Yoga mat with elastic buffer structure
Patent Information
- Application Number
- CN202520289786.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2026-02-17
- Estimated Expiration
- 2035-02-21
AI Technical Summary
[0004]鉴于上述现有技术的不足之处,本实用新型的目的在于提供具有弹性缓冲结构的瑜伽垫,以解决现有瑜伽垫防滑、缓冲效果不佳的问题
[0015]本实用新型公开了一种具有弹性缓冲结构的瑜伽垫,包括透气面层、内缓冲层和耐磨层,通过在所述透气面层上设置多个锥形凸条,起到防滑作用,保障使用者在瑜伽运动中的安全,还能在一定程度上促进空气流通、以及对背部起到按摩作用,在所述内缓冲层设置多个所述通道,减轻了瑜伽垫的重量,方便携带,另外利用所述通道自身结构的特性,在所述内缓冲层受到压力时,所述通道周围的材料发生一定程度的弹性变形,吸收并分散压力,从而减轻对使用者身体的反作用力,起到缓冲效果,所述耐磨层提高了瑜伽垫的耐用性,延长使用寿命;本申请提供的瑜伽垫,具有防滑耐用且缓冲性能好的优点。
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Figure CN223914591U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of yoga mat technology, and in particular to yoga mats with elastic cushioning structures. Background Technology
[0002] As people's living standards continue to improve, they often practice yoga at home in their spare time. Yoga can accelerate heart rate and oxygenated blood circulation, thereby strengthening our blood circulation and playing a good role in physical exercise. A yoga mat is indispensable when practicing yoga. Existing yoga mats are generally single-layered and mostly made of plastic foam materials such as PVC, EVA, or rubber, utilizing the deformability of the material itself to achieve a cushioning effect. They usually increase the thickness of the yoga mat to enhance its cushioning, but this design does not improve the cushioning effect. Furthermore, during yoga practice, the body easily sweats, and existing yoga mats lack anti-slip and sweat-absorbing properties. Sweat can cause sprains or slips during practice, and sweat entering the yoga mat can also cause contamination.
[0003] It is evident that existing technologies still need improvement and enhancement. Utility Model Content
[0004] In view of the shortcomings of the prior art, the purpose of this utility model is to provide a yoga mat with an elastic cushioning structure to solve the problems of poor anti-slip and cushioning effects of existing yoga mats.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A yoga mat with an elastic cushioning structure includes a breathable surface layer, an inner cushioning layer, and an abrasion-resistant layer connected sequentially from top to bottom. The breathable surface layer has multiple tapered protrusions on the side facing away from the inner cushioning layer. The tapered protrusions are equidistantly arranged along the width of the breathable surface layer. The inner cushioning layer has a channel group, which includes multiple channels. The multiple channels are transversely arranged in the middle of the inner cushioning layer. The tapered protrusions and the multiple channels are arranged in parallel and correspond to each other.
[0007] As described above, in a yoga mat with an elastic cushioning structure, multiple channels are arranged alternately up and down along the height direction of the inner cushioning layer.
[0008] As described above, in the yoga mat with an elastic cushioning structure, the channel group has a symmetrical structure, and the line of symmetry of the channel group coincides with the center line of the width direction of the inner cushioning layer. The cross-sectional area of the multiple channels gradually decreases from the middle region of the width direction of the inner cushioning layer to both sides.
[0009] As described above, the yoga mat with an elastic cushioning structure has multiple channels that are staggered vertically to form several upper channels and several lower channels. Several upper channels are connected in sequence to form a first arc, and several lower channels are connected in sequence to form a second arc. The first arc and the second arc are symmetrically arranged along the centerline of the height direction of the inner cushioning layer.
[0010] As described above, in a yoga mat with an elastic cushioning structure, the cross-sectional shape of each of the multiple channels is a regular hexagon.
[0011] The yoga mat with an elastic cushioning structure as described above has an inner cushioning layer that is a one-piece molded structure.
[0012] As described above, the yoga mat with an elastic cushioning structure includes a breathable surface layer comprising an anti-slip layer and a textile fabric layer. The textile fabric layer is connected to the side of the inner cushioning layer opposite to the abrasion-resistant layer, and the anti-slip layer is connected to the side of the textile fabric layer opposite to the inner cushioning layer. A plurality of tapered protrusions are provided on the side of the anti-slip layer opposite to the textile fabric layer.
[0013] The yoga mat with an elastic cushioning structure as described above has an inner cushioning layer made of PVC or TPE material.
