Dizziness balance training auxiliary device
By designing a dizziness balance training aid device with a rotating platform, anti-slip protrusions, and a drive mechanism, the problem of weakened static training effect is solved, balance ability and neural reaction ability are improved, and the fun and effectiveness of training are enhanced.
Patent Information
- Application Number
- CN202423031858.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-10
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2034-12-10
AI Technical Summary
Existing methods for training dizziness and balance have long relied on single static balance exercises, leading to a gradual weakening of their training effectiveness.
A dizziness balance training aid device was designed, including a rotating platform, anti-slip protrusions, a drive mechanism, and a transmission structure. It enhances the fun and effectiveness of training through various means, such as standing and rotating training with both legs, massage with anti-slip protrusions, and adjustment of the support force of the inflatable airbag.
It improves users' balance and nervous system responsiveness, increases the fun of training, and promotes training effectiveness through massage and support adjustment.
Smart Images

Figure CN223874126U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of medical equipment, in particular to a dizziness balance training auxiliary device. BACKGROUND
[0002] In modern society, with the acceleration of life rhythm and the increase of work pressure, more and more people are facing the problems of dizziness and decreased balance ability. Dizziness and decreased balance ability not only affect the daily life and work efficiency of individuals, but also increase the risk of accidents such as falling.
[0003] Traditional dizziness balance training methods usually rely on static balance exercises, such as standing on one leg with eyes closed. Although these methods can exercise balance ability to some extent, the training content is relatively single. Long-term single static balance exercise may gradually adapt to this training mode, resulting in gradually weakened training effect.
[0004] Therefore, the present application provides a dizziness balance training auxiliary device to solve the above problems. CONTENT OF THE UTILITY MODEL
[0005] The present application provides a dizziness balance training auxiliary device, which aims to solve the problems that the existing dizziness balance training methods in the background art often rely on single static balance exercise for a long time. This single exercise is easy to cause the human body to gradually adapt to the training mode, thereby gradually weakening the training effect.
[0006] To achieve the above-mentioned purpose, the present application provides the following technical solution: a dizziness balance training auxiliary device, comprising a base, a rotating table arranged on the base, two placing grooves arranged on the rotating table for placing human feet, and a plurality of anti-skid protrusions arranged in the placing grooves.
[0007] One of the anti-skid protrusions is rotatably arranged in the placing groove, and the other anti-skid protrusions are fixedly arranged in the placing groove.
[0008] The dizziness balance training auxiliary device further comprises a driving mechanism arranged in the base for rotating the rotating table and a transmission structure arranged in the base and connected with the driving mechanism for rotating one of the anti-skid protrusions in each of the two placing slots to massage the human foot; the design of the two placing slots and the plurality of anti-skid protrusions allows the user to stand on one leg and close his eyes to perform the dizziness balance training, and the design of the plurality of anti-skid protrusions allows the user to not only balance the body position during the training, but also adjust the perception and muscle control of the foot, thereby further improving the balance ability; the design of the driving mechanism allows the user to stand on both legs and close his eyes to perform the rotating dizziness balance training, and the transmission of the transmission structure during the training can simultaneously drive one of the anti-skid protrusions in each of the two placing slots to massage the sole of the user's foot, which not only increases the interest of the training, but also activates the acupoints of the nervous system through the massage to improve the overall reaction ability of the body and promote the training effect.
[0009] Preferably, in order to ensure the safety of the user during the training and facilitate the use of the rotating table by the user, a guardrail is fixedly installed around the rotating table, and a gap is formed on one side of the guardrail for the human body to enter; the fixed installation of the guardrail effectively prevents the user from accidentally falling off the rotating table due to loss of balance during the training, thereby greatly improving the safety of the training, and the design of the gap facilitates the user to enter and exit the rotating table, and ensures the integrity of the guardrail in most cases, thereby maintaining the protection effect.
[0010] Preferably, in order to realize the rotation of the rotating table, the driving mechanism comprises a fixed shaft rotatably connected in the base and fixedly connected with the bottom end of the rotating table, and a speed regulating motor fixedly installed in the base and connected with the bottom end of the fixed shaft for driving the fixed shaft to rotate; the fixed shaft is driven to rotate by the speed regulating motor, and the rotating table is driven to rotate by the fixed shaft, which is simple and convenient.
