Finger exerciser
By designing an ellipsoidal elastic capsule and a finger exerciser with heating and vibration functions, the problem of limited functionality in existing exercisers has been solved. This achieves more realistic motion simulation and comfortable exercise in winter, improving exercise effectiveness and user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2026-03-17
AI Technical Summary
Existing finger exercisers have limited functionality, poor training effects, cannot effectively simulate real-life scenarios, and are uncomfortable to use in winter.
An ellipsoidal elastic capsule with a concave area and a binding band structure was designed to simulate finger flexion and extension movements, and is equipped with heating elements and a vibration massager to improve comfort and exercise effectiveness.
It effectively simulates the grasping and opening movements of fingers in real life, improving the exercise effect, and provides heating and vibration massage in winter, increasing comfort and portability.
Smart Images

Figure CN223995340U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of rehabilitation equipment technology, and in particular to a finger exerciser. Background Technology
[0002] The Department of Neurology is a specialized department for the diagnosis and treatment of various neurological diseases. It focuses on the human nervous system, encompassing the brain, spinal cord, and peripheral nerves. It can diagnose and treat a variety of conditions, including cerebrovascular diseases, epilepsy, headaches, dizziness, dementia, Parkinson's disease, and myasthenia gravis. Treatment primarily relies on imaging and electrophysiological examinations to clarify the condition. Treatment methods include medication and rehabilitation therapy, aiming to alleviate symptoms, improve neurological function, and enhance quality of life.
[0003] Patients with neurological diseases such as cerebral infarction and cerebral hemorrhage often experience limb weakness and impaired finger movement after surgery. These patients typically require finger rehabilitation exercises using finger trainers post-surgery. However, existing finger trainers have limited functionality, poor training effects, and cannot accurately simulate real-life scenarios. Utility Model Content
[0004] The purpose of this invention is to provide a multifunctional finger exercise device that effectively solves the problems mentioned in the background art.
[0005] To achieve the above objectives, the present invention provides the following technical solution.
[0006] A finger exerciser includes an elastic capsule, which is ellipsoidal in shape with one end larger than the other to accommodate the movement of the hand when making a fist. The elastic capsule has five recessed areas, corresponding to the positions of the thumb, index finger, middle finger, ring finger, and little finger, respectively. Each recessed area is fixedly connected to a restraining strap, and the restraining strap and the corresponding recessed area form a finger sleeve area for limiting the fingers.
[0007] Therefore, by inserting fingers into the respective finger sleeve areas, grasping the elastic capsule, and pressing firmly, the elastic capsule provides elasticity, effectively simulating the action of grasping an object. When the fingers are straightened, the elastic capsule is pulled, providing elastic resistance, effectively simulating the action of opening the palm. This fully simulates the flexion and extension of the fingers and can well simulate real-life scenarios, improving the training effect. At the same time, the elastic capsule is ellipsoidal, with one end larger than the other, to adapt to the shape of the hand when making a fist, making it convenient for the user to grasp. When grasping, each finger fits in the corresponding concave area, providing an anti-slip effect and ensuring the stability of the grasp. When the fingers are inserted into the finger sleeve area, the concave area and the restraint strap work together to limit the fingers and prevent them from falling off during grasping.
[0008] Furthermore, a heating element is installed inside the elastic bladder, and a vibrating massager is also installed inside the elastic bladder on one side of the heating element.
[0009] The heating element generates heat inside the elastic bladder, improving comfort during winter exercise. The vibration massager vibrates the elastic bladder, providing a massage to the fingers during exercise to promote blood circulation and relaxation.
[0010] Furthermore, the elastic capsule contains two protective shells, both made of hard plastic, with the heating element and the vibration massager installed inside their respective protective shells.
[0011] The protective shell is placed on the outside of the heating element and the vibration massager to protect them and prevent damage caused by pressing the elastic bladder.
