Chemical fiber paper tube filament groove processing device and processing method
Through the combined design of the rotating rod and paper tube fixing mechanism, the problem of difficult control of length and poor fixing effect in chemical fiber paper tube groove processing is solved, stable fixation and precise cutting are achieved, and processing efficiency and accuracy are improved.
Patent Information
- Application Number
- CN202510627723.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-15
- Publication Date
- 2025-08-01
AI Technical Summary
The existing chemical fiber paper tube wire groove processing device cannot accurately cut wire grooves of different lengths, and the fixing effect is poor, resulting in the easy deformation of both ends of the paper tube.
The combined design of the rotating rod, paper tube fixing mechanism and power mechanism is adopted to achieve uniform fixation through the inflatable airbag, and combined with the precise control of the motor and the cutting knife, the length and depth of the wire groove are set.
The stable fixation and precise cutting of chemical fiber paper tube wire grooves are achieved, avoiding deformation of paper tubes and improving processing efficiency and accuracy.
Smart Images

Figure CN120396033A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of chemical fiber paper tube production, and particularly relates to a processing device and a processing method for the wire grooves of chemical fiber paper tubes. Background Art
[0002] As a commonly used consumable in the field of chemical fiber textiles, chemical fiber paper tubes not only have a large consumption, but also the quality of the paper tubes will directly affect the production process and product quality of chemical fiber products. A circular or semi-circular wire groove is cut on the surface of some chemical fiber paper tubes by tools for the thread ends of the silk thread to be inserted and fixed.
[0003] However, the existing cutting and processing devices for chemical fiber paper tubes cannot accurately cut according to the required length, but can only cut by a rough length. For the wire grooves of the same batch of chemical fiber paper tubes, the cutting length needs to be adjusted repeatedly. Moreover, when fixing the chemical fiber paper tubes, most of them are fixed by the two ends of the paper tubes, and the fixing effect is poor, and it is easy to make the two ends of the paper tubes expand when fixed. Therefore, it does not meet the existing requirements, and for this reason, we propose a processing device and a processing method for the wire grooves of chemical fiber paper tubes. Summary of the Invention
[0004] The processing device and the processing method for the wire grooves of chemical fiber paper tubes proposed by the present invention solve the problems that it is not easy to control the cutting length of the wire grooves of the existing chemical fiber paper tubes and the fixing effect of the paper tubes is poor.
[0005] In order to achieve the above purpose, the present invention adopts the following technical solutions: A processing device for the wire grooves of chemical fiber paper tubes includes a base, a fixing frame with an L-shaped cross-section is fixed at the top of the base, a horizontally arranged rotating rod is rotatably connected to the vertical section of the fixing frame, a plurality of paper tube fixing mechanisms with inflatable air bags are installed on the rotating rod, and one end of the rotating rod is connected to a power mechanism that can set the movement length; One side of the top of the fixing frame is provided with a motor I, the output shaft of the motor I is connected to a moving lead screw rotatably connected inside the fixing frame, a moving block slidably connected to the top wall of the fixing frame is helically driven on the moving lead screw, and a cutting mechanism that can be adjusted up and down is installed on the moving block.
[0006] As a preferred embodiment, the paper tube fixing mechanism includes an inflatable air bag sleeved on the rotating rod, clamping plates are annularly arranged outside the inflatable air bag, fixing rings fixedly sleeved on the rotating rod and moving rings slidably sleeved on the rotating rod are arranged on both sides of the inflatable air bag, a spring is arranged between the fixing ring and the moving ring, and connecting rods are hinged between both sides of the clamping plate and the corresponding moving ring.
[0007] As a preferred embodiment, the power mechanism includes a first telescopic rod. The first telescopic rod is installed on the side wall of the fixed frame through a fixing member. The output shaft of the first telescopic rod is connected to a moving frame. A vertically arranged rack is installed on the inner side wall of one side of the moving frame. The rack meshes with a gear installed at one end of a rotating rod. A limiting frame is slidably connected up and down inside the moving frame. A regulating rod rotatably connected inside the fixed frame is in screw drive connection with the limiting frame. A handle is installed at the top end of the regulating rod.
