Exercising frame for neurology department
By combining the bottom support mechanism, top support mechanism, and connecting mechanism, the problem of existing exercise frames being unable to adapt to different patient body shapes is solved. It enables flexible adjustment of height and angle, improves the adaptability and stability of the exercise frame, and enhances the exercise effect and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2026-03-20
AI Technical Summary
Existing neurological exercise frames cannot fully adapt to the different body types and exercise needs of patients, resulting in limited applicability and effectiveness.
The design incorporates a combination of bottom support mechanism, top support mechanism, adjustment mechanism, and connecting mechanism to achieve flexible adjustment of height and angle, enhance structural stability and load-bearing capacity, and provide a personalized exercise experience.
The adaptability and stability of the exercise frame have been improved, and it can be personalized according to the patient's height, body type and exercise needs, thereby enhancing the exercise effect and safety.
Smart Images

Figure CN224008995U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of postoperative recovery technology in psychiatry, and more specifically, to an exercise frame for neurology. Background Technology
[0002] The purpose of designing exercise racks for neurology is to meet the specific needs of neurology patients during rehabilitation training. These patients often experience muscle weakness and motor dysfunction due to their illness, thus requiring a safe, effective, and personalized exercise platform to help them restore muscle function and improve their quality of life.
[0003] Many exercise racks are equipped with adjustment mechanisms, such as height and angle adjustable top supports, to accommodate different patients' heights and exercise needs. However, some exercise racks may be designed too rigidly to fully adapt to different patients' body types and exercise requirements. This may limit the applicability and effectiveness of the exercise rack.
[0004] To address the aforementioned problems, this application provides a training frame for neurology. Utility Model Content
[0005] The present application provides a neurological exercise frame with the following technical solution:
[0006] A neurological exercise frame includes four bottom support mechanisms. Each bottom support mechanism has a top support mechanism at its top. Each top support mechanism has an adjustment mechanism extending through its outer wall at the bottom. The top support mechanisms are connected to each other through the adjustment mechanisms. Each bottom support mechanism has a connecting mechanism between its counterparts.
[0007] Furthermore, the bottom support mechanism includes a bottom support rod, the outer wall of which is provided with a sliding groove, and the outer wall of which is provided with evenly distributed slots between the sliding grooves, and the bottom of which is provided with a bottom pad.
[0008] Furthermore, the top support mechanism includes a top support rod, with through holes at the bottom of the outer wall of each top support rod, a connector at the top of each top support rod, and a crossbar passing through each of the connectors. Both ends of the crossbar are provided with anti-collision bends.
[0009] Further, the adjusting mechanism comprises a first half moon buckle, the first half moon buckle is half moon-shaped, the inner wall of the first half moon buckle is provided with a clamping block relative to each other, one side of the first half moon buckle is provided with a second half moon buckle, the second half moon buckle is provided with an inner cannula close to one side of the first half moon buckle, the outer side of the first half moon buckle away from the second half moon buckle is provided with an adjusting bolt at the middle position, and the adjusting bolt penetrates the inner cannula, and the inner cannula is located in the perforation.
[0010] Further, the connecting mechanism comprises a fixed ring, one side of the outer wall of the fixed ring is provided with a first connecting rod, one end of the first connecting rod away from the fixed ring is rotatably connected with a second connecting rod, the second connecting rod is provided with a buckle half moon ring away from one end of the first connecting rod, and the buckle half moon ring is half moon-shaped and clamped with the outer wall top of the bottom support rod.
[0011] In summary, the present application has the following beneficial technical effects:
[0012] The connecting mechanism realizes flexibility and adaptability through the rotational connection between the first connecting rod and the second connecting rod. This design allows the exercise rack to be personalized according to the height, body type and specific exercise needs of the patient, providing a more comfortable and efficient exercise experience. The half moon-shaped design of the buckle half moon ring tightly clamps the outer wall top of the bottom support rod, ensuring the stable connection between the connecting mechanism and the bottom support rod. This design not only enhances the structural stability of the entire exercise rack, but also improves its load-bearing capacity, ensuring the safety of the patient during exercise. Due to the flexibility and adaptability of the connecting mechanism, users can personalize the exercise rack according to their individual exercise needs. This design not only improves the interest and diversity of exercise, but also helps patients achieve better results and experience during exercise. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 It is a schematic diagram of the overall structure of the present application;
[0014] Figure 2 It is a schematic diagram of the bottom support mechanism structure of the present application;
[0015] Figure 3 It is a schematic diagram of the top support mechanism structure of the present application;
[0016] Figure 4 It is a schematic diagram of the adjusting mechanism structure of the present application.