[0011] Preferably, in order to realize the rotation of one of the anti-skid protrusions in each of the two placing slots, the transmission structure comprises a fixed gear rotatably arranged in the base and fixedly sleeved on the outside of the fixed shaft, two transmission gears symmetrically rotatably arranged on both sides of the fixed gear and located below the corresponding two placing slots of the rotating table, and a transmission shaft longitudinally penetrating the rotating table and the placing slots and fixedly connected with the top end of the transmission gear and the bottom end of one of the anti-skid protrusions at both ends, respectively; the transmission shaft is rotatably connected in the rotating table and the placing slots, and the two transmission gears are engaged with the fixed gear; through the combined design of the fixed gear, the transmission gear and the transmission shaft, the rotation of the rotating table can be realized while one of the anti-skid protrusions in each of the two placing slots is simultaneously driven to rotate, so as to realize the massage of the sole of the user's foot.
[0012] Preferably, in order to promote the training effect, a plurality of said anti-skid protrusions are hemispheres of different hardness, and the surface of said hemispheres is provided with anti-skid lines; the hemispheres of different hardness provide diversified tactile stimulation, so that the user needs to constantly adjust the foot posture and muscle control to adapt to the changes during the training process, which helps to improve the user's adaptability to irregular objects and further improve the balance ability. At the same time, the design of anti-skid lines can improve the contact friction between the user's foot and the hemispheres, and improve the stability.
[0013] Preferably, in order to improve the stability of the user's foot placed in the placement slot, an inflatable air bag for wrapping the human foot is fixedly installed on the inner side edge of the placement slot; the design of the inflatable air bag can appropriately increase the supporting force of the inflatable air bag in the early training stage, helping the user to maintain balance more easily, while reducing the support of the inflatable air bag in the later training stage, increasing the challenge and improving the balance ability.
[0014] The dizziness balance training aid device can make the user stand on one leg and close his eyes to perform dizziness balance training through the design of two placement slots and a plurality of anti-skid protrusions. The design of the plurality of anti-skid protrusions can make the user not only balance the body position, but also adjust the foot perception and muscle control during training, further improving the balance ability.
[0015] The dizziness balance training aid device can make the user stand on both legs and close his eyes to perform rotating dizziness balance training through the design of the driving mechanism. During training, the driving mechanism can drive one of the anti-skid protrusions in the two placement slots through the transmission structure, thereby massaging the user's foot. This design not only increases the interest of training, but also activates the acupoints of the nervous system through massage, improves the overall reaction ability of the body, and promotes the training effect.
[0016] The dizziness balance training aid device can appropriately increase the supporting force of the inflatable air bag in the early training stage, helping the user to maintain balance more easily, while reducing the support of the inflatable air bag in the later training stage, increasing the challenge and improving the balance ability. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a structure diagram of a dizziness balance training aid device in Example 1.
[0018] Figure 2 It is an exploded view of a dizziness balance training aid device in Example 1 when the guardrail is not installed.
[0019] Figure 3 It is a structure diagram of the driving mechanism and the transmission structure in Example 1.
[0020] Figure 4This is an exploded view of a dizziness balance training aid device in Example 2 without the guardrail installed.
[0021] In the picture:
[0022] 1. Abutment;
[0023] 2. Rotating platform; 21. Guardrail; 211. Notch;
[0024] 3. Placement slot; 31. Inflatable airbag;
[0025] 4. Anti-slip protrusions;
[0026] 5. Drive mechanism; 51. Fixed shaft; 52. Speed-regulating motor;
[0027] 6. Transmission structure; 61. Fixed gear; 62. Transmission gear; 63. Transmission shaft. Detailed Implementation
[0028] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0029] Example 1
[0030] This embodiment provides a dizziness balance training aid device, such as... Figures 1-3 As shown, the dizziness balance training aid includes a base 1, a rotating platform 2 mounted on the base 1, two placement slots 3 on the rotating platform 2 for placing the human feet, and multiple anti-slip protrusions 4 within the placement slots 3; one of the anti-slip protrusions 4 is rotatably mounted within the placement slot 3, and the other multiple anti-slip protrusions 4 are fixedly mounted within the placement slot 3; the dizziness balance training aid also includes a drive mechanism 5 mounted within the base 1 for rotating the rotating platform 2, and a transmission structure 6 mounted within the base 1 and connected to the drive mechanism 5 for rotating one of the anti-slip protrusions 4 in each of the two placement slots 3 to massage the human feet.
