Full-automatic fishing rod cutting machine
By incorporating a V-groove gripper and an adjustable cutting blade assembly, along with a grinding and adhesive removal device and an alignment mechanism, the design solves the problems of universality and cutting quality for different specifications of fishing rods, achieving efficient and concentric fishing rod cutting.
Patent Information
- Application Number
- CN202310379431.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-06
- Publication Date
- 2025-11-04
- Estimated Expiration
- 2043-04-06
AI Technical Summary
Existing fishing rod cutting equipment suffers from insufficient versatility when cutting fishing rods of different specifications, resulting in low cutting efficiency and poor cutting quality. In particular, it is difficult to keep the two ends of the fishing rod concentric, leading to the appearance of beveled surfaces.
The gripper with a V-groove structure holds the rod, combined with an adjustable cutter assembly and conveying mechanism, and equipped with a grinding and degumming device and an alignment device, to achieve automatic feeding and efficient conveying, ensuring concentric cutting.
It improves cutting efficiency and quality, ensures smooth and beveled ends of the fishing rod, is suitable for different sizes of fishing rods, has a high degree of automation, and improves production efficiency.
Smart Images

Figure CN116394319B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of fishing gear processing equipment, specifically relating to a fully automatic fishing rod cutting machine. Background Technology
[0002] Fishing rods are long and slender rods that taper gradually from the handle to the tip. In the production of carbon fiber fishing rods, to avoid processing errors and facilitate manufacturing, a section is left at both ends when cutting the fabric and rolling the bare rod. This excess section needs to be cut off after the rod is finished. Currently, manual cutting is the most common method for fishing rods. Multiple fishing rods are bundled together and fed to a motor-driven cutting blade for cutting. The advantage of this method is that multiple fishing rods can be cut at once. The disadvantage is that because the rods are thicker at one end and thinner at the other, the ends cannot be kept concentric when cutting bundled rods, resulting in angled cuts that affect the quality of the rods.
[0003] Chinese Patent CN 204278070 U discloses a rod blank cutting machine for carbon fiber fishing rods, comprising a frame and a feeding device and a cutting device mounted on the frame. The feeding device consists of a feeding plate and a three-bar cylinder. The top of the feeding plate has a groove for fixing the rod blank horizontally, and pulleys are provided at both ends of the bottom. A guide rail matching the pulleys is provided on the frame below the feeding plate. The cutting device consists of two sets of motors and cutting blades. The cutting blades have a circular structure with a gear disk mounted on one end. The motors drive the cutting blades to rotate via chain transmission. The cutting blades are equipped with water spray heads. The width of the groove is just enough to hold the rod blank, and the length of the groove is shorter than the length of the rod blank. The cut rod blanks produced by this machine have smooth surfaces at both ends. However, the width of the groove on the feeding plate cannot accommodate fishing rods of different thicknesses, requiring the selection of feeding plates with different grooves according to the rod thickness, thus limiting the versatility of the equipment. Therefore, further improvements are needed to the existing fishing rod cutting equipment to enhance cutting efficiency and quality. Summary of the Invention
[0004] The purpose of this invention is to provide a fully automatic fishing rod cutting machine that has high cutting efficiency, produces smooth surfaces at both ends of the cut fishing rod, and is applicable to cutting fishing rods of different specifications.
[0005] To achieve the above objectives, the technical solution adopted in this application is as follows:
[0006] An automatic fishing rod cutting machine includes a frame and a cutting assembly mounted on the frame. The cutting assembly comprises two sets of motors A and cutting blades. Motors A drive the cutting blades to rotate. Between the two sets of cutting blades are two sets of gripping rod devices for holding the rod. Each gripping rod device includes a jaw and a jaw cylinder. The jaw is positioned below the jaw cylinder, and the upper end of the jaw cylinder is fixed to the lower end of a jaw cylinder connecting plate. A first slider is provided on the upper part of the jaw cylinder connecting plate. The first slider cooperates with a vertically arranged first slide rail. The first slider moves up and down along the first slide rail under the drive of the first motor. The gripping surface of the jaw forms a V-shaped groove, and the V-shaped grooves of the jaws gripping the same rod are concentrically arranged.
[0007] More preferably, the fully automatic fishing rod cutting machine also includes a conveying mechanism for conveying the rod body towards the cutting blade assembly. The conveying mechanism has two sets of conveyor belts symmetrically arranged, and the conveyor belts are provided with a number of V-shaped support blocks. The V-shaped support blocks on the two sets of conveyor belts support the two ends of the rod body respectively.
