Wrist joint movement protector
By designing a wrist movement guard with elastic fabric with tensile tension and a three-dimensional support structure, the problems of loosening and unidirectional compression of the existing guard are solved, and stable protection and comfort enhancement of the triangular fiber cartilage complex is achieved.
Patent Information
- Application Number
- CN202422282293.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-09-18
AI Technical Summary
Existing wrist joint sports guards are prone to loosening during exercise, causing the triangular fiber cartilage complex to break away from the protection area, increasing the risk of damage, and may apply a one-way lateral force to it, generating torque, and increasing the risk of damage.
A wrist joint sports guard is designed, with the body and pressing belt made of elastic fabric with tensile tension. The pressing belt wraps around the wrist from different directions. The hollow design exposes the ulnar styloid process. The pressing belt is located on the upper and lower sides of the hollow part. It is connected with the Velcro hook surface to form a three-dimensional support structure. The connecting belt is an elastic bandage structure, adapting to different wrist shapes and movement dynamics.
Effectively prevent the protective gear from loosening, ensure that the triangular fiber cartilage complex is always in the stable protection area, reduce the risk of secondary damage, provide three-dimensional support to reduce one-way compression, improve comfort and protective effect.
Smart Images

Figure CN223144085U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of sports protective gears, in particular to a wrist joint sports protective gear. Background Art
[0002] The triangular fibrocartilage complex (TFCC) is one of the important stabilizing devices of the wrist joint, often described as the meniscus of the wrist, and consists of a group of ligaments and fibrocartilage. Its structure includes: the articular disc or the meniscus homolog, the palmar and dorsal radioulnar ligaments, the ulnolunate ligament, the ulnotriquetral ligament, the ulnar collateral ligament, the ulnar joint capsule, and the tendon sheath of the extensor carpi ulnaris muscle. It plays a very important role in the stability of the distal radioulnar joint, and at the same time has the functions of bearing, buffering and transmitting the axial pressure of the wrist joint, and is responsible for transmitting about 20% of the axial load in the case of ulnar neutral variance. When the TFCC structure is disordered or damaged, it will lead to pain on the ulnar side of the wrist joint and wrist joint dysfunction.
[0003] The treatment for TFCC injuries usually includes surgical treatment, brace treatment and conservative treatment. Due to the poor blood supply near the triangular fibrocartilage, it is difficult for the TFC to heal even after surgery, which will bring long-term pain and dysfunction.
[0004] TFCC injuries often occur in sports enthusiasts. For example, dumbbell presses, playing badminton, tennis, doing push-ups, etc. may all cause TFCC injuries. Based on the difficulty of treatment, early prevention is particularly important. Therefore, protective gears can be worn during exercise to protect the joints.
[0005] A wrist joint sports protective gear specifically refers to a joint protection device used for preventing wrist joint injuries or during the rehabilitation period after injury, which is different from a brace with a rigid support plate.
[0006] Patent CN211211546U discloses a wrist guard for reducing the degree of training sprains, including a wrist guard body. The wrist guard body includes a binding band, an adjusting band A and an adjusting band B. The adjusting band A and the adjusting band B are symmetrically arranged on one side of the binding band, and the adjusting band A and the adjusting band B are integrally formed with the binding band; a movable mechanism is provided at the central position of the binding band. The movable mechanism includes a movable opening and a limiting band, and the limiting band is symmetrically arranged inside the movable opening; the end of the binding band forms a smooth edge through chamfering, and a buckle is provided on one side of the movable mechanism, effectively placing the ulna in the protection space without affecting the normal movement of the ulna, not affecting the flexibility of the joint and ligaments, and at the same time preventing the radial bone and the ulna from spreading and squeezing the wrist joint to cause dislocation, improving the protection effect and reducing the irritation to the harder wrist joint and ulna.
