Weight for respiratory training and respiratory training device
By employing a cavity, lid, magnet, counterweight, and iron plate structure in the breathing training device, the problems of fixed and easily separable breathing weights are solved, achieving stability and adjustability in breathing training and improving production efficiency.
Patent Information
- Application Number
- CN202422643354.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-31
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-10-31
AI Technical Summary
In existing breathing training devices, the weights of the breathing weights are fixed and easily separated, resulting in unstable training effects and making it difficult to meet the diverse impedance requirements of users.
Design a weight for breathing training, which adopts a structure of cavity, lid, magnet, counterweight and iron plate. The counterweight is fixed together by the attraction of the magnet, and the weight of the weight can be changed by adjusting the material and weight of the counterweight. Combined with the filling part to fill the remaining space to ensure that the weight does not separate.
It achieves stability and weight adjustability of the weights during breathing training, ensuring stability of training difficulty and improving productivity.
Smart Images

Figure CN223555436U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a weight and respiratory training device, especially a weight and respiratory training device for respiratory training. BACKGROUND
[0002] Respiratory pressure loading resistance training is a respiratory activity that requires sufficient respiratory pressure to be generated by a subject during breathing to complete. Studies have shown that such training devices can improve the respiratory muscle strength of healthy adults and patients with chronic obstructive pulmonary disease and multiple sclerosis, and improve their whole-body endurance performance. The prior art usually uses a respiratory pressure loading resistance training device for respiratory training. When a user performs an inhalation action for respiratory training, negative pressure is applied to the breathing weight when air flows into the breathing device cylinder through the breathing device cover. When the air force in the breathing device cylinder exceeds the weight of the breathing weight, the breathing weight will move radially along the cylinder. The weight of the breathing weight is adjusted by increasing or decreasing the number of breathing weights.
[0003] In the prior art, the breathing weight is made of a single material. Once the size is determined and processed, the weight of the weight is fixed. However, the user's demand for training resistance is diversified during the respiratory training process, and the weight of the breathing weight needs to meet the user's demand for graded resistance training. When there are at least two breathing weights in the breathing device cylinder, due to the machining precision problem on the surface of the breathing weight, there is a gap between the weights and the weights, and the edge has a chamfer, which causes air flow to enter, and then the breathing weight separation phenomenon occurs, which cannot maintain the difficulty of the user's respiratory training to a certain extent, and thus reduces the effect of the user's respiratory training to a certain extent. SUMMARY
[0004] The technical problem solved by the utility model is to construct a weight and respiratory training device for respiratory training, which overcomes the technical problems of inaccurate control and poor respiratory training effect of the prior art.
[0005] The technical solution of the utility model is to construct a weight for respiratory training, which comprises a cavity, a cover matched with the cavity, a magnet, a counterweight, and an iron sheet. The iron sheet is arranged at the bottom of the cavity, the counterweight is arranged on the iron sheet, and the magnet is arranged between the counterweight and the cover.
[0006] The further technical solution of the utility model is that it further comprises a filling part for filling the remaining space in the cavity.
[0007] The further technical solution of the utility model is that the filling part is arranged between the counterweight and the magnet.
[0008] The further technical solution of the utility model is that the cover and the cavity are connected.
[0009] The further technical scheme of the utility model discloses: the cavity and the lid are circular or square.
[0010] The further technical scheme of the utility model discloses: the weight is set with a plurality of different weights according to the different weight of counterweight
[0011] The technical scheme of the utility model discloses: a kind of breathing training device is constructed, including respirator cylinder, respirator lid, respirator base, breathing training weight, air guide pipe, breathing mouthpiece, the inside of respirator cylinder is equipped with breathing chamber, the breathing training weight is placed in breathing chamber, the top of respirator cylinder is connected respirator lid, the bottom of respirator cylinder is connected respirator base, respirator lid is equipped with air hole, respirator base is equipped with airflow duct, one end of airflow duct is communicated breathing chamber, the other end of airflow duct is connected with the one end of air guide pipe, the other end of air guide pipe is connected with breathing mouthpiece.