[0008] Further, a length scale line is provided on the side wall of the moving frame away from the rack. Sliding holes are opened on both sides of the limiting frame. One sliding hole is sleeved on the side wall of the moving frame with the rack, and the other sliding hole is sleeved on the side wall of the moving frame with the length scale line. And locking screws are also threadedly connected to both sides of the moving frame.
[0009] As a preferred embodiment, the cutting mechanism includes a U-shaped rod. Extension parts with sliding holes are installed on both sides of the moving block. The U-shaped rod is slidably inserted into the sliding holes. A second telescopic rod is also installed on one extension part. The output shaft of the second telescopic rod is connected to the top wall of the U-shaped rod. The bottom end of the U-shaped rod is connected to a mounting plate for installing a second motor. The output shaft of the second motor is connected to a cutting knife.
[0010] Further, the cross section of the clamping plate is T-shaped. The outer side of the clamping plate is an arc surface, and anti-slip lines are provided on this arc surface.
[0011] As a preferred embodiment, the rotating rod is of a hollow structure. The inside of the rotating rod is communicated with an inflatable airbag through a conduit. One end of the rotating rod is connected to a pressurizing ball with a one-way intake valve through a conduit, and a deflation valve is also installed on this conduit.
[0012] As a preferred embodiment, a counterweight disk is also installed at the other end of the rotating rod. A support frame is rotatably sleeved outside the counterweight disk. The bottom end of the support frame is fixed on the base.
[0013] As a preferred embodiment, a slag receiving groove is opened on one side of the base below the paper tube fixing mechanism. The top opening of the slag receiving groove is inclined. A slag storage hopper is placed inside the slag receiving groove.
[0014] The processing method of the above device includes the following steps: S1: First, according to the length of the wire groove to be cut, rotate the regulating rod on the power mechanism through the handle. The regulating rod and the limiting frame are in screw drive, so as to realize the up and down movement of the limiting frame in the moving frame, and quickly set the length of the wire groove of the chemical fiber paper tube to be cut according to the length scale line; S2: Sleeve the chemical fiber paper tube on a plurality of paper tube fixing mechanisms outside the rotating rod. By continuously pressing the pressurizing ball, the inflatable airbag can be inflated, thereby driving the clamping plate to act to fix the chemical fiber paper tube; S3: The output shaft of the first motor drives the moving lead screw to rotate. The moving lead screw is in screw transmission connection with the moving block, which can drive the moving block to move left and right at the top of the fixed frame, thereby driving the cutting mechanism on the moving block to adjust the cutting position of the chemical fiber paper tube. S4: The second motor on the cutting mechanism drives the cutting knife to rotate. At the same time, the second telescopic rod drives the U-shaped rod to move downward, driving the cutting knife to move downward, thereby realizing grooving of a specific depth on the chemical fiber paper tube. S5: Start the first telescopic rod on the power mechanism. The output shaft of the first telescopic rod drives the moving frame to move downward. The rack on the moving frame meshes with the gear, thereby driving the rotating rod and the chemical fiber paper tube thereon. Under the action of the limiting frame, a wire groove with a specific depth and length can be cut on the outer wall of the chemical fiber paper tube. S6: The power mechanism and the cutting mechanism return to their original positions. By means of the air release valve, the inflatable airbag on the paper tube fixing mechanism is deflated, and the processed chemical fiber paper tube can be taken off.
[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. The present invention provides a device for processing wire grooves on chemical fiber paper tubes. Through the setting of the rotating rod and the paper tube fixing mechanism, the fixing of chemical fiber paper tubes of different thicknesses can be realized from the inside. During fixing, the deformation of both ends of the paper tube will not be caused, the pipeline is uniformly stressed, and the fixing effect is good. Moreover, a counterweight disk and a support frame are arranged at one end of the rotating rod to ensure the stability of the rotating rod during rotation, thereby improving the stability of wire groove processing.
[0016] 2. The present invention provides a device for processing wire grooves on chemical fiber paper tubes. Through the setting of the power mechanism, the processing length of the wire grooves can be preset as required, and when processing wire grooves of the same batch of specifications, there is no need to repeatedly adjust the processing length of the wire grooves, and the processing efficiency is high.
