Tension recovery belt for muscle rehabilitation
By designing a tension adjustment ring and a tension recovery belt with data monitoring functions, the problems of existing equipment being unable to finely adjust the tension and lacking data recording have been solved, enabling personalized, safe, and scientific muscle rehabilitation training and supporting remote guidance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-10
- Publication Date
- 2026-03-27
AI Technical Summary
Existing muscle rehabilitation training equipment cannot achieve precise and continuous tension adjustment, making it difficult to meet the personalized needs of patients at different stages of rehabilitation. Furthermore, it lacks effective data recording and analysis functions, which affects rehabilitation outcomes and safety.
Design a tension recovery belt, including a tension adjustment ring, a traction component, a tension counting and measuring instrument, and a built-in Bluetooth module. The tension is adjusted by dividing the belt into traction zones of different thicknesses through the traction component. The belt is equipped with a display screen and a Bluetooth module for data monitoring and recording.
It enables personalized and progressive rehabilitation training, improves the safety and scientific nature of training, provides precise data support, meets the needs of remote rehabilitation guidance, and reduces the risk of secondary injury.
Smart Images

Figure CN224039904U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of medical apparatus and instruments, especially a tension recovery belt for muscle rehabilitation. BACKGROUND
[0002] In the field of muscle rehabilitation treatment, the rehabilitation effect of patients largely depends on the scientificity and effectiveness of rehabilitation training equipment. At present, the common muscle rehabilitation training equipment on the market has many aspects to be improved. The traditional tension training equipment has a single and rough tension adjustment mode. Most of them can only change the tension by replacing elastic bands of different specifications or adding or reducing weights, and cannot realize fine and continuous tension adjustment, so it is difficult to meet the individual needs of patients for tension at different stages of rehabilitation. The muscle strength of patients at the early stage of rehabilitation is extremely weak, and they need low-intensity and precisely controllable tension stimulation, but the existing equipment is difficult to provide such fine adjustment, which may easily lead to excessive or insufficient training intensity, affecting the rehabilitation process.
[0003] In the training data monitoring aspect, the existing rehabilitation equipment generally lacks effective data recording and analysis functions. During the training process, the user cannot know the training data such as tension size, training frequency, training duration, and muscle fatigue degree in real time and accurately. This makes it difficult for rehabilitation physicians to accurately assess the rehabilitation progress of patients based on objective data, and they can only rely on experience to judge, resulting in a lack of scientificity and pertinence in the development of rehabilitation programs, and the rehabilitation programs cannot be optimized and adjusted in a timely manner according to the actual situation of patients. For patients who are unable to frequently visit rehabilitation institutions due to inconvenience in movement or other factors, traditional rehabilitation equipment cannot meet their needs for remote rehabilitation training. They cannot ensure the accuracy of training movements and the rationality of training intensity without on-site guidance from rehabilitation physicians, increasing the difficulty and risk of rehabilitation training. SUMMARY
[0004] In order to solve the problems of the prior art, the utility model discloses a tension recovery belt for muscle rehabilitation, which can adjust the tension size and monitor the training of the user.
[0005] The utility model discloses a tension recovery belt for muscle rehabilitation, which comprises a tension assembly, the tension assembly comprises two, the tension assembly comprises a tension belt, a tension counter measuring instrument arranged at one end of the tension belt, a tension adjusting ring arranged at one end of the tension counter measuring instrument away from the tension belt and a adjusting buckle hingedly arranged at one end of the tension adjusting ring away from the tension counter measuring instrument, wherein a plurality of traction members are arranged on the tension adjusting ring, the plurality of traction members divide the tension adjusting ring into a plurality of traction zones, and the thickness of the tension adjusting ring on the plurality of traction zones from one end of the tension adjusting ring to the other end increases gradually.
[0006] Furthermore, 5-7 traction elements are evenly arranged circumferentially on the outer ring surface of the tension adjustment ring. Adjacent traction elements divide the tension adjustment ring into 6-8 fan-shaped traction zones. The wall thickness of each traction zone increases sequentially by 0.5-1.5 mm from the adjusting buckle connection end to the hinge end.
[0007] Furthermore, the traction component is a traction rod, and a soft pad is provided on the outside of the traction rod.
[0008] Furthermore, a handle is provided at the end of the tension band away from the tension counting instrument, and a soft pad is provided on the handle.
[0009] Furthermore, the end of the handle is provided with a detachable weight block mounting slot, in which a counterweight is fitted and fixed by magnetic attraction.
[0010] Furthermore, the tensile force counting instrument is equipped with a display screen for displaying the tensile force and the number of times.
[0011] Furthermore, the tension counting measuring instrument is set with an effective tension and a minimum time.
[0012] Furthermore, the effective tensile force range is 5-15N, and the shortest time range is 2-8S.