[0008] The The frame is equipped with a third slide rail, and at least one set of conveyor belt support frames has a third slider underneath. The block moves along the third slide rail to adjust the distance between the two sets of conveyor belts.
[0009] More preferably, a grinding and degumming device is provided on the outer side of the conveyor belt on one side of the conveying mechanism. The grinding and degumming device includes a grinding wheel and a second motor that drives the grinding wheel to rotate. A pusher block A is provided on the outer side of the conveyor belt away from the grinding and degumming device. The pusher block A is connected to the propulsion cylinder A.
[0010] More preferably, the grinding and degumming device is provided with a pressure roller for limiting the grinding rod body, and the pressure roller is connected to the lifting cylinder.
[0011] More preferably, the frame is provided with an alignment device for aligning the polished rod body. The alignment device includes a limiting baffle disposed on the side of the polishing and degumming device, and a push block B disposed on the outside of the conveyor belt away from the polishing and degumming device. The push block B is connected to the propulsion cylinder B.
[0012] More preferably, the second motor is mounted on a motor mounting plate, a fourth slider is provided below the motor mounting plate, a fourth slide rail is provided on the frame, and the fourth slider moves along the fourth slide rail.
[0013] More preferably, one of the two sets of cutting blade assemblies is a fixed cutting blade assembly and the other is an adjustable cutting blade assembly. The frame includes a fixed crossbeam and columns at both ends that support the fixed crossbeam. A second slide rail is provided on the fixed crossbeam. The motor bracket of the adjustable cutting blade assembly and the first slide rail mounting column are fixed to the sliding plate. A second slider is provided on the sliding plate and moves on the second slide rail.
[0014] More preferably, the fully automatic fishing rod cutting machine further includes a feeding device, which includes a hopper platform, a feeding platform, a feeding cylinder, and a top plate. The lower end of the top plate is connected to the feeding cylinder, and the upper end pushes the rod body on the hopper platform to the feeding platform. A stop claw is provided above the feeding platform to limit the rod body. The stop claw is installed on the swing arm beam. The swing arm beam is connected to the swing arm cylinder via a first connecting plate and a second connecting plate. The first connecting plate and the second connecting plate are hinged.
[0015] More preferably, the swing arm beam includes a first swing arm beam and a second swing arm beam. The first swing arm beam is provided with a plurality of first stop claws, which are flat and inclined. The inclined surface at the upper end of the top plate is in the same inclination direction as the first stop claw. The second swing arm beam is provided with a plurality of second stop claws, which are L-shaped.
[0016] More preferably, a guide plate is provided below the second stop claw. The guide plate is divided into an inclined plate and a vertical plate. An inclined baffle is provided on the opposite side of the vertical plate. The vertical plate and the inclined baffle limit the rod body so that the rod body falls onto the V-shaped support block of the conveyor belt.
[0017] More preferably, a waste collection baffle is provided below the cutting blade, and a waste collection box is provided below the waste collection baffle; the waste collection baffle is connected to cylinder A located below the motor mounting base.
[0018] The beneficial effects of the present invention are: (1) The clamps with V-groove structures are used to feed the cutting assembly, which can be applied to rods of different diameters. The V-grooves of the clamps holding the two ends of the rod are concentrically arranged to avoid the formation of a cut surface due to the tilting of the rod during cutting; (2) The conveyor belt with several V-shaped support blocks continuously transports the rod to the next process, which has high conveying efficiency and high control flexibility; (3) Before cutting, the residue at the end of the rod is removed by a grinding and degumming device, which improves the alignment accuracy and thus improves the positioning accuracy during cutting, ensuring the quality of product cutting; (4) The feeding device is used for automatic feeding of the conveying mechanism, which has high feeding efficiency. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 and Figure 2 This is a schematic diagram of a fully automatic fishing rod cutting machine.
[0021] Figure 3 Schematic diagram of the feeding device.
[0022] Figure 4 Schematic diagram of the first and second stop claws and the guide plate.
[0023] Figure 5 A partial schematic diagram of a fully automatic fishing rod cutter (cutting blade assembly and gripping rod device omitted).
[0024] Figure 6 Schematic diagram of the conveying mechanism.
[0025] Figure 7 This is a schematic diagram of the cutter assembly and gripper device.
[0026] Figure 8 This is a schematic diagram of the gripper structure.
