Resistance-adjustable pilates ring

By designing a Pilates ring with detachable ring body and connecting components, the problem of fixed resistance value in existing Pilates rings has been solved, enabling flexible adjustment of resistance value and training plan, thus improving ease of use and space utilization efficiency.

CN223716288UActive Publication Date: 2025-12-26金华市活劲运动科技有限公司
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Patent Information

Application Number
CN202423231323.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-26
Publication Date
2025-12-26
Estimated Expiration
2034-12-26

AI Technical Summary

Technical Problem

Existing Pilates rings are one-piece structures, which cannot support training with multiple resistance values ​​and are not convenient for flexibly adjusting training plans according to the user's actual situation.

Method used

Design an adjustable Pilates ring that allows users to adjust the training resistance by adding or removing individual ring segments as needed, through a detachable ring body and connecting assembly. The ring body includes multiple detachably connected ring segments, and the connecting assembly has first and second connecting ends. The ring segments are detachably fixed to the connecting buckle and connected by fasteners.

Benefits of technology

It allows users to change the training resistance on a single ring, enhancing the flexibility and convenience of training. It allows users to adjust their training plans according to their own situation and reduces the space occupied by multiple Pilates rings.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a pilates ring with an adjustable resistance value, and relates to the technical field of fitness equipment, the pilates ring comprises a ring body strip and a connecting assembly; the ring body strips are connected into an O-shaped ring structure through the connecting assemblies; the ring body strip is elastic and comprises a plurality of ring body single bodies, and each ring body single body is detachably connected with the connecting assembly; or at least one coiling single body is connected with the connecting assembly, and the other coiling single bodies are detachably arranged on the coiling single bodies connected with the connecting assembly. According to the pilates ring, the ring body strips are detachably installed on the connecting assemblies, the multiple ring strip single bodies are arranged, the resistance value of the pilates ring is adjustable, the training resistance value of the pilates ring can be changed on one ring body by increasing or decreasing the number of the ring strip single bodies in the using process, and training of various resistance values is achieved; and the user can flexibly adjust and change the training plan according to the actual situation of the user. On the premise that the resistance values of the single coiling bodies are the same, the more the coiling bodies are, the larger the resistance values of the coiling bodies are.
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Description

TECHNICAL FIELD

[0001] The utility model relates to body-building equipment technical field especially, relates to a resistance value adjustable pilates ring. BACKGROUND

[0002] ‌Pilates ring‌ is a kind of auxiliary tool commonly used in pilates training, also be called pilates resistance ring or pilates magic ring, is invented by Mr. Joseph Pilates. Its main use includes enhancing the stability of core muscle group, improving muscle strength and endurance, improving body flexibility, improving body consciousness and posture, increasing the change and challenge of movement etc. Pilates ring has various use forms, can carry out various forms of pilates course through the control, pressure and coordination in practice, effectively shaping slimming training for abdomen, hip, chest, leg etc. In addition, the addition of pilates ring can also improve the interestingness of practice, increase the unstable factor in training, make muscle tension, muscle endurance, body balance and coordination all be exercised, improve the efficiency and effect of shaping.

[0003] The existing pilates ring is all one-piece structure, one ring body corresponds to one resistance value, cannot realize the training of multiple resistance values on one ring body, and is inconvenient for user to flexibly adjust and change training plan according to actual situation. UTILITY MODEL CONTENT

[0004] The utility model provides a resistance value adjustable pilates ring in view of above-mentioned problem.

[0005] The technical scheme adopted by the utility model is as follows:

[0006] The application provides a resistance value adjustable pilates ring, including ring body strip and connecting assembly;

[0007] The connecting assembly has first connecting end and second connecting end, and the first connecting end and the second connecting end are used for connecting with the ring body strip respectively, and the ring body strip is connected into "O" type ring structure through the connecting assembly;

[0008] The ring body strip has elasticity, and the ring body strip includes multiple ring strip monomers, and each ring strip monomer is detachably connected with the connecting assembly.

[0009] Alternatively, at least one ring strip monomer is connected with the connecting assembly, and the remaining ring strip monomers are detachably arranged on the ring strip monomer connected with the connecting assembly.

