Auxiliary rehabilitation walker
By designing an auxiliary rehabilitation walking machine including foot covers, limiting components and fixed components, the problem that existing walking machines cannot be customized is solved, personalized support and protection for patients with different sizes is achieved, and the patient's gait and walking ability are significantly improved.
Patent Information
- Application Number
- CN202420990969.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-09
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-05-09
AI Technical Summary
Existing walkers cannot be customized for patients of different sizes, and cannot effectively solve the walking difficulties of each patient.
An auxiliary rehabilitation walking device is designed, including foot covers, limiting components and fixing components. The carbon fiber inner bottom plate is connected to the foot cover by a sticky plate, providing a stable support structure; the ply plate and bent strips are used to bind the soles of the feet; and the straps are used to bind the calf to provide additional support and protection.
The walker can be adjusted according to the patient's specific needs, providing customized support and protection, helping to improve gait, relieve pain, prevent muscle atrophy and joint stiffness, and promote recovery of injured areas.
Smart Images

Figure CN223009410U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of walkers, in particular to an auxiliary rehabilitation walker. Background Art
[0002] Soft tissue injuries, ligament injuries, bone fractures, and joint dislocations in a patient's feet may cause local soft tissue damage, affecting the patient's walking and activities. When assisting the patient in rehabilitation, an auxiliary rehabilitation walker is needed. A walker is a tool for assisting walking, which can help patients with limited mobility to recover. Most of the existing walkers are divided into 5 models according to size, and it is impossible to customize for each patient with different size requirements. Therefore, we propose an auxiliary rehabilitation walker to solve the problems mentioned above. Content of the Utility Model
[0003] In order to overcome the problem that most of the existing walkers are divided into 5 models according to size and it is impossible to customize for each patient with different size requirements.
[0004] The technical solution of the utility model is: an auxiliary rehabilitation walker, including a foot sleeve, a limiting component, and a fixing component; a limiting component for connecting and fixing the sole of the foot to the foot sleeve is installed at the lower end of the foot sleeve, and a fixing component for binding and supporting the leg is installed above the foot sleeve.
[0005] Preferably, the carbon fiber inner bottom plate is connected to the foot sleeve by an adhesive plate to ensure a more secure connection between the carbon fiber inner bottom plate and the foot sleeve, prevent accidental detachment during use, and at the same time provide a stable support structure, so that the injured foot maintains the correct posture, helps patients with walking disabilities improve their gait and relieve pain, and can correct or reduce gait abnormalities, prevent unnecessary movement and sprains, help disperse the impact on the foot, use the splint combined with the auxiliary plate to connect the bending strip to form a bending binding of the sole of the foot when stepping on the upper end of the foot sleeve, which is convenient for the user to independently wear and remove, provides stable support and support for the injured foot, reduces pain and discomfort, prevents further muscle atrophy and joint stiffness, provides additional movement control by correcting irregular movement patterns to help improve the patient's gait and walking ability, provides additional support and protection by tying the calf with a strap, which is beneficial to the recovery of the injured tissue, and at the same time the tying of the strap can be adjusted according to the needs of the user to achieve the best support and comfort, uses the guard plate to connect the limiting plate and tie it to the outside of the calf, shapes it after softening the calf fixing sleeve with hot air according to the patient's foot shape, and combines with the foot sleeve to assist in bearing weight, providing stable and uniform support for the injured part, effectively reducing the pressure on the injured part.
[0006] Preferably, the limiting component includes a carbon fiber inner bottom plate, an adhesive plate, a clamping plate, a bending strip and a binding strap. The carbon fiber inner bottom plate is laid at the lower end of the foot sleeve. An adhesive plate is arranged between the carbon fiber inner bottom plate and the foot sleeve. The carbon fiber inner bottom plate is fixedly connected to the foot sleeve through the adhesive plate. By using the adhesive plate to connect the carbon fiber inner bottom plate and the foot sleeve, the connection between the carbon fiber inner bottom plate and the foot sleeve is made more firm, preventing accidental detachment during use. At the same time, a stable support structure is provided, enabling the injured foot to maintain the correct posture, preventing unnecessary movement and sprains, helping to disperse the impact and pressure received by the foot, and reducing the direct pressure on the injured part.
