Respiratory function auxiliary exercise device
By combining the breathing exercise device components and the quick-release air supply components, the problem of easy detachment of PVC pipes is solved, achieving a stable pipe connection and flexible separation, thus improving the effectiveness of breathing exercises.
Patent Information
- Application Number
- CN202520298862.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-02-24
AI Technical Summary
The PVC pipes in existing respiratory function training devices are prone to detaching during use, affecting the training effect.
The design incorporates a breathing exerciser assembly and a quick-release gas delivery assembly, forming a quick-release structure that ensures a secure pipe connection and provides rapid disconnection.
This prevents pipes from falling off, improves the flexibility and stability of use, and enhances the exercise effect.
Smart Images

Figure CN223668591U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to medical rehabilitation equipment technical field relates to a rehabilitation breathing function exercise device, specifically speaking is related to a breathing function exercise device convenient for adjusting training intensity. BACKGROUND
[0002] The breathing function exercise device is used in the process, generally is the exercise personnel to the exercise device blow or inhale, keep the shunt ball suspended, like this to exercise the respiratory function, general breathing function exercise device can adjust the breathing resistance through the knob, so as to adjust the breathing training intensity, but in the prior art, pvc pipe is generally set in the air inlet pipe, due to the pipeline is lighter, blow in the process to cause the pipeline to separate, influence the breathing exercise effect. UTILITARIAN CONTENT
[0003] The utility model discloses a kind of breathing function auxiliary exercise devices, by the cooperation of the breathing exercise device component and quick-release docking gas delivery component of being set, reach when using, the structure design of quick-release type is formed to pipe connection, avoid pipe drop, and it is convenient to separate quickly, it is convenient to use.
[0004] The breathing function auxiliary exercise device provided in the application adopts the following technical scheme:
[0005] A kind of breathing function auxiliary exercise device, comprising:
[0006] Breathing exercise device component, the breathing exercise device component includes the air inlet shell body being set, the lower blow channel column being communicated with the air inlet shell body, the air outlet shell body being fixed with the air inlet shell body, the docking channel being communicated with the air outlet shell body, the first exhalation cylinder being docked with the docking channel, the second exhalation cylinder being set in the first exhalation cylinder side, the third exhalation cylinder being communicated with the second exhalation cylinder, the shunt ball in the first exhalation cylinder, the rectangular frame being communicated in the bottom surface of lower blow channel column, the rectangular shell and base being set in the bottom surface of the rectangular frame;
[0007] Quick-release docking gas delivery component, the quick-release docking gas delivery component includes the air inlet pipe being communicated with the air inlet shell body, the PVC pipe being set in the air inlet pipe side, the conical head being communicated with the PVC pipe, the annular baffle being fixed in the outer wall of the conical head, the vertical plate being fixed in the bottom surface of the annular baffle, the round hole being opened in the surface of the vertical plate, the first arc surface being opened in the bottom surface of the vertical plate, the annular plate being set in the outer wall of the air inlet pipe, the rectangular notch being opened in the surface of the annular plate, the round rod being penetrated through the outer wall of the rectangular notch, the hole site being opened in the rectangular notch, the cylinder being fixed in the top end of the round rod, the second arc surface being opened in the surface of the cylinder, the disc being fixed in the surface of the round rod, the spring being set between disc and annular plate.
[0008] As a preferred scheme of the utility model, the same shunt ball is arranged in the second expiration cylinder and the third expiration cylinder, and the same butt joint channel is arranged at the top end position of the second expiration cylinder and the third expiration cylinder.
[0009] As a preferred scheme of the utility model, the first expiration cylinder, the second expiration cylinder and the third expiration cylinder are communicated with the rectangular frame respectively.
[0010] As a preferred scheme of the utility model, the diameter of the cylinder is greater than the diameter of the round rod, and the top end of the cylinder is clamped into the hole position.
[0011] As a preferred scheme of the utility model, the diameter of the round hole is same with the diameter of the cylinder.
[0012] As a preferred scheme of the utility model, the mounting assembly is further included, the mounting assembly includes the vertical plate fixed on the bottom surface of the annular plate and the threaded hole opened on the surface of the vertical plate.
[0013] In conclusion, the utility model has at least one of the following beneficial technical effects:
[0014] (1) the utility model discloses the cooperation of breathing exercise device assembly and quick release butt joint gas transmission assembly, forms the quick release structure design of pipe connection, avoids pipe falling off, and the quick separation of convenient, and is convenient to use.