[0017] Explanation of figure numbers:
[0018] 1, bottom support mechanism; 101, bottom support rod; 102, bottom pad; 103, sliding groove; 104, clamping groove; 2, top support mechanism; 201, top support rod; 202, connecting head; 203, crossbar; 204, anti-collision elbow; 205, perforation; 3, adjusting mechanism; 301, first half moon buckle; 302, clamping block; 303, second half moon buckle; 304, inner cannula; 305, adjusting bolt; 4, connecting mechanism; 401, fixed ring; 402, first connecting rod; 403, second connecting rod; 404, buckle half moon ring. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor fall within the scope of protection of the present application.
[0020] In the description of the present application, it should be noted that the terms "upper", "lower", "inner", "outer", "top / bottom end" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. In addition, the terms "first", "second" are only for descriptive purposes and cannot be understood as indicating or implying relative importance.
[0021] In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "provided with", "sleeved / connected", "connected" and the like should be broadly understood, for example, "connected" can be fixedly connected, or can be detachably connected, or integrally connected; can be mechanically connected, or can be electrically connected; can be directly connected, or can be indirectly connected through an intermediate medium; can be internal communication of two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present application can be understood according to the specific circumstances.
[0022] Embodiment:
[0023] The embodiment of the present application discloses a neurology exercise frame, please refer to Figures 1-4The exercise frame includes four bottom support mechanisms (1). Each bottom support mechanism (1) has a top support mechanism (2) at its top. Adjustment mechanisms (3) penetrate the bottom outer wall of each top support mechanism (2), and the top support mechanisms (2) are interconnected via these adjustment mechanisms (3). Each bottom support mechanism (1) has a connecting mechanism (4) between it. The top support mechanism (2) also has an adjustment mechanism penetrating its bottom outer wall. This design allows the height and angle of the top support mechanism to be adjusted according to the exerciser's needs. Through these adjustment mechanisms, a flexible and stable connection is achieved between the top support mechanism and each bottom support mechanism, ensuring safety and stability during exercise. To further enhance the stability and load-bearing capacity of the exercise frame, connecting mechanisms are also provided between adjacent bottom support mechanisms. These connecting mechanisms not only strengthen the connection between the bottom support mechanisms but also make the entire exercise frame structure more compact and stable.
[0024] The bottom support mechanism 1 comprises a bottom support rod 101, the outer wall of the bottom support rod 101 is provided with a sliding groove 103, the outer wall of the bottom support rod 101 is provided with evenly distributed clamping grooves 104 at the opposite positions of the sliding grooves 103, and the bottom of the bottom support rod 101 is provided with a bottom pad 102; the top support mechanism 2 comprises a top support rod 201, the bottom of the outer wall of the top support rod 201 is provided with a through hole 205, the top of the top support rod 201 is provided with a connecting head 202, the connecting heads 202 are provided with a cross rod 203, the two ends of the cross rod 203 are provided with anti-collision elbow pipes 204, and the adjusting mechanism 3 comprises a first half moon buckle 301, the first half moon buckle 301 is half moon-shaped, the inner wall of the first half moon buckle 301 is provided with clamping blocks 302 at opposite positions, one side of the first half moon buckle 301 is provided with a second half moon buckle 303, the second half moon buckle 303 is provided with an inner cannula 304 close to one side of the first half moon buckle 301, the outer side of the first half moon buckle 301 away from the second half moon buckle 303 is provided with an adjusting bolt 305 at the middle position, and the adjusting bolt 305 penetrates the inner cannula 304, and the inner cannula 304 is located in the through hole 205. The bottom support mechanism 1 of the exercise frame for neurology department is composed of a bottom support rod 101, a sliding groove 103, a clamping groove 104 and a bottom pad 102. The bottom support rod 101 serves as a support base, and the outer wall thereof is provided with a sliding groove 103 for sliding adjustment in cooperation with other components. At the opposite positions of the sliding grooves 103, the outer wall of the bottom support rod 101 is also uniformly provided with clamping grooves 104, which are used for fixing and connecting other components to enhance the structural stability. The bottom of the bottom support rod 101 is provided with a bottom pad 102 to increase the friction with the ground, prevent sliding, and provide additional cushioning and damping effect. The top support mechanism 2 comprises a top support rod 201, a through hole 205, a connecting head 202, a cross rod 203 and an anti-collision elbow pipe 204. The top support rod 201 serves as the main load-bearing component of the exercise frame, and the bottom of the outer wall thereof is provided with a through hole 205 for connection with the adjusting mechanism 3. The top of the top support rod 201 is provided with a connecting head 202, and the connecting heads are connected by a cross rod 203 to form a stable support frame. In order to enhance safety, the two ends of the cross rod are provided with anti-collision elbow pipes 204 to prevent accidental injury during exercise. The adjusting mechanism 3 is composed of a first half moon buckle 301, a clamping block 302, a second half moon buckle 303, an inner cannula 304 and an adjusting bolt 305. The first half moon buckle 301 and the second half moon buckle 303 are connected by the inner cannula 304 and the adjusting bolt 305 to form an adjustable fixing structure. The inner wall of the first half moon buckle 301 is provided with clamping blocks 302, which can be clamped into the clamping grooves 104 of the bottom support rod 101 to realize the fixing effect. The inner cannula 304 is inserted into the through hole 205 of the top support rod 201, and the height and angle of the top support mechanism 2 are adjusted by tightening the adjusting bolt 305.This design makes the exercise rack can be personalized according to the height of the patient and the exercise needs, improve the exercise effect.