[0031] To ensure user safety during training and facilitate user access to the rotating platform 2, a guardrail 21 is fixedly installed around the rotating platform 2. One side of the guardrail 21 has an opening 211 for human entry. The fixed installation of the guardrail 21 effectively prevents users from accidentally falling due to loss of balance during training on the rotating platform 2, greatly improving training safety. The design of the opening 211 facilitates user access to and from the rotating platform 2 while ensuring the integrity of the guardrail 21 in most cases, maintaining its protective function.
[0032] In use, the user stands on the rotating table 2 and selects single-leg or double-leg standing training as needed, when single-leg training is needed, the corresponding foot is only needed to be placed in the corresponding placement slot 3 and stepped on the plurality of anti-skid protrusions 4 in the placement slot 3, the body posture is adjusted with eyes closed, balance is maintained, and training is performed, when double-leg training is needed, the two feet can be placed in the corresponding two placement slots 3 and stepped on the plurality of anti-skid protrusions 4, the body posture is adjusted with eyes closed, then the driving mechanism 5 is started to drive the rotating table 2 to rotate, with the rotation of the rotating table 2, the user can maintain balance according to the user's own condition, at the same time, through the transmission of the transmission structure 6, one of the anti-skid protrusions 4 in the two placement slots 3 will massage the soles of the two feet respectively to stimulate the acupoints of the nervous system, improve the overall reaction ability of the user's body, and further promote the training effect, in the use process of training, the guardrail 21 set by you can prevent the user from accidentally falling off the rotating table 2 due to loss of balance during training.
[0033] Specifically, the driving mechanism 5 includes a fixed shaft 51 rotatably connected in the base 1 and fixedly connected with the bottom end of the rotating table 2, and a speed regulating motor 52 fixedly installed in the base 1 and connected with the bottom end of the fixed shaft 51 for driving the fixed shaft 51 to rotate;
[0034] When the user needs to perform double-leg standing and blind rotating balance training, the user first stands with both feet in the two placement slots 3 and closes eyes, and then starts the speed regulating motor 52, with the movement of the speed regulating motor 52, the fixed shaft 51 connected therewith also rotates synchronously, then through the connection of the fixed shaft 51, the rotating table 2 also rotates synchronously, with the rotation of the rotating table 2, the user can rotate synchronously, and then the balance training can be performed, after the training is completed, the driving of the speed regulating motor 52 is paused.
[0035] Further, the transmission structure 6 includes a fixed gear 61 rotatably arranged in the base 1 and fixedly sleeved outside the fixed shaft 51, transmission gears 62 symmetrically rotatably arranged on both sides of the fixed gear 61 and located below the corresponding two placement slots 3 of the rotating table 2, and a transmission shaft 63 longitudinally penetrating the rotating table 2 and the placement slot 3 in sequence and fixedly connected with the top end of the transmission gear 62 and the bottom end of one of the anti-skid protrusions 4 at both ends, the transmission shaft 63 is rotatably connected in the rotating table 2 and the placement slot 3, and the two transmission gears 62 are in mesh with the fixed gear 61.
[0036] It can be understood that, in order to promote the training effect, the plurality of anti-skid protrusions 4 are hemispheres of different hardness, and the surface of the hemispheres is provided with anti-skid lines; the anti-skid protrusions 4 of different hardness provide diversified tactile stimulation, so that the user needs to constantly adjust the foot posture and muscle control to adapt to the change during the training process, which helps to improve the user's adaptability to irregular objects and further improve the balance ability. At the same time, the design of the anti-skid lines can improve the contact friction between the user's foot and the hemispheres, and improve the stability.
