Glasses-mounted magnetic therapy device

By designing a combination of flexible components and connecting components on the glasses, the problem of unstable position of the magnetic glasses chain when moving is solved, and a stable magnet positioning on the back of the neck is achieved, providing continuous magnetic therapy effect and comfort.

CN113750370BActive Publication Date: 2025-08-26PIP CO LTD +1
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Patent Information

Application Number
CN202110581793.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Priority Date
2020-06-02
Filing Date
2021-05-26
Publication Date
2025-08-26
Estimated Expiration
2041-05-26

AI Technical Summary

Technical Problem

Existing magnetic glasses chains are easy to move and slide when moving the body, resulting in unstable position of the magnet, affecting the effect of magnetic therapy and causing discomfort.

Method used

A glasses-mounted magnetic therapy instrument is designed, which adopts a combination of a pair of flexible parts and a connecting part. The flexible parts are connected to the glasses temples or foot covers. The connecting part makes the flexible parts form a specific angle on the back of the neck to stabilize the positioning of the magnet.

Benefits of technology

The magnet can be stably positioned on the back of the neck even when moving the body, providing a continuous magnetic therapy effect and reducing discomfort.

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Abstract

The present invention aims to provide a glasses-mounted magnetic therapy device that can suppress deformation even when the body is moving and can properly position a magnet at the back of the neck. The glasses-mounted magnetic therapy device (1) of the present invention comprises: a pair of flexible members (2, 2), each of which has an end portion (21, 21) on one side connected to a pair of temples or temples of glasses in a detachable manner; a magnet (3, 3) provided on at least one of the pair of flexible members (2, 2); and a connecting member (4) connecting the end portions (22, 22) on the other side of the pair of flexible members (2, 2). The device is characterized in that when mounted on the glasses, the connecting member (4) connects the end portions (22, 22) on the other side of the pair of flexible members (2, 2) so that the pair of flexible members (2, 2) are tilted at an angle that clamps the back of the neck of the wearer of the glasses.
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Description

Technical Field

[0001] The invention relates to a glasses-mounted magnetic therapy device. Background Art

[0002] For example, Patent Document 1 discloses a magnetic eyeglass chain designed to be attached to glasses. The chain is formed by connecting multiple hematite stones via a wire, which is then connected to a ball chain, creating a flexible, elongated strip. When the glasses are worn with the chain, the hematite stones are positioned so that they contact the back of the neck. This creates a magnetic effect, enhancing the health benefits of promoting blood circulation.

[0003] Prior art literature

[0004] Patent Literature

[0005] Patent Document 1: Japanese Utility Model Registration No. 3174570 Summary of the Invention

[0006] Problems to be solved by the invention

[0007] The magnetic eyeglass chain disclosed in Patent Document 1 is designed to be fully deformable. When glasses are worn, the chain deforms to the shape of the neck, making it easier for the magnet to be positioned around the back of the neck. However, during physical activity, such as exercise, the chain deforms and easily moves in conjunction with the body's movements. This not only easily changes the position of the magnet, but also causes discomfort when the chain slides around the neck. Conversely, if the magnetic eyeglass chain is constructed of a flexible material that deforms when a certain force is applied, problems such as deformation and slippage during physical activity are mitigated. However, this also prevents the chain from deforming to the shape of the neck when glasses are worn. This leads to problems such as the magnet being positioned away from the back of the neck, making it difficult to properly position the magnet around the back of the neck.

[0008] The present invention has been made in view of the above-mentioned problems, and an object of the present invention is to provide a glasses-mounted magnetic therapy device that can suppress deformation even when the body is moving and can appropriately position the magnet at the back of the neck.

[0009] Solutions to Problems

[0010] The glasses-mounted magnetic therapy device of the present invention is mounted on glasses for use, and is characterized in that it comprises: a pair of flexible components, each of which has an end portion on one side connected to a pair of temples or temples of the glasses in a detachable manner; a magnet, which is arranged on at least one of the pair of flexible components; and a connecting component, which connects the ends on the other side of each of the pair of flexible components. When mounted on the glasses, the connecting component connects the ends on the other side of each of the pair of flexible components, so that the pair of flexible components are tilted to each other at an angle that clamps the back of the neck of the wearer of the glasses.

