Respiratory training device detection device

By using first and second vacuum generators to create negative pressure in the breathing trainer, the problem of airflow channel blockage is solved, enabling unobstructed and universal detection, observation of the suspension of the suspended ball, and improving the aesthetics and adaptability of the detection device.

CN223470791UActive Publication Date: 2025-10-24SHAOXING REBORN MEDICAL DEVICES CO LTD
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Patent Information

Application Number
CN202422838325.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-21
Publication Date
2025-10-24
Estimated Expiration
2034-11-21

AI Technical Summary

Technical Problem

Existing breathing trainers lack effective air pressure change detection devices, which leads to airflow channels being blocked by air pressure sensors, affecting training effectiveness.

Method used

The first vacuum generator and the second vacuum generator are used to form negative pressure. The negative pressure is changed by adjusting the pressure regulating valve. The suspension of the suspended ball under different air pressures is observed. The rack and the mounting plate are combined to hide the pipeline, thereby improving the versatility and aesthetics of the detection device.

Benefits of technology

It enables non-blocking detection of breathing trainers, improves the versatility and aesthetics of the detection, and can adapt to breathing trainers with different volume flow rates to observe the suspension of the suspension ball.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223470791U_ABST
    Figure CN223470791U_ABST
Patent Text Reader

Abstract

The utility model discloses a respiratory training device detection device which comprises a first vacuum generator, a second vacuum generator, a first stop valve, a second stop valve, a three-way pipe, an exhaust valve, a first pressure regulating valve, a second pressure regulating valve, a first connector and a second connector. The air outlet end of the second vacuum generator is communicated with the second connector of the three-way pipe through a second air outlet pipe, the vacuum end of the first vacuum generator is communicated with the output end of the first pressure regulating valve through a first connecting pipe, and the vacuum end of the second vacuum generator is communicated with the output end of the second pressure regulating valve through a second connecting pipe. Negative pressure is formed through the first vacuum generator and the second vacuum generator, a suspension ball in a floater pipeline of the respiratory training device is sucked up through the negative pressure, meanwhile, the magnitude of the negative pressure is changed by adjusting the first pressure adjusting valve and the second pressure adjusting valve, and therefore the suspension conditions of the suspension ball under different air pressures can be observed conveniently.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a respiratory training device detection technical field more specifically, relate to a respiratory training device detection device. BACKGROUND

[0002] Clinically, for the patient who carries out thoracic operation or lung radiotherapy, needs to do respiratory training after operation, can guarantee respiratory tract unobstructed through respiratory training, improves respiratory muscle function, promotes sputum and sputum drainage, and strengthens gas exchange efficiency.

[0003] At present, the simple respiratory training device is used to carry out respiratory training clinically, such as Figure 1 In prior art, there is few corresponding detection device for the respiratory training device to detect the air pressure change of the suction airflow, if the air pressure sensor is arranged in the airflow channel according to the conventional mode, then the airflow channel will be blocked, and the respiratory training will be affected.

[0004] Therefore, a new scheme needs to be proposed to solve the above problems. UTILITY MODEL CONTENT

[0005] The utility model aims at overcoming the deficiency of prior art, provides a respiratory training device detection device.

[0006] In order to realize the above object, the utility model adopts the following technical scheme:

[0007] A respiratory training device detection device, including first vacuum generator, second vacuum generator, first stop valve, second stop valve, three -way pipe, exhaust valve, first pressure regulating valve, second pressure regulating valve, first interface and second interface, the first vacuum generator's air outlet end is connected with the first joint of three -way pipe through the first air outlet pipe, the first stop valve is installed on the first air outlet pipe, the air outlet end of second vacuum generator is connected with the second joint of three -way pipe through the second air outlet pipe, the second stop valve is installed on the second air outlet pipe, the third joint of three -way pipe is connected with exhaust pipe, the exhaust valve is installed on exhaust pipe, the vacuum end of first vacuum generator is connected with the output end of first pressure regulating valve through the first connecting pipe, the input end of first pressure regulating valve is connected with first interface through the first air inlet pipe, the vacuum end of second vacuum generator is connected with the output end of second pressure regulating valve through the second connecting pipe, the input end of second pressure regulating valve is connected with second interface through the second air inlet pipe.

[0008] Further, it further includes the mounting plate, the first vacuum generator, second vacuum generator, first stop valve, second stop valve, three -way pipe, exhaust valve, first pressure regulating valve, second pressure regulating valve, first interface and second interface are installed on the mounting plate.