[0027] In the diagram: 1. Frame, 101. Fixed crossbeam, 102. Column, 2. Feeding device, 201. Hopper platform, 202. Feeding platform, 203. Feeding cylinder, 204. Top plate, 205. First swing arm crossbeam, 206. Second swing arm crossbeam, 207. First stop claw, 208. Second stop claw, 209. First connecting plate, 210. Second connecting plate, 211. Swing arm cylinder, 212. Hopper side plate, 213. Bearing with seat, 214. Guide plate, 214a. Inclined plate, 214b. Vertical plate, 214c. Fixed plate, 215. Inclined baffle, 216. Fixed block, 217. Connecting rod, 218. Stop claw mounting plate, 219. Top plate mounting plate, 3. Conveying mechanism, 301. Conveyor belt, 302. V-shaped support block, 303. Drive pulley, 304 stainless steel belt, 305 driven pulley, 306 drive motor, 307 and 308 photoelectric switches, 309 Third slide rail, 310 third slider, 311 conveyor belt support frame, 312 guide rail 4 Grinding and degumming device, 401 grinding wheel, 402 second motor, 403 push block A, 404 push cylinder A, 405 pressure roller, 406 lifting cylinder, 407 motor mounting plate, 408 fourth slider, 409 fourth slide rail, 410 cylinder, 5 alignment device, 501 limit baffle, 502 push block B, 503 push cylinder B; 6 cutting assembly, 601 motor A, 602 cutting blade, 603 second slide rail, 604 sliding plate, 605 motor bracket, 7 gripper device, 701 gripper, 702 gripper cylinder, 703 gripper cylinder connecting plate, 704 first slider, 705 first slide rail, 706 first slide rail mounting column, 707 first motor, 8 baffle plate, 9 cylinder A, 10 waste collection box, 11 waste collection baffle, 12 rod body. Detailed Implementation
[0028] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. The components of the embodiments of this application described and shown in the accompanying drawings can generally be arranged and designed in various different configurations.
[0029] In the description of this application, it should also be noted that, unless otherwise expressly specified and limited, the terms "set up," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0030] like Figure 1 , Figure 2 , Figure 7 and Figure 8 As shown, a fully automatic fishing rod cutting machine includes a frame 1 and a cutting assembly 6 mounted on the frame 1. The cutting assembly 6 consists of two sets of motors A601 and cutting blades 602. The motors A601 drive the cutting blades 602 to rotate. Between the two sets of cutting blades 602, there are two sets of gripping rod devices 7 for holding the rod. The gripping rod device 7 includes a gripper 701 and a gripper cylinder 702. The gripper 701 is located below the gripper cylinder 702. The upper end of the gripper cylinder 702 is fixed to the lower end of the gripper cylinder connecting plate 703. The upper part of the gripper cylinder connecting plate 703 is provided with a first slider 704. The first slider 704 cooperates with a vertically arranged first slide rail 705. The first slider 704 moves up and down along the first slide rail 705 under the drive of a first motor 707. The gripping surface of the gripper 701 forms a V-shaped groove. The V-shaped grooves of the grippers 701 that grip the same rod are concentrically arranged. The rod has two sets of grippers 701 at one end, which provide good gripping stability.
[0031] In this embodiment, to accommodate the cutting of rods of different lengths, one set of two cutting blade assemblies 6 is a fixed cutting blade assembly, and the other set is an adjustable cutting blade assembly. The frame 1 includes a fixed crossbeam 101 and columns 102 that support the fixed crossbeam 101 at both ends. A second slide rail 603 is provided on the fixed crossbeam 101. The motor bracket 605 of the adjustable cutting blade assembly and the first slide rail mounting column 706 are fixed to the sliding plate 604. A second slider (not shown in the figure) is provided on the sliding plate 604. The second slider moves on the second slide rail 603, so that the sliding plate 604 moves on the second slide rail 603. The motor A601, the cutting blade 602 and the gripping rod device 7 on the same side can move synchronously to meet the cutting requirements of rods of different lengths.
