Lower limb rehabilitation training sports equipment

By designing a lower limb rehabilitation training sports equipment including upper body lifting assembly and arm support assembly, the problem of high requirements for upper limb strength in the prior art is solved, and rehabilitation training for users with weak upper limb strength is achieved, which facilitates users to carry out stable standing and walking training, and improves the effect and efficiency of rehabilitation training.

CN120053254APending Publication Date: 2025-05-30JISHOU UNIVERSITY
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Patent Information

Application Number
CN202510195225.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

The existing walking rehabilitation training device requires users to use upper arm strength to support the entire body, which leads to high requirements for upper limb strength, making it inconvenient for users with weak upper limb strength to undergo rehabilitation training.

Method used

A lower limb rehabilitation and training sports equipment including a base, an L-shaped support plate, an upper body support assembly, an arm support assembly, a walking assist assembly and a controller are designed. The upper body lifting assembly and arm support assembly move through electric slide rails and gear transmission mechanisms. The controller adjusts the height of the assembly according to the user's specific height to reduce the dependence on upper limb strength.

Benefits of technology

It effectively reduces users' dependence on upper limb strength in rehabilitation training, so that users with weak upper limb strength can also conduct rehabilitation training smoothly, improves the personalization and flexibility of rehabilitation training, and enhances the effectiveness and efficiency of training.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to lower limb rehabilitation training sports equipment which comprises a base, an L-shaped supporting plate, an upper body lifting assembly, an arm supporting assembly, a walking assisting assembly and a controller. The L-shaped supporting plate is vertically arranged on the right side of the base, and the top of the L-shaped supporting plate is horizontally arranged and located above the base; an L-shaped supporting plate is arranged on the base, a seat located below the L-shaped supporting plate is arranged on the base, a first electric sliding rail is arranged at the bottom of a horizontal plate of the L-shaped supporting plate in the axial direction of the base, an upper body lifting assembly is arranged on the first electric sliding rail, and arm supporting assemblies located on the front side of the seat are arranged on the base in a bilateral symmetry mode. A walking assisting assembly located between the two arm supporting assemblies is arranged on the base, by designing the upper body lifting assembly and the arm supporting assemblies, dependence of a user on upper limb strength in rehabilitation training is effectively relieved, and the user with low upper limb strength can smoothly conduct rehabilitation training.
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Description

Technical Field

[0001] The present invention relates to rehabilitation training sports equipment, and more particularly to a lower limb rehabilitation training sports equipment. Background Art

[0002] Rehabilitation training refers to physical activities that are beneficial to the recovery or improvement of functions after injury. Appropriate physical activities play a positive role in the recovery of the injured area. Rehabilitation equipment mainly helps users carry out passive movements and daily activities, and is a device for promoting rehabilitation. The rehabilitation device can meet the daily passive activities of the upper and lower limbs of users. Therapists use some instruments to perform passive movements or manual training on the limb functions of users. Users can also use the instruments for autonomous training or training under the guidance of therapists, etc.

[0003] When the existing walking rehabilitation training device is in use, the user needs to use the strength of the upper arm to support the whole body. When walking, the walking assistance device needs to be moved forward one step, and then the whole body is supported by the supporting force of the upper limb, and then the lower limb is moved to the walking assistance device. This requires a relatively large amount of upper limb strength and is not convenient for users with weak upper limb strength to carry out rehabilitation training. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide a lower limb rehabilitation training sports equipment with complete functions and convenient operation.

[0005] The purpose of the present invention is to solve the problem that users need to use the strength of the upper arm to support the whole body, which is not convenient for users with weak upper limb strength to carry out rehabilitation training.