[0013] Furthermore, the tensile strength counter has a built-in Bluetooth module. Beneficial effects:
[0014] The tension recovery belt disclosed by the utility model realizes personalized and gradual rehabilitation training through the unique tension adjusting ring design. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 It is a structural schematic view of the tension recovery belt in the embodiment of the present application.
[0016] Figure 2 It is a structural schematic view of the tension component in the embodiment of the present application.
[0017] In the figure: tension recovery belt 100, tension component 11, tension belt 111, tension counter measuring instrument 112, display screen 1121, tension adjusting ring 113, adjusting buckle 114, traction member 115, handle 116, soft pad 1161, counterweight 1162. DETAILED DESCRIPTION
[0018] In order to make the personnel in the art better understand the utility model scheme, the technical scheme in the specific embodiment of the utility model will be clearly and completely described below.
[0019] The utility model discloses a kind of tension recovery belt 100 for muscle rehabilitation, as shown in Figure 1 And Figure 2As shown in the middle, it includes a tension component 11, which includes two, the tension component 11 includes a tension belt 111, a tension counter measuring instrument 112 arranged at one end of the tension belt 111, a tension adjusting ring 113 arranged at the end of the tension counter measuring instrument 112 away from the tension belt 111, and an adjusting buckle 114 hinged at the end of the tension adjusting ring 113 away from the tension counter measuring instrument 112, wherein a plurality of traction members 115 are arranged on the tension adjusting ring 113, the plurality of traction members 115 separate the tension adjusting ring 113 into a plurality of traction zones, and the thickness of the tension adjusting ring 113 on the plurality of traction zones from one end to the other end of the tension adjusting ring 113 increases in turn. The tension adjusting ring 113 is provided with a plurality of traction members 115, which separates the tension adjusting ring 113 into a plurality of traction zones, and the thickness of each zone gradually increases. Users can adjust the tension strength used according to their own rehabilitation progress and needs, and realize personalized rehabilitation training. Each tension component 11 is equipped with a tension counter measuring instrument 112, which can monitor and record the strength data of the user during the tension training in real time, helping the user and his rehabilitation guide to understand the rehabilitation progress and adjust the treatment plan. The design of the adjusting buckle 114 makes it easy and fast to replace different tension settings, improves the convenience of use, and is also convenient to carry and store. By gradually increasing the tension strength, it can help the muscles to gradually increase the strength within a safe range, reduce the risk of secondary injury, and at the same time promote blood circulation and speed up the recovery. The traction zones with increasing thickness can provide different levels of tension. Users can start exercising from low-intensity traction zones according to their different stages of muscle rehabilitation, and gradually switch to higher-intensity traction zones as muscle strength increases, realizing personalized and gradual rehabilitation training. Different thickness traction zones matched with the adjusting buckle 114 can combine a variety of tension choices, enriching the training methods. Users can change the tension by adjusting the buckle 114 with different traction zones, or use a certain traction zone for targeted training. In addition, the tension counter measuring instrument 112 can accurately grasp the tension value and frequency of each training, facilitate tracking of rehabilitation progress, and timely adjust the training plan, improve the scientificity and effectiveness of rehabilitation training.
[0020] As an embodiment, the outer ring surface of the tension adjusting ring 113 is uniformly provided with 5-7 traction members 115 in the circumferential direction, and adjacent traction members 115 separate the tension adjusting ring 113 into 6-8 fan-shaped traction zones. The wall thickness of each traction zone from the connecting end of the self-adjusting buckle 114 to the hinged end increases by 0.5-1.5 mm in turn. The layout of uniformly arranging 5-7 traction members 115 in the circumferential direction of the outer ring surface and separating 6-8 fan-shaped traction zones can achieve more fine tension grading. Compared with the design of fewer traction members 115 and rougher zoning, it can provide users with more detailed tension change options. Patients with weak strength in the early stage of rehabilitation can find the most suitable low-intensity tension zone for themselves among the numerous zones, and can also accurately transition to a slightly higher-intensity zone as the rehabilitation progresses, ensuring that the training always matches the user's recovery status. The wall thickness of each traction zone increases by 0.5-1.5 mm from the connecting end of the self-adjusting buckle 114 to the hinged end, so that the tension change presents a stable and predictable trend. Users can clearly perceive the increase in tension when switching traction zones during training, which facilitates better adaptation to the increase in training intensity. For example, in a set of consecutive rehabilitation training actions, the tension increases steadily according to the predetermined thickness increment when switching traction zones each time, and users can adjust their force application mode more smoothly, reducing the risk of discomfort or injury caused by sudden changes in tension. The design of fan-shaped traction zones optimizes the mechanical structure of the tension adjusting