Antiskid yoga wheel
By setting anti-slip convex points or concave points and reinforcement rib convex rings on the inner peripheral side wall of the yoga wheel ring body, the problems of easy hand loss, falling and insufficient strength of the yoga wheel are solved, achieving higher safety and stability of use.
Patent Information
- Application Number
- CN202421767581.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-07-24
AI Technical Summary
The existing yoga wheels are prone to fall off and fall due to slipping of their hands during use, especially those with hollow structures, and are heavier in weight and easily hurt the feet. At the same time, the strength of the hollow structure is insufficient and cannot bear the user with a larger weight.
The anti-slip part and a reinforcement rib part are provided on the inner peripheral side wall of the annular body. The anti-slip part is a plurality of convex points or concave points to increase friction and massage effect, and the reinforcement rib part is a convex ring to enhance structural strength.
It effectively prevents the yoga wheel from falling off and falling, improves safety, and enhances the load-bearing ability and massage effect of the yoga wheel. It is suitable for users with larger weights.
Smart Images

Figure CN223042079U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of yoga wheels, in particular to an anti-slip yoga wheel. Background Art
[0002] Yoga, originated in India, is a 5,000-year-old physical, mental and spiritual practice that aims to improve the body and mind. Yoga postures use ancient and easy-to-master techniques to improve people's physical, mental, emotional and spiritual abilities. It is a form of exercise that achieves harmony between body, mind and spirit, including asanas, breathing, meditation, etc., to achieve unity of body and mind. However, during the entire yoga process, some equipment is often needed to complete the specified movements, such as yoga ropes, yoga mats, yoga bricks, yoga balls, yoga wheels, etc. The yoga wheel is named yoga wheel because its round shape is very similar to the wheel of a car. People usually place the yoga wheel upright, and then lean the back of the body against the outer ring of the yoga wheel along the radial direction of the yoga wheel to stretch the back.
[0003] Ordinary yoga wheels are generally divided into two structures:
[0004] One is a solid structure, that is, the inside of the circle formed by the yoga wheel is not hollowed out, and the whole is like a pie-shaped circle. This structure consumes more raw materials, which is not only expensive, but also inconvenient to grab. It can only be grabbed with both hands, or even held with both hands to pick up. In yoga, most people are women, so it is very unfriendly to women.
[0005] The other is a hollow structure, that is, the circular interior of the yoga wheel is hollowed out, and the overall shape is a ring. Although this structure allows the hand to be inserted into the ring part of the central control, so that the hand can grasp the inner ring of the yoga wheel, it is convenient to pick up the yoga wheel. However, during the yoga process, the yoga wheel needs to be rolled. Because heat is generated during exercise, sweating occurs. Therefore, when the hand touches the inner ring of the yoga wheel, it will slip, especially when picking up and moving the yoga wheel, it is easy to slip out of the hand or fall. Moreover, the weight of the yoga wheel itself is relatively heavy, so once it hits the foot, it will cause damage to the legs and feet. Utility Model Content
[0006] In view of the above problems, the utility model provides an anti-skid yoga wheel.
[0007] The technical solution adopted by the utility model is as follows:
[0008] The present application provides an anti-skid yoga wheel, comprising an annular body, an anti-skid portion being formed on an inner peripheral side wall of the annular body, and the anti-skid portion is used to prevent slipping.
[0009] When the hand picks up and moves the yoga wheel, the anti-slip part can prevent slipping. Compared with the existing flat inner ring surface, the yoga wheel provided in this application can reduce the situation of the yoga wheel slipping out of the hand and falling, and has relatively high safety.
[0010] Furthermore, the anti-slip part is a plurality of convex points;
[0011] Or the anti-slip part is a plurality of concave points. In actual use, the concave points can be grooves;
[0012] Or the anti-slip part is a plurality of alternately arranged convex points and concave points.