[0006] The technical solution for the present invention to solve the above technical problems is as follows:

[0007] A lower limb rehabilitation training sports equipment, characterized in that it includes a base, an L-shaped support plate, an upper body lifting component, an arm support component, a walking assistance component and a controller. A vertical L-shaped support plate is provided on the right side of the base. The top of the L-shaped support plate is horizontally arranged and located above the base. A seat is provided on the base and located below the L-shaped support plate. A first electric slide rail is arranged along the axial direction of the base at the bottom of the horizontal plate of the L-shaped support plate. An upper body lifting component is arranged on the first electric slide rail. The first electric slide rail is used to drive the upper body lifting component to move to a preset position directly above the seat. A plurality of straps extend downward from the upper body lifting component. Each of the plurality of straps can be wound and released. The plurality of straps are respectively fixed on two axillary supports. When the upper body lifting component is located at the top of the seat, the two axillary supports are respectively located on the left and right sides of the user sitting on the seat. The two axillary supports are used to lift the left and right armpit parts of the user. Arm support components are symmetrically arranged on the left and right on the base and located in front of the seat. A support block is slidably arranged on the arm support component. The support block can move back and forth along the axial direction of the base. The support block is used to move to a designated position to lift the forearms of the user's hands. A walking assistance component is provided on the base between the two arm support components. After the arm support component lifts the forearms of the user's hands, the upper body lifting component and the arm support component are respectively used to drive the axillary supports and the support blocks to rise to a preset height, and the upper body lifting component and the arm support component move forward to guide the user to stand and walk onto the walking assistance component. The walking assistance component is used to train the user to stand and walk stably. After the user finishes training, the upper body lifting component and the arm support component are used to move backward to a designated position, guide the user to step back to the front of the seat, and at the same time the axillary supports and the support blocks descend to the same height to guide the user to sit on the seat. The upper body lifting component and the arm support component return to the initial position;

[0008] The moving heights of the upper body lifting component and the arm support component can both be pre-adjusted and set by the controller according to the specific height of the user.

[0009] Further, the upper body lifting component includes a mounting frame, a rotating shaft, a gear transmission mechanism, a winding motor, a winding wheel, a strap and an axillary support. A mounting frame is horizontally arranged on the first electric slide rail. The mounting frame is horizontally arranged. A plurality of rotating shafts are arranged in parallel on the bottom plate of the mounting frame. The plurality of rotating shafts rotate synchronously through the gear transmission mechanism. A winding motor is arranged on one of the rotating shafts. A plurality of winding wheels are arranged on the rotating shaft. A plurality of through holes are provided on the mounting frame and are all located below the plurality of winding wheels. A strap is wound on the winding wheel. Each of the plurality of straps passes through the through hole and extends below the mounting frame and is respectively fixed to the two axillary supports. The winding motor is used to drive the plurality of winding wheels to wind or release the straps simultaneously through the gear transmission mechanism. The simultaneous winding or release of the plurality of straps can drive the axillary supports to rise or fall, so as to guide the user to stand or sit down.

[0010] Furthermore, the arm support assembly includes enclosures, a first electric telescopic rod, a second electric slide rail, a fixed support member, a second electric telescopic rod, a horizontal plate, a support block, and a grip rod. Two enclosures are symmetrically arranged on the base and located in front of the seat. At the center inside the enclosure, a first electric telescopic rod is provided. A fixed support member is sleeved outside the lifting end of the first electric telescopic rod. The top of the fixed support member is a rectangular plate parallel to the first electric slide rail. On the top of the rectangular plate of the fixed support member, a second electric slide rail parallel to the first electric slide rail is horizontally arranged. A support block is arranged on the second electric slide rail, and the support block is used to support the forearms of both hands of the rehabilitation user. The fixed support member is used to fixedly support the second electric slide rail. Two horizontal plates are symmetrically arranged inside the enclosure. Two second electric telescopic rods are hinged on both horizontal plates. The telescopic ends of the two second electric telescopic rods are both hinged to the fixed support member. The second electric telescopic rod is used to strengthen the stability of the first electric telescopic rod and the second electric slide rail. The area between the top of the enclosure and the fixed support member is covered with a dust cover. A groove for accommodating the forearm is formed at the top of the support block. A grip rod is vertically arranged inside the groove. When the forearms of the user are supported inside the groove and the hands are clenched to hold the grip rod, it is convenient to move along with the support block. A walking assistance component switch and a walking assistance component speed adjustment switch are arranged on the top of one support block and located in front of the groove. When the telescopic end of the first electric telescopic rod rises, the second electric telescopic rod extends accordingly to support the fixed support member. When the telescopic end of the first electric telescopic rod descends, the second electric telescopic rod retracts accordingly.

