Improved structure of far infrared protector
By setting a non-elastic telescopic carrier on the elastic telescopic body of the far-infrared protective gear, the problem of solid energy substance falling off is solved, and the long-term use and cost reduction of the protective gear is achieved.
Patent Information
- Application Number
- CN202421588627.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-05
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-07-05
AI Technical Summary
When existing far-infrared protective gear is used for a long time or at high frequency, solid energy substances are easily peeled off from elastically stretched and contracted carriers, affecting their health care, physiotherapy and service life, and at the same time, processing and cost are high.
A geometric or annular body made of elastic telescopic material is designed, and a far infrared energy substance is arranged on the non-elastic telescopic carrier of the body. The carrier is arranged in strips or sheet-like structures, arranged at equal intervals or non-equal intervals to maintain the elastic telescopic effect of the body.
Effectively prevent far-infrared energy substances from falling off during use, extending their service life, reducing production costs, and maintaining the elastic and elastic effect of the protective gear to adapt to the wear needs of different groups of people.
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Figure CN222917988U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a structural design of a far-infrared protective device; in particular, it refers to a technology in which far-infrared energy substances are arranged on a wristband body and the elastic telescopic function of the protective device (when worn) is maintained. Background Art
[0002] Protective devices provided for people to wear and used to assist in protecting specific parts of the human body (such as limbs, wrists, waists, knees, ankles, joints or similar parts) already belong to the prior art; for example, the "wrist protector" of Taiwan, China Patent No. 97219137, the "structural improvement of a sports hand wrist guard" of Patent No. 86218720, etc., provide typical embodiments.
[0003] The prior art has also disclosed technologies for arranging energy substances on protective devices to provide health care and physiotherapy effects on the human body; for example, the "human wearable with heat moxibustion energy" of Taiwan, China Patent No. 99217551 provides a specific embodiment.
[0004] In practice, such embodiments are in the form of making solid non-telescopic energy substances (such as germanium, titanium... or similar energy substances) into powder or granular forms and printing them on the surface of the protective device close to the wearing part. However, as those skilled in the art know, the protective device must have a large elastic telescopic function to facilitate fitting for different people (and / or different part sizes). In the case of long-term or high-frequency (telescopic) use, it often causes the solid powder or granular energy substances to easily fall off from the elastic telescopic carrier fibers (or fabrics), thus affecting their health care, physiotherapy effects and service life.
[0005] It can be understood that assuming the energy substances are printed on a protective device without elastic contraction function, it obviously does not meet the basic usage requirement that the protective device needs to be elastically worn.
[0006] To improve the above situation, the old method has also disclosed a technology of making energy substances into fiber forms and interlacing and knitting them on an elastically contractible protective device (fiber or fabric); for example, the "ring-shaped knitted article with potential balance" of Taiwan, China Patent No. 110212536 provides a feasible embodiment.
[0007] A problem regarding the manufacture and structural application of such fiber or fabric protective devices is that when applying synthetic energy substance yarns to knit / weave synthetic knitted protective devices with elastic telescopic functions, there are relatively troublesome (processing) operations and higher costs, and this situation is not what we expect.
[0008] Typically, these references show the situations regarding the use and structural design of existing health care, physiotherapy devices or their related combined components. If the structure of the device is redesigned considering the above application situations, making it different from the prior art, its usage pattern can be changed and its application effect can be enhanced, thus being distinct from the old method.
[0009] For example, under the conditions of considering structural simplicity and ease of manufacturing, a device structure is provided to improve the situation in the prior art where, due to the mechanism of long-term or high-frequency elastic stretching and contraction of the device, the solid (powder-like) energy substance is likely to fall off from the surface of the device, affecting its health care, physiotherapy functions and service life.
[0010] Moreover, it must be considered that, while maintaining the elastic stretching and contraction function of the device structure, the relatively troublesome (processing) operations and high costs existing in the old method of using energy substances to make yarns and knitting / weaving synthetic devices are eliminated. These problems are not taught or specifically disclosed in the above references. Summary of the Utility Model
[0011] Therefore, the main object of the present utility model is to provide an improved structure of a far-infrared device, including a combination of a body and a carrier; the body is made into a preset size / specification and is suitable for a person to wear on the limb, wrist, knee, ankle, joint or similar parts. The body is made of an elastic stretching material into a geometric contour or a circular contour, defining or having two side regions, a middle region, a first surface, and a second surface opposite to or away from the first surface; at least one carrier is provided on the second surface, and the carrier is arranged with far-infrared energy substances, which can have a health care and physiotherapy effect on a person. Moreover, the carrier is arranged in a strip structure or a sheet structure (in an interval arrangement pattern) on the second surface to maintain the elastic stretching and contraction function of the body (when worn), and to improve the situation in the existing structure where, when implanting energy substances on an elastic carrier (or fabric), it is easy to fall off from the elastic carrier during use, the manufacturing cost is high, or it affects the elastic stretching and contraction function of the device.
