High-precision racket track processing device
By designing an automated racket trajectory processing device that integrates coarse loading, positioning and cutting, fine loading and racket rotation mechanism, the problems of low racket processing efficiency and low accuracy under traditional manual operation are solved, and high-precision, automation and efficient racket processing are achieved.
Patent Information
- Application Number
- CN202422124850.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-08-30
AI Technical Summary
In the racket manufacturing process, traditional trajectory processing methods rely on manual operations, resulting in inefficiency, inconsistent processing and difficulty in ensuring high precision, especially in key steps such as cutting, positioning and loading.
A high-precision racket track processing device is designed, integrating a coarse loading mechanism, a positioning and cutting mechanism, a fine loading mechanism and a racket rotation mechanism, and automatic loading, positioning, cutting and rotating processing of rackets is realized through automated and intelligent design.
This device realizes high-precision control of racket trajectory processing, significantly improves production efficiency, reduces labor intensity, and enhances the consistency of the processing process, adapting to racket processing needs of different specifications and models.
Smart Images

Figure CN223012607U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of mechanical processing of rackets, in particular to a high-precision racket trajectory processing device. Background Art
[0002] In the process of racket manufacturing, it is crucial to ensure that the trajectory processing of the racket reaches high precision. Traditional processing methods often rely on manual operations, which are not only inefficient but also difficult to guarantee the consistency and accuracy of processing. Especially in key steps such as cutting, positioning, and loading of rackets, the limitations of manual operations are particularly obvious.
[0003] To overcome these problems, the industry has been seeking a device that can automatically, efficiently, and precisely process the racket trajectory. This device needs to be able to automatically complete a series of actions such as loading, positioning, and cutting of rackets to ensure that the processing quality of each racket meets high standards. Summary of the Invention
[0004] To solve the above technical problems, the utility model discloses a high-precision racket trajectory processing device, which includes a rough loading mechanism, a positioning and cutting mechanism, a fine loading mechanism, and a racket rotating mechanism;
[0005] The rough loading mechanism includes a feeding roller and a first driving wheel, and the first driving wheel is arranged at the head of the width-adjustable material channel;
[0006] The racket rotating mechanism includes a rotating wheel, a vacuum chuck, and a clamping jaw. The vacuum chuck adsorbs the racket, the clamping jaw grabs the racket handle, and the rotating wheel drives the vacuum chuck and the clamping jaw to rotate;
[0007] The fine loading mechanism includes a second driving wheel;
[0008] The positioning and cutting mechanism includes a cutting knife and several identification switches.
[0009] Furthermore, it further includes a dispensing mechanism, and the dispensing mechanism is arranged behind the cutting knife and above the width-adjustable material channel.
[0010] Furthermore, the positioning and cutting mechanism includes a first switch, a second switch, a third switch, and a fourth switch;
[0011] The first switch is arranged between the first driving wheel and the cutting knife, the second switch is arranged between the cutting knife and the dispensing mechanism; the third switch is in front of the second driving wheel; the fourth switch is arranged at the end of the width-adjustable material channel.
[0012] Furthermore, the second driving wheel is connected to a cylinder, and the second driving wheel can move up and down.
[0013] Furthermore, the racket rotation mechanism is located behind the width-adjustable channel. After the vacuum suction cup adsorbs the racket, the side edge of the racket and the width-adjustable channel are in the same plane.
[0014] Beneficial effects
[0015] Improve processing accuracy: By integrating the rough loading mechanism, positioning and cutting mechanism, fine loading mechanism and racket rotation mechanism, the device can achieve precise control of the racket processing process. From rough loading to fine positioning, then to cutting and rotation, each step is carefully designed and optimized to ensure high precision in the racket trajectory processing.
[0016] Enhance production efficiency: The automated and intelligent design makes the entire processing process smoother and more efficient. Compared with traditional manual operations, the device can significantly reduce processing time, improve production efficiency, and meet the needs of large-scale production.
[0017] Reduce labor intensity: Traditional processing methods require a large amount of manual operations, with high labor intensity and prone to errors. However, this device completes most of the work through automation, reducing the labor intensity of operators and minimizing errors caused by human factors.
[0018] Enhance consistency: Due to the adoption of a standardized automated processing process, the device can ensure that the processing process of each racket is consistent, thus improving the overall consistency of the product.
[0019] High flexibility: The design of this device takes into account the processing requirements of rackets of different specifications and models. By adjusting the width-adjustable channel, replacing cutting knives of different sizes, etc., it can flexibly adapt to the processing requirements of different rackets. Description of the drawings
[0020] Figure 1 is a schematic structural diagram of a high-precision racket trajectory processing device;
[0021] Figure 2 is a schematic diagram of a partial mechanism of a high-precision racket trajectory processing device. Specific embodiments
[0022] The present utility model will be described in detail below in conjunction with embodiments. The following embodiments will help those skilled in the art to further understand the present utility model, but do not limit the present utility model in any form. It should be noted that for those of ordinary skill in the art, without departing from the concept of the present utility model, several adjustments and improvements can still be made. These all fall within the protection scope of the present utility model.