[0015] (2) the utility model discloses the installation assembly, and the annular plate can be freely disassembled, so that the user can freely select the quick release structure, and the flexibility of use is improved. DRAWINGS
[0016] Figure 1 It is the first perspective three-dimensional structure schematic diagram of the utility model.
[0017] Figure 2 It is the second perspective three-dimensional structure schematic diagram of the utility model.
[0018] Figure 3 It is the first partial structure schematic diagram of quick release butt joint gas transmission assembly in the utility model.
[0019] Figure 4 It is the second partial structure schematic diagram of quick release butt joint gas transmission assembly in the utility model.
[0020] In the figure: Inlet housing 11, outlet housing 111, downward blowing channel column 12, docking channel 13, first exhalation cylinder 14, second exhalation cylinder 15, third exhalation cylinder 16, diverter ball 17, rectangular frame 18, rectangular shell 19, base 110, inlet pipe 21, PVC pipe 22, conical head 23, annular baffle 231, vertical plate 24, round hole 241, first arc-shaped surface 242, annular plate 25, rectangular slot 26, hole 27, round rod 28, cylinder 29, second arc-shaped surface 291, disc 292, spring 210, upright plate 31, threaded hole 32. Detailed Implementation
[0021] The present invention will be further explained below with reference to the accompanying drawings and specific embodiments. It should be understood that these embodiments are only used to illustrate the present invention and not to limit the scope of the present invention. After reading the present invention, any modifications of the present invention in various equivalent forms by those skilled in the art will fall within the scope defined by the appended claims.
[0022] Example 1
[0023] like Figures 1-4 As shown, a respiratory function assistive training device is composed of a respiratory training device assembly and a quick-release air delivery assembly.
[0024] Specifically, such as Figures 1-2 As shown, in this embodiment, the breathing exerciser assembly consists of an air inlet shell 11, a downward blowing channel column 12 communicating with the air inlet shell 11, an air outlet shell 111 fixed to the air inlet shell 11, a docking channel 13 communicating with the air outlet shell 111, a first exhalation cylinder 14 docked with the docking channel 13, a second exhalation cylinder 15 disposed on one side of the first exhalation cylinder 14, a third exhalation cylinder 16 communicating with the second exhalation cylinder 15, a diverter ball 17 located inside the first exhalation cylinder 14, a rectangular frame 18 communicating with the bottom surface of the downward blowing channel column 12, a rectangular shell 19 disposed on the bottom surface of the rectangular frame 18, and a base 110 connected together.
[0025] In use, the rectangular frame 18 is fitted between the rectangular shell 19 and the base 110. When the rectangular frame 18 contacts the rectangular shell 19, there is a gap between the base 110 and the rectangular frame 18. At this time, air is blown through the air inlet pipe 21. The blown air flows through the lower air channel column 12 into the rectangular frame 18, and then enters the first exhalation cylinder 14, the second exhalation cylinder 15 and the third exhalation cylinder 16 respectively, directly blowing up the diverter ball 17 in the exhalation cylinder. This keeps the diverter ball 17 in position, so as to facilitate the user to exercise breathing function.
[0026] Specifically, such as Figure 3As shown, in the embodiment, the quick-release docking gas delivery assembly is composed of an air inlet pipe 21 in communication with the air inlet outer shell 11, a PVC pipe 22 arranged on the side of the air inlet pipe 21, a conical head 23 in communication with the PVC pipe 22, an annular baffle 231 fixed to the outer wall of the conical head 23, a vertical plate 24 fixed to the bottom surface of the annular baffle 231, a circular hole 241 opened on the surface of the vertical plate 24, a first arc surface 242 opened on the bottom surface of the vertical plate 24, an annular plate 25 arranged on the outer wall of the air inlet pipe 21, a rectangular slot 26 opened on the surface of the annular plate 25, a circular rod 28 penetrating through the outer wall of the rectangular slot 26, a hole site 27 opened in the rectangular slot 26, a cylinder 29 fixed to the top end of the circular rod 28, a second arc surface 291 opened on the surface of the cylinder 29, a disc 292 fixed to the surface of the circular rod 28, and a spring 210 arranged between the disc 292 and the annular plate 25.