[0014] Beneficial effects:
[0015] This utility model discloses a yoga mat with an elastic cushioning structure, including a breathable surface layer, an inner cushioning layer, and a wear-resistant layer. Multiple conical protrusions on the breathable surface layer provide anti-slip properties, ensuring user safety during yoga practice. They also promote air circulation and provide a massage effect on the back. Multiple channels in the inner cushioning layer reduce the weight of the yoga mat, making it easy to carry. Furthermore, utilizing the inherent structural characteristics of these channels, when the inner cushioning layer is subjected to pressure, the material around the channels undergoes a certain degree of elastic deformation, absorbing and dispersing the pressure, thereby reducing the reaction force on the user's body and providing a cushioning effect. The wear-resistant layer improves the durability of the yoga mat and extends its service life. The yoga mat provided by this application has the advantages of being anti-slip, durable, and having good cushioning performance. Attached Figure Description
[0016] Figure 1 A schematic diagram of the structure of the yoga mat provided by this utility model;
[0017] Figure 2 Left view of the yoga mat provided for this utility model;
[0018] Reference numerals: 1. Breathable surface layer; 11. Conical ridge; 12. Anti-slip layer; 13. Textile fabric layer; 2. Inner cushioning layer; 21. Channel; 22. Upper channel; 23. Lower channel; 3. Abrasion-resistant layer. Detailed Implementation
[0019] This utility model provides a yoga mat with an elastic cushioning structure. To make the purpose, technical solution and effect of this utility model clearer and more explicit, the following describes this utility model in further detail with reference to the accompanying drawings and examples.
[0020] In the description of this utility model, it should be understood that the terms "top" and other terms indicating the orientation or positional relationship are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and should not be construed as limiting this utility model; in addition, the terms "installation" and "connection" should be interpreted broadly, and those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0021] like Figure 1-2 As shown in the embodiment of this application, a yoga mat with an elastic cushioning structure is proposed, including a breathable surface layer 1, an inner cushioning layer 2, and a wear-resistant layer 3 connected sequentially from top to bottom. The breathable surface layer 1 has a plurality of conical protrusions 11 on the side facing away from the inner cushioning layer 2. The plurality of conical protrusions 11 are arranged at equal intervals along the width direction of the breathable surface layer 1. The inner cushioning layer 2 has a channel group, which includes a plurality of channels 21. The plurality of channels 21 are transversely arranged in the middle of the inner cushioning layer 2. The plurality of conical protrusions 11 and the plurality of channels 21 are arranged in parallel and corresponding to each other.
[0022] This utility model discloses a yoga mat with an elastic cushioning structure, including a breathable surface layer 1, an inner cushioning layer 2, and a wear-resistant layer 3. Multiple conical protrusions 11 are provided on the breathable surface layer 1 to prevent slipping, ensuring the user's safety during yoga practice. These protrusions also promote air circulation and provide a massage effect on the back. Multiple channels 21 are provided in the inner cushioning layer 2, reducing the weight of the yoga mat and making it easy to carry. Furthermore, utilizing the inherent structural characteristics of the channels 21, when the inner cushioning layer 2 is subjected to pressure, the material surrounding the channels 21 undergoes a certain degree of elastic deformation, absorbing and dispersing the pressure, thereby reducing the reaction force on the user's body and providing a cushioning effect. The wear-resistant layer 3 improves the durability of the yoga mat and extends its service life. The yoga mat provided by this application has the advantages of being non-slip, durable, and having good cushioning performance.
[0023] Multiple channels 21 are staggered vertically along the height of the inner buffer layer 2. When a user exercises on the yoga mat, different parts of the body exert pressure on the yoga mat at different positions and intensities. The staggered channels 21 allow the inner buffer layer 2 to flexibly respond to pressure at various positions. Channels at different heights can buffer pressure at different depths. Furthermore, since each channel 21 is distributed at a different height, when subjected to external force, the channels 21 restrain each other, better maintaining the overall shape of the yoga mat and making the user more stable when exercising on the yoga mat, reducing the risk of slipping or falling.
[0024] The channel group has a symmetrical structure, and the line of symmetry of the channel group coincides with the center line of the width direction of the inner buffer layer 2. The cross-sectional area of the multiple channels 21 gradually decreases from the middle area of the width direction of the inner buffer layer 2 to both sides. According to the stress requirements of different parts of the yoga mat, due to the different stress between the layers, the edges of the yoga mat are prone to cracking and delamination. Moreover, during use, the user is mostly in the middle of the yoga mat. Therefore, the size of the channels near the two edges of the yoga mat gradually decreases to reduce the degree of deformation at the edges of the yoga mat and prevent the connection between the layers of the yoga mat from breaking or even separating. The center of the yoga mat is provided with larger channels 21 to increase the degree of elastic deformation and achieve a better cushioning effect.