[0007] Patent TWM651542U discloses a wrist guard structure, including: an inner band body, one end of the inner band body is formed with an inner traction band, and the other end is formed with at least one inner surrounding band. The inner traction band has at least one inner perforation and at least one inner through hole; and an outer band body, the outer band body is attached to the inner band body, and the outer band body has at least one outer perforation and at least one outer through hole. The outer perforation communicates with the inner perforation, and the outer through hole communicates with the inner through hole. The inner surrounding band can pass through the inner perforation and the outer perforation and be fixed. Thus, the wrist guard structure can effectively protect the triangular fibrocartilage complex and reduce the stuffy feeling of the hand. A similar patent CN218219238U also discloses this TFCC sports wrist guard.
[0008] Patent KR102545049B1 discloses a wrist guard. Its first band part is formed in a strip shape such that at least a part of the lower surface contacts the wrist and surrounds the wrist; the second band part is attached to a part of the upper surface of the first band part and is formed in a strip shape to cover a part of the upper surface of the first band part, and a second fastening hole is formed through one side of the second band part to form a band part, a first fixing hole is formed through one side of the first band part and communicates with the second fixing hole; and a first detachable band formed in a strip shape on the other side, the end of which is sequentially inserted into the first fastening hole and the second fastening hole, and then its upper surface is attached to the upper surface of the first band part. The upper surface of the first band part is formed as a first detachable part, and the upper and lower surfaces of the second band part are formed as a second detachable part. The first detachable part is detachable to the second detachable part. During the process of passing through the first fastening hole and the second fastening hole, the first detachable part formed by the upper surface of the first detachable band is attached to the second detachable part formed by the upper and lower surfaces of the second band part; its protector includes a guiding part, which is installed in a manner that does not connect to the inner surfaces of the first fastening hole and the second fastening hole.
[0009] In these above-mentioned patents, when the two adjustment band structures of the wrist guard are worn, they need to pass through small holes and then be adhesively fixed to the band structures pressing on the upper and lower sides of the triangular fibrocartilage complex by the main body, and the two adjustment bands are stretched in the same direction. Based on this, these wrist guards have the following disadvantages:
[0010] 1. During exercise, it is easy to become loose, resulting in the triangular fibrocartilage complex being separated from the protected area and causing secondary injury.
[0011] 2. It is easy to apply a unidirectional lateral force to the triangular fibrocartilage complex, generating torque, which instead causes TFCC injury. Summary of the Utility Model
[0012] The technical problem to be solved by the present utility model is to provide a more safe and comfortable wrist joint sports protective gear.
[0013] The technical solution adopted by the present utility model to solve the above technical problems is as follows: a wrist joint movement protector, including a main body and a first pressing band and a second pressing band respectively located on the left and right sides of the main body, and the main body, the first pressing band and the second pressing band are formed by processing elastic fabrics with tensile tension;
[0014] The roots of the first pressing band and the second pressing band are respectively located on the upper and lower sides of the main body, and both extend horizontally outwards;
[0015] The outer surface of the main body has a matte texture, and the inner sides of the ends of the first pressing band and the second pressing band are provided with magic tape hook surfaces; when the first pressing band and the second pressing band are wound around and connected to the main body along their extending directions, there is a distance between the first pressing band and the second pressing band in the up and down directions, so that when in use, the first pressing band and the second pressing band are respectively located on the upper and lower sides of the ulnar styloid process.
[0016] The technical solution adopted by the present utility model to solve the above technical problems is as follows: a hollow part for exposing the ulnar styloid process is provided on the main body, the hollow part deviates from the vertical center line of the main body and is located on one side of the main body, and the center of the hollow part is located on the horizontal center line of the main body;
[0017] The first pressing band and the second pressing band are wound around and connected to the main body along their extending directions, the first pressing band is located above the hollow part, and the second pressing band is located below the hollow part.
[0018] The technical solution adopted by the present utility model to solve the above technical problems is as follows: a connecting band is provided on the inner side of the main body, both sides of the connecting band are respectively connected to both sides of the main body, and the connecting band and the main body form an annular structure.