[0032] In this embodiment, the fully automatic fishing rod cutting machine also includes a feeding device 2, such as... Figures 1-4 As shown, the feeding device 2 includes a hopper platform 201, a feeding platform 202, a feeding cylinder 203, and a top plate 204. The lower end of the top plate 204 is connected to the feeding cylinder 203, and the upper end pushes the upper rod of the hopper platform 201 to the feeding platform 202. A stop claw is provided above the feeding platform 202 to limit the movement of the rod 12. The stop claw is installed on the swing arm beam. One end of the swing arm beam is connected to the swing arm cylinder 211 via a first connecting plate 209 and a second connecting plate 210. The first connecting plate 209 and the second connecting plate 210 are hinged. The swing arm beam is supported by a seated bearing 213 provided on the hopper side plate 212. The piston rod of the swing arm cylinder 211 extends and retracts, driving the first connecting plate 209 and the second connecting plate 210, thereby driving the swing arm beam to rotate. As a preferred structure, the swing arm beam includes a first swing arm beam 205 and a second swing arm beam 206. The first swing arm beam 205 is provided with a plurality of first stop claws 207, which are flat and inclined. The inclined surface of the top plate 204 is in the same direction as the inclination of the first stop claws 207. The second swing arm beam 206 is provided with a plurality of second stop claws 208, which are L-shaped. In order to adjust the position of the first stop claws 207, the first stop claws 207 are mounted on the stop claw mounting plate 218, which is fixed to the connecting rod 217. A fixing block 216 is fixed on the first swing arm beam 205. The connecting rod 217 and the fixing block 216 are adjustablely connected. By adjusting the position of the connecting rod 217 in the connecting hole of the fixing block 216, the position of the first stop claws 207 can be adjusted flexibly according to the limiting requirements of the rod 12. Below the second stop claw 208, there is a guide plate 214. The guide plate 214 is divided into an inclined plate 214a and a vertical plate 214b. The back of the vertical plate 214b or the inclined plate 214a is connected to the fixed plate 214c. The fixed plate 214c is fixed to the frame 1. The frame 1 opposite the vertical plate 214b is provided with a ramp baffle 215. Below the ramp baffle 215, there is a vertical plate 215a opposite to the vertical baffle. The vertical plate 214b and the ramp baffle 215 limit the rod so that the rod falls onto the V-shaped support block 302 of the conveyor belt 301.
[0033] The material hopper platform 201 is connected to the rod conveyor belt, or the rod to be cut is placed on the material hopper platform 201 manually. The material hopper platform 201 is set at an incline, and the rod on the material hopper platform 201 will move towards the top plate 204. Multiple top plates 204 are fixed on the top plate mounting plate 219. The piston rod of the feeding cylinder 203 extends, and the top plate 204 moves upward to push the rod 12 on it to the loading platform 202. The loading platform 202 is set at an angle. The first stop claw 207 pushes the top plate 204 to the rod body limit of the loading platform 202. The first swing arm beam 205 rotates and the first stop claw 207 releases the limit on the rod body. The rod body slides along the inclined surface of the loading platform 202 towards the second stop claw 208. The second stop claw 208 limits the rod body. When the second swing arm beam 206 rotates and the second stop claw 208 releases the limit on the rod body, the rod body slides down along the guide plate 214 onto the conveying mechanism 3.
[0034] The fully automatic fishing rod cutter also includes a conveying mechanism 3 that conveys the rod body towards the cutting assembly 6, such as... Figure 5 and Figure 6 As shown, the conveying mechanism 3 has two symmetrically arranged conveyor belts 301. Each conveyor belt 301 has several V-shaped support blocks 302, which support the two ends of the rod respectively. The conveyor belts 301 are fitted onto guide wheels 312 and driven wheels 305. Drive belts 304 are fitted onto drive wheels 303 and driven wheels 305. A drive motor 306 drives the drive wheel 303 to rotate, which in turn drives the driven wheel 305 via the drive belt 304, thus rotating the conveyor belt 301. During the rotation of the conveyor belt 301, the V-shaped support blocks 302 move along with the conveyor belt 301, conveying the rod towards the cutter assembly 6. To allow the conveying mechanism to meet the requirements for conveying rods of different lengths, the distance between the two sets of conveyor belts 301 can be adjusted. In this embodiment... On rack 1 A third slide rail 309 is provided, and a third slider 310 is provided below a set of conveyor belt support frames 311. The third slider 310 is positioned along the third slide rail. 309. Adjust the distance between the two sets of transmission belts.
