An automated fishing line processing device and its processing method
By introducing line-strapping and cutting mechanisms into fishing line processing equipment, automated cutting of fishing lines is achieved, solving the problem of low efficiency in manual cutting in existing technologies and improving processing efficiency and equipment safety.
Patent Information
- Application Number
- CN202510301476.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2025-10-28
- Estimated Expiration
- 2045-03-14
AI Technical Summary
The existing fishing line requires manual cutting after winding, resulting in low processing efficiency and making it unable to be effectively matched with existing automated processing equipment.
Design an automated fishing line processing device, including a line winding mechanism, a line coiling mechanism, and a cutting mechanism. The line winding mechanism guides the direction and angle of the fishing line winding, and the cutting mechanism automatically cuts the fishing line after winding, using friction to achieve cutting and reduce manual operation.
It enables automated cutting of fishing lines, improves processing efficiency, enhances equipment safety, and extends the service life of cutting tools.
Smart Images

Figure CN119953966B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of fishing line processing technology, and in particular to an automated fishing line processing device and its processing method. Background Technology
[0002] Fishing line, also called fishing line, is the line attached to the fishing rod when fishing. Similar to spider silk, it's very thin yet strong. Fishing line is a common type of line used in everyday life. While not only for fishing, it's also used for tying things up in our daily lives.
[0003] During the production and processing of fishing lines, the finished fishing lines often need to be wound and packaged before being sold. When winding and packaging fishing lines, the appropriate length needs to be wound according to the factory specifications, such as 30m or 50m per roll.
[0004] Chinese Patent Publication No. CN 211225797 U discloses a utility model patent entitled "A Winding Device for Fishing Line," which includes a base, a mounting cylinder, and a winding reel. A driving mechanism is provided on one side of the top surface of the base. An mounting assembly is provided inside the mounting cylinder and is connected to the winding reel through the mounting assembly. One end of a rotating rod extends to the inner wall of the mounting cylinder and is rotatably connected to the mounting cylinder. Threaded sleeves are fitted on both sides of the rotating rod. Movable plates are provided on the upper and lower sides inside the mounting cylinder. The two ends of the movable plates near the rotating rod are connected to the threaded sleeves through movable rods. Multiple sets of top rods are provided at equal intervals on the side of the movable plates away from the rotating rod. The top rods pass through the side wall of the mounting cylinder and are slidably connected to the mounting cylinder. A pin is provided at the end of the top rod away from the movable plate. An insertion hole adapted to the pin is provided on the inner ring of the winding reel.
[0005] Although the above-mentioned utility model can wind and reel in multiple sets and various sizes of different winding spools, and the winding is neat, it greatly improves the efficiency of fishing line winding.
[0006] However, in actual use, the above processing method still requires manual intervention to cut and separate the fishing line, and its processing efficiency is relatively low, which cannot be well adapted to the efficiency of existing automated processing equipment.
[0007] Therefore, this application proposes an automated fishing line processing device for automatically cutting the wound fishing line during the fishing line processing and winding process, thereby improving the processing efficiency of fishing line. Summary of the Invention
[0008] In view of the shortcomings of the prior art described above, the purpose of this invention is to provide an automated fishing line processing device to solve the problem mentioned in the prior art that fishing lines need to be manually cut after being wound.
[0009] To achieve the above and other related objectives, the present invention provides an automated fishing line processing device, comprising:
[0010] A line-winding mechanism, which guides the conveying direction and angle of the fishing line to be wound up;
[0011] A line winding mechanism is provided, which is equipped with a plurality of fishing line packaging reels. The line winding mechanism can drive the fishing line packaging reels to rotate and wind up the fishing line.
[0012] A cutting mechanism for cutting fishing line wound on a fishing line packaging reel to form new line ends;
[0013] The line winding mechanism and the cutting mechanism are respectively located on both sides of the line winding mechanism. After the line winding mechanism guides the fishing line to be wound up, it will trigger the start switch of the cutting mechanism, so that the cutting mechanism contacts the fishing line packaging reel and cuts the fishing line on the fishing line packaging reel.
[0014] Preferably, the cutting mechanism includes a telescopic drive equipment box and a trigger switch. Both sides of the top of the telescopic drive equipment box are provided with inclined support arms. All the inclined support arms are inclined towards the wire winding mechanism. Each inclined support arm has a through guide groove on its side.
[0015] All of the guide slots are equipped with telescopic rods, which are controlled by control equipment inside the telescopic drive equipment box. Cutting tools are fixed to the two telescopic rods from both ends.
[0016] The trigger switch is mounted on the winding mechanism. A control line connects the trigger switch to the control device inside the telescopic drive equipment box. The outer surface of the control line is fitted with a protective sleeve.
[0017] Preferably, the cutting tool includes a tool holder roller, and a connecting shaft is provided at the center of each end of the tool holder roller. A through locking hole is provided on each of the two connecting shafts. The locking hole is sleeved on the end of the telescopic rod and is limited by a retaining ring.
