Internal and external anti-slip sleeve worn on hand or foot
By designing an inner and outer anti-slip sleeve, the inner and outer surfaces are equipped with double-layer structures of inner and outer anti-slip layers, the problem of insufficient anti-slip inside gloves and socks is solved, and the anti-slip effect is achieved when the hands or feet are sweating, improving operational safety and comfort.
Patent Information
- Application Number
- CN202410173171.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-07
- Publication Date
- 2025-08-08
AI Technical Summary
Existing gloves and socks lack anti-slip function inside the hands or feet, causing them to slide when sweating, affecting operational safety and comfort, and the prior art cannot effectively solve the problem of internal anti-slip.
An inner and outer anti-slip sleeve is designed, including a front sleeve and a rear sleeve. The inner and outer surfaces are respectively provided with an inner anti-slip layer and an outer anti-slip layer. The material is made of flexible water-absorbing material. The inner and outer anti-slip layer protrudes from the inner and outer surfaces when worn, providing an inner and outer anti-slip effect, and absorbs sweat through the water-absorbing material.
It achieves that it can absorb sweat while providing anti-slip effects both internally and externally when worn by hands or feet, ensuring good anti-slip performance can be maintained under any circumstances.
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Figure CN120436404A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to a hand or foot wear with an anti-slip function, and in particular to an inner and outer anti-slip cover worn on the hand or foot. Background Art
[0002] Currently known anti-slip gloves or anti-slip socks worn on the hands or feet are a kind of woven fabric that is put on the hands or feet, and anti-slip sliders or anti-slip strips are provided on the palm surface or the sole surface of the gloves or socks to achieve an anti-slip effect when working with the hands or stepping with the feet.
[0003] Taiwan Patent No. TW M481614 discloses anti-slip socks with multiple woven protrusions on the sole of the foot to prevent slipping and enhance grip. This technology only features anti-slip protrusions on the sole of the foot, without any anti-slip features on the instep, thus failing to provide anti-slip protection on the outer instep. Furthermore, this technology also lacks anti-slip features inside the sock, thus failing to prevent the foot from sliding relative to the sock.
[0004] Spanish patent ES186368 discloses an anti-slip glove that features multiple anti-slip projections not only on the palm but also on the back of the hand, thus providing anti-slip protection on the outer back of the hand. However, this technology also lacks anti-slip features inside the glove, and therefore cannot prevent the hand from slipping relative to the glove.
[0005] In certain situations, such as yoga, wearing gloves or socks requires anti-slip technology to prevent slipping and injury. However, while existing technologies can provide anti-slip protection on the outside of gloves or socks, they fail to provide anti-slip protection for hands or feet inside the gloves or socks. This can lead to problems such as hands or feet slipping out of gloves or socks, even though the anti-slip effect on the outside is excellent.
[0006] However, if we take the widely used surgical gloves today, which are made of rubber, they may appear to have an internal anti-slip effect. However, if the hands are sweaty, they will feel wet, slippery, and sticky inside the gloves, which will affect the overall tactile experience during operation.
[0007] Therefore, the anti-slip function of the inside of gloves and socks and the problem of handling human sweat have become the issues to be solved by the present invention. Summary of the Invention
[0008] The main purpose of the present invention is to provide an inner and outer anti-slip cover worn on the hands or feet, which can absorb sweat and provide anti-slip effects on both the outside and the inside when worn on the hands or feet.
[0009] Another object of the present invention is to provide an inner and outer anti-slip sleeve worn on the hands or feet, which can achieve an anti-slip effect regardless of whether the hands or feet are sweating or not.