[0017] The present invention can quickly fix the chemical fiber paper tube, the pipeline is uniformly stressed and not easily deformed, and the processing length of the wire groove can be preset as required, with high processing accuracy. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 is a schematic structural diagram of a device for processing wire grooves on chemical fiber paper tubes proposed by the present invention; Figure 2 is a schematic structural diagram of the rotating rod, paper tube fixing mechanism, pressure ball, air release valve and counterweight disk of a device for processing wire grooves on chemical fiber paper tubes proposed by the present invention; Figure 3 is a schematic structural diagram of the inflatable airbag and clamping plate of a device for processing wire grooves on chemical fiber paper tubes proposed by the present invention; Figure 4Schematic diagram of the base, slag storage hopper and slag receiving groove of a chemical fiber paper tube wire groove processing device proposed by the present invention; Figure 5 Schematic diagram of the motor 1, moving block, fixed frame and cutting mechanism of a chemical fiber paper tube wire groove processing device proposed by the present invention; Figure 6 Schematic diagram of the cutting mechanism and moving block of a chemical fiber paper tube wire groove processing device proposed by the present invention; Figure 7 Schematic diagram of the power mechanism of a chemical fiber paper tube wire groove processing device proposed by the present invention.
[0019] In the figure: 1. Base; 101. Slag receiving groove; 2. Slag storage hopper; 3. Rotating rod; 4. Paper tube fixing mechanism; 401. Inflatable airbag; 402. Fixed ring; 403. Moving ring; 404. Spring; 405. Clamping plate; 406. Connecting rod; 5. Motor 1; 6. Moving block; 7. Moving lead screw; 8. Fixed frame; 9. Power mechanism; 901. First telescopic rod; 902. Fixed part; 903. Moving frame; 904. Rack; 905. Gear; 906. Length scale line; 907. Adjusting rod; 908. Limit frame; 909. Handle; 10. Counterweight plate; 11. Support frame; 12. Cutting mechanism; 1201. Mounting plate; 1202. Motor 2; 1203. Cutting tool; 1204. Extension part; 1205. Second telescopic rod; 1206. U-shaped rod; 13. Pressing ball; 14. Air release valve. Specific embodiments
[0020] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0021] Embodiment 1, referring to Figures 1-7 A chemical fiber paper tube wire groove processing device includes a base 1. A fixed frame 8 with an L-shaped cross-section is fixed at the top of the base 1. A horizontally arranged rotating rod 3 is rotatably connected to the vertical section of the fixed frame 8. A conventional paper tube fixing mechanism 4 is installed at one end of the rotating rod 3, that is, the existing clamping method at both ends. One end of the rotating rod 3 is connected to a power mechanism 9 with a settable movement length; One side of the top of the fixed frame 8 is provided with a motor 1. The output shaft of the motor 1 is connected to a moving lead screw 7 rotatably connected inside the fixed frame 8. A moving block 6 slidably connected to the top wall of the fixed frame 8 is helically driven on the moving lead screw 7. A cutting mechanism 12 that can be adjusted up and down is installed on the moving block 6.
[0022] The power mechanism 9 includes a first telescopic rod 901. The first telescopic rod 901 is installed on the side wall of the fixed frame 8 through a fixing member 902. The output shaft of the first telescopic rod 901 is connected with a moving frame 903. On the inner side wall of one side of the moving frame 903, a vertically arranged rack 904 is installed. The rack 904 meshes with a gear 905 installed at one end of a rotating rod 3. Inside the moving frame 903, a limiting frame 908 is slidably connected up and down. On the limiting frame 908, a regulating rod 907 rotatably connected inside the fixed frame 8 is connected by screw drive. At the top of the regulating rod 907, a handle 909 is installed.
