Feeding device for aluminum alloy badminton racket machining

By designing an electric telescopic cylinder and a feeding device for moving components, the physical exertion problem caused by traditional cart transportation is solved, the automatic transportation and position adjustment of aluminum alloy badminton rackets are realized, the operation process is simplified, and component damage is avoided.

CN223441761UActive Publication Date: 2025-10-17NANJING YUANWEI COMPOSITE MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202422687159.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2025-10-17
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

During the traditional aluminum alloy badminton racket processing, the feeding device relies on a cart for transportation, which makes it heavy. Workers need to carry them one by one, which consumes physical energy and increases the complexity of the work.

Method used

A feeding device is designed, which includes an electric telescopic cylinder, a first motor and a fixed strip. The electric telescopic cylinder drives the feeding frame to move up, rotate and down. Combined with the moving component and the fixed cylinder, automatic transportation and position adjustment are realized, reducing manual handling.

Benefits of technology

The system realizes the automatic transportation and position adjustment of aluminum alloy badminton rackets, reduces the physical exertion of staff, simplifies the operation process and avoids component damage.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an aluminum alloy badminton racket processing feeding device which comprises a device box body, placing grooves are formed in the two sides of the top of the device box body, a circular groove is formed in the top of the device box body, an electric telescopic cylinder is installed in the circular groove, a first motor is fixed to the top of the electric telescopic cylinder, and a rotating rod is connected to the top of the first motor. According to the aluminum alloy badminton racket assembly conveying device, an aluminum alloy badminton racket assembly can be placed into the feeding frame plate, the feeding frame plate enters the device box body to be stored and transported, and after the aluminum alloy badminton racket assembly is transported to a designated place, the aluminum alloy badminton racket assembly can be conveyed to the designated place through the feeding frame plate. The aluminum alloy badminton racket assembly can be driven by the electric telescopic cylinder to move upwards, and the positions of the fixed strip plate and the aluminum alloy badminton racket assembly are adjusted through the first motor, so that the feeding frame plate is placed on the surface of a specified platform, and the situation that workers carry the aluminum alloy badminton racket assembly in the feeding frame plate is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of aluminum alloy badminton racket processing, in particular to a feeding device for aluminum alloy badminton racket processing. BACKGROUND

[0002] Aluminum alloy badminton racket is generally composed of a racket head, a racket handle, a racket grip and a joint of the racket frame and the racket handle. The length of an aluminum alloy racket does not exceed 68 cm, wherein the length of the racket handle and the racket handle does not exceed 42 cm, the length of the racket frame does not exceed 25 cm, and the width is 20 cm. With the development of science and technology, the development of aluminum alloy rackets is towards lighter weight, harder racket frame, better racket handle elasticity and smaller air resistance. In the production process, the racket head, the racket handle, the racket grip and the joint of the racket frame and the racket handle are generally produced separately and then assembled. In the production process, transportation and other items are needed for production. In the production process, a cart is generally used for transportation and feeding.

[0003] According to the disclosed patent 202023116818.X, a feeding device for aluminum alloy badminton racket processing, which comprises a mounting plate, four universal wheels are fixedly arranged at the lower end of the mounting plate, the four universal wheels are equidistantly distributed at the four corners of the lower end of the mounting plate, two supporting rods are fixedly arranged on the two sides of one end of the mounting plate, a connecting rod is movably arranged on one end of the supporting rod, two sleeves are movably arranged on the two connecting rods, the inside of the sleeve is hollow and the size is equal to that of the supporting rod, a fixing frame is connected between the two sleeves, and a handle is fixedly arranged at the middle end of the fixing frame. The utility model enhances the practicability of the equipment, can fit different user's body size, improves the feeding efficiency, and the sliding groove can movably arrange a movable plate. When the volume of the feeding material is large, the movable plate can increase the volume of the mounting plate, thereby facilitating transportation. The screw hole is fixedly arranged with a bolt to stabilize the structure of the movable plate.

