Splicing type agile ladder
By designing a spliced agile ladder with multiple main frames and snap-on systems, the existing spliced agile ladder shape is solved and the spacing is unadjustable, and flexible switching and safety improvement of multiple training forms are achieved to meet different training needs.
Patent Information
- Application Number
- CN202422278188.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-19
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-09-19
AI Technical Summary
The existing splicing agile trapezoidal pattern is single, the spacing cannot be adjusted, and the training mode is single, which cannot adapt to different training goals and the actual situation of athletes.
Multiple main frames are designed, each with scissor assembly interface and grooves. Various forms of splicing are realized through snap and block systems, allowing flexible adjustment of spacing to form linear, T-shaped, extended and extended, etc., simplifying the assembly and disassembly process.
It realizes flexible switching of multiple training forms, improves the adaptability and safety of training, saves preparation and storage time, and enhances athletes' agility, coordination and reaction speed.
Smart Images

Figure CN223127199U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of agility ladders, in particular to a spliced agility ladder. Background Art
[0002] As a training tool, the spliced agility ladder is widely used in various sports that require quick foot movement and high coordination, such as football, basketball, boxing, free fighting, MMA mixed martial arts, etc. It helps athletes improve agility, flexibility, coordination, speed and acceleration by providing a series of continuous and variable pace challenges. In a nutshell, introduce the content of a spliced agility ladder. The training principle of the spliced agility ladder is mainly based on the change of pace and rapid movement to enhance the ability of the athlete's ankle joints, knee joints and small muscle groups on the soles of the feet. Through different training actions and modes, athletes can carry out high-intensity explosive power training in a short time, thereby improving the body's sensitivity and coordination. In addition, agility ladder training also helps to increase the nervous system's memory of speed, enabling athletes to react and move faster in competitions.
[0003] Currently, when using the spliced agility ladder, there are still the following defects: usually there is only one form, and the distance between the agility ladders cannot be adjusted, the training is relatively single, and sports personnel cannot freely combine and adjust the training mode according to different training objectives and the actual situation of the athletes, and the gap between the agility ladders cannot be adjusted. Content of the Utility Model
[0004] The purpose of the utility model is to solve the defects existing in the prior art, and a spliced agility ladder is proposed.
[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme: a spliced agility ladder, including main body frame one, main body frame two, main body frame three, and main body frame four, characterized in that: one end of the main body frame one is provided with a scissor splicing port one, one side of the scissor splicing port one is provided with a groove one, the other end of the main body frame one is provided with a scissor splicing port two, one end of the main body frame one close to the scissor splicing port one is provided with a buckle one, the other side of the scissor splicing port one is provided with a block three, and the scissor splicing port one and the scissor splicing port two are arranged perpendicular to each other.
[0006] As a further description of the above technical scheme:
[0007] The main body frame two is provided with a card slot one and a card slot two. The card slot one is located on one side of the card slot two. The card slot one and the card slot two are respectively provided with two groups and are located at both ends of the main body frame two.
[0008] As a further description of the above technical scheme:
[0009] On the main body frame three, there is a scissor splicing interface three. On one side of the scissor splicing interface three, there is a groove two. On the other side of the scissor splicing interface three, there is a clamping block one. At one end of the main body frame three close to the scissor splicing interface three, there is a buckle two. At the end of the main body frame three far from the scissor splicing interface three, there is a buckle three.
[0010] As a further description of the above technical solution:
[0011] On the main body frame four, there is a scissor splicing interface four. On one side of the scissor splicing interface four, there is a groove three. On the other side of the scissor splicing interface four, there is a clamping block two. At the end of the main body frame four far from the scissor splicing interface four, there is a buckle four. At one end of the main body frame four close to the scissor splicing interface four, there is a scissor splicing interface five.
[0012] As a further description of the above technical solution:
[0013] In the normal form, there are several groups of the main body frame two and the main body frame three, and the main body frame two is located in the middle of two groups of the main body frame three. There are two groups of the main body frame four. The clamping block two on the main body frame four is clamped in the clamping groove one on the main body frame two. There are two groups of the main body frame one. The clamping block three on the main body frame one is clamped in the clamping groove one on the main body frame two.