[0007] Preferably, clamping plates are symmetrically arranged at the outer ends of the carbon fiber inner bottom plate. A bending strip is arranged between the clamping plates and the carbon fiber inner bottom plate. By using the clamping plates combined with the secondary plates to connect the bending strip, when the foot steps on the upper end of the foot sleeve, the sole of the foot is bent and bound, which is convenient for the user to independently wear and remove, provides stable support and support for the injured foot, helps to relieve foot pressure, reduces pain and discomfort, and speeds up the recovery process.
[0008] Preferably, the bending strip is arranged around the lower end of the carbon fiber inner bottom plate, and the clamping plate is fixedly connected to the clamping sleeve through the bending strip.
[0009] Preferably, the binding strap is located at the rear end of the carbon fiber inner bottom plate. Multiple groups of connection holes are opened at the end of the binding strap. By using the binding strap to tie the calf, additional support and protection are provided, which is beneficial to the recovery of the injured tissue, reduces the pressure and burden on the injured part. At the same time, the binding of the binding strap can be adjusted according to the needs of the user to achieve the best support and comfort, ensuring that the injured part is properly protected.
[0010] Preferably, the fixing component includes a guard plate, a calf fixing sleeve, a limiting plate and a pressing plate. The guard plate is located above the foot sleeve. A limiting plate is arranged at the rear end of the guard plate. The binding strap passes through the limiting plate and extends into the inside of the limiting plate. By using the guard plate to connect the limiting plate and tie it to the outside of the calf, combined with the foot sleeve for auxiliary load-bearing, stable and uniform support for the injured part is provided, effectively reducing the pressure on the injured part, preventing further injury and sprain, reducing the possibility of the injured part being impacted and collided by the outside world, and being beneficial to promoting the recovery of the injured area.
[0011] Preferably, the pressing plate is located behind the guard plate. A plug is arranged inside the pressing plate. The pressing plate is fixedly connected to the binding strap by inserting the plug into the connection hole. By using the limiting plate to connect the plug to fix the binding strap, the connection with the calf part is ensured to be tight, reducing the shaking and falling off during use.
[0012] The beneficial effects of the present utility model:
[0013] 1. Compared with traditional walkers, by using an adhesive plate to connect the carbon fiber inner sole and the foot sleeve, the connection between the carbon fiber inner sole and the foot sleeve is ensured to be more firm, preventing accidental detachment during use. At the same time, a stable support structure is provided, enabling the injured foot to maintain the correct posture, helping patients with walking disabilities improve their gait and relieve pain. Meanwhile, it can correct or reduce gait abnormalities, prevent unnecessary movement and sprains, help disperse the impact on the foot, and use the splint combined with the auxiliary plate to connect the bending strip to form a bending binding on the sole of the foot when stepping on the upper end of the foot sleeve, facilitating independent wearing and removal by the user, providing stable support and support for the injured foot, reducing pain and discomfort, preventing further muscle atrophy and joint stiffness, and providing additional movement control by correcting irregular movement patterns to help improve the patient's gait and walking ability.
[0014] 2. Bind the calf with a strap to provide additional support and protection, which is beneficial to the recovery of injured tissues. At the same time, the binding of the strap can be adjusted according to the needs of the user to achieve the best support and comfort. Connect the guard plate to the limit plate and bind it to the outside of the calf. After softening the calf fixing sleeve with hot air according to the patient's foot shape and then shaping it, combine it with the foot sleeve to assist in bearing weight, providing stable and uniform support for the injured part, and effectively reducing the pressure on the injured part. Brief Description of the Drawings
[0015] Figure 1 It is a schematic diagram of the overall structure of the present utility model;
[0016] Figure 2 It is a schematic diagram of the carbon fiber inner sole structure of the present utility model;
[0017] Figure 3 It is a schematic diagram of the limit component structure of the present utility model;
[0018] Figure 4 It is a schematic diagram of the fixing component structure of the present utility model.
[0019] Description of the reference numerals: 1. Foot sleeve; 2. Limit component; 201. Carbon fiber inner sole; 202. Adhesive plate; 203. Splint; 204. Bending strip; 205. Strap; 206. Connection hole; 3. Fixing component; 301. Guard plate; 302. Calf fixing sleeve; 303. Limit plate; 304. Pressing plate. Detailed Description of the Preferred Embodiment
[0020] The present utility model will be further described below in conjunction with the drawings and embodiments.