[0004] However, in the traditional aluminum alloy badminton racket processing process, the feeding device generally relies on a cart for material transportation. However, this traditional transportation method faces a large number of aluminum alloy badminton rackets when transporting, and the aluminum alloy badminton racket itself has a certain weight. When the cart is loaded with a large number of badminton rackets, the overall weight will be heavy, and the workers have to move the heavy aluminum alloy badminton rackets from the cart one by one during unloading operation, which undoubtedly consumes a lot of physical strength of the workers. Furthermore, these unloaded aluminum alloy badminton rackets often need to be transported to platforms of different heights for subsequent processing or storage, which not only increases the complexity of the work, but also requires workers to exert a lot of physical labor. Therefore, a new technical solution is needed to solve the problem. UTILITY MODEL CONTENTS

[0005] The purpose of the present utility model is to overcome the shortcomings of the existing technology, meet the actual needs, and provide a feeding device for processing aluminum alloy badminton rackets to solve the problem that the feeding device currently used in the traditional aluminum alloy badminton racket processing process generally relies on a cart to transport materials. However, when faced with the transportation of a large number of aluminum alloy badminton rackets, this traditional transportation method is heavy because the aluminum alloy badminton rackets themselves have a certain weight. When the cart is loaded with a large number of badminton rackets, the overall weight will be heavy. When unloading, the staff have to move the heavy aluminum alloy badminton rackets one by one from the cart, which will undoubtedly greatly consume the staff's physical strength. Furthermore, these unloaded aluminum alloy badminton rackets often need to be moved to platforms at different heights for subsequent processing or storage, which not only increases the complexity of the work, but also requires the staff to pay a lot of physical labor. Technical problems.

[0006] In order to achieve the purpose of the utility model, the technical solution adopted by the utility model is as follows: a feeding device for processing aluminum alloy badminton rackets is designed, including a device box, a placement groove is opened on both sides of the top of the device box, a circular groove is opened on the top of the device box, an electric telescopic cylinder is installed inside the circular groove, a first motor is fixed on the top of the electric telescopic cylinder, a rotating rod is connected to the top of the first motor, and a fixed strip is fixed on the top of the rotating rod;

[0007] A group of fixed plates are provided on both sides of the bottom of the fixed strip, and each group of fixed plates consists of two. A moving component is provided between the two fixed plates, and a feeding frame plate is provided at the bottom of the moving component.

[0008] Preferably, the moving assembly includes a second motor, a threaded rod, a moving block, a bearing and a limiting rod.

[0009] Preferably, a moving block passes through the outside of the threaded rod, and the threaded rod is threadedly connected to a screw hole in the moving block, and one side of the threaded rod passes through a fixed plate on one side and is connected to the second motor.

[0010] Preferably, the other side of the threaded rod is rotatably connected to a bearing, and the bearing is installed on the side surface of the fixing plate on the other side.

[0011] Preferably, a limit rod passes through the top end of the inner portion of the moving block, and fixing plates are fixed at both ends of the limit rod.

[0012] Preferably, L-shaped blocks are fixed on both sides of the top of the feeding frame plate, and the L-shaped blocks are engaged in the slots opened at the bottom of both sides of the moving block. A plurality of partition plates are fixed inside the feeding frame plate, and a circular hole is opened on the top of the plurality of partition plates, and a first fixed cylinder is installed inside the circular hole.

[0013] Preferably, the first fixed cylinder is penetrated by a second fixed cylinder at both upper and lower ends, one end of the second fixed cylinder fixed in the first fixed cylinder is fixed with a moving plate body, a plurality of springs are fixed between the two moving plate bodies, and one end of the second fixed cylinder fixed out of the first fixed cylinder is fixed with a clamping plate body.

[0014] Preferably, a control host is mounted at the front end of the device box, and rotating wheels are mounted at the bottom of the device box.

[0015] Compared with the prior art, the utility model has the advantages that:

[0016] 1. The utility model discloses a device for aluminum alloy badminton racket assembly transportation, which comprises a device box, a plurality of feeding frame plates, a plurality of aluminum alloy badminton racket assemblies, a plurality of moving assemblies, a plurality of first fixed cylinders and a plurality of springs, wherein the device box is provided with a plurality of feeding frame plates, the aluminum alloy badminton racket assembly is placed in the feeding frame plate, the moving assembly is arranged on the bottom of the device box, the first fixed cylinder is arranged in the feeding frame plate, and the spring is arranged in the first fixed cylinder.