[0027] In specific use, the conical head 23 is inserted into the air inlet pipe 21 forwardly, in the process of insertion, the vertical plate 24 also moves forwardly, the vertical plate 24 drives the first arc surface 242 to be inserted into the rectangular slot 26, the first arc surface 242 extrudes the second arc surface 291, at this time, the cylinder 29 moves backwardly, so that the cylinder 29 is separated from the hole site 27, at this time, the spring 210 is compressed, when the circular hole 241 corresponds to the cylinder 29, the spring 210 restores deformation, and the cylinder 29 directly penetrates through the circular hole 241, so that the positioning and locking are realized, and the use of separation is avoided. When disassembling, the user pulls the disc 292 by hand, so that the spring 210 is compressed, the cylinder 29 is separated from the circular hole 241, so that the vertical plate 24 can be pulled out, and the separation of the conical head 23 is realized.
[0028] Embodiment 2
[0029] Different from the above-mentioned embodiment 1, in the embodiment, the annular plate 25 can be freely disassembled by arranging a mounting assembly, so that the user can freely select the use of the quick-release structure, and the flexibility of use is improved.
[0030] Specifically, as shown in the figure, Figures 3-4 the mounting assembly includes a vertical plate 31 fixed to the bottom surface of the annular plate 25 and a threaded hole 32 opened on the surface of the vertical plate 31.
[0031] In specific use, the user uses a threaded long rod to penetrate through the threaded hole 32, so that the annular plate 25 is positioned and locked, and the annular plate 25 is conveniently disassembled, when the quick-release structure is not needed to be used, the annular plate 25 can be directly disassembled, so that the user can freely select and flexibly use.
Claims
1. A breathing function assisted exercise device, characterized in that, The utility model relates to a breathing exerciser, which comprises an air inlet casing (11), a lower air outlet channel column (12) in communication with the air inlet casing (11), an air outlet casing (111) fixed to the air inlet casing (11), a docking channel (13) in communication with the air outlet casing (111), a first air outlet cylinder (14) in docking with the docking channel (13), a second air outlet cylinder (15) arranged on one side of the first air outlet cylinder (14), a third air outlet cylinder (16) in communication with the second air outlet cylinder (15), a flow dividing ball (17) arranged in the first air outlet cylinder (14), a rectangular frame (18) arranged at the bottom of the lower air outlet channel column (12), a rectangular casing (19) arranged at the bottom of the rectangular frame (18), and a base (110). The utility model relates to a quick-release docking air outlet assembly, which comprises an air inlet pipe (21) in communication with the air inlet casing (11), a PVC pipe (22) arranged on the side of the air inlet pipe (21), a conical head (23) in communication with the PVC pipe (22), an annular baffle (231) fixed to the outer wall of the conical head (23), a vertical plate (24) fixed to the bottom of the annular baffle (231), a circular hole (241) arranged on the surface of the vertical plate (24), a first arc surface (242) arranged at the bottom of the vertical plate (24), an annular plate (25) arranged on the outer wall of the air inlet pipe (21), a rectangular notch (26) arranged on the surface of the annular plate (25), a circular rod (28) penetrating through the outer wall of the rectangular notch (26), a hole (27) arranged in the rectangular notch (26), a circular column (29) fixed to the top end of the circular rod (28), a second arc surface (291) arranged on the surface of the circular column (29), a disc (292) fixed to the surface of the circular rod (28), and a spring (210) arranged between the disc (292) and the annular plate (25). The second air outlet cylinder (15) and the third air outlet cylinder (16) are provided with the same flow dividing ball (17), and the top end positions of the second air outlet cylinder (15) and the third air outlet cylinder (16) are provided with the same docking channel (13).
2. A respiratory function assisted exercise device according to claim 1, characterised in that: The first air outlet cylinder (14), the second air outlet cylinder (15), and the third air outlet cylinder (16) are in communication with the rectangular frame (18), respectively.
3. A respiratory function assisted exercise device according to claim 2, characterised in that: The diameter of the circular column (29) is greater than the diameter of the circular rod (28), and the top end of the circular column (29) is clamped into the hole (27).
4. A respiratory function assisted exercise device according to claim 3, characterised in that: The diameter of the circular hole (241) is the same as the diameter of the circular column (29).
5. A respiratory function assisted exercise device according to claim 4, characterised in that: The utility model further comprises a mounting assembly, which comprises a vertical plate (31) fixed to the bottom of the annular plate (25) and a threaded hole (32) arranged on the surface of the vertical plate (31).
6. A respiratory function assisted exercise device according to claim 5, wherein: