Carbon fiber rod producing and processing equipment
By introducing an automatic cutting device into the carbon fiber rod production equipment, the problem of low efficiency caused by manual cutting has been solved, and automatic cutting and fully automatic protection functions have been realized, thereby improving production efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- XIAMEN BORRIEN COMPOSITE MATERIAL TECH CO LTD
- Filing Date
- 2026-03-18
- Publication Date
- 2026-05-12
Smart Images

Figure CN122008328A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of carbon fiber rod preparation, specifically to a carbon fiber rod production and processing equipment. Background Technology
[0002] Carbon fiber rods are one of the important forms of carbon fiber composite materials. With their excellent properties such as high strength, lightweight, corrosion resistance and low expansion coefficient, they are widely used in many fields. Their core manufacturing process is mainly pultrusion molding, supplemented by filament winding molding and other methods.
[0003] A common type of carbon fiber rod production equipment includes a frame, a forming mold mounted on the frame, and a traction head. The frame is equipped with a moving component that drives the traction head to move, and a glue tank is also installed on the frame. The carbon fiber strips are located in the glue tank. During the carbon fiber rod forming process, multiple carbon fiber strips pass through the forming mold. The traction head simultaneously grabs multiple carbon fiber strips and pulls them to move. After being squeezed by the mold, the multiple carbon fiber strips are formed into a long strip. The operator then uses a cutting tool to cut the long carbon fiber strip. After cutting, the carbon fiber rod enters subsequent drying and other processes to form the finished carbon fiber product.
[0004] The aforementioned technical conditions also have the drawback that after the carbon fiber rods are formed, when they are cut, workers still need to hold the cutting tool to cut them, which takes a long time and results in low work efficiency.
[0005] Based on this, the present invention designs a carbon fiber rod production and processing equipment to solve the above problems. Summary of the Invention
[0006] To achieve the above objectives, the present invention provides the following technical solution: A carbon fiber rod production and processing equipment includes an installation platform, a glue tank, a feeding rack, a traction head, and a mold. A movable frame is provided on the installation platform, and the traction head is mounted on the movable frame. A movable component for moving the movable frame is provided on the installation platform. A cutting device for cutting carbon fiber rods is provided on the installation platform. The cutting device includes a cutter, a lifting plate, and a pull rod. A vertical moving groove is provided on the installation platform, and a horizontal moving opening is provided on the installation platform. The moving opening communicates with the moving groove, and a moving plate is movably disposed in the moving opening. The pull rod is horizontally fixedly connected to the moving plate. A support base is vertically fixedly provided on the installation platform, and a vertical... An installation cavity is provided, and a connection port is provided on the side wall of the support base. A lifting rod is inserted into the installation cavity. A first wedge block is provided at the bottom of the lifting rod. A second wedge block adapted to the first wedge block is fixedly provided on the pull rod. The second wedge block is located in the installation cavity. A placement plate is fixedly provided on the installation platform. A tension spring connects the placement plate and the second wedge block. The lifting plate is fixedly provided on the top of the lifting rod. The cutter is fixedly provided on the lifting plate and is located below the carbon fiber strip. When the moving frame moves away from the support base by contacting the moving plate, the cutting rod of the cutter rises. When the moving frame moves away from the support base to the maximum distance, the blade of the cutter is located above the carbon fiber rod.
[0007] By adopting the above technical solution, when the traction head pulls the carbon fiber rod to form the shape, when the traction head moves to the required position, the moving frame pushes the moving plate to move away from the lifting plate. During the movement of the moving plate, the pull rod moves, causing the second wedge block to move towards the moving plate and lift the second wedge block, thereby raising the lifting rod and causing the cutter to move towards the carbon fiber plate to cut the carbon fiber rod. This eliminates the need for manual cutting, reduces time waste, and improves work efficiency.
[0008] Preferably, a placement plate is fixedly mounted on the support base, a first connecting plate is fixedly mounted on the placement plate, a first support plate is vertically fixedly mounted on the first connecting plate, a first protective cover is rotatably mounted on the first support plate, the first protective cover covers the cutter, and the protective cover is opened when the cutter rises.
[0009] By adopting the above technical solution, when the cutter is not in use, the first protective cover covers the cutter, protecting it from external contact and improving safety.
[0010] Preferably, the cutter has a triangular cross-section, and the cutter forms two contact surfaces from the blade to the bottom of the blade body, one of which is the first contact surface and the other is the second contact surface. A second support plate is vertically fixed on the first connecting plate, and a second protective cover is rotatably mounted on the second support plate. The first protective cover has a first protective surface adapted to the first contact surface, and the second protective cover has a second protective surface adapted to the second contact surface. A tension spring connects the first protective cover and the second protective cover. When the cutter is not raised, the first protective cover and the second protective cover are in contact with each other, and the first protective surface abuts against the first contact surface, and the second protective surface abuts against the second contact surface. When the cutter is raised, the first protective cover and the second protective cover open outwards respectively.
[0011] By adopting the above technical solution, when the cutter rises, the first contact surface abuts against the first protective surface, and the second contact surface abuts against the second protective surface, pushing the first and second protective covers upward to allow the cutter to extend. After cutting, when the cutter moves downward, under the action of the tension spring, the first and second protective covers move closer to each other and rotate, closing again to protect the cutter. There is no need to manually close the protective covers, realizing fully automatic opening and closing of the protective covers.
[0012] Preferably, the first connecting plate is provided with a first clamping assembly for clamping the carbon fiber rod. The clamping assembly includes a first fixing plate, a first abutting plate, and a first rotating rod. A first fixing seat is vertically fixed on the first connecting plate, and the first fixing plate is fixedly mounted on the first fixing seat, with the first fixing plate located above the carbon fiber rod. A first lifting hole is vertically opened on the first fixing plate, and a first moving rod is inserted into the first lifting hole. The first abutting plate is fixedly mounted on the first moving rod, with the first abutting plate located below the carbon fiber rod. A first contact plate is provided on the first moving rod. A first vertical plate is vertically fixed on the first connecting plate, and the first rotating rod is rotatably mounted on the first vertical plate. A first telescopic spring is connected between the first vertical plate and the first rotating rod. The telescopic spring abuts against the lower end of the first rotating rod and rotates towards the protective cover. The upper end of the first rotating rod abuts against the lower surface of the first contact plate, and the lower end of the first rotating rod abuts against the side wall of the first protective cover. When the lower end of the first rotating rod rotates downward, the first contact plate rises.
[0013] By adopting the above technical solution, when the first protective cover is opened, the side wall of the first protective cover rotates downward, which drives the first rotating rod to rotate. The upper end of the first rotating rod rotates upward, thereby pushing the first abutting plate upward, driving the first moving rod to move upward, and finally allowing the first pressing plate to move upward, so that the first pressing plate and the first fixing plate clamp the carbon fiber rod, automatically gripping the carbon fiber rod, and preventing the carbon fiber rod from loosening during cutting, which would affect the cutting.
[0014] Preferably, a second connecting plate is fixedly mounted on the placement plate, and a second clamping assembly for clamping the carbon fiber rod is mounted on the second connecting plate. The clamping assembly includes a second fixing plate, a second abutment plate, and a second rotating rod. A second fixing seat is vertically fixedly mounted on the second connecting plate, and the second fixing plate is fixedly mounted on the second fixing seat, with the second fixing plate located above the carbon fiber rod. A second lifting hole is vertically opened on the second fixing plate, and a second moving rod is inserted into the second lifting hole. The second abutment plate is fixedly mounted on the second moving rod, with the second abutment plate located below the carbon fiber rod. A second contact plate is mounted on the second moving rod. A second vertical plate is vertically fixedly mounted on the second connecting plate, and the second rotating rod is rotatably mounted on the second vertical plate. A second telescopic spring is connected between the second vertical plate and the second rotating rod. The telescopic spring abuts against the lower end of the second rotating rod as it rotates toward the second protective cover. The upper end of the second rotating rod abuts against the lower surface of the second contact plate, and the lower end of the second rotating rod abuts against the side wall of the second protective cover. When the lower end of the second rotating rod rotates downward, the second contact plate rises. The cutter is located between the first rotating rod and the second rotating rod.
[0015] By adopting the above technical solution, when the second protective cover is opened, the side wall of the second protective cover rotates downward, which drives the second rotating rod to rotate. The upper end of the second rotating rod rotates upward, thereby pushing the second abutment plate upward, driving the second moving rod to move upward, and finally allowing the second pressing plate to move upward, so that the second pressing plate and the second fixing plate clamp the carbon fiber rod, automatically gripping the carbon fiber rod, preventing the carbon fiber rod from loosening during cutting and affecting the next gripping.
[0016] Preferably, a retaining layer is fixedly provided on the first protective cover, and the retaining layer abuts against the second protective cover.
[0017] By adopting the above technical solution, when the first protective cover and the second protective cover are closed, a sealing layer is provided to ensure that the first protective cover and the second protective cover are tightly closed, reducing the amount of glue falling from the gap between the two protective covers.
[0018] Preferably, an adsorption layer for adsorbing glue is fixedly provided on the first protective surface, and an adsorption layer is also provided on the second protective surface.
[0019] By adopting the above technical solution, after the cutter cuts, the adsorption layer comes into contact with the cutter and adsorbs the glue residue on the cutter, thereby reducing the amount of glue residue on the cutter.
[0020] Preferably, a collection box is fixedly disposed on the first connecting plate, and the support plate is located in the collection box.
[0021] By adopting the above technical solution, when the first and second protective covers are opened, the glue remaining on the first and second protective covers flows down and is recycled into the collection box.
[0022] Preferably, a recycling pipe is fixedly connected between the collection box and the glue pool.
[0023] By adopting the above technical solution, the glue in the collection box flows to the glue pool through the recycling pipe for recycling, reducing glue waste.
[0024] In summary, this application has the following beneficial technical effects: When the traction head pulls the carbon fiber rod to form the carbon fiber rod, when the traction head moves to the required position, the moving frame pushes the moving plate to move away from the lifting plate. During the movement of the moving plate, the pull rod moves, causing the second wedge block to move towards the moving plate and lift the first wedge block, thereby raising the lifting rod and causing the cutter to move towards the carbon fiber plate to cut the carbon fiber rod. This eliminates the need for manual cutting, reduces time waste, and improves work efficiency. Attached Figure Description
[0025] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1 This is a schematic diagram of the overall structure of the mounting platform in this embodiment; Figure 2 This is a schematic diagram of the structure of the mobile frame in this embodiment; Figure 3 This is a schematic diagram of the structure of the movable plate in this embodiment; Figure 4 This is a schematic diagram of the mounting structure of the mounting base in this embodiment. Figure 5 This is a schematic diagram of the installation structure of the lifting plate in this embodiment; Figure 6 This is a schematic diagram of the structure of the first and second protective covers being fitted onto the cutter in this embodiment; Figure 7 This is a schematic diagram of the structure of the first clamping assembly in this embodiment; Figure 8 This is a schematic diagram of the structure of the second clamping assembly in this embodiment; Figure 9 This is a schematic diagram showing the location of the collection box in this embodiment.
[0027] The attached diagram lists the components represented by each number as follows: 1. Mounting platform; 2. Glue tank; 3. Feeding rack; 4. Traction head; 5. Mold; 6. Winding drum; 7. Carbon fiber rod; 8. Moving frame; 9. Clamping block; 10. Cutting knife; 11. Lifting plate; 12. Pull rod; 13. Moving slot; 14. Moving port; 15. Moving plate; 16. Support base; 17. Mounting cavity; 18. Connection port; 19. Lifting rod; 20. First wedge block; 21. Second wedge block; 22. Placement base; 23. Tension spring; 24. Placement plate; 25. First connecting plate; 26. First support plate; 27. First protective cover; 28. First contact surface; 29. Second contact surface; 30. Second support plate; 31. Second protective cover 32. Protective cover; 33. First protective surface; 34. Second protective surface; 35. Second connecting plate; 36. First fixing plate; 37. First rotating rod; 38. First fixed seat; 39. First lifting hole; 40. First moving rod; 42. First contact plate; 43. First vertical plate; 44. First telescopic spring; 45. Second fixing plate; 46. Second contact plate; 47. Second rotating rod; 48. Second fixed seat; 49. Second lifting hole; 50. Second moving rod; 51. Second contact plate; 52. Second vertical plate; 53. Second telescopic spring; 54. Contact layer; 55. Adsorption layer; 56. Collection box; 57. Recycling tube. Detailed Implementation
[0028] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0029] The following is in conjunction with the appendix Figure 1-9 This application will be described in further detail.
[0030] A carbon fiber rod production and processing equipment includes an installation platform 1, a glue tank 2, a feeding rack 3, a traction head 4, and a mold 5. A winding drum 6 for winding carbon fiber strips is rotatably mounted on the feeding rack 3, and multiple winding drums 6 are arranged on the feeding rack 3. The glue tank 2 is filled with glue for forming carbon fiber rods 7. The mold 5 is conical in shape with a hole in the middle for the carbon fiber strips to pass through, and the larger opening faces the winding drum 6. A movable frame 8 is mounted on the installation platform 1, and the traction head 4 is mounted on the movable frame 8. In this embodiment, the traction head 4 includes a gripper cylinder, a clamping block 9, and an installation plate. The installation plate is fixedly mounted on the movable frame 8, the gripper cylinder is fixedly mounted on the installation plate, and the clamping block 9 is fixedly mounted on the gripper of the gripper cylinder. Both grippers are equipped with clamping blocks 9. After multiple carbon fiber strips pass through the glue tank 2, they enter the mold 5. The two clamping blocks 9 clamp the carbon fiber rods 7 and pull them. After being squeezed by the mold 5, the multiple carbon fiber strips are formed into carbon fiber rods 7.
[0031] The mounting platform 1 is equipped with a moving assembly for moving the movable frame 8. In this embodiment, the moving assembly moves the movable frame 8 by means of a screw drive, which will not be described in detail here. The mounting platform 1 is equipped with a cutting device for cutting carbon fiber rods 7. The cutting device includes a cutter 10, a lifting plate 11, and a pull rod 12. The mounting platform 1 has a vertical moving groove 13 and a horizontal moving opening 14. The moving opening 14 communicates with the moving groove 13. A moving plate 15 is movably installed in the moving opening 14. The pull rod 12 is fixed horizontally. It is connected to the movable plate 15; a support base 16 is vertically fixed on the mounting platform 1, and a mounting cavity 17 is vertically opened on the support base 16. A connection port 18 is opened on the side wall of the support base 16. A lifting rod 19 is inserted into the mounting cavity 17. A first wedge block 20 is set at the bottom of the lifting rod 19. A second wedge block 21 that matches the first wedge block 20 is fixedly set on the pull rod 12. The second wedge block 21 is located in the mounting cavity 17. A placement seat 22 is fixedly set on the mounting platform 1. A tension spring 23 is connected between the placement seat 22 and the second wedge block 21. The lifting plate 11 is fixedly installed on the top of the lifting rod 19. In this embodiment, there are two corresponding support seats 16 and two corresponding lifting rods 19. The cutter 10 is fixedly installed on the lifting plate 11. When not cutting, the cutter 10 is located below the carbon fiber strip. After the traction head 4 pulls the carbon fiber rod 7 to form, after the moving frame 8 reaches the required position, the moving frame 8 pushes the moving plate 15 to move away from the lifting plate 11. During the movement of the moving plate 15, the pull rod 12 moves, causing the second wedge block 21 to move towards the moving plate 15, lifting the first wedge block 20, thereby raising the lifting rod 19, and then causing the cutter 10 to move towards the carbon fiber plate, cutting the carbon fiber rod 7. The cut blade is located above the carbon fiber strip, eliminating the need for manual cutting, reducing time waste, and improving work efficiency.