[0011] Furthermore, the connecting component preferably includes: a main body; a first connecting portion, which protrudes from the main body in a first direction and is connected to the end portion on the other side of one of the pair of flexible components; and a second connecting portion, which protrudes from the main body in a second direction and is connected to the end portion on the other side of the other flexible component of the pair of flexible components, and the first direction and the second direction are inclined relative to each other according to the angle of the pair of flexible components.

[0012] Furthermore, it is preferable that the relative angle between the pair of flexible members is within a range of 90 to 120 degrees.

[0013] Furthermore, it is preferable that each of the pair of flexible members is formed so that a cross-sectional area perpendicular to the longitudinal direction gradually increases from the one end portion toward the other end portion.

[0014] Furthermore, the pair of flexible members are preferably formed so that the shape of the cross section perpendicular to the longitudinal direction changes from a shape with substantially equal width and height to a shape with greater width than height as it moves from the one end toward the other end.

[0015] Furthermore, it is preferable that the pair of flexible members are each formed so that the width of a cross section perpendicular to the longitudinal direction near the other end is larger than the height, and surfaces of the pair of flexible members extending in the width direction are inclined to each other at the angle.

[0016] Effects of the Invention

[0017] According to the present invention, it is possible to provide a glasses-mounted magnetic therapy device that can suppress deformation even when the body is moving and can appropriately position the magnet at the back of the neck. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 1 is a top view of a glasses-mounted magnetic therapy device according to one embodiment of the present invention.

[0019] Figure 2 yes Figure 1 Front view of the glasses-mounted magnetic therapy device.

[0020] Figure 3 yes Figure 1 A cross-sectional view of the flexible component of the glasses-mounted magnetic therapy device, Figure 3 (a) Yes Figure 1 The Ⅲa-Ⅲa line cross-sectional view, Figure 3 (b) Yes Figure 1 The Ⅲb-Ⅲb line cross-sectional view, Figure 3 (c) Yes Figure 1 Sectional view along line IIIc-IIIc.

[0021] Figure 4 It will Figure 2 The main view of the glasses-mounted magnetic therapy device is enlarged and shows the state in which the connection between the flexible part and the connecting part is released.

[0022] Figure 5 Yes means installed Figure 1 A diagram of a glasses-mounted magnetic therapy device when worn on a human body.

[0023] Figure 6 It means that the subjects wore Figure 1 This chart shows the results of determining whether the magnet is in contact with the back of the neck when using a glasses-mounted magnetic therapy device. DETAILED DESCRIPTION

[0024] Hereinafter, a glasses-mounted magnetic therapy device according to one embodiment of the present invention will be described with reference to the accompanying drawings. However, the following embodiment is merely an example, and the glasses-mounted magnetic therapy device of the present invention is not limited to the following example.

[0025] like Figure 5 As shown, the eyeglass-mounted magnetic therapy device 1 of this embodiment (hereinafter referred to as the "magnetic therapy device") is mounted on eyeglasses G for use. As described in detail below, the magnetic therapy device 1 is mounted on the eyeglasses G, positions the magnet 3 on the back of the neck N of a person wearing the eyeglasses G, and applies a magnetic field to the back of the neck N, thereby achieving magnetic therapy effects such as promoting blood circulation in and around the back of the neck N or improving metabolism.

[0026] like Figure 5 As shown, the magnetic therapy device 1 includes a pair of flexible parts 2, 2 respectively connected to a pair of temples G1, G1 or foot covers G2, G2 of the glasses G (foot covers G2, G2 in the example shown in the figure), magnets 3, 3 arranged on at least one of the pair of flexible parts 2, 2 (two in the example shown in the figure), and a connecting part 4 that connects the pair of flexible parts 2, 2 to each other.