[0021] Please refer to Figures 1-4, the present utility model provides an embodiment: an auxiliary rehabilitation walker, which includes a foot sleeve 1, a limiting component 2 and a fixing component 3; a limiting component 2 for connecting and fixing the sole of the foot to the foot sleeve 1 is installed at the lower end of the foot sleeve 1, and a fixing component 3 for binding and supporting the leg is installed above the foot sleeve 1.
[0022] Please refer to Figures 1-2 , in this embodiment, the limiting component 2 includes a carbon fiber inner bottom plate 201, an adhesive plate 202, a clamping plate 203, a bending strip 204 and a binding strap 205. The carbon fiber inner bottom plate 201 is laid at the lower end of the foot sleeve 1. An adhesive plate 202 is provided between the carbon fiber inner bottom plate 201 and the foot sleeve 1. The carbon fiber inner bottom plate 201 is fixedly connected to the foot sleeve 1 through the adhesive plate 202. By using the adhesive plate 202 to connect the carbon fiber inner bottom plate 201 and the foot sleeve 1, it ensures a more firm connection between the carbon fiber inner bottom plate 201 and the foot sleeve 1, prevents accidental detachment during use, and at the same time provides a stable support structure, enabling the injured foot to maintain the correct posture, preventing unnecessary movement and sprains, helping to disperse the impact and pressure received by the foot, reducing the direct pressure on the injured part. Symmetric clamping plates 203 are provided at the outer ends of the carbon fiber inner bottom plate 201. A bending strip 204 is provided between the clamping plate 203 and the carbon fiber inner bottom plate 201. By using the clamping plate 203 combined with the auxiliary plate to connect the bending strip 204 to form a bending and binding of the sole when the foot steps on the upper end of the foot sleeve 1, it is convenient for the user to independently wear and remove, provides stable support and support for the injured foot, helps to relieve the foot pressure, reduce pain and discomfort, and accelerate the rehabilitation process.
[0023] Please refer to Figures 1-3 , in this embodiment, the bending strip 204 is arranged around the lower end of the carbon fiber inner bottom plate 201. The clamping plate 203 is fixedly connected to the jacket through the bending strip 204. The binding strap 205 is located at the rear end of the carbon fiber inner bottom plate 201. Multiple sets of connection holes 206 are provided at the end of the binding strap 205. By using the binding strap 205 to bind the calf, it provides additional support and protection, is beneficial to the recovery of the injured tissue, reduces the pressure and burden on the injured part, and at the same time the binding of the binding strap 205 can be adjusted according to the needs of the user to achieve the best support and comfort, ensuring that the injured part is properly protected.
[0024] Please refer to Figures 2-4The support leg 302 is provided with a stopper 304, and the support leg 303 is provided with a stopper 305. The support leg 302 is provided with a stopper 305, and the support leg 303 is provided with a stopper 306. The support leg 302 is provided with a stopper 306, and the support leg 303 is provided with a stopper 307. The support leg 302 is provided with a stopper 305, and the support leg 303 is provided with a stopper 307. The support leg 302 is provided with a stopper 305, and the support leg 303 is provided with a stopper 306. The support leg 302 is provided with a stopper 306 ...
[0025] When working, firstly, select the foot cover 1 and the carbon fiber inner bottom plate 201 suitable for the patient, and use the adhesive plate 202 to stick the carbon fiber inner bottom plate 201 and the foot cover 1 to ensure that the connection between the carbon fiber inner bottom plate 201 and the foot cover 1 is more firm to prevent accidental disengagement during use. At the same time, a stable support structure is provided to keep the injured foot in the correct posture, prevent unnecessary movement and sprains, help disperse the impact and pressure on the foot, and reduce direct pressure on the injured part. Secondly, use the strap 205 to penetrate the inside of the guard plate 301 and fix it preliminarily with the limit plate 303, adjust the length of the strap 205 to the specified position, and use the pressure plate 304 in combination with the pin to plug it into the connection hole. A fixing strap 205 is provided inside 206 to ensure a tight connection with the calf area and reduce shaking and falling off during use. After the structure is adjusted, the splint 203 and the sub-plate are affected by the pressure of the sole of the foot, and are bent to the instep in combination with the bending strip 204 for binding, so that the user can wear and remove the splint independently, provide stable support and support for the injured foot, help reduce foot pressure and pain, correct or reduce gait abnormalities, prevent unnecessary movement and sprains, provide stable support and support for the injured foot, reduce pain and discomfort, prevent further muscle atrophy and joint stiffness, and provide additional movement control by correcting irregular movement patterns to help improve the patient's gait and walking ability.