[0019] The technical solution adopted by the present utility model to solve the above technical problems is as follows: the connecting band has an elastic bandage structure, and the elasticity of the connecting band is greater than that of the main body.
[0020] The technical solution adopted by the present utility model to solve the above technical problems is as follows: the sheet body formed by the main body, the first pressing band and the second pressing band is centrosymmetric; the upper and lower side edges of the main body are concave curves, and form continuous curves with the upper and lower side edges of the first pressing band and the second pressing band.
[0021] The technical solution adopted by the present utility model to solve the above technical problems is as follows: the left and right side edges of the main body are inclined towards the vertical center line away from the pressing band on the same side, and the left and right side edges of the main body and the pressing band on the same side are transitioned by an arc.
[0022] The technical solution adopted by the present utility model to solve the above technical problems is as follows: Inner vertical support bands are provided on the left and right sides of the body. The inner vertical support bands are spaced apart from the left and right side edges of the body by a certain distance, and both ends of the elastic bandage structure are wrapped within the inner vertical support bands.
[0023] The technical solution adopted by the present utility model to solve the above technical problems is as follows: Support pads are provided on the inner surface of the body at the upper and lower edges of the hollowed-out part.
[0024] The technical solution adopted by the present utility model to solve the above technical problems is as follows: The body, the first pressing band, and the second pressing band are integrally processed from an elastic fabric with tensile tension into a sheet-like structure of equal thickness, having continuous upper and lower surfaces.
[0025] The technical solution adopted by the present utility model to solve the above technical problems is as follows: A wrist joint movement protection device includes a body, a first pressing band and a second pressing band respectively located on the left and right sides of the body. The body, the first pressing band, and the second pressing band are integrally processed from an elastic fabric with tensile tension into a sheet-like structure of equal thickness;
[0026] A connecting band is provided on the inner side of the body. The connecting band is of an elastic bandage structure. Both sides of the connecting band are respectively connected to both sides of the body, and the connecting band and the body form an annular structure;
[0027] The roots of the first pressing band and the second pressing band are respectively located on the upper and lower sides of the body and both extend horizontally outwards;
[0028] The outer surface of the body has a matte surface structure, and the inner sides of the ends of the first pressing band and the second pressing band are provided with hook surfaces of Velcro;
[0029] The sheet-like body formed by the body, the first pressing band, and the second pressing band is centrosymmetric; the upper and lower side edges of the body are concave curves and form continuous curves with the upper and lower side edges of the first pressing band and the second pressing band; the left and right side edges of the body are inclined towards the vertical center line away from the pressing band on the same side;
[0030] When the first pressing band and the second pressing band are rotated around and connected to the body along their extending directions, there is a certain distance between the first pressing band and the second pressing band in the up and down directions, so that when in use, the first pressing band and the second pressing band are respectively located on the upper and lower sides of the ulnar styloid process.
[0031] The technical solution adopted by the present utility model to solve the above technical problems is as follows: A hollowed-out portion for exposing the ulnar styloid process is provided on the body. The hollowed-out portion deviates from the vertical center line of the body and is located on one side of the body. The center of the hollowed-out portion is located on the horizontal center line of the body. The first pressing belt and the second pressing belt are wound around and connected to the body along their extending directions. The first pressing belt is located above the hollowed-out portion, and the second pressing belt is located below the hollowed-out portion.
[0032] Compared with the prior art, the advantages of the present utility model are as follows: The two pressing belts can naturally wrap around the wrist from different directions, which can more effectively prevent the loosening of the protective device during movement, thereby ensuring that the TFCC (triangular fibrocartilage complex) is always in a stable protected area and avoiding the risk of secondary injury caused by the loosening of the protective device. The pressing belts are pressed on the upper and lower sides of the hollowed-out portion, which can form a three-dimensional support for the wrist joint instead of a single-directional compression, reducing the risk of TFCC injury. Brief Description of the Drawings
[0033] The present utility model will be further described in detail below in conjunction with the drawings and preferred embodiments. However, those skilled in the art will understand that these drawings are only drawn for the purpose of explaining the preferred embodiments and should not be used as a limitation to the scope of the present utility model. In addition, unless otherwise specified, the drawings only schematically show the composition or structure of the described object and may include exaggerated displays, and the drawings are not necessarily drawn to scale.