[0011] Furthermore, the walking assistance component includes a roller conveyor belt and a driving motor. The roller conveyor belt is horizontally arranged and located inside the base. The upper surface of the roller conveyor belt is flush with the upper surface of the base. A driving motor is arranged at the input end of the roller conveyor belt.

[0012] Furthermore, a controller is arranged on the L-shaped support plate. An upper body lifting component switch, an arm support component switch, a first electric slide rail switch, and a second electric slide rail switch are arranged on the controller. The controller is electrically connected to the walking assistance component switch, the walking assistance component speed adjustment switch, and the driving motor to form a circuit. The walking assistance component switch and the walking assistance component speed adjustment switch are in parallel. The controller forms a circuit with the upper body lifting component switch and the winding motor, and forms a circuit with the arm support component switch and the lifting rod. The controller is separately electrically connected to the first electric slide rail and the second electric slide rail.

[0013] Furthermore, a plurality of support rib plates are arranged at the corner of the L-shaped support plate.

[0014] The beneficial effects of the present invention are as follows: By designing the upper body lifting component and the arm support component, the dependence of the user on upper limb strength during rehabilitation training is effectively reduced, enabling users with weak upper limb strength to smoothly carry out rehabilitation training; the controller can adjust the heights of the upper body lifting component and the arm support component as needed to meet the needs of users of different heights, improving the personalization and flexibility of rehabilitation training; the design of the walking assistance component enables the user to carry out standing and walking training in a stable environment, helping to restore the user's walking function and improving the effect of rehabilitation training; through the centralized control of the controller, each component can work in coordination, simplifying the operation process of rehabilitation training and improving the training efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a three-dimensional structure diagram of the present invention;

[0016] Figure 2 is a left view of the present invention;

[0017] Figure 3 is a three-dimensional structure diagram of the upper body lifting component;

[0018] Figure 4 is a three-dimensional structure diagram of the arm support component;

[0019] Figure 5 is a sectional view of the arm support component.

[0020] In the drawings, the list of components represented by each reference numeral is as follows:

[0021] 1, base; 2, L-shaped support plate; 3, upper body lifting component; 301, mounting bracket; 302, rotating shaft; 303, gear transmission mechanism; 304, winding motor; 305, winding wheel; 306, back strap; 307, axillary support; 4, arm support component; 401, enclosure; 402, first electric telescopic rod; 403, second electric slide rail; 404, fixed support member; 405, second electric telescopic rod; 406, horizontal plate; 407, support block; 408, grip bar; 409, dust cover; 5, walking assistance component; 6, controller; 7, seat; 8, first electric slide rail; 9, support rib plate. DETAILED DESCRIPTION OF THE INVENTION

[0022] The principles and features of the present invention will be described below with reference to the accompanying drawings. The examples given are only for explaining the present invention and are not intended to limit the scope of the present invention.