[0018] The outer surface of the cutter holder roller is provided with a friction cutting roller, which is a roller body with a frosted outer surface.
[0019] Preferably, the outer surface of the blade holder roller is provided with a plurality of equidistantly distributed connecting rings, and the inner wall of the cutting roller blade is provided with a support baffle adapted to the connecting rings. The support baffle is sleeved on the outer surface of the connecting rings, and the support baffle can slide on the outer surface of the connecting rings.
[0020] An elastic element is also sleeved on the connecting ring, and the elastic element applies pressure to the support baffle from both sides of the support baffle.
[0021] Preferably, the trigger switch includes a connecting slider, an insulating trigger block is provided on the side of the connecting slider, the insulating trigger block can extend and retract on the side of the connecting slider, and reset members are provided on the upper and lower sides of the insulating trigger block to return the insulating trigger block to its initial position.
[0022] The connecting slider has a control switch inside, and the insulating trigger block has a metal contact on the side facing the control switch. The metal contact can connect and disconnect the circuit of the control switch.
[0023] The control switch is provided with wiring pins, which extend to the outside of the connecting slider and are electrically connected to the control line.
[0024] Preferably, the winding mechanism includes a guide rail support frame, and a shaftless cylinder is provided at the top between the two inner walls of the guide rail support frame. A horizontal slider is provided on the side of the shaftless cylinder facing the winding mechanism. The horizontal slider can move horizontally and reciprocally on the shaftless cylinder, and the horizontal slider can trigger an insulating trigger block after it moves.
[0025] The horizontal slider has a guide rod on the side facing the winding mechanism, and the end of the guide rod has a ring.
[0026] Preferably, the side of the horizontal slider facing the trigger switch is provided with a switch trigger plate, and the projected area of the side of the switch trigger plate is equal to the projected area of the side of the trigger switch.
[0027] Preferably, the shaftless cylinder is provided with limit grooves on both the upper and lower sides, and the trigger switch is slidably mounted on the limit grooves and fixed with bolts;
[0028] The limiting slide groove is also slidably mounted with a fishing line guide plate fixing block and fixed with bolts. The fishing line guide plate fixing block is located on the side of the connecting slider away from the horizontal slider. The side of the fishing line guide plate fixing block facing the line winding mechanism is provided with a fishing line guide plate with a groove in the middle. The fishing line passes through the groove of the fishing line guide plate.
[0029] Preferably, the line reeling mechanism includes a drive motor, the output end of which is provided with a support shaft, the fishing line packaging reels are batch-installed on the outer surface of the support shaft, and the outer surface of the support shaft is provided with threaded grooves;
[0030] The support shaft is also equipped with a locking nut, which engages with the threaded groove to secure all the fishing line packaging reels.
[0031] The outer surface edge of the fishing line packaging reel is provided with a fishing line deflection groove.
[0032] The depth of the fishing line deflection groove does not exceed half the diameter of the fishing line, and the two sides of the fishing line deflection groove are provided with oblique cut surfaces to form a cut in the middle of the fishing line deflection groove.
[0033] The processing method of automated fishing line processing equipment includes the following steps:
[0034] Multiple fishing line packaging reels are sequentially placed on the outer surface of the support shaft, and the fishing line packaging reels are completely fixed by locking nuts engaging with the threaded grooves on the support shaft.
[0035] The end of the external fishing line is led from the groove of the fishing line guide plate to the ring at the end of the guide rod, and finally wound into the fishing line packaging plate near the drive motor;
[0036] The drive motor is started to rotate the fishing line packaging reel to begin winding the fishing line. At the same time, the shaftless cylinder drives the horizontal slider to reciprocate within the width range of a single fishing line packaging reel.
[0037] Once a fishing line reel is wound up, the shaftless cylinder drives the horizontal slider to the position of the next fishing line reel and continues to reciprocate, repeating this process until all fishing line reels have finished winding up the fishing line.
[0038] At this time, the switch trigger plate on the side of the horizontal slider will squeeze the insulating trigger block, so that the metal contact will contact the control switch, and the circuit of the control switch will be connected to supply power to the control equipment in the telescopic drive equipment box, drive the telescopic rod to push the cutting tool towards the fishing line packaging reel, and make the cutting tool contact the outer surface of the fishing line packaging reel;
[0039] The high-speed friction between the high-speed rotating fishing line packaging reel and the cutting blade cuts the fishing line spanning between multiple fishing line packaging reels through friction.
[0040] After the fishing line is cut, the machine stops, and the horizontal slider and cutting blade return to their initial positions.
[0041] Remove the locking nut and remove the fishing line packaging reel from the surface of the support shaft for labeling and sealing.
[0042] As described above, the automated fishing line processing equipment of the present invention has the following beneficial effects:
[0043] 1. This invention provides a cutting mechanism on the side of the line winding mechanism, with the switch for the cutting mechanism located on the winding mechanism. After the winding mechanism controls the direction and angle of the fishing line to wind the line into all the fishing line packaging reels, it triggers the switch of the cutting mechanism, causing the cutting mechanism to start running and contact the outer surface of the fishing line packaging reels. Under the frictional force of the rotating fishing line packaging reels, the cutting mechanism cuts the fishing line at the connection points of multiple fishing line packaging reels, thus separating all the fishing line packaging reels individually. This achieves automated cutting of fishing line, reduces manual operation, and improves processing efficiency.