[0010] In actual exercise process, multiple different specifications of the Pilates ring are often prepared, and the training resistance value is changed by replacing another Pilates ring during use. Multiple Pilates rings occupy a large space and are inconvenient to use. The present application provides a Pilates ring with adjustable resistance value by detachably mounting the ring body strip on the connecting assembly and setting multiple ring strip units. During actual use, the number of ring strip units mounted on the first connecting end and the second connecting end of the connecting assembly is increased or decreased, so that the training resistance value of the Pilates ring can be changed on one ring body, multiple resistance values can be trained, and it is also convenient for users to flexibly adjust and change the training plan according to their actual situation. Under the premise that the resistance value of a single ring strip unit is the same, the more the number of ring strip units, the greater the resistance value of the ring strip unit; the fewer the number of ring strip units, the smaller the resistance value of the ring strip unit.

[0011] Further, multiple ring strip units are arranged along the length direction of the cross section of the connecting assembly or the width direction of the cross section.

[0012] When the ring strip units are arranged along the length direction of the cross section of the connecting assembly, multiple ring strip units are arranged in a stacked structure, and the projection of multiple ring strip units on the cross section of the ring body of the Pilates ring is a plurality of concentric ring structures. The closer the ring strip unit is to the center of the Pilates ring, the smaller the length of the ring strip unit, where the length refers to the length of the ring strip unit exposed outside the connecting assembly.

[0013] When the ring strip units are arranged along the width direction of the cross section of the connecting assembly, multiple ring strip units are arranged in a tiled structure, multiple ring strip units are arranged in a stacked structure in the thickness direction of the ring body of the Pilates ring, and the projections of multiple ring strip units on the cross section of the ring body of the Pilates ring overlap, and the lengths of the ring strip units are equal.

[0014] Further, the connecting assembly includes two groups, namely a first connecting assembly and a second connecting assembly, and the ring body strip includes two, namely a first ring body strip and a second ring body strip.

[0015] The two ends of the first ring body strip are respectively connected with the first connecting end of the first connecting assembly and the first connecting end of the second connecting assembly, and the two ends of the second ring body strip are respectively connected with the second connecting end of the first connecting assembly and the second connecting end of the second connecting assembly.

[0016] Further, the connecting assembly includes a connecting body and a connecting buckle.

[0017] The connecting buckle includes two, and the two connecting buckles are respectively arranged on the two opposite ends of the connecting body, forming the first connecting end and the second connecting end.

[0018] Each of the ring strip units is detachably fixed on the connecting buckle.

[0019] In actual use, the connecting body and the connecting buckle can be integrally formed.

[0020] Further, the connecting buckle is provided with a plurality of first installation grooves at one end away from the connecting body, and the first installation grooves are arranged along the length direction of the cross section of the connecting buckle or the width direction of the cross section.

[0021] Alternatively, the connecting buckle is formed with a plurality of connecting branches at one end away from the connecting body, and the connecting branches are arranged along the length direction of the cross section of the connecting buckle or the width direction of the cross section, and each of the connecting branches is formed with a first installation groove.

[0022] The ends of each of the ring strip monomers are respectively installed in each of the first installation grooves and are connected and fixed by fasteners.

[0023] Further, the first ring body strip and the second ring body strip each include two ring strip monomers, which are ring strip monomer A and ring strip monomer B.

[0024] The first installation grooves include two, and the ring strip monomer A and the ring strip monomer B are respectively installed in the two first installation grooves.

[0025] When the ring strip monomers are arranged along the length direction of the cross section of the connecting assembly, the two first installation grooves are arranged in the length direction of the cross section of the connecting assembly.

[0026] When the ring strip monomers are arranged along the width direction of the cross section of the connecting assembly, the two first installation grooves are arranged in the width direction of the cross section of the connecting assembly.

[0027] In actual use, the two ring strip monomers can also be installed side by side or stacked in one first installation groove, and after one ring strip monomer is reduced, a gasket is used instead of the reduced ring strip monomer.

[0028] Further, at least two fasteners are respectively installed on each of the ring strip monomers.

[0029] In this way, the fastening effect can be enhanced, and relative displacement between the ring strip monomers and the connecting buckle can be prevented.

[0030] Further, the fasteners can be screws or rivets.

[0031] Further, the connecting body is provided with a second installation groove and a clamping groove, and the clamping groove is in communication with the second installation groove.

[0032] The end of the connecting buckle is formed with a clasp, the end of the connecting buckle is arranged in the second installation groove, and the clasp cooperates with the clamping groove to fix the connecting buckle and the connecting body.

[0033] Further, the buckle is provided with a guide slope, which facilitates the end of the connecting buckle to extend into the second mounting groove.

[0034] Further, a counter is installed in the connecting body of the connecting assembly, and the counter is used to record the number of extrusion or expansion of the pull-up ring.