[0010] In order to achieve the above-mentioned objectives, the present invention proposes an inner and outer anti-slip sleeve worn on the hands or feet, comprising: a front sleeve portion and a rear sleeve portion combined together; the front sleeve portion is sleeved on the fingers of a person's hand or the toes of a person's foot, and the rear sleeve portion is sleeved on the palm of a person's hand excluding the fingers or the sole of a person's foot excluding the toes; wherein the front sleeve portion and the rear sleeve portion are made of a flexible, water-absorbing material and are combined to form a sleeve body, and an opening is formed for a person's hand or foot to extend into the sleeve body; wherein the surfaces of the front sleeve portion and the rear sleeve portion located inside the sleeve body are both defined as inner surfaces, and the inner surfaces of the front sleeve portion and the rear sleeve portion are provided with an inner anti-slip layer, and a portion thereof is covered by the inner anti-slip layer and has Part of it is not covered and is exposed. When a human hand or foot wears it and is located in the sleeve, the human hand or foot will contact the inner anti-slip layer and the inner surfaces of the front sleeve and the rear sleeve. The inner anti-slip layer has a predetermined thickness and protrudes from the inner surface of the sleeve. wherein, the surfaces of the front sleeve and the rear sleeve located outside the sleeve are defined as outer surfaces. The outer surfaces of the front sleeve and the rear sleeve are provided with an outer anti-slip layer, and part of it is covered by the outer anti-slip layer and part of it is not covered and is exposed. When a human hand or foot wears the sleeve and presses the palm on the ground or steps on the ground, the outer anti-slip layer contacts the ground. The outer anti-slip layer has a predetermined thickness and protrudes from the outer surface of the sleeve.
[0011] In this way, the present invention can absorb sweat and provide anti-slip effects on both the exterior and interior when worn on a person's hands or feet. Moreover, the present invention can achieve the anti-slip effect regardless of whether the person's hands or feet are sweating or not. BRIEF DESCRIPTION OF THE DRAWINGS
[0012] Figure 1 It is a three-dimensional diagram of a first preferred embodiment of the present invention.
[0013] Figure 2 It is a rear perspective view of the first preferred embodiment of the present invention.
[0014] Figure 3 It is a cross-sectional schematic diagram of a first preferred embodiment of the present invention.
[0015] Figure 4 This is a schematic diagram of wearing a first preferred embodiment of the present invention.
[0016] Figure 5 FIG. 1 is a top view of another embodiment of the first preferred embodiment of the present invention, showing the arrangement of through holes.
[0017] Figure 6It is a top view of another aspect of the first preferred embodiment of the present invention.
[0018] Figure 7 This is a three-dimensional diagram of another embodiment of the first preferred embodiment of the present invention.
[0019] Figure 8 This is a three-dimensional diagram of yet another aspect of the first preferred embodiment of the present invention.
[0020] Figure 9 This is a three-dimensional diagram of yet another aspect of the first preferred embodiment of the present invention.
[0021] Figure 10 This is a three-dimensional diagram of yet another aspect of the first preferred embodiment of the present invention.
[0022] Figure 11 FIG. 1 is a top view of yet another embodiment of the first preferred embodiment of the present invention.
[0023] Figure 12 This is a three-dimensional diagram of another embodiment of the first preferred embodiment of the present invention.
[0024] Figure 13 It is a perspective view of a second preferred embodiment of the present invention.
[0025] Figure 14 It is a partial cross-sectional schematic diagram of a second preferred embodiment of the present invention.
[0026] Wherein, the accompanying drawings are marked as follows:
[0027] 10: Internal and external anti-slip sleeves worn on the hands or feet
[0028] 11: front cover 13: back cover
[0029] 15: root sleeve 17: perforation
[0030] 19: sleeve 191: inner surface
[0031] 192: Outer surface 21: Inner anti-slip layer
[0032] 23: outer anti-slip layer 25: pad body
[0033] SP: Side position
[0034] 10': Internal and external anti-slip sleeves worn on the hands or feet
[0035] 11': front cover 13': back cover
[0036] 19': casing 21': inner anti-slip layer
[0037] 23': Outer anti-slip layer DETAILED DESCRIPTION
[0038] In order to explain the technical features of the present invention in detail, the following preferred embodiments are given with reference to the accompanying drawings, wherein:
[0039] like Figures 1 to 4 As shown, the present invention describes an inner and outer anti-slip sleeve 10 worn on the hand or foot through a first preferred embodiment, which mainly comprises a front sleeve portion 11 and a rear sleeve portion 13 combined together, wherein:
[0040] The front cover portion 11 and the rear cover portion 13 are made of a flexible, water-absorbent material and are combined to form a housing 19. An opening is formed within the housing 19 for a hand or foot to be inserted into. In this first embodiment, the housing 19 is described below using a glove as an example, with the description being based on a hand wearing the glove. The aforementioned combination can refer to a single-piece formation or the sewing or laminating of separate components.