[0034] Figure 1 Schematic diagram of the unfolded wrist joint movement protective device of the first embodiment of the present utility model Figure 1 ;
[0035] Figure 2 Schematic diagram of the unfolded wrist joint movement protective device of the first embodiment of the present utility model Figure 2 ;
[0036] Figure 3 For the present utility model Figure 2 Schematic diagram of the wrist joint movement protective device in which the connecting belt is removed;
[0037] Figure 4 Schematic diagram of the wrist joint movement protective device of the first embodiment of the present utility model forming a loop Figure 1 ;
[0038] Figure 5 Schematic diagram of the wrist joint movement protective device of the first embodiment of the present utility model forming a loop Figure 2 ;
[0039] Figure 6 Schematic diagram of the right hand of the human body drawn to illustrate the first embodiment of the present utility model;
[0040] Figure 7 Wearing process of the wrist joint movement protector in the first embodiment of the present utility model Figure 1 ;
[0041] Figure 8 Wearing process of the wrist joint movement protector in the first embodiment of the present utility model Figure 2 ;
[0042] Figure 9 Wearing state diagram of the wrist joint movement protector in the first embodiment of the present utility model;
[0043] Figure 10 Expansion schematic of the wrist joint movement protector in the second embodiment of the present utility model Figure 1 ;
[0044] Figure 11 Expansion schematic of the wrist joint movement protector in the second embodiment of the present utility model Figure 2 ;
[0045] Figure 12 Wearing schematic diagram of the wrist joint movement protector in the first embodiment of the present utility model. Specific implementation manners
[0046] The preferred embodiments of the present utility model will be described in detail below with reference to the accompanying drawings. Those skilled in the art will appreciate that these descriptions are only descriptive and exemplary, and should not be construed as limiting the protection scope of the present utility model.
[0047] It should be noted that similar reference numerals represent similar items in the following drawings. Therefore, once an item is defined in one drawing, it will not be further defined and explained in subsequent drawings.
[0048] In the description of the present utility model, it should be noted that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the utility model product is usually placed during use. It is only for the convenience of describing the present utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as limiting the present utility model. The terms "first" and "second" are only for the convenience of description and have no other directional meaning, and should not be used as a limitation to the present utility model.
[0049] Embodiment 1
[0050] As Figures 1 - 4As shown in the figure, the wrist joint movement protector includes a main body 1, a first pressing band 2 and a second pressing band 3 respectively located on the left and right sides of the main body 1. The main body 1, the first pressing band 2 and the second pressing band 3 are formed by processing elastic fabrics with tensile tension.
[0051] As Figures 1 - 4 shown, the roots of the first pressing band 2 and the second pressing band 3 are respectively located on the upper and lower sides of the main body 1 and both extend horizontally outwards. There is a hollow part 4 on the main body 1 for exposing the ulnar styloid process A as Figure 6 shown. The hollow part 4 deviates from the vertical center line of the main body 1 and is located on one side of the main body 1. The center of the hollow part 4 is located on the horizontal center line of the main body 1.
[0052] As Figures 2 - 5 shown, the outer surface of the main body 1 has a matte texture, and the inner sides of the ends of the first pressing band 2 and the second pressing band 3 are provided with Velcro hook surfaces 5. The first pressing band 2 and the second pressing band 3 are wound around and connected to the main body 1 along their extending directions. The first pressing band 2 is located above the hollow part 4, and the second pressing band 3 is located below the hollow part 4.
[0053] Using elastic fabrics enables the overall structure of the protector to be adaptively adjusted according to the shapes and sizes of different people's wrist joints, enabling it to closely fit the wrist joint and provide appropriate pressure, while ensuring the comfort of wearing and allowing the wrist to maintain an appropriate range of motion during exercise. Whether it is daily activities or high-intensity exercise, it can provide continuous and effective protection. And the stretching material will not overly restrict the flexibility of the joints, thus avoiding joint stiffness caused by long-term wearing of the protector and preventing joint diseases such as tenosynovitis caused by poor blood circulation.