[0013] The convex points and concave points are used to increase the roughness of the inner peripheral side wall of the annular body, thereby increasing the friction at the contact position with the hand, and then playing an anti-slip role. When the anti-slip part has convex points, the anti-slip part can also play a massage role. In actual use, stretch or pass the leg through the inner ring part, press the leg against the inner peripheral side wall of the annular body and contact the anti-slip part with convex points; move the leg to make the yoga wheel roll back and forth left and right along the circumferential direction, so that the anti-slip convex part massages the leg.
[0014] Similarly, the part to be massaged can also be the arm or neck extending into the inner ring part of the yoga wheel.
[0015] When the anti-slip part is a plurality of concave points, the contact position between the hand and the inner peripheral side wall of the annular body will sink into the inner peripheral side wall to increase the contact surface so that the hand can hold more firmly, and has the touch of being wrapped by the inner peripheral side wall, increasing the anti-slip awareness and thus playing an anti-slip effect. At the same time, compared with the anti-slip part with convex points, the concave point structure can reduce the material used for the equipment and play a role in cost saving.
[0016] Furthermore, the anti-slip part is arranged close to the side end surface of the annular body.
[0017] Furthermore, there are two anti-slip parts, which are respectively arranged close to the two side end surfaces of the annular body.
[0018] Furthermore, a reinforcing rib part is also formed on the inner peripheral side wall of the annular body, and the reinforcing rib part is used to increase the structural strength of the yoga wheel.
[0019] Compared with the solid-structured yoga wheel, since the middle part of the annular-structured yoga wheel is hollow, the overall strength is weakened, the load-bearing capacity of the yoga wheel becomes smaller, so it can only be used by people with relatively light weights. If the weight of the user is too large, there will be phenomena of deformation and bending, and there is a risk of crushing or breaking the yoga wheel.
[0020] By providing a reinforcing rib portion on the inner peripheral side wall of the annular body, the overall strength of the annular yoga wheel can be enhanced, the load-bearing capacity of the yoga wheel can be improved, and the safety of the yoga wheel can be enhanced. During actual use, even a person weighing up to 200 catties presses on the yoga wheel, it will not deform or bend, that is, the yoga wheel provided by this application is very firm and stable.
[0021] Further, the reinforcing rib portion is a convex rib ring provided along the inner peripheral side wall of the annular body.
[0022] Further, the convex ribs of the annular structure are concentrically arranged with the annular body.
[0023] Further, the closer to the axis of the annular body, the smaller the width dimension of the convex rib ring;
[0024] The middle cross-section of the convex rib ring coincides with the middle cross-section of the annular body.
[0025] Further, the cross-section of the convex rib ring is in a conical or trapezoidal structure.
[0026] During normal use, the massage ring on the outer peripheral side wall of the annular body is mainly used to achieve the functions of massage and relaxation. By providing a convex rib ring that acts as a reinforcing rib on the inner peripheral side wall of the annular body, the usage scenarios of the yoga wheel can also be increased. That is, one can bend the knees and place the legs on the convex rib ring, so that the positions of the thighs and calves close to the knees and the back of the knees just fit on the convex rib ring, to assist in relaxing the bent positions of the legs. Compared with the way of putting the legs in straight for planar massage, this way of massage after bending the legs increases the contact area, thereby increasing the effect of leg massage. In addition, when there is no reinforcing rib, it is relatively difficult to massage the back of the knee (i.e., the bent part) after straightening the legs and putting them in, but with the provision of the reinforcing rib, the back of the knee (i.e., the bent part) is relatively easy to massage.
[0027] During actual use, the anti-slip portion with a convex point structure can further assist in achieving the massage and relaxation of the legs.
[0028] Further, the width of the bottom wall of the convex rib ring for connecting with the annular body is equal to the width of the inner peripheral side wall of the annular body;
[0029] The anti-slip portion is provided on the reinforcing rib portion. Specifically, the anti-slip portion is provided on the side wall of the convex rib ring close to the two side end faces of the annular body.
[0030] Further, a plurality of concave ring grooves are provided on the side wall of the convex rib ring, so that the side wall of the convex rib ring is in a wavy structure, and the plurality of concave ring grooves are respectively concentrically arranged with the annular body.