[0023] As Figures 1-5As shown in the figure, a lower limb rehabilitation training sports equipment, characterized in that it includes a base 1, an L-shaped support plate 2, an upper body lifting component 3, an arm support component 4, a walking assistance component 5 and a controller 6. On the right side of the base 1, an L-shaped support plate 2 is vertically arranged. The top of the L-shaped support plate 2 is horizontally arranged and located above the base 1. A seat 7 is arranged on the base 1 and is located below the L-shaped support plate 2. Along the axial direction of the base 1, a first electric slide rail 8 is arranged at the bottom of the horizontal plate of the L-shaped support plate 2. An upper body lifting component 3 is arranged on the first electric slide rail 8. The first electric slide rail 8 is used to drive the upper body lifting component 3 to move to a preset position directly above the seat 7. A plurality of straps 306 extend downward from the upper body lifting component 3. All of the plurality of straps 306 can be wound and released. The plurality of straps 306 are respectively fixed on two armpit supports 307. When the upper body lifting component 3 is located at the top of the seat 7, the two armpit supports 307 are respectively located on the left and right sides of the user sitting on the seat 7. The two armpit supports 307 are used to lift the left and right armpit parts of the user. On the base 1, arm support components 4 are symmetrically arranged on the left and right and are located in front of the seat 7. A support block 407 is slidably arranged on the arm support component 4. The support block 407 can move back and forth along the axial direction of the base 1. The support block 407 is used to move to a designated position to lift the forearms of the user's hands. A walking assistance component 5 is arranged on the base 1 and is located between the two arm support components 4. After the arm support component 4 lifts the forearms of the user's hands, the upper body lifting component 3 and the arm support component 4 are respectively used to drive the armpit supports 307 and the support block 407 to rise to a preset height, and the upper body lifting component 3 and the arm support component 4 move forward to guide the user to stand and walk onto the walking assistance component 5. The walking assistance component 5 is used to train the user to stand and walk stably. After the user finishes training, the upper body lifting component 3 and the arm support component 4 are used to move backward to a designated position to guide the user to step back to the front side of the seat 7. At the same time, the armpit supports 307 and the support block 407 descend to the same height to guide the user to sit on the seat 7. The upper body lifting component 3 and the arm support component 4 return to the initial position;

[0024] The moving heights of the upper body lifting component 3 and the arm support component 4 can both be pre-adjusted and set by the controller 6 according to the specific height of the user.

[0025] As an implementation manner, the upper body lifting assembly 3 includes a mounting frame 301, a rotating shaft 302, a gear transmission mechanism 303, a winding motor 304, a winding wheel 305, a shoulder strap 306 and an axilla support 307. The mounting frame 301 is horizontally arranged on the first electric slide rail 8. The mounting frame 301 is horizontally arranged. A plurality of rotating shafts 302 are arranged in parallel on the bottom plate of the mounting frame 301. The plurality of rotating shafts 302 rotate synchronously through the gear transmission mechanism 303. A winding motor 304 is arranged on one of the rotating shafts 302. A plurality of winding wheels 305 are arranged on the rotating shaft 302. A plurality of through holes are formed in the mounting frame 301 and are all located below the plurality of winding wheels 305. The shoulder strap 306 is wound on the winding wheel 305. The plurality of shoulder straps 306 all penetrate through the through holes and extend below the mounting frame 301 and are respectively fixedly connected to the two axilla supports 307. The winding motor 304 is used to drive the plurality of winding wheels 305 to wind or release the shoulder strap 306 simultaneously through the gear transmission mechanism 303. The simultaneous winding or release of the plurality of shoulder straps 306 can drive the axilla support 307 to rise or fall, so as to guide the user to stand up or sit down.

[0026] As an implementation manner, the arm support assembly 4 includes a retaining wall 401, a first electric telescopic rod 402, a second electric slide rail 403, a fixed support 404, a second electric telescopic rod 405, a horizontal plate 406, a supporting block 407, and a grip rod 408. Two retaining walls 401 are symmetrically arranged on the base 1 and located on the front side of the seat 7. A first electric telescopic rod 402 is arranged at the center inside the retaining wall 401. A fixed support 404 is sleeved outside the lifting end of the first electric telescopic rod 402. The top of the fixed support is a rectangular plate parallel to the first electric slide rail 8. A second electric slide rail 403 parallel to the first electric slide rail 8 is horizontally arranged on the top rectangular plate of the fixed support 404. A supporting block 407 is arranged on the second electric slide rail 403. The supporting block 407 is used to hold the forearms of both hands of the rehabilitation user. The fixed support 404 is used to fixedly support the second electric slide rail 403. Two horizontal plates 406 are symmetrically arranged inside the retaining wall 401. A second electric telescopic rod 405 is hinged on each of the two horizontal plates 406. The telescopic ends of the two second electric telescopic rods 405 are both hinged to the fixed support 404. The second electric telescopic rod 405 is used to strengthen the stability of the first electric telescopic rod 402 and the second electric slide rail 403. The area between the top of the retaining wall 401 and the fixed support 404 is covered with a dust cover 409. A groove for accommodating the forearm is formed at the top of the supporting block 407. A grip rod 408 is vertically arranged inside the groove. When the forearms of the user are supported inside the groove and the hands are clenched to hold the grip rod 408, it is convenient to move along with the supporting block 407. A switch of the walking assistance assembly 5 and a speed adjustment switch of the walking assistance assembly 5 are arranged at the top of one supporting block 407 and located in front of the groove. When the telescopic end of the first electric telescopic rod 402 rises, the second electric telescopic rod 405 extends accordingly to support and fix the fixed support 404. When the telescopic end of the first electric telescopic rod 402 descends, the second electric telescopic rod 405 retracts accordingly.