[0041] The front cover portion 11 is placed on the fingers of the human hand, and the rear cover portion 13 is placed on the palm of the human hand without the fingers. In actual implementation, the flexible water-absorbing material can be selected from woven fabric, polyurethane (PU) or artificial leather. In this embodiment, woven fabric, i.e., cloth, is used as an example.
[0042] In addition, the surfaces of the front sleeve 11 and the rear sleeve 13 located inside the sleeve body 19 are defined as the inner surface 191 of the sleeve body 19. The inner surface 191 of the front sleeve 11 and the rear sleeve 13 is provided with an inner anti-slip layer 21, and part of it is covered by the inner anti-slip layer 21 and part of it is not covered and exposed. When a person wears it and is located inside the sleeve body 19, the person's hand will contact the inner anti-slip layer 21 and the inner surface 191 of the front sleeve 11 and the rear sleeve 13. The inner anti-slip layer 21 has a predetermined thickness and protrudes from the inner surface 191 of the sleeve body 19.
[0043] Furthermore, the surfaces of the front sleeve portion 11 and the rear sleeve portion 13 located outside the sleeve body 19 are defined as the outer surface 192 of the sleeve body 19. The outer surfaces 192 of the front sleeve portion 11 and the rear sleeve portion 13 are provided with an outer anti-slip layer 23, and some of them are covered by the outer anti-slip layer 23 and some of them are not covered and exposed. When a person wears the sleeve body 19 and presses the palm on the ground, the outer anti-slip layer 23 contacts the ground. The outer anti-slip layer 23 has a predetermined thickness and protrudes from the outer surface 192 of the sleeve body 19.
[0044] like Figures 1 to 4 As shown, when a person wears the sleeve 19, the positions corresponding to the fingers and palms are provided with the outer anti-slip layer 23, and the outer anti-slip layer 23 is provided with the outer anti-slip layer 23. Figure 3 and Figure 4It can also be seen that the inner anti-slip layer 21 inside the sleeve 19 also covers the hand when it is worn. Thus, during use, for example, while performing yoga, the user can not only utilize the outer anti-slip layer 23 on the outer surface 192 of the sleeve 19 to prevent slipping while holding onto the ground, but can also utilize the inner anti-slip layer 21 on the inner surface 191 of the sleeve 19 to prevent slipping. Furthermore, when the hand sweats, since the sleeve 19 itself is a woven, absorbent material (i.e., cloth), it also absorbs sweat. Sweat is less likely to accumulate between the inner anti-slip layer 21 and the skin of the hand, thus maintaining the anti-slip effect of the inner anti-slip layer 21 on the hand. In other words, the anti-slip effect is achieved regardless of whether the hand is sweating or not.
[0045] like Figures 1 to 4 As shown, in this first embodiment, it is set as follows: within the range of the fingerprints and fingertips of the human fingers corresponding to the front sleeve 11, the inner anti-slip layer 21 and the inner surface 191 of the front sleeve 11, as well as the outer anti-slip layer 23 and the outer surface 192 of the front sleeve 11 are necessarily distributed. In this way, since the fingerprints and fingertips of the human fingers are usually the contact positions when acting on objects or the palms are against the ground during use, the inner anti-slip layer 21 and the inner surface 191 of the front sleeve 11 are ensured to be in contact with the fingerprints and fingertips of the human fingers inside the sleeve 19, and the outer anti-slip layer 23 and the outer surface 192 of the front sleeve 11 are ensured to act on the ground when the human fingers are pressed against the ground outside the sleeve 19, thereby providing an anti-slip effect. In addition, if a person wears the sleeve 19 and holds an object, for example, a rod (not shown in the figure), the palm and fingertips will form a gripping state on the rod. At this time, the outer anti-slip layer 23 on the rear sleeve 13 and the front sleeve 11 will contact the rod, providing an anti-slip effect.