[0027] like Figure 5As shown, the pair of flexible members 2, 2 are connected to the pair of temples G1, G1 or temples G2, G2 of the glasses G, and are positioned at the position from the temples G1 or temples G2 to the back of the neck N when the glasses G are worn on the human body. The pair of flexible members 2, 2 are each flexible and are configured to be deformable so as to extend from the temples G1 or temples G2 to the back of the neck N along the back of the head. The pair of flexible members 2, 2 are respectively connected to the pair of temples G1, G1 or temples G2 of the glasses G, and are positioned at the position from the temples G1 or temples G2 to the back of the neck N. Figure 1 and Figure 2 ) is formed as a length extending from the temple G1 or the temple G2 along the back of the human head to the back of the neck N, and the length direction L1 refers to the direction extending between the end 21 on one side and the end 22 on the other side when the glasses G are worn on the human body. In this embodiment, as Figure 1 and Figure 2 As shown, the pair of flexible members 2 and 2 have mutually symmetrical structures with respect to a plane (a plane perpendicular to the paper) passing through the center of the connecting member 4. However, the pair of flexible members 2 and 2 may have mutually asymmetrical structures.

[0028] like Figure 5 As shown, the ends 21 on one side of the pair of flexible members 2, 2 are detachably connected to the pair of temples G1, G1 or temples G2, G2 (the temples G2, G2 in the example shown), and the ends 22 on the other side of the pair of flexible members 2, 2 are connected to the connecting member 4. As long as the ends 21 on one side and the ends 22 on the other side of the flexible member 2 can be detachably connected to the temples G1 or temples G2 of the glasses G and the connecting member 4, the structure is not particularly limited. In this embodiment, as shown in FIG. Figure 1 、 Figure 2 as well as Figure 4 As shown, the flexible member 2 has a glasses-side connecting portion 21a at one end 21 that is detachably connected to the temple G1 or temple G2, and a connecting member-side connecting portion 22a at the other end 22 that is connected to the connecting member 4. The glasses-side connecting portion 21a has an insertion hole through which the temple G1 or temple G2 can be inserted, and is connected to the temple G1 or temple G2 by inserting the temple G1 or temple G2 into the insertion hole. The connecting member-side connecting portion 22a has an insertion hole into which the first connecting portion 42 or the second connecting portion 43 of the connecting member 4, described later, can be inserted, and is connected to the connecting member 4 by inserting the first connecting portion 42 or the second connecting portion 43 into the insertion hole.

[0029] In this embodiment, if Figure 1 and Figure 3As shown, the pair of flexible members 2, 2 are each formed so that the cross-sectional area of ​​the section perpendicular to the longitudinal direction L1 gradually increases from one end 21 toward the other end 22. The cross-sectional area of ​​the flexible member 2 located on the side of the eyeglasses G (a region located a predetermined length (e.g., 1 / 2, 1 / 3, 1 / 4 of the total length of the flexible member 2) from the one end 21 in the longitudinal direction L) is smaller than the cross-sectional area of ​​the other region located on the rear side of the neck N (a region located a predetermined length (e.g., 1 / 2, 1 / 3, 1 / 4 of the total length of the flexible member 2) from the other end 22 in the longitudinal direction L). Therefore, the one region deforms more easily than the other region. Consequently, even when a bending force is applied when the flexible member 2 is connected to the eyeglasses G and worn on the body, the one region bends preferentially, suppressing bending of the other region. By suppressing bending of the other side region of the flexible member 2 located on the back side of the neck N, the other side region of the flexible member 2 is stably positioned on the back side of the neck N, thereby enabling the magnet 3 to be stably positioned on the back side of the neck N.

[0030] Furthermore, the phrase "the cross-sectional area of ​​the flexible member 2 gradually increases from the one end 21 toward the other end 22" means that the cross-sectional area near at least the other end 22 is larger than the cross-sectional area near the one end 21, and is not particularly limited to the cross-sectional area at the intermediate portion between the one end 21 and the other end 22. Therefore, the flexible member 2 may have a cross-sectional area that continuously increases from the one end 21 toward the other end 22, as shown in the example illustrated. Alternatively, the cross-sectional area may increase in stages from the one end 21 toward the other end 22, unlike the example illustrated. Alternatively, the cross-sectional area may be larger at the intermediate portion between the one end 21 and the other end 22 than the cross-sectional area of ​​the other end 22.

