Cutting device for adhesive tape processing
By combining a tape splitter with an automated pushing component, the inefficiency and safety hazards of the tape cutting and unloading process in tape processing are solved, realizing the automated pushing and collection of tape segments, thus improving production efficiency and safety.
Patent Information
- Application Number
- CN202511951127.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-23
- Publication Date
- 2026-01-23
AI Technical Summary
Existing tape processing and cutting equipment relies on manual operation for the unloading process after cutting, resulting in low production efficiency, high labor intensity, and the risk of mechanical injury.
By using a tape splitter, which combines a tape cylinder rotating part, a synchronous belt linear module, a splitting part, a support part, and a pushing part, the tape segment pushing and collection can be automated, reducing manual intervention.
It improves the continuous operation capability of cutting equipment, reduces labor intensity and the risk of mechanical injury, and enhances cutting quality and pushing accuracy.
Smart Images

Figure CN121374746A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of adhesive tape slitting machine, and particularly relates to a cutting device for adhesive tape processing. BACKGROUND
[0002] In the field of adhesive tape processing, the roll-shaped raw material is formed into a single adhesive tape roll or adhesive tape piece after being unwound, pulled, cut to a fixed length and segmented. In the prior art, the development of the cutting device itself is relatively mature, and the cutting action can be realized at high speed and high precision. However, after the cutting action is completed, how to safely, efficiently and orderly transfer the segmented independent adhesive tape roll (or piece) from the cutting station to the next process (such as collection, packaging and detection) has long relied on inefficient manual operation, which has become a key bottleneck restricting the automation level and production efficiency of the whole line.
[0003] The current common operation mode is that the adhesive tape roll after cutting is left on the shaft, and needs to be manually pushed, grabbed and moved by the operator. This mode has the following inherent defects: low production efficiency: the cutting cycle of the cutting machine is usually within a few seconds, while the manual unloading needs to complete a series of actions such as turning around, reaching out, grabbing and moving, which takes much longer than the machine cutting time, resulting in the equipment having to slow down or intermittent pause to wait for manual operation, and the equipment utilization is seriously lowered. The operator needs to repeatedly perform high-frequency and monotonous physical labor at a fixed station, which is easy to cause muscle and skeletal strain, such as occupational diseases of the waist, back and wrist, and long-term repetitive actions are also easy to cause attention fatigue. Moreover, when manually unloading, the operator's hands need to frequently enter the mechanical movement area near the cutting knife, which has the risk of mechanical injury caused by collision with the knife or moving parts that have not completely stopped. Especially in the case of equipment failure or misoperation, the risk increases dramatically. Therefore, a cutting device for adhesive tape processing is needed to solve the above problems. SUMMARY
[0004] The purpose of the present application is to solve the problems raised in the background art.
[0005] In order to achieve the above purpose, the present application adopts the following technical solutions: The utility model provides a kind of cutting device of adhesive tape processing, including adhesive tape splitter, right side of the adhesive tape splitter is equipped with glue cylinder rotating part, the synchronous belt type linear module of left and right conveying displacement is provided on the rack of the adhesive tape splitter, the processing table of the synchronous belt type linear module is movably installed with the division part, the top side of the division part is movably installed with the supporting part, and the supporting part side is movably installed with the pusher that is pushed to adhesive tape section, the device is with adhesive tape splitter as main body, the glue cylinder rotating part for installing and rotating adhesive tape roll is arranged on its right side, realize rotary cutting, synchronous belt type linear module is installed on the rack, responsible for driving division part accurately moves along the width direction of adhesive tape, supporting part and pusher are integrated on division part, realize the integrated operation process of stable adhesive tape in cutting process, semi-automatic pusher unloading after cutting; The division part includes a gimbal, a servo motor is installed on the top right side of the gimbal, and a division disc is connected to the end of the servo motor shaft, the supporting part includes a vertical plate fixed to the top left side of the gimbal, two pressure rollers are movably installed on the surface of the vertical plate vertical plate end, the gimbal cooperates with the double rail of the synchronous belt type linear module through the rail sleeve to realize smooth sliding, the displacement sensor A monitors the position of the gimbal in real time, the cylinder B realizes the quick advance and retreat of the gimbal by pushing the stress plate, and the response speed and positioning accuracy of the cutting action are ensured. The pusher includes a rack movably installed in the vertical plate guide slot, a push plate is installed through a square through slot on the front left side of the rack, and the cross section of the push plate is in L-shaped structure, an electric push rod is installed on the inner side of the short plate end of the push plate, and the cylinder seat of the electric push rod is installed on the surface of the rack.