[0044] 2. This invention uses a telescopic rod to push the cutting blade into contact with the outer surface of the fishing line packaging reel. As the fishing line packaging reel rotates, the fishing line is cut by friction. The entire cutting blade remains stationary and has no sharp cutting surface. This ensures that the cutting blade will not cause injury to personnel due to human error during use, thus improving the safety of the equipment.
[0045] 3. This invention provides a connecting ring on the outer surface of the blade holder roller and a support baffle inside the friction cutting roller blade. The support baffle is slidably connected to the outer surface of the connecting ring. At the same time, the elastic element applies pressure to the support baffle to keep the friction cutting roller blade balanced. When the friction cutting roller blade comes into contact with the high-speed rotating fishing line packaging reel, the friction cutting roller blade will rotate and squeeze the elastic element through the support baffle. This allows the elastic element to buffer the torque generated by the rotation of the fishing line packaging reel, thereby reducing the pressure of the connecting shaft on the telescopic rod and achieving the effect of improving the service life of the telescopic rod.
[0046] Therefore, this invention effectively overcomes the various shortcomings of the prior art and has high industrial application value. Attached Figure Description
[0047] Figure 1 The diagram shown is a schematic representation of the structure of the present invention.
[0048] Figure 2 The diagram shown is a side view of the structure of the present invention.
[0049] Figure 3 The diagram shown is a schematic diagram of the structural assembly of the present invention.
[0050] Figure 4 This invention is shown as Figure 1 A magnified schematic diagram of the structure at point A in the middle.
[0051] Figure 5 The diagram shown is a structural schematic of the cutting tool of the present invention.
[0052] Figure 6 The diagram shown is a structural assembly diagram of the cutting tool of the present invention.
[0053] Figure 7 This invention is shown as Figure 6 Enlarged schematic diagram of the structure at point B.
[0054] Figure 8 The image shown is a cross-sectional view of the cutting tool of this invention.
[0055] Figure 9 This invention is shown as Figure 8 A magnified schematic diagram of the structure at point C.
[0056] Figure 10 The diagram shows the installation position of the support baffle of the present invention.
[0057] Figure 11 The diagram shown is a schematic representation of the trigger switch of this invention.
[0058] Figure 12 The diagram shown is a cross-sectional view of the trigger switch of this invention.
[0059] Figure 13 The diagram shown is a structural schematic of the fishing line packaging reel of the present invention.
[0060] Figure 14 This invention is shown as Figure 13 A magnified schematic diagram of the structure at point D.
[0061] Figure 15 The diagram shows the fishing line of the present invention crossing the fishing line packaging tray.
[0062] Component designation explanation:
[0063] 1. Line straightening mechanism; 101. Guide rail support frame; 102. Shaftless cylinder; 103. Horizontal slider; 104. Guide rod; 105. Switch trigger plate; 106. Limiting groove; 107. Fishing line guide plate fixing block; 108. Fishing line guide plate;
[0064] 2. Wire winding mechanism; 201. Drive motor; 202. Support shaft; 2021. Threaded groove; 203. Locking nut;
[0065] 3. Cutting mechanism; 301. Telescopic drive equipment box; 302. Inclined support arm; 303. Guide groove; 304. Telescopic rod; 305. Cutting blade; 3051. Blade holder roller; 3052. Connecting shaft; 3053. Locking hole; 3054. Friction cutting roller blade; 3055. Connecting ring; 3056. Elastic element; 3057. Support baffle; 306. Trigger switch; 3061. Connecting slider; 3062. Insulated trigger block; 3063. Metal contact; 3064. Reset element; 3065. Control switch; 3066. Wiring pin; 307. Control line; 308. Sheath tube;
[0066] 4. Fishing line packaging tray; 401. Fishing line deflection groove. Detailed Implementation
[0067] The following specific embodiments illustrate the implementation of the present invention. Those skilled in the art can easily understand other advantages and effects of the present invention from the content disclosed in this specification.
[0068] Please see Figures 1 to 15 It should be understood that the structures, proportions, sizes, etc., illustrated in the accompanying drawings are merely for illustrative purposes to aid those skilled in the art and to facilitate understanding and reading. They are not intended to limit the scope of the invention and therefore have no substantial technical significance. Any modifications to the structure, changes in proportions, or adjustments to size, without affecting the effectiveness and purpose of the invention, should still fall within the scope of the technical content disclosed in this invention. Furthermore, the terms such as "upper," "lower," "left," "right," "middle," and "one" used in this specification are merely for clarity and not intended to limit the scope of the invention. Changes or adjustments to their relative relationships, without substantially altering the technical content, should also be considered within the scope of the invention's implementation.
