Multi-station simultaneous machining device for fishing rod mouth repairing and groove grinding equipment

By designing a multi-station simultaneous processing device, the multi-process automation and parallel processing of fishing rods is achieved, and the problems of low processing efficiency and low accuracy of traditional fishing rods are solved, the processing efficiency and accuracy are improved, and the processing of fishing rods of different specifications is adapted to the processing of fishing rods.

CN223130270UActive Publication Date: 2025-07-22YANTAI MCINOR AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202422007389.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-07-22
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

The traditional fishing rod processing method is inefficient, the processes are dispersed, and it is difficult to achieve continuous operation of multiple processes, resulting in reduced processing accuracy and manual operation errors.

Method used

A multi-station simultaneous processing device for fishing rod repair and grinding groove equipment is designed, including processing mechanisms on both sides, load transfer and clamping mechanisms and three left and right moving mechanisms to realize parallel processing of multiple stations, and automatic load transfer and positioning through the motor and cylinder drive jaws.

Benefits of technology

It improves processing efficiency and accuracy, reduces manual intervention, reduces errors and production costs, and adapts to the processing needs of fishing rods of different specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a multi-station simultaneous machining device for fishing rod mouth repairing and groove grinding equipment. The multi-station simultaneous machining device comprises a left-side machining mechanism, a right-side machining mechanism, a transferring and clamping mechanism and three left-right moving mechanisms. The transferring and clamping mechanism comprises a transferring support, and a plurality of clamping jaw part clamping rod piece replacement stations are arranged on the transferring support. The left side machining mechanism and the right side machining mechanism are each provided with a mouth trimming part, an inner corner guiding part and an outer corner guiding part, and the mouth trimming parts, the inner corner guiding parts and the outer corner guiding parts machine the two ends of a rod piece. Each left-right moving mechanism comprises supporting supports which are oppositely arranged in the left-right direction, and clamping claws are arranged on the upper portions of the supporting supports to clamp the rod pieces to move leftwards and rightwards.
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Description

Technical Field

[0001] The utility model relates to the field of machining, in particular to a multi-station simultaneous machining device for a fishing rod trimming and grooving equipment. Background Art

[0002] In the field of machining of rods such as fishing rods, traditional machining methods often have problems of low efficiency and scattered processes. Specifically, during the machining of fishing rods, especially when performing fine processing such as trimming the ends, grooving, guiding the inner angle, and guiding the outer angle, traditional methods usually require processing the fishing rods one by one on different machine tools. After each process is completed, the fishing rod needs to be repositioned and moved to the next machine tool for the next process. This machining method not only consumes time and effort but also easily leads to a decrease in machining accuracy because each repositioning and movement may introduce errors.

[0003] In addition, traditional machining equipment can often only perform single-process machining and cannot achieve continuous operation of multiple processes. Even if some machine tools can achieve automated loading and unloading, they are often limited to continuous machining of a single process and cannot meet the requirements for continuous processing of multiple processes during the machining of rods such as fishing rods. Summary of the Invention

[0004] To solve the above technical problems, the utility model provides a multi-station simultaneous machining device for a fishing rod trimming and grooving equipment, including left and right machining mechanisms, a transfer and clamping mechanism, and three left-right movement mechanisms;

[0005] The transfer and clamping mechanism includes a transfer bracket, and a plurality of jaw parts are arranged on the transfer bracket to clamp the rod replacement station;

[0006] The left and right machining mechanisms include a trimming part, an inner angle guiding part, and an outer angle guiding part arranged on each of the left and right sides, and the trimming part, the inner angle guiding part, and the outer angle guiding part process both ends of the rod;

[0007] Each of the left-right movement mechanisms includes support brackets arranged opposite to each other on the left and right, and clamping claws are arranged on the upper part of the support brackets to clamp the rod and move it left and right.

[0008] Preferably, the transfer bracket is driven by a conveyor belt by a motor to move back and forth, the cross bar on the transfer bracket is driven up and down by a cylinder, a plurality of jaw parts are arranged below the cross bar, and each jaw part is composed of three jaws arranged in a staggered manner.

[0009] Preferably, the three left-right movement mechanisms include three parallel tracks, two support brackets are movably arranged on each track, and clamping claws are arranged on the upper part of the support brackets.

[0010] Preferably, the mouth trimming part is driven by a first motor, the inner guide angle part is driven by a second motor, and the outer guide angle part is driven by a third motor.

[0011] Preferably, the mouth trimming part, the inner guide angle part, and the outer guide angle part are all aligned with one of the left - right moving mechanisms.

