CN220638049U - Double-beam pneumatic knife double-circle punching vibration knife cutting machine - Google Patents

Double-beam pneumatic knife double-circle punching vibration knife cutting machine Download PDF

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Publication number
CN220638049U
CN220638049U CN202321582496.9U CN202321582496U CN220638049U CN 220638049 U CN220638049 U CN 220638049U CN 202321582496 U CN202321582496 U CN 202321582496U CN 220638049 U CN220638049 U CN 220638049U
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axis
double
driving device
lifting
axis translation
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CN202321582496.9U
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邹建军
王友成
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Dongguan Zhencai Cnc Technology Co ltd
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Dongguan Zhencai Cnc Technology Co ltd
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Abstract

The utility model discloses a double-beam pneumatic knife double-circle punching vibration knife cutting machine which comprises a coiled material mounting frame for mounting coiled materials, a pinch roller mechanism for pinching the coiled materials, a cutting machine frame, a conveying belt, a Y-axis beam, an XYZ three-axis cutting module, a feeding and pressing mechanism and a projector, wherein the coiled material mounting frame is positioned at the feeding end of the cutting machine frame, the pinch roller mechanism is positioned between the coiled material mounting frame and the cutting machine frame, the coiled material mounting frame comprises a coiled material support and a plurality of coiled material mounting rollers, and the pinch roller mechanism comprises a pinch support, an upper pinch roller and a lower pinch roller. The double-cutter cutting machine is provided with the double-X-axis cross beam and the double-cutter module, double-cutter cutting has the advantage of high working efficiency, the side edge of the cutter is also provided with the projector, the projector can project a cutting path onto a coiled material before cutting, a worker can conveniently preview and adjust the cutting position, and the double-circle punching design can meet the double-circle punching cutting requirements of enterprises.