[0035] Because of residual glue or other residues at the end of the rod during the rod manufacturing process, errors can easily occur when cutting the rod. A grinding and adhesive removal device 4 is provided on the outer side of the conveyor belt 301 on one side of the conveyor mechanism 3. The grinding and adhesive removal device 4 can remove the adhesive from the end of the rod. The grinding and adhesive removal device 4 includes a grinding wheel 401 and a second motor 402 that drives the grinding wheel 401 to rotate. A push block A403 is provided on the outer side of the conveyor belt 301 away from the grinding and adhesive removal device 4. The push block A403 is connected to the push cylinder A404. The push cylinder A404 pushes the push block A403 to move the rod on the V-shaped support block 302 of the conveyor belt 301 toward the grinding and adhesive removal device 4. The grinding wheel 401 removes the adhesive and other residues from the end of the rod. In order to keep the rod stable during the grinding process, a pressure roller 405 is provided at the end of the grinding and adhesive removal device 4 to limit the movement of the grinding rod. The pressure roller 405 is connected to the lifting cylinder 406. The pressure roller 405 presses down on one end of the grinding rod, so the rod will not rotate arbitrarily during the grinding process.
[0036] In this embodiment, the frame 1 is equipped with an alignment device 5 for aligning the polished rod. The alignment device 5 includes a limiting baffle 501 disposed on the side of the polishing and degumming device 4, and a push block B502. The push block B502 is disposed on the outer side of the conveyor belt 301 away from the polishing and degumming device 4, and is connected to a propulsion cylinder B503. The propulsion cylinder B503 pushes the push block B502 to move towards the conveyor belt 301, pushing one end of the rod to contact and align with the limiting baffle 501. Using the alignment device 5 to align the rod improves cutting accuracy.
[0037] The position of the sanding and adhesive removal device 4 is adjustable to accommodate different rod lengths and automatic adjustment before and after sanding. The second motor 402 is mounted on the motor mounting plate 407. A fourth slider 408 is located below the motor mounting plate 407, and a fourth slide rail 409 is provided on the frame 1. The fourth slider 408 moves along the fourth slide rail 409. The movement of the fourth slider 408 on the fourth slide rail 409 can be driven by a cylinder 410. The limiting baffle 501 is fixed to the motor mounting plate 407 and moves synchronously with the sanding and adhesive removal device 4.
[0038] Below the cutting blade 602 is a waste collection baffle 11, and below the waste collection baffle 11 is a waste collection box 10. The waste collection baffle 11 is connected to a cylinder A9 located below the motor mounting base. The cylinder A9 adjusts the position of the waste collection baffle 11, and the waste collection baffle 11 can be retracted when not in use, facilitating cleaning of the cutting blade 602. A water baffle 8 is provided between the cutting blade assembly 6 and the alignment device 5 to prevent water splashing when the water pipe cools the cutting blade 602.
[0039] The fully automatic fishing rod cutting machine of this invention can be designed to cut two rods simultaneously. The rod gripping device 7 has two sets of claws 701 to hold the two rods. In this embodiment, eight V-shaped support blocks 302 are maintained above each conveyor belt 301, numbered sequentially from the feeding device 2 end to the cutting end as position 1, position 2...position 8. A photoelectric switch 307 is provided on the V-shaped support block 302 at position 1 to sense the presence or absence of the V-shaped support block on the production line. A photoelectric switch 308 is provided below the conveyor belt to detect the accurate position of the V-shaped support block at each moving position. The feeding device 2 conveys the rod body to the V-shaped support block 302 at position 1. The conveying mechanism 3 is activated, and the conveyor belt 301 moves the rod body backward. The V-shaped support block 302 below the conveyor belt 301 moves to position 1, and the feeding device 2 continues to feed. When the rod body reaches the grinding and degumming device 4, i.e., positions 3 and 4, the two propulsion cylinders A404 push the pusher block A403 to push the rod body towards the grinding wheel 401. The pressure roller 405 descends to press down on the rod body to be ground. The second motor 402 drives the grinding wheel 401 to rotate, grinding the end of the rod body. After grinding, the cylinder 410 works, driving the second motor 402 to retreat, and the conveyor belt 301 continues to drive the rod body towards position 5. When the rod moves to positions 6 and 7, cylinder 410 drives the second motor 402 to reset. Propulsion cylinder B503 pushes push block B502 towards limit baffle 501, aligning the rod with the limit baffle 501. Conveyor belt 301 transports the aligned rod to positions 7 and 8. The rod gripping device 7 operates; first motor 707 drives first slider 704 downwards, and gripper cylinder 702 controls gripper 701 to grip the rod at positions 7 and 8. Then, first slider 704 moves upwards along first slide rail 705, and gripper 701 feeds the rod to cutting blade 602, which cuts both ends of the rod. This fully automatic fishing rod cutting machine has high cutting efficiency, produces rods without bevels, and achieves high cutting quality.
