Telescopic adjustable anti-dropping hernia belt

By introducing auxiliary adjustment and anti-return structures into the hernia belt, the adaptive positioning and self-locking positioning of the hernia belt are achieved, solving the problem of easy loosening of the fixed extended structure and improving the effectiveness of the hernia belt.

CN120284576APending Publication Date: 2025-07-11JIANGSU AIAIJIA HEALTH TECH CO LTD
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Patent Information

Application Number
CN202510698696.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-28
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

During the use of the existing hernia belt, the fixed extended structure is prone to loosening of the binding due to the active state, and it is impossible to effectively adjust the anti-detachment positioning after rapid adjustment, which has limitations in use.

Method used

A telescopic adjustable anti-detachment hernia belt is designed. Through the auxiliary adjustment structure and anti-return structure, the adaptive positioning and self-locking positioning of the movable telescopic binding belt are realized, including reserved components for fixed tooth blocks, resistance limiting parts and return springs, to ensure that the binding belt is not loose during use.

Benefits of technology

It realizes rapid adjustment of the hernia belt and self-positioning and anti-detachment, avoids loose binding, improves the practicality of the device and anti-detachment stability, and is convenient and stable in operation.

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Abstract

The invention discloses a telescopic adjustable anti-falling type hernia belt, and relates to the field of hernia belts, the telescopic adjustable anti-falling type hernia belt comprises an external butt joint piece, and the outer side of the external butt joint piece is in butt joint with a hernia belt body; a movable telescopic binding belt is wound on the inner side of the external butt joint piece, a movable butt joint piece is in butt joint with the inner side of the middle end of the external butt joint piece in a nested mode, and a built-in nesting piece is in butt joint with the outer side of the movable butt joint piece. According to the telescopic adjustable anti-falling type hernia belt, the movable butt joint piece is rotated according to the requirement of a user to drive the built-in embedding piece to synchronously rotate, the built-in embedding piece drives the movable telescopic binding belt which is in butt joint to conduct clockwise winding work, and after position adjustment is stably conducted through a self-locking structure, self-positioning anti-falling treatment is conducted; a traditional fixed extension structure is avoided, the situation that binding is loosened due to the movement state of a user after the binding position is adjusted is avoided, and then anti-disengaging positioning treatment after rapid adjustment is effectively carried out.
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Description

Technical Field

[0001] The present invention relates to the technical field of hernia belts, and specifically to a telescopic adjustable and anti - detachment hernia belt. Background Art

[0002] A hernia belt is a medical device used to assist in the treatment of hernias. It usually consists of a girdle, a pressure pad, etc. By applying pressure to the hernia protrusion site, it can relieve symptoms and prevent the condition from worsening. For example, in the patent of a new type of hernia belt with the publication number CN108392309A, the hernia belt includes a hernia belt body. The hernia belt body can be surrounded. The inner side of the hernia belt body includes more than one spring, and the end of the spring includes a sticking piece. Beneficial effects: Pioneeringly, the hernia belt is changed into a hernia belt that can adjust local pressure, that is, place the spring where extrusion is needed, and the spring provides the extrusion force, which will not harm the skin and makes people feel very comfortable. Another example is the patent of a new type of hernia belt with the publication number CN220988998U. It can adjust the pressure on the hernia according to the actual use of the patient, and can be applied to hernias of different sizes, improving the practicality. It includes a hernia belt and a mounting plate. One end of the hernia belt is provided with a connecting ring, the outer wall of the other end of the hernia belt is provided with a first hook surface of Velcro, the middle part of the outer wall of the hernia belt is provided with a loop surface of Velcro, the front end of the mounting plate is provided with several loop rings and connecting bands, the rear end of the mounting plate is provided with an airbag, the connecting band is provided with a second hook surface of Velcro, the bottom of the mounting plate is provided with a valve nozzle, the valve nozzle is communicated with the airbag, the loop rings and the connecting bands are both made of cloth material, the outside of the mounting plate is provided with a circle of cushion blocks, the cushion blocks are made of silica gel, and a sealing cover is installed on the valve nozzle. Another example is the patent of a pediatric hernia belt with the publication number CN216439395U, which includes a hernia belt body. The top of the hernia belt body fixes the shoulder strap through a buckle. Both sides of the hernia belt body are provided with connecting bands. The top of the connecting band on one side is fixedly connected with a connector. The inside of the connector is provided with an extrusion fixing mechanism for fixing the extension band. The extension band is located at the bottom end of the connecting band on the other side. The side of the extension band is provided with a toothed strip, and the side of the hernia belt body is provided with a recuperation mechanism. By designing the extrusion fixing mechanism, it can be automatically adjusted according to the body shape of the child when wearing the hernia belt for children. Most of the above - mentioned prior arts improve their overall structures. However, most of the existing hernia belts have a mostly fixed extension structure. After adjusting the binding position, it is very easy to loosen the binding due to the activity state, and then it is impossible to effectively perform the anti - detachment positioning process after rapid adjustment, so there are certain limitations in use. Summary of the Invention