Description

Double-beam pneumatic knife double-circle punching vibration knife cutting machine
Technical Field
The utility model relates to the technical field of vibrating knife cutting machines, in particular to a double-beam pneumatic knife double-circle punching vibrating knife cutting machine.
Background
The vibration cutter is a device which can realize high-efficiency typesetting rapidly and cut various materials, is also suitable for proofing and small-batch production, and can lead more enterprises to turn aside the traditional manual cutter cutting process and enter the new era of digital processing. However, all the vibration knife cutting machines on the market at present are single-beam cutting, the cutting efficiency of single-station design is low, and the existing vibration knife cutting machine does not have double-circle punching and projection preview functions, so that the requirements of double-circle punching and projection preview of enterprises cannot be met.
Disclosure of Invention
The utility model aims to overcome the defects in the prior art and provides a double-beam pneumatic knife double-circle punching vibration knife cutting machine.
In order to achieve the above purpose, the utility model provides a double-beam pneumatic knife double-circle punching vibration knife cutting machine, which comprises a coiled material mounting frame for mounting coiled materials, a clamping and pressing roller mechanism for clamping and pressing the coiled materials, a cutting machine frame, a conveying belt, a Y-axis beam, an XYZ three-axis cutting module, a feeding and pressing mechanism and a projector, wherein the coiled material mounting frame is positioned at the feeding end of the cutting machine frame, and the clamping and pressing roller mechanism is positioned between the coiled material mounting frame and the cutting machine frame;
the coiled material mounting frame comprises a coiled material bracket and a plurality of coiled material mounting rollers, and the coiled material mounting rollers are respectively transversely and rotatably mounted on the coiled material bracket;
the upper clamping press roll and the lower clamping press roll are transversely and rotatably arranged on the clamping press support, and a clamping press gap for a coiled material to pass through is reserved between the upper clamping press roll and the lower clamping press roll;
the conveyor belt is arranged on the cutter frame, two Y-axis cross beams are arranged on the cutter frame and are arranged on the two sides of the conveyor belt, two XYZ three-axis cutting modules are arranged on the two Y-axis cross beams in a translational manner and are arranged at intervals along the Y-axis direction;
each XYZ three-axis cutting module comprises a Y-axis translation seat, a Y-axis translation driving device, an X-axis beam, an X-axis translation seat, an X-axis translation driving device, a Z-axis lifting seat, a Z-axis lifting driving device, a pneumatic vibration cutter head, a cutting knife, a rotary driving device, a round hole punching head and a round hole punching lifting driving device, wherein the Y-axis translation seats are provided with two Y-axis beams and are respectively and translatably arranged on the two Y-axis beams, the Y-axis translation driving device is provided with two Y-axis translation seats which are respectively arranged on the corresponding Y-axis translation seats, the Y-axis translation driving device can respectively drive the respective Y-axis translation seats to translate along the Y-axis direction, the X-axis beam is arranged on the two Y-axis translation seats, the X-axis translation driving device is arranged on the X-axis translation seat and can drive the X-axis translation seat to translate along the X-axis beam, the Z-axis lifting seat is arranged on the X-axis translation seat in a lifting manner, the Z-axis lifting driving device is arranged on the Z-axis lifting seat in a lifting manner, the Z-axis lifting driving device is arranged on the round hole punching head and is in a pneumatic lifting driving device which is arranged on the round hole punching head and is in a rotary manner and is arranged on the round hole punching seat, and is in a pneumatic lifting driving device which is arranged on the round hole punching seat and is in a rotary lifting seat, and is arranged on the round hole, and the round hole punching seat, and the Z-axis lifting driving device is correspondingly arranged on the Z-axis lifting seat;
the projector is arranged on the projection bracket and is positioned above one side of the cutter frame;
the feeding and pressing mechanism comprises a feeding and pressing cylinder and a pressing rod, the feeding and pressing cylinder is downwards connected to an X-axis beam of the XYZ three-axis cutting module close to the coiled material mounting frame, the pressing rod is connected with the feeding and pressing cylinder, and the feeding and pressing cylinder can drive the pressing rod to lift.
As a preferred embodiment, the Y-axis translation driving device comprises a Y-axis translation motor and a Y-axis gear, wherein the Y-axis translation motor is arranged on the Y-axis translation seat, and the Y-axis gear is arranged on an output shaft of the Y-axis translation motor and meshed with a Y-axis rack arranged on the Y-axis beam.
As a preferred embodiment, the X-axis translation driving device comprises an X-axis translation motor and an X-axis gear, wherein the X-axis translation motor is arranged on the X-axis translation seat, and the X-axis gear is arranged on an output shaft of the X-axis translation motor and meshed with an X-axis rack arranged on the X-axis beam.