[0046] In addition, if Figures 1 to 4 As shown, in this first embodiment, for example, when a person wears the sleeve 19 and presses the palm of their hand against the ground, the sleeve 19 corresponding to the force-bearing position of the palm pressing against the ground is also provided with the inner anti-slip layer 21 and the inner surface 191 of the rear sleeve portion 13, and the outer anti-slip layer 23 and the outer surface 192 of the rear sleeve portion 13. In this way, when the palm of the hand is supporting the ground, the anti-slip effect can also be achieved regardless of whether the palm is sweating or not.
[0047] Again, such as Figure 2 As shown, in the first embodiment, the setting is as follows: the sleeve 19 is provided with the inner anti-slip layer 21 and the outer anti-slip layer 23 corresponding to the back of the hand. The back of the hand in this case includes the back of the fingers.
[0048] For example, 1 to Figure 4As shown, in the first embodiment, in addition to the front sleeve portion 11 and the rear sleeve portion 13, a sleeve portion 15 is further provided. The sleeve portion 15 is combined with the front sleeve portion 11 and the rear sleeve portion 13. The opening is formed in the sleeve portion 15 and communicates with the interior of the sleeve body 19. The sleeve portion 15 is placed on the wrist of the human hand, and the surface of the sleeve portion 15 located inside the sleeve body 19 is also defined as the inner surface 191 of the sleeve body 19, which is also provided with the inner anti-slip layer 21, and the outer surface 192 is also provided with the outer anti-slip layer 23. Figure 5 , it is shown that the sleeve body 19 does not have the shape of the root sleeve portion, and is a glove that is only covered on three fingers.
[0049] Depend on Figures 1 to 4 It can also be seen that in this first embodiment, the setting is as follows: the sleeve 19 is distributed with the inner anti-slip layer 21 and the outer anti-slip layer 23 corresponding to the side position SP of the human hand. Further, this side position SP includes the hand knife position of the human hand and the side of the human hand fingers.
[0050] In addition, if Figure 6 As shown, in this first embodiment, there are also multiple perforations 17 that pass through the sleeve 19, the inner anti-slip layer (not shown in the figure) and the outer anti-slip layer 23. The multiple perforations 17 allow air to enter the sleeve 19 from the outside, and also allow air or moisture in the sleeve 19 to escape to the outside through the multiple perforations 17, thereby achieving a breathable effect.
[0051] In the first embodiment, the inner anti-slip layer 21 and the outer anti-slip layer 23 are staggered in strips, however, they can also be set in other shapes, such as Figure 7 and Figure 8 The dot and circle shapes shown may also be other shapes or irregular shapes. These shapes are not shown in the drawings because they can be understood directly. Figure 9 As shown, the outer anti-slip layer 23 and the inner anti-slip layer (not shown in the figure) can also be a whole piece, and are arranged on the palm surface position outside and inside the sleeve 19, while the outer anti-slip layer 23 and the inner anti-slip layer (not shown in the figure) are not arranged on the side and back of the sleeve 19. In this way, when a person wears the sleeve and is located in the sleeve 19, the palm surface of the person's hand will still contact the inner anti-slip layer (not shown in the figure), while the side positions such as the back of the hand and the knife of the hand will contact the inner surface 191 of the front sleeve portion 11 and the rear sleeve portion 13. Figure 9 The figure also shows the form of fingerless gloves, that is, the front cover portion 11 does not completely cover the fingers, but allows the fingers to be partially exposed. In addition, the inner anti-slip layer 21 and the outer anti-slip layer 23 can be made of silicone, polyurethane (PU), rubber or woven fabric. In the first embodiment, silicone is used as an example. Figure 10As shown, the outer anti-slip layer 23 can also be first provided on a pad 25 and then provided on the casing 19. This can also achieve the effect of providing the outer anti-slip layer 23 on the casing 19. The inner anti-slip layer can also be provided in the same manner, which is not shown in the drawings. The pad 25 can be made of cloth, leather or other known materials.
