Ingrown nail corrector
By designing an ingrown toenail corrector with movable mounting parts and elastic components, the problems of inconvenience and poor correction effect of existing ingrown toenail correctors are solved, achieving easy-to-use and efficient ingrown toenail correction.
Patent Information
- Application Number
- CN202422228494.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-11
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2034-09-11
AI Technical Summary
Existing ingrown toenail correctors are inconvenient to use and have poor corrective effects.
An ingrown nail corrector is designed, comprising a first mounting member, a second mounting member, and an elastic component. The first and second mounting members are capable of relative movement with portions of the elastic component, adjusting the distance between them, and using the elastic component to provide elastic force to correct the ingrown nail.
This design is easy to use, adapts to different nail sizes, improves the correction effect of ingrown toenails, and enhances the convenience of operation and the correction effect.
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Figure CN223516513U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of medical devices, and in particular to an ingrown nail corrector. BACKGROUND
[0002] Ingrown nails are a common disease, often occurring on the nails of the human body, the side edge of the nail grows into the soft tissue nearby, and the ingrown nail will be inserted into the nail groove like a foreign body, causing pain, easy to cause secondary infection, and causing paronychia to cause persistent pain. Ingrown nail correctors are usually used as tools to solve the problem of ingrown nails in the surrounding soft tissue. However, the current ingrown nail correctors have the problems of inconvenient use and poor correction effect. CONTENT OF THE UTILITY MODEL
[0003] Therefore, it is necessary to provide an ingrown nail corrector to improve the correction effect while being convenient for users to use.
[0004] The embodiment of the present application provides an ingrown nail corrector, which comprises:
[0005] The first mounting member and the second mounting member are both used for being attached to the nails of the human body; and
[0006] The elastic assembly is elastically matched between the first mounting member and the second mounting member.
[0007] The first mounting member and the second mounting member are both configured to be capable of relatively moving with at least part of the elastic assembly, so as to adjust the distance between the first mounting member and the second mounting member.
[0008] In one of the embodiments, the elastic assembly comprises a first elastic member and a second elastic member.
[0009] The first elastic member has a first end and a second end which are oppositely arranged along the longitudinal extension direction of the first elastic member; the first end is connected to the first mounting member, and the second end is slidably connected to the second mounting member along the longitudinal extension direction of the first elastic member.
[0010] The second elastic member has a third end and a fourth end which are oppositely arranged along the longitudinal extension direction of the second elastic member; the third end is connected to the second mounting member, and the fourth end is slidably connected to the first mounting member along the longitudinal extension direction of the second elastic member.
[0011] In one of the embodiments, the first mounting member is provided with a first through hole, and the second mounting member is provided with a second through hole.
[0012] The second end is arranged in the second mounting member along the longitudinal extension direction of the first elastic member by means of the second through hole, and the fourth end is arranged in the first mounting member along the longitudinal extension direction of the second elastic member by means of the first through hole.
[0013] In one of the embodiments, the first mounting member is provided with a first fixing structure, and the first fixing structure is used for fixing the second elastic member; and / or
[0014] The second mounting member is provided with a second fixing structure, and the second fixing structure is used for fixing the first elastic member.
[0015] In one of the embodiments, the first mounting member is provided with a first fixing structure, and the first fixing structure is configured as a clamping groove; and / or
[0016] The second mounting member is provided with a second fixing structure, and the second fixing structure is configured as a clamping groove.
[0017] In one of the embodiments, the first mounting member is provided with a first fixing structure, and the first fixing structure is configured as a notch communicating with the first through hole; and / or
[0018] The second mounting member is provided with a second fixing structure, and the second fixing structure is configured as a notch communicating with the second through hole.
[0019] In one of the embodiments, the ingrown nail corrector further comprises a first operating member, and the first operating member is arranged at the second end and located on the side of the second mounting member away from the first mounting member; and / or
[0020] The ingrown nail corrector further comprises a second operating member, and the second operating member is arranged at the fourth end and located on the side of the first mounting member away from the second mounting member.
[0021] In one of the embodiments, the ingrown nail corrector further comprises a first operating member, and the second through hole is configured to not allow the first operating member to pass through; and / or
[0022] The ingrown nail corrector further comprises a second operating member, and the first through hole is configured to not allow the second operating member to pass through.
[0023] In one of the embodiments, the first end is provided with a first fastening structure, the first mounting member is provided with a first connecting channel, and the first fastening structure is inserted into the first connecting channel and fastened with the first mounting member; and / or
[0024] The third end is provided with a second fastening structure, the second mounting member is provided with a second connecting channel, and the second fastening structure is inserted into the second connecting channel and fastened with the second mounting member.
[0025] In one of the embodiments, the ingrown nail corrector further comprises a first connecting member and a second connecting member both located between the first mounting member and the second mounting member; one of the first mounting member and the second elastic member is connected to the first connecting member, and the other is slidably connected to the first connecting member along the longitudinal extension direction of the second elastic member; one of the second mounting member and the first elastic member is connected to the second connecting member, and the other is slidably connected to the second connecting member along the longitudinal extension direction of the first elastic member.
[0026] In one of the embodiments, the first connecting member is connected to the side of the first mounting member facing the second mounting member, and a first channel is formed in the first connecting member, and the fourth end of the second elastic member is slidably inserted into the first channel along the longitudinal direction of the second elastic member; the second connecting member is connected to the side of the second mounting member facing the first mounting member, and a second channel is formed in the second connecting member, and the second end of the first elastic member is slidably inserted into the second channel along the longitudinal direction of the first elastic member.
[0027] In one of the embodiments, the ingrown nail corrector further comprises:
[0028] The first plug-in member is arranged on the side of the first mounting member facing the second mounting member, and the first plug-in member is in plug-in connection with the first connecting member;
[0029] The second plug-in member is arranged on the side of the second mounting member facing the first mounting member, and the second plug-in member is in plug-in connection with the second connecting member.
[0030] In one of the embodiments, one of the first plug-in member and the first connecting member is provided with a first buckling part, and the other is provided with a first buckling part, and the first buckling part is buckled with the first buckling part; and / or
[0031] One of the second plug-in member and the second connecting member is provided with a second buckling part, and the other is provided with a second buckling part, and the second buckling part is buckled with the second buckling part.
[0032] In one of the embodiments, a third channel is formed in the first connecting member; the first end of the first elastic member is arranged in the third channel and connected with the first mounting member; and / or
[0033] A fourth channel is formed in the second connecting member; the third end of the second elastic member is arranged in the fourth channel and connected with the second mounting member; and / or
[0034] The second end and / or the fourth end is provided with an anti-disengagement structure; and / or
[0035] The first connecting member and / or the second connecting member is configured to have elasticity; and / or
[0036] The material of the first connecting member and / or the material of the second connecting member comprises metal or plastic with elasticity.
[0037] In one of the embodiments, the first connecting member and / or the second connecting member is provided with a mounting cavity, and the ingrown nail corrector further comprises an elastic reinforcing member arranged in the mounting cavity.
[0038] In one of the embodiments, the elastic reinforcing member is configured in a sheet shape; and / or
[0039] One of the first connecting member and the second connecting member with the mounting cavity is defined as a target connecting member, and one end of the elastic reinforcing member is connected to the target connecting member.
[0040] In one of the embodiments, the first connecting member is provided with a first sliding hole, and the second connecting member is provided with a second sliding hole; along the longitudinal extension direction of the first elastic member, the second end of the first elastic member passes out of the second connecting member through the second sliding hole and is connected to the first connecting member; along the longitudinal extension direction of the second elastic member, the fourth end of the second elastic member passes out of the first connecting member through the first sliding hole and is connected to the second connecting member.
[0041] In one of the embodiments, the first mounting member has a first mounting side for mounting on a nail and a first operation side opposite to the first mounting side; the second mounting member has a second mounting side for mounting on a nail and a second operation side opposite to the second mounting side;
[0042] The first operation side and / or the second operation side is / are provided with a convex structure; and / or
[0043] The first mounting side and / or the second mounting side is / are provided with an anti-skid structure.