[0069] like Figures 1-3 As shown, this invention provides an automated fishing line processing device, including a line-strapping mechanism 1, a line-coiling mechanism 2, and a cutting mechanism 3. The line-strapping mechanism 1 guides the conveying direction and angle of the fishing line to be wound. The line-coiling mechanism 2 is equipped with several fishing line packaging reels 4. The line-coiling mechanism 2 can drive the fishing line packaging reels 4 to rotate and wind the fishing line, thereby achieving batch winding of fishing line and improving the efficiency of fishing line processing. The cutting mechanism 3 cuts the fishing line wound by the fishing line packaging reels 4 to form new line ends, so that each fishing line packaging reel 4 can be separated individually after winding the fishing line, reducing manual cutting operations. Specifically, the line-strapping mechanism 1 and the cutting mechanism 3 are respectively located on both sides of the line-coiling mechanism 2. The line-strapping mechanism 1 guides the position and angle of the input fishing line, and the cutting mechanism 3 cuts the fishing line after winding. The line-strapping mechanism 1 and the cutting mechanism 3 are located on both sides and do not interfere with each other. After the fishing line winding mechanism 1 guides the fishing line to be wound up, it moves to the far right and triggers the start switch of the cutting mechanism 3, causing the cutting mechanism 3 to contact the fishing line packaging reel 4 and cut the fishing line on the reel 4. In this way, the fishing line cutting is automated, reducing manual intervention and improving processing efficiency.
[0070] like Figure 1-Figure 4As shown, in some embodiments, the cutting mechanism 3 of the present invention includes a telescopic drive device box 301 and a trigger switch 306. Two inclined support arms 302 are provided on both sides of the top of the telescopic drive device box 301. All inclined support arms 302 are inclined towards the coiling mechanism 2, so that the upper end of the inclined support arm 302 is close to the coiling mechanism 2. Each inclined support arm 302 has a through guide groove 303 on its side, and a telescopic rod 304 is installed inside all guide grooves 303. The direction of the telescopic rod 304 is consistent with the inclination direction of the guide groove 303. The telescopic rod 304 is controlled by a control device inside the telescopic drive device box 301, and a cutting blade 305 is fixed to both ends of the two telescopic rods 304. When the telescopic rod 304 drives the cutting blade 305 to move, pushing the cutting blade 305 upwards allows it to contact the fishing line packaging reel 4 to achieve the purpose of cutting the fishing line. When the cutting blade 305 is driven downward, it can be moved away from the fishing line packaging reel 4, which makes it easier to disassemble and assemble the fishing line packaging reel 4.
[0071] A trigger switch 306 is mounted on the line winding mechanism 1. After the line winding mechanism 1 guides the fishing line to reel in, it comes into contact with the trigger switch 306, thereby triggering the closure of the circuit of the trigger switch 306 and energizing the control device controlling the telescopic rod 304. A control line 307 connects the trigger switch 306 to the control device inside the telescopic drive equipment box 301. Specifically, the live wire of the control device is connected to the trigger switch 306, forming an open circuit. When the trigger switch 306 closes, the live wire of the control device is connected to the open circuit for power supply. A sheath 308 is fitted onto the outer surface of the control line 307 for protection. Both the control line 307 and the sheath 308 have a certain length reserved for the position adjustment of the trigger switch 306 on the line winding mechanism 1.
[0072] like Figures 5-6 As shown, in some embodiments, the cutting tool 305 of the present invention includes a tool holder roller 3051. Connecting shafts 3052 are provided at both ends of the tool holder roller 3051. Each connecting shaft 3052 has a through locking hole 3053. The locking hole 3053 is sleeved on the end of the telescopic rod 304 and is limited by a retaining ring, thereby fixing the tool holder roller 3051 to the end of the telescopic rod 304 and allowing it to move with the extension and retraction of the end of the telescopic rod 304. Furthermore, after removing the retaining ring, the tool holder roller 3051 can be easily disassembled for replacement or maintenance.
[0073] The outer surface of the blade holder roller 3051 is equipped with a friction-cutting roller 3054, which is a roller with a frosted outer surface. When the fishing line packaging reel 4 is driven to rotate at high speed by the line winding mechanism 2, the friction-cutting roller 3054 contacts the outer surface of the fishing line packaging reel 4, thereby allowing the fishing line to be rubbed at high speed by the frosted surface of the friction-cutting roller 3054, cutting the fishing line through friction. This cutting method is safer than cutting with a sharp blade, and will not cause serious injury due to operator error.
[0074] like Figures 6-10 As shown, in some embodiments, the outer surface of the blade holder roller 3051 of the present invention is provided with a plurality of equidistantly distributed connecting rings 3055, which are used to support the friction cutting roller 3054 from multiple points. The inner wall of the friction cutting roller 3054 is provided with a support baffle 3057 adapted to the connecting rings 3055. The support baffle 3057 is sleeved on the outer surface of the connecting rings 3055 and can slide on the outer surface of the connecting rings 3055. When the friction cutting roller 3054 contacts the fishing line packaging reel 4, the high-speed rotating fishing line packaging reel 4 will drive the friction cutting roller 3054 to rotate under the action of friction, so as to relieve part of the torque and thus protect the end of the telescopic rod 304.
