Forearm multifunctional multi-occupation training machine
By designing a multi-functional multi-placeholder training machine forearm that integrates multiple wrist exercise components, the problems of inconvenience in storage, inconvenience in use and single functions in the existing technology of forearm training equipment in public fitness venues are solved, and diversified exercise methods, space and cost savings, as well as real-time monitoring of exercise data are achieved.
Patent Information
- Application Number
- CN202421432864.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-21
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-06-21
AI Technical Summary
Existing forearm training equipment has problems such as inconvenient storage, inconvenient use and single functions in public fitness venues, resulting in high production costs, high selling prices, and inability to effectively monitor exercise data.
A forearm multi-function multi-placeholder training machine is designed, integrating swing arm-type, lifting and rotary wrist force training components, and a floor-mounted support frame and training fixture frame are installed on the main frame, and equipped with a control display terminal to monitor exercise data in real time.
Provide diverse exercise methods to meet the needs of different users, save space and costs, improve equipment stability and safety, and realize real-time monitoring of exercise data.
Smart Images

Figure CN222930248U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a multifunctional multi-position training machine for forearms, belonging to the field of sports equipment. Background Art
[0002] Forearm training is a relatively niche type of training, but there are many ways to train forearms, such as wrist rotation training, arm twisting training, hand grip training, forearm forward / reverse lifting training, etc. These trainings have many small parts to train separately, but these exercise equipment are generally very small products, such as our common hand grippers, wrist curling bars, etc. These small equipment are very suitable for personal and family use because of their small size, easy to carry, low price and many other advantages.
[0003] In public fitness occasions, these small devices have obvious disadvantages. Even the advantages in personal use become disadvantages in public occasions. Small size and light weight make it inconvenient to store. When used, they are randomly placed, difficult to find when others are exercising, and even risk being lost. Small household appliances often do not have a large adjustment range, and even many strengths cannot be adjusted. It is difficult for users to maintain the full applicability of exercise equipment for individuals for a long time.
[0004] In the field of public fitness, there are also products that have a certain function, or different products are used to achieve various functions. However, since forearm exercise is a niche sport, the quantity of a single product is very small, resulting in high production costs and high selling prices, causing public fitness venues to only have a few functions or even no such products. The few public fitness venues that can be equipped with multiple products occupy a large area, but the frequency and time of use are greatly reduced compared to other products, resulting in a waste of space and resources.
[0005] In addition, such exercise products, whether small household appliances or heavy equipment in the public fitness field, are not equipped with motion monitoring devices, and cannot effectively monitor the quantity, time, intensity, etc. of the sense of movement, and cannot monitor the exercise data in real time. Utility Model Content
[0006] In order to overcome the defects of the prior art, the utility model provides a forearm multifunctional multi-position training machine. The technical solution of the utility model is:
[0007] A multifunctional and multi-occupancy forearm training machine, comprising a main frame, a ground-attached support frame and a training fixing frame. The ground-attached support frame is installed at the bottom of the main frame for support. Around the main frame, the training fixing frame is installed along the circumferential direction of the main frame. On the training fixing frame, a swing-arm wrist strength exercise component, a lifting wrist strength exercise component and a rotating wrist strength exercise component are installed. The exercise data of the swing-arm wrist strength exercise component, the lifting wrist strength exercise component and the rotating wrist strength exercise component are respectively displayed through a control display terminal, and all the control display terminals are fixedly installed on the main frame.
[0008] The swing-arm wrist strength exercise component includes an inner handle component, an outer handle component, a weight-bearing grip rotating frame, a buffer pad and a rotating frame rotation sensor. The outer handle component is installed on the upper part of the training fixing frame. The weight-bearing grip rotating frame is rotatably installed on the training fixing frame through a rotating frame rotating shaft. The inner handle component is installed on the rotating frame rotating shaft. The inner handle component is arranged adjacent to the outer handle component and forms a spacing. A buffer pad is installed inside the training fixing frame. The buffer pad is in dynamic cooperation with the weight-bearing grip rotating frame to limit the rotation angle of the weight-bearing grip rotating frame. A rotating frame counting sensor is installed on the training fixing frame close to one side of the weight-bearing grip rotating frame. The rotating frame counting sensor is connected to the corresponding control display terminal through a data line to read and display the rotation times of the weight-bearing grip rotating frame.