[0054] As Figure 6 、 8 As shown in FIGS. 8, 9, the ulnar styloid process A is a protruding part of the wrist joint. If the protector completely covers this area, it may cause unnecessary compression on the ulnar styloid process A, resulting in discomfort or even injury. By exposing it through the hollow part, the comfort and freedom of the ulnar styloid process A are ensured. More importantly, by exposing the ulnar styloid process A, the pressure generated by the stretching of the main body 1 is applied to the periphery of the hollow part 4, which is exactly the TFCC (triangular fibrocartilage complex) area where the wrist is most vulnerable to injury. Accordingly, the protector can act more precisely on the TFCC (triangular fibrocartilage complex) area, providing more targeted protection and avoiding unnecessary pressure on other parts of the wrist. At the same time, it is also convenient to observe the state of the ulnar styloid process A and promptly discover and handle potential problems.
[0055] According to the anatomical structure of the wrist joint, the ulnar styloid process A is located on one side of the wrist joint rather than at the center. The hollow portion 4 is designed to be located on one side of the body 1, deviating from the vertical center line of the body 1, and its center is located on the horizontal center line of the body 1. In this way, the same protective device can be applied to both the left and right wrists, which helps to maintain the balance and stability of the protective device during wearing and is more in line with the ergonomic principle.
[0056] Preferably, as Figures 1 - 3 shown, the hollow portion 4 is in a rhombus structure, which is also more in line with the structure of the ulnar styloid process A and also meets the requirement of the protective device being applicable to both left and right hands. Of course, the hollow portion 4 can also be set in a triangular shape, and the requirement of the protective device being applicable to both left and right hands can be achieved by reversing the up and down directions of the protective device.
[0057] And the most important thing in this embodiment is that, as Figures 7 - 9 shown, the first pressing belt 2 and the second pressing belt 3 are respectively located on the left and right sides of the body 1 and also on the upper and lower sides. This design enables the wearer, when wearing the protective device, the two pressing belts to naturally wrap around the wrist from different directions. This multi-directional wrapping method can more effectively prevent the loosening of the protective device during movement compared with the traditional unidirectional stretching wrist guard design, thus ensuring that the TFCC (triangular fibrocartilage complex) is always in a stable protected area and avoiding the risk of secondary injury caused by the loosening of the protective device.
[0058] Secondly, as Figures 7 - 9 shown, when wearing, the first pressing belt 2 and the second pressing belt 3 bypass from the inner side of the wrist to the front side and finally press on the upper and lower sides of the hollow portion. Since the first pressing belt 2 and the second pressing belt 3 are respectively located on the upper and lower sides, they can form a three-dimensional support for the wrist joint instead of a single-directional compression. This three-dimensional support structure not only helps to disperse the pressure borne by the wrist joint during movement, but also can effectively prevent the torque generated by the unidirectional force, thereby further reducing the risk of TFCC injury.
[0059] Preferably, as Figures 2 - 3 shown, the hook surface 5 of the magic tape is attached to the pressing belt in the form of a rigid plastic sheet, and the protective device is designed such that when wearing, as Figure 9 shown, at least one end of the first pressing belt 2 and the second pressing belt 3 is exactly located on the upper and lower sides of the hollow portion 4. Based on this, the hook surface 5 of the magic tape not only plays a connecting role, but also can support the joint, limit the excessive stretching, bending and twisting of the joint, and protect the TFCC (triangular fibrocartilage complex).