[0044] The above-mentioned ingrown nail corrector at least includes a first mounting member, a second mounting member and an elastic assembly, since the elastic assembly is elastically fitted between the first mounting member and the second mounting member, and the first mounting member and the second mounting member are configured to be capable of relatively moving with at least part of the elastic assembly, when the first mounting member and the second mounting member are pasted on the ingrown nail part of the human body, the distance between the first mounting member and the second mounting member can be adjusted according to the size of the nail of the human body, the elastic assembly can cooperate to provide an elastic force acting on the first mounting member and the second mounting member, and thus the ingrown nail part on the nail can be corrected under the action of the elastic force. Therefore, the ingrown nail corrector provided by the embodiments of the present application not only can be adapted to nails of different sizes, but also is convenient for users to operate and use, and thus the ingrown nail part of the nail of different sizes can be corrected in the case of being convenient for users to operate, which is beneficial to improve the correction effect of the ingrown nail. BRIEF DESCRIPTION OF DRAWINGS
[0045] Figure 1 It is a perspective structural schematic view of the ingrown nail corrector in some embodiments of the present application.
[0046] Figure 2 It is a perspective structural schematic view of the ingrown nail corrector in some embodiments of the present application. Figure 1 It is an exploded structural schematic view of the ingrown nail corrector.
[0047] Figure 3 It is an exploded structural schematic view of the ingrown nail corrector. Figure 1 It is a top view sectional schematic view of the ingrown nail corrector.
[0048] Figure 4 An exploded structural schematic view of a bunion corrector of some embodiments of the present application.
[0049] Figure 5 An exploded structural schematic view of a bunion corrector of some embodiments of the present application. Figure 4 A top sectional schematic view of a bunion corrector is shown.
[0050] Figure 6 A perspective structural schematic view of a bunion corrector of some embodiments of the present application.
[0051] Figure 7 An exploded structural schematic view of a bunion corrector of some embodiments of the present application. Figure 6 A top sectional schematic view of a bunion corrector is shown.
[0052] Figure 8a An exploded structural schematic view of a bunion corrector of some embodiments of the present application. Figure 6 A top sectional schematic view of a bunion corrector is shown.
[0053] Figure 8b An exploded structural schematic view of a bunion corrector of some embodiments of the present application.
[0054] Figure 9 A perspective structural schematic view of a bunion corrector of some embodiments of the present application.
[0055] Figure 10 An exploded structural schematic view of a bunion corrector of some embodiments of the present application. Figure 9 A top sectional schematic view of a bunion corrector is shown.
[0056] Figure 11 An exploded structural schematic view of a bunion corrector of some embodiments of the present application. Figure 9 A top sectional schematic view of a bunion corrector is shown.
[0057] Figure 12 An exploded structural schematic view of a bunion corrector of some embodiments of the present application
[0058] Reference signs in the detailed description of the embodiments are as follows:
[0059] A bunion corrector 100;
[0060] A first mounting member 110, a first through hole k1, a first fixing structure t1;
[0061] A second mounting member 120, a second through hole k2, a second fixing structure t2;
[0062] A resilient assembly 130, a first resilient member 131, a first end e1, a second end e2, a second resilient member 132, a third end e3, a fourth end e4;
[0063] A first operating member n1, a second operating member n2;
[0064] A first fastening structure J1, a second fastening structure J2;
[0065] first communication passage M1, second communication passage M2;
[0066] first connecting piece 140, first passage p1, third passage p3, first sliding hole s1;
[0067] second connecting piece 150, second passage p2, fourth passage p4, second sliding hole s2;
[0068] first plug-in piece 160;
[0069] second plug-in piece 170;
[0070] first clamping portion u1, first clamping portion h1, second clamping portion u2, second clamping portion h2;
[0071] anti-disengagement structure f;
[0072] mounting cavity Q;
[0073] elastic reinforcing piece T;
[0074] first operation side c1, second operation side c2, convex structure r;
[0075] first mounting side a1, second mounting side a2, anti-slip structure h;
[0076] distance L;
[0077] first longitudinal extension direction Y1, second longitudinal extension direction Y2. DETAILED DESCRIPTION
[0078] In order to make the above objectives, characteristics and advantages of the present application more apparent and easily understood, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings. In the following description, a large number of specific details are set forth in order to provide a sufficient understanding of the present application. However, the present application can be implemented in many different ways other than those described herein, and those skilled in the art can make similar improvements without departing from the spirit of the present application, and therefore the present application is not limited to the specific embodiments disclosed below.
[0079] In the description of the present application, it should be understood that if these terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like appear, these terms indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the purpose of facilitating the description of the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application.
[0080] In addition, the terms "first", "second", and the like, if any, are used herein for descriptive purposes only and should not be construed as indicating or implying relative importance or identifying the number of the indicated technical features. Therefore, a feature defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, if the term "a plurality of" appears, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise explicitly specified and limited.
[0081] In the present application, unless otherwise explicitly specified and limited, if the terms "mounting", "connecting", "connecting", "fixing" and the like appear, these terms should be interpreted broadly. For example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship between two elements, unless otherwise explicitly limited. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
[0082] In the present application, unless otherwise explicitly specified and limited, if the first feature is described as "on" or "under" the second feature or similar, it can mean that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature "above", "above" and "above" the second feature can be the first feature directly above or obliquely above the second feature, or only indicates that the first feature is higher than the second feature in horizontal height. The first feature "below", "below" and "below" the second feature can be the first feature directly below or obliquely below the second feature, or only indicates that the first feature is lower than the second feature in horizontal height.
[0083] It should be noted that if an element is referred to as "fixed to" or "provided on" another element, it can be directly on another element or there can be a middle element. If an element is considered to be "connected" to another element, it can be directly connected to another element or there can be a middle element. If present, the terms "vertical", "horizontal", "up", "down", "left", "right" and similar expressions used in the present application are only for illustrative purposes and do not represent the only implementation.
[0084] Figure 1 A perspective structural schematic diagram of the ingrown nail corrector provided by some embodiments of the present application is shown; Figure 2 A perspective structural schematic diagram of the ingrown nail corrector provided by some embodiments of the present application is shown; Figure 1 An exploded structural schematic diagram of the ingrown nail corrector is shown; only the content related to the embodiments of the present application is shown for ease of description.
[0085] Please refer to Figures 1-2 The embodiment of the present application provides a corn corrector 100, which comprises a first mounting member 110, a second mounting member 120 and an elastic assembly 130.
[0086] The first mounting member 110 and the second mounting member 120 are components for being attached to the nails of a human body, which can include the nails of hands and feet. The first mounting member 110 and the second mounting member 120 can be attached to the nails of the human body by means of glue, double-sided adhesive tape or the surfaces for attachment of the first mounting member 110 and the second mounting member 120 having certain adhesion. The actual use can be set as required, and no specific limitation is made herein. In the embodiment of the present application, the surfaces for attachment of the first mounting member 110 and the second mounting member 120 have certain adhesion, which is convenient for users to use.
[0087] The shape of the first mounting member 110 and the shape of the second mounting member 120 can be the same or different. For example, the first mounting member 110 and the second mounting member 120 are both substantially block-shaped, which is advantageous for the first mounting member 110 and the second mounting member 120 to have certain attachment area, so as to be conveniently attached to the nails and to have certain attachment force with the nails, thereby improving the firmness of attachment. Figure 1 The size of the first mounting member 110 is the same as the size of the second mounting member 120. The shape and size of the first mounting member 110 and the second mounting member 120 can be set as required, and no specific limitation is made herein.
[0088] The elastic assembly 130 is a component having certain elasticity. The elastic assembly 130 is elastically fitted between the first mounting member 110 and the second mounting member 120. The "elastic fitting" means that the elastic assembly 130 can provide elastic force acting on the first mounting member 110 and the second mounting member 120, but the structure, number and connection mode of the elastic assembly 130 with the first mounting member 110 and the second mounting member 120 are not limited. As long as the elastic assembly 130 can provide elastic force acting on the first mounting member 110 and the second mounting member 120, no specific limitation is made herein.
[0089] It should be noted that the elastic assembly 130 can be longitudinally long or in the form of a sheet. Therefore, the material of the elastic assembly 130 can be nickel-titanium alloy, stainless steel, etc., which can be set as required, and no specific limitation is made herein.