[0031] In actual use, the side wall of the convex rib ring with a wavy structure can reduce the contact area between the leg wall and the side wall of the convex rib ring, increasing the pressure acting on the leg wall. That is, the concave ring groove can cooperate with the anti-slip part of the convex point structure to further improve the massage effect on the bent leg.
[0032] In actual use, convex point structures for massage can also be formed on the side wall of the convex rib ring.
[0033] Furthermore, the reinforcing rib part is integrally formed with the annular main body.
[0034] Furthermore, it also includes a massage ring, and the massage ring is sleeved on the outer peripheral side wall of the annular main body.
[0035] Furthermore, retaining rings are respectively arranged at positions on the outer side wall of the annular main body close to the two end faces, and the massage ring is arranged between the two retaining rings to prevent it from falling off.
[0036] The beneficial effects of the present utility model are as follows:
[0037] (1) When the yoga wheel is picked up and moved by hand, the anti-slip part can prevent slipping. Compared with the existing flat inner ring surface, the yoga wheel provided in this application can reduce the occurrence of the yoga wheel slipping out of the hand and falling, and has relatively high safety.
[0038] (2) The reinforcing rib part can enhance the overall strength of the annular yoga wheel, improve the load-bearing capacity of the yoga wheel, and enhance the safety of the yoga wheel.
[0039] (3) The anti-slip part of the convex point structure arranged on the reinforcing rib part has both anti-slip and massage functions, increasing the usage scenarios of the yoga wheel and improving the massage effect. BRIEF DESCRIPTION OF THE DRAWINGS
[0040] Figure 1 is an axonometric structural schematic diagram of the yoga wheel according to an embodiment of the present utility model;
[0041] Figure 2 is Figure 1 the partial enlarged structural diagram of A in
[0042] Figure 3 is a cross-sectional structural schematic diagram of the yoga wheel in the front view direction according to an embodiment of the present utility model;
[0043] Figure 4 is Figure 3 the partial enlarged structural diagram of B in
[0044] Figure 5 is an axonometric structural schematic diagram of the yoga wheel in another embodiment;
[0045] Figure 6 is Figure 5 the partial enlarged structural diagram of C in
[0046] Figure 7 It is an axonometric structural schematic diagram of the annular body of another embodiment of the yoga wheel;
[0047] Figure 8 is Figure 7 The partial enlarged structural diagram of D in
[0048] The reference numerals in the figure are as follows:
[0049] 10. Annular body; 11. Retaining ring; 20. Anti-slip part; 21. Convex point; 22. Concave point; 30. Reinforcing rib part; 31. Concave ring groove; 40. Massage ring. Specific embodiments
[0050] The following will describe the present utility model in detail with reference to the accompanying drawings.
[0051] As Figures 1 to 4 shown, the present application provides a non-slip yoga wheel, including an annular body 10, and an anti-slip part 20 is formed on the inner peripheral side wall of the annular body 10, and the anti-slip part 20 is used to prevent slipping.
[0052] When the yoga wheel is picked up and moved by hand, the anti-slip part 20 can prevent slipping. Compared with the existing flat inner ring surface, the yoga wheel provided by the present application can reduce the occurrence of the yoga wheel slipping out of the hand and falling, and the safety is relatively high.
[0053] In this embodiment, the anti-slip part 20 is a plurality of convex points 21;
[0054] As Figure 5 and Figure 6 shown, in other embodiments, the anti-slip part 20 is a plurality of grooves.
[0055] As Figure 7 and Figure 8 shown, in other embodiments, the anti-slip part 20 is a plurality of concave points 22, and the concave points 22 are smoothly transitioned with the annular body 10 or with the reinforcing rib part 30.
[0056] In other embodiments, the anti-slip part 20 may also be a plurality of convex points, and the top of the convex points has a concave point structure with an inner concave (not shown in the figure).
[0057] In other embodiments, the anti-slip part 20 may also be a plurality of alternately arranged convex points 21 and concave points 22 (not shown in the figure).