[0023] In order to further improve the accuracy of the set length, on the side wall of the moving frame 903 away from the rack 904, a length scale line 906 is provided. On both sides of the limiting frame 908, sliding holes are opened. One sliding hole is sleeved on the side wall of the moving frame 903 with the rack 904, and the other sliding hole is sleeved on the side wall of the moving frame 903 with the length scale line 906. And on both sides of the moving frame 903, locking screws are also connected by threads. After adjusting the position of the limiting frame 908 through the regulating rod 907 each time, the limiting frame 908 can be further fixed by the locking screws.
[0024] The cutting mechanism 12 includes a U-shaped rod 1206. On both sides of the moving block 6, extension parts 1204 with sliding holes are installed. The U-shaped rod 1206 is slidably inserted into the sliding holes. On one extension part 1204, a second telescopic rod 1205 is also installed. The output shaft of the second telescopic rod 1205 is connected to the top wall of the U-shaped rod 1206. The bottom end of the U-shaped rod 1206 is connected with a mounting plate 1201 for installing a second motor 1202. The output shaft of the second motor 1202 is connected with a cutting knife 1203. The output shaft of the second telescopic rod 1205 drives the U-shaped rod 1206 to move up and down, and then the second motor 1202 and the cutting knife 1203 can be driven by the mounting plate 1201 to move up and down, so as to realize the adjustment of the cutting depth of the paper tube.
[0025] The processing method of the above device includes the following steps: S1: First, according to the length of the wire groove to be cut, rotate the regulating rod 907 on the power mechanism 9 through the handle 909. The regulating rod 907 is in screw drive connection with the limiting frame 908, so as to realize the up and down movement of the limiting frame 908 in the moving frame 903, and quickly set the length of the wire groove of the chemical fiber paper tube to be cut according to the length scale line 906; S2: Fix the chemical fiber paper tube on the paper tube fixing mechanism 4; S3: The output shaft of the first motor 5 drives the moving lead screw 7 to rotate. The moving lead screw 7 is in screw drive connection with the moving block 6, so as to drive the moving block 6 to move left and right at the top of the fixed frame 8, and then drive the cutting mechanism 12 on the moving block 6 to realize the adjustment of the cutting position of the chemical fiber paper tube; S4: The motor two 1202 on the cutting mechanism 12 drives the cutting knife 1203 to rotate. At the same time, the telescopic rod two 1205 drives the U-shaped rod 1206 to move downward, driving the cutting knife 1203 to move downward, so as to realize grooving of a specific depth on the chemical fiber paper tube; S5: Start the telescopic rod one 901 on the power mechanism 9. The output shaft of the telescopic rod one 901 drives the moving frame 903 to move downward. The rack 904 on the moving frame 903 meshes with the gear 905, thereby driving the rotating rod 3 and the chemical fiber paper tube thereon. Under the action of the limit frame 908, a wire groove with a specific depth and length can be cut on the outer wall of the chemical fiber paper tube; S6: The power mechanism 9 and the cutting mechanism 12 return to their original positions, and the paper tube fixing mechanism 4 is opened, then the processed chemical fiber paper tube can be taken off.
[0026] Embodiment 2, as Figures 1-7 shown, a device for processing wire grooves on a chemical fiber paper tube includes a base 1. A fixed frame 8 with an L-shaped cross-section is fixed at the top of the base 1. A horizontally arranged rotating rod 3 is rotatably connected to the vertical section of the fixed frame 8. A plurality of paper tube fixing mechanisms 4 with inflatable air bags 401 are installed on the rotating rod 3. One end of the rotating rod 3 is connected to a power mechanism 9 with a settable movement length; One side of the top of the fixed frame 8 is provided with a motor one 5. The output shaft of the motor one 5 is connected to a moving lead screw 7 rotatably connected inside the fixed frame 8. A moving block 6 slidably connected to the top wall of the fixed frame 8 is helically driven on the moving lead screw 7. A cutting mechanism 12 that can be adjusted for lifting is installed on the moving block 6.
[0027] The paper tube fixing mechanism 4 includes an inflatable air bag 401 sleeved on the rotating rod 3. Clamping plates 405 are annularly arranged outside the inflatable air bag 401. Fixed rings 402 fixedly sleeved on the rotating rod 3 and moving rings 403 slidably sleeved on the rotating rod 3 are provided on both sides of the inflatable air bag 401. A spring 404 is arranged between the fixed ring 402 and the moving ring 403. Connecting rods 406 are hinged between both sides of the clamping plate 405 and the corresponding moving ring 403.