[0075] Specifically, an elastic element 3056 is also sleeved on the connecting ring 3055. The elastic element 3056 applies pressure to the support baffle 3057 from both sides. When the cutting roller 3054 rotates with the fishing line packaging reel 4, the elastic element 3056 applies a buffering force to reduce the impact force when the cutting roller 3054 rotates, thereby improving the protection of the end of the telescopic rod 304 and preventing the end of the telescopic rod 304 from bending due to sudden impact.
[0076] like Figure 11 and Figure 12 As shown, in some embodiments, the trigger switch 306 of the present invention includes a connecting slider 3061, which is an insulated protective shell and is fixed to the winding mechanism 1 by bolts. An insulated trigger block 3062 is provided on the side of the connecting slider 3061. The insulated trigger block 3062 can extend and retract on the side of the connecting slider 3061. When pressure is applied to the side of the insulated trigger block 3062, it retracts into the interior of the connecting slider 3061, realizing the pre-triggering energization action. To ensure that the insulated trigger block 3062 returns to its initial ready-to-trigger state when no force is applied, reset members 3064 are provided on both the upper and lower sides of the insulated trigger block 3062 to return it to its initial position.
[0077] To control the power supply, a control switch 3065 is internally located within the connecting slider 3061. The control switch 3065 disconnects the live wire, creating an open circuit; a closed circuit is only formed when the contacts of the control switch 3065 are closed. A metal contact 3063 is located on the side of the insulating trigger block 3062 facing the control switch 3065. The metal contact 3063 consists of two metal poles electrically connected. When the metal contact 3063 contacts the side contacts of the control switch 3065, it connects the two side contacts of the control switch 3065, thus creating a closed circuit. Therefore, the metal contact 3063 can connect and disconnect the circuit of the control switch 3065.
[0078] The control switch 3065 is provided with a wiring pin 3066, which is connected to two contacts on the side of the control switch 3065. The wiring pin 3066 extends to the outside of the connecting slider 3061 and is electrically connected to the control line 307.
[0079] like Figure 1 and Figure 3 As shown, in some embodiments, the line winding mechanism 1 of the present invention includes a guide rail support frame 101, which is a U-shaped bracket. A shaftless cylinder 102 is disposed at the top between the two inner walls of the guide rail support frame 101, and a trigger switch 306 is mounted on the guide rail support frame 101. A horizontal slider 103 is disposed on the side of the shaftless cylinder 102 facing the line winding mechanism 2. The horizontal slider 103 can move horizontally and reciprocally on the shaftless cylinder 102 after the shaftless cylinder 102 is energized to generate driving force. Its specific movement is as follows: First, it reciprocates between individual fishing line reels 4. When the fishing line in a single fishing line reel 4 is wound to a predetermined length, the horizontal slider 103 moves a long distance to the position of the next fishing line reel 4 and reciprocates at the position of the next fishing line reel 4. This reciprocating motion continues until all fishing line reels 4 are wound with a predetermined length of fishing line. After all the fishing lines in the fishing line packaging reel 4 are wound, the horizontal slider 103 moves to contact the trigger switch 306, which can trigger the insulating trigger block 3062, so that the trigger switch 306 forms a circuit.
[0080] A guide rod 104 is provided on the side of the horizontal slider 103 facing the line winding mechanism 2, and the end of the guide rod 104 has a ring. When the fishing line is wound, the end of the fishing line passes through the guide rod 104, thereby controlling the winding position of the fishing line through the guide rod 104.
[0081] like Figure 3As shown, in some embodiments, to improve the stability of the horizontal slider 103 triggering the insulating trigger block 3062, a switch trigger plate 105 is provided on the side of the horizontal slider 103 facing the trigger switch 306. The projected area of the side of the switch trigger plate 105 is equal to the projected area of the side of the trigger switch 306. The switch trigger plate 105 increases the contact area between the horizontal slider 103 and the insulating trigger block 3062, thereby enabling the horizontal slider 103 to more stably push the insulating trigger block 3062 into the interior of the connecting slider 3061, thus creating a path for the control switch 3065.
[0082] like Figure 3 As shown, in some embodiments, the shaftless cylinder 102 of the present invention is provided with limiting grooves 106 on both the upper and lower sides. The trigger switch 306 is slidably mounted on the limiting groove 106 and fixed with bolts. When processing and winding fishing line, the number of fishing line packaging reels 4 installed at one time is variable. In order to match the number of fishing line packaging reels 4, the trigger switch 306 is installed in the limiting groove 106 in an adjustable manner, so as to adapt the position of the fishing line packaging reels 4 by translating the trigger switch 306.