[0060] Preferably, the body 1, the first pressing belt 2, and the second pressing belt 3 are integrally processed from an elastic fabric with tensile tension into a sheet structure of equal thickness, having a continuous upper surface and a lower surface. The design of the integrally elastic sheet fabric makes its inner surface smoother, which can significantly improve the wearing comfort and avoid the problem of chafing the feet at the connection caused by sewing. The design of the integrally elastic sheet fabric makes its inner surface smoother, which also enables it to better fit the wrist, improve protection, and at the same time avoid the problem that connection methods such as sewing and bonding are prone to detachment under the tensile state. More importantly, the overall stretching of the integrally elastic sheet fabric can make the acting force more uniform and avoid local over-compression.
[0061] As Figure 3 , 4 , 8 shown, preferably, a connecting belt 8 is provided on the inner side of the body 1. Both sides of the connecting belt 8 are respectively connected to both sides of the body 1, and the connecting belt 8 and the body 1 form an annular structure. Through the connecting belt 8, it is possible to pre-thread and wear when wearing, which is convenient for wearing the protective gear. Moreover, the connecting belt 8 provides additional support and stability for the wrist. When the wrist performs various complex movements, it effectively prevents the protective gear from shifting or loosening during the movement, thereby ensuring continuous protection of key structures such as the TFCC. This stability is particularly important for preventing secondary injuries caused by the loosening of the protective gear.
[0062] Secondly, the connecting belt 8 adopts an elastic bandage structure, and its elasticity is greater than that of the body 1. This design not only fully considers the different wrist sizes of different people, but also takes into account the dynamic changes of the wrist during movement. During actions such as flexion, extension, and rotation of the wrist, its shape and size will change slightly. The connecting belt 8 with an elastic bandage structure can flexibly stretch and contract with the movement of the wrist, which not only ensures the close fit of the protective gear but also avoids discomfort or compression caused to the wrist due to being too tight or too loose. This dynamic adaptability not only improves the wearing comfort but also further enhances the protective effect of the protective gear. In addition, the elastic design of the connecting belt 8 helps to disperse the impact force generated during the movement of the wrist. When the wrist is impacted by an external force, the elastic bandage can absorb part of the impact energy and reduce the direct impact on sensitive structures such as the TFCC, thereby playing a buffering and protective role. This is of great significance for preventing TFCC injuries and promoting the recovery after injury.
[0063] As Figure 1 , 2As shown, the sheet formed by the body 1, the first pressing belt 2, and the second pressing belt 3 is centrosymmetric. The upper and lower edges of the body 1 are concave curves, that is, the upper and lower edges of the body 1 have concave portions e. And continuous curves are formed with the upper and lower edges of the first pressing belt 2 and the second pressing belt 3. The left and right edges of the body 1 are inclined away from the pressing belts on the same side towards the vertical center line. The left and right edges of the body 1 are bevel structures h and are transitioned by arcs g with the pressing belts on the same side. This makes the body 1 roughly in a parallelogram structure, and the four corners present convex arc structures f.
[0064] It should be noted that the setting that the upper and lower edges of the body 1 are concave curves is firstly to better conform to the contour structure of the wrist. When the wrist moves, skin tissue accumulates at its bending part. The concave curve can avoid this part of the accumulated tissue, reduce friction, making the wearing comfort stronger and the fitting degree better. And the upper and lower edges are set simultaneously to meet the needs of both the left and right hands with one protective device.
[0065] The parallelogram structure enables each pressing belt to maintain a good stretching state. This characteristic greatly improves the wearing experience of the protective device, making the pressing belt closely fit the curved surface of the wrist joint, avoiding discomfort or sliding caused by wrinkles, and ensuring that the protective device can be stably fixed on the wrist. In addition, this structure also strengthens the root part of the pressing belt. As the key part connecting the body 1 and the wrist, the root part of the pressing belt bears relatively large tensile and shear forces. The triangular widening of the root part is achieved through the inclined design, thereby improving its ability to bear tensile and shear forces.
[0066] As Figure 2 、 4 As shown, inner vertical support belts 6 are provided on the left and right sides of the body 1. The inner vertical support belts 6 are spaced from the left and right edges of the body 1 by a certain distance. The two ends of the elastic bandage structure are wrapped inside the inner vertical support belts 6. The vertical support belts wrap the edges of the elastic bandage structure as a binding, improving the comfort inside the protective device. Moreover, the setting of the inner vertical support belts 6 significantly enhances the structural stability of the protective device.