[0012] To achieve the above object, the present utility model provides an improved structure of a far-infrared device, which includes: a combination of a body for a person to wear and a carrier; the body is made of an elastic stretching material into a geometric contour, having two side regions and a middle region located between the two side regions; the body has an edge connecting the side regions; and the body also defines a first surface and a second surface opposite to the first surface; the carrier is arranged with far-infrared energy substances; the carrier is made of a non-elastic stretching material and is made into at least one of a strip structure and a sheet structure, and is arranged on the second surface to maintain the elastic stretching and contraction function of the body.
[0013] Wherein, the body is in a circular contour; the far-infrared energy substances are made into at least one of granular bodies and strip-shaped bodies.
[0014] Among them, the two side regions of the body each account for one - quarter of the body, and the middle region accounts for one - half of the body; and the carrier is disposed on the middle region.
[0015] Among them, the carrier is at least one of an equally - spaced arrangement and a non - equally - spaced arrangement pattern.
[0016] Among them, the body can fold the two side regions so that the carrier is jointly wrapped between the second surface of the two side regions and the second surface of the middle region; and can sew the edges of the two side regions, turn the body over so that the two side regions and the edges face the inner direction, and the first surface of the middle region faces the outer direction. Description of the Drawings
[0017] Figure 1 It is a three - dimensional structure schematic diagram of the present utility model; depicting the structure of the carrier and the far - infrared energy substance disposed on the second surface of the body.
[0018] Figure 2 It is a three - dimensional structure schematic diagram of the present utility model; showing the structure situation that after folding the two side regions of the body, the carrier is jointly wrapped between the second surfaces of the two side regions and the second surface of the middle region.
[0019] Figure 3 It is a three - dimensional structure schematic diagram of an operation embodiment of the present utility model; depicting the structure situation of turning the body over so that the first surface of the middle region faces the outer direction.
[0020] Figure 4 is Figure 3 a structure schematic diagram of an operation embodiment of; showing the structure situation of a person wearing the body on the wrist.
[0021] Description of the reference numerals: 10 - body; 11 - first surface; 12 - second surface; 13 - side region; 14 - middle region; 15 - edge; 20 - carrier; 21 - far - infrared energy substance. Detailed Description of the Preferred Embodiments
[0022] Please refer to Figure 1 , the improved structure of the far - infrared protective device of the present utility model includes a combination of a body and a carrier, generally represented by reference numerals 10 and 20 respectively; the body 10 is made of an elastic stretch material, fiber or similar material into a geometric profile or a ring - shaped profile of a preset size / specification, and is suitable for a person to wear on a specific part, such as a limb, wrist, elbow, waist, knee, ankle, joint or similar parts, etc.
[0023] In the following description, the front end, rear end, side, front part, rear part, outer, inner, etc. are in the reference direction shown in the figure.
[0024] The figure shows that the body 10 defines or has two side regions 13 and an intermediate region 14 located between the two side regions 13. The body 10 also defines a first surface 11 and a second surface 12 that is remote from or opposite to the first surface 11; and, the body 10 has an edge 15 connecting the side regions 13.
[0025] In the adopted embodiment, at least one (or a plurality of) carriers 20 are provided on the second surface 12; the carriers 20 are made of a non-elastic stretchable material / fiber or a similar material and formed into a sheet structure and / or a strip structure. The carriers 20 are arranged with far-infrared energy substances 21, germanium, negative ions... or similar substances. And, the far-infrared energy substances 21 can be made into granular bodies, strip-shaped bodies or similar structures, and are configured on the carriers 20 in a form that provides a health care and physical therapy effect on people and can reduce (or avoid) the situation of the energy substances falling off from the surface of the carriers 20.
[0026] The figure also depicts a structure in which the (plurality of) carriers 20 are arranged at equal intervals and / or non-equal intervals on the second surface 12 to maintain the elastic stretchability of the body 10 (when worn), while using the non-elastic stretchable carriers 20 to improve the existing structure of directly printing solid energy substances with elastic materials, which easily causes the energy substances to fall off during use, has a high manufacturing cost or affects the elastic stretchability of the overall protective gear.
[0027] In a feasible embodiment, the two side regions 13 of the body 10 respectively account for about one-fourth of the area (or region) of the body 10, and the intermediate region 14 accounts for about one-half of the area (or region) of the body 10; and, the carriers 20 are provided in the intermediate region 14 between the two side regions 13.