[0035] Further, a protective layer is wrapped around the outer periphery of the ring strip.

[0036] The protective layer is a foam or sponge.

[0037] The material of the ring strip is glass fiber or plastic.

[0038] When the connecting body and the connecting buckle are integrally formed, the material of the ring strip is preferably plastic.

[0039] The beneficial effects of the utility model are as follows:

[0040] The present application is detachably installed on the connecting assembly, and a plurality of ring strips are provided, so that the resistance of the pull-up ring can be adjusted. BRIEF DESCRIPTION OF DRAWINGS

[0041] Figure 1 is the axial side structure schematic view of the pull-up ring of the utility model embodiment 1;

[0042] Figure 2 is the installation structure schematic view (axial side direction) of the ring strip and the connecting assembly of the utility model embodiment 1;

[0043] Figure 3 is the installation structure schematic view (axial side direction) of the ring strip and the connecting assembly of the utility model embodiment 2;

[0044] Figure 4 is the axial side structure schematic view of the connecting buckle of the utility model;

[0045] Figure 5 is the axial side structure schematic view of the connecting body of the utility model.

[0046] The reference signs in the drawings are as follows:

[0047] 10, ring body strip; 110, first ring body strip; 120, second ring body strip; 101, ring strip monomer A; 102, ring strip monomer B; 20, connecting assembly; 210, first connecting assembly; 220, second connecting assembly; 201, connecting body; 2011, second mounting groove; 2012, clamping groove; 202, connecting buckle; 2021, clamping buckle; 2022, first mounting groove; 30, fastener; a, length direction of cross section of connecting assembly; b, width direction of cross section of connecting assembly. DETAILED DESCRIPTION

[0048] The utility model will be described in detail below in combination with various drawings.

[0049] Example 1

[0050] As shown in Figure 1 , Figure 2 , Figure 4 and Figure 5 , the application provides a resistance-adjustable Pilates ring, which comprises a ring body strip 10 and a connecting assembly 20.

[0051] The connecting assembly 20 has a first connecting end and a second connecting end, and the first connecting end and the second connecting end are respectively used for connecting with the ring body strip 10; the ring body strip 10 is connected into an “O”-shaped ring structure through the connecting assembly 20.

[0052] The ring body strip 10 has elasticity, and the ring body strip 10 comprises a plurality of ring strip monomers, each of which is detachably connected with the connecting assembly 20.

[0053] In actual exercise, a plurality of Pilates rings of different specifications are often prepared, and the training resistance is changed by replacing another Pilates ring during use; the plurality of Pilates rings occupy a large space and are inconvenient to use. The application adjusts the resistance of the Pilates ring provided by the application by detachably mounting the ring body strip 10 on the connecting assembly 20 and arranging a plurality of ring strip monomers; during actual use, the number of ring strip monomers mounted on the first connecting end and the second connecting end of the connecting assembly 20 is increased or decreased, so that the training resistance of the Pilates ring on one ring body is changed, the training of multiple resistances is realized, and the user can flexibly adjust and change the training plan according to the actual situation. Under the premise that the resistances of the single ring strip monomers are the same, the more the number of ring strip monomers is, the greater the resistance of the ring strip monomers is; the fewer the number of ring strip monomers is, the smaller the resistance of the ring strip monomers is.

[0054] As shown in Figure 2 , in the embodiment, the plurality of ring strip monomers are arranged along the length direction a of the cross section of the connecting assembly.

[0055] The plurality of strip monomers are arranged in a stacked structure, and the projection of the plurality of strip monomers on the cross section of the Pilates ring is a plurality of concentric ring structures. The closer to the center of the Pilates ring, the smaller the length of the strip monomers. Here, the length refers to the length of the strip monomers exposed outside the connecting assembly 20.

[0056] In this embodiment, the connecting assembly 20 includes two groups, namely the first connecting assembly 210 and the second connecting assembly 220, and the ring body strip 10 includes two, namely the first ring body strip 110 and the second ring body strip 120.

[0057] The two ends of the first ring body strip 110 are respectively connected to the first connecting end of the first connecting assembly 210 and the first connecting end of the second connecting assembly 220, and the two ends of the second ring body strip 120 are respectively connected to the second connecting end of the first connecting assembly 210 and the second connecting end of the second connecting assembly 220.

[0058] In this embodiment, the connecting assembly 20 includes a connecting body 201 and a connecting buckle 202.

[0059] The connecting buckle 202 includes two, and the two connecting buckles 202 are arranged on the two opposite ends of the connecting body 201 to form the first connecting end and the second connecting end.