[0031] In this embodiment, if Figure 1 and Figure 3 As shown, the pair of flexible members 2, 2 are each shaped so that the cross section thereof perpendicular to the longitudinal direction L1 changes from the end 21 on one side toward the end 22 on the other side, from a shape having a width W and a height H that are substantially equal ( Figure 3 (a) is a substantially square shape, which is changed to a shape with a width W greater than a height H ( Figure 3(c) is formed in a substantially rectangular shape. The cross-section of the flexible member 2 on one side of the eyeglasses G side (a region extending a predetermined length (e.g., 1 / 2, 1 / 3, 1 / 4 of the overall length of the flexible member 2) from the end 21 on one side in the longitudinal direction L) is approximately equal in width W and height H. The cross-section of the other side of the flexible member 2 on the rear side of the neck N (a region extending a predetermined length (e.g., 1 / 2, 1 / 3, 1 / 4 of the overall length of the flexible member 2) from the end 22 on the other side in the longitudinal direction L) is greater in width W than height H. Therefore, the one side of the flexible member 2 is more easily bent in any direction (isotropically) than the other side. Consequently, even if a bending force is applied when the flexible member 2 is connected to the eyeglasses G and worn on the body, the one side of the flexible member 2 bends preferentially, suppressing bending of the other side of the flexible member 2. By suppressing bending of the other side region of the flexible member 2 located on the rear side of the neck N, the other side region of the flexible member 2 is stably positioned on the rear side of the neck N, thereby stably positioning the magnet 3 on the rear side of the neck N. Furthermore, in this case, the cross-sectional area of ​​the cross section on the side of the one end 21 and the cross section on the side of the other end 22 may be equal, or the cross-sectional area on the side of the one end 21 may be larger than the cross-sectional area on the side of the other end 22. Conversely, the cross-sectional area on the side of the other end 22 may be larger than the cross-sectional area on the side of the one end 21. In other words, the cross-sectional area may be any as long as it varies in accordance with the relationship between the height H and width W of the cross section.

[0032] Furthermore, the cross-sectional shape changes from a shape in which the width W and the height H are approximately equal to each other to a shape in which the width W is greater than the height H as it moves from the end 21 on one side of the flexible member 2 toward the end 22 on the other side, meaning that the cross-sectional shape is a shape in which the width W and the height H are approximately equal at least near the end 21 on one side, and a shape in which the width W is greater than the height H near the end 22 on the other side, and the cross-sectional shape of the intermediate portion between the end 21 on one side and the end 22 on the other side is not particularly limited. Therefore, the flexible member 2 may, for example, change in a cross-sectional shape such that the width W continuously increases relative to the height H as it moves from the end 21 on one side toward the end 22 on the other side, as shown in the example illustrated, or may change in a cross-sectional shape such that the width W increases stepwise relative to the height H as it moves from the end 21 on one side toward the end 22 on the other side, or may change in a cross-sectional shape such that the width W increases relative to the height H at the intermediate portion between the end 21 on one side and the end 22 on the other side. Furthermore, with respect to the shape in which the width W and the height H are approximately equal, in Figure 3 (a) shows a substantially square shape, but it may also be a substantially circular shape. Regarding a shape in which the width W is greater than the height H, Figure 3 (c) shows a substantially rectangular shape, but it may also be a substantially elliptical shape, for example.

[0033] In this embodiment, if Figure 1 and Figure 3 As shown, the pair of flexible members 2, 2 are each formed so that the width W of the cross section perpendicular to the longitudinal direction L1 near the other end 22 is greater than the height H. Furthermore, when the eyeglasses G are worn on a person, the pair of flexible members 2, 2 are each arranged so that the surface F of the other side extending in the width direction faces the back of the neck N. Thus, when the other side region of the flexible member 2 is arranged on the back of the neck N, the surface F extending in the width direction abuts against the back of the neck N, inhibiting rotation about the longitudinal direction L1. By inhibiting rotation of the other side region of the flexible member 2 located on the back of the neck N, the other side region of the flexible member 2 is stably positioned on the back of the neck N, thereby stably positioning the magnet 3 on the back of the neck N.

[0034] The flexible member 2 has flexibility such that it can be deformed by applying a force exceeding a specified value, and can return to its original shape due to a rebound force when the force exceeding the specified value is released. Therefore, even when exercising or performing other bodily activities, as long as the applied force is within a specified range, the flexible member 2 can be prevented from deforming in conjunction with the body's movement. Even if the flexible member 2 is deformed by applying a force exceeding the specified value, the flexible member 2 can return to its original shape due to the rebound force. As a result, the other side area of ​​the flexible member 2 is stably positioned at the rear side of the neck N, thereby stably positioning the magnet 3 at the rear side of the neck N. The flexible member 2 can be constructed in a flexible manner without any particular limitation on the material thereof, and can be formed, for example, from silicone resin or the like.