[0032] A placement plate 24 is fixedly mounted on the support base 16, a first connecting plate 25 is fixedly mounted on the placement plate 24, a first support plate 26 is vertically fixedly mounted on the first connecting plate 25, and a first protective cover 27 is rotatably mounted on the first support plate 26; the cutter 10 has a triangular cross-section, and the cutter 10 forms two contact surfaces from the blade to the bottom of the blade body, one of which is the first contact surface 28, and the other is the second contact surface 29; a second support plate 30 is vertically fixedly mounted on the first connecting plate 25, and a second protective cover 31 is rotatably mounted on the second support plate 30; the first protective cover 27 has a first protective surface 32 adapted to the first contact surface 28, and the second protective cover 31 has a second protective surface 33 adapted to the second contact surface 29; A tension spring 23 connects the first protective cover 27 and the second protective cover 31. When the cutter 10 is not raised, the first protective cover 27 and the second protective cover 31 are in contact with each other, and the first protective surface 32 abuts against the first contact surface 28, and the second protective surface 33 abuts against the second contact surface 29. When the cutter 10 rises to cut, the first contact surface 28 abuts against the first protective surface 32, and the second contact surface 29 abuts against the second protective surface 33, pushing the first protective cover 27 and the second protective cover 31 upward. At this time, the first protective cover 27 and the second protective cover 31 rotate outward respectively. As the cutter 10 continues to rise, the blade of the cutter 10 moves out of the two protective covers. After the cutting is completed, when the cutter 10 moves down, the first protective cover 27 and the second protective cover 31 move closer to each other and rotate under the action of the tension spring 23. When the cutter 10 moves down to the required distance, the first protective cover 27 and the second protective cover 31 close again to protect the cutter 10. The protective covers do not need to be manually closed, realizing fully automatic opening and closing of the protective covers.
[0033] The first connecting plate 25 is provided with a first clamping assembly for clamping the carbon fiber rod 7. The clamping assembly includes a first fixing plate 35, a first abutting plate 36, and a first rotating rod 37. A first fixing seat 38 is vertically fixed on the first connecting plate 25, and the first fixing plate 35 is fixedly mounted on the first fixing seat 38. The first fixing plate 35 is located above the carbon fiber rod 7. A first lifting hole 39 is vertically opened on the first fixing plate 35, and a first moving rod 40 is inserted into the first lifting hole 39. The first abutting plate 36 is fixedly mounted on the first moving rod 40. The first abutting plate 36 is located below the carbon fiber rod 7, and the first moving rod 40 is provided with a first abutting plate 42; the first connecting plate 25 is vertically fixed with a first vertical plate 43, and the first rotating rod 37 is rotatably mounted on the first vertical plate 43. A first telescopic spring 44 is connected between the first vertical plate 43 and the first rotating rod 37. The telescopic spring abuts against the lower end of the first rotating rod 37 and rotates towards the protective cover side. The upper end of the first rotating rod 37 abuts against the lower surface of the first abutting plate 42, and the lower end of the first rotating rod 37 abuts against the side wall of the first protective cover 27. Before the first protective cover 27 is opened and the cutter 10 cuts, the outer sidewall of the first protective cover 27 abuts against the first rotating rod 37 and rotates. At this time, the upper end of the first rotating rod 37 rotates upward and the lower end rotates downward. When the upper end of the rotating rod rotates, it drives the first abutting plate 42 to move upward, which in turn drives the first moving rod 40 to move upward, so that the first clamping plate moves upward. Before the cutter 10 cuts the carbon fiber rod 7, the first clamping plate first presses against the carbon fiber rod 7 upward. At this time, the traction head 4 pulls the carbon fiber rod 7 and the first clamping assembly together hold the carbon fiber rod 7 to prevent the side of the carbon fiber rod 7 away from the traction head 4 from drooping down, and to prevent the carbon fiber rod 7 from loosening and affecting the cutting.