[0060] Each strip monomer is detachably fixed on the connecting buckle 202.

[0061] In actual use, the connecting body 201 and the connecting buckle 202 can also be integrally formed.

[0062] In this embodiment, the connecting buckle 202 is provided with two first mounting grooves 2022 at the end away from the connecting body 201, and the two first mounting grooves 2022 are arranged along the length direction of the cross section of the connecting buckle 202. The length direction of the cross section of the connecting buckle 202 is the same as the length direction of the cross section of the connecting assembly.

[0063] The ends of each strip monomer are respectively mounted in each first mounting groove 2022 and connected and fixed by a fastener 30.

[0064] In this embodiment, the first ring body strip 110 and the second ring body strip 120 each include two strip monomers, namely strip monomer A101 and strip monomer B102.

[0065] The strip monomer A101 and the strip monomer B102 are respectively mounted in the two first mounting grooves 2022.

[0066] In actual use, the two strip monomers can also be installed side by side or stacked in one first mounting groove 2022, and after reducing one strip monomer, a gasket is used instead of the reduced strip monomer.

[0067] In other embodiments, the first mounting groove 2022 can include three, and the first ring strip 110 and the second ring strip 120 each include three ring strip units.

[0068] In the present embodiment, at least two fasteners 30 are mounted on each ring strip unit.

[0069] Such arrangement can enhance the fastening effect and prevent relative displacement between the ring strip units and the connecting buckle 202.

[0070] In the present embodiment, the fastener 30 can be a screw or a rivet.

[0071] As shown in Figs. 1 and 2, in the present embodiment, the connecting body 201 is provided with a second mounting groove 2011 and a clamping groove 2012, and the clamping groove 2012 is in communication with the second mounting groove 2011. Figure 4 Figure 5 The end of the connecting buckle 202 is formed with a clamping buckle 2021, the end of the connecting buckle 202 is arranged in the second mounting groove 2011, and the clamping buckle 2021 cooperates with the clamping groove 2012 to fix the connecting buckle 202 and the connecting body 201.

[0072] The end of the connecting buckle 202 is formed with a clamping buckle 2021, the end of the connecting buckle 202 is arranged in the second mounting groove 2011, and the clamping buckle 2021 cooperates with the clamping groove 2012 to fix the connecting buckle 202 and the connecting body 201.

[0073] In the present embodiment, the clamping buckle 2021 is provided with a guide slope, which facilitates the end of the connecting buckle 202 to extend into the second mounting groove 2011.

[0074] In the present embodiment, a counter (not shown in the figure) is further included, which is mounted in the connecting body 201 of the connecting assembly 20, and is used to record the number of extrusion or expansion plating rings.

[0075] In the present embodiment, a protective layer (not shown in the figure) is further included, which is wrapped around the outer periphery of the ring strip 10.

[0076] The protective layer is a foam or a sponge.

[0077] The material of the ring strip 10 is glass fiber or plastic.

[0078] When the connecting body 201 and the connecting buckle 202 are integrally formed, the material of the ring strip 10 is preferably plastic.

[0079] Embodiment 2

[0080] As shown in Figs. 1 and 2, in the present embodiment, the connecting body 201 is provided with a second mounting groove 2011 and a clamping groove 2012, and the clamping groove 2012 is in communication with the second mounting groove 2011. Figure 3 ​As shown, the difference between the embodiment and embodiment 1 is that the arrangement of the coil strip monomers is different, in the embodiment, the plurality of coil strip monomers are arranged along the width direction b of the cross section of the connecting assembly. The plurality of coil strip monomers are arranged in a flat structure, the plurality of coil strip monomers are arranged in a stacked structure in the thickness direction of the Pilates ring, the projections of the plurality of coil strip monomers on the cross section of the Pilates ring are overlapped, and the lengths of the coil strip monomers are equal.

[0081] In the embodiment, two first mounting grooves 2022 are arranged along the width direction of the cross section of the connecting buckle 202.

[0082] Embodiment 3

[0083] The difference between the embodiment and embodiment 1 is that the structure of the connecting buckle is different, in the embodiment, the end of the connecting buckle away from the connecting body is formed with a plurality of connecting branches, the plurality of connecting branches are arranged along the length direction or the width direction of the cross section of the connecting buckle, and a first mounting groove is formed on each connecting branch; the ends of the plurality of coil strip monomers are respectively mounted in the first mounting grooves and connected and fixed by the fasteners.

