Floating body swimming suit for swimming training

By designing a floating swimsuit that combines inflatable airbag pieces and floating plate pieces, the problem that traditional floating swimsuits cannot adapt to different body structures and training stages is solved, and the buoyancy distribution is flexible to adjust, improving the efficiency and safety of swimming training.

CN223142904UActive Publication Date: 2025-07-25昭通学院
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Patent Information

Application Number
CN202421741442.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-23
Publication Date
2025-07-25
Estimated Expiration
2034-07-23

AI Technical Summary

Technical Problem

Traditional floating swimsuits cannot accurately adapt to each user's body structure and learning progress, resulting in uneven distribution of buoyancy, affecting the learning efficiency and safety of swimming skills, and cannot reasonably adjust buoyancy according to different training stages or individual differences.

Method used

A floating swimsuit including a top and shorts is designed, using an inflatable airbag piece and floating plate piece combination, connected by a zipper member, and buoyancy is adjusted using an inflatable assembly and a floating assembly to adapt to different body structures and training needs.

Benefits of technology

It realizes flexible adjustment of buoyancy distribution, improves the efficiency and safety of swimming training, and adapts to the buoyancy needs of different body structures and training stages.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a floating body swimming suit for swimming training, and relates to the technical field of swimming training. The floating body swimming suit for swimming training comprises an upper garment body and shorts, the back surface of the shorts is connected with a zipper component in a knitted mode, the upper end of the surface of the upper garment body is connected with a floating increasing assembly in a knitted mode, the floating increasing assembly comprises a connecting air belt and a plurality of air bag pieces used for inflation, and the air bag pieces are evenly distributed on the surface of the connecting air belt. And an inflating assembly is arranged at the input end of the floating increasing assembly. When the air bag part is inflated through the air supply belt by extruding the piston part, the buoyancy of the upper garment body is increased under the action of the air bag part and the expansion part, shoulder straps can be formed under the action of the floating plate parts, are connected with the hanging ring part and are worn on the shoulders of a patient, and the buoyancy of the patient is improved; the buoyancy can be increased only by inserting the floating plate piece on the floating assembly into the expansion part in the air bag piece.
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Description

Technical Field

[0001] The utility model relates to the technical field of swimming training, in particular to a floating swimming suit for swimming training. Background Art

[0002] During swimming teaching and training, as an auxiliary tool, the floating swimming suit plays a crucial role for beginners, especially children and those with unskilled swimming skills. Most traditional floating swimsuits rely on external floating boards or fixed internal floating body designs to provide additional buoyancy. Although such designs can basically meet the needs of auxiliary floating, they have certain limitations.

[0003] In real life, the fixed floating board layout on the floating swimsuit may not accurately adapt to the body structure and learning progress of each user, resulting in uneven buoyancy distribution or restricting the naturalness of swimming movements, thereby affecting the learning efficiency and safety of swimming skills; and the existing buoyancy adjustment is to gradually remove or adjust the internal floating body blocks to adapt to the improvement of the learner's ability. Due to the limitations of the floating board, the buoyancy distribution on the swimsuit is uneven, and it is impossible to reasonably adjust the buoyancy of the swimsuit according to the different training stages or individual differences of the user. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a floating swimming suit for swimming training, which can avoid the problem that the floating swimming suit cannot adapt to students with different body structures and cannot reasonably adjust the buoyancy of the swimming suit according to students with different body structures.

[0005] The utility model provides a floating swimming suit for swimming training, including an upper body and shorts. Among them, a zipper member is knitted and connected to the back surface of the shorts, and a buoyancy increasing component is knitted and connected to the upper end of the surface of the upper body. The buoyancy increasing component includes a connecting air belt and an airbag member for inflation. The airbag members are multiple and evenly distributed on the surface of the connecting air belt. An inflation component for inflating it is arranged at the input end of the buoyancy increasing component. A floating component is arranged in the buoyancy increasing component, which can increase the buoyancy of the upper body.

[0006] In a specific implementation scheme, an air cavity is opened on the inner surface of the buoyancy increasing component. An anti-detachment member is connected to the inner cavity end of the airbag member, and the anti-detachment member is integrally formed with the airbag member. Among them, the end of the airbag member is open.

[0007] In a specific implementation scheme, an air inlet member for air intake is opened at the bottom of the inner cavity of the airbag member, and an expansion part is communicated with the end of the inner cavity of the air cavity.

[0008] In a specific embodiment, an air delivery belt is provided at the bottom of the airbag component, and the end of the air delivery belt is connected to a flexible connecting tube, and hanging ring components are connected around the surface of the air delivery belt.

[0009] In a specific embodiment, the inflation component includes a valve seat, and a piston member is installed in the inner cavity of the valve seat, and a sealing sleeve is sleeved on the outer surface of the piston member.