[0037] When the user needs to perform balance training of standing on both legs and rotating with eyes closed, and starts the speed regulating motor 52 to drive the fixed shaft 51 to rotate, since the fixed gear 61 is sleeved on the fixed shaft 51, the fixed gear 61 will also rotate synchronously with the rotation of the fixed shaft 51, and since the transmission gears 62 on both sides are engaged with the fixed gear 61, and the transmission gears 62 are connected with the transmission shaft 63, therefore, with the rotation of the fixed gear 61, the transmission gears 62 on both sides also drive the transmission shaft 63 connected therewith to rotate, and with the rotation of the transmission shaft 63, one of the anti-skid protrusions 4 connected with the transmission shaft 63 will also rotate synchronously on the user's foot, so as to massage the user's foot to stimulate the acupoints of the nervous system, improve the overall reaction ability of the body, and promote the training effect.
[0038] Embodiment 2
[0039] Different from embodiment 1, as shown in Figure 2 In order to improve the stability of the user's foot placed in the placement groove 3, the inner side edge of the placement groove 3 is fixedly installed with an inflatable air bag 31 for wrapping the human foot; the design of the inflatable air bag 31 can appropriately increase the supporting force of the inflatable air bag 31 in the early training stage, helping the user to more easily maintain balance, and can reduce the support of the inflatable air bag 31 in the later training stage, increase the challenge, and improve the balance ability. The inflatable air bag 31 is provided with an inflation port for deflation and inflation, and can also be inflated by a gas pump.
[0040] The above is only the preferred specific embodiment of the present application, but the protection scope of the present application is not limited thereto, any person skilled in the art can make equivalent replacement or change according to the technical scheme and concept of the present application within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A dizziness balance training aid, characterized by: The utility model provides a dizziness balance training auxiliary device, including base (1), rotation platform (2) of setting on base (1), two setting groove (3) for human foot placement of opening in rotation platform (2) and multiple antiskid convex (4) of setting in setting groove (3) are placed, One of the anti-skid convex (4) is rotatably arranged in the setting groove (3), and the other anti-skid convex (4) is fixedly arranged in the setting groove (3). The dizziness balance training auxiliary device further comprises a driving mechanism (5) arranged in the base (1) for rotating the rotation platform (2), and a transmission structure (6) arranged in the base (1) and connected with the driving mechanism (5) for rotating the anti-skid convex (4) in one of the setting grooves (3) to massage the human foot.
2. The dizziness balance training aid of claim 1, wherein: The rotation platform (2) is fixedly installed with a guardrail (21) around, and the guardrail (21) is provided with a gap (211) on one side for a human body to enter.
3. The dizziness balance training aid of claim 2, wherein: The driving mechanism (5) comprises a fixed shaft (51) rotatably connected in the base (1) and fixedly connected with the bottom end of the rotation platform (2), and a speed regulating motor (52) fixedly installed in the base (1) and connected with the bottom end of the fixed shaft (51) for driving the fixed shaft (51) to rotate.
4. The dizziness balance training aid of claim 3, wherein: The transmission structure (6) comprises a fixed gear (61) rotatably arranged in the base (1) and fixedly sleeved on the outside of the fixed shaft (51), transmission gears (62) symmetrically rotatably arranged on both sides of the fixed gear (61) and located below the corresponding two setting grooves (3) of the rotation platform (2), and a transmission shaft (63) longitudinally penetrating the rotation platform (2) and the setting groove (3) in sequence and fixedly connected with the top end of the transmission gear (62) and the bottom end of the anti-skid convex (4), the transmission shaft (63) is rotatably connected in the rotation platform (2) and the setting groove (3), and the two transmission gears (62) are engaged with the fixed gear (61).
5. The dizziness balance training aid of claim 1, wherein: The multiple anti-skid convexes (4) are hemispheres with different hardness, and the surface of the hemispheres is provided with anti-skid lines.
6. The dizziness balance training aid of claim 1, wherein: The inside edge of the setting groove (3) is fixedly installed with an inflatable air bag (31) for wrapping the human foot.