ring 113. The fan-shaped design allows the force to be more evenly distributed to the entire adjusting ring when the traction zone is subjected to tension, effectively reducing local stress concentration compared to other irregular shapes. This not only enhances the durability of the tension adjusting ring 113 and prolongs the product's service life, but also ensures that the tension provided in different traction zones is more stable and reliable, allowing users to have a stable training experience during rehabilitation training and helping to improve training effectiveness. As an embodiment, the traction member 115 is a traction rod, and a soft pad 1161 is arranged on the outer side of the traction rod. Users can perform various stretching, twisting, and other actions by holding the tension belt 111 and the traction rod with both hands. This design allows users to perform tension training using only one tension assembly 11 component. Only one tension assembly 11 is needed to start training, eliminating the need for tedious preparation. This is particularly advantageous for users who are time-constrained, have limited mobility, or have limited access to rehabilitation facilities. They can use the simple muscle stretching training to effectively relieve the discomfort caused by prolonged sitting during their spare time. The convenience greatly reduces the threshold for rehabilitation training, making it possible to train anytime, anywhere, and significantly improving user adherence to rehabilitation training. The soft pad 1161 arranged on the outer side of the traction rod greatly improves the comfort of the user's grip. During long-term rehabilitation training, a hard traction rod may cause pressure on the hands, leading to pain or discomfort and affecting the continuity of training. The soft pad 1161 has a certain elasticity and softness, can conform to the curve of the hand, distribute the gripping force, and reduce hand pressure, allowing users to train more easily and comfortably, prolonging the training time, and thus improving the rehabilitation effect.The soft pad 1161 increases the friction between the hand and the traction rod, effectively preventing the hand from slipping due to sweating or uneven force during training. Especially when performing training actions with large pulling force, stable grip is crucial to avoid accidental injury caused by the equipment falling out of the hand, providing safety for the user and allowing the patient to focus more on rehabilitation training with confidence.
[0021] As an embodiment, the pulling belt 111 is provided with a handle 116 at one end away from the tension counter 112, and the handle 116 is provided with a soft pad 1161. The soft pad 1161 at the handle 116 can greatly improve the user's grip experience. In long-term rehabilitation training, a hard handle 116 can cause pressure on the hand, causing pain or discomfort, affecting the continuity of training. The soft pad 1161 is soft and elastic, can closely fit the hand contour, evenly distribute the gripping force, and reduce the pressure on the hand.
[0022] As an embodiment, the end of the handle 116 is provided with a detachable weight block mounting slot, and a counterweight 1162 is fitted and mounted in the mounting slot, and the counterweight 1162 is fixed by magnetic attraction. By adding or removing the counterweight 1162 in the mounting slot at the end of the handle 116, the user can easily adjust the training intensity. In the early stage of rehabilitation, the muscle strength is weak, and the counterweight 1162 can not be installed, and only the resistance of the pulling belt 111 itself is used for training. As the rehabilitation process advances, muscle strength gradually increases, and users can install counterweights 1162 of different weights in the mounting slot according to their own conditions, increase the training load, and achieve progressive rehabilitation training to meet the training needs of different stages. The physical conditions and rehabilitation goals of different users are different, and the detachable counterweight 1162 design allows users to customize training programs according to their muscle recovery conditions, training preferences, and rehabilitation plans. The counterweight 1162 is fixed by magnetic attraction, making it very convenient to install and remove the counterweight 1162. When users go out or train in different locations, they can carry counterweights 1162 of corresponding weights according to actual needs, and easily remove and store them when not in use, reducing the size and weight of the equipment and facilitating portability.
[0023] As an embodiment, the tensile force counter 112 is provided with a display screen 1121 for displaying the tensile force and the number of times. The display screen 1121 presents the tensile force value in real time, and the user can accurately control the force according to the muscle rehabilitation condition. In the early stage of rehabilitation, the muscle strength is weak, and low-intensity training is needed. The user can refer to the display screen 1121 to control the tensile force in an appropriate range to avoid injury caused by excessive force; as the rehabilitation progresses, the user can gradually increase the tensile force to achieve a scientific and accurate training intensity increment, ensuring that the training always fits the recovery rhythm. The data record of the tensile force and the number of times provides a strong basis for rehabilitation progress evaluation. The rehabilitation physician or the user himself / herself can understand the recovery trend of muscle strength and judge the effectiveness of the rehabilitation training program by analyzing the tensile force value change and the training time increase in different stages. If the data growth is slow or abnormal, the training plan can be adjusted in time to make the rehabilitation treatment more targeted and scientific.