[0027] As an implementation manner, the walking assistance assembly 5 includes a roller conveyor belt and a driving motor. The roller conveyor belt is horizontally arranged and located inside the base 1. The upper surface of the roller conveyor belt is flush with the upper surface of the base 1. A driving motor is arranged at the input end of the roller conveyor belt.

[0028] As an implementation manner, a controller 6 is provided on the L-shaped support plate 2. An upper body lifting component switch, an arm support component switch, a first electric slide rail switch, and a second electric slide rail switch are provided on the controller 6. The controller 6 is electrically connected to a walking assistance component switch, a walking assistance component speed adjustment switch, and a driving motor to form a circuit. The walking assistance component switch and the walking assistance component speed adjustment switch are in parallel. The controller 6 forms a circuit with the upper body lifting component switch and the winding motor 304, and forms a circuit with the arm support component 4 switch and the lifting rod. The controller 6 is separately and electrically connected to the first electric slide rail 8 and the second electric slide rail 403 respectively.

[0029] As an implementation manner, a plurality of support ribs 9 are provided at the corner of the L-shaped support plate 2.

[0030] The usage method of the present invention is as follows: First, the caregiver helps the user to sit on the seat 7 of the equipment. First, the caregiver controls the first electric slide rail 8 and the second electric slide rail 403 to drive the upper body lifting component 3 and the support block 407 to move towards the user respectively. Then, the winding motor 304 is started. The winding motor 304 rotates forward and drives a plurality of rotating shafts 302 to rotate through the gear transmission mechanism 303. The rotation of the plurality of rotating shafts 302 drives a plurality of winding wheels 305 to release the back straps 306 simultaneously. After the plurality of back straps 306 are released simultaneously, the axillary supports 307 are driven to descend to a suitable height. At the same time, the first electric telescopic rod 402 is started to drive the support block 407 to descend to a suitable height. The user passes the two arms through the plurality of back straps 306 so that the two axillary supports 307 respectively support the two armpit parts of the user. Then, place the forearms of both hands inside the groove of the support block 407 and hold the grip rod 408. Then, the caregiver controls the upper body lifting component 3 and the arm support component 4 to rise to a suitable height through the controller 6. When the upper body lifting component 3 rises, the winding motor 304 rotates reversely and drives a plurality of rotating shafts 302 to rotate through the gear transmission mechanism 303. The rotation of the plurality of rotating shafts 302 drives a plurality of winding wheels 305 to wind the back straps 306 simultaneously. The simultaneous winding of the plurality of back straps 306 drives the axillary supports 307 to rise. When the arm support component 4 rises, the telescopic end of the first electric telescopic rod 402 rises. The first electric telescopic rod 402 drives the second electric slide rail 403 and the support block 407 to rise, and smoothly lifts the user to a standing state. Then, the caregiver controls the first electric slide rail 8 and the second electric slide rail 403 to move forward simultaneously, guiding the user to walk onto the walking assistance component 5. Subsequently, the user presses the walking assistance component switch, and the roller conveyor belt starts to rotate, guiding the user to perform walking training. The user can adjust the walking speed according to his own training situation through the walking assistance component 5 speed adjustment button.