[0003] The object of the present invention is to provide a telescopic adjustable anti - detachment hernia belt to solve the problem in the above - mentioned background technology that most fixed extension structures are prone to binding loosening due to the active state after adjusting the binding position, and thus cannot effectively perform anti - detachment positioning processing after rapid adjustment, and there are certain limitations in use.

[0004] To achieve the above object, the present invention provides the following technical solution: A telescopic adjustable anti - detachment hernia belt, including an external docking part, and a hernia belt body is docked on the outside of the external docking part; An active telescopic binding belt is wound around the inside of the external docking part. A movable docking part is nested and docked in the middle inner side of the external docking part, and an internal embedded kit is docked on the outside of the movable docking part. The internal embedded kit is arranged at the upper inner side of the external docking part, and the inner end of the active telescopic binding belt is mutually docked with the outside of the internal embedded kit. An auxiliary adjustment structure is arranged between the internal embedded kit and the active telescopic binding belt, and the telescopic state of the active telescopic binding belt is adaptively and positionally adjusted through the auxiliary adjustment structure.

[0005] Further, the auxiliary adjustment structure is provided with a reserved fixed tooth block assembly, and the reserved fixed tooth block assembly is fixedly docked on the inner side of the internal embedded kit. The reserved fixed tooth block assemblies are equally angularly distributed about the center point of the movable docking part, and there are reserved empty slots between the reserved fixed tooth block assemblies.

[0006] Further, a docking bearing part is fixedly connected to the middle of the bottom of the external docking part. A receiving reserved groove is opened in the inner side of the docking bearing part, and a docking connecting rod is docked in the inner side of the receiving reserved groove. A resisting limiting part is installed on the outside of the docking connecting rod, and the position of the resisting limiting part corresponds to that of the reserved empty slot.

[0007] Further, a second return spring is fixedly connected to the outside of the resisting limiting part, and the second return spring is mutually docked with the inner side of the receiving reserved groove. The resisting limiting parts are equally angularly distributed about the center point of the docking bearing part.

[0008] Further, the active telescopic binding belt can rotate clockwise along the inner side of the external docking part through the internal embedded kit, and the resisting limiting part on the inner side of the internal embedded kit is reversely clamped and docked with the reserved fixed tooth block assembly.

[0009] Further, the resisting limiting part forms an elastic structure along the inner side of the internal embedded kit through the second return spring, and the resisting limiting part is rotationally connected along the inner side of the receiving reserved groove through the docking connecting rod.

[0010] Further, an anti-return structure is provided between the movable docking member and the external docking member to adaptively control the positioning state of the movable telescopic binding belt through the anti-return structure. The anti-return structure is provided with a first return spring, and the first return spring is fixedly connected to the lower end of the external docking member, and the upper end of the first return spring corresponds to the lower end of the built-in inlay kit, and there is a non-contact state between the built-in inlay kit and the first return spring.

[0011] Further, the movable docking member drives the built-in inlay kit to slide up and down along the external docking member, and the built-in inlay kit forms an elastic structure along the lower end of the external docking member through the first return spring.

[0012] Further, the built-in inlay kit drives the reserved fixed tooth block assembly on the outside to slide up and down along the inside. When the reserved fixed tooth block assembly moves down to disengage from the positioning state with the contact limiting member, the reserved fixed tooth block assembly and the built-in inlay kit are in a reversely rotatable state.