[0090] Specifically, the elastic assembly 130 can be an assembly composed of multiple components. For example, the elastic assembly 130 can be composed of a first elastic component 131 and a second elastic component 132. Figure 1 and Figure 2For example, it is illustrated that the elastic assembly 130 includes two components (i.e., the first elastic member 131 and the second elastic member 132, which will be illustrated later). Of course, the elastic assembly 130 can also include three components (e.g., two first elastic members 131 and one second elastic member 132) or other number of components, which can be set according to specific use, and no specific limitation is made herein.
[0091] The first mounting member 110 and the second mounting member 120 are both configured to be capable of relative movement with at least part of the elastic assembly 130 to adjust the distance between the first mounting member 110 and the second mounting member 120. That is, the first mounting member 110 can be capable of relative movement with at least part of the elastic assembly 130, the second mounting member 120 can be capable of relative movement with at least part of the elastic assembly 130, or both the first mounting member 110 and the second mounting member 120 can be capable of relative movement with at least part of the elastic assembly 130.
[0092] "Relative movement with at least part of the elastic assembly 130" means that, in the case where the elastic assembly 130 includes multiple components, relative movement can be generated with one of the multiple components, and no relative movement can be generated with another of the multiple components; or relative movement can be generated with each of the multiple components. This can be set according to specific use, and no specific limitation is made herein.
[0093] In the process of pasting the first and second mounting members 110 and 120 to the nails of the human body, the size between the first and second mounting members 110 and 120 can be adjusted by using the following cases, including but not limited to the cases illustrated below. The adjustment cases can be: case one, the position between the first and second mounting members 110 and 120 is adjusted according to the size of the nail to be pasted first; case two, the first mounting member 110 is installed first, and then the position of the second mounting member 120 relative to the first mounting member 110 is adjusted; case three, the second mounting member 120 is installed first, and then the position of the first mounting member 110 relative to the second mounting member 120 is adjusted. Taking case one as an example, for the adjusted first and second mounting members 110 and 120, the user pastes the first and second mounting members 110 and 120 to the nail of the human body at the part to be corrected. Since the nail has a certain bending curvature, the elastic component 130 will deform. When the elastic component 130 deforms, the elastic component 130 needs to return to its original state, generating a restoring force to make the elastic component 130 return to its original state. The first and second mounting members 110 and 120 on both sides of the nail are affected by the restoring force, which will exert a pulling force on the nails embedded in the soft tissue on both sides to pull the nails embedded in the soft tissue out after a period of time, achieving the purpose of ingrown nail correction. At the same time, for the nails on the feet, the first and second mounting members 110 and 120 pasted on the nails of the feet will generate a force perpendicular to the ground upward during the process of walking, which can make the nails embedded in the soft tissue of the feet more effectively pulled out, improving the correction effect of ingrown nails.
[0094] It should be noted that the elastic component 130 located between the first and second mounting members 110 and 120 can have a gap with the surface of the nail or can be in contact with the surface of the nail. For the case where the elastic component 130 is in contact with the surface of the nail, the elastic component 130 deforms along the bending curvature of the nail on the surface of the nail. Since the nail has a bending curvature, the surface of the nail will have a highest point, and the elastic component 130 can use this highest point as a support point to exert a pulling force on the nails embedded in the soft tissue on both sides to make the pulling force on the nails embedded in the soft tissue on both sides greater. Therefore, for the case where the elastic component 130 is in contact with the surface of the nail, it is more conducive to the correction effect of ingrown nails.
[0095] In addition, in the case where both the first and second mounting members 110 and 120 can move relative to the elastic component 130, since the first and second mounting members 110 and 120 can move simultaneously, this can make the user more flexible in adjusting the positions of the first and second mounting members 110 and 120.
[0096] In some embodiments, please continue to refer to Figure 1 and Figure 2The elastic assembly 130 of the ingrown nail corrector 100 comprises a first elastic piece 131 and a second elastic piece 132.
[0097] The first elastic piece 131 has a first end e1 and a second end e2 oppositely arranged along a longitudinal extension direction of the first elastic piece 131, and the second elastic piece 132 has a third end e3 and a fourth end e4 oppositely arranged along a longitudinal extension direction of the second elastic piece 132. In the embodiments of the present application, the longitudinal extension direction of the first elastic piece 131 is defined as a first longitudinal extension direction Y1, and the longitudinal extension direction of the second elastic piece 132 is defined as a second longitudinal extension direction Y2.
[0098] Specifically, the first end e1 of the first elastic piece 131 is connected to the first mounting piece 110, and the second end e2 of the first elastic piece 131 is slidably connected to the second mounting piece 120 along the first longitudinal extension direction Y1. The third end e3 of the second elastic piece 132 is connected to the second mounting piece 120, and the fourth end e4 of the second elastic piece 132 is slidably connected to the first mounting piece 110 along the second longitudinal extension direction Y2.
[0099] Taking the first elastic piece 131 and the second mounting piece 120 as an example, the first elastic piece 131 and the second mounting piece 120 can produce relative movement along the longitudinal extension direction of the first elastic piece 131. For example, in the case that the second mounting piece 120 is fixed (for example, the second mounting piece 120 has been pasted on the nail; for another example, the user holds the second mounting piece 120), the second end e2 of the first elastic piece 131 can slide relative to the second mounting piece 120 along the longitudinal extension direction of the first elastic piece 131 under the action of an external force. Of course, in the case that the first elastic piece 131 is fixed, the second mounting piece 120 can slide relative to the first elastic piece 131 along the longitudinal extension direction of the first elastic piece 131 under the action of an external force. The second elastic piece 132 and the first mounting piece 110 can be understood by referring to the first elastic piece 131 and the second mounting piece 120, and will not be described here.
[0100] Of course, at least one component similar to the first mounting piece 110 or the second mounting piece 120 can be arranged to pass through the elastic assembly 130 along the longitudinal extension direction of the elastic assembly 130, and the component is located between the first mounting piece 110 and the second mounting piece 120. The component can slide along the longitudinal extension direction of the elastic assembly 130 to adjust the position pasted on the nail.
[0101] The first elastic member 131 and the second elastic member 132 are both substantially longitudinally arranged. Taking the first elastic member 131 as an example, as described above, when the first mounting member 110 and the second mounting member 120 are adhered to the nail, the first elastic member 131 generates a bending deformation between the first end e1 and the second end e2, so that the first elastic member 131 stores elastic potential energy. The first elastic member 131 generates an elastic restoring force by releasing the stored elastic potential energy. Under the action of the elastic restoring force, the first end e1 of the first elastic member 131 generates a pulling force acting on the first mounting member 110, and the second end e2 of the first elastic member 131 generates a pulling force acting on the second mounting member 120, thereby enabling the to-be-corrected part of the nail adhered by the first mounting member 110 and the to-be-corrected part of the nail adhered by the second mounting member 120 to move in a direction of being pulled out of the soft tissue, so as to enable the to-be-corrected part of the nail to be pulled out of the soft tissue, thereby achieving correction of the ingrown nail. In this process, the action process of the second elastic member 132 can be understood with reference to the action process of the first elastic member 131, which will not be repeated here.
[0102] It can be understood that when the first elastic member 131 and the second elastic member 132 are arranged to elastically cooperate with the first mounting member 110 and the second mounting member 120, as described above, when the first mounting member 110 and the second mounting member 120 are adhered to the nail, the first elastic member 131 and the second elastic member 132 can both generate a pulling force acting on the first mounting member 110 and the second mounting member 120, thereby increasing the pulling force acting on the first mounting member 110 and the second mounting member 120, so as to further improve the correction effect of the ingrown nail.
[0103] Figure 3 A top view of a cross-sectional schematic diagram of an ingrown nail corrector is shown. For ease of illustration, only the content related to the embodiments of the present application is shown.
[0104] In some embodiments, please continue to refer to Figure 1 and Figure 2 , and in combination with reference to Figure 3 , the first mounting member 110 is provided with a first through hole k1, and the second mounting member 120 is provided with a second through hole k2.