[0006] Preferably, the surface of the synchronous belt type linear module is provided with a double rail, and the rail sleeve is slidably installed on the surface of the double rail, the top end of the rail sleeve is fixed on the bottom end surface of the gimbal, the displacement sensor A is installed on the side of the gimbal, the stress plate is connected to the front of the bottom end of the gimbal, and the cylinder B is installed on the inner end surface of the stress plate, and the cylinder B is fixed on the surface of the synchronous belt type linear module by bolts.
[0007] Preferably, the bottom end of the right side of the vertical plate is connected with a balance frame, and the cross section of the balance frame is in L-shaped structure, the cylinder C is installed on the surface of the gimbal, and the cylinder C is installed on the surface of the gimbal, the bottom end of the vertical plate is provided with two rail ends, and the rail ends are movably installed on the surface of the gimbal through guide slots, the displacement sensor B is installed on the side of the vertical plate, the supporting part is installed on the left side of the gimbal through the vertical plate, and the bottom end is slidably connected with the gimbal through the rail, the cylinder C pushes the vertical plate to move to the direction of the adhesive tape roll through the balance frame, so that the pressure roller is attached and pressed tightly on the surface of the adhesive tape roll, and stable support is provided during the cutting process to prevent the adhesive tape from shifting or vibrating. Displacement sensor B is used to monitor the supporting position, to ensure that the pressing force is moderate.
[0008] Preferably, the pushing part comprises a rack which is transversely through the inside of the vertical plate through a guide groove, a protective buckling plate is fixedly installed on the surface of the vertical plate near the position of the rack, a micro motor is installed on the front surface of the protective buckling plate, and a gear is connected to the shaft end of the micro motor and penetrates through the protective buckling plate, the surface of the gear is engaged with the bottom end side of the rack through the teeth, and cleaning pieces are arranged on both end sides of the protective buckling plate, the micro motor drives the rack to reciprocate through the gear, drives the L-shaped push plate to move along the adhesive tape reel, and gradually pushes the segmented adhesive tape to the collection station. The electric push rod can adjust the transverse position of the push plate to adapt to adhesive tapes of different widths.
[0009] Preferably, the cleaning piece comprises a hanging plate fixed on both end sides of the protective buckling plate, an adjusting screw shaft is rotatably installed at the bottom end of the hanging plate, a support frame is threadedly sleeved on the surface of the adjusting screw shaft, the vertical plate end of the support frame is attached to the surface of the hanging plate, and a cleaning plate is connected to the top end of the support frame. The cleaning pieces are symmetrically arranged on both ends of the protective buckling plate, the cleaning plate is made of soft hair material and arranged in an inclined array, the cleaning plate can brush off the adhesive and dust on the surface of the rack when the rack moves, the adjusting screw shaft can finely adjust the height and angle of the cleaning plate to ensure the cleaning effect, and the T-shaped cooperation structure of the constraint block and the hanging plate ensures that the cleaning piece is stably installed and easily disassembled and maintained.
[0010] Preferably, a through groove is formed in the surface of the vertical plate end of the support frame, and a constraint block is inserted in the through groove, the surface of the constraint block is fixedly connected to the surface of the hanging plate through bolts, and the constraint block has a T-shaped structure in cross section.
[0011] Preferably, the cleaning plate is composed of a rubber plate end and a cleaning plate end, the cleaning plate end is designed in an inclined array, and the cleaning plate end is made of soft hair material.
[0012] Preferably, the rubber cylinder rotating part comprises a variable frequency motor fixed on the shell on the controller end side of the adhesive tape cutting machine, an end shaft is connected to the shaft end of the variable frequency motor and inserted in the shaft rod end side of the rubber cylinder, the right side of the shaft rod is supported by an auxiliary support piece, the rubber cylinder rotating part drives the end shaft to rotate through the variable frequency motor, thereby driving the adhesive tape reel on the shaft rod to rotate, and the auxiliary support piece is composed of an auxiliary support plate, a fixing frame and a cylinder A, the auxiliary support plate is buckled on the right side of the shaft rod by the cylinder A during loading to provide auxiliary support and ensure the structural stability of the long-size adhesive tape reel during high-speed rotation.
