Balance force exercise bridge for children

By introducing the combination of inner shaft core, rotary shell, bearing and outer sealing shell into the children's balance force training bridge, the problem of unadjustment of angles is solved, and the diversity and safety of children's balance force training bridge is improved.

CN223054976UActive Publication Date: 2025-07-04HEFEI QIDI FUTURE EDUCATION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421607885.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-08
Publication Date
2025-07-04
Estimated Expiration
2034-07-08

AI Technical Summary

Technical Problem

The existing children's balanced exercise bridge cannot adjust the angle according to the characteristics of children's physical development and needs, resulting in poor exercise results and safety risks.

Method used

A children's balance force training bridge is designed, and the angle of the bridge is adjustable through the combination of inner shaft core, rotary shell, bearing and outer sealing shell, and equipped with anti-slip pads and sealing covers to improve safety.

Benefits of technology

The exercise angle is adjusted according to individual differences among children, which improves the exercise effect and safety, and enhances the diversity of equipment and the convenience of installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a children's balance exercise bridge, including: side ladder and seal cover, the upper end of side ladder is equipped with a group of non-slip mat for preventing children from slipping, the number of side ladder is two, the upper end of the side ladder on the left side is equipped with a group of left bridge body for children's balance exercise, and the upper end of the side ladder on the right side is equipped with a group of right bridge body for children's balance exercise. The right side of the left bridge body is provided with a group of right bridge bodies used for children to exercise balance ability, the lower end of the left bridge body is provided with two groups of front supporting seats used for supporting the left bridge body, and the lower end of each group of front supporting seats is provided with a plurality of groups of inner fixing holes used for being fixedly connected with the ground through bolts. Compared with the prior art, the front supporting seats are used for supporting the left axle body, the sealing cover is used for preventing external dust from entering, the rotating shell and the bearing are used for guaranteeing that the inner shaft core can rotate stably, the right axle body is adjusted in a rotating mode, and the service life of the left axle body is prolonged. And stable rotation of the rotary disc is limited by using the outer sealing shell.
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Description

Technical Field

[0001] The utility model belongs to the technical field of children's exercise facility detection and relates to a children's balance exercise bridge. Background Technique

[0002] The children's balance exercise bridge is a sports equipment designed specifically for young children. It not only has entertainment value but also invisibly exercises children's balance ability and physical fitness. This equipment is designed with full consideration of children's psychological and physiological characteristics, enabling children to exercise physically and mentally while playing. When the children's balance exercise bridge cannot be adjusted in angle according to the specific installation environment, a series of problems may occur. These problems may not only affect the exercise effect of children but also pose a potential threat to their safety.

[0003] The fixed angle may not be able to adapt to the physical development characteristics and needs of all children. Each child has different balance abilities, heights, weights, and physical fitness, and the angles and difficulties they need during balance exercise will also vary. If the angle of the balance bridge cannot be adjusted, it may lead to a more complex installation of the exercise bridge and reduce the diversity of the exercise bridge's use. Therefore, there is an urgent need for a children's balance exercise bridge to solve the above problems. Content of the Utility Model

[0004] Aiming at the deficiencies existing in the prior art, the purpose of the utility model is to provide a children's balance exercise bridge to solve the problems put forward in the above background technique.

[0005] The utility model is realized through the following technical solutions: A children's balance exercise bridge includes: side ladders and a sealing cover. A group of anti-slip pads for preventing children from slipping are provided at the upper ends of the side ladders.

[0006] There are two groups of side ladders. A group of left bridge bodies for children to exercise their balance ability are provided at the upper ends of the left side ladders, and a group of right bridge bodies for children to exercise their balance ability are provided on the right side of the left bridge bodies.

[0007] Two groups of front support seats for supporting the left bridge body are provided at the lower end of the left bridge body. A number of inner fixing holes for bolt connection and fixation with the ground are provided at the lower end of each group of front support seats. Anti-slip layers for preventing children from slipping are provided at the upper ends of both the left bridge body and the right bridge body. The left bridge body can be supported by using a number of front support seats.

[0008] As a preferred implementation manner, a group of left sockets for movably connecting with the right bridge body are provided on the right side of the left bridge body. An outer socket for restricting the internal position of the sealing cover is provided at the middle position inside the left socket, and the outer socket is connected and fixed to the left side of the right bridge body.

[0009] As a preferred embodiment, a number of groups of internal fixing holes for connecting and fixing the outer embedded shell and preventing its displacement are provided inside the outer embedded shell. A set of bolts is provided inside the internal fixing holes. A sealing cover for preventing external dust from entering is provided on the inner side of the outer embedded shell, and the sealing cover can be used to prevent external dust from entering.

[0010] As a preferred embodiment, a set of inner axles for the rotation adjustment of the right bridge body is provided at the middle position inside the sealing cover. A set of rotating shells for fitting with the inside of the inner axles is provided at the upper end of the inner axles. The rotating shells are connected to the inner side of the outer embedded base through a set of bearings. The rotating shells and the bearings can be used to ensure the stable rotation of the inner axles and perform the rotation adjustment of the right bridge body.