[0105] The first through hole k1 is a hole penetrating through the first mounting member 110, and the second through hole k2 is a hole penetrating through the second mounting member 120. The second end e2 is arranged in the second mounting member 120 along the longitudinal extension direction of the first elastic member 131 by means of the second through hole k2. In this way, the first elastic member 131 is slidably connected to the second mounting member 120. The fourth end e4 is arranged in the first mounting member 110 along the longitudinal extension direction of the second elastic member 132 by means of the first through hole k1. In this way, the second elastic member 132 is slidably connected to the first mounting member 110.
[0106] Specifically, the second elastic member 132 is slidably connected to the first mounting member 110 through the first through hole k1 by means of clearance fit. Meanwhile, the first elastic member 131 is slidably connected to the second mounting member 120 through the second through hole k2 by means of clearance fit. The "clearance fit" means that when the fourth end e4 of the second elastic member 132 passes through the first through hole k1, the two are not tightly fitted, but there is a certain clearance, which can allow the second elastic member 132 to slide in the first through hole k1. Meanwhile, when the second end e2 of the first elastic member 131 passes through the second through hole k2, the two are also not tightly fitted, but there is a certain clearance, which can allow the first elastic member 131 to slide in the second through hole k2. The specific clearance can be determined according to the friction between the corresponding elastic member and the through hole, the material of the elastic member, the surface roughness of the elastic member, and the roughness of the inner wall of the through hole, so that the elastic member can slide relative to the through hole and is not easy to come out of the through hole. It can be set according to the specific use, which is not limited here.
[0107] In this way, the first elastic member 131 is slidably connected to the second mounting member 120 through the second through hole k2, and the second elastic member 132 is slidably connected to the first mounting member 110 through the first through hole k1, so that the positions of the first mounting member 110 and the second mounting member 120 can be flexibly adjusted.
[0108] In some embodiments, please continue to refer to Figure 1 and Figure 2 The first mounting member 110 is provided with a first fixing structure t1, and the first fixing structure t1 is used for fixing the second elastic member 132; and / or, the second mounting member 120 is provided with a second fixing structure t2, and the second fixing structure t2 is used for fixing the first elastic member 131.
[0109] Specifically, in the case that the first mounting member 110 is provided with the first fixing structure t1, the first fixing structure t1 is used for fixing the second elastic member 132. The first fixing structure t1 can include but is not limited to a clamping groove, a protrusion, etc., and the shape, size, etc. of the first fixing structure t1 can be set according to the actual situation of the second elastic member 132. In the case that the second mounting member 120 is provided with the second fixing structure t2, the second fixing structure t2 is used for fixing the first elastic member 131. The second fixing structure t2 can also include but is not limited to a clamping groove, a protrusion, etc., and the shape, size, etc. of the second fixing structure t2 can be set according to the actual situation of the first elastic member 131.
[0110] For example, Figure 1 and Figure 2For example, the illustration shows a scenario where the first mounting member 110 has a first fixing structure t1 and the second mounting member 120 has a second fixing structure t2. After the first mounting member 110 and the second mounting member 120 are attached to a person's fingernail, the first elastic member 131 along the side of the second mounting member 120 away from the first mounting member 110 and the second elastic member 132 along the side of the first mounting member 110 away from the second mounting member 120 can be trimmed. The user fixes the trimmed first elastic member 131 in the second fixing structure t2 and the trimmed second elastic member 132 in the first fixing structure t1. This can enhance the connection stability between the second elastic member 132 and the first mounting member 110, and also enhance the connection stability between the first elastic member 131 and the second mounting member 120.
[0111] Furthermore, with the first fixing structure t1 provided on the first mounting member 110 and the second fixing structure t2 provided on the second mounting member 120, it is advantageous to more firmly and conveniently fix the first elastic member 131 to the second mounting member 120 and to more firmly and conveniently fix the second elastic member 132 to the first mounting member 110.
[0112] In some embodiments, please refer to Figure 1 and Figure 2 The first mounting component 110 is provided with a first fixing structure t1, which is configured as a slot; and / or, the second mounting component 120 is provided with a second fixing structure t2, which is configured as a slot.
[0113] Specifically, when the first mounting member 110 is provided with a first fixing structure t1, and the first fixing structure t1 is constructed as a slot, the shape and size of the slot can be set according to the size and shape of the second elastic member 132, so that the second elastic member 132 can be more securely inserted into the slot. When the second mounting member 120 is provided with a second fixing structure t2, and the second fixing structure t2 is constructed as a slot, the shape and size of the slot can be set according to the size and shape of the first elastic member 131, so that the first elastic member 131 can be more securely inserted into the slot.
[0114] For example, with Figure 1 and Figure 2 For example, the first mounting component 110 is provided with a first fixing structure t1, which is constructed as a slot, and the second mounting component 120 is provided with a second fixing structure t2, which is constructed as a slot.
[0115] Thus, by configuring the first fixing structure t1 and the second fixing structure t2 as the clamping groove, the first elastic member 131 and the second elastic member 132 can be tightly fitted with the clamping groove, and the first elastic member 131 and the second elastic member 132 are more beneficial to be fixed.
[0116] In some embodiments, please continue to refer to Figure 1 and Figure 2 , the first mounting member 110 is provided with the first fixing structure t1, and the first fixing structure t1 is configured as a notch communicating with the first through hole k1; and / or, the second mounting member 120 is provided with the second fixing structure t2, and the second fixing structure t2 is configured as a notch communicating with the second through hole k2.
[0117] Specifically, in the case that the first mounting member 110 is provided with the first fixing structure t1 configured as a notch communicating with the first through hole k1, the notch is configured such that the second elastic member 132 can be embedded into the notch after passing through the first through hole k1, so as to realize more stable connection between the second elastic member 132 and the first mounting member 110. In the case that the second mounting member 120 is provided with the second fixing structure t2 configured as a notch communicating with the second through hole k2. The notch is configured such that the first elastic member 131 can be embedded into the notch after passing through the second through hole k2, so as to realize more stable connection between the first elastic member 131 and the second mounting member 120.
[0118] In addition, in the case that the first mounting member 110 is provided with the first fixing structure t1 configured as a notch communicating with the first through hole k1 and the second mounting member 120 is provided with the second fixing structure t2 configured as a notch communicating with the second through hole k2, the notch can be a groove with a bottom wall provided on one side of the through hole of the first mounting member 110 and the second mounting member 120, or a groove with an upper surface and a lower surface penetrating the groove provided on one side of the through hole of the first mounting member 110 and the second mounting member 120. It can be understood that Figure 1 and Figure 2 The notch shown in the figure can also be regarded as the clamping groove mentioned above, which is equivalent to the clamping groove communicating with the corresponding through hole.
[0119] Thus, the notch can make the first elastic member 131 and the second elastic member 132 more ingeniously embedded into the notch, reduce the risk of the trimmed first elastic member 131 and the second elastic member 132 damaging the soft tissues on both sides of the nail, and at the same time, enhance the connection stability of the second elastic member 132 and the first mounting member 110 and the first elastic member 131 and the second mounting member 120.
[0120] Of course, the first fixing structure t1 can also be configured as a notch that does not communicate with the first through hole k1, and the second fixing structure t2 can also be configured as a notch that does not communicate with the second through hole k2. The specific configuration can be set according to the specific use, and is not specifically limited here.
[0121] In some embodiments, please continue to refer to Figure 1 and Figure 3 The ingrown nail corrector 100 further comprises a first operating member n1 and / or a second operating member n2. The first operating member n1 and the second operating member n2 are components that facilitate the operation and force exertion of the user.
[0122] Specifically, in the case where the ingrown nail corrector 100 further comprises the first operating member n1, the first operating member n1 is arranged at the second end e2 and located on the side of the second mounting member 120 away from the first mounting member 110. The user can operate and exert force on the first elastic member 131 through the first operating member n1, so as to adjust the distance L between the first mounting member 110 and the second mounting member 120. In the case where the ingrown nail corrector 100 further comprises the second operating member n2, the second operating member n2 is arranged at the fourth end e4 and located on the side of the first mounting member 110 away from the second mounting member 120. The user can operate and exert force on the second elastic member 132 through the second operating member n2, so as to adjust the distance L between the first mounting member 110 and the second mounting member 120. For example, Figure 1 and Figure 3 are schematic diagrams showing the case where the ingrown nail corrector 100 comprises the first operating member n1 and the second operating member n2.