[0013] Preferably, the auxiliary support includes an auxiliary support plate sleeved on the right side of the rubber tube shaft, and the auxiliary support plate is movably arranged at the end of the shaft of the fixed frame, the fixed frame is fixed on the right side plate frame of the rubber belt cutting machine through bolts, a gas cylinder A for supporting the auxiliary support plate is movably arranged on the right side of the fixed frame, and the piston rod end of the gas cylinder A is movably connected with the auxiliary support plate, the whole device is uniformly coordinated by the controller built in the rubber belt cutting machine, and the start-stop and stroke of the executing elements such as the gas cylinder B, the gas cylinder C, the servo motor and the micro motor are controlled in real time by receiving signals such as the displacement sensor A and the displacement sensor B.
[0014] The present application has at least the following advantages: 1、The pushing part and the supporting part of the present application work together to automatically push the rubber belt segments away from the cutting station or concentrate them in the right side area of the station after cutting, reducing manual intervention, effectively solving the problems of low efficiency and high labor intensity of traditional manual unloading, and making the cutting equipment continuously run to improve equipment utilization.
[0015] 2、The cutting part of the present application realizes precise displacement through a synchronous belt type linear module, cooperates with the pressure roller of the supporting part to stabilize the rubber belt during cutting, and realizes segmented pushing through the rack and the push plate, so that the components work in order under the coordination of the control system, and the overall cutting quality and pushing accuracy are improved.
[0016] 3、The pushing part of the present application is provided with a protective buckle and a cleaning part, which can automatically clean the dust accumulated on the rack during pushing to prevent jamming; the overall structure reduces the need for manual contact with moving parts, reduces the risk of mechanical injury from the source, and is suitable for long-term continuous production environment. BRIEF DESCRIPTION OF DRAWINGS
[0017] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creating laborious work.
[0018] Figure 1 An external structure schematic diagram of a cutting device for rubber belt processing is provided for the present application. Figure 2 A three-dimensional bottom view disassembly structure schematic diagram of a cutting device for rubber belt processing is provided for the present application. Figure 3 A disassembly structure schematic diagram of a cutting device for rubber belt processing is provided for the present application. Figure 4 A bottom view disassembly structure schematic diagram of a cutting device for rubber belt processing is provided for the present application. Figure 5A three-dimensional exploded structure schematic view of the supporting part and the pushing part in the cutting device for adhesive tape processing is provided in the present application. Figure 6 A three-dimensional structure schematic view of the pushing part in the cutting device for adhesive tape processing is provided in the present application. Figure 7 A three-dimensional exploded structure schematic view of the pushing part in the cutting device for adhesive tape processing is provided in the present application. Figure 8 A three-dimensional exploded structure schematic view of the supporting part and the pushing part in the cutting device for adhesive tape processing is provided in the present application.
[0019] In the drawings: 1, adhesive tape cutting machine; 2, glue cylinder rotating part; 21, frequency conversion motor; 22, end shaft; 23, glue cylinder shaft rod; 24, auxiliary support plate; 25, fixed frame; 26, air cylinder A; 3, synchronous belt type linear module; 4, cutting part; 41, holder; 42, rail sleeve; 43, stress plate; 44, air cylinder B; 45, servo motor; 46, cutting disc; 47, displacement sensor A; 5, supporting part; 51, vertical plate; 52, balance frame; 53, air cylinder C; 54, pressure roller; 55, displacement sensor B; 6, pushing part; 61, rack; 62, protective buckle plate; 63, micro motor; 64, push plate; 65, electric push rod; 66, cleaning piece; 661, hanging plate; 662, constraint block; 663, support frame; 664, cleaning plate; 665, adjusting screw shaft; 67, gear. DETAILED DESCRIPTION
[0020] In order to make the purpose, technical scheme and advantages of the present application more clear, the present application is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the present application and do not limit the present application.