[0052] like Figure 11 As shown, the sleeve 19 can also be in the form of a glove with the other four fingers except the thumb combined. The inner anti-slip layer 21 (not shown) and the outer anti-slip layer 23 are not provided at the side position SP of the sleeve 19. In this way, the anti-slip effect can still be achieved when the palm presses on the ground and the back of the palm. If anti-slip on the back of the palm is not required, the inner anti-slip layer 21 and the outer anti-slip layer 23 can also be omitted from the sleeve 19 corresponding to the back of the palm. This form is straightforward to understand and therefore will not be illustrated in the figure. Figure 12 As shown, in some extreme cases, the glove-shaped housing 19 may also be Figure 12 The figure shows only the palm part without the finger part. Figure 12 The sleeve body 19 still has the front sleeve portion 11 and the rear sleeve portion 13, but the front sleeve portion 11 only covers the base of the finger without extending to a predetermined length, but this is still covered by the patent scope of the present invention.
[0053] It is worth adding that a general fabric has a base and fibers on the surface of the base. When the inner anti-slip layer 21 and the outer anti-slip layer 23 are set, if the material of the inner anti-slip layer 21 and the outer anti-slip layer 23 is silicone or other substances that need to be heated to a molten state, when they are laid on the surface of the sleeve 19, the heat will cause the fibers on the surface of the fabric to curl and adhere to the base of the fabric. This sometimes makes the height of the inner anti-slip layer 21 and the outer anti-slip layer 23 appear to be lower than the fibers on the surface of the fabric, but in fact, the inner anti-slip layer 21 and the outer anti-slip layer 23 are still attached to the base of the fabric and protrude from the base of the fabric. When the sleeve 19 is a fabric, the inner anti-slip layer 21 and the outer anti-slip layer 23 still protrude from the surface of the sleeve 19.
[0054] From the above description, it can be seen that the present invention, when worn on a person's hand, can absorb sweat and provide an anti-slip effect on both the outside and the inside, and the anti-slip effect can be achieved regardless of whether the person's hand is sweating or not.
[0055] like Figures 13 and 14 As shown, the present invention uses a second preferred embodiment to illustrate an inner and outer anti-slip sleeve 10' worn on the hands or feet. The second preferred embodiment is similar to the first preferred embodiment, except that:
[0056] The sleeve body 19 ′ is in the form of a sock, wherein the front sleeve portion 11 ′ is sleeved on the toes of a person's foot, and the rear sleeve portion 13 ′ is sleeved on the portion of the sole of the person's foot excluding the toes.
[0057] In the second embodiment, for the sock-shaped cover 19', the toe print range corresponds to the finger print range of the hand in the first embodiment, the foot corresponds to the hand, the sole corresponds to the palm, the instep corresponds to the back of the hand, and the ankle corresponds to the wrist. Therefore, the arrangement of the inner anti-slip layer 21' and the outer anti-slip layer 23' can be understood by referring to the description and drawings of the first embodiment.
[0058] Therefore, although the second embodiment is different from the first embodiment in form and is worn on a different part of the human body, it can still absorb sweat and provide an anti-slip effect on both the outside and the inside, and can achieve the anti-slip effect regardless of whether the person's feet and hands are sweating.
[0059] The rest of the structure and effects achieved by the second embodiment are similar to those of the first embodiment, and will not be described in detail again.
[0060] The above description is merely an illustration of the present invention through embodiments, and cannot be used to limit the scope of patent protection of the present invention. Any simple changes or equivalent implementations made according to the scope of the patent application and the contents of the patent specification of the present invention should be covered by the scope of patent protection of the present invention.