[0028] Please refer to Figure 2 , after folding the two side regions 13 of the body 10 (respectively) backward, the carriers 20 are jointly covered between the second surface 12 of the two side regions 13 and the second surface 12 of the intermediate region 14; and, after sewing the edges 15 of the two side regions 13, the body 10 is turned over so that the two side regions 13, the edges 15 (and the stitches) face the inner direction and the intermediate region 14 (or the first surface 11 of the intermediate region 14) faces the outer direction, such as Figure 3 the situation depicted.
[0029] Figure 4 The figure depicts a situation where the body 10 can be worn on a person's wrist. In particular, the carriers 20 are arranged at equal intervals and / or non-equal intervals on the second surface 12, which maintains the elastic stretchability of the body 10 and is conducive to a mechanism that conforms to the wearing of different people (and / or different body part sizes); and, with the elastic stretchable soft contact surface of the body 10 facing the wearing part of the user, it also provides a more comfortable wearing feeling for the user.
[0030] Representatively speaking, under the conditions of meeting the requirements of a simple structure and easy manufacturing, compared with the prior art, the improved structure of this far-infrared protective device has the following considerations and advantages:
[0031] 1. The main body 10 and related mating structures have been redesigned. For example, at least one carrier 20 is provided on the second surface 12 of the main body 10; the carrier 20 is configured with far-infrared energy substances 21 in a sheet structure and / or a strip structure, or a plurality of carriers 20 are arranged at equal intervals and / or unequal intervals; the two side regions 13 of the main body 10 are folded back so that the carrier 20 is covered inside the second surface 12. Such structural parts are significantly different from the prior art and have changed its usage and operation patterns, which is different from the prior art.
[0032] 2. In particular, the main body 10 and related mating structures have significantly improved the situation in the prior art where the energy substances are easily detached due to the elastic stretching mechanism of the protective device during long-term or high-frequency use, affecting its health care and physiotherapy effects; and, under the condition of maintaining the elastic stretching function of the protective device structure, the prior art method of using energy substances to make yarns and knitting / weaving synthetic protective devices has been removed, which has relatively troublesome (processing) operations and higher costs.
[0033] Therefore, the present utility model provides an effective improved structure of a far-infrared protective device, whose spatial form is different from the prior art and has advantages that cannot be compared with those in the prior art, showing quite a large progress.
[0034] The above is only a feasible embodiment of the present utility model, and is not used to limit the scope of implementation of the present utility model. That is, all equivalent changes and modifications made according to the claims of the present utility model are covered by the protection scope of the present utility model.
Claims
1. An improved structure of far infrared protective gear, characterized in that: include: A combination of a body (10) and a carrier (20) for being worn by a person; The body (10) is made of elastic and stretchable material and has a geometric profile, and has two side regions (13) and a middle region (14) between the two side regions (13); the body (10) has an edge (15) connected to the side regions (13); and The body (10) further defines a first surface (11) and a second surface (12) opposite to the first surface (11); the carrier (20) is provided with far-infrared energy material (21); The carrier (20) is made of a non-elastic stretchable material and is made into at least one of a strip structure and a sheet structure, and is arranged on the second surface (12) to maintain the elastic stretching effect of the body (10).
2. The improved structure of far infrared protective gear according to claim 1, characterized in that: The main body (10) is in the shape of a ring; the far infrared energy material (21) is made into at least one of a granular body and a strip body.
3. The improved structure of far infrared protective gear according to claim 1, characterized in that: The two side regions (13) of the main body (10) each occupy a quarter of the area of the main body (10), and the middle region (14) occupies a half of the area of the main body (10); and The carrier (20) is arranged on the middle area (14).
4. The improved structure of far infrared protective gear according to claim 2, characterized in that: The two side regions (13) of the main body (10) each occupy a quarter of the area of the main body (10), and the middle region (14) occupies a half of the area of the main body (10); and The carrier (20) is arranged on the middle area (14).
5. The improved structure of far infrared protective gear according to claim 1, 2, 3 or 4, characterized in that: The carriers (20) are arranged in at least one of an equidistant arrangement and an unequally spaced arrangement.
6. The improved structure of far infrared protective gear according to claim 1, 2, 3 or 4, characterized in that: The body (10) can be folded back at two side regions (13), so that the carrier (20) is wrapped between the second surfaces (12) of the two side regions (13) and the second surface (12) of the middle region (14); as well as The edges (15) of the two side regions (13) can be sewn, and the body (10) can be turned over so that the two side regions (13) and the edges (15) face inwards and the first surface (11) of the middle region (14) faces outwards.
7. The improved structure of far infrared protective gear according to claim 5, characterized in that: The body (10) is capable of folding back the two side regions (13) so that the carrier (20) is jointly covered between the second surfaces (12) of the two side regions (13) and the second surface (12) of the middle region (14); and is capable of sewing the edges (15) of the two side regions (13) and flipping the body (10) so that the two side regions (13) and the edges (15) face inwards and the first surface (11) of the middle region (14) faces outwards.
Citation Information
Patent Citations
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