[0021] Referring to Figures 1-8 A cutting device for adhesive tape processing, comprising an adhesive tape cutting machine 1, a glue cylinder rotating part 2 is installed on the right side of the adhesive tape cutting machine 1, a synchronous belt type linear module 3 for left and right conveying displacement is arranged on the rack of the adhesive tape cutting machine 1, a cutting part 4 is movably installed on the processing table of the synchronous belt type linear module 3, a supporting part 5 is movably installed on one side of the top end of the cutting part 4, and a pushing part 6 for pushing the adhesive tape segment is movably installed on the side of the supporting part 5. The split part 4 includes a holder 41, a servo motor 45 is installed at the top right side of the holder 41, and the shaft end of the servo motor 45 is connected with a split disc 46. The supporting part 5 includes a vertical plate 51 fixed at the top left side of the holder 41, and two pressing wheels 54 are movably installed on the surface of the vertical plate 51. A speed changing device can be added between the servo motor 45 and the split disc 46 according to requirements, which is used for torque operation The pushing part 6 includes a rack 61 movably installed in the guide groove of the vertical plate 51, a push plate 64 is installed through the square through groove at the front left side of the rack 61, and the cross section of the push plate 64 is in L-shaped structure. An electric push rod 65 is installed at the inner side of the short plate end of the push plate 64, and the cylinder seat end of the electric push rod 65 is installed on the surface of the rack 61.
[0022] The surface of the synchronous belt type linear module 3 is provided with double rail strips, and the rail strips are slidably installed on the surface of the rail sleeve 42. The top end of the rail sleeve 42 is fixed on the bottom surface of the holder 41. The displacement sensor A47 is installed on the side of the holder 41. The force plate 43 is connected to the front end of the holder 41. The air cylinder B44 is installed on the surface of the synchronous belt type linear module 3 through the bolt.
[0023] The balance frame 52 is connected to the bottom end of the right side of the vertical plate 51, and the cross section of the balance frame 52 is in L-shaped structure. The air cylinder C53 is installed on the inner side of the horizontal plate end of the balance frame 52, and the air cylinder C53 is installed on the surface of the holder 41. Two rail ends are provided at the bottom end of the vertical plate 51, and the rail ends are movably installed on the surface of the holder 41 through the guide groove. The displacement sensor B55 is installed on the side of the vertical plate 51.
[0024] The pushing part 6 includes a rack 61, which is transversely penetrated through the inside of the vertical plate 51 through the guide groove. The protective buckle plate 62 is fixedly installed on the surface of the vertical plate 51 near the rack 61 through the bolt. The miniature motor 63 is installed on the front surface of the protective buckle plate 62. The gear 67 is connected to the shaft end of the miniature motor 63 after penetrating through the protective buckle plate 62. The gear 67 is engaged and connected with the bottom side of the rack 61 through the teeth on the surface of the gear 67. The cleaning piece 66 is provided at both ends of the protective buckle plate 62.
[0025] The cleaning piece 66 includes a hanging plate 661 fixed at both ends of the protective buckle plate 62. The adjusting screw shaft 665 is rotatably installed at the bottom end of the hanging plate 661. The support frame 663 is threadedly sleeved on the surface of the adjusting screw shaft 665. The support frame 663 is attached to the surface of the hanging plate 661. The cleaning plate 664 is connected to the top end of the support frame 663.
[0026] The through groove is formed on the surface of the vertical plate end of the support frame 663, and the constraint block 662 is inserted in the through groove. The surface of the constraint block 662 is fixedly installed on the surface of the hanging plate 661 through the bolt. The cross section of the constraint block 662 is in T-shaped structure.
[0027] The cleaning plate 664 is composed of a rubber plate end and a cleaning plate end, the cleaning plate end is designed in an inclined array, and the cleaning plate end is made of soft hair material.
[0028] The glue cylinder rotating part 2 includes a variable frequency motor 21 fixed on the controller end side shell of the adhesive tape cutting machine 1, the shaft end of the variable frequency motor 21 is connected with an end shaft 22, the end shaft 22 is inserted on the end side of a glue cylinder shaft rod 23, and the right side of the glue cylinder shaft rod 23 is supported by an auxiliary support.