[0011] As a preferred embodiment, a set of rotating disks for fitting with the inside of the embedding grooves are provided on both the upper and lower sides of the left embedding opening. The rotating disks are a kind of movable mechanism, and an outer sealing shell for restricting the stable rotation of the rotating disks is provided on the outer side of the rotating disks. The outer sealing shell can be used to restrict the stable rotation of the rotating disks.

[0012] As a preferred embodiment, a set of embedding grooves for fitting with the upper end of the left embedding opening are provided at the middle position of the rotating shell. A set of motors for actively controlling the rotation of the inner axles are provided at the lower end of the inner axles. The motors are a kind of flat motors.

[0013] As a preferred embodiment, the side ladder is provided with two sets of steps, and each set of the side ladder is respectively connected and fixed to the left side of the left bridge body and the right side of the right bridge body through bolts. The left bridge body and the two front support seats are of an integral structure, and the right bridge body and the two rear support seats are of an integral structure.

[0014] After adopting the above technical solutions, the beneficial effects of the present utility model are as follows: the left bridge body is supported by using a number of groups of front support seats, external dust is prevented from entering by using the sealing cover, the stable rotation of the inner axles is ensured and the rotation adjustment of the right bridge body is performed by using the rotating shells and the bearings, and the stable rotation of the rotating disks is restricted by using the outer sealing shell. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0016] Figure 1 It is a front-side top view structural schematic diagram of a children's balance exercise bridge of the present utility model;

[0017] Figure 2 This is a front-side top view structural schematic diagram when the left bridge body and the right bridge body of a children's balance exercise bridge of the present utility model are separated;

[0018] Figure 3 This is a front-side top view structural schematic diagram inside the outer embedded shell of a children's balance exercise bridge of the present utility model;

[0019] In the figure: 100 - side ladder, 110 - anti-slip pad, 120 - left bridge body, 130 - anti-slip layer, 140 - front support seat, 150 - inner fixing hole, 160 - right bridge body, 170 - rear support seat, 180 - right embedding opening, 190 - outer embedded shell, 200 - embedding groove, 210 - inner fixing hole, 220 - inner shaft core, 230 - sealing cover. Specific embodiments

[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without making creative efforts belong to the protection scope of the present utility model.

[0021] Please refer to Figures 1 - 3 , a children's balance exercise bridge, including: a side ladder 100, an anti-slip pad 110, a left bridge body 120, and a sealing cover 230. A set of anti-slip pads 110 for preventing children from slipping are provided at the upper end of the side ladder 100;

[0022] There are two sets of side ladders 100. A set of left bridge bodies 120 for children to exercise their balance ability are provided at the upper end of the left side ladder 100. A set of right bridge bodies 160 for children to exercise their balance ability are provided on the right side of the left bridge body 120;

[0023] Two sets of front support seats 140 for supporting the left bridge body 120 are provided at the lower end of the left bridge body 120. A number of inner fixing holes 150 for connecting and fixing to the ground by bolts are provided at the lower end of each set of front support seats 140. The left bridge body 120 can be supported by using a number of front support seats 140. A set of anti-slip layers 130 for preventing children from slipping are provided at the upper ends of both the left bridge body 120 and the right bridge body 160.

[0024] A set of left embedding openings 180 for movably connecting with the right bridge body 160 are provided on the right side of the left bridge body 120. A set of outer embedded shells 190 for restricting the internal position inside the sealing cover 230 are provided at the middle position inside the left embedding openings 180. The outer embedded shells 190 are connected and fixed to the left side of the right bridge body 160.

[0025] Inside the outer embedding shell 190, there are several groups of fixing grooves 210 for connecting and fixing it and preventing its displacement. Inside the fixing grooves 210, there is a set of bolts. Inside the inner side of the outer embedding shell 190, there is a set of sealing covers 230 for preventing external dust from entering. It is possible to prevent external dust from entering by using the sealing covers 230.

[0026] In the middle position inside the sealing cover 230, there is a set of inner shaft cores 220 for the rotation adjustment of the right bridge body 160. At the upper end of the inner shaft core 220, there is a set of rotating shells that are mutually fitted inside the inner shaft core 220. The rotating shell and the inner side of the outer embedding seat are connected by a set of bearings. It is possible to ensure the stable rotation of the inner shaft core 220 and perform the rotation adjustment of the right bridge body 160 by using the rotating shell and the bearings.

[0027] On both the upper and lower sides of the left embedding opening 180, there is a set of rotating disks that are mutually fitted inside the embedding grooves 200. The rotating disks are a kind of movable mechanism, and on the outer side of the rotating disks, there is a set of outer sealing shells for restricting the stable rotation of the rotating disks. It is possible to restrict the stable rotation of the rotating disks by using the outer sealing shells.

[0028] In the middle position of the rotating shell, there is a set of embedding grooves 200 for mutually fitting with the upper end of the left embedding opening 180. At the lower end of the inner shaft core 220, there is a set of motors for actively controlling the rotation of the inner shaft core 220. The motors are a kind of flat motors.