[0123] In this way, by arranging the first operating member n1 and the second operating member n2, not only is it convenient for the user to operate the first elastic member 131 and the second elastic member 132, but also the distance L between the first mounting member 110 and the second mounting member 120 can be flexibly adjusted, further improving the convenience of operation.
[0124] Of course, the first operating member n1 and the second operating member n2 can be configured in various shapes, such as T-shaped or L-shaped, as long as the effect of facilitating operation is achieved. The specific configuration can be set according to the actual situation, and is not specifically limited here.
[0125] In some embodiments, please continue to refer to Figure 1 and Figure 3 The ingrown nail corrector 100 further comprises a first operating member n1, and the second through hole k2 is configured to not allow the first operating member n1 to pass through. And / or, a second operating member n2, and the first through hole k1 is configured to not allow the second operating member n2 to pass through.
[0126] Specifically, in the case that the ingrown nail corrector 100 further comprises the first operation piece n1 and the second through hole k2 is configured to not allow the first operation piece n1 to pass through, the diameter of the second through hole k2 is set to be smaller than the size of the first operation piece n1, so that the first operation piece n1 is not allowed to pass through the second through hole k2, thereby reducing the risk that the first elastic piece 131 is caused to fall off the second through hole k2 due to improper operation by the user during operation. In the case that the ingrown nail corrector 100 further comprises the second operation piece n2 and the first through hole k1 is configured to not allow the second operation piece n2 to pass through, the diameter of the first through hole k1 is set to be smaller than the size of the second operation piece n2, so that the second operation piece n2 is not allowed to pass through the first through hole k1, thereby reducing the risk that the second elastic piece 132 is caused to fall off the first through hole k1 due to improper operation by the user during operation.
[0127] For example, the ingrown nail corrector 100 further comprises the first operation piece n1 and the second through hole k2 is configured to not allow the first operation piece n1 to pass through, and the ingrown nail corrector 100 further comprises the second operation piece n2 and the first through hole k1 is configured to not allow the second operation piece n2 to pass through. Figure 1 Figure 3 For example, the ingrown nail corrector 100 further comprises the first operation piece n1 and the second through hole k2 is configured to not allow the first operation piece n1 to pass through, and the ingrown nail corrector 100 further comprises the second operation piece n2 and the first through hole k1 is configured to not allow the second operation piece n2 to pass through.
[0128] In this way, when the user operates the first operation piece n1 and the second operation piece n2, the risk that the first operation piece n1 falls off the second through hole k2 and the second operation piece n2 falls off the first through hole k1 due to improper operation can be reduced, thereby enhancing the connection stability of the second elastic piece 132 and the first mounting piece 110 and the connection stability of the first elastic piece 131 and the second mounting piece 120.
[0129] Figure 4 An exploded structural schematic view of an ingrown nail corrector provided by some embodiments of the present application is shown, Figure 5 An exploded structural schematic view of an ingrown nail corrector provided by some embodiments of the present application is shown, Figure 4 A top view schematic view of an ingrown nail corrector is shown; only the content related to the embodiments of the present application is shown for the convenience of description.
[0130] In some embodiments, please continue to refer to Figure 1 , and in combination with reference to Figure 4 and Figure 5 , the first end e1 is provided with a first fastening structure J1; and / or, the third end e3 is provided with a second fastening structure J2.
[0131] Specifically, in the case that the first end e1 is provided with the first fastening structure J1, the first fastening structure J1 refers to a structure that reduces the risk of the first end e1 of the first elastic member 131 falling off the first mounting member 110 during operation. The first mounting member 110 is provided with a first connecting channel M1, and the first fastening structure J1 is inserted into the first connecting channel M1 and fastened with the first mounting member 110, so that the first end e1 of the first elastic member 131 is more stably connected to the first mounting member 110. The first fastening structure J1 can be a widened structure provided at the first end e1, which can reduce the risk of the first end e1 of the first elastic member 131 falling off the first mounting member 110. In the case that the third end e3 is provided with the second fastening structure J2, the second fastening structure J2 refers to a structure that prevents the third end e3 of the second elastic member 132 from falling off the second mounting member 120 during operation. The second mounting member 120 is provided with a second connecting channel M2, and the second fastening structure J2 is inserted into the second connecting channel M2 and fastened with the second mounting member 120, so that the third end e3 of the second elastic member 132 is more stably connected to the second mounting member 120. The second fastening structure J2 can be a widened structure provided at the third end e3, which can reduce the risk of the second end e2 of the second elastic member 132 falling off the second mounting member 120.
[0132] Of course, the first fastening structure J1 and the second fastening structure J2 can also be provided in other shapes, as long as they can more stably connect the first elastic member 131 and the second elastic member 132 to the first mounting member 110 and the second mounting member 120, which are not specifically limited herein.
[0133] For example, the first end e1 is provided with the first fastening structure J1 and the third end e3 is provided with the second fastening structure J2. Figure 1 Figure 4 Figure 5 For example, the first end e1 is provided with the first fastening structure J1 and the third end e3 is provided with the second fastening structure J2.
[0134] In this way, the first end e1 and the third end e2 are both provided with fastening structures, which can reduce the risk of the first elastic member 131 falling off the first mounting member 110 and the second elastic member 132 falling off the second mounting member 120 due to improper operation during operation, improve the firmness of the connection of the first elastic member 131 to the first mounting member 110 and the second elastic member 132 to the second mounting member 120, and more stably connect the first elastic member 131 and the second elastic member 132 to the first mounting member 110 and the second mounting member 120.
[0135] Figure 6 A perspective structural schematic diagram of a toe corrector provided by another embodiment of the present application is shown. For ease of illustration, only the content related to the embodiments of the present application is shown.
[0136] In some embodiments, please refer to Figure 6 The insole corrector 100 further comprises a first connecting member 140 and a second connecting member 150, both of which are located between the first mounting member 110 and the second mounting member 120.
[0137] The first connecting member 140 and the second connecting member 150 are components for matching the first elastic member 131 and the second elastic member 132. Specifically, one of the first mounting member 110 and the second elastic member 132 is connected to the first connecting member 140, and the other is slidably connected to the first connecting member 140 along the longitudinal extension direction of the second elastic member 132. One of the second mounting member 120 and the first elastic member 131 is connected to the second connecting member 150, and the other is slidably connected to the second connecting member 150 along the longitudinal extension direction of the first elastic member 131.
[0138] In this way, the position between the first mounting member 110 and the second mounting member 120 can be adjusted by the second elastic member 132 slidably connected to the first connecting member 140 and the first elastic member 131 slidably connected to the second connecting member 150. At the same time, different specifications of mounting members and elastic members can be matched by configuring the required first connecting member 140 and second connecting member 150, and the stability and reliability of the connection can be enhanced.
[0139] Figure 7 The top view of the insole corrector is shown. Figure 6 The top view of the insole corrector is shown. For ease of illustration, only the content related to the embodiments of the present application is shown.
[0140] In some embodiments, please continue to refer to Figure 6 , and refer to Figure 7 The first connecting member 140 is connected to the side of the first mounting member 110 facing the second mounting member 120, and the second connecting member 150 is connected to the side of the second mounting member 120 facing the first mounting member 110.
[0141] Specifically, the first connecting member 140 is provided with a first passage p1, and the fourth end e4 of the second elastic member 132 is slidably inserted into the first passage p1 along the longitudinal extension direction of the second elastic member 132. That is, the fourth end e4 of the second elastic member 132 can be slidably inserted into the first passage p1 along the longitudinal extension direction of the second elastic member 132. The second connecting member 150 is provided with a second passage p2, and the second end e2 of the first elastic member 131 is slidably inserted into the second passage p2 along the longitudinal extension direction of the first elastic member 131. That is, the second end e2 of the first elastic member 131 can be slidably inserted into the second passage p2 along the longitudinal extension direction of the first elastic member 131.
[0142] In this way, the first elastic member 131 can be flexibly slid in the second channel p2, and the second elastic member 132 can be flexibly slid in the first channel p1, so as to flexibly adjust the distance L between the first mounting member 110 and the second mounting member 120. It can be understood that the stability and reliability of the corresponding elastic member during sliding can be improved by controlling the length of the first channel p1 and the second channel p2.