[0012] Furthermore, this finger exerciser also includes a power control box, on which a power control line is connected. The power control line extends into the elastic bladder and is electrically connected to the heating element and the vibration massager. The power control box contains a rechargeable battery and a controller.
[0013] Powered by a rechargeable battery, this forging machine is highly portable.
[0014] Furthermore, the power control box has a charging port on its side for charging the battery, and a switch panel is also provided on the power control box.
[0015] Furthermore, the restraint straps are all made of elastic bands, and the outermost layer of the elastic bladder is made of aramid fiber fabric.
[0016] Using elastic bands as restraints, it can accommodate fingers of different sizes. The outermost layer of the elastic capsule is made of aramid fiber fabric, which is breathable and can prevent burns when heated in winter.
[0017] Compared with the prior art, the beneficial effects of this utility model are as follows.
[0018] This invention involves inserting fingers into the respective finger sleeve areas, grasping the elastic capsule, and pressing it firmly. The elastic capsule provides elasticity, effectively simulating the action of grasping an object. When the fingers are straightened, the elastic capsule is pulled, providing elastic resistance, which effectively simulates the action of opening the palm. This fully simulates the flexion and extension of the fingers and can well simulate real-life scenarios, improving the training effect.
[0019] The elastic capsule in this invention is ellipsoidal, with one end larger than the other, to adapt to the shape of the hand when making a fist, making it convenient for the user to grasp. When grasping, each finger fits into the corresponding recessed area, which has an anti-slip effect and ensures the stability of the grasp. When the finger is inserted into the finger sleeve area, the recessed area and the restraint strap can be used to limit the finger and prevent it from falling off when grasping.
[0020] This invention uses a heating element to generate heat inside the elastic bladder, which heats the bladder and improves comfort during winter exercise. The vibration massager causes the elastic bladder to vibrate, which in turn provides a vibrating massage to the fingers during exercise, promoting blood circulation and relaxation. Attached Figure Description
[0021] Figure 1 This is a three-dimensional schematic diagram of the overall structure of this utility model;
[0022] Figure 2 This is a schematic diagram of the outer surface structure of the elastic capsule in this utility model;
[0023] Figure 3 This is a schematic diagram of the cross-sectional structure of the elastic capsule in this utility model;
[0024] Figure 4 This is a schematic diagram of the surface structure of the power control box in this utility model.
[0025] In the diagram: 1. Elastic capsule; 11. Recessed area; 12. Restraint strap; 13. Finger sleeve area; 2. Heating element; 3. Vibration massager; 4. Protective shell; 5. Power control box; 51. Switch panel; 52. Charging port; 6. Power control line. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Please see Figures 1-4This utility model provides a finger exercise device, including an elastic capsule 1. The elastic capsule 1 is ellipsoidal, with one end larger than the other to adapt to the shape of the hand when making a fist, making it convenient for the user to grasp. The elastic capsule 1 has five recessed areas 11, corresponding to the positions of the thumb, index finger, middle finger, ring finger, and little finger, respectively. When grasping, each finger fits into the corresponding recessed area 11, providing an anti-slip effect and ensuring the stability of the grasp. A restraining strap 12 is fixedly connected to the elastic capsule 1 at the corresponding positions of each recessed area 11. Each restraining strap 12 and the corresponding recessed area 11 form a finger sleeve area 13 for limiting the fingers. When the fingers are inserted into the finger sleeve area 13, the recessed area 11 and the restraining strap 12 work together to limit the fingers and prevent them from falling off when grasping.
[0028] When using this finger exerciser, the user inserts each finger into the respective finger sleeve area 13, grasps the elastic capsule 1, and presses it firmly. The elastic capsule 1 provides elastic force, which can effectively simulate the action of grasping an object. When the finger is straightened, the elastic capsule 1 is pulled, and the elastic capsule 1 provides elastic resistance, which can effectively simulate the action of opening the palm. This can fully simulate the flexion and extension of the fingers and improve the exercise effect.