[0025] The connecting mechanism 4 comprises a fixed ring 401, the outer wall of the fixed ring 401 is provided with a first connecting rod 402 on one side, the first connecting rod 402 is rotatably connected with a second connecting rod 403 at the end away from the fixed ring 401, the second connecting rod 403 is provided with a buckle half moon ring 404 at the end away from the first connecting rod 402, and the buckle half moon ring 404 is a half moon-shaped clamping with the top of the outer wall of the bottom support rod 101. The second connecting rod 403 is provided with a buckle half moon ring 404 at the end away from the first connecting rod 402, and the buckle half moon ring is a half moon-shaped design, which can be tightly clamped on the top of the outer wall of the bottom support rod 101. This clamping method is not only stable and reliable, but also convenient to install and disassemble, which is helpful for the rapid assembly and disassembly of the exercise rack. Through the design of the connecting mechanism 4, the adjacent bottom support rods 101 are stably connected, thereby enhancing the structural stability and bearing capacity of the whole exercise rack. At the same time, the flexibility and adaptability of the connecting mechanism 4 also make the exercise rack can be adjusted according to the height and body shape of different patients, providing a more personalized exercise experience.
[0026] The above are the preferred embodiments of the present application, not limited by the protection scope of the present application, therefore: all equivalent changes made according to the structure, shape, principle of the present application should be covered within the protection scope of the present application.
Claims
1. A neurological exercise frame, comprising a bottom support mechanism (1), characterized in that: The number of bottom support mechanisms (1) is four. The bottom support mechanism (1) is provided with a top support mechanism (2) at the top. The bottom of the outer wall of the top support mechanism (2) is provided with an adjustment mechanism (3). The top support mechanism (2) is connected to the top support mechanism (2) through the adjustment mechanism (3). The bottom support mechanisms (1) are provided with a connecting mechanism (4) between each other. The bottom support mechanism (1) includes a bottom support rod (101), and the outer wall of the bottom support rod (101) is provided with a sliding groove (103). The outer wall of the bottom support rod (101) is provided with uniformly distributed slots (104) between the sliding grooves (103). The bottom of the bottom support rod (101) is provided with a bottom pad (102). The top support mechanism (2) includes a top support rod (201), and the bottom of the outer wall of the top support rod (201) is provided with a through hole (205). The top of the top support rod (201) is provided with a connector (202). A crossbar (203) is provided between the connectors (202). Anti-collision bends (204) are provided at both ends of the crossbar (203). The adjustment mechanism (3) includes a first crescent buckle (301), which is crescent-shaped. The inner walls of the first crescent buckle (301) are provided with opposite locking blocks (302). A second crescent buckle (303) is provided on one side of the first crescent buckle (301). An inner tube (304) is provided on the side of the second crescent buckle (303) that is close to the first crescent buckle (301). An adjustment bolt (305) is provided through the middle position of the outer side of the first crescent buckle (301) away from the second crescent buckle (303), and the adjustment bolt (305) also passes through the inner tube (304). The inner tube (304) is located in the through hole (205). The connecting mechanism (4) includes a fixing ring (401). A first connecting rod (402) is provided on one side of the outer wall of the fixing ring (401). A second connecting rod (403) is rotatably connected to the end of the first connecting rod (402) away from the fixing ring (401). A snap-fit crescent ring (404) is provided at the end of the second connecting rod (403) away from the first connecting rod (402). The snap-fit crescent ring (404) is crescent-shaped and snaps into the top of the outer wall of the bottom support rod (101).