[0035] The magnet 3 generates magnetic lines of force that can bring magnetic therapy effects to the human body. Figure 5 As shown in FIG. 1 , when the glasses G are worn on a human body, the magnet 3 is arranged on the flexible member 2 in such a manner as to be positioned at the back side of the human neck N. The magnet 3 provides a magnetic therapy effect to the back side of the neck N by being positioned at the back side of the neck N. The magnet 3 only needs to be arranged on the flexible member 2 in such a manner as to be positioned at the back side of the human neck N, and the arrangement position within the flexible member 2 is not particularly limited. In this embodiment, as shown in FIG. Figure 1 and Figure 2 As shown, the magnet 3 is arranged on a surface F facing the rear side of the neck N in the other side region near the end 22 of the other side of the flexible member 2. More specifically, the magnet 3 is arranged on the surface F that extends in the width direction and faces the rear side of the neck N in the other side region of the flexible member 2.

[0036] In this embodiment, when the glasses G are worn on the human body, the magnet 3 is positioned with its magnetic poles oriented approximately perpendicular to the skin surface. This arrangement allows the magnetic field strength in the direction approximately perpendicular to the skin surface to be greater than when the magnetic poles extend parallel to the skin surface, enabling the magnet to act deeper into the body from the skin surface. However, the magnetic pole orientation of the magnet 3 is not particularly limited, as long as it can generate magnetic lines of force that can provide a magnetic therapeutic effect on the human body.

[0037] In this embodiment, if Figure 1 and Figure 2 As shown, the magnet 3 includes a plurality of (two in the illustrated example) magnets 31, 31 relative to one flexible part 2. The plurality of magnets 31, 31 are arranged in a row along the length direction L1 of the flexible part 2 and spaced apart from each other. There is no particular limitation on each magnet 31, and ferrite magnets, neodymium magnets, samarium cobalt magnets, etc. can be used. The output level is not particularly limited, for example, it can be set to less than 200mT on the skin surface as a certification standard of the Ministry of Health, Labour and Welfare. In order to avoid direct contact with human skin, the magnets 31, 31 can be covered with silicone resin or the like. In addition, in the present embodiment, the magnet 3 is provided on both sides of a pair of flexible parts 2, 2, or it can be provided on only one side. Furthermore, in the present embodiment, the magnet 3 includes a plurality of magnets 31, 31 relative to one flexible part 2, or the magnet 3 includes one magnet relative to one flexible part 2.

[0038] like Figure 1 and Figure 2 As shown, the connecting member 4 is a member that connects the other end portions 22, 22 of the pair of flexible members 2, 2. Figure 2 and Figure 4 It can be understood that when the magnetic therapy device 1 is attached to the glasses G, the connecting member 4 connects the other ends 22, 22 of the pair of flexible members 2, 2, causing the pair of flexible members 2, 2 to tilt relative to each other at an angle θ that sandwiches the back of the neck N of the wearer of the glasses G. The pair of flexible members 2, 2 tilt toward each other as they approach the back of the neck N of the wearer of the glasses G, so that the surfaces F, F on the facing sides easily conform to the shape of the curved back of the neck N, thereby enabling the magnets 3, 3 to be appropriately positioned at the back of the neck N. In this embodiment, the connecting member 4 is configured to detachably connect the pair of flexible members 2, 2, but it may also be configured to fixedly connect the pair of flexible members 2, 2.

[0039] In this embodiment, as described above, the pair of flexible members 2, 2 are each formed so that the width W of the cross section perpendicular to the longitudinal direction L near the other end 22 is larger than the height H. Figure 2 As shown, the surfaces F, F extending in the width direction of the pair of flexible members 2, 2 are inclined toward each other at the aforementioned angle θ. Specifically, by forming the mutually facing surfaces F, F of the respective second side regions of the pair of flexible members 2, 2 with greater widths, and positioning them at and in contact with the rear side of the neck N, the flexible members 2 are prevented from rotating about the longitudinal direction L1. By preventing rotation of the second side region of the flexible member 2 positioned at the rear side of the neck N, the second side region of the flexible member 2 is stably positioned at the rear side of the neck N, thereby stably positioning the magnet 3 at the rear side of the neck N.