[0031] After the training is completed, the user presses the walking assistance component switch again, and the roller conveyor belt stops rotating. The caregiver controls the upper body lifting component 3 and the arm support component 4 to move backward, guiding the user to step back to the seat 7. Then the caregiver controls the upper body lifting component 3 and the arm support component 4 to descend, guiding the user to sit on the seat 7. Then the user raises and retracts both arms to disengage from the upper body lifting component 3 and the arm support component 4. Finally, the caregiver controls each component to return to the initial state to prepare for the next training. The appropriate heights of the upper body lifting component 3 and the arm support component 4 are determined by the caregiver according to the user's height and actual usage feeling.

[0032] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.

Claims

1. A sports equipment for lower limb rehabilitation training, characterized in that: The invention comprises a base (1), an L-shaped support plate (2), an upper body lifting component (3), an arm support component (4), a walking assist component (5) and a controller (6); an L-shaped support plate (2) is vertically arranged on the right side of the base (1); the top of the L-shaped support plate (2) is horizontally arranged and located above the base (1); a seat (7) is arranged on the base (1) and located below the L-shaped support plate (2); a first electric slide rail (8) is arranged on the bottom of the horizontal plate of the L-shaped support plate (2) along the axial direction of the base (1); the upper body lifting component (3) is arranged on the first electric slide rail (8); An electric slide rail (8) is used to drive the upper body lifting component (3) to move to a preset position directly above the seat (7); the upper body lifting component (3) has a plurality of shoulder straps (306) extending downward; the plurality of shoulder straps (306) can be rolled up and released; the plurality of shoulder straps (306) are respectively fixed on two armpit supports (307); when the upper body lifting component (3) is located at the top of the seat (7), the two armpit supports (307) are respectively located on the left and right sides of a user sitting on the seat (7); the two armpit supports (307) are used to lift the left and right armpits of the user; and the base (1) is symmetrically provided with An arm support assembly (4) is located on the front side of the seat (7), and a support block (407) is slidably arranged on the arm support assembly (4), and the support block (407) can move forward and backward along the axis direction of the base (1), and the support block (407) is used to move to a specified position to support the user's forearms, and the base (1) is provided with a walking assistance assembly (5) located between the two arm support assemblies (4), and the upper body support assembly (3) and the arm support assembly (4) are used to respectively drive the armpit support (307) and the support block (407) to rise after the arm support assembly (4) supports the user's forearms. When the user reaches a preset height, the upper body lifting component (3) and the arm support component (4) move forward to guide the user to stand and walk on the walking assistance component (5), wherein the walking assistance component (5) is used to train the user to stand and walk stably. After the user has completed the training, the upper body lifting component (3) and the arm support component (4) are used to move backward to a designated position to guide the user to retreat to the front side of the seat (7), while the armpit support (307) and the support block (407) are lowered to the same height to guide the user to sit on the seat (7), and the upper body lifting component (3) and the arm support component (4) return to their initial positions; The moving heights of the upper body lifting component (3) and the arm supporting component (4) can be pre-adjusted and set according to the specific height of the user through the controller (6).

2. A lower limb rehabilitation training sports equipment according to claim 1, characterized in that: The upper body lifting assembly (3) comprises a mounting frame (301), a rotating shaft (302), a gear transmission mechanism (303), a winding motor (304), a winding wheel (305), a shoulder strap (306) and an armpit support (307); the mounting frame (301) is horizontally arranged on the first electric slide rail (8); the mounting frame (301) is horizontally arranged; a plurality of rotating shafts (302) are arranged in parallel on the bottom plate of the mounting frame (301); the plurality of rotating shafts (302) rotate synchronously through the gear transmission mechanism (303); a winding motor (304) is arranged on one of the rotating shafts (302); a plurality of rotating shafts (302) are arranged on the rotating shaft (302); A plurality of winding wheels (305) are provided on the mounting frame (301), and a plurality of through holes are provided on the winding wheels (305), and a shoulder strap (306) is wound on the winding wheels (305). The plurality of shoulder straps (306) pass through the through holes and extend to the bottom of the mounting frame (301) and are respectively fixedly connected to two armpit supports (307). The winding motor (304) is used to drive the plurality of winding wheels (305) to simultaneously wind up or release the shoulder straps (306) through a gear transmission mechanism (303). The simultaneous winding up or releasing of the plurality of shoulder straps (306) can drive the armpit support (307) to rise or fall, thereby guiding the user to stand or sit down.