[0067] Preferably, as Figure 1 、 7As shown in FIGS. 8 and 9, an outer vertical support band 7 is provided on the outer side of the main body corresponding to the inner vertical support band 6. Since the protective gear needs to withstand various dynamic forces from the wrist during wearing and use, the vertical support band, as a strengthening structure, can effectively disperse and resist these forces, preventing the protective gear from deforming or being damaged during movement, thereby improving the durability and service life of the protective gear. In addition, this design also helps to improve the protective effect of the protective gear. Due to the combined action of the vertical support band and the connecting band 8, the protective gear can fit more closely to the wrist, forming a stable support structure. This support structure can not only effectively prevent the wrist from being overly twisted or dislocated during movement, but also provide additional protection to key parts such as the triangular fibrocartilage complex (TFCC), reducing the risk of sports injuries.
[0068] In a preferred state, such as Figure 3 As shown, a support pad 11 is provided on the inner surface of the main body 1 at the upper and lower edges of the hollow portion 4. The upper support pad 11 has a convex arc-shaped structure surrounding the hollow portion. The support pad has the following functions: one is to enhance the support and limit of the joint; the second is to further enhance the degree of fitting of the protective gear to the TFCC area, further improving the protection; the third is to buffer the TFCC area during movement through the elasticity of the support pad.
[0069] Embodiment 2:
[0070] As Figures 10 - 12 shown, different from Embodiment 1, in Embodiment 2, the setting of the hollow portion on the main body is cancelled, and the ulnar styloid process A is wrapped and protected based on the elastic fabric material of the main body 1. Other technical solutions are the same as those in the embodiment. Embodiment 2 should include the relevant technical content in Embodiment 1.
[0071] The following only introduces the differences. As Figures 10 - 12 shown, in this embodiment, the wrist joint movement protective gear includes a main body and a first pressing band 2 and a second pressing band 3 respectively located on the left and right sides of the main body 1. The main body 1, the first pressing band 2 and the second pressing band 3 are formed by processing elastic fabrics with tensile tension;
[0072] The roots of the first pressing band 2 and the second pressing band 3 are respectively located on the upper and lower sides of the main body 1 and both extend horizontally outwards; the outer surface of the main body 1 has a rough surface structure, and the inner sides of the ends of the first pressing band 2 and the second pressing band 3 are provided with magic tape hook surfaces 5; when the first pressing band 2 and the second pressing band 3 are rotated around and connected to the main body 1 along their extending directions, there is a distance between the first pressing band 2 and the second pressing band 3 in the up and down directions, so that when in use, the first pressing band 2 and the second pressing band 3 are respectively located on the upper and lower sides of the ulnar styloid process A.
[0073] An introduction is given to a wrist joint movement protector provided by the present utility model. Specific examples are used in this article to elaborate on the principle and implementation manner of the present utility model. The description of the above embodiments is only used to help understand the present utility model and its core idea. It should be noted that for those of ordinary skill in the art of this technology, without departing from the principle of the present utility model, several improvements and modifications can still be made to the present utility model, and these improvements and modifications also fall within the protection scope of the claims of the present utility model.
Claims
1. Wrist joint movement protection device, characterized in that: It includes a main body, a first pressing belt and a second pressing belt respectively located on the left and right sides of the main body. The main body, the first pressing belt and the second pressing belt are formed by processing elastic fabrics with tensile tension; the roots of the first pressing belt and the second pressing belt are respectively located on the upper and lower sides of the main body and both extend horizontally outwards; the outer surface of the main body has a matte texture, and the inner sides of the ends of the first pressing belt and the second pressing belt are provided with magic tape hook surfaces; when the first pressing belt and the second pressing belt are wound around and connected to the main body along their extending directions, there is a distance between the first pressing belt and the second pressing belt in the up-and-down direction, so that the first pressing belt and the second pressing belt are respectively located on the upper and lower sides of the ulnar styloid process during use.
