Shuttlecock serving trainer net
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-02
- Publication Date
- 2026-08-11
AI Technical Summary
[0005]本实用新型要解决的是上述现有技术中匹克球发球训练器网整体结构稳定性不足,固定管与底座连接繁琐,户外使用易位移倾覆,功能集成度低,需额外辅助设备,发球机角度调节复杂易偏移,球网安装操作繁琐且球路不闭环,漏球问题严重,训练效率低的技术问题
[0014] This peak ball serving training net is supported by a base, with fixing tubes inserted into the four corners of the base to form a frame. Fiberglass assemblies are inserted at the top of the fixing tubes to support the net, and the serving machine is installed in the center of the base. After the serving machine is started, it automatically launches peak balls, which fall into the net after being hit. The bottom inlet of the net is fixed to the receiving inlet of the serving machine with straps or clamps, forming a closed-loop path of "serve-hit-return". The net is quickly attached to the top of the fiberglass assemblies via a front hanging rod and a rear hook, ensuring appropriate tension. The fixing tubes are connected to the base with pins and secured to the ground with U-shaped ground inserts, forming a stable mechanical structure to meet the training needs of different scenarios.
Smart Images

Figure CN224613141U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of pickball serving training technology, specifically relating to a pickball serving training device. Background Technology
[0002] In pickleball training, the serve, as a fundamental and crucial technique, requires athletes to engage in extensive repetitive practice to improve accuracy and consistency. To meet the needs of individual athlete training, the pickleball serve training device was developed.
[0003] Existing technologies for Peak ball serving training nets suffer from several drawbacks: Insufficient overall structural stability; some devices rely solely on the weight of their base for stability, making them susceptible to displacement and tipping due to wind or vibrations during outdoor use. Furthermore, low functional integration; the serving device and net support structure are often independently designed, requiring additional auxiliary equipment, resulting in high costs and space requirements. The fixing tubes and bases are mostly secured with screws, making installation and disassembly time-consuming and laborious, reducing portability. The lack of ground-mounting devices makes the fixing tubes prone to wobbling and tilting on soft ground, limiting applicability. The ball machine's angle adjustment structure is complex and cumbersome to operate; adjustments are easily displaced due to vibration, and the adjustment range is limited, failing to meet diverse training needs and simulate real-game trajectories. The fiberglass assembly requires knotting to connect to the net, which is complex and prone to inconsistent net tension. Some fiberglass components have low strength, resulting in a large volume when folded, compromising durability and portability. The connection between the net and the ball machine is not tight, leading to an unclosed ball path and easy ball scattering after impact, requiring manual ball retrieval, resulting in low training efficiency and significant ball leakage, affecting training continuity.
[0004] In view of this, we propose a pickball serve trainer net to solve the above problems. Utility Model Content
[0005] The present invention aims to solve the technical problems of the existing technology of the Peak ball serving training device, such as insufficient overall structural stability of the net, cumbersome connection between the fixing tube and the base, easy displacement and overturning when used outdoors, low functional integration, need for additional auxiliary equipment, complicated and easy deviation of the ball machine angle adjustment, cumbersome net installation and operation, non-closed ball path, serious ball leakage problem, and low training efficiency.
[0006] To achieve the above objectives, this utility model provides the following technical solution:
[0007] A peak ball serving training net includes a base, a fixing tube, a fiberglass assembly, and a ball net;
[0008] The fixing tubes include front fixing tube A, front fixing tube B, rear fixing tube C, and rear fixing tube D. The front fixing tube A, front fixing tube B, rear fixing tube C, and rear fixing tube D are respectively inserted into the four corners of the base and fixed with pins. The ball machine is installed on the base and fixed with knob screws. The fiberglass groups set at the front and rear are respectively inserted into the fiberglass fixing tubes at the top outer sides of the front fixing tube A, front fixing tube B, rear fixing tube C, and rear fixing tube D. The ball net is hung on the top of the fiberglass group.