[0029] The auxiliary support includes an auxiliary support plate 24 sleeved on the shaft right side of the glue cylinder shaft rod 23, the shaft end of the auxiliary support plate 24 is movably installed on the surface of a fixed frame 25, the fixed frame 25 is fixed on the right side plate frame of the adhesive tape cutting machine 1 by bolts, a gas cylinder A 26 for supporting the auxiliary support plate 24 is movably installed on the right side of the fixed frame 25, and the piston rod end of the gas cylinder A 26 is movably connected with the auxiliary support plate 24.
[0030] The top end of the rail sleeve 42 is rigidly fixed on the bottom end surface of the holder 41 by bolts or connecting plates, so as to support and guide the holder 41 on the linear module of the synchronous belt type linear module 3, in order to accurately control the motion stroke and position, a displacement sensor A 47 is installed on the side of the holder 41, the reading head of the displacement sensor A 47 moves with the holder 41 and is aligned with the scale or sensing target fixed on the module base, two parallel high-precision linear guide rails constitute the reference path of the holder 41 movement, the high linearity and parallelism ensure the trajectory accuracy of the holder 41 in long stroke movement, the layout of the double rail strip and multiple rail sleeves forms a stable support surface, which can bear the weight of all parts such as the cutting part 4, the supporting part 5 and the vertical and lateral load generated in the cutting process; the cylinder C 53 as a linear actuator is a power source for driving the vertical plate 51 to perform the "forward pressing" and "backward loosening" actions, the bottom end rail end of the vertical plate 51 strictly moves along the linear path determined by the guide groove without yawing or rolling, which ensures that the two pressing wheels 54 can be parallel and uniformly pressed, preventing the adhesive tape roll from shaking during cutting and affecting the stability during cutting.
[0031] The rotating torque generated by the micro motor 63 is transmitted to the gear 67 through the output shaft, the gear 67 is engaged with the fixed path rack 61, and the rotating motion is converted into the horizontal linear motion of the rack 61 along the guide groove direction, the vertical plate 51 not only serves as the support main body of the supporting part 5, but also provides a high-precision guide reference for the movement of the rack 61 through the guide groove processed in the vertical plate 51, which ensures that the rack 61 always maintains linear motion in the stroke of hundreds of millimeters without drifting or jamming, thereby ensuring the accurate and reliable trajectory of the push plate 64 pushing the adhesive tape segment, avoiding the jam caused by the inclined pushing, and the protection buckle plate 62 as a cover member, which closes the meshing area of the high-speed rotating gear 67 and the rack 61, effectively prevents the hands, tools or foreign matters of the operator from accidentally entering, and eliminates the risk of mechanical injury or interference.
[0032] The symmetrically arranged hanging plate 661 provides a balanced force basis for the entire cleaning member, and the vertical fixation at both ends of the protective buckle plate 62 ensures that the cleaning force is evenly applied to both sides of the rack 61, preventing the rack 61 from deviating or the cleaning plate 664 from being abraded due to unilateral force. The hanging plate 661 serves as the base for all moving parts, and its rigid fixation ensures the stability of the entire cleaning module under equipment vibration. By rotating the adjusting screw shaft 665, the operator can accurately control the lifting of the support frame 663 and the cleaning plate 664. With the wear of the rack 61 or the cleaning plate 664 itself, the optimal cleaning interference amount can be restored by adjusting.
[0033] The T-shaped constraint block 662 and the vertical through slot constitute a sliding structure, providing a strict and low-friction vertical motion track for the support frame 663 and the cleaning plate 664 installed at the top end of the support frame 663. This design ensures that the cleaning plate 664 always maintains a horizontal posture during height adjustment, and the soft hair array on it can always move perpendicular to the rack 61 tooth surface, thereby achieving uniform and effective cleaning contact, avoiding local cleaning failure or excessive wear due to the inclination of the cleaning plate. The movable design of the support frame 663 allows for fine adjustment of the position of the cleaning plate 664, improving the fitting effect of the cleaning plate 664.