[0143] It should be noted that the inner diameters of the first channel p1 and the second channel p2 are slightly larger than the outer diameters of the first elastic member 131 and the second elastic member 132, as long as the first elastic member 131 and the second elastic member 132 can slide in the first channel p1 and the second channel p2. Here, "slightly larger" means that the inner diameters of the first channel p1 and the second channel p2 have a small gap with respect to the outer diameters of the first elastic member 131 and the second elastic member 132, which is sufficient to allow the first elastic member 131 and the second elastic member 132 to slide. In this way, the first elastic member 131 can smoothly slide in the second channel p2, and the second elastic member 131 can smoothly slide in the first channel p1. The "gap" can be considered in the "gap fit" as described in some of the foregoing embodiments, which will not be described here.
[0144] Figure 8a An exploded structural schematic view of the orthosis is shown. Figure 6 An exploded structural schematic view of the orthosis is shown.
[0145] In some embodiments, please continue to refer to Figure 6 , and in combination with Figure 8a , the orthosis 100 further comprises a first plug-in member 160 and a second plug-in member 170.
[0146] The first plug-in member 160 is a component for connecting the first mounting member 110 to the first connecting member 140, and the second plug-in member 170 is a component for connecting the second mounting member 120 to the second connecting member 150. Specifically, the first plug-in member 160 is arranged on the side of the first mounting member 110 facing the second mounting member 120, and the second plug-in member 170 is arranged on the side of the second mounting member 120 facing the first mounting member 110. For example, Figure 6 and Figure 8a For example, the first plug-in member 160 is shown in plug-in connection with the first connecting member 140, and the second plug-in member 170 is shown in plug-in connection with the second connecting member 150.
[0147] In addition, the first connecting member 140 and the second connecting member 150 are provided with structures matched with the first plug-in member 160 and the second plug-in member 170. The first connecting member 140 and the first plug-in member 160 are connected by plug-in, and the second connecting member 150 and the second plug-in member 170 are connected by plug-in.
[0148] In this way, the first connector 160 can connect the first mounting member 110 to the first connecting member 140 more firmly, and the second connector 170 can connect the second mounting member 120 to the second connecting member 150 more firmly, further improving the stability of the connection.
[0149] It should be noted that the shape and size of the first connector 160 and the second connector 170 can be set according to the first connecting member 140 and the second connecting member 150, as long as the first connecting member 140 and the second connecting member 150 can be connected, and specific limitations are not made here.
[0150] In some embodiments, please continue to refer to Figure 6 and Figure 8a In the case where the first connector 160 and the first connecting member 140 are provided with a first buckling part u1 and a first clamping part h1 respectively, the first buckling part u1 can be buckled with the first clamping part h1. The first buckling part u1 can be a structure with a certain elasticity, such as a plastic protrusion or a metal buckle with elasticity, and the first buckling part u1 can be connected to the first clamping part h1. The first clamping part h1 can be a groove or a hole that can match the shape and size of the first buckling part u1, and is used to fix the first buckling part u1. In the case where the second connector 170 and the second connecting member 150 are provided with a second buckling part u2 and a second clamping part h2 respectively, the second buckling part u2 can be buckled with the second clamping part h2. The second buckling part u2 can be a structure with a certain elasticity, such as a plastic protrusion or a metal buckle with elasticity, and the second buckling part u2 can be connected to the second clamping part h2. The second clamping part h2 can be a groove or a hole that can match the shape and size of the second buckling part u2, and is used to fix the second buckling part u2.
[0151] For example, the first buckling part u1 and the first clamping part h1 are buckled, and the second buckling part u2 and the second clamping part h2 are buckled. Figure 8a For example, the first buckling part u1 and the first clamping part h1 are buckled, and the second buckling part u2 and the second clamping part h2 are buckled.
[0152] In this way, the first buckling part u1 and the first clamping part h1 are buckled, and the second buckling part u2 and the second clamping part h2 are buckled, which can facilitate the assembly of the first connecting member 140 and the first connector 160, and the second connecting member 150 and the second connector 150, and further make the connection between the first connector 160 and the first connecting member 140 and the second connector 170 and the second connecting member 150 more firm.
[0153] It should be noted that the first buckle part u1 and the first clamping part h1, and / or the second buckle part u2 and the second clamping part h2 can be buckled in a pushing, sliding, twisting or other manner, as long as the buckling can be achieved, and the specific limitation is not made here.
[0154] In some embodiments, please continue to refer to Figure 6 and Figure 7 The third passage p3 is arranged on the first connecting piece 140, and / or the fourth passage p4 is arranged on the second connecting piece 150.
[0155] Specifically, in the case that the third passage p3 is arranged on the first connecting piece 140, the first end e1 of the first elastic piece 131 is arranged through the third passage p3 and connected with the first mounting piece 110. In this way, the first elastic piece 131 can be more stably connected to the first mounting piece 110 through the first connecting piece 140. In the case that the fourth passage p4 is arranged on the second connecting piece 150, the third end e3 of the second elastic piece 132 is arranged through the fourth passage p4 and connected with the second mounting piece 120. In this way, the second elastic piece 132 can be more stably connected to the second mounting piece 120 through the second connecting piece 150.
[0156] For example, the third passage p3 is arranged on the first connecting piece 140 and the fourth passage p4 is arranged on the second connecting piece 150. Figure 6 and Figure 7 For example, the third passage p3 is arranged on the first connecting piece 140 and the fourth passage p4 is arranged on the second connecting piece 150.
[0157] In this way, the first elastic piece 131 can be connected with the first mounting piece 110 through the third passage p3 and the second elastic piece 132 can be connected with the second mounting piece 120 through the fourth passage p4, so as to further enhance the connection stability of the first elastic piece 131 and the first mounting piece 110 and the connection stability of the second elastic piece 132 and the second mounting piece 120. It can be understood that the length of the third passage p3 and the fourth passage p4 can be controlled to improve the stability and reliability of the connection between the corresponding elastic piece and the mounting piece.
[0158] In some embodiments, please continue to refer to Figure 7 and Figure 8a The fourth end e4 is provided with the anti-disengagement structure f, and / or the fourth end e4 is provided with the anti-disengagement structure f.
[0159] Specifically, in the case that the second end e2 is provided with the anti-falling structure f, the anti-falling structure f refers to a structure that reduces the risk of the second end e2 of the first elastic member 131 falling out of the second channel p2 during sliding. The anti-falling structure f can be that the second end e2 is provided with a widened structure, which can reduce the risk of the second end e2 of the first elastic member 131 falling out of the second channel p2 while the first elastic member 131 is sliding in the second channel p2. In the case that the fourth end e4 is provided with the anti-falling structure f, the anti-falling structure f refers to a structure that reduces the risk of the fourth end e4 of the second elastic member 132 falling out of the first channel p1 during sliding. The anti-falling structure f can be that the fourth end e4 is provided with a widened structure, which can reduce the risk of the fourth end e4 of the second elastic member 132 falling out of the first channel p1 while the second elastic member 132 is sliding in the first channel p2.
[0160] In the embodiments of the present application, the channel openings of the first channel p1 and the second channel p2 are configured not to allow the anti-falling structure f to pass through. The maximum outer diameter of the first elastic member 131 and the second elastic member 132 can be 0.1-4 mm, and the size of the channel openings of the first channel p1 and the second channel p2 can be 1.01-3 times the outer diameter of the first elastic member 131 and the second elastic member 132. Of course, in other embodiments, other numerical ranges and multiples can also be used, which can be set according to actual use, and are not specifically limited here. It can be understood that the first elastic member 131 can slide in the second channel p2 and the first elastic member 132 can slide in the first channel p1, and the anti-falling structure f of the first elastic member 131 and the second elastic member 132 can reduce the risk of the corresponding elastic member falling off the corresponding connecting member due to improper operation during sliding.
[0161] For example, Figure 7 and Figure 8a are shown as examples to illustrate the case where the second end e2 is provided with the anti-falling structure f and the fourth end e4 is provided with the anti-falling structure f.