[0012] The technical effect of the utility model discloses: a kind of breathing training weight and breathing training device are constructed, and breathing training weight includes cavity, lid matched with the cavity, magnet, counterweight, iron sheet, the iron sheet is set in the bottom of the cavity, the counterweight is set on the iron sheet, the magnet is set between the counterweight and the lid. A kind of breathing training device, including respirator cylinder, respirator lid, respirator base, breathing training weight, air guide pipe, breathing mouthpiece, the inside of respirator cylinder is equipped with breathing chamber, the breathing training weight is placed in breathing chamber, the top of respirator cylinder is connected respirator lid, the bottom of respirator cylinder is connected respirator base, respirator lid is equipped with air hole, respirator base is equipped with airflow duct, one end of airflow duct is communicated breathing chamber, the other end of airflow duct is connected with the one end of air guide pipe, the other end of air guide pipe is connected with breathing mouthpiece. It has the following technical effects: 1, more reliable, breathing weight is not separated in the breathing training process, airflow in respirator cylinder is relatively stable, to a certain extent, guarantee breathing pressure resistance stable, in turn, keep the difficulty of user breathing training. 2, production efficiency is improved. Breathing weight structure cavity, by changing the material and weight of counterweight to change the weight of weight, different specifications weight breathing weight can be quickly produced. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is the structure schematic view of the utility model breathing training weight.
[0014] Figure 2 It is the structure schematic view of the utility model breathing training device. DETAILED DESCRIPTION
[0015] The technical solution of this utility model will be further described below with reference to specific embodiments.
[0016] like Figure 1 As shown, the specific embodiment of this utility model is as follows: a weight for breathing training is constructed, including a cavity 1, a cover 2 that cooperates with the cavity 1, a magnet 3, a counterweight 4, and an iron plate 5. The iron plate 5 is disposed at the bottom of the cavity 1, the counterweight 4 is disposed on the iron plate 5, and the magnet 3 is disposed between the counterweight 4 and the cover 2.
[0017] like Figure 1 As shown, the specific implementation process of this utility model is as follows: A breathing training weight includes a cavity 1, a cover 2 that cooperates with the cavity 1, a magnet 3, a counterweight 4, and an iron plate 5. The iron plate 5 is disposed at the bottom of the cavity 1, the counterweight 4 is disposed on the iron plate 5, and the magnet 3 is disposed between the counterweight 4 and the cover 2. The counterweight 4 can be made of materials such as iron, aluminum, lead, plastic, or alloy. In a single weight, the attraction between the magnet 3 and the iron plate 5 makes the intermediate counterweight and other components more compact. When a breathing weight is placed inside the breathing apparatus for training, the weight of the breathing weight is changed by altering the material or weight of the counterweight inside the breathing weight. When two or more breathing weights are placed inside the breathing apparatus for training, the magnetic force of the magnets is used to fix the breathing weights together inside the breathing apparatus, preventing them from separating during use.
[0018] During use, different combinations of breathing weights are used to achieve graded impedance training results. Specifically: First, determine the dimensions of the breathing weights. By adjusting the material and weight of the counterweights, design breathing weights of different weight specifications. Taking a breathing weight height of 20mm and a counterweight material of Fe as an example, breathing weights of 10g, 20g, 30g, 40g, and 50g can be designed. Users can freely combine these breathing weights to achieve graded training. The sub-steps are as follows:
[0019] 1. By combining breathing weights of the same weight, taking 20g breathing weights and 6 breathing weights as an example, there can be 6 levels of impedance;
[0020] 2. By combining breathing weights of different weights, taking 5 breathing weights of 10g, 20g, 30g, 40g, and 50g as an example, there can be 15 levels of impedance.
[0021] like Figure 1 As shown, a preferred embodiment of this utility model further includes a filling part 6, which is used to fill the remaining space in the cavity 1. The filling part 6 fills the remaining space in the cavity 1, making the components in the weight more compact, preventing them from shifting during use, and ensuring more accurate weight measurement.
[0022] As Figure 1 The preferred embodiment of the utility model is that the filling part 6 is arranged between the counterweight 4 and the magnet 3. The filling part 6 and the counterweight 4 are between the magnet 3 and the iron sheet 5, and the magnet 3 and the iron sheet 5 and the attraction make the filling part 6 and the counterweight 6 more compact.
[0023] As Figure 1 The preferred embodiment of the utility model is that the cavity 1 and the cover 2 are circular or square. The cover 2 and the cavity 1 are connected. The cover 2 and the cavity 1 are connected by threads or buckles or ultrasonic processes.