[0028] In order to further improve the clamping effect between the clamping plate 405 and the paper tube, the cross-section of the clamping plate 405 is T-shaped, the outer side of the clamping plate 405 is an arc surface, and anti-slip lines are provided on this arc surface. After clamping the paper tube, the paper tube will not shake with the circular cutting.
[0029] The rotating rod 3 is of a hollow structure. The inside of the rotating rod 3 is communicated with the inflatable air bag 401 through a conduit. One end of the rotating rod 3 is connected to a pressurizing ball 13 with a one-way intake valve through a conduit, and a deflation valve 14 is also installed on this conduit. This design can realize the inflation and deflation of all the inflatable air bags 401 at one time.
[0030] In order to improve the stability of the rotating rod 3 during rotation, a counterweight disk 10 is further installed at the other end of the rotating rod 3. The outer part of the counterweight disk 10 is rotatably sleeved with a support frame 11, and the bottom end of the support frame 11 is fixed on the base 1.
[0031] The power mechanism 9 includes a first telescopic rod 901. The first telescopic rod 901 is installed on the side wall of the fixed frame 8 through a fixing member 902. The output shaft of the first telescopic rod 901 is connected with a moving frame 903. A vertically arranged rack 904 is installed on one inner side wall of the moving frame 903. The rack 904 meshes with a gear 905 installed at one end of the rotating rod 3. The inner part of the moving frame 903 is slidably connected up and down with a limiting frame 908. A regulating rod 907 rotatably connected in the fixed frame 8 is in screw transmission connection with the limiting frame 908. A handle 909 is installed at the top end of the regulating rod 907.
[0032] In order to further improve the accuracy of the set length, length scale lines 906 are provided on the side wall of the moving frame 903 far from the rack 904. Sliding holes are opened on both sides of the limiting frame 908. One sliding hole is sleeved on the side wall of the moving frame 903 with the rack 904, and the other sliding hole is sleeved on the side wall of the moving frame 903 with the length scale lines 906. Moreover, locking screws are threadedly connected to both sides of the moving frame 903. After adjusting the position of the limiting frame 908 through the regulating rod 907 each time, the limiting frame 908 can be further fixed through the locking screws.
[0033] The cutting mechanism 12 includes a U-shaped rod 1206. Extension parts 1204 with sliding holes are installed on both sides of the moving block 6. The U-shaped rod 1206 is slidably inserted into the sliding holes. A second telescopic rod 1205 is further installed on one extension part 1204. The output shaft of the second telescopic rod 1205 is connected to the top wall of the U-shaped rod 1206. The bottom end of the U-shaped rod 1206 is connected to a mounting plate 1201 for mounting a second motor 1202. The output shaft of the second motor 1202 is connected with a cutting knife 1203. The output shaft of the second telescopic rod 1205 drives the U-shaped rod 1206 to move up and down, and thus the second motor 1202 and the cutting knife 1203 can be driven by the mounting plate 1201 to move up and down, so as to realize the adjustment of the cutting depth of the paper tube.