[0162] In this way, the second end e2 and the fourth end e4 are both provided with the anti-falling structure f, which can reduce the risk of the first elastic member 131 falling off the second connecting member 150 and the second elastic member 132 falling off the first connecting member 140 due to improper operation by the user during operation, thereby improving the stability of the first elastic member 131 being slidably connected to the second connecting member 150 and the second elastic member 132 being slidably connected to the first connecting member 140.
[0163] In some embodiments, please continue to refer to Figures 6-8a The first connecting member 140 and / or the second connecting member 150 are configured to have elasticity.
[0164] Specifically, in the case that the first connecting member 140 is configured to have elasticity, the first connecting member 140 is deformed due to the bending curvature of the nail, so that the first connecting member 140 has elastic potential energy, and the first connecting member 140 releases the elastic performance to generate elastic restoring force, under the action of the elastic restoring force, the first connecting member 140 generates the pulling force acting on the first mounting member 110. As described above, the first end e1 of the first elastic member 131 and the fourth end e4 of the second elastic member 132 also generate the pulling force acting on the first mounting member 110, so that the pulling force acting on the first mounting member 110 is increased, thereby further accelerating the process of ingrown nail correction. In the case that the second connecting member 150 is configured to have elasticity, it can be understood with reference to the case that the first connecting member 140 is configured to have elasticity as described above, which will not be repeated here.
[0165] In addition, in the case that the first connecting member 140 and the second connecting member 150 are configured to have elasticity, when the first connecting member 140 and the second connecting member 150 are deformed, the pulling force acting on the first mounting member 110 and the second mounting member 120 is further enhanced, so that the nail embedded in the soft tissue on both sides can be pulled out more effectively, and the effect of ingrown nail correction is improved.
[0166] In some embodiments, please continue to refer to Figures 6-8a The material of the first connecting member 140 and / or the material of the second connecting member 150 includes metal or plastic with elasticity.
[0167] Specifically, in the case that the material of the first connecting member 140 includes metal or plastic with elasticity, the metal material can be nickel-titanium alloy, stainless steel, etc., and the plastic material can be soft glue, silicone, etc., which can be set according to specific needs, which is not limited here. In the case that the material of the second connecting member 150 includes metal or plastic with elasticity, the metal material can be nickel-titanium alloy, stainless steel, etc., and the plastic material can be soft glue, silicone, etc., which can be set according to specific needs, which is not limited here.
[0168] It can be understood that the connecting member can be a component configured to be hollow inside and surrounded by sheet-shaped metal or plastic with elasticity, but is not limited thereto, and can be set according to actual needs, as long as the connecting member has elasticity.
[0169] In addition, in the case that the material of the first connecting member 140 and the material of the second connecting member 150 include metal or plastic with elasticity, the metal or plastic with elasticity has a certain strength, which can improve the stability and reliability of the first connecting member 140 and the second connecting member 150.
[0170] Figure 8bAn exploded structural diagram of an ingrown toenail corrector according to some embodiments of this application is shown; for ease of explanation, only the content related to the embodiments of this application is shown.
[0171] In some embodiments, please refer to Figures 6-8b The first connector 140 and / or the second connector 150 are provided with a mounting cavity Q, and the ingrown nail corrector 100 also includes an elastic reinforcing member T disposed in the mounting cavity Q.
[0172] The elastic reinforcing member T is a component used to enhance elasticity. Specifically, when the first connecting member 140 has a mounting cavity Q, and the ingrown nail corrector 100 also includes the elastic reinforcing member T disposed within the mounting cavity Q, the shape, size, and position of the mounting cavity Q can be set according to actual needs to accommodate and fix the elastic reinforcing member T. When the second connecting member 150 has a mounting cavity Q, and the ingrown nail corrector 100 also includes the elastic reinforcing member T disposed within the mounting cavity Q, the shape, size, and position of the mounting cavity Q can be set according to actual needs to accommodate and fix the elastic reinforcing member T.
[0173] For example, with Figure 8b For example, it is illustrated that the first connector 140 and the second connector 150 are provided with mounting cavities Q, and the ingrown nail corrector 100 also includes an elastic reinforcing member T provided in the mounting cavity Q.
[0174] Both the first connector 140 and the second connector 150 are provided with mounting cavities Q, and elastic reinforcing members T are provided within the mounting cavities Q to further enhance the elasticity of the first connector 140 and the second connector 150. In cases of severe ingrown toenails, this can more effectively pull out the nail embedded in the soft tissue, achieving a better corrective effect.
[0175] Of course, for example, with Figure 8a For example, it is shown that the ingrown nail corrector 100 may not include the elastic reinforcing member T disposed in the mounting cavity Q. This can be configured according to specific usage conditions, and no specific restrictions are imposed here.
[0176] In some embodiments, please refer to Figure 6 and Figure 8b The elastic reinforcing member T is constructed in a sheet-like shape.
[0177] For example, with Figure 6 and Figure 8b For example, the illustration shows the case where the elastic reinforcing member T is constructed in the form of a sheet. Of course, the elastic reinforcing member T can also be constructed in the form of a strip, etc., as long as it can provide elastic force, and no specific restrictions are made here.
[0178] This can improve the elasticity of the first connector 140 and the second connector 150.
[0179] In some embodiments, please continue to refer to Figure 6 and Figure 8b , define one of the first connecting piece 140 and the second connecting piece 150 provided with the mounting cavity Q as the target connecting piece, and one end of the elastic reinforcing piece T is connected to the target connecting piece.
[0180] Specifically, one end of the elastic reinforcing piece T is connected to one of the first connecting piece 140 and the second connecting piece 150 provided with the mounting cavity Q. The shape and size of the mounting cavity Q can be set according to the shape and size of the elastic reinforcing piece T.
[0181] In this way, the end of the elastic reinforcing piece T connected to the target connecting piece constitutes a fixed end, and the end of the elastic reinforcing piece T away from the target connecting piece constitutes a free end relative to the fixed end, so that the elastic reinforcing piece T can be flexed with the fixed end as a fulcrum, and the free end can be flexed, so that the elastic reinforcing piece T can provide an elastic force directly acting on the target connecting piece. In addition, the stability of the elastic reinforcing piece T in the mounting cavity Q can also be improved.
[0182] Figure 9 A perspective structural schematic diagram of the ingrown nail corrector provided by another embodiment of the present application is shown; Figure 10 A perspective structural schematic diagram of the ingrown nail corrector provided by another embodiment of the present application is shown; Figure 9 An exploded structural schematic diagram of the ingrown nail corrector provided by another embodiment of the present application is shown, Figure 11 A perspective structural schematic diagram of the ingrown nail corrector provided by another embodiment of the present application is shown; Figure 9 A top view of the ingrown nail corrector provided by another embodiment of the present application is shown; only the content related to the embodiments of the present application is shown for convenience of description.
[0183] In some embodiments, please refer to Figures 9-11 The first connecting piece 140 is provided with a first sliding hole s1, and the second connecting piece 150 is provided with a second sliding hole s2.
[0184] Specifically, along the longitudinal extension direction of the first elastic piece 131, the second end e2 of the first elastic piece 131 passes out of the second connecting piece 150 through the second sliding hole s2 and is connected to the first connecting piece 140; along the longitudinal extension direction Y2 of the second elastic piece 132, the fourth end e4 of the second elastic piece 132 passes out of the first connecting piece 140 through the first sliding hole s1 and is connected to the second connecting piece 150.
[0185] The second sliding hole s2 and the first elastic member 131 can be in clearance fit to enable the second end e2 of the first elastic member 131 to slide through the second connecting member 150 and be connected to the first connecting member 140. Meanwhile, the first sliding hole s1 and the second elastic member 132 are also in clearance fit to enable the fourth end e4 of the second elastic member 132 to slide through the first connecting member 140 and be connected to the second connecting member 150. Here, the "clearance fit" can be understood with reference to the "clearance fit" between the second through hole k2 and the first elastic member 131 and between the first through hole k1 and the second elastic member 132 as described above, which will not be repeated here.
[0186] In this way, by sliding the first elastic member 131 in the second sliding hole s2 and sliding the second elastic member 132 in the first sliding hole s1, the distance L between the first mounting member 110 and the second mounting member 120 can be flexibly adjusted.