[0029] Specifically, a heating element 2 is provided inside the elastic bladder 1, and a vibration massager 3 is also provided inside the elastic bladder 1 on one side of the heating element 2. The heating element 2 generates heat and acts as a heat source inside the elastic bladder 1 to heat the elastic bladder 1, thereby improving the comfort during exercise in winter. The vibration massager 3 causes the elastic bladder 1 to vibrate, thereby providing a vibration massage to the fingers during exercise to promote blood circulation and achieve relaxation. The heating element 2 and the vibration massager 3 in this application both adopt existing technology, and their specific structures and working principles will not be described in detail.
[0030] Specifically, the elastic capsule 1 is provided with two protective shells 4. Both protective shells 4 are made of hard plastic, which makes the protective shells 4 structurally strong. The heating element 2 and the vibration massager 3 are respectively installed in the corresponding protective shells 4. The protective shells 4 cover the heating element 2 and the vibration massager 3, which can protect the heating element 2 and the vibration massager 3 and prevent them from being compressed and damaged when the elastic capsule 1 is pressed.
[0031] Specifically, this finger exerciser also includes a power control box 5, on which a power control line 6 is connected. The power control line 6 extends into the elastic bladder 1 and is electrically connected to the heating element 2 and the vibration massager 3. The power control box 5 contains a rechargeable battery and a controller. The battery can supply power to the heating element 2 and the vibration massager 3 through the power control line 6. At the same time, the controller is used to control the operation of the heating element 2 and the vibration massager 3. The use of a rechargeable battery for power supply makes this exerciser highly portable.
[0032] Specifically, the power control box 5 has a charging port 52 for charging the battery on its side. The power control box 5 also has a switch panel 51 with buttons for controlling the heating element 2 and the vibration massager 3, which facilitates the adjustment of the working status of the heating element 2 and the vibration massager 3.
[0033] Specifically, the restraint straps 12 are all made of elastic bands, which can be used for fingers of different thicknesses. The outermost layer of the elastic capsule 1 is made of aramid fiber fabric, which has good breathability and can prevent burns when heated in winter.
[0034] The above is a detailed description of the present invention in conjunction with specific embodiments, and it should not be construed that the specific embodiments of the present invention are limited to these descriptions. For those skilled in the art, any equivalent substitutions or obvious modifications made without departing from the concept of the present invention, and which have the same performance or use, should be considered as falling within the patent protection scope defined by the submitted claims.
Claims
1. A finger exerciser, characterized in that: it comprises an elastic bag (1); the elastic bag (1) is ellipsoidal in shape, with one end larger and the other end smaller to adapt to the deformation when the palm is clenched; the elastic bag (1) has five recessed areas (11) corresponding to the positions of the thumb, index finger, middle finger, ring finger and little finger; the elastic bag (1) is fixedly connected with a restraint strap (12) at a position corresponding to each recessed area (11), and each restraint strap (12) and the corresponding recessed area (11) form a finger sleeve area (13) for limiting the fingers; the elastic bag (1) is provided with a heating element (2), and the elastic bag (1) is further provided with a vibration massager (3) on the side of the heating element (2).
2. The finger exerciser according to claim 1, characterized in that: the elastic bag (1) is provided with two protective shells (4), both of which are made of hard plastic; the heating element (2) and the vibration massager (3) are respectively installed in the corresponding protective shell (4).
3. The finger exerciser according to claim 2, characterized in that: it further comprises a power control box (5), the power control box (5) is connected with a power control line (6), the power control line (6) extends into the elastic bag (1) and is electrically connected with the heating element (2) and the vibration massager (3); the power control box (5) is provided with a rechargeable battery and a controller.
4. The finger exerciser according to claim 3, characterized in that: the power control box (5) is provided with a charging socket (52) for charging the battery; the power control box (5) is further provided with a switch panel (51).
5. The finger exerciser according to claim 4, characterized in that: the restraint straps (12) are all elastic straps; the outermost layer of the elastic bag (1) is aramid fiber fabric.