[0034] During the cutting and pushing of the adhesive tape, foreign matter such as adhesive debris and dust is inevitable. The soft hair cleaning plate end of the cleaning plate can continuously brush the tooth surface and tooth groove of the rack 61 during its reciprocating motion, preventing debris from accumulating. The flexibility of the soft hair allows it to penetrate deep into the tooth groove bottom, achieving thorough cleaning without dead angles and preventing foreign matter from being stuck in the meshing area of the gear 67 and the rack 61, thereby ensuring smooth transmission and reducing the failure rate. The soft hair is arranged in an inclined array, which forms a "sweeping-pushing" combined effect during the movement of the rack. The inclined soft hair can more effectively guide the brushed debris to the sides of the rack or in a specific direction, rather than just brushing vertically, preventing debris from being deposited again in the cleaning area. The rubber plate end not only serves as the mounting base for the soft hair, but also has elasticity that can slightly deform when the rack passes, providing elastic pre-pressure for the soft hair to ensure uniform and moderate contact force with the tooth surface, achieving thorough cleaning without excessive wear. The elastic deformation can also cause high-frequency micro-vibration, which helps to shake off fine dust that is tightly adhered, enhancing the self-cleaning ability.
[0035] The variable frequency motor 21 serves as the power source, and its speed can be accurately and steplessly adjusted by the controller. During the cutting process, the controller controls the variable frequency motor 21 to rotate intermittently or continuously according to the preset program instructions, driving the rubber cylinder shaft 23 and the adhesive tape roll on it to rotate, thereby assisting the cutting of the adhesive tape roll. The end shaft 22 has a stepped polygonal structure, which is convenient to fit into the corresponding slot on the left side of the rubber cylinder shaft 23, and to some extent, improves the installation diversity of the rubber cylinder shaft 23.
[0036] When the adhesive tape roll is installed on the adhesive cylinder shaft 23 and high-speed rotary cutting is performed, only the support of the left drive end is easy to cause the right side of the shaft to deflect or vibrate due to the weight of the roll and the rotational inertia, affecting the cutting accuracy. The auxiliary support plate 24 is sleeved into the shaft from the right side and gives physical support, forming a "two-point support" structure with the left drive end, significantly improving the overall rigidity of the shaft, ensuring that the adhesive tape roll remains stable during rotation and cutting, and avoiding cutting deviation or tool wear caused by vibration; through the extension and retraction movement of the air cylinder A26, the auxiliary support plate 24 is driven to rotate around the active base point, realizing the "engagement" and "disengagement" of the auxiliary support plate 24 with the adhesive cylinder shaft 23. When loading, the piston rod of the air cylinder A26 is extended, pushing the auxiliary support plate 24 to rotate left and sleeve into the right end of the adhesive cylinder shaft 23; when unloading or replacing the roll, the air cylinder A26 retracts, driving the auxiliary support plate 24 to rotate right away from the adhesive cylinder shaft 23, so that the cut adhesive tape roll can be smoothly taken out along the axial direction. This design replaces the traditional threaded fixing or pin fixing method, greatly shortens the replacement time, and improves the production continuity; the traditional support method often needs manual insertion and removal of the fixing pin or tightening of the nut, and the operator's hand needs to approach the rotating part, which has safety hazards. This structure realizes automatic support and release through pneumatic drive, and personnel do not need to directly touch the shaft in motion, which fundamentally reduces the risk of mechanical injury or collision.