[0034] A second connecting plate 34 is fixedly mounted on the placement plate 24. A second clamping assembly for clamping the carbon fiber rod 7 is mounted on the second connecting plate 34. The clamping assembly includes a second fixing plate 45, a second abutting plate 46, and a second rotating rod 47. A second fixing seat 48 is vertically fixedly mounted on the second connecting plate 25. The second fixing plate 45 is fixedly mounted on the second fixing seat 48 and is located above the carbon fiber rod 7. A second lifting hole 49 is vertically opened on the second fixing plate 45. A second moving rod 50 is inserted into the second lifting hole 49. The second abutting plate 46 is fixedly mounted on the second moving rod 50 and is located below the carbon fiber rod 7. A second contact plate 51 is provided on the second moving rod 50; a second vertical plate 52 is vertically fixed on the first connecting plate 25; a second rotating rod 47 is rotatably mounted on the second vertical plate 52; a second telescopic spring 53 is connected between the second vertical plate 52 and the second rotating rod 47; the second telescopic spring 53 rotates towards the second protective cover 31 with its lower end against the second rotating rod 47; the upper end of the second rotating rod 47 abuts against the lower surface of the second contact plate 51; the lower end of the second rotating rod 47 abuts against the side wall of the second protective cover 31; when the lower end of the second rotating rod 47 rotates downward, the second contact plate 51 rises; the cutter 10 is located between the first rotating rod 37 and the second rotating rod 47. Before the second protective cover 31 is opened and the cutter 10 cuts, the outer sidewall of the second protective cover 31 abuts against the second rotating rod 47 and rotates. At this time, the upper end of the second rotating rod 47 rotates upward and the lower end rotates downward. When the upper end of the second rotating rod 47 rotates, it drives the second abutting plate 51 to move upward, which in turn drives the second moving rod 50 to move upward, allowing the second clamping plate to move upward. Before the cutter 10 cuts the carbon fiber rod 7, the second clamping plate first presses against the carbon fiber rod 7 upward. At this time, the mold 5 and the second clamping assembly jointly grasp the carbon fiber rod 7 to prevent the carbon fiber rod 7 from loosening and falling, which would affect the next gripping.
[0035] A retaining layer 54 is fixedly provided on the first protective cover 27. In this embodiment, the retaining layer 54 is a soft rubber layer. The retaining layer 54 abuts against the second protective cover 31. When the first protective cover 27 and the second protective cover 31 are closed, the retaining layer 54 can make the first protective cover 27 and the second protective cover 31 close tightly, reducing the amount of glue falling from the gap between the two protective covers.
[0036] An absorbent layer 55 for absorbing glue is fixedly provided on the first protective surface 32. In this embodiment, the absorbent layer 55 is attached to the first protective surface 32 by adhesive. The absorbent layer 55 is made of absorbent paper. An absorbent layer 55 is also provided on the second protective surface 33. After the cutter 10 cuts, the absorbent layer 55 abuts against the cutter 10 and absorbs the glue remaining on the cutter 10, thereby reducing the amount of glue remaining on the cutter 10.
[0037] A collection box 56 is fixedly installed on the placement plate 24, and a support plate is located in the collection box 56. A recycling pipe 57 is fixedly connected between the collection box 56 and the glue pool 2. When the first protective cover 27 and the second protective cover 31 are opened, the glue remaining on the first protective cover 27 and the second protective cover 31 flows down and into the collection box 56 for recycling. The glue in the collection box 56 flows into the glue pool 2 through the recycling pipe 57 for recycling, thereby reducing glue waste.