[0034] The processing method of the above device includes the following steps: S1: First, according to the length of the wire groove to be cut, rotate the regulating rod 907 on the power mechanism 9 through the handle 909. The regulating rod 907 is in screw transmission connection with the limiting frame 908, so as to realize the up and down movement of the limiting frame 908 in the moving frame 903, and quickly set the length of the wire groove of the chemical fiber paper tube to be cut according to the length scale lines 906; S2: Sheathe the chemical fiber paper tube on multiple paper tube fixing mechanisms 4 outside the rotating rod 3. By continuously pressing the pressure ball 13, inflation of the inflatable airbag 401 can be achieved, thereby driving the clamping plate 405 to act and realizing the fixation of the chemical fiber paper tube. S3: The output shaft of the first motor 5 drives the moving lead screw 7 to rotate. The moving lead screw 7 is in screw drive connection with the moving block 6, which can drive the moving block 6 to move left and right at the top of the fixed frame 8, thereby driving the cutting mechanism 12 on the moving block 6 to adjust the cutting position of the chemical fiber paper tube. S4: The second motor 1202 on the cutting mechanism 12 drives the cutting tool 1203 to rotate. At the same time, the second telescopic rod 1205 drives the U-shaped rod 1206 to move downward, driving the cutting tool 1203 to move downward, thereby realizing grooving of a specific depth on the chemical fiber paper tube. S5: Start the first telescopic rod 901 on the power mechanism 9. The output shaft of the first telescopic rod 901 drives the moving frame 903 to move downward. The rack 904 on the moving frame 903 meshes with the gear 905, thereby driving the rotating rod 3 and the chemical fiber paper tube thereon. Under the action of the limit frame 908, a wire groove with a specific depth and length can be cut on the outer wall of the chemical fiber paper tube. S6: The power mechanism 9 and the cutting mechanism 12 return to their original positions. By means of the air release valve 14, the inflatable airbag 401 on the paper tube fixing mechanism 4 is deflated, and the processed chemical fiber paper tube can be removed.
[0035] Embodiment 3, as Figure 1 and Figure 4 shown. Different from Embodiment 2, in order to improve the processing environment, a slag receiving groove 101 is provided on one side of the base 1 below the paper tube fixing mechanism 4, and the top opening of the slag receiving groove 101 is inclined. A slag storage hopper 2 is placed inside the slag receiving groove 101. During each processing, the waste residue generated when grooving the chemical fiber paper tube falls into the slag storage hopper 2 in the slag receiving groove 10 for collection under the action of gravity, preventing the waste residue generated during processing from splashing randomly after falling to the ground and causing environmental pollution.
[0036] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.
Claims
1. A chemical fiber paper tube wire groove processing device, including a base (1), characterized in that, At the top of the base (1), a fixed frame (8) with an L-shaped cross-section is fixed. A horizontally arranged rotating rod (3) is rotatably connected to the vertical section of the fixed frame (8). A plurality of paper tube fixing mechanisms (4) with inflatable air bags (401) are installed on the rotating rod (3). One end of the rotating rod (3) is connected to a power mechanism (9) with a settable movement length. On one side of the top of the fixed frame (8), a first motor (5) is installed. The output shaft of the first motor (5) is connected to a moving lead screw (7) rotatably connected inside the fixed frame (8). A moving block (6) slidably connected to the top wall of the fixed frame (8) is helically driven on the moving lead screw (7). A cutting mechanism (12) that can be adjusted in height is installed on the moving block (6).
2. The chemical fiber paper tube wire groove processing device according to claim 1, characterized in that, The paper tube fixing mechanism (4) includes an inflatable air bag (401) sleeved on the rotating rod (3). Clamping plates (405) are annularly arranged outside the inflatable air bag (401). On both sides of the inflatable air bag (401), a fixed ring (402) fixedly sleeved on the rotating rod (3) and a moving ring (403) slidably sleeved on the rotating rod (3) are provided. A spring (404) is provided between the fixed ring (402) and the moving ring (403). Connecting rods (406) are hinged between both sides of the clamping plate (405) and the corresponding moving ring (403).
3. A chemical fiber paper tube wire groove processing device according to claim 1, characterized in that, The power mechanism (9) includes a first telescopic rod (901). The first telescopic rod (901) is installed on the side wall of the fixed frame (8) through a fixing member (902). The output shaft of the first telescopic rod (901) is connected to a moving frame (903). A vertically arranged rack (904) is installed on one inner side wall of the moving frame (903). The rack (904) meshes with a gear (905) installed at one end of the rotating rod (3). A limiting frame (908) is slidably connected up and down inside the moving frame (903). An adjusting rod (907) rotatably connected inside the fixed frame (8) is helically driven on the limiting frame (908). A handle (909) is installed at the top of the adjusting rod (907).
4. The chemical fiber paper tube wire groove processing device according to claim 3, characterized in that, A length scale line (906) is provided on the side wall of the moving frame (903) away from the rack (904). Sliding holes are opened on both sides of the limiting frame (908). One sliding hole is sleeved on the side wall of the moving frame (903) with the rack (904), and the other sliding hole is sleeved on the side wall of the moving frame (903) with the length scale line (906). Locking screws are also threadedly connected to both sides of the moving frame (903).