[0010] In a specific embodiment, the bottom of the piston member is connected to a connecting plate member, and the bottom of the inner cavity of the valve seat is installed with an elastic member, wherein the bottom of the connecting plate member penetrates to the bottom of the valve seat and is connected to a pull ring.

[0011] In a specific embodiment, one side of the valve seat surface and the end of the valve seat are respectively connected to an air inlet pipe body and an air outlet pipe body.

[0012] In a specific embodiment, one-way valve body 1 and one-way valve body 2 are respectively installed on the surfaces of the air inlet pipe body and the air outlet pipe body, and a sealing cover is threadedly sleeved on one end of the surface of the air inlet pipe body.

[0013] In a specific embodiment, the floating assembly includes a plurality of floating plate members, and ends of two adjacent floating plate members are connected with flexible pulling belts.

[0014] In a specific embodiment, a fixed soft belt is connected to the surface of the floating plate, and both ends of the surface of the fixed soft belt are connected to matching Velcro.

[0015] The beneficial effects of the present application are as follows: the flotation-enhancing component can be used to increase the buoyancy of a top and shorts by wearing the top with a zipper member, and the buoyancy of the top can be increased, which is convenient for the user to perform swimming training; the extrusion piston member uses the air supply belt to inflate the airbag member, and under the action of the airbag member and the expansion part, the buoyancy of the top can be increased; under the action of multiple floating plate members, shoulder straps can be formed and connected to the hanging ring member, and worn on the patient's shoulders to increase the buoyancy; and when the flotation-enhancing component is in a non-inflated state, the buoyancy of the top can be increased by simply inserting the floating plate member on the floating component into the expansion part in the airbag member. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] In order to more clearly illustrate the technical solution of the implementation mode of the utility model, the drawings required for use in the implementation mode will be briefly introduced below. It should be understood that the following drawings only show certain embodiments of the utility model and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying creative work.

[0017] Figure 1 This is a schematic diagram of the overall structure of an embodiment of the utility model;

[0018] Figure 2 The second perspective view of the overall structure of the embodiment of the present utility model;

[0019] Figure 3 The perspective view of the floating component structure of the embodiment of the present utility model;

[0020] Figure 4 The exploded perspective view of the buoyancy increasing component structure of the embodiment of the present utility model;

[0021] Figure 5 The perspective view of the airbag structure of the embodiment of the present utility model;

[0022] Figure 6 The perspective view of the inflation component structure of the embodiment of the present utility model;

[0023] Figure 7 The sectional perspective view of the airbag structure of the embodiment of the present utility model;

[0024] Figure 8 The perspective view of the airbag structure in the inflated state of the embodiment of the present utility model.

[0025] Icon:

[0026] 100, upper body; 101, zipper member; 110, shorts;

[0027] 200, buoyancy increasing component; 210, connecting air belt; 220, airbag; 221, air chamber; 222, anti - detachment member; 223, air inlet member; 230, expansion part; 240, air supply belt; 241, flexible connecting pipe; 250, hanging ring member;

[0028] 300, inflation component; 310, valve seat; 320, piston member; 321, sealing sleeve; 330, connecting plate member; 331, elastic member; 332, pull ring; 340, air inlet pipe body; 341, one - way valve body one; 350, air outlet pipe body; 351, one - way valve body two; 360, sealing cover;

[0029] 400, floating component; 410, floating plate member; 420, flexible pulling belt; 430, fixing soft belt; 431, magic tape. Detailed implementation manners

[0030] Since the fixed float layout on the floating swimsuit may not be able to accurately adapt to the body structure and learning progress of each user, it will lead to uneven buoyancy distribution or limit the naturalness of swimming movements, thus affecting the learning efficiency and safety of swimming skills; and the existing buoyancy adjustment is to gradually remove or adjust the built-in float blocks to adapt to the improvement of learners' abilities, but due to the limitations of the float, the buoyancy distribution on the swimsuit is uneven, and the buoyancy of the swimsuit cannot be reasonably adjusted according to the different training stages or individual differences of the users. Therefore, the inventor has provided a floating swimsuit for swimming training after research. When using the floating swimsuit, it can avoid the problem that the floating swimsuit cannot adapt to students with different body structures and cannot reasonably adjust the buoyancy of the swimsuit according to students with different body structures, thereby solving the above-mentioned defects.

[0031] In conjunction with the accompanying drawings, some embodiments of the present invention are described in detail below. In the absence of conflict, the following embodiments and features in the embodiments can be combined with each other.