As a preferred embodiment, the Z-axis lifting driving device comprises a Z-axis lifting motor, a Z-axis lifting screw rod and a Z-axis lifting nut sleeve, wherein the Z-axis lifting screw rod is positioned below the Z-axis lifting motor, the upper end of the Z-axis lifting screw rod is connected with an output shaft of the Z-axis lifting motor, and the Z-axis lifting nut sleeve is in threaded connection with the Z-axis lifting screw rod and is connected with a Z-axis lifting seat.
As a preferred embodiment, the rotary driving device comprises a rotary motor, two belt pulleys and a belt, wherein the two belt pulleys are respectively arranged on an output shaft of the rotary motor and a pneumatic vibration cutter head, and the two belt pulleys are synchronously connected through the belt.
As a preferable implementation mode, the round hole punching lifting driving device is arranged as a round hole punching lifting cylinder, and an output shaft of the round hole punching lifting cylinder is connected with a round hole punching head.
Compared with the prior art, the utility model has the beneficial effects that:
the double-circle punching cutting machine has the advantages that the double-X-axis cross beam and the double-cutting knife module are arranged, double-circle punching cutting has high working efficiency, the side edge of the cutting machine is also provided with the projector, the projector can project a cutting path onto a coiled material before cutting, workers can conveniently preview and adjust cutting positions, and the double-circle punching design can meet the double-circle punching cutting requirements of enterprises.
Drawings
In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, and it is obvious that the drawings in the following description are some embodiments of the present utility model, and other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
FIG. 1 is a schematic diagram of a structure provided by an embodiment of the present utility model;
FIG. 2 is a schematic view of a cutter portion according to an embodiment of the present utility model;
FIG. 3 is a schematic diagram of a Y-axis driving part according to an embodiment of the present utility model;
FIG. 4 is a schematic structural diagram of an X-axis driving part according to an embodiment of the present utility model;
FIG. 5 is a schematic view of a cutting and punching hole according to an embodiment of the present utility model;
fig. 6 is an enlarged view of a structure of a feeding pressing portion according to an embodiment of the present utility model.
Detailed Description
For the purpose of making the objects, technical solutions and advantages of the embodiments of the present utility model more apparent, the technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model, and it is apparent that the described embodiments are some embodiments of the present utility model, but not all embodiments of the present utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1 to 6, an embodiment of the present utility model provides a dual-beam pneumatic knife dual-circle punching vibration knife cutting machine, which includes a coil mounting frame 1 for mounting coils, a pinch roller mechanism 2 for pinching coils, a cutting machine frame 3, a conveyor belt 4, a y-axis beam 5, an xyz three-axis cutting module 6, a feeding and pressing mechanism, and a projector 7, and the structure and the working principle of each component will be described below.
The coil mounting frame 1 is located at the feed end of the cutter frame 3, and the coil mounting frame 1 includes a coil support 11 and a plurality of coil mounting rollers 12, the coil mounting rollers 12 being respectively transversely and rotatably mounted on the coil support 11.
By providing a plurality of web-mounted drums, the cutter is enabled to cut a multi-layer composite web.
The pinch roller mechanism 2 is positioned between the coiled material mounting frame 1 and the cutter frame 3;
the press-clamping roller mechanism 2 may include a press-clamping bracket 21, an upper press-clamping roller 22 and a lower press-clamping roller 23, the upper press-clamping roller 22 and the lower press-clamping roller 23 are both transversely and rotatably mounted on the press-clamping bracket 21, the upper press-clamping roller 22 and the lower press-clamping roller 23 are arranged up and down, and a press-clamping gap for passing the coiled material is left between the upper press-clamping roller 22 and the lower press-clamping roller 23.
The design of the clamping and pressing roller mechanism can be used for clamping and pressing the multi-layer coiled material.
The conveyer belt 4 is installed on the cutter frame 3, and Y axle crossbeam 5 is equipped with two and installs on the cutter frame 3, and Y axle crossbeam 5 is located conveyer belt 4 both sides, and XYZ triaxial cutting module 6 is equipped with two and translatably installs on two Y axle crossbeam 5, and XYZ triaxial cutting module 6 is along Y axle direction interval arrangement.
Each XYZ three-axis cutting module 6 includes a Y-axis translation holder 61, a Y-axis translation driving device, an X-axis beam 63, an X-axis translation holder 64, an X-axis translation driving device, a Z-axis lifting holder 66, a Z-axis lifting driving device, a pneumatic vibrating cutter head 68, a cutter 69, a rotation driving device, a round hole punching head 71, and a round hole punching lifting driving device 72, the Y-axis translation holder 61 is provided with two and is respectively and translatably mounted on the two Y-axis beams 5, the Y-axis translation driving device is provided with two and is respectively mounted on the respective corresponding Y-axis translation holder 61, and the Y-axis translation driving device can respectively drive the respective Y-axis translation holder 61 to translate along the Y-axis direction.