[0037] Working principle: according to the attached Figure 2 , the attached Figure 3 and the attached Figure 8 , in use, the adhesive tape roll cylinder shaft 23 is sleeved on the surface of the end shaft 22 on the left side of the adhesive cylinder shaft 23, and the cylinder A26 is connected with the hydraulic pump and related accessories. The piston rod of the cylinder A26 is controlled by the controller of the adhesive tape cutting machine 1 under the programming control. When the control system directs the pressure oil into the rodless cavity, the oil acts on the effective area of the piston to generate a huge thrust. At the same time, the oil in the rod cavity is pushed out by the piston and flows back to the oil tank through the oil return pipeline. The piston and the piston rod are pushed outwards. After the piston rod is extended, the auxiliary support plate 24 is rotated around the active point. The auxiliary support plate 24 is buckled on the right side of the shaft end of the adhesive cylinder shaft 23. The auxiliary support plate 24 can support the adhesive cylinder shaft 23. The frequency conversion motor 21 is started, and the end shaft 22 is rotated. The end shaft 22 drives the adhesive cylinder shaft 23 to rotate, and the adhesive cylinder shaft 23 drives the adhesive cylinder on the outside to rotate. Secondly, according to the attached Figure 2As shown, the cylinder B44 is started under the controller coding control of the tape cutting machine 1, the piston of the cylinder B44 pushes the force plate 43, the gimbal 41 drives the rail sleeve 42 to displace on the rail of the tape cutting machine 1, the displacement sensor A47 senses the moving stroke position of the gimbal 41, and timely transmits the signal to the controller of the tape cutting machine 1 for reaction, and stops and resets the movement when the stroke of the gimbal 41 reaches the preset position, and the servo motor 45 drives the cutting disc 46 to rotate, accompanied by the displacement of the gimbal 41, the cutting disc 46 at the end of the shaft of the servo motor 45 carried by the gimbal 41 can cut the tape on the surface of the rubber cylinder rotating part 2, and after the position of the gimbal 41 is reset, the platform of the synchronous belt type linear module 3 moves transversely, and the cutting part 4 on the synchronous belt type linear module 3 can be controlled to move transversely as a whole, so as to realize the transverse and orderly cutting of the rubber cylinder; Finally, according to the accompanying drawings Figure 1 , the accompanying drawings Figure 3 and the accompanying drawings Figure 4 As shown, before the cutting disc 46 cuts, the controller of the tape cutting machine 1 cooperates with the displacement sensor B55, the piston of the cylinder C53 pushes the balance frame 52, the balance frame 52 drives the vertical plate 51 to move, and the two pressing wheels 54 inside the vertical plate 51 press the rubber cylinder on the surface of the rubber cylinder rotating part 2, so as to conveniently support the rubber cylinder and ensure the stability of the rubber cylinder in cutting, and after the rubber cylinder is completely segmented and cut, the cutting part 4 is located on the side close to the auxiliary support plate 24 as a whole, according to the accompanying drawings Figure 5 and the accompanying drawings Figure 6 As shown, the micro motor 63 is started under the control of the controller of the tape cutting machine 1, the shaft end of the micro motor 63 drives the gear 67 to rotate, the gear 67 cooperates with the teeth of the rack 61 below, controls the rack 61 to move in the guide groove on the side of the vertical plate 51, the rack 61 drives the push plate 64 to move, and the push plate 64 moves to push the cut rubber cylinder, so as to move the cut rubber cylinder to the right side of the rubber cylinder shaft 23 for collection, when the arrangement teeth of the rack 61 face downward, the attachment of debris can be effectively reduced, and at the same time, the rack 61 moves transversely and contacts the cleaning plate 664, when the teeth of the rack 61 pass through the surface of the cleaning plate 664, the cleaning plate 664 can have a certain cleaning effect, and at the same time, the rubber plate end center of the cleaning plate 664 is designed to be hollow in multiple places, so that the top end of the cleaning plate 664 vibrates under the pushing force of the rack 61, thereby improving the cleaning effect to a certain extent.
[0038] The controller determines when to power on or power off the solenoid valve according to the "input signal" and the "internal program", thereby controlling the action of the cylinder, and confirming whether the action is completed through the sensor module, forming a reliable and automatic closed-loop control system, for the convenience of description, it is uniformly described that the controller cooperates with the sensor to control the start and stop state of the cylinder.
[0039] The above shows and describes the basic principles, main features and advantages of the present application. Those skilled in the art should understand that the present application is not limited to the above-mentioned embodiments, and the above-mentioned embodiments and descriptions in the specification are only the principles of the present application. Various changes and improvements can be made without departing from the spirit and scope of the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A cutting apparatus for adhesive tape processing, comprising an adhesive tape dividing machine (1), characterized in that, The right side of the adhesive tape cutting machine (1) is provided with a glue cylinder rotating part (2), a synchronous belt type linear module (3) for left and right conveying displacement is arranged on the rack of the adhesive tape cutting machine (1), a cutting part (4) is movably arranged on the processing table of the synchronous belt type linear module (3), a supporting part (5) is movably arranged on the top side of the cutting part (4), and a pushing part (6) for pushing the adhesive tape segment is movably arranged on the side of the supporting part (5). The cutting part (4) comprises a holder (41), a servo motor (45) is arranged on the right top of the holder (41), and a cutting disc (46) is connected to the shaft end of the servo motor (45); the supporting part (5) comprises a vertical plate (51) fixed on the left top of the holder (41), and two pressing wheels (54) are movably arranged on the surface of the vertical plate (51). The pushing part (6) comprises a rack (61) movably arranged in the guide groove of the vertical plate (51), a push plate (64) is arranged on the front left side of the rack (61) through a square through groove, the cross section of the push plate (64) is in L-shaped structure, an electric push rod (65) is arranged on the inner side of the short plate end of the push plate (64), and the cylinder seat end of the electric push rod (65) is arranged on the surface of the rack (61).