[0025] Multiple channels 21 are staggered vertically to form several upper channels 22 and several lower channels 23. Several upper channels 22 are connected in sequence to form a first arc, and several lower channels 23 are connected in sequence to form a second arc. The first arc and the second arc are symmetrically arranged along the centerline of the height direction of the inner buffer layer 2. When the user's body part comes into contact with the yoga mat, the impact force is first applied to the channel 21 near the contact point. The arc structure can disperse the force along the curve to a wider area, so that the entire inner buffer layer 2 works together to avoid local pressure concentration, thereby providing the user with more stable and comfortable support.
[0026] The cross-sectional shape of each of the multiple channels 21 is a regular hexagon. Utilizing the characteristics of the regular hexagonal structure, it is not easy to deform and can always maintain its own structural integrity, thereby maintaining the overall stability of the yoga mat and providing reliable support for the user.
[0027] The inner buffer layer 2 is a one-piece molded structure with no seams. When subjected to pressure, the inner buffer layer 2 can better resist deformation and damage, maintain a stable structure, and extend the service life of the yoga mat.
[0028] The breathable surface layer 1 includes an anti-slip layer 12 and a textile fabric layer 13. The textile fabric layer 13 is connected to the side of the inner cushioning layer 2 facing away from the wear-resistant layer 3. The anti-slip layer 12 is connected to the side of the textile fabric layer 13 facing away from the inner cushioning layer 2. A plurality of tapered protrusions 11 are provided on the side of the anti-slip layer 12 facing away from the textile fabric layer 13. The textile fabric layer 13 allows air circulation, timely discharge of heat and moisture absorbed by the yoga mat, prevents sweat from accumulating on the anti-slip layer 12, and improves the anti-slip performance.
[0029] The inner buffer layer 2 is made of PVC or TPE material.
[0030] It is understood that those skilled in the art can make equivalent substitutions or changes based on the technical solution and inventive concept of this utility model, and all such substitutions or changes should fall within the protection scope of this utility model.
Claims
1. A yoga mat having an elastic cushioning structure, characterized by, The air-permeable surface layer (1), the inner cushion layer (2) and the wear-resistant layer (3) are sequentially connected from top to bottom, a plurality of conical protrusions (11) are arranged on the side of the air-permeable surface layer (1) away from the inner cushion layer (2), the plurality of conical protrusions (11) are equidistantly arranged along the width direction of the air-permeable surface layer (1), a plurality of channel groups are arranged on the inner cushion layer (2), each channel group comprises a plurality of channels (21), and the plurality of channels (21) are respectively arranged in the middle part of the inner cushion layer (2) in the transverse direction, and the plurality of conical protrusions (11) and the plurality of channels (21) are arranged in parallel one by one.
2. The yoga mat having an elastic cushioning structure according to claim 1, wherein, The plurality of channels (21) are arranged in a staggered manner along the height direction of the inner cushion layer (2).
3. The yoga mat having an elastic cushioning structure according to claim 2, wherein, The channel group is a symmetrical structure, the symmetry line of the channel group is consistent with the middle line of the width direction of the inner cushion layer (2), and the cross-sectional area of the plurality of channels (21) gradually decreases from the middle region of the width direction of the inner cushion layer (2) to both sides.
4. The yoga mat having an elastic cushioning structure according to claim 3, wherein, The plurality of channels (21) are arranged in a staggered manner to form a plurality of upper channels (22) and a plurality of lower channels (23), the plurality of upper channels (22) are sequentially connected to form a first arc line, the plurality of lower channels (23) are sequentially connected to form a second arc line, and the first arc line and the second arc line are symmetrically arranged along the middle line of the height direction of the inner cushion layer (2).
5. The yoga mat having an elastic cushioning structure according to claim 1, wherein, The cross-sectional shape of the plurality of channels (21) is a regular hexagon.
6. The yoga mat having an elastic cushioning structure according to claim 1, wherein, The inner cushion layer (2) is an integral forming structure.
7. The yoga mat having an elastic cushioning structure according to claim 1, wherein, The air-permeable surface layer (1) comprises an anti-skid layer (12) and a textile fabric layer (13), the textile fabric layer (13) is connected to the side of the inner cushion layer (2) away from the wear-resistant layer (3), the anti-skid layer (12) is connected to the side of the textile fabric layer (13) away from the inner cushion layer (2), and the plurality of conical protrusions (11) are arranged on the side of the anti-skid layer (12) away from the textile fabric layer (13).
8. The yoga mat having an elastic cushioning structure according to claim 1, wherein, The inner cushion layer (2) is made of PVC material or TPE material.