[0058] The convex points 21 and the concave points 22 are used to increase the roughness of the inner peripheral side wall of the annular body 10, thereby increasing the frictional force at the contact position with the hand, and further playing an anti-slip role. When the anti-slip portion 20 has convex points 21, the anti-slip portion 20 can also play a massage role. During actual use, the leg is inserted into or passed through the inner ring portion, so that the leg presses on the inner peripheral side wall of the annular body 10 and contacts the anti-slip portion 20 having the convex points 21; the leg is moved to make the yoga wheel roll back and forth left and right in the circumferential direction, so that the anti-slip convex portion massages the leg.
[0059] Similarly, the part to be massaged can also be the arm or neck extending into the inner ring portion of the yoga wheel.
[0060] When the anti-slip portion 20 is a plurality of concave points 22, the contact position between the hand and the inner peripheral side wall of the annular body 10 will be recessed into the inner peripheral side wall to increase the contact surface so that the hand can hold more firmly, and have the touch of being wrapped by the inner peripheral side wall, increasing the anti-slip awareness and thus playing an anti-slip effect. At the same time, compared with the anti-slip portion 20 having convex points 21, the concave point 22 structure can reduce the material used for the equipment and play a role in cost saving.
[0061] In this embodiment, the anti-slip portion 20 is arranged close to the side end face of the annular body 10.
[0062] In this embodiment, the anti-slip portion 20 includes two, which are respectively arranged close to the two side end faces of the annular body 10.
[0063] In this embodiment, a reinforcing rib portion 30 is further formed on the inner peripheral side wall of the annular body 10, and the reinforcing rib portion 30 is used to increase the structural strength of the yoga wheel.
[0064] Compared with the yoga wheel with a solid structure, since the middle part of the yoga wheel with an annular structure is hollow, the overall strength is weakened, the load-bearing capacity of the yoga wheel becomes smaller, so it can only be used by people with a lighter weight. If the weight of the user is too large, there will be phenomena of deformation and bending, and there is a risk of crushing or breaking the yoga wheel.
[0065] By arranging the reinforcing rib portion 30 on the inner peripheral side wall of the annular body 10, the overall strength of the annular yoga wheel can be enhanced, the load-bearing capacity of the yoga wheel can be improved, and the safety of the yoga wheel can be enhanced. During actual use, a person weighing up to 200 catties presses on the yoga wheel, and it will not be deformed or bent, that is, the yoga wheel provided by this application is very firm and stable.
[0066] In this embodiment, the reinforcing rib portion 30 is a convex rib ring arranged along the inner peripheral side wall of the annular body 10.
[0067] In this embodiment, the convex rib of the annular structure is concentrically arranged with the annular body 10.
[0068] In this embodiment, the closer to the axis of the annular body 10, the smaller the width dimension of the ribbed ring;
[0069] The middle cross-section of the ribbed ring coincides with the middle cross-section of the annular body 10.
[0070] In this embodiment, the cross-section of the ribbed ring is conical.
[0071] In this application, the distances from the middle cross-section of the ribbed ring to the two side walls of the ribbed ring are equal, that is, the middle cross-section of the ribbed ring is the axisymmetric plane of the ribbed ring. The distances from the middle cross-section of the annular body 10 to the two side end faces of the annular body 10 are equal, that is, the middle cross-section of the annular body 10 is the axisymmetric plane of the annular body 10.
[0072] In other embodiments, the cross-section of the ribbed ring is an isosceles trapezoidal structure.
[0073] During actual use, there is a circular arc transition between the reinforcing rib portion 30 and the annular body 10.
[0074] During normal use, the massage ring 40 on the outer peripheral side wall of the annular body 10 is mainly used to achieve the functions of massage and relaxation. By providing a ribbed ring that functions as a reinforcing rib on the inner peripheral side wall of the annular body 10, the usage scenarios of the yoga wheel can be increased. That is, one can bend the knees and place the legs on the ribbed ring, so that the positions of the thighs and calves near the knees and the back of the knees just fit on the ribbed ring, to assist in relaxing the bent positions of the legs. Compared with the way of putting the legs in straight for planar massage, this massage method after bending the legs increases the contact area, thereby enhancing the effect of leg massage. In addition, when there is no reinforcing rib, it is relatively difficult to massage the back of the knee (i.e., the bent part) after straightening the legs and putting them in, but with the provision of the reinforcing rib, the back of the knee (i.e., the bent part) can be more easily massaged.