[0014] As a further description of the above technical solution:
[0015] In the T-shaped form, there are several groups of the main body frame two and the main body frame three. The main body frame two is located in the middle of two groups of the main body frame three. The clamping block three on one end of the main body frame one is clamped in the clamping groove one on the main body frame two. The clamping block two on the other end of the main body frame four is clamped in the clamping groove one on the main body frame two. At the intersection position, the scissor splicing interface two on one side of the main body frame one is mutually attached to the scissor splicing interface three on the main body frame three.
[0016] As a further description of the above technical solution:
[0017] In the extended and lengthened form, there are several groups of the main body frame two and the main body frame three. The main body frame two is located in the middle of two groups of the main body frame three. The clamping block two on one end of the main body frame four is clamped in the clamping groove one on the main body frame two. The clamping block three on the other end of the main body frame one is clamped in the clamping groove one on the main body frame two. At the middle position, the scissor splicing interface five on the main body frame four is mutually attached to the scissor splicing interface two on the main body frame one.
[0018] The utility model has the following beneficial effects:
[0019] 1. In the present utility model, the spliced agility ladder can form various different shapes and lengths, such as straight, T-shaped, extended and lengthened types, etc., by splicing multiple main frames, to meet the needs of different training scenarios and athletes. It is designed with special splicing interfaces and buckle systems, making the assembly and disassembly of the agility ladder simple and fast, saving the preparation time before training and the storage space after training, and can adapt to athletes of different ages and different sports levels for training, improving the agility, coordination, balance and reaction speed of athletes.
[0020] 2. In the present utility model, when it is necessary to adjust the spacing of the agility ladder, the user does not need to disassemble or reassemble the entire agility ladder. Simply folding it in half can quickly adjust the spacing size. During the folding process, the scissor joints will catch each other to form a new stable structure, greatly improving the stability and flexibility of use, enabling it to adapt to trainers of different ages and different skill levels, reducing the risk of accidental falls caused by too large a spacing, and enhancing the safety of training. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 is a schematic structural view of a spliced agility ladder proposed by the present utility model Figure 1 ;
[0022] Figure 2 is a schematic structural view of a spliced agility ladder proposed by the present utility model Figure 2 ;
[0023] Figure 3 is a schematic diagram of the normal form structure of a spliced agility ladder proposed by the present utility model;
[0024] Figure 4 is a schematic diagram of the T-shaped form structure of a spliced agility ladder proposed by the present utility model;
[0025] Figure 5 is a schematic diagram of the extended and lengthened form structure of a spliced agility ladder proposed by the present utility model.
[0026] LEGEND DESCRIPTION:
[0027] 1. Main frame one; 2. Main frame two; 3. Main frame three; 4. Main frame four; 5. Groove one; 6. Scissor joint one; 7. Scissor joint two; 8. Buckle one; 9. Card slot one; 10. Card slot two; 11. Scissor joint three; 12. Groove two; 13. Block one; 14. Buckle two; 15. Buckle three; 16. Scissor joint four; 17. Groove three; 18. Block two; 19. Buckle four; 20. Scissor joint five; 21. Block three. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0028] The following will clearly and completely describe the technical solutions in the embodiments of the present utility model 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 creative efforts shall fall within the protection scope of the present utility model.
[0029] Referring to Figures 1-4 , an embodiment provided by the present utility model: a spliced agility ladder, comprising a main body frame one 1, a main body frame two 2, a main body frame three 3, and a main body frame four 4. One end of the main body frame one 1 is provided with a scissor splicing interface one 6, and a groove one 5 is provided on one side of the scissor splicing interface one 6. The other end of the main body frame one 1 is provided with a scissor splicing interface two 7. A buckle one 8 is provided at one end of the main body frame one 1 close to the scissor splicing interface one 6. A block three 21 is provided on the other side of the scissor splicing interface one 6. The scissor splicing interface one 6 and the scissor splicing interface two 7 are perpendicularly arranged. The spliced agility ladder can form various different shapes and lengths, such as linear, T-shaped, extended and lengthened types, etc., by splicing multiple main body frames with each other, meeting the needs of different training scenarios and athletes. A special splicing interface and buckle system are designed, making the assembly and disassembly of the agility ladder simple and fast, saving the preparation time before training and the storage space after training, and can adapt to athletes of different ages and different sports levels for training, improving the agility, coordination, balance and reaction speed of athletes.