[0012] Beneficial effects

[0013] Multi - station parallel processing: By designing the processing mechanisms on both the left and right sides, each side includes multiple processing units such as a mouth trimming part, an inner guide angle part, and an outer guide angle part. This enables rods such as fishing rods to perform different processing operations simultaneously at different stations. This parallel processing method significantly reduces the processing time and improves the overall processing efficiency.

[0014] Automated transfer and positioning: The setting of the transfer and clamping mechanism and the left - right moving mechanism enables the fast and accurate movement and positioning of the fishing rod between different stations. This not only reduces manual intervention but also avoids errors and delays caused by improper manual operation, further improving the processing efficiency.

[0015] Stable clamping and positioning: The clamping devices in the transfer and clamping mechanism and the left - right moving mechanism can firmly clamp rods such as fishing rods and keep them stable during the processing. This stable clamping and positioning helps to reduce vibration and offset during the processing, thereby improving the processing accuracy.

[0016] Integrated design: By integrating multiple processing operations on the same device, the number of transfers and re - positionings of the fishing rod during the processing is reduced. This helps to reduce errors introduced by transfers and re - positionings and improves the consistency of processing accuracy.

[0017] Reduction of manual operation: The realization of the automated transfer and positioning function enables the operator to only perform simple settings and adjustments before starting the device, without the need for frequent intervention during the processing. This not only reduces the labor intensity of the operator but also reduces errors and accidents caused by human factors.

[0018] Improvement of equipment utilization rate: The design of multi - station simultaneous processing enables the device to process more rods such as fishing rods at the same time, improving the equipment utilization rate and production capacity. This helps to reduce the production cost per unit product and improve economic benefits.

[0019] Adaptability to different - specification products: By adjusting the clamping devices and positioning devices in the transfer and clamping mechanism and the left - right moving mechanism, the device can adapt to the processing requirements of rods such as fishing rods with different specifications and sizes. This flexibility enables the device to be widely used in different fields of rod processing. Description of the drawings

[0020] Figure 1 It is a schematic diagram of a partial structure of a multi-station simultaneous processing device for a fishing rod trimming and grooving equipment;

[0021] Figure 2 It is a schematic diagram of the structure of a multi-station simultaneous processing device for a fishing rod trimming and grooving equipment. Specific embodiments

[0022] The present utility model will be described in detail below with reference to the 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 belong to the protection scope of the present utility model.

[0023] As Figure 1-2 shown, a multi-station simultaneous processing device for a fishing rod trimming and grooving equipment includes processing mechanisms on the left and right sides, a transfer and clamping mechanism, and three left and right moving mechanisms;

[0024] The transfer and clamping mechanism includes a transfer bracket 1, and a plurality of jaw parts 2 are arranged on the transfer bracket 1 to hold the rod replacement station; the processing mechanisms on the left and right sides include a trimming part 3, an inner angle guiding part 5, and an outer angle guiding part 4 arranged on each side, and the trimming part 3, the inner angle guiding part 5, and the outer angle guiding part 4 process both ends of the rod;

[0025] Each of the left and right moving mechanisms includes support brackets 6 arranged opposite to each other left and right, and a clamping gripper 7 is arranged on the upper part of the support bracket 6 to hold the rod and move it left and right.

[0026] Preferably, the transfer bracket 1 and the motor 8 drive the front and back movement through the conveyor belt 9, the transfer bracket 1 drives the cross bar 11 to move up and down through the cylinder 10, and a plurality of jaw parts 2 are arranged below the cross bar 11, and each of the jaw parts 2 is composed of three jaws arranged in a staggered manner.

[0027] The transfer bracket 1 is the basis of the entire transfer and clamping mechanism, and realizes the front and back movement through the transmission system of the motor 8 and the conveyor belt 9. This design enables the transfer bracket 1 to move flexibly between different stations, facilitating the transfer and processing of the rod.

[0028] On the transfer bracket 1, the cross bar 11 is driven to move up and down through the telescopic action of the cylinder 10. A plurality of jaw parts 2 are arranged below the cross bar 11 for holding the rod. The precise control of the cylinder 10 ensures that the cross bar 11 and the jaw parts 2 can accurately reach the predetermined position, realizing the stable clamping of the rod.

[0029] Each jaw part 2 is composed of three jaws arranged in a staggered manner, and this design improves the stability and reliability of clamping. The jaw part 2 can firmly clamp rods such as fishing rods to prevent them from falling off or shaking during the processing.

[0030] Preferably, the three left - right moving mechanisms include three parallel tracks 12. Two support brackets 6 are movably arranged on each track 12, and a clamping gripper 7 is arranged on the upper part of the support bracket 6.