[0032] Please refer to Figures 1 to 8 The embodiment of the utility model provides a floating swimsuit for swimming training, comprising an upper body 100 and shorts 110, which are combined to form a swimming suit, wherein a zipper component 101 is knitted and connected to the back surface of the shorts 110, wherein when wearing the swimsuit, the upper body 100 and the shorts 110 can be worn on the user by simply unzipping the zipper component 101;

[0033] The upper end of the upper body 100 is knitted and connected with a floatation-enhancing component 200, which includes a connecting air belt 210 and an airbag component 220 for inflation, and the connecting air belt 210 is knitted and connected to the surface of the upper body 100, and there are multiple airbag components 220 that are evenly distributed on the surface of the connecting air belt 210, wherein two adjacent airbag components 220 are connected by a hose, so that multiple airbag components 220 can be inflated;

[0034] The inner surface of the buoyancy enhancement component 200 is provided with an air cavity 221, and the air cavity 221 is used to form an inflatable cavity. The inner cavity end of the airbag component 220 is connected with an anti-slip component 222, and the anti-slip component 222 is integrally formed with the airbag component 220, wherein the end of the airbag component 220 is provided with an opening;

[0035] The bottom of the inner cavity of the airbag member 220 is provided with an air intake member 223 for air intake, and the end of the inner cavity of the air cavity 221 is connected to an expansion portion 230, such as Figure 8 As shown, when the inner cavity of the air cavity 221 is inflated, the expansion part 230 is expanded outward, and on the basis of inflating the inner cavity of the air cavity 221, the expansion part 230 is inflated, and on the basis of the airbag part 220, the expansion part 230 is used to increase its internal aperture, thereby expanding the buoyancy of the airbag part 220;

[0036] A gas supply belt 240 is provided at the bottom of the airbag member 220, and a flexible connecting pipe 241 is connected to the end of the gas supply belt 240. Among them, the flexible connecting pipe 241 communicates with the surface of the air intake member 223, and is used to introduce the gas entering the gas supply belt 240 into the airbag member 220 through the flexible connecting pipe 241. Hanging ring members 250 are connected to the four circumferences of the surface of the gas supply belt 240.

[0037] And at the input end of the buoyancy increasing assembly 200, an inflation assembly 300 for inflating it is provided. The inflation assembly 300 includes a valve seat 310, and a piston member 320 is installed in the inner cavity of the valve seat 310. A sealing sleeve 321 for increasing the sealing performance between the piston member 320 and the valve seat 310 is sleeved on the outer surface of the piston member 320;

[0038] A connecting plate member 330 is connected to the bottom of the piston member 320, and an elastic member 331 is installed at the bottom of the inner cavity of the valve seat 310. The end of the elastic member 331 is connected to the bottom of the sealing sleeve 321 for resetting the sealing sleeve 321. Among them, the bottom of the connecting plate member 330 penetrates through the bottom of the valve seat 310 and is connected with a pull ring 332, and the connection part between the pull ring 332 and the valve seat 310 is sealed. In this way, the connecting plate member 330 can be pulled through the pull ring 332 to push the piston member 320 for inflation;

[0039] An intake pipe body 340 and an outlet pipe body 350 are respectively communicated with one side of the surface of the valve seat 310 and the end of the valve seat 310. The intake pipe body 340 and the outlet pipe body 350 are respectively used for intake and outlet;

[0040] One-way valve bodies 341 and 351 are respectively installed on the surfaces of the intake pipe body 340 and the outlet pipe body 350. Under the combined action of the one-way valve body 341 and the one-way valve body 351, it can be ensured that air can only flow into the airbag member 220 and cannot flow back. The other end of the outlet pipe body 350 is communicated with the surface of the gas supply belt 240. In this way, the gas entering through the inflation assembly 300 is sent into the gas supply belt 240 to inflate the airbag member 220. A sealing cover 360 is threadedly sleeved on one end of the surface of the intake pipe body 340, and the sealing cover 360 is used for sealing the intake pipe body 340;

[0041] As a further optimization of this solution, in order to inflate the airbag member 220, the gas output end of an external air pump can be connected to the air intake end of the intake pipe body 340. In this way, the gas can be sent into the airbag member 220 by using the piston member 320 and the gas supply belt 240, increasing the buoyancy of the swimsuit.

[0042] A floating component 400 is provided inside the buoyancy increasing component 200, which can increase the buoyancy of the upper body 100; the floating component 400 includes floating board members 410, and there are multiple floating board members 410, which are inserted into the expansion part 230 on the airbag component 220. When the airbag component 220 is not inflated, the buoyancy can be increased by using the floating board members 410. To connect two adjacent floating board members 410, as Figure 3 shown, flexible straps 420 are connected to the ends of two adjacent floating board members 410. Under the action of the flexible straps 420, a shoulder strap can be formed between multiple floating board members 410, so as to conveniently put the shoulder strap formed by multiple floating board members 410 on the patient's shoulder and connect it to the hanging ring component 250 on the buoyancy increasing component 200 to increase the buoyancy of the swimsuit;