[0038] The implementation principle of this embodiment is as follows: After the traction head 4 pulls the carbon fiber rod 7 to form, after the moving frame 8 reaches the required position, the moving frame 8 pushes the moving plate 15 to move away from the lifting plate 11. During the movement of the moving plate 15, the pull rod 12 is moved, causing the second wedge block 21 to move towards the moving plate 15 and lift the first wedge block 20, thereby raising the lifting rod 19 and causing the cutter 10 to move towards the carbon fiber plate to cut the carbon fiber rod 7. The cut blade is located above the carbon fiber strip, eliminating the need for manual cutting, reducing time waste, and achieving the effect of improving work efficiency.
[0039] In the description of this invention, it should be understood that the terms "coaxial," "bottom," "one end," "top," "middle," "other end," "upper," "side," "top," "inner," "front," "center," "both ends," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting this invention.
[0040] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "setting," "connection," "fixing," "screw connection," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; 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; they can refer to the internal connection of two components or the interaction between two components. Unless otherwise explicitly limited, those skilled in the art can understand the specific meaning of the above terms in this invention according to the specific circumstances.
[0041] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A carbon fiber rod production and processing equipment, comprising an installation platform (1), a glue tank (2), a feeding rack (3), a traction head (4), and a mold (5), characterized in that: The mounting platform (1) is provided with a movable frame (8), the traction head (4) is installed on the movable frame (8), the mounting platform (1) is provided with a moving component for moving the movable frame (8), the mounting platform (1) is provided with a cutting device for cutting carbon fiber rods (7), the cutting device includes a cutter (10), a lifting plate (11), and a pull rod (12), the mounting platform (1) has a vertical moving groove (13), the mounting platform (1) A movable opening (14) is provided horizontally on the upper part of the mounting platform (1), which communicates with the movable groove (13). A movable plate (15) is movably installed in the movable opening (14), and the pull rod (12) is horizontally fixedly connected to the movable plate (15). A support base (16) is vertically fixed on the mounting platform (1), and a mounting cavity (17) is vertically opened on the support base (16). A connection port (18) is opened on the side wall of the support base (16), and an insertion port (18) is provided in the mounting cavity (17). A lifting rod (19) is provided, and a first wedge block (20) is provided at the bottom of the lifting rod (19). A second wedge block (21) adapted to the first wedge block (20) is fixedly provided on the pull rod (12). The second wedge block (21) is located in the mounting cavity (17). A placement seat (22) is fixedly provided on the mounting platform (1). A tension spring (23) is connected between the placement seat (22) and the second wedge block (21). The lifting plate (11) is fixedly provided with... The cutter (10) is fixedly mounted on the lifting plate (11) and located below the carbon fiber strip. When the moving frame (8) moves away from the support base (16) and touches the moving plate (15), the cutting blade (10) rises. When the moving frame (8) moves away from the support base (16) to the maximum distance, the blade of the cutter (10) is located above the carbon fiber rod (7).
2. The carbon fiber rod production and processing equipment according to claim 1, characterized in that: A placement plate (24) is fixedly installed on the support base (16), a first connecting plate (25) is fixedly installed on the placement plate (24), a first support plate (26) is vertically fixedly installed on the first connecting plate (25), a first protective cover (27) is rotatably installed on the first support plate (26), the first protective cover (27) covers the cutter (10), and the cutter (10) opens the protective cover when it rises.
3. The carbon fiber rod production and processing equipment according to claim 2, characterized in that: The cutter (10) shown has a triangular cross-section. The cutter (10) forms two contact surfaces from the blade edge to the bottom of the blade body, one of which is the first contact surface (28), and the other is the second contact surface (29). A second support plate (30) is vertically fixed on the first connecting plate (25), and a second protective cover (31) is rotatably mounted on the second support plate (30). The first protective cover (27) has a first protective surface (32) adapted to the first contact surface (28), and the second protective cover (31) has a second protective surface (32) adapted to the second contact surface (28). A second protective surface (33) is adapted to the contact surface (29); a tension spring (23) is connected between the first protective cover (27) and the second protective cover (31). When the cutter (10) is not raised, the first protective cover (27) and the second protective cover (31) are in contact with each other, and the first protective surface (32) abuts against the first contact surface (28), and the second protective surface (33) abuts against the second contact surface (29); when the cutter (10) is raised, the first protective cover (27) and the second protective cover (31) open outward respectively.