[0187] In some embodiments, please continue to refer to Figures 1-11 , the first mounting member 110 has a first mounting side a1 for mounting on a nail and a first operation side c1 opposite to the first mounting side a1. The second mounting member 120 has a second mounting side a2 for mounting on a nail and a second operation side c2 opposite to the second mounting side a2.
[0188] Among them, the first operation side c1 and / or the second operation side c2 is provided with a protruding structure r. For example, Figures 1-11 , the first operation side c1 and the second operation side c2 are both provided with a protruding structure r. Of course, the protruding structure r can be a cylinder, a cube, a cuboid, etc., which can be set according to actual conditions and will not be specifically limited here.
[0189] In the case where the first operation side c1 is provided with a protruding structure r, the user can use a tool to operate the first mounting member 110 through the protruding structure r. In the case where the second operation side c2 is provided with a protruding structure r, the user can use a tool to operate the second mounting member 120 through the protruding structure r. In this way, not only is the user's operation convenient, but also the first mounting member 110 and the second mounting member 120 can be more accurately pasted on the nail.
[0190] For example, Figures 1-11 , the first operation side c1 and the second operation side c2 are both provided with a protruding structure r. Of course, the protruding structure r can be a cylinder, a cube, a cuboid, etc., which can be set according to actual conditions and will not be specifically limited here.
[0191] Figure 12 An exploded structural schematic diagram of a nail corrector provided by another embodiment of the present application is shown; only the content related to the embodiments of the present application is shown for ease of description.
[0192] In some embodiments, please continue to refer to Figures 1-12 The first mounting side a1 and / or the second mounting side a2 is provided with an anti-skid structure h.
[0193] Specifically, in the case that the first mounting side a1 is provided with the anti-skid structure h, the first mounting piece 110 can be more firmly pasted to the part of the nail to be corrected. In the case that the second mounting side a2 is provided with the anti-skid structure h, the second mounting piece 120 can be more firmly pasted to the part of the nail to be corrected.
[0194] In addition, the first mounting side a1 and the second mounting side a2 are both provided with the anti-skid structure h. In this way, the first mounting piece 110 and the second mounting piece 120 can be more firmly pasted to the parts of the nail to be corrected on both sides of the nail.
[0195] It should be noted that the anti-skid structure h can be provided as a concave-convex structure or other forms of structure, as long as it can have the effect of anti-skid, which can be set according to the actual situation, and is not specifically limited here.
[0196] The technical features of the above embodiments can be combined arbitrarily. In order to make the description simple, all possible combinations of the technical features in the above embodiments are not described, however, as long as the combinations of the technical features do not exist contradictory, they should be considered as the scope of the present application.
[0197] The above embodiments only express several implementation manners of the present application, and the description is more specific and detailed, but it should not be understood as a limitation on the patent scope of the application. It should be noted that for ordinary skilled in the art, without departing from the concept of the present application, a number of variations and improvements can be made, which are all within the protection scope of the present application. Therefore, the patent protection scope of the present application should be subject to the appended claims.
Claims
1. An orthosis for the treatment of ingrown nails, characterized in that The inlay nail corrector comprises: a first mounting member and a second mounting member, each of which is configured to be attached to a human nail; and a resilient assembly, which is resiliently arranged between the first mounting member and the second mounting member; wherein the first mounting member and the second mounting member are configured to be relatively movable with at least a portion of the resilient assembly, so as to adjust the distance between the first mounting member and the second mounting member.
2. The orthotic of claim 1, wherein, The resilient assembly comprises a first resilient member and a second resilient member; wherein the first resilient member has a first end and a second end which are oppositely arranged along the longitudinal extension direction of the first resilient member; the first end is connected to the first mounting member, and the second end is slidably connected to the second mounting member along the longitudinal extension direction of the first resilient member; the second resilient member has a third end and a fourth end which are oppositely arranged along the longitudinal extension direction of the second resilient member; the third end is connected to the second mounting member, and the fourth end is slidably connected to the first mounting member along the longitudinal extension direction of the second resilient member.
3. The orthotic of claim 2, wherein, The first mounting member is provided with a first through hole, and the second mounting member is provided with a second through hole; the second end is arranged in the second mounting member along the longitudinal extension direction of the first resilient member by means of the second through hole, and the fourth end is arranged in the first mounting member along the longitudinal extension direction of the second resilient member by means of the first through hole.
4. The orthotic of claim 3, wherein, The first mounting member is provided with a first fixing structure configured to fix the second resilient member; and / or the second mounting member is provided with a second fixing structure configured to fix the first resilient member.
5. The orthotic of claim 4, wherein, The first mounting member is provided with a first fixing structure configured as a clamping groove; and / or the second mounting member is provided with a second fixing structure configured as a clamping groove; and / or the first fixing structure is configured as a notch communicating with the first through hole; and / or the second mounting member is provided with a second fixing structure configured as a notch communicating with the second through hole.
6. The orthotic of claim 3, wherein, The inlay nail corrector further comprises a first operating member arranged at the second end and located on the side of the second mounting member away from the first mounting member, and the second through hole is configured to not allow the first operating member to pass through; and / or the inlay nail corrector further comprises a second operating member arranged at the fourth end and located on the side of the first mounting member away from the second mounting member, and the first through hole is configured to not allow the second operating member to pass through.
7. The orthotic of claim 2, wherein, The first end is provided with a first fastening structure, and the first mounting member is provided with a first connecting channel, the first fastening structure is inserted into the first connecting channel and fastened with the first mounting member; and / or the third end is provided with a second fastening structure, and the second mounting member is provided with a second connecting channel, the second fastening structure is inserted into the second connecting channel and fastened with the second mounting member.
8. The orthotic of claim 2, wherein, The inlay nail corrector further comprises a first connecting member and a second connecting member, both of which are located between the first mounting member and the second mounting member. One of the first mounting member and the second elastic member is connected to the first connecting member, and the other is slidably connected to the first connecting member along the longitudinal extension direction of the second elastic member; One of the second mounting member and the first elastic member is connected to the second connecting member, and the other is slidably connected to the second connecting member along the longitudinal extension direction of the first elastic member.
9. The orthotic of claim 8, wherein, The first connecting member is connected to one side of the first mounting member facing the second mounting member, and a first channel is formed in the first connecting member, and the fourth end of the second elastic member is slidably inserted into the first channel along the longitudinal extension direction of the second elastic member; The second connecting member is connected to one side of the second mounting member facing the first mounting member, and a second channel is formed in the second connecting member, and the second end of the first elastic member is slidably inserted into the second channel along the longitudinal extension direction of the first elastic member.
10. The orthotic of claim 9, wherein, A third channel is formed in the first connecting member; the first end of the first elastic member is inserted into the third channel and connected to the first mounting member; and / or A fourth channel is formed in the second connecting member; the third end of the second elastic member is inserted into the fourth channel and connected to the second mounting member; and / or The second end and / or the fourth end is provided with an anti-disengagement structure; and / or The first connecting member and / or the second connecting member is configured to have elasticity; and / or The material of the first connecting member and / or the material of the second connecting member includes metal or plastic with elasticity.
11. The orthotic of claim 9, wherein, The first connecting member and / or the second connecting member is provided with a mounting cavity, and the ingrown nail corrector further comprises an elastic reinforcing member arranged in the mounting cavity; The elastic reinforcing member is configured in a sheet shape; and / or One of the first connecting member and the second connecting member provided with the mounting cavity is defined as a target connecting member, and one end of the elastic reinforcing member is connected to the target connecting member.
12. The orthotic of claim 8, wherein, The first connecting member is provided with a first sliding hole, and the second connecting member is provided with a second sliding hole; Along the longitudinal extension direction of the first elastic member, the second end of the first elastic member passes out of the second connecting member through the second sliding hole and is connected to the first connecting member; Along the longitudinal extension direction of the second elastic member, the fourth end of the second elastic member passes out of the first connecting member through the first sliding hole and is connected to the second connecting member.
13. The orthotic of any one of claims 1-12, wherein, The first mounting member has a first mounting side for mounting on a nail, and a first operation side arranged opposite to the first mounting side; and the second mounting member has a second mounting side for mounting on a nail, and a second operation side arranged opposite to the second mounting side; The first operation side and / or the second operation side is provided with a protruding structure; and / or The first mounting side and / or the second mounting side is provided with an anti-slip structure.