[0030] Among them, the main body frame two 2 is provided with a first card slot 9 and a second card slot 10. The first card slot 9 is located on one side of the second card slot 10. There are two sets of the first card slot 9 and the second card slot 10 respectively and they are located at both ends of the main body frame two 2. The main body frame three 3 is provided with a third scissor joint 11. There is a second groove 12 on one side of the third scissor joint 11 and a first block 13 on the other side. One end of the main body frame three 3 near the third scissor joint 11 is provided with a second buckle 14 and the other end far from the third scissor joint 11 is provided with a third buckle 15. The main body frame four 4 is provided with a fourth scissor joint 16. There is a third groove 17 on one side of the fourth scissor joint 16 and a second block 18 on the other side. One end of the main body frame four 4 far from the fourth scissor joint 16 is provided with a fourth buckle 19 and one end of the main body frame four 4 near the fourth scissor joint 16 is provided with a fifth scissor joint 20. In the normal state, there are several sets of the main body frame two 2 and the main body frame three 3, and the main body frame two 2 is located in the middle of two sets of the main body frame three 3. There are two sets of the main body frame four 4. The second block 18 on the main body frame four 4 is clamped in the first card slot 9 on the main body frame two 2. There are two sets of the main body frame one 1. The third block 21 on the main body frame one 1 is clamped in the first card slot 9 on the main body frame two 2. In the T state, there are several sets of the main body frame two 2 and the main body frame three 3, and the main body frame two 2 is located in the middle of two sets of the main body frame three 3. The third block 21 on one end of the main body frame one 1 is clamped in the first card slot 9 on the main body frame two 2, and the second block 18 on the other end of the main body frame four 4 is clamped in the first card slot 9 on the main body frame two 2. At the intersection position, the second scissor joint 7 on one side of the main body frame one 1 fits with the third scissor joint 11 on the main body frame three 3. In the extended and lengthened state, there are several sets of the main body frame two 2 and the main body frame three 3, and the main body frame two 2 is located in the middle of two sets of the main body frame three 3. The second block 18 on one end of the main body frame four 4 is clamped in the first card slot 9 on the main body frame two 2, and the third block 21 on the other end of the main body frame one 1 is clamped in the first card slot 9 on the main body frame two 2. The fifth scissor joint 20 on the main body frame four 4 in the middle position fits with the second scissor joint 7 on the main body frame one 1. When the user needs to adjust the spacing of the agility ladder, there is no need to disassemble or reassemble the whole agility ladder. The user only needs to simply fold it in half to quickly adjust the spacing size. During the folding process, the scissor joints will be stuck to each other to form a new stable structure, greatly improving the stability and flexibility of use, enabling it to adapt to trainers of different ages and different skill levels, reducing the risk of accidental falls caused by too large a spacing, and enhancing the safety of training.
[0031] Working principle: Each main frame (such as main frame one 1, main frame two 2, main frame three 3, main frame four 4) is designed with scissor joints (such as scissor joint one 6, scissor joint two 7, scissor joint three 11, scissor joint four 16, scissor joint five 20) and grooves (such as groove one 5, groove two 12, groove three 17). The shapes and positions of these joints and grooves are carefully designed to ensure that they can match the corresponding parts on other main frames. When assembling the agility ladder, first select the required number of main frames and determine the splicing method (such as linear type, T-shaped, extended and lengthened type, etc.) according to the training needs. Docking adjacent main frames through scissor joints and grooves, and using buckles and blocks to firmly fix them together. During the assembly process, it is necessary to ensure that each joint and groove is correctly docked, and each buckle and block is firmly fixed to ensure the stability and safety of the agility ladder. At the same time, each main frame is also provided with buckles (such as buckle one 8, buckle two 14, buckle three 15, buckle four 19) and blocks (such as block one 13, block two 18, block three 21). These buckles and blocks play a role in positioning and fixing during splicing. After assembly, athletes can carry out various agility training according to the training plan. They can perform rapid foot movements, jumps, turns, etc. on the agility ladder to improve the body's agility, coordination, balance and reaction speed. During the training process, athletes can adjust their steps and speeds according to their own situations and training goals to meet different training needs. When it is necessary to adjust the spacing of the agility ladder during training, the user only needs to fold the agility ladder in half from the middle position according to the instructions or indication marks. During the folding process, the scissor joints will catch each other to form a new stable structure. At this time, the spacing size has been adjusted due to folding. After the training, athletes can easily disassemble the agility ladder. They only need to separate the adjacent main frames and put away the buckles and blocks. The disassembled main frames can be conveniently placed in a storage bag or box to save storage space and facilitate next use.