[0009] Further, the mounting plate is mounted on the upper surface of the rack, and the first connecting pipe, the second connecting pipe, the first air inlet pipe and the second air inlet pipe are located in the inner cavity of the rack.

[0010] Further, the first vacuum generator and the second vacuum generator have the same or different entrainment flow.

[0011] The utility model discloses beneficial effects are:

[0012] 1. In the utility model, the first vacuum generator and the second vacuum generator are arranged to form negative pressure, and the suspended ball in the breathing training device float pipeline is sucked up by using the negative pressure, and the size of the negative pressure is changed by adjusting the first pressure regulating valve and the second pressure regulating valve, so that the suspension of the suspended ball under different air pressures is observed.

[0013] 2. In the utility model, the first vacuum generator and the second vacuum generator have the same or different entrainment flow; when the first vacuum generator and the second vacuum generator have the same entrainment flow, the same volume flow breathing training device can be detected, and one of the vacuum generators is used as a spare; when the first vacuum generator and the second vacuum generator have different entrainment flow, different volume flow breathing training devices can be detected, so as to improve the versatility of the detection device. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is a structural schematic view of the breathing training device in the prior art;

[0015] Figure 2 It is a structural schematic view of the breathing training device detection device in the embodiment;

[0016] Figure 3 It is a top view structural schematic view of the breathing training device in the embodiment;

[0017] Figure 4 It is a connection structural schematic view of the first pressure regulating valve and the first air inlet pipe in the embodiment.

[0018] Reference signs: first vacuum generator 1, second vacuum generator 2, first stop valve 3, second stop valve 4, three-way pipe 5, exhaust valve 6, first pressure regulating valve 7, second pressure regulating valve 8, first interface 9, second interface 10, first air outlet pipe 11, second air outlet pipe 12, exhaust pipe 13, first connecting pipe 14, first air inlet pipe 15, second connecting pipe 16, second air inlet pipe 17, mounting plate 18, rack 19, breathing training device 20, air inlet 201, suspended ball 202. DETAILED DESCRIPTION

[0019] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0020] Embodiment: A breathing training device detection device, such as Figures 2-4 As shown, it includes a mounting plate 18, and a first vacuum generator 1, a second vacuum generator 2, a first stop valve 3, a second stop valve 4, a three-way pipe 5, an exhaust valve 6, a first pressure regulating valve 7, a second pressure regulating valve 8, a first interface 9 and a second interface 10 installed on the mounting plate 18; wherein, the first vacuum generator 1 and the second vacuum generator 2 both have an air inlet end, an air outlet end and a vacuum end, the air outlet end of the first vacuum generator 1 is connected to the first air outlet pipe 11, and is connected to the first joint of the three-way pipe 5 through the first air outlet pipe 11, the first stop valve 3 is installed on the first air outlet pipe 11, the air outlet end of the second vacuum generator 2 is connected to the second air outlet pipe 12, and is connected to the second joint of the three-way pipe 5 through the second air outlet pipe 12, the second stop valve 4 is installed on the second air outlet pipe 12, the third joint of the three-way pipe 5 is connected to the exhaust pipe 13, and the exhaust valve 6 is installed on the exhaust pipe 13.

[0021] Furthermore, the vacuum end of the first vacuum generator 1 is connected to a first connecting pipe 14, and is connected to the output end of the first pressure regulating valve 7 through the first connecting pipe 14. The input end of the first pressure regulating valve 7 is connected to a first air inlet pipe 15, and is connected to the first interface 9 through the first air inlet pipe 15; the vacuum end of the second vacuum generator 2 is connected to a second connecting pipe 16, and is connected to the output end of the second pressure regulating valve 8 through the second connecting pipe 16. The input end of the second pressure regulating valve 8 is connected to a second air inlet pipe 17, and is connected to the second interface 10 through the second air inlet pipe 17.

[0022] During detection, the first vacuum generator 1 and the second vacuum generator 2 are not started at the same time, that is, when the first vacuum generator 1 is started, the second vacuum generator 2 is turned off, and when the second vacuum generator 2 is started, the first vacuum generator 1 is turned off.

[0023] like Figure 1 、 Figure 2As shown, when the first vacuum generator 1 is used, first connect the first interface 9 and the inhalation port 201 of the breathing trainer 20 through the hose, then, open the first stop valve 3, the exhaust valve 6 and the first pressure regulating valve 7, start the first vacuum generator 1, the first vacuum generator 1 introduces the air from the outside through the air inlet and discharges from the air outlet to the first air outlet pipe 11, the air flow is discharged from the end of the exhaust pipe 13 after passing through the first air outlet pipe 11 and the three-way pipe 5, at the same time, in the process of inhaling and exhaling of the first vacuum generator 1, the negative pressure is formed in the vacuum end, the suspended ball 202 in the float pipe of the breathing trainer 20 is sucked up by the negative pressure, and the size of the negative pressure can be changed by adjusting the first pressure regulating valve 7, so that different suspended balls 202 are sucked up. When the second vacuum generator 2 is used, the process is the same.