[0009] The weight-bearing grip rotating frame includes a weight-bearing swing rod, a connecting frame and a weight-bearing bottom plate. The upper end of the weight-bearing swing rod is installed with the connecting frame, and the connecting frame is installed on the rotating frame rotating shaft. The lower end of the weight-bearing swing rod is installed with the weight-bearing bottom plate, and the weight-bearing bottom plate is perpendicular to the weight-bearing swing rod.
[0010] The inner handle component and the outer handle component have the same structure, and both include a first handle, a second handle and a handle sleeve. The first handle and the second handle are integrally arranged in an eight-shaped manner, and handle sleeves are sleeved on both the first handle and the second handle.
[0011] The lifting wrist strength exercise component includes an arm support pad, a wrist strength handle frame, a sheath and a lifting belt. The arm support pad is installed on the outside of the training fixing frame through a support arm fixing frame. The wrist strength handle frame is located at the upper part of the training fixing frame and is supported by the training fixing frame. The wrist strength handle frame is independently arranged from the training fixing frame. A sheath is sleeved in the middle of the wrist strength handle frame. One end of the lifting belt is connected to the sheath, and the other end is connected to a lifting component, and the lifting component is installed at the lower part of the arm support pad.
[0012] The described lifting assembly includes an upper counterweight frame, a middle connecting rod, and a lower counterweight frame. The upper end of the upper counterweight frame is hinged to the fixed bracket of the support arm frame. The lower end of the upper counterweight frame is hinged to one end of the middle connecting rod. The other end of the middle connecting rod is hinged to the upper end of the lower counterweight frame. The lifting belt is connected to the middle connecting rod. A connecting rod swing counting sensor is installed on the middle connecting rod. The connecting rod swing counting sensor is connected to the corresponding control and display terminal through a data cable to read and display the number of swings of the middle connecting rod.
[0013] The described rotary wrist strength exercise assembly includes a wrist rotation frame, a safety hook, and a barbell plate rack. The wrist rotation frame is rotatably installed on the training fixed frame through a bearing seat. A flexible component is installed on the wrist rotation frame. The upper end of the flexible component is connected to the wrist rotation frame, and the lower end is installed with a safety hook. The barbell plate rack is hung on the safety hook. A wrist rotation counting sensor is installed on the training fixed frame close to the wrist rotation frame. The wrist counting sensor is connected to the corresponding control and display terminal through a data cable to read and display the number of rotations of the wrist rotation frame.
[0014] The described flexible component is a rope or a webbing.
[0015] The advantages of the present utility model are:
[0016] By integrating swing-arm type, lifting type, and rotary wrist strength exercise components, the training machine can provide diverse exercise methods to meet the exercise needs of different users, and at the same time exercise multiple muscle groups of the forearm.
[0017] Integrating multiple exercise components on a main frame reduces the requirement for gym space, enabling limited space to be used for more exercise options, effectively saving the usage size, and greatly reducing the overall cost.
[0018] By installing a ground-attachment support frame at the bottom of the main frame, the stability of the entire training machine is increased, ensuring the safety of the equipment during high-intensity exercise.
[0019] All control and display terminals are fixedly installed on the main frame, allowing users to conveniently access and monitor exercise data. Brief Description of the Drawings
[0020] Figure 1 It is a schematic diagram of the main body structure in one direction of the present utility model.
[0021] Figure 2 It is a schematic diagram of the main body structure in another direction of the present utility model.
[0022] Figure 3 It is Figure 1 a schematic diagram of the structure of the lifting assembly in Detailed Description of the Preferred Embodiment
[0023] The present invention will be further described below in conjunction with specific embodiments, and the advantages and features of the present invention will become clearer as the description progresses. However, these embodiments are exemplary only and do not constitute any limitation to the scope of the present invention. Those skilled in the art should understand that without departing from the spirit and scope of the present invention, modifications or substitutions can be made to the details and forms of the technical solutions of the present invention, but all such modifications and substitutions fall within the protection scope of the present invention.
[0024] See Figures 1 to 3 , the present invention relates to a multi-functional and multi-occupancy forearm training machine, which includes a main frame 1, a ground-attached support frame 3 and a training fixed frame 5. The ground-attached support frame 3 is installed at the bottom of the main frame 1 for support; around the main frame 1, the training fixed frame 5 is installed along the circumferential direction of the main frame 1. A swinging wrist strength exercise component, a lifting wrist strength exercise component and a rotating wrist strength exercise component are installed on the training fixed frame 5. The exercise data of the swinging wrist strength exercise component, the lifting wrist strength exercise component and the rotating wrist strength exercise component are respectively displayed through a control display terminal. All the control display terminals are fixedly installed on the main frame 1. The exercise data of each exercise component is collected and displayed through the control display terminal, enabling users to monitor their exercise conditions in real time.