[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: The telescopic adjustable anti-detachment hernia belt is provided with an auxiliary adjustment structure to adaptively position and adjust the telescopic state of the movable telescopic binding belt through the auxiliary adjustment structure. When the user wears the hernia belt body and the movable telescopic binding belt on the corresponding patient part through structures such as Velcro, the movable docking member can be rotated according to the user's needs to drive the built-in inlay kit to perform synchronous rotation work. The built-in inlay kit will drive the docked movable telescopic binding belt to perform clockwise winding work, and perform self-locking structure to stably adjust the position and then perform self-positioning anti-detachment treatment, avoiding the traditional fixed extension structure. After adjusting the binding position, it will not loosen due to the user's movement state, and thus effectively perform anti-detachment positioning treatment after rapid adjustment, improving the practicability of the device; Further, as the built-in inlay kit winds the movable telescopic binding belt, the reserved fixed tooth block assembly on its inner side will perform adaptive positioning treatment with the contacting contact limiting member. After winding, when the built-in inlay kit is forced to slip outwards, the reserved fixed tooth block assembly on its inner side will perform self-locking treatment through the reverse rotation state of the contact limiting member, so as to adaptively perform one-way rewinding type adjustment work and ensure its anti-detachment stability without the user's repeated manual positioning operation; Furthermore, an anti-return structure is provided, through which the positioning state of the movable telescopic binding belt is adaptively controlled. When it is necessary to loosen or disassemble the movable telescopic binding belt in the retracted state, it is only necessary to hold the movable docking piece and drive the built-in nested piece to press downward along the external docking piece, so that the built-in nested piece slides along the inner side of the external docking piece through the first return spring until the reserved fixed tooth block assembly on the outer side of the built-in nested piece moves down to the positioning state between the disengagement and the interference limit piece. The reserved fixed tooth block assembly and the built-in nested piece are in a state that can be reversed. The user can loosen or remove the positioning state between the hernia belt body and the movable telescopic binding belt, and the operation is convenient and stable. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a schematic diagram of the three-dimensional structure of the present invention; Figure 2 This is a schematic diagram of the three-dimensional structure of the hernia belt body of the present invention; Figure 3 It is a schematic diagram of the three-dimensional structure of the movable docking piece of the present invention; Figure 4 It is a schematic diagram of the three-dimensional structure of the interference limiter of the present invention; Figure 5 It is a schematic diagram of the three-dimensional structure of the external docking piece of the present invention; Figure 6 It is a schematic diagram of the three-dimensional structure of the docking bearing member of the present invention; Figure 7 For the present invention Figure 6 A schematic diagram of the partially enlarged structure; Figure 8 It is a schematic diagram of a partial three-dimensional structure of a built-in nesting part of the present invention; Figure 9 It is a schematic diagram of the three-dimensional structure of the movable telescopic binding belt of the present invention.

[0015] In the figure: 1. External docking part; 2. Hernia belt body; 3. Movable telescopic binding belt; 4. Movable docking part; 5. Docking bearing part; 6. First return spring; 7. Built-in nesting part; 8. Reserved fixed tooth block assembly; 9. Reserved empty slot; 10. Accommodating reserved slot; 11. Docking connecting rod; 12. Resistance limiter; 13. Second return spring. DETAILED DESCRIPTION

[0016] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0017] Embodiment 1: Please refer to Figures 1-6 and Figure 9 , the present invention provides the following technical solution: A telescopic and adjustable anti - detachment hernia belt, comprising an external docking member 1, a hernia belt body 2, a movable telescopic binding belt 3, a movable docking member 4, a docking bearing member 5, a first return spring 6, an internal embedded kit 7, a reserved fixed tooth block assembly 8, a reserved empty groove 9, a receiving reserved groove 10, a docking connecting rod 11, a resisting limiting member 12 and a second return spring 13. The hernia belt body 2 is docked on the outside of the external docking member 1; The movable telescopic binding belt 3 is wound around the inside of the external docking member 1. The movable docking member 4 is nested and docked on the inner side of the middle end of the external docking member 1, and the internal embedded kit 7 is docked on the outside of the movable docking member 4. And the internal embedded kit 7 is arranged at the upper inner end of the external docking member 1, and the inner end of the movable telescopic binding belt 3 is mutually docked with the outside of the internal embedded kit 7. An auxiliary adjustment structure is arranged between the internal embedded kit 7 and the movable telescopic binding belt 3, and the telescopic state of the movable telescopic binding belt 3 is adaptively positioned and adjusted through the auxiliary adjustment structure.