[0023] Such as Figure 1-2As shown in the figure, the utility model discloses a high-precision racket trajectory processing device, which includes a rough feeding mechanism, a positioning and cutting mechanism, a fine feeding mechanism, and a racket rotating mechanism;
[0024] The rough feeding mechanism includes a feeding roller and a first driving wheel 1, and the first driving wheel 1 is arranged at the head end of the width-adjustable material channel 2;
[0025] The racket rotating mechanism includes a rotating wheel 3, a vacuum chuck 4, and a clamping jaw 5. The vacuum chuck 4 adsorbs the racket 6, the clamping jaw 5 grabs the racket handle, and the rotating wheel 3 drives the vacuum chuck 4 and the clamping jaw 5 to rotate;
[0026] The fine feeding mechanism includes a second driving wheel 7;
[0027] The positioning and cutting mechanism includes a cutting knife 8 and several identification switches.
[0028] The rotating wheel 3: drives the vacuum chuck 4 and the clamping jaw 5 to rotate, realizing the rotary processing of the racket.
[0029] The vacuum chuck 4: is used to adsorb the racket 6 to ensure its stability during the processing.
[0030] The clamping jaw 5: grabs the racket handle and cooperates with the vacuum chuck 4 to fix the racket.
[0031] Preferably, it further includes a dispensing mechanism 9, and the dispensing mechanism is arranged behind the cutting knife 8 and above the width-adjustable material channel 2.
[0032] Preferably, the positioning and cutting mechanism includes a first switch 10, a second switch 11, a third switch 12, and a fourth switch 13;
[0033] The first switch 10 is arranged between the first driving wheel 1 and the cutting knife 8, the second switch 11 is arranged between the cutting knife 8 and the dispensing mechanism 9; the third switch 12 is in front of the second driving wheel 7; the fourth switch 13 is arranged at the end of the width-adjustable material channel 2.
[0034] After the first switch 10 detects the starting point of the material, it transports forward a specified length; the second switch 11 is used to detect the starting point of the material and provide a signal to the dispensing mechanism 9 for dispensing; the third switch 12 provides a signal to the second driving wheel 7, and the second driving wheel presses down to work; the fourth switch 13 is a switch used to identify that the starting point of the material is sent to the specified position.
[0035] Preferably, the second driving wheel 7 is connected to a cylinder 14, and the second driving wheel 7 can move up and down.
[0036] Preferably, the racket rotation mechanism is located behind the width-adjustable material channel 2. After the vacuum chuck 4 adsorbs the racket, the side edge of the racket is in the same plane as the width-adjustable material channel 2.
[0037] The width-adjustable material channel 2 includes a fixed half-channel and a movable half-channel movably connected to the fixed half-channel. Both the fixed half-channel and the movable half-channel include a bottom plate and a side plate, and the bottom plates of the fixed half-channel and the movable half-channel are movably stacked.
[0038] Workflow:
[0039] The racket material starts from the feeding roller and enters the width-adjustable material channel 2 through the first driving wheel 1.
[0040] The first switch 10 detects the starting point of the material and controls the material to be conveyed forward by a specified length.
[0041] The second switch 11 detects the starting point of the material and triggers the dispensing mechanism 9 to perform dispensing.
[0042] The cutting knife 8 cuts the racket material according to the set length.
[0043] The third switch 12 triggers the second driving wheel 7 to press down for fine position adjustment.
[0044] The fourth switch 13 confirms that the material has been sent to the specified position.
[0045] The racket rotation mechanism fixes the racket through the vacuum chuck 4 and the clamping jaw 5 for rotational processing.
[0046] In this way, the present utility model realizes high-precision processing of the racket trajectory, improving production efficiency and processing quality.
[0047] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are not used to limit the present utility model. Although the present utility model 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 utility model shall be included within the protection scope of the present utility model.
Claims
1. A high-precision racket trajectory processing device, characterized in that: It includes a rough feeding mechanism, a positioning cutting mechanism, a fine feeding mechanism, and a racket rotating mechanism; The rough feeding mechanism comprises a discharge roller and a first drive wheel (1), wherein the first drive wheel (1) is arranged at the head end of a width-adjustable material channel (2); The racket rotating mechanism comprises a rotating wheel (3), a vacuum suction cup (4) and a clamping claw (5); the vacuum suction cup (4) adsorbs the racket (6), the clamping claw (5) grasps the racket handle, and the rotating wheel (3) drives the vacuum suction cup (4) and the clamping claw (5) to rotate; The fine feeding mechanism comprises a second driving wheel (7); The positioning and cutting mechanism comprises a cutting knife (8) and a plurality of identification switches.
2. A high-precision racket trajectory processing device according to claim 1, characterized in that: It also comprises a glue dispensing mechanism (9), which is arranged behind the cutting knife (8) and above the width-adjustable material channel (2).
3. A high-precision racket trajectory processing device according to claim 2, characterized in that: The positioning and cutting mechanism comprises a first switch (10), a second switch (11), a third switch (12), and a fourth switch (13); The first switch (10) is arranged between the first driving wheel (1) and the cutting knife (8), and the second switch (11) is arranged between the cutting knife (8) and the glue dispensing mechanism (9); the third switch (12) is located in front of the second driving wheel (7); and the fourth switch (13) is arranged at the end of the width-adjustable material channel (2).
4. A high-precision racket trajectory processing device according to claim 3, characterized in that: The second driving wheel (7) is connected to the cylinder (14), and the second driving wheel (7) is capable of moving up and down.
5. A high-precision racket trajectory processing device according to claim 1, characterized in that: The racket rotating mechanism is located behind the width-adjustable material channel (2); after the vacuum suction cup (4) adsorbs the racket, the side edge of the racket and the width-adjustable material channel (2) are in the same plane.