[0024] As an embodiment, the tensile force counter 112 is provided with an effective tensile force and a minimum time. The effective tensile force range is 5-15N, and the minimum time range is 2-8S. The effective tensile force range of 5-15N ensures that the user's force during training is in a reasonable interval. When the tensile force is less than 5N, it means that the user's force is insufficient, and the action may not reach the effective exercise muscle level; if the tensile force is higher than 15N, there may be excessive force, which may cause muscle strain and other risks. Through the count limit, the user is urged to complete the action with appropriate force, standardize the training action standard, and improve the accuracy and safety of training. Combined with the 2-8S minimum time range count, the user's muscles can be kept in a stressed state for a certain period of time. Short-term instantaneous force cannot fully stimulate the muscles, and too short time also cannot achieve the ideal training effect. Only by continuously applying force within the specified time, the muscles can be fully exercised to promote muscle strength growth and rehabilitation, ensuring that each count represents an effective training and effectively ensuring the quality and effect of rehabilitation training. The double limitation of effective tensile force and minimum time avoids the movement injury caused by excessive force or rapid stretching of the user. In the rehabilitation training, the muscles and joints are relatively fragile, and unreasonable force and rapid action can easily cause injuries such as strain and sprain. This counting rule guides the user to follow a scientific training rhythm and gradually increase the muscle strength, reducing the probability of injury during training, and providing strong protection for safe rehabilitation. Only when the effective tensile force and the minimum time are met, the training data is more accurate and reliable. The rehabilitation physician and the user can more accurately evaluate the rehabilitation progress according to these accurate data.
[0025] As an implementation, the tensile force counter measuring instrument 112 is built-in with a Bluetooth module. The tensile force counter measuring instrument 112 monitors the single maximum tensile force value and counts the training duration. The built-in Bluetooth module enables the tensile force counter measuring instrument 112 to easily connect with smart devices such as mobile phones, tablets or professional rehabilitation management systems. The user does not need to manually record the data. The single maximum tensile force value, the training duration and the fatigue analysis curve and other information can be transmitted to the associated device in real time. By monitoring the single maximum tensile force value, the peak level of the user's muscle strength can be intuitively reflected. By counting the training duration, the continuity and intensity of the training can be understood. The fatigue analysis curve shows the development of muscle fatigue in the training process from a dynamic perspective. These multi-dimensional data comprehensively provide a comprehensive and detailed basis for rehabilitation assessment. The rehabilitation physician can more accurately judge the rehabilitation progress of the user and timely discover potential problems such as muscle strength growth stagnation, unreasonable training intensity leading to excessive fatigue, etc., so as to adjust the rehabilitation strategy.
[0026] It should be understood that for those skilled in the art, improvements or changes can be made according to the above description, and all these improvements and changes shall belong to the protection scope of the appended claims of the utility model.
Claims
1. A resistance band for muscle rehabilitation, characterized in that, The utility model relates to a kind of tensioning device, including: Tensioning assembly, two tensioning assembly includes, tensioning assembly includes tensioning belt, tensioning counter measuring instrument being arranged at one end of tensioning belt, tensioning adjusting ring being arranged at tensioning counter measuring instrument far from one end of tensioning belt and adjusting buckle being hinged at tensioning adjusting ring far from tensioning counter measuring instrument one end is arranged; Wherein, a plurality of traction members are arranged on the tensioning adjusting ring, and the tensioning adjusting ring is divided into a plurality of traction zones by the plurality of traction members, and the thickness of the tensioning adjusting ring on the plurality of traction zones from one end of the tensioning adjusting ring to the other end increases in turn.
2. A resistance band for muscle rehabilitation as claimed in claim 1, wherein: The outer ring surface of the tensioning adjusting ring is uniformly provided with 5-7 traction members in the circumferential direction, and adjacent traction members divide the tensioning adjusting ring into 6-8 fan-shaped traction zones, and the wall thickness of each traction zone from the adjusting buckle connection end to the hinged end increases by 0.5-1.5 mm in turn.
3. A resistance band for muscle rehabilitation as claimed in claim 1, wherein: The traction member is a traction rod, and a soft pad is arranged on the outer side of the traction rod.
4. A resistance band for muscle rehabilitation as claimed in claim 1, wherein: One end of the tensioning belt away from the tensioning counter measuring instrument is provided with a handle, and a soft pad is arranged on the handle.
5. A resistance band for muscle rehabilitation as claimed in claim 4, wherein: The end of the handle is provided with a detachable weight block mounting slot, and a counterweight block is fitted and mounted in the mounting slot, and the counterweight block is fixed by magnetic attraction.
6. A resistance band for muscle rehabilitation as claimed in claim 1, wherein: A display screen for displaying tension and number of times is arranged on the tensioning counter measuring instrument.
7. A resistance band for muscle rehabilitation as claimed in claim 6, wherein: The tensioning counter measuring instrument is set with effective tension and shortest time.
8. A resistance band for muscle rehabilitation as claimed in claim 7, wherein: The effective tension range is 5-15 N, and the shortest time range is 2-8 S.
9. A resistance band for muscle rehabilitation as claimed in claim 8, wherein: The tensioning counter measuring instrument is provided with a built-in Bluetooth module.