[0040] The relative angle θ between the pair of flexible members 2 and 2 (see Figure 2 and Figure 4 ), the angle θ between the pair of flexible members 2, 2 is not particularly limited as long as it can fit the back side of the curved neck N, but is preferably within the range of 90 to 120°. When the relative angle θ between the pair of flexible members 2, 2 is within the range of 90 to 120°, the pair of flexible members 2, 2 can better fit the back side of the curved neck N. From this perspective, the relative angle θ between the pair of flexible members 2, 2 is more preferably within the range of 95 to 115°, and even more preferably within the range of 100 to 110°.

[0041] The connecting member 4 is not particularly limited in structure as long as it connects the other ends 22, 22 of the pair of flexible members 2, 2 so that the pair of flexible members 2, 2 are inclined to each other at an angle θ relative to the back of the neck N of the wearer holding the glasses G. In this embodiment, as Figure 1 、 Figure 2 and Figure 4 As shown, the connecting member 4 includes a main body 41, a first connecting portion 42 protruding from the main body 41 in the first direction L2, and a second connecting portion 43 protruding from the main body 41 in the second direction L3. The connecting member 4 connects the pair of flexible members 2, 2 by connecting the other ends 22, 22 of the pair of flexible members 2, 2 to the first connecting portion 42 and the second connecting portion 43, respectively. In this embodiment, the first connecting portion 42 and the second connecting portion 43 are detachably connected to the other ends 22, 22 of the pair of flexible members 2, 2, or they may be fixedly connected to the other ends 22, 22 of the pair of flexible members 2, 2.

[0042] The main body 41 is a portion that supports the first connection portion 42 and the second connection portion 43. Figure 4As shown, the main body 41 is formed integrally with a first main body 41a extending toward the first direction L2 and a second main body 41b extending toward the second direction L3, and is formed by bending (or curving) between the first main body 41a and the second main body 41b. A first connecting portion 42 is provided on the first main body 41a, and a second connecting portion 43 is provided on the second main body 41b. The main body 41 is formed integrally with the first connecting portion 42 and the second connecting portion 43. In addition, the main body 41 can also be in the shape of a link (roughly a horizontal U-shape) and formed as a straight line of a specified distance between the first main body 41a and the second main body 41b. That is, as long as the extension line of the first direction L2 and the extension line of the second direction L3 form an angle θ, its structure is not particularly limited.

[0043] like Figure 1 and Figure 2 As shown, the first connection portion 42 is connected to the end portion 22 of the other side of one of the pair of flexible members 2, 2, and the second connection portion 43 is connected to the end portion 22 of the other side of the other of the pair of flexible members 2, 2. Figure 4 As shown, the first and second connecting portions 42 and 43 respectively include large-diameter portions 42a and 43a and small-diameter portions 42b and 43b. The large-diameter portions 42a and 43a have relatively large cross-sectional areas perpendicular to the first and second directions L2 and L3, respectively, while the small-diameter portions 42b and 43b have relatively small cross-sectional areas perpendicular to the first and second directions L2 and L3, respectively. The large-diameter portions 42a and 43a are respectively fitted into the insertion holes of the connecting member-side connecting portions 22a and 22a of the pair of flexible members 2, 2, thereby connecting the first and second connecting portions 42 and 43 to the other ends 22 and 22 of the flexible members 2, 2. The openings of the insertion holes of the connecting member-side connecting portions 22a and 22a are sized to correspond to the small-diameter portions 42b and 43b of the first and second connecting portions 42 and 43, thereby preventing the large-diameter portions 42a and 43a from falling out of the insertion holes. Therefore, the first connection portion 42 and the second connection portion 43 can be more firmly connected to the other end portions 22 , 22 of the pair of flexible members 2 , 2 .