[0017] 2. The utility model discloses a device for aluminum alloy badminton racket assembly transportation, which comprises a device box, a plurality of feeding frame plates, a plurality of aluminum alloy badminton racket assemblies, a plurality of moving assemblies, a plurality of first fixed cylinders and a plurality of springs, wherein the device box is provided with a plurality of feeding frame plates, the aluminum alloy badminton racket assembly is placed in the feeding frame plate, the moving assembly is arranged on the bottom of the device box, the first fixed cylinder is arranged in the feeding frame plate, and the spring is arranged in the first fixed cylinder. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is the whole structure schematic view of the utility model;

[0019] Figure 2 It is the fixed strip bottom structure schematic view of the utility model;

[0020] Figure 3 It is the internal structure schematic view of the utility model's partition board;

[0021] Figure 4 It is the whole structure schematic view of the utility model.

[0022] In the drawing: 1, device box; 101, placement groove; 102, control host computer; 103, runner; 2, fixed strip; 201, fixed plate; 202, rotating rod; 203, threaded rod; 204, moving block; 205, first motor; 206, bearing; 207, limiting rod; 208, clamping groove; 209, L-shaped clamping block; 210, feeding frame plate; 211, circular groove; 212, electric telescopic cylinder; 213, second motor; 3, partition board; 301, round hole; 302, first fixed cylinder; 303, spring; 304, moving plate body; 305, second fixed cylinder; 306, clamping plate body. DETAILED DESCRIPTION

[0023] The utility model is further explained in connection with the drawings and examples as follows:

[0024] Example 1: a kind of aluminium alloy badminton racket processing is fed to device, referring to Figures 1 to 4, including device box 1, device box 1 top both sides are provided with placing groove 101, device box 1 top is provided with circular groove 211, circular groove 211 inside installation electric telescopic cylinder 212, electric telescopic cylinder 212 top is fixed with first motor 205, first motor 205 top is connected with rotating rod 202, rotating rod 202 top is fixed with fixed strip plate 2;Fixed strip plate 2 bottom both sides are provided with a group of fixed plate 201, each group of fixed plate 201 is two, two fixed plate 201 between setting moves assembly, moves assembly bottom setting feeding frame plate 210, first electric telescopic cylinder 212 is opened, driving feeding frame plate 210 and aluminum alloy badminton racket assembly enter to the placing groove 101 in the top of device box 1, the aluminum alloy badminton racket assembly is fed, after feeding to the specified position, first electric telescopic cylinder 212 can be opened, first electric telescopic cylinder 212 will drive fixed strip plate 2 to move up, fixed strip plate 2 will drive feeding frame plate 210 and aluminum alloy badminton racket assembly to move up, make feeding frame plate 210 and aluminum alloy badminton racket assembly separate from placing groove 101, then first motor 205 is opened, first motor 205 drives rotating rod 202, rotating rod 202 drives fixed strip plate 2 to rotate, fixed strip plate 2 drives feeding frame plate 210 and aluminum alloy badminton racket assembly to rotate, make feeding frame plate 210 and aluminum alloy badminton racket assembly be located at the both sides position of device box 1, then first electric telescopic cylinder 212 is opened, first electric telescopic cylinder 212 drives feeding frame plate 210 and aluminum alloy badminton racket assembly to move down, so that feeding frame plate 210 and aluminum alloy badminton racket assembly are directly placed to the platform surface of different height, save the staff to the aluminum alloy badminton racket assembly in feeding frame plate 210 carries out the handling, solve the traditional aluminum alloy badminton racket processing flow, the feeding device used generally relies on the cart to transport materials, however, this traditional transportation mode when facing the conveying of a large number of aluminum alloy badminton rackets, since aluminum alloy badminton racket itself has certain weight, when the number of badminton rackets loaded on the cart is more, the overall weight is heavy, the staff when carrying out the unloading operation, have to carry down the heavy aluminum alloy badminton racket from the cart one by one, this undoubtedly will greatly consume the physical strength of staff, further, these unloaded aluminum alloy badminton rackets often also need to be carried to the platform of different height to carry out subsequent processing or storage, not only increase the complexity of work, but also need staff to pay a lot of physical labor.

[0025] Specifically, refer to Figure 2 , moving assembly includes second motor 213, threaded rod 203, moving block 204, bearing 206 and limit rod 207.