[0025] By integrating different wrist strength exercise components, such as a swinging wrist strength exercise component, a lifting wrist strength exercise component and a rotating wrist strength exercise component, the present invention provides diversified exercise methods for different muscle groups of the forearm.
[0026] The swinging wrist strength exercise component exercises the muscles of the forearm and wrist through the swinging action of the user.
[0027] The lifting wrist strength exercise component conducts intensity training through the lifting action of the user in the vertical direction to exercise the muscles of the forearm and wrist.
[0028] The rotating wrist strength exercise component exercises the rotating muscles of the forearm through the rotating action of the user in the circumferential direction.
[0029] The described swing - arm wrist strength exercise component includes an inner handle component 32, an outer handle component 31, a weight - bearing grip turntable 10, a buffer pad 25, and a turntable rotation sensor. An outer handle component 31 is installed on the upper part of the training fixed frame 5. The weight - bearing grip turntable 10 is rotatably installed on the training fixed frame 5 through a turntable rotation shaft. An inner handle component 32 is installed on the turntable rotation shaft. The inner handle component 32 is arranged adjacent to the outer handle component 31 and forms a spacing. A buffer pad 25 is installed inside the training fixed frame 5. The buffer pad 25 is in dynamic cooperation with the weight - bearing grip turntable 10 to limit the rotation angle of the weight - bearing grip turntable 10. The dynamic cooperation between the buffer pad and the weight - bearing grip turntable provides a stable rotation angle limit, ensuring safety and controllability during the exercise process. A turntable counting sensor is installed on the training fixed frame 25 close to the side of the weight - bearing grip turntable 10. The turntable counting sensor is connected to the corresponding control display terminal through a data cable to read and display the rotation times of the weight - bearing grip turntable 10.
[0030] The described weight - bearing grip turntable 10 includes a weight - bearing swing rod 102, a connecting frame 103, and a weight - bearing bottom plate 101. The upper end of the weight - bearing swing rod 102 is installed with the connecting frame 103, and the connecting frame 103 is installed on the turntable rotation shaft. The lower end of the weight - bearing swing rod 102 is installed with the weight - bearing bottom plate 101, and the weight - bearing bottom plate 101 is perpendicular to the weight - bearing swing rod 102. The perpendicular arrangement of the weight - bearing swing rod, connecting frame, and weight - bearing bottom plate makes the whole component structure compact and saves space.
[0031] The structures of the inner handle component 32 and the outer handle component 31 are the same, and both include a first handle 33, a second handle 34, and a handle cover. The first handle 33 and the second handle 34 are arranged in an overall figure - eight shape, and handle covers are sleeved on both the first handle 33 and the second handle 34.
[0032] In the present utility model, the inner handle component 32 and the outer handle component 31 provide different holding positions, allowing users to choose a suitable handle according to their exercise needs and comfort.
[0033] The figure - eight shape of the handle component conforms to the ergonomic principle, which can reduce the pressure on the wrist and forearm and reduce the risk of injury.
[0034] Among them, the design of the weight - bearing grip turntable 10 allows users to change the exercise intensity by adjusting the weight on the weight - bearing bottom plate to adapt to exercisers at different levels.
[0035] The turntable counting sensor reads and displays the rotation times of the weight - bearing grip turntable in real - time to help users track the exercise progress and effect.
[0036] The described lifting wrist strength exercise component includes an arm support pad 24, a wrist strength handle frame 12, a sheath 23, and a lifting belt 26. The arm support pad 24 is installed on the outer side of the training fixing frame 5 through an arm support frame fixing frame. The wrist strength handle frame 12 is located at the upper part of the training fixing frame 5 and is supported by the training fixing frame 5. The wrist strength handle frame 12 is independently arranged with the training fixing frame 5. A sheath 23 is sleeved in the middle of the wrist strength handle frame 12. One end of the lifting belt 26 is connected to the sheath 23, and the other end is connected to a lifting component, and this lifting component is installed at the lower part of the arm support pad 24.