[0084] Embodiment 4

[0085] The difference between the embodiment and embodiment 1 is that the structure and arrangement of the coil strip monomers are different, in the embodiment, the plurality of coil strip monomers are a plurality of hollow pipe structures with different outer diameters and capable of achieving coaxial sleeving, by sleeving different numbers or different wall thicknesses of coil strip monomers, the resistance of the Pilates ring can be adjusted. The more the number of the sleeved pipe structure coil strip monomers, the greater the resistance of the Pilates ring; the greater the wall thickness of the sleeved coil strip monomers, the greater the resistance of the Pilates ring.

[0086] Embodiment 5

[0087] The difference between the embodiment and embodiment 1 is that the connection mode of the coil strip monomers is different, in the embodiment, at least one coil strip monomer is detachably connected with the connecting buckle, and the remaining coil strip monomers are detachably arranged on the coil strip monomers connected with the connecting assembly.

[0088] The above only describes the preferred embodiments of the utility model, and does not limit the patent protection scope of the utility model, any equivalent structural transformation, direct or indirect application in other related technical fields, are also included in the protection scope of the utility model.

Claims

1. A resistance-adjustable Pilates ring, characterized in that, The connecting assembly has a first connecting end and a second connecting end, which are respectively used for connecting with the ring body strip, and the ring body strip is connected into an "O" ring structure through the connecting assembly. The ring body strip has elasticity, and the ring body strip comprises a plurality of ring body units, each of which is detachably connected with the connecting assembly. Alternatively, at least one ring body unit is connected with the connecting assembly, and the remaining ring body units are detachably arranged on the ring body unit connected with the connecting assembly. The plurality of ring body units are arranged along the length direction or the width direction of the cross section of the connecting assembly.

2. A resistance adjustable Pilates ring according to claim 1, characterized in that, The connecting assembly comprises two groups, namely a first connecting assembly and a second connecting assembly, and the ring body strip comprises two, namely a first ring body strip and a second ring body strip.

3. A resistance adjustable Pilates ring according to claim 1, wherein, The two ends of the first ring body strip are respectively connected with the first connecting end of the first connecting assembly and the first connecting end of the second connecting assembly, and the two ends of the second ring body strip are respectively connected with the second connecting end of the first connecting assembly and the second connecting end of the second connecting assembly. The connecting assembly comprises a connecting body and a connecting buckle.

4. A resistance adjustable Pilates ring according to claim 3, wherein, The connecting buckle comprises two, which are respectively arranged on the two opposite ends of the connecting body, forming the first connecting end and the second connecting end. Each of the ring body units is detachably fixed on the connecting buckle. The end of the connecting buckle away from the connecting body is provided with a plurality of first mounting grooves, and the plurality of first mounting grooves are arranged along the length direction or the width direction of the cross section of the connecting buckle.

5. A resistance adjustable Pilates ring according to claim 4, wherein, Alternatively, the end of the connecting buckle away from the connecting body is formed with a plurality of connecting branches, and the plurality of connecting branches are arranged along the length direction or the width direction of the cross section of the connecting buckle, and each of the connecting branches is formed with one of the first mounting grooves. The ends of each of the ring body units are respectively installed in each of the first mounting grooves and connected and fixed through fasteners. The first ring body strip and the second ring body strip each comprise two ring body units, namely a ring body unit A and a ring body unit B.

6. A resistance adjustable Pilates ring as claimed in claim 5, characterized in that, The first mounting grooves comprise two, and the ring body unit A and the ring body unit B are respectively installed in the two first mounting grooves. At least two fasteners are respectively installed on each of the ring body units.

7. A resistance adjustable Pilates ring as claimed in claim 5, wherein, The connecting body is provided with a second mounting groove and a clamping groove, and the clamping groove communicates with the second mounting groove.

8. A resistance adjustable Pilates ring as claimed in claim 4, wherein, The end of the connecting buckle is formed with a clasp, the end of the connecting buckle is arranged in the second mounting groove, and the clasp cooperates with the clamping groove to fix the connecting buckle and the connecting body. Further comprising a counter, which is installed in the connecting body of the connecting assembly, and the counter is used for recording the number of times of extrusion or expansion and stretching of the ring.

9. A resistance adjustable Pilates ring as claimed in claim 3, wherein, Further comprising a protective layer, which is wrapped around the outer periphery of the ring body strip.

10. The resistance adjustable Pilates ring of claim 1, wherein, The protective layer is foam or sponge. The material of the ring body strip is glass fiber or plastic. ​