[0026] More specifically, refer to Figure 2A moving block 204 passes through the outside of the threaded rod 203, and the threaded rod 203 is threadedly connected to the screw hole in the moving block 204. One side of the threaded rod 203 passes through the fixed plate 201 on one side and is connected to the second motor 213. When the feeding frame plate 210 and the aluminum alloy badminton racket assembly are placed on the platform, the second motor 213 can be turned on, and the second motor 213 drives the threaded rod 203, and the threaded rod 203 drives the moving block 204 to move. The moving block 204 will drive the feeding frame plate 210 and the aluminum alloy badminton racket assembly to move, and the placement distance between the feeding frame plate 210 and the aluminum alloy badminton racket assembly can be adjusted, and multiple feeding frame plates 210 and aluminum alloy badminton racket assemblies can be placed at different positions on the platform, further improving the adjustability of the placement.

[0027] For further information, see Figure 2 The other side of the threaded rod 203 is rotatably connected to a bearing 206, and the bearing 206 is installed on the side of the fixed plate 201 on the other side.

[0028] Further, see Figure 2 The top of the moving block 204 passes through a limiting rod 207 , and both ends of the limiting rod 207 are fixed with a fixing plate 201 .

[0029] It is worth noting that, see Figure 2 L-shaped blocks 209 are fixed on both sides of the top of the feeding frame plate 210, and the L-shaped blocks 209 are engaged in the slots 208 opened at the bottom of both sides of the moving block 204. A plurality of partition plates 3 are fixed inside the feeding frame plate 210, and a circular hole 301 is opened on the top of the plurality of partition plates 3. A first fixed cylinder 302 is installed inside the circular hole 301, and a first fixed cylinder 302 is provided in the partition plate 3. The elastic force of the spring 303 in the first fixed cylinder 302 can be utilized to simultaneously drive the second fixed cylinder 305 in the upper and lower positions to move. The second fixed cylinder 305 will drive the clamping plate 306 to move, thereby limiting and fixing the aluminum alloy badminton racket components placed in different positions, thereby avoiding shaking and displacement of the aluminum alloy badminton racket components when they are moved, which may cause damage to the aluminum alloy badminton racket components.

[0030] It is worth noting that see Figure 3 The second fixed cylinder 305 passes through both the upper and lower ends of the first fixed cylinder 302. A movable plate 304 is fixed to one end of the second fixed cylinder 305 located in the first fixed cylinder 302. Multiple springs 303 are fixed between the two movable plates 304. A clamping plate 306 is fixed to one end of the second fixed cylinder 305 extending out of the first fixed cylinder 302.

[0031] It is worth mentioning that see Figure 1 A control host 102 is installed at the front end of the device box 1, and wheels 103 are installed at the four corners of the bottom of the device box 1.

[0032] When the feeding device for processing aluminum alloy badminton racket is used, firstly, multiple aluminum alloy badminton racket components are placed into the feeding frame plate 210, then the first electric telescopic cylinder 212 is opened, the feeding frame plate 210 and the aluminum alloy badminton racket components are driven into the placing groove 101 at the top of the device box 1, the aluminum alloy badminton racket components are fed, after being fed to the specified position, the first electric telescopic cylinder 212 can be opened, the first electric telescopic cylinder 212 drives the fixed strip plate 2 to move upwards, the fixed strip plate 2 drives the feeding frame plate 210 and the aluminum alloy badminton racket components to move upwards, so that the feeding frame plate 210 and the aluminum alloy badminton racket components are separated from the placing groove 101, then the first motor 205 is opened, the first motor 205 drives the rotating rod 202, the rotating rod 202 drives the fixed strip plate 2 to rotate, the fixed strip plate 2 drives the feeding frame plate 210 and the aluminum alloy badminton racket components to rotate, so that the feeding frame plate 210 and the aluminum alloy badminton racket components are located at the two sides of the device box 1, then the first electric telescopic cylinder 212 is opened, the first electric telescopic cylinder 212 drives the feeding frame plate 210 and the aluminum alloy badminton racket components to move downwards, so that the feeding frame plate 210 and the aluminum alloy badminton racket components are directly placed on the platform surface of different heights, the staff is saved for carrying the aluminum alloy badminton racket components in the feeding frame plate 210, when the feeding frame plate 210 and the aluminum alloy badminton racket components are placed on the platform, the second motor 213 can be opened, the second motor 213 drives the threaded rod 203, the threaded rod 203 drives the moving block 204 to move, the moving block 204 drives the feeding frame plate 210 and the aluminum alloy badminton racket components to move, the placing distance of the feeding frame plate 210 and the aluminum alloy badminton racket components is adjusted, multiple feeding frame plates 210 and aluminum alloy badminton racket components are placed at different positions on the platform, the adjustability of placement is further improved, the first fixed cylinder 302 is arranged in the partition plate 3, the elastic force of the spring 303 in the first fixed cylinder 302 can drive the second fixed cylinder 305 at the upper and lower positions to move, the second fixed cylinder 305 drives the clamping plate body 306 to move, the aluminum alloy badminton racket components placed at different positions are limited and fixed, the shaking displacement of the aluminum alloy badminton racket components during movement is avoided, and the damage of the aluminum alloy badminton racket components is caused.