[0040] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.
Claims
1. A fully automatic fishing rod cutting machine, comprising a frame and a cutting assembly mounted on the frame, the cutting assembly comprising two sets of motors A and cutting blades, wherein motors A drive the cutting blades to rotate, characterized in that: Two sets of gripping rod devices are provided between the two sets of cutting blades. Each gripping rod device includes a gripper and a gripper cylinder. The gripper is located below the gripper cylinder. The upper end of the gripper cylinder is fixed to the lower end of the gripper cylinder connecting plate. A first slider is provided on the upper part of the gripper cylinder connecting plate. The first slider cooperates with a vertically arranged first slide rail. The first slider moves up and down along the first slide rail under the drive of a first motor. The gripping surface of the gripper forms a V-shaped groove. The V-shaped grooves of the grippers that grip the same rod are concentrically arranged. The fully automatic fishing rod cutting machine also includes a conveying mechanism that conveys the rod body towards the cutting blade assembly. The conveying mechanism has two sets of conveyor belts symmetrically arranged, and several V-shaped support blocks are provided on the conveyor belts. The V-shaped support blocks on the two sets of conveyor belts support the two ends of the rod body respectively. The two sets of cutting assemblies include a fixed cutting assembly and an adjustable cutting assembly. The frame includes a fixed crossbeam and columns at both ends that support the fixed crossbeam. A second slide rail is provided on the fixed crossbeam. The motor bracket and the first slide rail mounting column of the adjustable cutting assembly are fixed to the sliding plate. A second slider is provided on the sliding plate and moves on the second slide rail. A grinding and adhesive removal device is provided on the outer side of the conveyor belt on one side of the conveying mechanism. The grinding and adhesive removal device includes a grinding wheel and a second motor that drives the grinding wheel to rotate. A push block A is provided on the outer side of the conveyor belt away from the grinding and adhesive removal device. The push block A is connected to the push cylinder A. The frame is equipped with an alignment device for aligning the rod body after grinding. The alignment device includes a limiting baffle set on the side of the grinding and degumming device, and a push block B. The push block B is set on the outside of the conveyor belt away from the grinding and degumming device, and the push block B is connected to the push cylinder B.
2. The fully automatic fishing rod cutting machine according to claim 1, characterized in that: The frame is provided with a third slide rail, and at least one set of conveyor belt support frames are provided with a third slider. The third slider moves along the third slide rail to adjust the distance between the two sets of conveyor belts.
3. The fully automatic fishing rod cutting machine according to claim 1, characterized in that: The grinding and adhesive removal device is equipped with a pressure roller that limits the movement of the grinding rod, and the pressure roller is connected to a lifting cylinder.
4. The fully automatic fishing rod cutting machine according to claim 1, characterized in that: The second motor is mounted on a motor mounting plate. A fourth slider is provided below the motor mounting plate, and a fourth slide rail is provided on the frame. The fourth slider moves along the fourth slide rail.
5. The fully automatic fishing rod cutting machine according to claim 1, characterized in that: The fully automatic fishing rod cutting machine also includes a feeding device, which includes a hopper platform, a feeding platform, a feeding cylinder, and a top plate. The lower end of the top plate is connected to the feeding cylinder, and the upper end pushes the rod body on the hopper platform to the feeding platform. A stop claw is provided above the feeding platform to limit the rod body. The stop claw is installed on the swing arm beam. The swing arm beam is connected to the swing arm cylinder through a first connecting plate and a second connecting plate. The first connecting plate and the second connecting plate are hinged.
6. The fully automatic fishing rod cutting machine according to claim 5, characterized in that: The swing arm beam includes a first swing arm beam and a second swing arm beam. The first swing arm beam is provided with a plurality of first stop claws, which are flat and inclined. The inclined surface at the upper end of the top plate is in the same direction as the inclination of the first stop claws. The second swing arm beam is provided with a plurality of second stop claws, which are L-shaped. A guide plate is provided below the second stop claws. The guide plate is divided into an inclined plate and a vertical plate. A ramp baffle is provided on the opposite side of the vertical plate. The vertical plate and the ramp baffle limit the rod body so that the rod body falls onto the V-shaped support block of the conveyor belt.
7. The fully automatic fishing rod cutting machine according to claim 1, characterized in that: A waste collection baffle is provided below the cutting blade, and a waste collection box is provided below the waste collection baffle; the waste collection baffle is connected to cylinder A, which is located below the motor mounting base.
Citation Information
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