[0029] The side ladder 100 is provided with two groups of steps, and each group of side ladders 100 is respectively connected and fixed to the left side of the left bridge body 120 and the right side of the right bridge body 160 by bolts. The left bridge body 120 and the two groups of front support seats 140 are of an integral structure, and the right bridge body 160 and the two groups of rear support seats 170 are of an integral structure.

[0030] Please refer to Figures 1 - 3, as the first embodiment of the present utility model: To solve the problem that fixed angles may not be able to adapt to the physical development characteristics and needs of all children. Each child has different balance abilities, heights, weights, and physical fitness, and the angles and difficulties required for them to exercise their balance abilities will also vary. If the angle of the balance bridge cannot be adjusted, it may lead to a more complex installation of the exercise bridge and reduce the diversity of the use of the exercise bridge. First, the staff adjusts the angle between the left bridge body 120 and the right bridge body 160 according to the specific installation environment required. During the adjustment process, since a set of inner axles 220 for the rotational adjustment of the right bridge body 160 is provided at the middle position inside the sealing cover 230, a set of rotating shells for mutually engaging with the inside of the inner axles 220 is provided at the upper end of the inner axles 220. A set of rotating disks for mutually engaging with the inside of the engaging grooves 200 are provided on both the upper and lower sides of the left engaging opening 180. The rotating disks are a kind of movable mechanism. A set of engaging grooves 200 for mutually engaging with the upper end of the left engaging opening 180 is provided at the middle position of the rotating shell. The staff can actively operate the motor to drive the rotation of the inner axles 220, and make the inner axles 220 rotate, and drive the rotation of the rotating shell through the inner axles 220, so as to rotate the right bridge body 160 along the left engaging opening 180, thereby performing angle adjustment. Subsequently, the staff uses bolts to connect and fix the rear support seat 170 to the ground, and the angle between the left bridge body 120 and the right bridge body 160 can be locked.

[0031] Please refer to Figures 1 - 3 , as the second embodiment of the present utility model: Based on the description in the above embodiment, further, since a set of anti-slip pads 110 for preventing children from slipping are provided at the upper end of the side ladder 100, and a set of anti-slip layers 130 for preventing children from slipping are provided at the upper ends of both the left bridge body 120 and the right bridge body 160. When children use the present utility model, the anti-slip layers 130 and the anti-slip pads 110 can increase the frictional force under the feet of children on the left bridge body 120 and the right bridge body 160, thereby preventing children from slipping on the upper ends of the left bridge body 120 and the right bridge body 160.

[0032] The above are only the preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A children's balance exercise bridge, comprising: Side ladder (100), anti-slip mat (110), left bridge body (120) and sealing cover (230), characterized in that: a set of anti-slip mats (110) for preventing children from slipping are provided at the upper end of the side ladder (100); There are two sets of the side ladders (100). A left bridge body (120) for children to exercise their balance ability is provided at the upper end of the left side ladder (100), and a right bridge body (160) for children to exercise their balance ability is provided on the right side of the left bridge body (120); Two sets of front support seats (140) for supporting the left bridge body (120) are provided at the lower end of the left bridge body (120). A number of internal fixing holes (150) for bolt connection and fixation with the ground are provided at the lower end of each set of the front support seats (140). Anti-slip layers for preventing children from slipping are provided at the upper ends of both the left bridge body (120) and the right bridge body (160); A left socket (180) for movably connecting with the right bridge body (160) is provided on the right side of the left bridge body (120). An outer socket shell (190) for restricting the internal position of the sealing cover (230) is provided at the middle position inside the left socket (180). The outer socket shell (190) is fixedly connected to the left side of the right bridge body (160); A number of fixing grooves (210) for connecting and fixing it and preventing its displacement are provided inside the outer socket shell (190). A set of bolts are provided inside the fixing grooves (210). A sealing cover (230) for preventing external dust from entering is provided inside the outer side of the outer socket shell (190); An inner axle core (220) for rotational adjustment of the right bridge body (160) is provided at the middle position inside the sealing cover (230). A rotating shell for mutually engaging with the inside of the inner axle core (220) is provided at the upper end of the inner axle core (220). The rotating shell is connected to the inner side of the outer socket seat through a set of bearings; A set of rotating disks for mutually engaging with the inside of the slot (200) are provided on both the upper and lower sides of the left socket (180). The rotating disks are an active mechanism, and an outer sealing shell for restricting the stable rotation of the rotating disks is provided on the outer side of the rotating disks; A slot (200) for mutually engaging with the upper end of the left socket (180) is provided at the middle position of the rotating shell. A motor for actively controlling the rotation of the inner axle core (220) is provided at the lower end of the inner axle core (220). The motor is a flat motor.

2. The children's balance exercise bridge according to claim 1, characterized in that: The side ladder (100) has two sets of steps, and each set of the side ladders (100) is respectively fixedly connected to the left side of the left bridge body (120) and the right side of the right bridge body (160) through bolts. The left bridge body (120) and the two sets of front support seats (140) are of an integral structure, and the right bridge body (160) and the two sets of rear support seats (170) are of an integral structure.