3. A lower limb rehabilitation training sports equipment according to claim 2, characterized in that: The arm support assembly (4) comprises a fence (401), a first electric telescopic rod (402), a second electric slide rail (403), a fixed support member (404), a second electric telescopic rod (405), a horizontal plate (406), a support block (407) and a grip rod (408); two fences (401) are symmetrically arranged on the base (1) and are located in front of the seat (7); the first electric telescopic rod (402) is arranged at the inner center of the fence (401); and a fixed support member is sleeved on the outer side of the lifting end of the first electric telescopic rod (402). The fixed support member (404) is a rectangular plate parallel to the first electric slide rail (8) at the top of the fixed support member (404), a second electric slide rail (403) parallel to the first electric slide rail (8) is horizontally arranged on the top of the rectangular plate of the fixed support member (404), a support block (407) is arranged on the second electric slide rail (403), and the support block (407) is used to support the forearms of the rehabilitation user, the fixed support member (404) is used to fix and support the second electric slide rail (403), and two horizontal plates (406) are symmetrically arranged on the inner side of the enclosure (401) The two horizontal plates (406) are both hinged with a second electric telescopic rod (405), and the telescopic ends of the two second electric telescopic rods (405) are both hinged with the fixed support (404). The second electric telescopic rod (405) is used to strengthen the stability of the first electric telescopic rod (402) and the second electric slide rail (403). The area between the top of the enclosure (401) and the fixed support (404) is covered with a dust cover (409). The top of the support block (407) is provided with a groove for accommodating a small arm, and the inner side of the groove is vertically provided with a A grip rod (408) is provided, and when the user's forearm is supported on the inner side of the groove, the user can hold the grip rod (408) with both hands in a fist to facilitate the movement of the support block (407). A walking assistance component (5) switch and a walking assistance component (5) speed adjustment switch are arranged on the top of one side of the support block (407) and are located on the front side of the groove. When the telescopic end of the first electric telescopic rod (402) rises, the second electric telescopic rod (405) is extended to support the fixed support member (404). When the telescopic end of the first electric telescopic rod (402) falls, the second electric telescopic rod (405) is retracted.

4. The lower limb rehabilitation training sports equipment according to claim 1, characterized in that: The walking assist component (5) comprises a roller conveyor belt and a drive motor. The roller conveyor belt is arranged horizontally and is located inside the base (1). The upper surface of the roller conveyor belt is flush with the upper surface of the base (1). The input end of the roller conveyor belt is provided with a drive motor.

5. The lower limb rehabilitation training sports equipment according to claim 3, characterized in that: The L-shaped support plate (2) is provided with a controller (6), and the controller (6) is provided with an upper body lifting component switch, an arm support component switch, a first electric slide rail switch and a second electric slide rail switch. The controller (6) is electrically connected with a walking assist component switch, a walking assist component speed adjustment switch and a driving motor to form a loop. The walking assist component switch and the walking assist component speed adjustment switch are connected in parallel. The controller (6) forms a loop with the upper body lifting component switch and the winding motor (304), and forms a loop with the arm support component (4) switch and the lifting rod. The controller (6) is electrically connected with the first electric slide rail (8) and the second electric slide rail (403) respectively.

6. The lower limb rehabilitation training sports equipment according to claim 1, characterized in that: A plurality of supporting ribs (9) are arranged at the corners of the L-shaped supporting plate (2).