[0031] The three left - right moving mechanisms include three parallel tracks 12. Two support brackets 6 are movably arranged on each track 12. The support brackets 6 can slide freely on the tracks to achieve left - right movement. This design enables the clamping gripper 7 to flexibly move the rod from one side to the other side, facilitating processing at different workstations.

[0032] A clamping gripper 7 is arranged on the upper part of the support bracket 6 for clamping the rod and controlling its left - right movement. The design of the clamping gripper 7 should ensure that it can firmly clamp the rod and keep it stable during movement.

[0033] Preferably, the trimming part 3 is driven by a first motor 13, the inner guide angle part 5 is driven by a second motor 15, and the outer guide angle part 4 is driven by a third motor 14.

[0034] Preferably, the trimming part 3, the inner guide angle part 5, and the outer guide angle part 4 are all arranged in alignment with one of the left - right moving mechanisms.

[0035] Preferably, the trimming part 3 is a flat - mouth grinding wheel, the inner guide angle part 5 is a grinding wheel with a conical inner cavity, the outer guide angle part 4 is a grinding wheel with a conical outer contour, and emery is provided on the surfaces of the trimming part 3, the inner guide angle part 5, and the outer guide angle part 4.

[0036] Working principle:

[0037] Loading: Place rods such as fishing rods to be processed at the initial position of the transfer bracket 1 and clamp and fix them with the jaw part 2.

[0038] Moving and processing: The motor 8 drives the transfer bracket 1 to move back and forth to the specified workstation, and the cylinder 10 drives the cross bar 11 and the jaw part 2 to move up and down to the processing position. Subsequently, the clamping gripper 7 of the left - right moving mechanism sends the rod into the trimming part 3, the inner guide angle part 5, and the outer guide angle part 4 in sequence for processing. After processing, the clamping gripper 7 sends the rod out again and into the next workstation.

[0039] Unloading: After all processing procedures are completed, the jaw part 2 releases the rod, and the finished product is taken off by the unloading mechanism or manually.

[0040] Finally, it should be noted that the above are only the preferred embodiments of the present utility model and are 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 recorded in the foregoing embodiments or perform equivalent replacements on 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 multi-station simultaneous processing device for a fishing rod trimming and grooving equipment, characterized in that It includes processing mechanisms on the left and right sides, a transfer and clamping mechanism, and three left-right moving mechanisms; The transfer and clamping mechanism includes a transfer bracket (1), and a number of jaw parts (2) are arranged on the transfer bracket (1) for clamping the rod replacement station; The processing mechanisms on the left and right sides include a trimming part (3), an inner corner guiding part (5), and an outer corner guiding part (4) arranged on each side. The trimming part (3), the inner corner guiding part (5), and the outer corner guiding part (4) process both ends of the rod; Each of the left-right moving mechanisms includes support brackets (6) arranged opposite to each other left and right. A clamping gripper (7) is arranged on the upper part of the support bracket (6) to clamp the rod and move it left and right.

2. The multi-station simultaneous processing device for a fishing rod trimming and grooving equipment according to claim 1, wherein, The transfer bracket (1) is driven by a motor (8) through a conveyor belt (9) to move back and forth. A cross bar (11) is driven up and down by a cylinder (10) on the transfer bracket (1). A number of jaw parts (2) are arranged below the cross bar (11). Each of the jaw parts (2) is composed of three jaws arranged in a staggered manner.

3. The multi-station simultaneous processing device for a fishing rod trimming and grooving equipment according to claim 1, characterized in that, The three left-right moving mechanisms include three parallel tracks (12). Two support brackets (6) are movably arranged on each of the tracks (12). A clamping gripper (7) is arranged on the upper part of the support bracket (6).

4. The multi-station simultaneous processing device for a fishing rod trimming and grooving equipment according to claim 1, wherein, The trimming part (3) is driven by a first motor (13), the inner corner guiding part (5) is driven by a second motor (15), and the outer corner guiding part (4) is driven by a third motor (14).

5. A multi-station simultaneous processing device for a fishing rod trimming and grooving equipment according to claim 1, characterized in that, The trimming part (3), the inner corner guiding part (5), and the outer corner guiding part (4) are all arranged in alignment with one of the left-right moving mechanisms.

6. The multi-station simultaneous processing device for a fishing rod trimming and grooving equipment according to claim 1, wherein, The trimming part (3) is a flat-mouth grinding wheel, the inner corner guiding part (5) is a grinding wheel with a conical inner cavity, the outer corner guiding part (4) is a grinding wheel with a conical outer contour. Emery is provided on the surfaces of the trimming part (3), the inner corner guiding part (5), and the outer corner guiding part (4).