Claims
1. An inner and outer anti-slip sleeve worn on the hands or feet, characterized in that: include: A front cover portion and a rear cover portion combined together; The front sleeve portion is sleeved on the fingers of a human hand or the toes of a human foot, and the rear sleeve portion is sleeved on the palm of a human hand excluding the fingers or the sole of a human foot excluding the toes; The front cover and the rear cover are made of a flexible, water-absorbing material and are combined to form a housing, with an opening formed therein for a person's hand or foot to be inserted into the housing. The surfaces of the front and rear cover portions located inside the cover body are both defined as inner surfaces. The inner surfaces of the front and rear cover portions are provided with an inner anti-slip layer, with portions being covered by the inner anti-slip layer and portions being exposed. When a hand or foot of a person is wearing the cover and located within the cover body, the hand or foot will contact the inner anti-slip layer and the inner surfaces of the front and rear cover portions. The inner anti-slip layer has a predetermined thickness and protrudes from the inner surface of the cover body. Among them, the surfaces of the front cover part and the rear cover part located outside the cover body are both defined as outer surfaces. The outer surfaces of the front cover part and the rear cover part are provided with an outer anti-slip layer, and part of them are covered by the outer anti-slip layer and part of them are not covered and exposed. When a person wears the cover body and presses the palm on the ground or steps on the ground, the outer anti-slip layer contacts the ground. The outer anti-slip layer has a predetermined thickness and protrudes from the outer surface of the cover body.
2. The inner and outer anti-slip sleeve worn on the hands or feet according to claim 1, characterized in that: The front cover portion corresponds to the fingerprints and finger pads of a person's hand or the toe prints of a person's foot, and the inner anti-slip layer and the inner surface of the front cover portion are necessarily distributed.
3. The inner and outer anti-slip sleeve worn on the hands or feet according to claim 1, characterized in that: The front cover portion corresponds to the fingerprints and finger pads of a person's hand or the toe prints of a person's foot, and the outer anti-slip layer and the outer surface of the front cover portion are necessarily distributed.
4. The inner and outer anti-slip sleeve worn on the hand or foot according to claim 1, characterized in that: When a person wears the sleeve and presses the palm or foot on the ground, the inner anti-slip layer and the inner surface of the rear sleeve are distributed at the corresponding force-bearing position of the sleeve pressed on the ground, and the outer anti-slip layer and the outer surface of the rear sleeve are distributed.
5. The inner and outer anti-slip sleeve worn on the hand or foot according to claim 1, characterized in that: The sleeve body formed by the front sleeve part and the rear sleeve part is provided with the inner anti-slip layer and the outer anti-slip layer at positions corresponding to the back of a hand or the instep of a foot.
6. The inner and outer anti-slip sleeve worn on the hand or foot according to claim 1, characterized in that: The sleeve body also includes a sleeve portion, which is combined with the front sleeve portion and the rear sleeve portion. The opening is formed in the sleeve portion and communicates with the interior of the sleeve body. The sleeve portion is sleeved on the wrist of a person's hand or the ankle of a person's foot.
7. The inner and outer anti-slip sleeve worn on the hands or feet according to claim 6, characterized in that: The inner surface of the root sleeve is provided with the inner anti-slip layer, and the outer surface is provided with the outer anti-slip layer.
8. The inner and outer anti-slip sleeve worn on the hand or foot according to claim 1, characterized in that: When a person wears the sleeve, the inner anti-slip layer and the outer anti-slip layer are distributed on the side of the sleeve corresponding to the person's hand or foot.
9. The inner and outer anti-slip sleeve worn on the hand or foot according to claim 8, characterized in that: When a person wears the sleeve, the inner anti-slip layer and the outer anti-slip layer are distributed on the sleeve at positions corresponding to the hand blades or foot blades of the person.
10. The inner and outer anti-slip sleeve worn on the hand or foot according to claim 1, characterized in that: It also includes a plurality of through holes that penetrate the sleeve, the inner anti-slip layer and the outer anti-slip layer.
Citation Information
Patent Citations
Sock with anti-slip and grip-enhancing functions
TWM481614U