[0018] The auxiliary adjustment structure is provided with a reserved fixed tooth block assembly 8, and the reserved fixed tooth block assembly 8 is fixedly docked on the inner side of the built-in nesting part 7, and the reserved fixed tooth block assembly 8 is distributed at equal angles with respect to the center point of the movable docking part 4, and a reserved empty slot 9 is provided between the reserved fixed tooth block assemblies 8. The docking bearing member 5 is fixedly connected to the middle end of the bottom of the external docking part 1, and a reserved accommodating groove 10 is provided on the inner side of the docking bearing member 5, and a docking connecting rod 11 is docked on the inner side of the reserved accommodating groove 10, and a conflicting limiter 12 is installed on the outer side of the docking connecting rod 11, and the positions of the conflicting limiter 12 and the reserved empty slot 9 correspond to each other. A second return spring 13 is fixedly connected to the outer side of the conflicting limiter 12, and the second return spring 13 is docked with the inner side of the reserved accommodating groove 10, and the conflicting limiter 12 is distributed at equal angles with respect to the center point of the docking bearing member 5. The movable telescopic binding belt 3 is in a clockwise rotatable state along the inner side of the external docking part 1 through the built-in nested part 7, and the interference limiter 12 on the inner side of the built-in nested part 7 is reversely engaged and docked with the reserved fixed tooth block assembly 8. The interference limiter 12 forms an elastic structure along the inner side of the built-in nested part 7 through the second return spring 13, and the interference limiter 12 is rotatably connected along the inner side of the reserved accommodating groove 10 through the docking connecting rod 11. As the user wears the hernia belt body 2 and the movable telescopic binding belt 3 on the corresponding patient's part through structures such as Velcro, the movable docking piece 4 can be rotated according to the user's needs to drive the built-in nested piece 7 to rotate synchronously. The built-in nested piece 7 will drive the docked movable telescopic binding belt 3 to roll up clockwise, and the self-positioning anti-slipping treatment after position adjustment is stably performed through the self-locking structure, avoiding the traditional fixed extension structure. After adjusting the binding position, the binding will not be loose due to the user's activity state, and the anti-slipping positioning treatment after rapid adjustment can be effectively performed. As the built-in nested piece 7 rolls up the movable telescopic binding belt 3, the reserved fixed tooth block assembly 8 on its inner side will be adaptively positioned with the contacting interference limiter 12. After rolling up, if the built-in nested piece 7 is forced to slide outward, the reserved fixed tooth block assembly 8 on its inner side will be self-locked through the reverse rotation state of the interference limiter 12, thereby adaptively performing unidirectional retractable adjustment work, ensuring its anti-slipping stability, and no repeated manual positioning operation by the user is required.

[0019] Example 2: Please refer to Figures 6-9 On the basis of the first embodiment, an anti-return structure is also disclosed, and its specific structure is as follows: An anti-return structure is provided between the movable docking member 4 and the external docking member 1, and the positioning state of the movable telescopic binding belt 3 is adaptively controlled by the anti-return structure; The anti-return structure is provided with a first return spring 6, and the first return spring 6 is fixedly connected to the lower end of the external docking member 1, and the upper end of the first return spring 6 corresponds to the lower end of the internal nesting member 7, and the internal nesting member 7 is in a non-contact state with the first return spring 6. The movable docking member 4 drives the internal nesting member 7 to slide up and down along the external docking member 1, and the internal nesting member 7 forms an elastic structure along the lower end of the external docking member 1 through the first return spring 6. The built-in nested part 7 drives the reserved fixed tooth block assembly 8 on the outside to slide up and down along the inner side. When the reserved fixed tooth block assembly 8 moves down to the positioning state between the disengagement and the interference limit piece 12, the reserved fixed tooth block assembly 8 and the built-in nested part 7 are in a reversible rotation state. When it is necessary to loosen or disassemble the retracted state movable telescopic binding belt 3, it is only necessary to hold the movable docking part 4 to drive the built-in nesting part 7 to press downward along the external docking part 1, so that the built-in nesting part 7 slides along the inner side of the external docking part 1 through the first return spring 6, until the reserved fixed tooth block assembly 8 on the outside of the built-in nesting part 7 moves down to the positioning state between the disengagement and the interference limit piece 12, the reserved fixed tooth block assembly 8 and the built-in nesting part 7 are in a reversible rotation state, and the user can loosen or remove the positioning state between the hernia belt body 2 and the movable telescopic binding belt 3.