[0024] As Figure 1 The preferred embodiment of the utility model is that the weight is arranged with multiple weights of different weights according to the different weights of the counterweight 4
[0025] The technical scheme of the utility model is: a kind of breathing training device is constructed, including respirator cylinder 7, respirator cover 8, respirator base 9, breathing training weight 10, air pipe (not shown in drawing), breathing mouthpiece (not shown in drawing), respirator cylinder 7 is equipped with breathing chamber 12 inside, the breathing training weight 10 is placed in breathing chamber, the top of respirator cylinder 7 is connected respirator cover 8, the bottom of respirator cylinder 7 is connected respirator base 9, respirator cover 8 is equipped with air hole, respirator base 9 is equipped with airflow duct 11, one end of airflow duct 11 is communicated breathing chamber 12, the other end of airflow duct 11 is connected with one end of air pipe, the other end of air pipe is connected with breathing mouthpiece.
[0026] The technical effect of the utility model is: construct a kind of weight for breathing training and breathing training device, weight for breathing training includes cavity 1, with the cover 2 of cavity 1 cooperation, magnet 3, counterweight 4, iron sheet 5, the iron sheet 5 is arranged in the bottom of cavity 1, the counterweight 4 is arranged on the iron sheet 5, the magnet 3 is arranged between the counterweight 4 and the cover 2. Construct a kind of breathing training device, including respirator cylinder body 7, respirator cover 8, respirator base 9, breathing training weight 10, air duct (not shown in drawing), breathing mouthpiece (not shown in drawing), the inside of respirator cylinder body 7 is equipped with breathing chamber 12, the breathing training weight 10 is placed in breathing chamber, the top of respirator cylinder body 7 is connected respirator cover 8, the bottom of respirator cylinder body 7 is connected respirator base 9, respirator cover 8 is equipped with air hole, respirator base 9 is equipped with airflow duct 11, one end of airflow duct 11 is communicated breathing chamber 12, the other end of airflow duct 11 is connected with one end of air duct, the other end of air duct is connected with breathing mouthpiece. It has the following technical effects: 1, more reliable, breathing weight is not separated in breathing training process, the airflow in respirator cylinder body is relatively stable, to a certain extent, guarantee breathing pressure impedance stability, in turn, keep the difficulty of user breathing training.2, production efficiency is improved. The structure cavity of breathing weight is changed, the weight of weight is changed by changing the material and weight of counterweight, and breathing weight of different specifications and weights can be quickly produced.
[0027] The above content is further detailed description of the utility model in combination with specific preferred embodiments, and the specific implementation of the utility model cannot be limited to these descriptions. For ordinary skilled person in the art to which the utility model belongs, on the premise of not departing from the concept of the utility model, a number of simple deductions or substitutions can be made, which should be regarded as belonging to the protection scope of the utility model.
Claims
1. A breathing training weight, characterized in that, The application relates to a breathing training device, which comprises a cavity, a cover matched with the cavity, a magnet, a counterweight and an iron sheet, the iron sheet is arranged at the bottom of the cavity, the counterweight is arranged on the iron sheet, and the magnet is arranged between the counterweight and the cover.
2. The weight for respiratory training according to claim 1, characterized in that The application further comprises a filling part for filling the remaining space in the cavity.
3. The weight for respiratory training according to claim 2, characterized in that The filling part is arranged between the counterweight and the magnet.
4. The weight according to claim 1, wherein The cover and the cavity are immediately connected.
5. The weight according to claim 1, wherein The cavity and the cover are circular or square.
6. The weight according to claim 1, wherein The application sets a plurality of weights with different weights according to the different weights of the counterweight.
7. The weight according to claim 1, wherein The cover and the cavity are sealingly connected through threads, buckles or ultrasonic processes.
8. A breathing training apparatus using the breathing training weight according to any one of claims 1 to 7, characterized by: The application relates to a breathing training device, which comprises a breathing device cylinder, a breathing device cover, a breathing device base, a breathing training weight, an air guide pipe and a breathing mouthpiece, the breathing device cylinder is internally provided with a breathing chamber, the breathing training weight is arranged in the breathing chamber, the top of the breathing device cylinder is connected with the breathing device cover, the bottom of the breathing device cylinder is connected with the breathing device base, the breathing device cover is provided with an air hole, the breathing device base is provided with an air flow pipe, one end of the air flow pipe is communicated with the breathing chamber, the other end of the air flow pipe is connected with one end of the air guide pipe, and the other end of the air guide pipe is connected with the breathing mouthpiece.