[0043] To connect the floating board member 410 and the hanging ring component 250, as Figure 3 shown, a fixed soft strap 430 is connected to the surface of the floating board member 410, and the fixed soft strap 430 is located on the bottom floating board member 410. Magic tapes 431 that match each other are connected to both ends of the surface of the fixed soft strap 430. Among them, the magic tapes 431 are composed of letter magic tapes. In this way, one end of the fixed soft strap 430 is passed through the hanging ring component 250, and the matching magic tapes 431 are connected, so that the floating component 400 and the buoyancy increasing component 200 can be connected. In this way, the buoyancy increasing component 200 can be inflated under the action of the inflation component 300, and the floating component 400 can be worn on the user's shoulder. Under the combined action of the buoyancy increasing component 200 and the floating component 400, the buoyancy of the upper body 100 and the shorts 110 is increased, so as to adjust the buoyancy on the upper body 100 according to the body specifications of the user.

[0044] In summary, the working principle of a floating swimming suit for swimming training according to an embodiment of the present invention: wearing the upper body 100 and the shorts 110 by using the zipper member 101 can utilize the buoyancy increasing component 200 to increase its buoyancy, which is convenient for the user to carry out swimming training. When the piston member 320 is squeezed to inflate the airbag component 220 through the air supply belt 240, under the action of the airbag component 220 and the expansion part 230, the buoyancy of the upper body 100 is increased. Under the action of multiple floating board members 410, a shoulder strap can be formed and connected to the hanging ring component 250 and worn on the patient's shoulder to improve its buoyancy. When the buoyancy increasing component 200 is in a non-inflated state, only the floating board members 410 on the floating component 400 need to be inserted into the expansion part 230 in the airbag component 220 to increase its buoyancy.

[0045] The above is only the preferred embodiment of the present invention and is not used to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A floating swimsuit for swimming training, comprising an upper body (100) and shorts (110), wherein, The back surface of the shorts (110) is knitted and connected with a zipper member (101). It is characterized in that an inflation enhancing component (200) is knitted and connected to the upper end of the surface of the upper body (100). The inflation enhancing component (200) includes a connecting air belt (210) and an airbag member (220) for inflation. A plurality of the airbag members (220) are evenly distributed on the surface of the connecting air belt (210). An inflation component (300) for inflating it is provided at the input end of the inflation enhancing component (200). A floating component (400) is arranged in the inflation enhancing component (200), which can increase the buoyancy of the upper body (100).

2. The floating swimsuit for swimming training according to claim 1, characterized in that, An air cavity (221) is formed on the inner surface of the inflation enhancing component (200). An anti - detachment member (222) is connected to the end of the inner cavity of the airbag member (220). The anti - detachment member (222) and the airbag member (220) are integrally formed. Among them, the end of the airbag member (220) is open - ended.

3. The floating swimsuit for swimming training according to claim 2, wherein, An air inlet member (223) for air intake is formed at the bottom of the inner cavity of the airbag member (220). An expansion part (230) is communicated with the end of the inner cavity of the air cavity (221).

4. The floating swimsuit for swimming training according to claim 3, wherein, An air supply belt (240) is arranged at the bottom of the airbag member (220). The end of the air supply belt (240) is communicated with a flexible connecting pipe (241). Hanging loop members (250) are connected to the periphery of the surface of the air supply belt (240).

5. The floating swimsuit for swimming training according to claim 1, characterized in that, The inflation component (300) includes a valve seat (310). A piston member (320) is installed in the inner cavity of the valve seat (310). A sealing sleeve (321) is sleeved on the outer surface of the piston member (320).

6. The floating swimsuit for swimming training according to claim 5, wherein, A connecting plate member (330) is connected to the bottom of the piston member (320). An elastic member (331) is installed at the bottom of the inner cavity of the valve seat (310). Among them, the bottom of the connecting plate member (330) penetrates to the bottom of the valve seat (310) and is connected with a pull ring (332).

7. The floating swimsuit for swimming training according to claim 6, characterized in that, An intake pipe body (340) and an outlet pipe body (350) are respectively communicated with one side of the surface of the valve seat (310) and the end of the valve seat (310).

8. The floating swimming suit for swimming training according to claim 7, wherein, One - way valve bodies one (341) and two (351) are respectively installed on the surfaces of the intake pipe body (340) and the outlet pipe body (350). A sealing cover (360) is threadedly sleeved on one end of the surface of the intake pipe body (340).

9. The floating swimsuit for swimming training according to claim 1, wherein, The floating component (400) includes floating plate members (410). There are a plurality of floating plate members (410). Flexible pulling belts (420) are connected to the ends of adjacent two floating plate members (410).

10. The floating swimming suit for swimming training according to claim 9, characterized in that, Fixed soft belts (430) are connected to the surfaces of the floating plate members (410). Magic tapes (431) that match each other are connected to both ends of the surfaces of the fixed soft belts (430).