[0009] Preferably, the front fixing pipe A, the front fixing pipe B, the rear fixing pipe C, and the rear fixing pipe D are securely connected to the ground via U-shaped ground plugs.
[0010] Preferably, the base has two vertical support plates fixed to the front top and an angle adjustment plate with an angle adjustment groove fixed to the rear. The ball launcher with the adjusted launch angle is then fixed to the angle adjustment plate.
[0011] Preferably, the top of the front fiberglass assembly is provided with a hanging rod for attaching to the hanging rope on the net, and the rear fiberglass assembly is provided with a hook for attaching to the net.
[0012] Preferably, the bottom of the net has a feeding port.
[0013] Compared with the prior art, the technical effects and advantages of this utility model are:
[0014] This peak ball serving training net is supported by a base, with fixing tubes inserted into the four corners of the base to form a frame. Fiberglass assemblies are inserted at the top of the fixing tubes to support the net, and the serving machine is installed in the center of the base. After the serving machine is started, it automatically launches peak balls, which fall into the net after being hit. The bottom inlet of the net is fixed to the receiving inlet of the serving machine with straps or clamps, forming a closed-loop path of "serve-hit-return". The net is quickly attached to the top of the fiberglass assemblies via a front hanging rod and a rear hook, ensuring appropriate tension. The fixing tubes are connected to the base with pins and secured to the ground with U-shaped ground inserts, forming a stable mechanical structure to meet the training needs of different scenarios.
[0015] This utility model uses a pin to fix the fixing tube and the base, which is simple to operate and easy to disassemble. When folded, it is compact in size and can be inserted into the ground with a U-shaped ground plug. Compared with the base alone, it has stronger wind and overturning resistance when used outdoors and can adapt to various ground environments such as grass and sand, thus expanding the application scenarios.
[0016] This invention allows for quick attachment of the ball net via a hanging rod and hook, eliminating the need for knots and ensuring moderate tension. Simultaneously, the ball net's feed inlet is tightly connected to the ball receiving inlet of the ball-serving machine, forming a closed-loop circuit. This eliminates the need for manual ball retrieval, saving training time, preventing ball leakage, and maintaining the continuity of the training process. Furthermore, the straps or clamps can be adapted to different specifications of ball-serving machines, improving the equipment's versatility and training efficiency. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this utility model;
[0018] Figure 2 This is a structural schematic diagram of the base, ball launcher, fixing tube, and fiberglass assembly of this utility model.
[0019] Figure 3 This utility model Figure 2 Exploded view;
[0020] Figure 4 This is an exploded view of the ball-serving machine and its base according to this utility model;
[0021] Figure 5 This is a schematic diagram of the structure of the base of this utility model;
[0022] Figure 6 This is a diagram showing the state of the fixed tube and base before they are inserted into the device.
[0023] In the diagram: 1. Base; 11. Vertical support plate; 12. Angle adjustment groove; 13. Angle adjustment plate; 2. Fiberglass assembly; 21. Hanging rod; 22. Hook; 3. Ball net; 31. Feed port; 4. Ball machine; 5. Fixing tube; 51. Front fixing tube A; 52. Front fixing tube B; 53. Rear fixing tube C; 54. Rear fixing tube D; 55. Fiberglass fixing tube; 6. U-shaped ground plug; 7. Knob screw. Detailed Implementation
[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0025] The following combination Figures 1 to 6 This application will be described in further detail.
[0026] This application discloses a peak ball serving training net, including a base 1, a fixing tube 5, a fiberglass assembly 2, a ball net 3, and a ball serving machine 4; the fixing tube is inserted into the base 1, the fiberglass assembly 2 is inserted into the fixing tube, the ball net 3 is hung on the top of the fiberglass assembly 2, and the ball serving machine 4 is installed on the base 1.