[0037] The described lifting component includes an upper counterweight frame 9, a middle connecting rod 13, and a lower counterweight frame 11. The upper end of the upper counterweight frame 9 is hinged to the arm support frame fixing frame. The lower end of the upper counterweight frame 9 is hinged to one end of the middle connecting rod 13. The other end of the middle connecting rod 13 is hinged to the upper end of the lower counterweight frame 11. The lifting belt 26 is connected to the middle connecting rod 13; a connecting rod swing counting sensor is installed on the middle connecting rod 13, and this connecting rod swing counting sensor is connected to a corresponding control display terminal through a data cable to read and display the number of swings of the middle connecting rod 13. The connecting rod swing counting sensor can read and display the number of swings of the middle connecting rod in real time to help the user monitor the exercise intensity and progress; through the design of the upper counterweight frame, middle connecting rod, and lower counterweight frame of the lifting component, the user can adjust the resistance according to needs to adapt to different intensity exercise requirements.
[0038] Through the combination of the arm support pad 24, the wrist strength handle frame 12, the sheath 23, and the lifting belt 26, it helps to comprehensively exercise the forearm muscles.
[0039] The design of the arm support pad provides arm support, reduces the pressure on the arm during exercise, and increases the comfort during exercise.
[0040] The described rotary wrist strength exercise component includes a wrist rotation frame 7, a safety hook 18, and a barbell plate rack 8. The wrist rotation frame 7 is rotatably installed on the training fixing frame 5 through a bearing seat 19. A flexible component 16 (the flexible component is a rope or a webbing) is installed on the wrist rotation frame 7. The upper end of the flexible component 16 is connected to the wrist rotation frame 4, and the lower end is installed with a safety hook 18. The barbell plate rack 8 is hung on the safety hook 18; a wrist rotation counting sensor is installed on the training fixing frame 5 close to the wrist rotation frame 4. This wrist counting sensor is connected to a corresponding control display terminal through a data cable to read and display the number of rotations of the wrist rotation frame; the wrist rotation counting sensor can read and display the number of rotations of the wrist rotation frame in real time to help the user monitor the exercise frequency and intensity.
[0041] The design of the wrist rotation frame enables the user to perform rotational movements in the circumferential direction, comprehensively exercising the muscle groups of the forearm.
[0042] The use of the safety hook 18 provides additional safety protection to prevent the barbell plate rack 8 from accidentally falling off during exercise; the design of the barbell plate rack allows users to adjust the exercise resistance by adding or removing barbell plates to meet the exercise needs of different intensities.
[0043] The working principle of the present utility model is as follows:
[0044] For the swing-arm wrist strength exercise component: the outer handle component 31 is installed on the upper part of the training fixing frame, the inner handle component 32 is installed on the rotating shaft of the rotating frame, adjacent to the outer handle component and forming a spacing to provide different holding positions; the weight-bearing grip rotating frame 10 can rotate around the rotating shaft of the rotating frame to achieve a swing-arm movement; the buffer pad 25 is in dynamic cooperation with the weight-bearing grip rotating frame 10 to limit the rotation angle and ensure exercise safety; the rotating frame rotation sensor monitors the number of rotations of the weight-bearing grip rotating frame and transmits the data to the control display terminal.
[0045] For the lifting wrist strength exercise component: the arm support pad 24 is installed on the outside of the training fixing frame 5 to provide arm support; the wrist strength handle frame 12 is independently provided for the user to hold conveniently, and a sheath is installed in the middle to increase the holding comfort; the lifting component is composed of an upper weight rack 9, a middle connecting rod 13 and a lower weight rack 11, and the force is transmitted through hinges; the connecting rod swing counting sensor monitors the number of swings of the middle connecting rod and transmits the data to the control display terminal.
[0046] For the rotating wrist strength exercise component: the wrist rotating frame 7 is installed on the training fixing frame 5 and rotates through a bearing seat; a flexible component (rope or webbing) connects the wrist rotating frame and the barbell plate rack, and different exercise resistances are provided by replacing the barbell plate rack; the wrist rotation counting sensor monitors the number of rotations of the wrist rotating frame and transmits the data to the control display terminal.
[0047] The data collected by the sensors of all exercise components are transmitted to the control display terminal through data lines, and users can monitor information such as the number of exercises and frequency in real time to evaluate the exercise effect.
[0048] The above is only the preferred specific implementation manner of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution and the inventive concept of the present utility model, makes equivalent substitutions or changes, and all should be covered by the protection scope of the present utility model.