In this embodiment, the Y-axis translational driving device may include a Y-axis translational motor 621 and a Y-axis gear, where the Y-axis translational motor 621 is mounted on the Y-axis translational seat 61, and the Y-axis gear is mounted on an output shaft of the Y-axis translational motor 621 and engaged with the Y-axis rack 51 provided on the Y-axis beam 5.
The X-axis beam 63 is mounted on two Y-axis translation seats 61, the X-axis translation seat 64 is translatably mounted on the X-axis beam 63, and the X-axis translation driving device is mounted on the X-axis translation seat 64 and can drive the X-axis translation seat 64 to translate along the X-axis beam 63.
In this embodiment, the X-axis translation driving device may include an X-axis translation motor 651 and an X-axis gear 652, the X-axis translation motor 651 is mounted on the X-axis translation seat 64, and the X-axis gear 652 is mounted on an output shaft of the X-axis translation motor 651 and is engaged with an X-axis rack 631 provided on the X-axis beam 63.
The Z-axis lifting base 66 is liftably mounted on the X-axis translation base 64, and the Z-axis lifting drive device is mounted on the X-axis translation base 64 and is in driving connection with the Z-axis lifting base 66.
Specifically, the Z-axis lifting driving device may include a Z-axis lifting motor 671, a Z-axis lifting screw 672 and a Z-axis lifting nut sleeve, the Z-axis lifting screw 672 is located below the Z-axis lifting motor 671, the upper end of the Z-axis lifting screw 672 is connected to the output shaft of the Z-axis lifting motor 671, and the Z-axis lifting nut sleeve is screwed on the Z-axis lifting screw 672 and is connected to the Z-axis lifting seat 66.
The pneumatic vibration tool bit 68 is longitudinally and rotatably mounted on the Z-axis lifting seat 66, the cutting tool 69 is mounted at the lower end of the pneumatic vibration tool bit 68, and the rotary driving device is mounted on the Z-axis lifting seat 66 and is in transmission connection with the pneumatic vibration tool bit 68.
As shown in fig. 5, the rotary driving device includes a rotary electric machine 701, a pulley 702 and a belt 703, the pulley 702 is provided with two pulleys and is respectively mounted on an output shaft of the rotary electric machine 701 and the pneumatically vibrated blade 68, and the two pulleys 702 are synchronously connected by the belt 703.
The round hole punching lifting driving device 72 is provided with two round hole punching lifting driving devices which are installed on the X-axis translation seat 64 and located on the side edge of the Z-axis lifting seat 66, the round hole punching heads 71 are provided with two round hole punching lifting driving devices 72 which are respectively corresponding to the round hole punching lifting driving devices, and the round hole punching lifting driving devices 72 can respectively drive the round hole punching heads 71 to ascend and descend.
As shown in fig. 5, the round hole punching lift driving device 72 is provided as a round hole punching lift cylinder, and an output shaft of the round hole punching lift cylinder is connected with the round hole punching head 71.
The projector 7 is mounted on a projection bracket 9 and is located above one side of the cutter frame 3.
The feeding and pressing mechanism comprises a feeding and pressing cylinder 101 and a pressing rod 102, the feeding and pressing cylinder 101 is downwards connected to an X-axis beam 63 of the XYZ three-axis cutting module 6 close to the coil mounting frame 1, the pressing rod 102 is connected with the feeding and pressing cylinder 101, and the feeding and pressing cylinder 101 can drive the pressing rod 102 to lift.
Before the work, the user accessible projecting apparatus is with cutting route projection to the coiled material on to preview the cutting condition in advance, a plurality of coiled materials are installed respectively on coiled material installation cylinder, then one end of all coiled materials is passed through in proper order between last press roll and the lower press roll that presss from both sides, between material loading lower pressure mechanism and the conveyer belt, when the pay-off, the material loading lower pressure cylinder drives the depression bar and descends for the depression bar compresses tightly the one end of coiled material between it and conveyer belt, later conveyer belt operation and depression bar cooperate to transfer the coiled material to the cutting station, and two XYZ triaxial cutting modules just can cut the coiled material simultaneously this moment.
In summary, the double-cutter cutting machine has the advantages of simple and novel structure and reasonable design, the double-X-axis cross beam and the double-cutter module are arranged, double-cutter cutting has the advantage of high working efficiency, the projector is further arranged on the side edge of the cutting machine, the projector can project a cutting path onto a coiled material before cutting, the worker can conveniently preview and adjust the cutting position, and the double-circle punching design can meet the double-circle punching cutting requirement of enterprises.
The above examples are preferred embodiments of the present utility model, but the embodiments of the present utility model are not limited to the above examples, and any other changes, modifications, substitutions, combinations, and simplifications that do not depart from the spirit and principle of the present utility model should be made in the equivalent manner, and the embodiments are included in the protection scope of the present utility model.

