in a targeted manner, forcing the user's diaphragm, intercostal muscles and other respiratory muscles to contract and relax more, just like strength training, gradually increasing their strength and endurance. In addition, the breathing training component 2 also focuses on portability in design, which is small in size and light in weight, making it easy for users to carry around. Whether at home, in the office, or on the road, they can train at any time without being limited by the location. Users only need to wear the mask component 1 and seal the breathing training component 2 to the first connecting pipe 101 of the mask body 100, and they can start training through normal inhalation and exhalation movements. For patients with chronic obstructive pulmonary disease (COPD), the moderate adjustment of the breathing training component 2 can help strengthen the respiratory muscles, reduce the symptoms of shortness of breath and difficulty breathing, and improve the ventilation function of the lungs. At the same time, postoperative patients can also help restore normal breathing patterns through this portable training instrument, preventing deep breathing restrictions caused by wound pain, thereby effectively preventing pulmonary complications. In addition, the design of the device takes into account the ease of cleaning and hygiene requirements, and all components that come into contact with the nose and mouth can be disassembled and cleaned to maintain the hygiene of the device.
[0033] In the preferred embodiment, in order to achieve the best training effect, the mask body 100 is provided with a connecting hole 104, which is located at the lower part of the mask protruding mouth 105 and is ingeniously connected with the first connecting pipe 101. The mask protruding mouth 105 is designed according to the structure of human face and is located at the mouth area of the mask body 100, providing a natural and comfortable breathing channel. The design of the protruding mouth conforms to the physiological characteristics of the face and can also help users to reduce discomfort when breathing, ensuring smooth airflow during the training process. The connecting hole 104 is located at the lower part of the mask protruding mouth 105 of the mask body 100, which is perpendicular to the ground so that the part of the first connecting pipe 101 extending out of the mask body 100 is perpendicular to the ground, ensuring that the breathing training component 2 connected to the first connecting pipe 101 remains vertical to achieve the best training effect.
[0034] In the preferred embodiment, the mask body 100 is also provided with two symmetrically arranged air vents 102, which not only improve the comfort of the device but also enhance the breathing experience during the training process. The air vents 102 are located on both sides of the mask body 100, ensuring air circulation inside the mask, preventing users from feeling hot during the training process, and ensuring a natural and smooth breathing process to avoid discomfort.
[0035] In the preferred embodiment, the mask component 1 also includes a blowing nozzle 103, which is ingeniously arranged at the port of the first connecting pipe 101 inside the mask body 100. The blowing nozzle 103 is soft and comfortable in material, can fit the mouth, prevent air leakage and improve the comfort of wearing, and ensure the stability of airflow during the training process.
[0036] In the preferred embodiment, the breathing training component 2 includes a second connecting pipe 201, an exhalation pipe, an inhalation pipe, and training balls 204. The second connecting pipe 201 is detachably and sealingly inserted into the first connecting pipe 101, facilitating quick installation or disassembly according to user needs. This connection method ensures the firm connection of the mask component 1 and the training component, and also provides convenience for users to disassemble and clean. The exhalation pipe and inhalation pipe are respectively arranged on both sides of the second connecting pipe 201, corresponding to the exhalation and inhalation processes during training, and are in communication with the second connecting pipe 201. The training balls 204 inside the breathing training component 2 are multiple, the diameter of the training balls 204 is smaller than the inner diameter of the exhalation pipe and inhalation pipe, and the training balls 204 are movably arranged in the exhalation pipe and inhalation pipe, respectively. The function of the training balls 204 is to generate resistance in the process of inhalation and exhalation through the push of airflow, thereby enhancing the strength and endurance of the respiratory muscles. At the same time, by maintaining the posture of the training balls 204 in the exhalation pipe and inhalation pipe, the user can train to keep the breath smooth, achieving better training effect. During inhalation, the training balls 204 in the inhalation pipe and exhalation pipe can provide appropriate resistance to promote the full exercise of the user's inhalation muscle groups, such as diaphragm and intercostal muscles.
[0037] In the preferred embodiment, in the design of the breathing training component 2 of the portable breathing training device, the airway structure of the exhale pipe and inhale pipe is designed to achieve the breathing training component 2 without inverting to perform the exhale training and inhale training, reducing the steps that the user needs to operate, and the user can use the device to perform the breathing training anytime and anywhere. The breathing training component 2 includes a communication pipe, which includes a first communication pipe 205 and a second communication pipe 206. The exhale pipe body 203 is provided with an exhale hole 2031 and an exhaust hole 2032, the exhale hole 2031 is located at the lower part of the exhale pipe body 203, and the exhaust hole 2032 is arranged at the upper part. The first communication pipe 205 is arranged at the lower part of the exhale pipe and connected at the exhale hole 2031 so that the second connection pipe 201 communicates with the exhale pipe. The inhale pipe body 202 is provided with an inhale hole 2021 at the top and an intake hole 2022 at the lower part, and the second communication pipe 206 is arranged at the upper part of the inhale pipe and connected at the inhale hole 2021 so that the second connection pipe 201 communicates with the inhale pipe. In use, the user exhales, and due to the effect of gas pressure, the training ball 204 in the inhale pipe blocks the intake hole 2022 at the lower part of the inhale pipe, so that the exhaled gas can only enter the exhale pipe through the first communication pipe 205. Since the exhaust hole 2032 of the exhale pipe is arranged at the upper part of the exhale pipe, the gas blows the training ball 204 upward, maintains the breath stable, and makes the training ball 204 stay at the uppermost part of the exhale pipe to obtain the exhale training effect. When inhaling, due to the effect of gas pressure, the training ball 204 in the exhale pipe blocks the exhale hole 2031 of the exhale pipe to prevent the gas from being inhaled from the exhale pipe. The gas only enters from the intake hole 2022 at the lower part of the inhale pipe and from the inhale hole 2021 connected with the second communication pipe 206 into the user's lungs. The inhaled gas drives the training ball 204 to rise, maintains the breath stable, and keeps the training ball 204 at the highest point of the inhale pipe to achieve the best inhale training effect.