[0033] In addition, the components designed in the utility model are all general standard components or components known by those skilled in the art, the structure and principle of which can be known by the technical personnel through a technical manual or through a conventional experimental method, and the technical personnel in the field can fully realize it without further description, and the content protected by the utility model does not involve improvement of the internal structure and method.

[0034] The utility model discloses an embodiment discloses the better embodiment, but is not limited to this, and the ordinary skill of the art, the spirit of the utility model is appreciated to the above -mentioned embodiment, and different extension and change are made, but as long as not departing from the spirit of the utility model, all are in the protection range of the utility model.

Claims

1. A feeding device for processing aluminum alloy badminton rackets, comprising a device box (1), wherein both sides of the top of the device box (1) are provided with placement grooves (101), characterized in that: A circular groove (211) is provided on the top of the device housing (1), an electric telescopic cylinder (212) is installed inside the circular groove (211), a first motor (205) is fixed on the top of the electric telescopic cylinder (212), a rotating rod (202) is connected to the top of the first motor (205), and a fixed strip (2) is fixed on the top of the rotating rod (202); A group of fixed plates (201) are provided on both sides of the bottom of the fixed strip (2), each group of fixed plates (201) consists of two, a moving assembly is provided between the two fixed plates (201), and a feeding frame plate (210) is provided at the bottom of the moving assembly.

2. The feeding device for processing aluminum alloy badminton rackets according to claim 1, characterized in that: The moving assembly comprises a second motor (213), a threaded rod (203), a moving block (204), a bearing (206) and a limiting rod (207).

3. The feeding device for processing aluminum alloy badminton rackets according to claim 2, characterized in that: The threaded rod (203) has a movable block (204) passing through its exterior, and the threaded rod (203) is threadedly connected to a screw hole in the movable block (204); one side of the threaded rod (203) passes through a fixed plate (201) on one side and is connected to a second motor (213).

4. The feeding device for processing aluminum alloy badminton rackets according to claim 2, characterized in that: The other side of the threaded rod (203) is rotatably connected to a bearing (206), and the bearing (206) is installed on the side of the fixing plate (201) on the other side.

5. The feeding device for processing aluminum alloy badminton rackets according to claim 2, characterized in that: A limiting rod (207) passes through the top end of the inner portion of the moving block (204), and fixing plates (201) are fixed to both ends of the limiting rod (207).

6. The feeding device for processing aluminum alloy badminton rackets according to claim 1, characterized in that: L-shaped blocks (209) are fixed on both sides of the top of the feeding frame plate (210), and the L-shaped blocks (209) are engaged in the card slots (208) opened at the bottom of both sides of the moving block (204). A plurality of partition plates (3) are fixed inside the feeding frame plate (210), and a circular hole (301) is opened on the top of the plurality of partition plates (3), and a first fixing cylinder (302) is installed inside the circular hole (301).

7. The feeding device for processing aluminum alloy badminton rackets according to claim 6, characterized in that: The first fixed tube (302) is penetrated by a second fixed tube (305) at both upper and lower ends; one end of the second fixed tube (305) located inside the first fixed tube (302) is fixed with a movable plate (304); a plurality of springs (303) are fixed between the two movable plates (304); and one end of the second fixed tube (305) extending out of the first fixed tube (302) is fixed with a clamping plate (306).

8. The feeding device for processing aluminum alloy badminton rackets according to claim 1, characterized in that: A control host (102) is installed at the front end of the device box (1), and rotating wheels (103) are installed at the four corners of the bottom of the device box (1).

Citation Information

Patent Citations

  • Feeding device for aluminum alloy badminton racket machining

    CN214139606U