5. A chemical fiber paper tube wire groove processing device according to claim 1, characterized in that, The cutting mechanism (12) includes a U-shaped rod (1206). Extension parts (1204) with sliding holes are installed on both sides of the moving block (6). The U-shaped rod (1206) is slidably inserted into the sliding holes. A second telescopic rod (1205) is also installed on one extension part (1204). The output shaft of the second telescopic rod (1205) is connected to the top wall of the U-shaped rod (1206). The bottom end of the U-shaped rod (1206) is connected to a mounting plate (1201) for installing a second motor (1202). The output shaft of the second motor (1202) is connected to a cutting knife (1203).
6. The fiber paper tube wire groove processing device according to claim 2, characterized in that, The cross-section of the clamping plate (405) is T-shaped. The outer side of the clamping plate (405) is an arc surface, and anti-slip lines are provided on this arc surface.
7. A chemical fiber paper tube wire groove processing device according to claim 2, characterized in that, The rotating rod (3) is a hollow structure. The inside of the rotating rod (3) is communicated with the inflatable airbag (401) through a conduit. One end of the rotating rod (3) is connected with a pressurizing ball (13) with a one-way intake valve through a conduit, and a deflation valve (14) is also installed on this conduit.
8. A chemical fiber paper tube wire groove processing device according to claim 1, characterized in that, Another end of the rotating rod (3) is also installed with a counterweight disc (10). The outside of the counterweight disc (10) is rotatably sleeved with a support frame (11). The bottom end of the support frame (11) is fixed on the base (1).
9. The chemical fiber paper tube wire groove processing device according to claim 1, characterized in that One side of the base (1) located below the paper tube fixing mechanism (4) is provided with a slag receiving groove (101). The top opening of the slag receiving groove (101) is inclined. A slag storage hopper (2) is placed inside the slag receiving groove (101).
10. The processing method of a chemical fiber paper tube wire groove processing device according to any one of claims 1-9, characterized in that, It includes the following steps: S1: First, according to the length of the wire groove to be cut, rotate the adjusting rod (907) on the power mechanism (9) through the handle (909). The adjusting rod (907) is in screw drive with the limit frame (908), so as to realize the up and down movement of the limit frame (908) in the movement frame (903), and quickly set the length of the wire groove of the chemical fiber paper tube to be cut according to the length scale line (906); S2: Sleeve the chemical fiber paper tube on a plurality of paper tube fixing mechanisms (4) outside the rotating rod (3). By continuously pressing the pressurizing ball (13), the inflatable airbag (401) can be inflated, so as to drive the clamping plate (405) to act to fix the chemical fiber paper tube; S3: The output shaft of the first motor (5) drives the moving lead screw (7) to rotate. The moving lead screw (7) is in screw drive connection with the moving block (6), so as to drive the moving block (6) to move left and right on the top of the fixed frame (8), and then drive the cutting mechanism (12) on the moving block (6) to adjust the cutting position of the chemical fiber paper tube; S4: The second motor (1202) on the cutting mechanism (12) drives the cutting knife (1203) to rotate. At the same time, the second telescopic rod (1205) drives the U-shaped rod (1206) to move downward, driving the cutting knife (1203) to move downward, so as to cut a groove with a specific depth in the chemical fiber paper tube; S5: Start the first telescopic rod (901) on the power mechanism (9). The output shaft of the first telescopic rod (901) drives the movement frame (903) to move downward. The rack (904) on the movement frame (903) meshes with the gear (905), so as to drive the rotating rod (3) and the chemical fiber paper tube thereon. Under the action of the limit frame (908), a wire groove with a specific depth and length can be cut on the outer wall of the chemical fiber paper tube; S6: The power mechanism (9) and the cutting mechanism (12) return to their original positions. By the deflation valve (14), the inflatable airbag (401) on the paper tube fixing mechanism (4) is deflated, and the processed chemical fiber paper tube can be taken off.