[0038] In the preferred embodiment, in order to adapt to different groups of people, the number of exhale pipes and inhale pipes can be appropriately increased. Multiple exhale pipes are communicated through the first communication pipe 205, and multiple inhale pipes are communicated through the second communication pipe 206, avoiding the uneven gas flow distribution that may be caused by a single pipe. The parallel arrangement of multiple exhale pipes can effectively increase the air flow rate and resistance during exhale, thereby increasing the exercise effect on the exhale muscles, helping the user to better enhance the strength of the abdominal muscles and intercostal muscles, and being suitable for people with large lung capacity.
[0039] In the preferred embodiment, in order to improve the use convenience of the portable breathing training device, volume digital marks are arranged on the exhale pipe and inhale pipe respectively.
[0040] The above is only a specific implementation of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A portable respiratory trainer, characterized by: The utility model provides a mouthpiece component (1) and breath training component (2) including, the mouthpiece component (1) includes mouthpiece body (100) and first connecting pipe (101), the first connecting pipe (101) is L-shaped bend pipe, the first connecting pipe (101) fixed mounting is in the mouthpiece component (1), one end is located in the mouthpiece body (100) inside, the other end passes through the mouthpiece body (100), the breath training component (2) is detachably inserted in the first connecting pipe (101) outside the mouthpiece body (100).
2. A portable respiratory trainer according to claim 1, wherein The mouthpiece body (100) is provided with a connecting hole (104), and the mouthpiece body (100) is provided with a mouthpiece convex mouth (105) corresponding to the position of the mouth, and the connecting hole (104) is arranged at the lower part of the mouthpiece convex mouth (105) of the mouthpiece body (100), and the first connecting pipe (101) is arranged at the connecting hole (104).
3. A portable respiratory trainer according to claim 1, wherein The mouthpiece body (100) is also provided with a ventilation port (102), and the ventilation port (102) has two and is symmetrically arranged on both sides of the mouthpiece body (100).
4. The portable respiratory trainer of claim 1, wherein The breath training component (2) includes a second connecting pipe (201), an exhalation pipe, an inhalation pipe, and training balls (204). The second connecting pipe (201) is detachably connected with the first connecting pipe (101). The exhalation pipe and the inhalation pipe are located on both sides of the second connecting pipe (201) and communicate with the second connecting pipe (201). The training balls (204) are arranged in the exhalation pipe and the inhalation pipe in correspondence with the activities.
5. A portable respiratory trainer according to claim 4, wherein The exhalation pipe includes an exhalation pipe body (203), and the exhalation pipe body (203) is provided with an exhalation hole (2031) and an exhaust hole (2032). The exhalation hole (2031) is arranged at the lower part of the exhalation pipe body (203), and the exhaust hole (2032) is arranged at the upper part of the exhalation pipe body (203).
6. A portable respiratory trainer according to claim 4, wherein The inhalation pipe includes an inhalation pipe body (202), and the inhalation pipe body (202) is provided with an inhalation hole (2021) and an air inlet hole (2022). The inhalation hole (2021) is arranged at the top of the inhalation pipe body (202), and the air inlet hole (2022) is arranged at the lower part of the inhalation pipe body (202).
7. A portable respiratory trainer according to claim 4, wherein The breath training component (2) further includes a communication pipe, and the communication pipe includes a first communication pipe (205) and a second communication pipe (206). The first communication pipe (205) is arranged at the lower part of the exhalation pipe so that the second connecting pipe (201) communicates with the exhalation pipe. The second communication pipe (206) is arranged at the upper part of the inhalation pipe so that the second connecting pipe (201) communicates with the inhalation pipe.
8. The portable respiratory trainer of claim 4, wherein Digital identification is further arranged on the exhalation pipe and the inhalation pipe to facilitate user identification.
9. A portable respiratory trainer according to claim 7, wherein There are a plurality of exhalation pipes, and the plurality of exhalation pipes are communicated through the first communication pipe (205). There are a plurality of inhalation pipes, and the plurality of inhalation pipes are communicated through the second connecting pipe (201).
10. The portable respiratory trainer of claim 1, wherein The mask component (1) further comprises a mouthpiece (103) arranged at the port of the first connecting pipe (101) inside the mask body (100).