Claims
1. A forearm multifunctional multi-position training machine, comprising a main frame, a ground-contacting support frame and a training fixed frame, wherein the ground-contacting support frame is installed at the bottom of the main frame and supported by the ground-contacting support frame; the training fixed frame is installed on the periphery of the main frame along the circumferential direction of the main frame, characterized in that: An arm swinging wrist strength training component, a lifting wrist strength training component and a rotating wrist strength training component are installed on the training fixed frame. The training data of the arm swinging wrist strength training component, the lifting wrist strength training component and the rotating wrist strength training component are displayed through a control display terminal respectively, and all the control display terminals are fixedly installed on the main frame.
2. The forearm multifunctional multi-position training machine according to claim 1, characterized in that: The arm-swinging wrist strength training component includes an inner handle component, an outer handle component, a weight-bearing grip turntable, a buffer pad and a turntable rotation sensor. The outer handle component is installed on the upper part of the training fixed frame. The weight-bearing grip turntable is rotatably installed on the training fixed frame through the turntable rotation axis. The inner handle component is installed on the turntable rotation axis. The inner handle component is adjacent to the outer handle component and forms a gap. A buffer pad is installed on the inner side of the training fixed frame. The buffer pad cooperates with the weight-bearing grip turntable to limit the rotation angle of the weight-bearing grip turntable. A turntable counting sensor is installed on the training fixed frame close to one side of the weight-bearing grip turntable. The turntable counting sensor is connected to the corresponding control display terminal through a data line to read and display the number of rotations of the weight-bearing grip turntable.
3. The multifunctional multi-position training machine for forearms according to claim 2, characterized in that: The weight-bearing gripping rotating frame includes a weight-bearing swing arm, a connecting frame and a weight-bearing base plate. The connecting frame is installed on the upper end of the weight-bearing swing arm, and the connecting frame is installed on the rotating axis of the rotating frame; the weight-bearing base plate is installed on the lower end of the weight-bearing swing arm, and the weight-bearing base plate is vertically arranged with the weight-bearing swing arm.
4. The forearm multifunctional multi-position training machine according to claim 2 or 3, characterized in that: The inner handle assembly and the outer handle assembly have the same structure, both comprising a first handle, a second handle and a handle cover. The first handle and the second handle are arranged in an "eight" shape as a whole, and the first handle and the second handle are both covered with a handle cover.
5. The forearm multifunctional multi-position training machine according to claim 4, characterized in that: The lifting wrist strength training component includes an arm support pad, a wrist strength handle frame, a sleeve and a lifting strap. The arm support pad is installed on the outside of the training fixed frame through an arm support frame fixing frame. The wrist strength handle frame is located on the upper part of the training fixed frame and is supported by the training fixed frame. The wrist strength handle frame and the training fixed frame are independently arranged. A sleeve is mounted on the middle part of the wrist strength handle frame. One end of the lifting strap is connected to the sleeve, and the other end is connected to the lifting component. The lifting component is installed at the lower part of the arm support pad.
6. The forearm multifunctional multi-position training machine according to claim 5, characterized in that: The lifting assembly includes an upper counterweight frame, a middle connecting rod and a lower counterweight frame, the upper end of the upper counterweight frame is hinged on the support arm frame fixing frame, the lower end of the upper counterweight frame is hinged to one end of the middle connecting rod, the other end of the middle connecting rod is hinged to the upper end of the lower counterweight frame, and the lifting belt is connected to the middle connecting rod; a connecting rod swing counting sensor is installed on the middle connecting rod, and the connecting rod swing counting sensor is connected to the corresponding control display terminal via a data line to read and display the number of swings of the middle connecting rod.
7. The multifunctional multi-position training machine for forearms according to claim 4, characterized in that: The rotating wrist strength training component includes a wrist rotating frame, a safety hook and a barbell plate rack. The wrist rotating frame is rotatably installed on the training fixed frame through a bearing seat. A flexible component is installed on the wrist rotating frame. The upper end of the flexible component is connected to the wrist rotating frame, and the lower end is installed with a safety hook. The barbell plate rack is hung on the safety hook. A wrist rotation counting sensor is installed on the training fixed frame close to one side of the wrist rotating frame. The wrist counting sensor is connected to the corresponding control display terminal through a data cable to read and display the number of rotations of the wrist rotating frame.
8. The forearm multifunctional multi-position training machine according to claim 7, characterized in that: The flexible component is a rope or a webbing.