[0027] Base 1 serves as the basic support, with fixing tubes inserted into its four corners to form a stable frame. Fiberglass assembly 2 is inserted into the fixing tubes to support net 3. The ball machine 4 is installed in the center of base 1. All components work together to form a complete mechanical structure, ensuring the whole system remains stable during training. The ball machine 4 can automatically serve balls, net 3 regulates the hitting area, and fiberglass assembly 2 and fixing tubes provide support. No additional auxiliary equipment is required, meeting the needs of single-person training and saving on venue and equipment costs. The components are connected by plugging and hanging methods, requiring no complicated tools; they can be used immediately after unfolding, making them suitable for rapid deployment in various scenarios such as homes and parks.
[0028] The fixing tube 5 includes a front fixing tube A51, a front fixing tube B52, a rear fixing tube C53, and a rear fixing tube D54. The front fixing tube A51, the front fixing tube B52, the rear fixing tube C53, and the rear fixing tube D54 are respectively inserted into the four corners of the base 1 and fixed with pins. The front fixing tube A51, the front fixing tube B52, the rear fixing tube C53, and the rear fixing tube D54 are respectively firmly connected to the ground through U-shaped ground plugs 6.
[0029] The fixing tube is inserted into the four corners of the base 1 and fixed with pins. The pin fixing method is simple to operate, without the need to tighten screws, and can quickly complete the assembly of the fixing tube and the base 1, shortening the installation time. The pin connection is easy to disassemble. When the trainer net is folded, the fixing tube can be removed from the base 1, reducing the storage volume and making it convenient to carry and store.
[0030] The fixing tube is connected to the ground through a U-shaped ground plug 6. The U-shaped ground plug 6 is deeply inserted into the ground, firmly binding the fixing tube to the ground. Especially when used outdoors, it can resist the risk of overturning caused by wind or vibration of the ball machine 4, ensuring that the training net is stable and does not shift. The ground plug design is suitable for soft ground such as grass and sand. By inserting it into the ground, the grip is enhanced, making it more stable than relying solely on the weight of the base 1, thus expanding the usage scenarios (such as parks, training fields, etc.).
[0031] Two vertical support plates 11 are fixedly installed on the front side of the top of the base 1, and an angle adjustment plate 13 with an angle adjustment groove 12 is fixedly installed on the rear side. The ball machine 4 with the adjusted launch angle is fixed on the angle adjustment plate 13 by means of a knob screw 7 that passes through the angle adjustment groove 12 and is screwed to the ball machine 4, and by means of a knob screw 7 that passes through the vertical support plate 11 and is screwed to the ball machine 4.
[0032] The fiberglass assemblies 2 set at the front and rear are respectively inserted into the fiberglass fixing tubes 55 at the outer top of the front fixing tube A51, the front fixing tube B52, the rear fixing tube C53, and the rear fixing tube D54. The top of the front fiberglass assembly 2 is provided with a hanging rod 21 for attaching to the hanging rope on the net 3, and the rear fiberglass assembly 2 is provided with a hook 22 for attaching to the net 3.
[0033] The front and rear fiberglass assembly 2 is inserted into the fiberglass fixing tube 55. The front hanging rod 21 and the rear hook 22 are used to hang the net 3. The design of the hanging rod 21 and the hook 22 allows the net 3 to be quickly hung on the top of the fiberglass assembly 2 without knotting or complicated operations. At the same time, it ensures that the tension of the net 3 is moderate, avoiding the impact of looseness on the training experience. The fiberglass assembly 2 is lightweight but strong, which can support the weight of the net 3 and is easy to carry and move. The division of labor design of the hanging rod 21 and the hook 22 (front hanging rope, rear hook 22) makes the net 3 evenly stressed, reduces local wear, and extends its service life. The fiberglass assembly 2 can be pulled out from the fixing tube. After the net 3 is removed, it can be folded. The overall size is compact after folding. It can be stored in a special carrying bag for easy transportation and storage.