[0083] It is worth noting that a fishing line guide plate fixing block 107 is also slidably installed on the limiting slide 106 and fixed with bolts. The fishing line guide plate fixing block 107 is located on the side of the connecting slider 3061 away from the horizontal slider 103. The side of the fishing line guide plate fixing block 107 facing the line reeling mechanism 2 is provided with a fishing line guide plate 108 with a groove in the middle, and the fishing line passes through the groove of the fishing line guide plate 108.
[0084] Through the above technical solution, the fishing line guide plate 108 is used to further guide the fishing line, enabling it to be transported more stably along the predetermined route and preventing the trigger switch 306 from interfering with the transmission of the fishing line. The fishing line guide plate fixing block 107 is also made adjustable to accommodate the position of the trigger switch 306.
[0085] like Figure 1 and Figure 3 As shown, in some embodiments, the line winding mechanism 2 of the present invention includes a drive motor 201, which is a servo motor or a stepper motor, used to precisely control the rotation speed and power output. The winding length of the fishing line is controlled by setting the power of the drive motor 201. A support shaft 202 is provided at the output end of the drive motor 201, and the fishing line packaging reels 4 are batch-mounted on the outer surface of the support shaft 202. After the drive motor 201 drives the support shaft 202 to rotate, the support shaft 202 will drive the fishing line packaging reels 4 to rotate, thereby winding the fishing line.
[0086] The outer surface of the support shaft 202 is provided with a threaded groove 2021, and a locking nut 203 is also installed on the support shaft 202. The locking nut 203 cooperates with the threaded groove 2021 to apply pressure to the fishing line packaging reel 4 from one end, so that all the fishing line packaging reels 4 are tightly attached together, thereby fixing all the fishing line packaging reels 4.
[0087] like Figure 13 and Figure 14 As shown, to improve the initial winding efficiency of the fishing line packaging reel 4, a fishing line deflection groove 401 is provided on the outer surface edge of the fishing line packaging reel 4. The depth of the fishing line deflection groove 401 does not exceed half the diameter of the fishing line, and beveled surfaces are provided on both sides of the fishing line deflection groove 401 to form a cut in the middle of the fishing line deflection groove 401. When the horizontal slider 103 drives the fishing line into the next position of the fishing line packaging reel 4, the fishing line will be taut under the action of tension, and gradually get stuck in the fishing line deflection groove 401 as the fishing line packaging reel 4 rotates, and then wraps around the inside of the fishing line packaging reel 4. While the fishing line is taut, it will be cut from the inside by the cut under the action of pressure. When the fishing line packaging reel 4 is provided with the fishing line deflection groove 401, the cutting of the fishing line is incomplete. The advantage at this time is that all the fishing line packaging reels 4 are still a whole for the time being, which makes it easy to disassemble from the equipment and facilitates batch packaging. When separation is needed, because most of the fishing line has been cut, it can be easily broken with a little force from the hand.
[0088] The edge of the fishing line deflection groove 401 is provided with a chamfered edge to make it easier for the fishing line to enter the next fishing line packaging reel 4 for winding.
[0089] The processing method of automated fishing line processing equipment includes the following steps:
[0090] Multiple fishing line packaging reels 4 are sequentially placed on the outer surface of the support shaft 202, and the fishing line packaging reels 4 are completely fixed by the locking nut 203 cooperating with the threaded groove 2021 on the support shaft 202.
[0091] The end of the external fishing line is led from the groove of the fishing line guide plate 108 to the ring at the end of the guide rod 104, and finally wound into the fishing line packaging plate 4 near the drive motor 201.
[0092] The drive motor 201 is started to rotate the fishing line packaging reel 4 to begin winding the fishing line. At the same time, the shaftless cylinder 102 drives the horizontal slider 103 to reciprocate within the width range of a single fishing line packaging reel 4.
[0093] Once a fishing line reel 4 has finished winding up, the shaftless cylinder 102 drives the horizontal slider 103 to the position of the next fishing line reel 4 and continues to reciprocate, repeating this process until all fishing line reels 4 have finished winding up the fishing line.
[0094] At this time, the switch trigger plate 105 on the side of the horizontal slider 103 will squeeze the insulating trigger block 3062, thereby causing the metal contact 3063 to contact the control switch 3065, so that the circuit of the control switch 3065 is connected to supply power to the control device in the telescopic drive equipment box 301, drive the telescopic rod 304 to work and push the cutting tool 305 towards the fishing line packaging reel 4, and make the cutting tool 305 contact the outer surface of the fishing line packaging reel 4;
[0095] The high-speed rotating fishing line packaging reel 4 and the cutting blade 305 generate high-speed friction, and the fishing line spanning between multiple fishing line packaging reels 4 is cut by the friction force.
[0096] After the fishing line is cut, the equipment stops, and the horizontal slider 103 and the cutting blade 305 return to their initial positions.
[0097] Remove the locking nut 203 and remove the fishing line packaging reel 4 from the surface of the support shaft 202 for labeling and sealing.