4. The carbon fiber rod production and processing equipment according to claim 3, characterized in that: The first connecting plate (25) is provided with a first clamping assembly for clamping the carbon fiber rod (7). The clamping assembly includes a first fixing plate (35), a first abutting plate (36), and a first rotating rod (37). A first fixing seat (38) is vertically fixed on the first connecting plate (25). The first fixing plate (35) is fixedly mounted on the first fixing seat (38) and is located above the carbon fiber rod (7). A first lifting hole (39) is vertically opened on the first fixing plate (35). A first moving rod (40) is inserted into the first lifting hole (39). The first abutting plate (36) is fixedly mounted on the first moving rod (40) and is located above the carbon fiber rod (7). Below the fiber rod (7), a first contact plate (42) is provided on the first moving rod (40); a first vertical plate (43) is vertically fixed on the first connecting plate (25), and the first rotating rod (37) is rotatably mounted on the first vertical plate (43). A first telescopic spring (44) is connected between the first vertical plate (43) and the first rotating rod (37). The telescopic spring abuts against the lower end of the first rotating rod (37) and rotates toward the protective cover side. The upper end of the first rotating rod (37) abuts against the lower surface of the first contact plate (42), and the lower end of the first rotating rod (37) abuts against the side wall of the first protective cover (27). When the lower end of the first rotating rod (37) rotates downward, the first contact plate (42) rises.
5. The carbon fiber rod production and processing equipment according to claim 4, characterized in that: A second connecting plate (34) is fixedly mounted on the placement plate (24). A second clamping assembly for clamping the carbon fiber rod (7) is mounted on the second connecting plate (34). The clamping assembly includes a second fixing plate (45), a second abutting plate (46), and a second rotating rod (47). A second fixing seat (48) is vertically fixed on the second connecting plate (34). The second fixing plate (45) is fixedly mounted on the second fixing seat (48) and is located above the carbon fiber rod (7). A second lifting hole (49) is vertically opened on the second fixing plate (45). A second moving rod (50) is inserted into the second lifting hole (49). The second abutting plate (46) is fixedly mounted on the second moving rod (50) and is located above the carbon fiber rod (7). Below, a second contact plate (51) is provided on the second moving rod (50); a second vertical plate (52) is vertically fixed on the second connecting plate (34), and the second rotating rod (47) is rotatably mounted on the second vertical plate (52). A second telescopic spring (53) is connected between the second vertical plate (52) and the second rotating rod (47). The telescopic spring rotates towards the second protective cover (31) with the lower end of the second rotating rod (47) abutting the lower surface of the second contact plate (51). The lower end of the second rotating rod (47) abuts the side wall of the second protective cover (31). When the lower end of the second rotating rod (47) rotates downward, the second contact plate (51) rises. The cutter (10) is located between the first rotating rod (37) and the second rotating rod (47).
6. The carbon fiber rod production and processing equipment according to claim 3, characterized in that: A pressing layer (54) is fixedly provided on the first protective cover (27), and the pressing layer (54) presses against the second protective cover (31).
7. The carbon fiber rod production and processing equipment according to claim 6, characterized in that: An adsorption layer (55) for adsorbing glue is fixedly provided on the first protective surface (32), and an adsorption layer (55) is also provided on the second protective surface (33).
8. The carbon fiber rod production and processing equipment according to claim 3, characterized in that: A collection box (56) is fixedly installed on the placement plate (24), and the support plate is located in the collection box (56).
9. The carbon fiber rod production and processing equipment according to claim 8, characterized in that: A recycling pipe (57) is fixedly connected between the collection box (56) and the glue pool (2).