2. The apparatus according to claim 1, wherein The surface of the synchronous belt type linear module (3) is provided with a double rail, and a rail sleeve (42) is slidably arranged on the surface of the double rail, the top end of the rail sleeve (42) is fixed on the bottom surface of the holder (41), a displacement sensor A (47) is arranged on the side of the holder (41), a force receiving plate (43) is connected to the front of the bottom end of the holder (41), a gas cylinder B (44) is arranged on the inner end surface of the force receiving plate (43), and the gas cylinder B (44) is fixed on the surface of the synchronous belt type linear module (3) through bolts.
3. The apparatus according to claim 1, wherein The bottom end of the vertical plate (51) is connected with a balance frame (52), the cross section of the balance frame (52) is in L-shaped structure, a gas cylinder C (53) is arranged on the inner side of the horizontal plate end of the balance frame (52), and the gas cylinder C (53) is arranged on the surface of the holder (41), two rail ends are arranged on the bottom end of the vertical plate (51), and the rail ends are movably arranged on the surface of the holder (41) through guide grooves, and a displacement sensor B (55) is arranged on the side of the vertical plate (51).
4. The apparatus according to claim 1, wherein The pushing part (6) comprises a rack (61), the rack (61) passes through the inside of the vertical plate (51) through a guide groove, a protection buckle plate (62) is fixedly arranged on the surface of the vertical plate (51) near the rack (61) through bolts, a micro motor (63) is arranged on the front of the protection buckle plate (62), a gear (67) is connected to the shaft end of the micro motor (63) after penetrating the protection buckle plate (62), the surface of the gear (67) is engaged with the side of the bottom end of the rack (61) through teeth, and cleaning pieces (66) are arranged on both ends of the protection buckle plate (62).
5. The apparatus according to claim 4, wherein The cleaning member (66) comprises a hanging plate (661) fixed at both ends of the protective buckle plate (62), the bottom end of the hanging plate (661) is rotatably provided with an adjusting screw shaft (665), the surface of the adjusting screw shaft (665) is threadedly provided with a supporting frame (663), the vertical plate end of the supporting frame (663) is attached to the surface of the hanging plate (661), and the top end of the supporting frame (663) is connected with a cleaning plate (664).
6. The apparatus according to claim 5, wherein The vertical plate end surface of the supporting frame (663) is provided with a through groove, and a constraint block (662) is inserted into the through groove, the surface of the constraint block (662) is fixed to the surface of the hanging plate (661) by bolts, and the constraint block (662) is designed in a T-shaped structure.
7. The apparatus of claim 5, wherein the apparatus further comprises a cutting device. The cleaning plate (664) is composed of a rubber plate end and a cleaning plate end, the cleaning plate end is designed in an inclined array, and the cleaning plate end is composed of soft hair material.
8. The apparatus of claim 1, wherein, The glue cylinder rotating part (2) comprises a frequency conversion motor (21) fixed on the controller end shell of the adhesive tape cutting machine (1), the shaft end of the frequency conversion motor (21) is connected with an end shaft (22), the end shaft (22) is inserted into the end side of a glue cylinder shaft rod (23), and the right side of the glue cylinder shaft rod (23) is supported by an auxiliary supporting part.
9. The apparatus according to claim 8, wherein The auxiliary supporting part comprises an auxiliary supporting plate (24) sleeved on the shaft right side of the glue cylinder shaft rod (23), and the shaft end of the auxiliary supporting plate (24) is movably installed on the surface of a fixing frame (25), the fixing frame (25) is fixed on the right side plate frame of the adhesive tape cutting machine (1) by bolts, a gas cylinder A (26) for supporting the auxiliary supporting plate (24) is movably installed on the right side of the fixing frame (25), and the piston rod end of the gas cylinder A (26) is movably connected with the auxiliary supporting plate (24).