[0044] In this embodiment, if Figure 2 and Figure 4 As shown, the first direction L2 in which the first connecting portion 42 protrudes, and the second direction L3 in which the second connecting portion 43 protrudes, are inclined relative to each other in accordance with the relative angle θ between the pair of flexible members 2, 2. That is, in this embodiment, the connecting member 4 bends (or curves) itself, thereby causing the pair of flexible members 2, 2 to be inclined relative to each other. Thus, the connecting member 4 can tilt the flexible members 2, 2 relative to each other without bending (or curving) the flexible members 2, 2, thereby enabling the flexible members 2, 2 and the magnets 3, 3 to be more appropriately positioned on the rear side of the neck N.

[0045] The connecting member 4 has a rigidity that prevents deformation and maintains its shape even when subjected to a predetermined force (e.g., human force). Because the connecting member 4 has such rigidity that it can maintain its shape, changes in the relative angle θ between the pair of flexible members 2, 2 caused by deformation of the connecting member 4 are suppressed, thereby maintaining the relative angle θ between the pair of flexible members 2, 2 more stably. Consequently, the flexible member 2 can more appropriately position the magnet 3 on the rear side of the neck N.

[0046] The connecting member 4 has at least a higher rigidity than the flexible member 2. Therefore, even when a force intended to deform the connecting member 4 is applied via the flexible member 2, deformation of the connecting member 4 due to the deformation of the flexible member 2 is suppressed. The connecting member 4 is not particularly limited in its material composition, as long as it has at least a higher rigidity than the flexible member 2. The connecting member 4 can be formed, for example, from a hard material. Examples of such hard materials include hard resins such as polyacetal resin, polycarbonate resin, polyester resin, and acrylic resin, with polyacetal resin or polycarbonate resin being preferred.

[0047] Example

[0048] Hereinafter, the excellent effects of the glasses-mounted magnetic therapy device of this embodiment will be described based on examples. It should be noted that the glasses-mounted magnetic therapy device of the present invention is not limited to the following examples.

[0049] (Glasses-mounted magnetic therapy device)

[0050] Production Figure 1 and Figure 2 The magnetic therapy device 1 shown. The flexible component 2 is made of silicone resin. The length between the end 21 on one side and the end 22 on the other side of the flexible component 2 is set to approximately 13 cm, the width W and height H near the end 21 on one side are set to approximately 0.4 cm, and the width W and height H near the end 22 on the other side are set to 1.4 cm and 0.6 cm, respectively. The magnet 3 uses two disc-shaped ferrite magnets 31, 31 with a diameter of approximately 0.8 cm relative to each flexible component 2. The two ferrite magnets 31, 31 are respectively set at positions approximately 1.3 cm and approximately 2.3 cm away from the end 21 of the flexible component 2. The connecting component 4 is made of polyacetal resin so that the relative angle θ between the pair of flexible components 2, 2 is 86°, 96°, 106°, 116°, and 126°.

[0051] (Evaluation of the suitability of magnet placement in a glasses-mounted magnetic therapy device)

[0052] When wearing glasses G, the magnets 31, 31 of the magnetic therapy device 1 were evaluated to determine whether they were properly positioned on the back of the neck N. Ten subjects wore glasses G equipped with the magnetic therapy device 1 and evaluated whether the magnets 31, 31 were in contact with the back of the neck N. The evaluation criteria were: ◎ indicates good magnet contact, 0 indicates partial magnet contact, and △ indicates no magnet contact.

[0053] (Evaluation results of magnet placement for glasses-mounted magnetic therapy devices)

[0054] In Table 1 and Figure 6 The results of judging whether the magnets 31, 31 of the magnetic therapy device 1 are in contact with the back of the neck N are shown in Table 1 and Figure 6 It can be seen that when the relative angle θ between the pair of flexible members 2, 2 is 86° and 126°, the number of subjects who judged "the magnet is in good contact" is 1 and 2, respectively. In contrast, when the angle θ is increased to 96° and 116°, the number of subjects who judged "the magnet is in good contact" increases, and when the angle θ is increased to 106°, the number of subjects who judged "the magnet is in good contact" is the highest. Based on these results, it can be seen that from the perspective of making the pair of flexible members 2, 2 better fit the back side of the bent neck N and thus more appropriately positioning the magnets 31, 31, the relative angle θ between the pair of flexible members 2, 2 is preferably in the range of 90 to 120°, more preferably in the range of 95 to 115°, and even more preferably in the range of 100 to 110°.