Claims (6)

1. The utility model provides a two circle punching vibration sword cutting machines of two crossbeam air knife which characterized in that: the automatic feeding device comprises a coiled material mounting frame (1) for mounting coiled materials, a clamping and pressing roller mechanism (2) for clamping and pressing the coiled materials, a cutter frame (3), a conveying belt (4), a Y-axis cross beam (5), an XYZ three-axis cutting module (6), a feeding and pressing mechanism and a projector (7), wherein the coiled material mounting frame (1) is positioned at the feeding end of the cutter frame (3), and the clamping and pressing roller mechanism (2) is positioned between the coiled material mounting frame (1) and the cutter frame (3);
the coil mounting frame (1) comprises a coil bracket (11) and a plurality of coil mounting rollers (12), wherein the coil mounting rollers (12) are respectively transversely and rotatably mounted on the coil bracket (11);
the press-clamping roller mechanism (2) comprises a press-clamping bracket (21), an upper press-clamping roller (22) and a lower press-clamping roller (23), the upper press-clamping roller (22) and the lower press-clamping roller (23) are transversely and rotatably arranged on the press-clamping bracket (21), the upper press-clamping roller (22) and the lower press-clamping roller (23) are arranged up and down, and a press-clamping gap for a coiled material to pass through is reserved between the upper press-clamping roller (22) and the lower press-clamping roller (23);
the conveyor belt (4) is arranged on the cutter frame (3), two Y-axis cross beams (5) are arranged on the cutter frame (3), the Y-axis cross beams (5) are positioned on two sides of the conveyor belt (4), two XYZ three-axis cutting modules (6) are arranged on the two Y-axis cross beams (5) in a translational manner, and the XYZ three-axis cutting modules (6) are arranged at intervals along the Y-axis direction;
each XYZ three-axis cutting module (6) comprises a Y-axis translation seat (61), a Y-axis translation driving device, an X-axis cross beam (63), an X-axis translation seat (64), an X-axis translation driving device, a Z-axis lifting seat (66), a Z-axis lifting driving device, a pneumatic vibration cutter head (68), a cutting knife (69), a rotary driving device, a round hole punching head (71) and a round hole punching lifting driving device (72), wherein the Y-axis translation seat (61) is provided with two Y-axis cross beams (5) which are respectively and translatably arranged, the Y-axis translation driving device is provided with two Y-axis translation seats (61) which are respectively arranged on the Y-axis translation seat (61), the Y-axis translation driving device can respectively drive the respective Y-axis translation seat (61) to translate along the Y-axis direction, the X-axis cross beam (63) is arranged on the two Y-axis translation seats (61), the X-axis translation seat (64) is translatably arranged on the X-axis cross beam (63), the X-axis translation driving device is arranged on the X-axis translation seat (64) and can be translatably arranged on the X-axis cross beam (63), the X-axis translation driving device (64) can be translatably arranged on the Z-axis translation seat (64) along the Z-axis translation seat (64) and is translatably arranged on the Z-axis translation seat (64), the Z-axis translation seat (66) and can be translatably and translatably arranged on the Z-axis translation seat (66), the cutting knife (69) is arranged at the lower end of the pneumatic vibration tool bit (68), the rotary driving device is arranged on the Z-axis lifting seat (66) and is in transmission connection with the pneumatic vibration tool bit (68), the round hole punching lifting driving device (72) is provided with two round hole punching heads (71) which are arranged on the X-axis translation seat (64) and are positioned at the side edge of the Z-axis lifting seat (66), the round hole punching heads (71) are provided with two round hole punching lifting driving devices (72) which are respectively arranged on the round hole punching heads (71) which are respectively corresponding to each other, and the round hole punching lifting driving devices (72) can respectively drive the round hole punching heads (71) to lift up and down;