[0098] In summary, the automated fishing line processing equipment of the present invention, by setting a cutting mechanism 3 on the side of the coiling mechanism 2 and setting the switch of the cutting mechanism 3 on the coiling mechanism 2, after the coiling mechanism 2 controls the direction and angle of the fishing line to coil the fishing line inside all the fishing line packaging reels 4, the coiling mechanism 2 triggers the switch of the cutting mechanism 3, thereby causing the cutting mechanism 3 to start running and contact the outer surface of the fishing line packaging reels 4. Under the action of the friction force of the rotation of the fishing line packaging reels 4, the fishing line at the connection of multiple fishing line packaging reels 4 is cut, thereby separating all the fishing line packaging reels 4 individually, realizing the effect of automated cutting of fishing line, reducing manual operation and improving processing efficiency.
[0099] This invention uses a telescopic rod 304 to push the cutting blade 305 into contact with the outer surface of the fishing line packaging reel 4. When the fishing line packaging reel 4 rotates, the fishing line is cut by friction. The entire cutting blade 305 is stationary and has no sharp cutting surface. Therefore, during the use of the equipment, the cutting blade 305 will not cause injury to personnel due to human error, thus improving the safety of the equipment.
[0100] This invention provides a connecting ring 3055 on the outer surface of the cutter roller 3051 and a support baffle 3057 inside the cutting roller 3054. The support baffle 3057 is slidably connected to the outer surface of the connecting ring 3055. At the same time, the elastic element 3056 applies pressure to the support baffle 3057 to keep the cutting roller 3054 balanced. When the cutting roller 3054 comes into contact with the high-speed rotating fishing line packaging reel 4, the cutting roller 3054 will rotate and squeeze the elastic element 3056 through the support baffle 3057. This allows the elastic element 3056 to buffer the torque generated by the rotation of the fishing line packaging reel 4, thereby reducing the pressure of the connecting shaft 3052 on the telescopic rod 304 and improving the service life of the telescopic rod 304.
[0101] Therefore, this invention effectively overcomes the various shortcomings of the prior art and has high industrial application value.
[0102] The above embodiments are merely illustrative of the principles and effects of the present invention and are not intended to limit the invention. Any person skilled in the art can modify or alter the above embodiments without departing from the spirit and scope of the present invention. Therefore, all equivalent modifications or alterations made by those skilled in the art without departing from the spirit and technical concept disclosed in the present invention should still be covered by the claims of the present invention.
Claims
1. An automated fishing line processing device, characterized in that, include: Line winding mechanism (1), the line winding mechanism (1) is used to guide the conveying direction and angle of the fishing line to be wound up; The line winding mechanism (2) is provided with a plurality of fishing line packaging discs (4). The line winding mechanism (2) can drive the fishing line packaging discs (4) to rotate and wind up the fishing line. Cutting mechanism (3), the cutting mechanism (3) is used to cut the fishing line wound on the fishing line packaging reel (4) to form a new line end; The line winding mechanism (1) and the cutting mechanism (3) are respectively arranged on both sides of the line winding mechanism (2). After the line winding mechanism (1) guides the fishing line to be wound up, it will trigger the start switch of the cutting mechanism (3) so that the cutting mechanism (3) contacts the fishing line packaging reel (4) to cut the fishing line on the fishing line packaging reel (4). The cutting mechanism (3) includes a telescopic drive equipment box (301) and a trigger switch (306). Both sides of the top of the telescopic drive equipment box (301) are provided with inclined support arms (302). All the inclined support arms (302) are inclined towards the coiling mechanism (2). Each inclined support arm (302) has a through guide groove (303) on its side. All of the guide slots (303) are equipped with telescopic rods (304), which are controlled by the control device inside the telescopic drive equipment box (301). Cutting tools (305) are fixed at both ends of the two telescopic rods (304). The trigger switch (306) is installed on the wire straightening mechanism (1). The trigger switch (306) is connected to the control device inside the telescopic drive equipment box (301) by a control line (307). The outer surface of the control line (307) is sleeved with a protective tube (308). The cutting tool (305) includes a tool holder roller (3051), and a connecting shaft (3052) is provided at both ends of the tool holder roller (3051). A through locking hole (3053) is provided on both connecting shafts (3052). The locking hole (3053) is sleeved on the end of the telescopic rod (304) and is limited by a retaining ring. The outer surface of the blade holder roller (3051) is provided with a friction cutting roller (3054), and the friction cutting roller (3054) is a roller body with a frosted outer surface; The outer surface of the blade holder roller (3051) is provided with a plurality of equidistantly distributed connecting rings (3055), and the inner wall of the cutting roller (3054) is provided with a support baffle (3057) adapted to the connecting rings (3055). The support baffle (3057) is sleeved on the outer surface of the connecting rings (3055), and the support baffle (3057) can slide on the outer surface of the connecting rings (3055). An elastic element (3056) is also sleeved on the connecting ring (3055), and the elastic element (3056) applies pressure to the support baffle (3057) from both sides of the support baffle (3057).