[0075] During actual use, the anti-slip portion 20 with the bump 21 structure can further assist in achieving the massage and relaxation of the legs.
[0076] In this embodiment, the width of the bottom wall of the ribbed ring for connecting with the annular body 10 is equal to the width of the inner peripheral side wall of the annular body 10;
[0077] The anti-slip portion 20 is provided on the reinforcing rib portion 30.
[0078] In this embodiment, a plurality of concave ring grooves 31 are provided on the side wall of the ribbed ring, making the side wall of the ribbed ring a wavy structure, and the plurality of concave ring grooves 31 are respectively concentric with the annular body 10.
[0079] During actual use, the side wall of the convex rib ring with a wavy structure can reduce the contact area between the leg wall and the side wall of the convex rib ring, increasing the pressure acting on the leg wall. That is, the concave ring groove 31 can cooperate with the anti-slip portion 20 of the convex point 21 structure to further enhance the massage effect on the bent leg.
[0080] During actual use, the convex point 21 structure for massage can also be formed on the side wall of the convex rib ring.
[0081] In this embodiment, the reinforcing rib portion 30 and the annular main body 10 are integrally formed.
[0082] In this embodiment, a massage ring 40 is further included, and the massage ring 40 is sleeved on the outer peripheral side wall of the annular main body 10.
[0083] In this embodiment, a plurality of massage strips protruding from the annular main body 10 are provided on the massage ring 40, and the massage strips can also be used for external anti-slip.
[0084] In this embodiment, retaining rings 11 are respectively provided at positions on the outer side wall of the annular main body 10 close to the two end faces, and the massage ring 40 is arranged between the two retaining rings 11 to prevent it from falling off.
[0085] The above are only the preferred embodiments of the present utility model, and thus do not limit the patent protection scope of the present utility model. Any equivalent structural transformation made by using the content of the specification and drawings of the present utility model, directly or indirectly applied in other related technical fields, shall be included in the protection scope of the present utility model by the same token.
Claims
1. A non-slip yoga wheel, characterized in that: It comprises an annular body, and an anti-skid portion is formed on the inner peripheral side wall of the annular body, and the anti-skid portion is used to prevent slipping.
2. The anti-slip yoga wheel according to claim 1, characterized in that: The anti-slip portion is a plurality of convex points; Or the anti-slip portion is a plurality of concave points; Alternatively, the anti-slip portion is a plurality of staggered convex points and concave points.
3. A non-slip yoga wheel as claimed in claim 1 or 2, characterized in that: The anti-slip portion is arranged close to the side end surface of the annular body.
4. The anti-slip yoga wheel according to claim 1, characterized in that: A reinforcing rib is also formed on the inner peripheral side wall of the annular body, and the reinforcing rib is used to increase the structural strength of the yoga wheel.
5. The anti-slip yoga wheel according to claim 4, characterized in that: The reinforcing rib portion is a convex ridge ring arranged along the inner peripheral side wall of the annular body.
6. The anti-slip yoga wheel according to claim 5, characterized in that: The closer to the axis of the annular body, the smaller the width of the ridge ring; The middle cross section of the convex ridge ring coincides with the middle cross section of the annular body.
7. The anti-slip yoga wheel according to claim 5, characterized in that: The width of the bottom wall of the convex ridge ring connected to the annular body is equal to the width of the inner peripheral side wall of the annular body; The anti-slip portion is arranged on the reinforcing rib portion.
8. The anti-slip yoga wheel according to claim 5, characterized in that: A plurality of concave annular grooves are arranged on the side wall of the convex ridge ring, and the plurality of concave annular grooves are respectively arranged concentrically with the annular body.
9. The anti-slip yoga wheel according to claim 4, characterized in that: The reinforcing rib portion is integrally formed with the annular main body.
10. The anti-slip yoga wheel according to claim 1, characterized in that: It also includes a massage ring, which is sleeved on the outer peripheral side wall of the annular body.