[0055] Table 1

[0056]

[0057] Description of Reference Numerals

[0058] 1. Glasses-mounted magnetic therapy device

[0059] 2 Flexible components

[0060] 21 End of one side

[0061] 21a Glasses side connection part

[0062] 22 The other end

[0063] 22a Connecting part on the connecting member side

[0064] 3 Magnets

[0065] 31 Magnet

[0066] 4 Connecting parts

[0067] 41 Main body

[0068] 41a First main body

[0069] 41b Second main body

[0070] 42 First connection

[0071] 42a Large diameter part

[0072] 42b Small diameter section

[0073] 43 Second connection

[0074] 43a Large diameter part

[0075] 43b small diameter section

[0076] F The face of the flexible component

[0077] G glasses

[0078] G1 temples

[0079] G2 Foot Cover

[0080] H Height

[0081] L1 length direction

[0082] L2 First direction

[0083] L3 Second direction

[0084] N Neck

[0085] W Width

[0086] θ is the relative angle between a pair of flexible members

Claims

1. A glasses-mounted magnetic therapy device, characterized in that: It is installed on glasses and has the following features: a pair of flexible members, each having an end portion on one side detachably connected to a pair of temples or temples of the glasses; a magnet disposed on at least one of the pair of flexible members; and a connecting member connecting the other ends of each of the pair of flexible members, When mounted on the glasses, the connecting member connects the other ends of the pair of flexible members so that the pair of flexible members are tilted relative to each other at an angle that fits the back of the neck of the wearer of the glasses. The relative angle between the pair of flexible members is in the range of 90 to 120 degrees.

2. The glasses-mounted magnetic therapy device according to claim 1, characterized in that: The pair of flexible members are each formed such that a cross-sectional area perpendicular to the longitudinal direction gradually increases from the one end portion toward the other end portion.

3. The glasses-mounted magnetic therapy device according to claim 1, characterized in that: The pair of flexible members are each formed such that a cross-sectional shape perpendicular to the longitudinal direction thereof changes from a shape having equal width and height to a shape having a width greater than height as it moves from the one end toward the other end.

4. The glasses-mounted magnetic therapy device according to claim 1, characterized in that: The pair of flexible members are each formed so that the width of a cross section perpendicular to the longitudinal direction near the other end is larger than the height. The surfaces of the pair of flexible members extending in the width direction are inclined with respect to each other at the angle.

5. A glasses-mounted magnetic therapy device, characterized in that: It is installed on glasses and has the following features: a pair of flexible members, each having an end portion on one side detachably connected to a pair of temples or temples of the glasses; a magnet disposed on at least one of the pair of flexible members; and a connecting member connecting the other ends of each of the pair of flexible members, When mounted on the glasses, the connecting member connects the other ends of the pair of flexible members so that the pair of flexible members are tilted relative to each other at an angle that fits the back of the neck of the wearer of the glasses. The connecting component comprises: Main body; a first connecting portion protruding from the main body in a first direction and connected to an end portion on the other side of one of the pair of flexible members; and a second connecting portion protruding from the main body in a second direction and connected to the other end portion of the other flexible member of the pair of flexible members; The first direction and the second direction are inclined relative to each other according to the angle of the pair of flexible members.

6. The glasses-mounted magnetic therapy device according to claim 5, characterized in that: The relative angle between the pair of flexible members is in the range of 90 to 120 degrees.

7. The glasses-mounted magnetic therapy device according to claim 5 or 6, characterized in that: The pair of flexible members are each formed such that a cross-sectional area perpendicular to the longitudinal direction gradually increases from the one end portion toward the other end portion.

8. The glasses-mounted magnetic therapy device according to claim 5 or 6, characterized in that: The pair of flexible members are each formed such that a cross-sectional shape perpendicular to the longitudinal direction thereof changes from a shape having equal width and height to a shape having a width greater than height as it moves from the one end toward the other end.

9. The glasses-mounted magnetic therapy device according to claim 5 or 6, characterized in that: The pair of flexible members are each formed so that the width of a cross section perpendicular to the longitudinal direction near the other end is larger than the height. The surfaces of the pair of flexible members extending in the width direction are inclined with respect to each other at the angle.

Citation Information

Patent Citations

  • Eyeglass convenient to remove and wear

    CN102023396A