2. The automated fishing line processing equipment according to claim 1, characterized in that: The trigger switch (306) includes a connecting slider (3061), and an insulating trigger block (3062) is provided on the side of the connecting slider (3061). The insulating trigger block (3062) can extend and retract on the side of the connecting slider (3061). Reset members (3064) are provided on both the upper and lower sides of the insulating trigger block (3062) to return the insulating trigger block (3062) to its initial position. The connecting slider (3061) is provided with a control switch (3065) inside. The insulating trigger block (3062) is provided with a metal contact (3063) on the side facing the control switch (3065). The metal contact (3063) can connect and disconnect the circuit of the control switch (3065). The control switch (3065) is provided with a wiring pin (3066), which extends to the outside of the connecting slider (3061) and is electrically connected to the control line (307).
3. The automated fishing line processing equipment according to claim 2, characterized in that: The winding mechanism (1) includes a guide rail support frame (101). A shaftless cylinder (102) is provided at the top between the two inner walls of the guide rail support frame (101). A horizontal slider (103) is provided on the side of the shaftless cylinder (102) facing the winding mechanism (2). The horizontal slider (103) can move horizontally and reciprocally on the shaftless cylinder (102). After the horizontal slider (103) moves, it can trigger the insulating trigger block (3062). The horizontal slider (103) has a guide rod (104) on the side facing the coiling mechanism (2), and the end of the guide rod (104) has a ring.
4. The automated fishing line processing equipment according to claim 3, characterized in that: The horizontal slider (103) has a switch trigger plate (105) on the side facing the trigger switch (306), and the projected area of the side of the switch trigger plate (105) is equal to the projected area of the side of the trigger switch (306).
5. The automated fishing line processing equipment according to claim 4, characterized in that: The shaftless cylinder (102) is provided with limit slide grooves (106) on both the upper and lower sides. The trigger switch (306) is slidably installed on the limit slide grooves (106) and fixed by bolts. The limiting slide groove (106) is also slidably mounted with a fishing line guide plate fixing block (107) and fixed by bolts. The fishing line guide plate fixing block (107) is located on the side of the connecting slider (3061) away from the horizontal slider (103). The side of the fishing line guide plate fixing block (107) facing the line winding mechanism (2) is provided with a fishing line guide plate (108) with a middle slide groove. The fishing line passes through the slide groove of the fishing line guide plate (108).
6. The automated fishing line processing equipment according to claim 5, characterized in that: The line winding mechanism (2) includes a drive motor (201), and the output end of the drive motor (201) is provided with a support shaft (202). The fishing line packaging reels (4) are installed in batches on the outer surface of the support shaft (202), and the outer surface of the support shaft (202) is provided with a threaded groove (2021). A locking nut (203) is also installed on the support shaft (202), and the locking nut (203) cooperates with the threaded groove (2021) to fix all the fishing line packaging reels (4); The outer surface edge of the fishing line packaging disc (4) is provided with a fishing line deflection groove (401). The depth of the fishing line deflection groove (401) is no more than half the diameter of the fishing line, and the two sides of the fishing line deflection groove (401) are provided with oblique cut surfaces to form a cut in the middle of the fishing line deflection groove (401).
7. A processing method for automated fishing line processing equipment, characterized in that: Includes the automated fishing line processing equipment according to any one of claims 1-6 and the following steps: Multiple fishing line packaging reels (4) are sequentially placed on the outer surface of the support shaft (202), and the fishing line packaging reels (4) are completely fixed by the locking nut (203) cooperating with the threaded groove (2021) on the support shaft (202); The end of the external fishing line is led from the groove of the fishing line guide disc (108) to the ring at the end of the guide rod (104), and finally wound into the fishing line packaging disc (4) near the drive motor (201); Start the drive motor (201) to make the fishing line packaging reel (4) rotate and start winding the fishing line. At the same time, the shaftless cylinder (102) drives the horizontal slider (103) to reciprocate within the width range of a single fishing line packaging reel (4). When a fishing line reel (4) is finished winding, the shaftless cylinder (102) drives the horizontal slider (103) to the position of the next fishing line reel (4) and continues to move back and forth, repeating this process until all fishing line reels (4) have finished winding the fishing line. At this time, the switch trigger plate (105) on the side of the horizontal slider (103) will squeeze the insulating trigger block (3062), thereby causing the metal contact (3063) to contact the control switch (3065), so that the circuit of the control switch (3065) is connected to supply power to the control device in the telescopic drive equipment box (301), drive the telescopic rod (304) to work and push the cutting tool (305) towards the fishing line packaging reel (4), and make the cutting tool (305) contact the outer surface of the fishing line packaging reel (4); The high-speed rotating fishing line packaging reel (4) and the cutting blade (305) generate high-speed friction, and the fishing line spanning between multiple fishing line packaging reels (4) is cut by the friction force. After the fishing line is cut, the equipment stops and the horizontal slider (103) and the cutting tool (305) return to their initial positions. Remove the locking nut (203) and remove the fishing line packaging reel (4) from the surface of the support shaft (202) for labeling and sealing.
Citation Information
Patent Citations
Winding device for fishing line
CN211225797U
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CN217263820U
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CN218255499U