[0034] The feed inlet 31 at the bottom of the net 3 is fitted onto the outer side of the receiving port of the ball machine 4, and is secured to the outer side of the receiving port with straps or clamps. The feed inlet 31, fitted onto the receiving port and secured with straps / clamps, creates a closed-loop ball path design. After being hit, the ball launched by the ball machine 4 falls into the net 3, and the feed inlet 31 at the bottom of the net 3 directly connects to the receiving port of the ball machine 4, forming a closed loop of "serve-hit-return," eliminating the need for manual ball retrieval, saving training time, and suitable for continuous single-person training. The tight connection between the feed inlet 31 and the receiving port prevents the ball from leaking out through gaps, ensuring a clean training area, and ensuring the accurate entry of the returned ball into the ball machine 4, maintaining the continuity of the training process. The straps or clamps can be adjusted according to the interface size to accommodate different specifications of the ball machine 4, and are not easily detached after being secured, ensuring structural stability during training.
[0035] During installation, insert the front fixing tube A, front fixing tube B, rear fixing tube C, and rear fixing tube D into the four corner holes of the base 1 respectively. Use pins to pass through the connection holes between the fixing tubes and the base 1 to complete the initial fixing of the fixing tubes to the base 1.
[0036] Insert the front fiberglass assembly 2 into the fiberglass fixing tubes 55 at the outer top of the front fixing tubes A and B, respectively. Insert the rear fiberglass assembly 2 into the fiberglass fixing tubes 55 at the outer top of the rear fixing tubes C and D, respectively.
[0037] Attach the hanging rope on net 3 to the hanging rod 21 at the top of the front fiberglass assembly 2. Attach net 3 to the hook 22 on the rear fiberglass assembly 2 accordingly, unfold net 3, and ensure that net 3 has appropriate tension.
[0038] Place the feed port 31 at the bottom of the net 3 onto the outer side of the ball receiving port of the ball serving machine 4, and use straps or clamps to bind the feed port 31 to the outer side of the ball receiving port to ensure a tight connection.
[0039] The ball-launching machine 4, with its launch angle adjusted, is fixed to the angle adjustment plate 13 using the knob screw 7.
[0040] Insert the four U-shaped ground plugs through the bottom connection holes of the four fixing tubes of the base 1 and into the ground to firmly connect the trainer net to the ground, thus completing the installation.
[0041] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A pickball serving training net, characterized in that, Includes base (1), fixing tube (5), fiberglass assembly (2), and net (3); The fixing tube (5) includes a front fixing tube A (51), a front fixing tube B (52), a rear fixing tube C (53), and a rear fixing tube D (54). The front fixing tube A (51), the front fixing tube B (52), the rear fixing tube C (53), and the rear fixing tube D (54) are respectively inserted into the four corners of the base (1) and fixed with pins. The ball machine (4) is installed on the base (1) and fixed with knob screws (7). The fiberglass groups (2) set at the front and rear are respectively inserted into the fiberglass fixing tubes (55) at the top of the outer side of the front fixing tube A (51), the front fixing tube B (52), the rear fixing tube C (53), and the rear fixing tube D (54). The ball net (3) is hung on the top of the fiberglass group (2).
2. The pickball serve training net according to claim 1, characterized in that: The front fixing pipe A (51), the front fixing pipe B (52), the rear fixing pipe C (53), and the rear fixing pipe D (54) are firmly connected to the ground through U-shaped ground plugs (6).
3. The pickball serve training net according to claim 1, characterized in that: The base (1) has two vertical support plates (11) fixed on the front side of the top and an angle adjustment plate (13) with an angle adjustment groove (12) fixed on the rear side. The angle adjustment plate (13) has an angle adjustment groove (12).
4. The pickball serve training net according to claim 1, characterized in that: The front fiberglass assembly (2) has a hanging rod (21) at the top for attaching to the hanging rope on the net (3), and the rear fiberglass assembly (2) has a hook (22) for attaching to the net (3).
5. The pickball serve training net according to claim 1, characterized in that: The bottom of the ball net (3) is provided with a feeding port (31).