[0024] Further, the entrainment flow of the first vacuum generator 1 and the second vacuum generator 2 can be the same or different; when the entrainment flow of the first vacuum generator 1 and the second vacuum generator 2 is the same, the first vacuum generator 1 and the second vacuum generator 2 can detect the breathing trainer 20 of the same volume flow, and one of the vacuum generators is used as a backup; when the entrainment flow of the first vacuum generator 1 and the second vacuum generator 2 is different, the first vacuum generator 1 and the second vacuum generator 2 can detect the breathing trainer 20 of different volume flows, so as to improve the versatility of the detection device.

[0025] As preferred, the exhaust valve 6 is integrated with a pressure gauge, the exhaust air pressure can be observed through the pressure gauge; the first pressure regulating valve 7 and the second pressure regulating valve 8 are integrated with pressure gauges, the size of the negative pressure can be observed through the pressure gauges, so that the suspension of the suspended ball 202 under the air pressure can be observed.

[0026] Further, the detection device further comprises a rack 19, the mounting plate 18 is installed on the upper surface of the rack 19, and the first connecting pipe 14, the second connecting pipe 16, the first air inlet pipe 15 and the second air inlet pipe 17 are located in the inner cavity of the rack 19. By arranging the rack 19, on the one hand, the first connecting pipe 14, the second connecting pipe 16, the first air inlet pipe 15 and the second air inlet pipe 17 can be protected to a certain extent, and on the other hand, by hiding the first connecting pipe 14, the second connecting pipe 16, the first air inlet pipe 15 and the second air inlet pipe 17 in the inner cavity of the rack 19, the appearance of the detection device can be improved and the pipe arrangement is facilitated.

[0027] The preferred embodiments of the present application are described above, the protection scope of the present application is not limited to the above-mentioned embodiments, any technical scheme falling within the idea of the present application belongs to the protection scope of the present application. It should be noted that, for ordinary skilled in the art, some improvements and decorations without departing from the principle of the present application are also considered as the protection scope of the present application.

Claims

1. A respiratory trainer detection device, characterized in that, The first vacuum generator (1), the second vacuum generator (2), the first stop valve (3), the second stop valve (4), the tee pipe (5), the exhaust valve (6), the first pressure regulating valve (7), the second pressure regulating valve (8), the first interface (9), and the second interface (10) are included, the air outlet end of the first vacuum generator (1) is communicated with the first joint of the tee pipe (5) through the first air outlet pipe (11), the first stop valve (3) is installed on the first air outlet pipe (11), the air outlet end of the second vacuum generator (2) is communicated with the second joint of the tee pipe (5) through the second air outlet pipe (12), the second stop valve (4) is installed on the second air outlet pipe (12), the third joint of the tee pipe (5) is connected with the exhaust pipe (13), the exhaust valve (6) is installed on the exhaust pipe (13), the vacuum end of the first vacuum generator (1) is communicated with the output end of the first pressure regulating valve (7) through the first connecting pipe (14), the input end of the first pressure regulating valve (7) is communicated with the first interface (9) through the first air inlet pipe (15), the vacuum end of the second vacuum generator (2) is communicated with the output end of the second pressure regulating valve (8) through the second connecting pipe (16), and the input end of the second pressure regulating valve (8) is communicated with the second interface (10) through the second air inlet pipe (17).

2. The respiratory training device detection apparatus of claim 1, wherein The mounting plate (18) is further included, and the first vacuum generator (1), the second vacuum generator (2), the first stop valve (3), the second stop valve (4), the tee pipe (5), the exhaust valve (6), the first pressure regulating valve (7), the second pressure regulating valve (8), the first interface (9), and the second interface (10) are installed on the mounting plate (18).

3. A respiratory trainer detection device according to claim 2, wherein, The rack (19) is further included, and the mounting plate (18) is installed on the upper surface of the rack (19), and the first connecting pipe (14), the second connecting pipe (16), the first air inlet pipe (15), and the second air inlet pipe (17) are located in the inner cavity of the rack (19).

4. The respiratory exerciser detection device of claim 1, wherein The injection flow rates of the first vacuum generator (1) and the second vacuum generator (2) are the same or different.