2. The wrist joint movement protection device according to claim 1, characterized in that: A hollowed-out part for exposing the ulnar styloid process is provided on the main body. The hollowed-out part deviates from the vertical center line of the main body and is located on one side of the main body, and the center of the hollowed-out part is located on the horizontal center line of the main body; The first pressing belt and the second pressing belt are wound around and connected to the main body along their extending directions. The first pressing belt is located above the hollowed-out part, and the second pressing belt is located below the hollowed-out part.
3. The wrist joint movement protector according to claim 1, characterized in that: A connecting belt is provided on the inner side of the main body. The two sides of the connecting belt are respectively connected to both sides of the main body, and the connecting belt and the main body form an annular structure; The connecting belt has an elastic bandage structure.
4. The wrist joint movement protection device according to claim 1, characterized in that: The sheet-like body formed by the main body, the first pressing belt and the second pressing belt is centrosymmetric; the upper and lower edges of the main body are concave curves and form continuous curves with the upper and lower edges of the first pressing belt and the second pressing belt.
5. The wrist joint movement protector according to claim 1, characterized in that: The left and right edges of the main body are inclined towards the vertical center line away from the pressing belt on the same side, and an arc transition is provided between the left and right edges of the main body and the pressing belt on the same side.
6. The wrist joint movement protector according to claim 3, wherein: Inner vertical support belts are provided on the left and right sides of the main body. The inner vertical support belts are spaced a certain distance from the left and right edges of the main body, and both ends of the elastic bandage structure are wrapped inside the inner vertical support belts.
7. The wrist joint movement protector according to claim 2, characterized in that: Support pads are provided on the inner surface of the main body at the upper and lower edges of the hollowed-out part.
8. The wrist joint movement protector according to claim 1, wherein: The main body, the first pressing belt and the second pressing belt are integrally processed from elastic fabrics with tensile tension into a sheet-like structure with equal thickness, and have continuous upper and lower surfaces.
9. Wrist joint movement protection device, characterized in that: It includes a main body, a first pressing belt and a second pressing belt respectively located on the left and right sides of the main body. The main body, the first pressing belt and the second pressing belt are integrally processed from elastic fabrics with tensile tension into a sheet-like structure with equal thickness; A connecting belt is provided on the inner side of the main body. The connecting belt has an elastic bandage structure. The two sides of the connecting belt are respectively connected to both sides of the main body, and the connecting belt and the main body form an annular structure; The roots of the first pressing belt and the second pressing belt are respectively located on the upper and lower sides of the main body and both extend horizontally outwards; the outer surface of the main body has a matte texture, and the inner sides of the ends of the first pressing belt and the second pressing belt are provided with magic tape hook surfaces; The sheet formed by the body, the first pressing belt, and the second pressing belt is centrosymmetric; the upper and lower edges of the body are concave curves, and form continuous curves with the upper and lower edges of the first pressing belt and the second pressing belt; the left and right edges of the body are inclined away from the pressing belt on the same side towards the vertical center line. When the first pressing belt and the second pressing belt are wound around and connected to the body along their extending directions, there is a distance between the first pressing belt and the second pressing belt in the up and down directions, so that the first pressing belt and the second pressing belt are respectively located on the upper and lower sides of the ulnar styloid process during use.
10. The wrist joint movement protector according to claim 9, characterized in that: A hollowed-out portion for exposing the ulnar styloid process is provided on the body. The hollowed-out portion deviates from the vertical center line of the body and is located on one side of the body. The center of the hollowed-out portion is located on the horizontal center line of the body; the first pressing belt and the second pressing belt are wound around and connected to the body along their extending directions. The first pressing belt is located above the hollowed-out portion, and the second pressing belt is located below the hollowed-out portion.
Citation Information
Patent Citations
Wrist guard capable of reducing training sprain degree
CN211211546U
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