[0020] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "connected" and "connection" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0021] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A telescopic and adjustable anti - detachment hernia belt, including an external docking member (1), and a hernia belt body (2) is docked on the outside of the external docking member (1); It is characterized in that: An active telescopic binding belt (3) is wound around the inner side of the external docking member (1). An active docking member (4) is nested and docked at the middle - inner side of the external docking member (1). An internal embedded kit (7) is docked on the outside of the active docking member (4). The internal embedded kit (7) is arranged at the upper - inner side of the external docking member (1). The inner end of the active telescopic binding belt (3) is mutually docked with the outside of the internal embedded kit (7). An auxiliary adjustment structure is arranged between the internal embedded kit (7) and the active telescopic binding belt (3), and the telescopic state of the active telescopic binding belt (3) is adaptively positioned and adjusted through the auxiliary adjustment structure.

2. The telescopic adjustable anti - detachment hernia belt according to claim 1, characterized in that: The auxiliary adjustment structure is provided with a reserved fixed tooth block assembly (8), and the reserved fixed tooth block assembly (8) is fixedly docked on the inner side of the internal embedded kit (7). The reserved fixed tooth block assembly (8) is distributed at equal angles about the center point of the active docking member (4), and a reserved empty slot (9) is arranged between the reserved fixed tooth block assemblies (8) from each other.

3. The telescopic and adjustable anti - detachment hernia belt according to claim 2, characterized in that: A docking bearing member (5) is fixedly connected to the middle - bottom of the external docking member (1). A receiving reserved groove (10) is opened on the inner side of the docking bearing member (5). A docking connecting rod (11) is docked on the inner side of the receiving reserved groove (10). A resisting limiting member (12) is installed on the outside of the docking connecting rod (11), and at the same time, the position of the resisting limiting member (12) corresponds to that of the reserved empty slot (9).

4. The telescopic adjustable anti - detachment hernia belt according to claim 3, characterized in that: A second return spring (13) is fixedly connected to the outside of the resisting limiting member (12), and the second return spring (13) is mutually docked with the inner side of the receiving reserved groove (10). The resisting limiting members (12) are distributed at equal angles about the center point of the docking bearing member (5).

5. The telescopic adjustable anti - shedding hernia belt according to claim 4, characterized in that: The active telescopic binding belt (3) can rotate clockwise along the inner side of the external docking member (1) through the internal embedded kit (7), and the resisting limiting member (12) on the inner side of the internal embedded kit (7) is reversely clamped and docked with the reserved fixed tooth block assembly (8).

6. The telescopic and adjustable anti - shedding hernia belt according to claim 5, characterized in that: The resisting limiting member (12) forms an elastic structure along the inner side of the internal embedded kit (7) through the second return spring (13), and the resisting limiting member (12) is rotationally connected along the inner side of the receiving reserved groove (10) through the docking connecting rod (11).

7. The telescopic adjustable anti - shedding hernia belt according to claim 4, characterized in that: An anti - return structure is arranged between the active docking member (4) and the external docking member (1), and the positioning state of the active telescopic binding belt (3) is adaptively controlled through the anti - return structure; The anti - return structure is provided with a first return spring (6), and the first return spring (6) is fixedly connected to the lower end of the external docking member (1). The upper end of the first return spring (6) corresponds to the lower end position of the internal embedded kit (7), and a non - contact state exists between the internal embedded kit (7) and the first return spring (6).

8. The telescopic adjustable anti - detachment hernia belt according to claim 7, characterized in that: The movable docking member (4) drives the internal nesting member (7) to slide up and down along the external docking member (1), and the internal nesting member (7) forms an elastic structure along the lower end of the external docking member (1) through the first return spring (6).

9. The telescopic adjustable anti - detachment hernia belt according to claim 8, wherein: The built-in nesting member (7) drives the outer reserved fixed tooth block assembly (8) to slide up and down along the inner side, and when the reserved fixed tooth block assembly (8) moves down to a positioning state between the disengagement and the abutment limit member (12), the reserved fixed tooth block assembly (8) and the built-in nesting member (7) are in a reversible rotation state.

Citation Information

Patent Citations

  • Novel hernia belt

    CN108392309A

  • Pediatric hernia belt

    CN216439395U

  • A new type of hernia belt

    CN220988998U