[0032] Finally, it should be noted that the above are only the preferred embodiments of the present invention and are not used to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A spliced agile ladder, comprising a main frame one (1), a main frame two (2), a main frame three (3), and a main frame four (4), characterized in that: One end of the main body frame one (1) is provided with a scissor splicing interface one (6). One side of the scissor splicing interface one (6) is provided with a groove one (5). The other end of the main body frame one (1) is provided with a scissor splicing interface two (7). One end of the main body frame one (1) close to the scissor splicing interface one (6) is provided with a buckle one (8). The other side of the scissor splicing interface one (6) is provided with a block three (21). The scissor splicing interface one (6) and the scissor splicing interface two (7) are arranged perpendicular to each other.
2. The spliced agile ladder according to claim 1, wherein: The main body frame two (2) is provided with a slot one (9). The main body frame two (2) is provided with a slot two (10). The slot one (9) is located on one side of the slot two (10). The slot one (9) and the slot two (10) are respectively provided with two groups and are located at both ends of the main body frame two (2).
3. The spliced agile ladder according to claim 2, wherein: The main body frame three (3) is provided with a scissor splicing interface three (11). One side of the scissor splicing interface three (11) is provided with a groove two (12). The other side of the scissor splicing interface three (11) is provided with a block one (13). One end of the main body frame three (3) close to the scissor splicing interface three (11) is provided with a buckle two (14). One end of the main body frame three (3) far from the scissor splicing interface three (11) is provided with a buckle three (15).
4. The spliced agile ladder according to claim 3, characterized in that: The main body frame four (4) is provided with a scissor splicing interface four (16). One side of the scissor splicing interface four (16) is provided with a groove three (17). The other side of the scissor splicing interface four (16) is provided with a block two (18). One end of the main body frame four (4) far from the scissor splicing interface four (16) is provided with a buckle four (19). One end of the main body frame four (4) close to the scissor splicing interface four (16) is provided with a scissor splicing interface five (20).
5. The spliced agile ladder according to claim 4, characterized in that: In the normal state, there are several groups of the main body frame two (2) and the main body frame three (3), and the main body frame two (2) is located in the middle of two groups of the main body frame three (3). There are two groups of the main body frame four (4). The block two (18) on the main body frame four (4) is clamped in the slot one (9) on the main body frame two (2). There are two groups of the main body frame one (1). The block three (21) on the main body frame one (1) is clamped in the slot one (9) on the main body frame two (2).
6. The spliced agile ladder according to claim 5, characterized in that: In the T-shaped state, there are several groups of the main body frame two (2) and the main body frame three (3), and the main body frame two (2) is located in the middle of two groups of the main body frame three (3). The block three (21) on one end of the main body frame one (1) is clamped in the slot one (9) on the main body frame two (2). The block two (18) on the other end of the main body frame four (4) is clamped in the slot one (9) on the main body frame two (2). The scissor splicing interface two (7) on one side of the main body frame one (1) at the crossing position is mutually attached to the scissor splicing interface three (11) on the main body frame three (3).
7. The spliced agile ladder according to claim 6, characterized in that: In the extended and lengthened form, a number of groups of the main body frame two (2) and the main body frame three (3) are provided. The main body frame two (2) is located in the middle of two groups of the main body frame three (3). The second clamping block (18) on one end of the main body frame four (4) is clamped in the first clamping groove (9) on the main body frame two (2), and the third clamping block (21) on the other end of the main body frame one (1) is clamped in the first clamping groove (9) on the main body frame two (2). The fifth scissor splicing interface (20) on the main body frame four (4) at the middle position is mutually attached to the second scissor splicing interface (7) on the main body frame one (1).