the projector (7) is arranged on the projection bracket (9) and is positioned above one side of the cutter frame (3);
the feeding and pressing mechanism comprises a feeding and pressing cylinder (101) and a pressing rod (102), wherein the feeding and pressing cylinder (101) is downwards connected to an X-axis beam (63) of an XYZ three-axis cutting module (6) close to a coil mounting frame (1), the pressing rod (102) is connected with the feeding and pressing cylinder (101), and the feeding and pressing cylinder (101) can drive the pressing rod (102) to lift.
2. The double-beam pneumatic knife double-circle impact vibration knife cutting machine according to claim 1, wherein: the Y-axis translation driving device comprises a Y-axis translation motor (621) and a Y-axis gear, wherein the Y-axis translation motor (621) is arranged on the Y-axis translation seat (61), and the Y-axis gear is arranged on an output shaft of the Y-axis translation motor (621) and meshed with a Y-axis rack (51) arranged on the Y-axis beam (5).
3. The double-beam pneumatic knife double-circle impact vibration knife cutting machine according to claim 1, wherein: the X-axis translation driving device comprises an X-axis translation motor (651) and an X-axis gear (652), the X-axis translation motor (651) is arranged on an X-axis translation seat (64), and the X-axis gear (652) is arranged on an output shaft of the X-axis translation motor (651) and meshed with an X-axis rack (631) arranged on an X-axis cross beam (63).
4. The double-beam pneumatic knife double-circle impact vibration knife cutting machine according to claim 1, wherein: the Z-axis lifting driving device comprises a Z-axis lifting motor (671), a Z-axis lifting screw rod (672) and a Z-axis lifting nut sleeve, wherein the Z-axis lifting screw rod (672) is positioned below the Z-axis lifting motor (671), the upper end of the Z-axis lifting screw rod (672) is connected with the output shaft of the Z-axis lifting motor (671), and the Z-axis lifting nut sleeve is in threaded connection with the Z-axis lifting screw rod (672) and is connected with a Z-axis lifting seat (66).
5. The double-beam pneumatic knife double-circle impact vibration knife cutting machine according to claim 1, wherein: the rotary driving device comprises a rotary motor (701), belt pulleys (702) and a belt (703), wherein the belt pulleys (702) are provided with two belt pulleys and are respectively arranged on an output shaft of the rotary motor (701) and a pneumatic vibration cutter head (68), and the two belt pulleys (702) are synchronously connected through the belt (703).
6. The double-beam pneumatic knife double-circle impact vibration knife cutting machine according to claim 1, wherein: the round hole punching lifting driving device (72) is arranged to be a round hole punching lifting cylinder, and an output shaft of the round hole punching lifting cylinder is connected with the round hole punching head (71).
CN202321582496.9U 2023-06-20 2023-06-20 Double-beam pneumatic knife double-circle punching vibration knife cutting machine Active CN220638049U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321582496.9U CN220638049U (en) 2023-06-20 2023-06-20 Double-beam pneumatic knife double-circle punching vibration knife cutting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321582496.9U CN220638049U (en) 2023-06-20 2023-06-20 Double-beam pneumatic knife double-circle punching vibration knife cutting machine

Publications (1)

Publication Number Publication Date
CN220638049U true CN220638049U (en) 2024-03-22

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ID=90287880

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321582496.9U Active CN220638049U (en) 2023-06-20 2023-06-20 Double-beam pneumatic knife double-circle punching vibration knife cutting machine

Country Status (1)

Country Link
CN (1) CN220638049U (en)

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