[0026] After the sole of the foot is fixed by the splint 203, the protective plate 301 is used to connect the limit plate 303 and bind it to the outside of the calf. The calf fixing sleeve 302 is softened by hot air according to the patient's foot shape and then reshaped. It is combined with the foot sleeve 1 for auxiliary load-bearing, providing stable and uniform support for the injured part, which is conducive to promoting the recovery of the injured area. At the same time, the binding strap 205 can be adjusted according to the needs of the user to achieve the best support and comfort, ensure that the injured part is properly protected, and realize auxiliary rehabilitation of the patient's walking.
[0027] Through the above steps, by using the adhesive plate 202 to connect the carbon fiber inner sole plate 201 and the foot sleeve 1, the connection between the carbon fiber inner sole plate 201 and the foot sleeve 1 is ensured to be more firm, preventing accidental detachment during use. At the same time, a stable support structure is provided, enabling the injured foot to maintain the correct posture, helping walking disorder patients improve their gait and relieve pain. Meanwhile, it can correct or alleviate abnormal gait, prevent unnecessary movement and sprains, help disperse the impact on the foot. By using the splint 203 combined with the secondary plate to connect the bending strip 204 to form a bending binding on the sole of the foot when the foot steps on the upper end of the foot sleeve 1, it is convenient for the user to independently wear and remove, providing stable support and support for the injured foot, reducing pain and discomfort, preventing further muscle atrophy and joint stiffness. By correcting irregular movement patterns, providing additional movement control to help improve the patient's gait and walking ability. By bundling the calf with the strap 205, providing additional support and protection, which is beneficial to the recovery of the injured tissue. At the same time, the bundling of the strap 205 can be adjusted according to the user's needs to achieve the best support and comfort. Using the protection plate 301 to connect the limit plate 303 and bundling it to the outside of the calf, shaping it after softening the calf fixing sleeve 302 with hot air according to the patient's foot shape, and combining with the foot sleeve 1 for auxiliary load-bearing, providing stable and uniform support for the injured part, effectively reducing the pressure on the injured part.
[0028] The embodiments of the present utility model have been described in detail above in conjunction with the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the purpose of the present utility model.
Claims
1. An auxiliary rehabilitation walker, comprising a foot cover (1); characterized in that: The foot cover (1) further comprises a limiting component (2) and a fixing component (3); the lower end of the foot cover (1) is provided with a limiting component (2) for connecting and fixing the sole of the foot to the foot cover (1); the upper part of the foot cover (1) is provided with a fixing component (3) for binding and supporting the leg; the limiting component (2) comprises a carbon fiber inner bottom plate (201), an adhesive plate (202), a splint (203), a bending strip (204) and a binding strap (205); the lower end of the foot cover (1) is provided with a carbon fiber inner bottom plate (201); an adhesive plate (202) is provided between the carbon fiber inner bottom plate (201) and the foot cover (1); 2), the carbon fiber inner bottom plate (201) is fixedly connected to the foot cover (1) through an adhesive plate (202), a clamping plate (203) is symmetrically arranged at the outer end of the carbon fiber inner bottom plate (201), a bending strip (204) is arranged between the clamping plate (203) and the carbon fiber inner bottom plate (201), the bending strip (204) is arranged around the lower end of the carbon fiber inner bottom plate (201), the clamping plate (203) is fixedly connected to the clamping cover through the bending strip (204), a binding belt (205) is located at the rear end of the carbon fiber inner bottom plate (201), and a plurality of connection holes (206) are provided at the end of the binding belt (205).
2. The auxiliary rehabilitation walker according to claim 1, characterized in that: The fixing assembly (3) comprises a guard plate (301), a calf fixing sleeve (302), a limiting plate (303) and a pressing plate (304); the guard plate (301) is located above the foot sleeve (1); a limiting plate (303) is provided at the rear end of the guard plate (301); and a binding belt (205) passes through the limiting plate (303) and extends to the inside of the limiting plate (303).
3. The auxiliary rehabilitation walker according to claim 2, characterized in that: The pressing plate (304) is located behind the guard plate (301), and a latch is provided inside the pressing plate (304). The pressing plate (304) is fixedly connected to the binding belt (205) by inserting the latch into the connecting hole (206).