CN103252809B - Full-automatic numerical control jump cuts machine - Google Patents

Full-automatic numerical control jump cuts machine Download PDF

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Publication number
CN103252809B
CN103252809B CN201310150822.3A CN201310150822A CN103252809B CN 103252809 B CN103252809 B CN 103252809B CN 201310150822 A CN201310150822 A CN 201310150822A CN 103252809 B CN103252809 B CN 103252809B
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base plate
jumping
platform
upper bolster
full
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CN201310150822.3A
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CN103252809A (en
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孙智
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Dongguan Heshuo Precision Hardware Technology Co ltd
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Individual
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Abstract

The present invention discloses a kind of Full-automatic numerical control jump and cuts machine, includes body, transmission mechanism, mair motor, pressing mechanism and upper bolster, the base plate of this body is provided with jumping and cuts platform, cuts platform for this jumping, is provided with top cutter mechanism in base plate.By this, first, by coordinating the upper-lower position utilizing servomotor, turbine and worm screw fine setting upper bolster, to realize electric pressuring, achieving numerically controlled automatic operation, saving manual debugging pressurization, flexible to operation; Secondly, coordinate the cutter mechanism fine setting jumping of utilization top to cut the depth of parallelism between platform and upper bolster, to realize fine positioning, stability is better, can accomplish disconnected, partly disconnected large format material and elastomeric material (thicker) the processing entirely of the dual-purpose high accuracy of coiled material, sheet material; Moreover by being provided with clutch, make mair motor to adopt common electric machine, cost is lower, speed is faster, and ton force is larger, more easily cuts off material.<pb pnum="1" />

Description

Full-automatic numerical control jump cuts machine
Technical field
The present invention relates to jumping and cut process equipment art, refer in particular to a kind of Full-automatic numerical control jump and cut machine.
Background technology
Jumping is cut process technology and is widely used in medical treatment, automobile, electronics, electrical equipment, product manufacturing field, and especially plane manufactures field, jumps that to cut processed and applied more extensive.
Traditional large-scale jumping is cut machine and is not possessed electric pressuring condition, it generally ensures its precision by the depth of parallelism between adjustment cutter and platform in assembling process, equipment operating is extremely loaded down with trivial details, dumb, inconvenient, and, because existing equipment can not full-automaticly pressurize and finely tune the depth of parallelism of jumping and cutting platform and upper bolster, it is caused not to be suitable for disconnected, partly disconnected large format material and elastomeric material (thicker) the processing entirely of coiled material, the dual-purpose high accuracy of sheet material, and its speed is low, be unwell to the processing of short delivery phase in enormous quantities.
Secondly, it is adopt tapered block and coordinating between inclined-plane that equipment is cut in this kind of traditional jumping, and in equipment running process, pole does not possess stability, and under the large ton force of equipment, tapered block easily loosens, positioning, does not have fine positioning.
Moreover the direct flywheel driven of mair motor that traditional this kind of equipment adopts, do not install arrangement of clutch, what mair motor adopted is brake motor, and one to carry out cost high, and two to carry out speed low, and three to carry out ton force little, runs into thicker material and just can't cut.
Summary of the invention
In view of this, the present invention is directed to the disappearance of prior art existence, its main purpose is to provide a kind of Full-automatic numerical control jump and cuts machine, and it can effectively solve, and existing jumping is cut machine and had that speed is low, poor stability and need manual debugging to pressurize to cause the problems such as operation inconvenience.
For achieving the above object, the present invention adopts following technical scheme:
A kind of Full-automatic numerical control jump cuts machine, includes
Body, this body includes left wallboard, right wallboard, support bar and base plate, this support bar is connected between the lower end of left wallboard and the lower end of right wallboard, this base plate is connected between the upper end of left wallboard and the upper end of right wallboard, the surface of this base plate is provided with jumping and cuts platform, enclosed by this left wallboard, right wallboard, support bar and base plate and form an accommodation space;
Transmission mechanism, this transmission mechanism is positioned at aforementioned accommodation space, this transmission mechanism includes transmission main shaft, flywheel, clutch and two connecting rods, and this flywheel to be fixed on transmission main shaft and to be connected with clutch, and this two connecting rod is all installed on the two ends of transmission main shaft respectively by an eccentric wheel;
Mair motor, this mair motor is positioned at aforementioned accommodation space and is connected with clutch;
Pressing mechanism, this pressing mechanism includes turbine, worm screw and two torque arm, this two torque arm is all from top to bottom through base plate connecting with aforementioned corresponding connecting rod respectively, and this turbine and worm screw to be arranged in two torque arm and to be positioned at the top that platform is cut in jumping, and this turbine and worm screw are driven by a servomotor;
Upper bolster, this upper bolster is positioned to jump to be cut directly over platform, and aforementioned turbine and worm screw impel upper bolster fine setting to move up and down;
And, cutting platform for aforementioned jumping, being provided with on base plate for finely tuning the top cutter mechanism of jumping and cutting the depth of parallelism between platform and upper bolster.
As a kind of preferred version, described top cutter mechanism includes pushing tow assembly, argues for the sake of arguing and drives cylinder body; This pushing tow assembly includes guide holder, thimble, regulating spring cap and spring, and this base plate is provided with through hole, and this guide holder is fixed in this through hole; The upper end of this thimble props up jumping through guide holder and cuts platform; This regulating spring cap is installed on the lower end of thimble; This spring is placed on outside thimble, and the two ends of this spring are butted between regulating spring cap and guide holder respectively; This is argued for the sake of arguing and is positioned at the below of thimble; This driving cylinder body is fixed on base plate, this driving cylinder body impel argue for the sake of arguing on carry making to argue for the sake of arguing and act on the lower surface of thimble, thus make thimble upwards withstand jumping to cut platform and up move.
As a kind of preferred version, described pushing tow assembly is multiple, and the plurality of pushing tow assembly is between left and right every being distributed on base plate.
As a kind of preferred version, described driving cylinder body is that vapour-pressure type drives cylinder body.
As a kind of preferred version, on described base plate, the left and right sides is provided with slide, and this upper bolster is up and down along this two slide.
As a kind of preferred version, each torque arm described is provided with voltage regulating meter.
As a kind of preferred version, the upper left right septum of described upper bolster has been arranged side by side multiple toolsetting handwheel, and the side of each regulating hand wheel of pressure corresponding is other is provided with voltage regulating meter.
As a kind of preferred version, described worm screw is provided with regulating hand wheel of pressure.
As a kind of preferred version, described body is provided with protective cover, outside this protective cover, covers this upper bolster and pressing mechanism.
As a kind of preferred version, the front and back sides of described body is provided with conveyer belt guide wheel, and the top that platform is cut in this jumping is provided with drawing-inroller, and this drawing-inroller is positioned at by the side of upper bolster.
The present invention compared with prior art has obvious advantage and beneficial effect, specifically, as shown from the above technical solution:
First, by coordinating the upper-lower position utilizing servomotor, turbine and worm screw fine setting upper bolster, to realize electric pressuring, achieving numerically controlled automatic operation, saving manual debugging pressurization, flexible to operation; Secondly, coordinate the cutter mechanism fine setting jumping of utilization top to cut the depth of parallelism between platform and upper bolster, to realize fine positioning, stability is better, can accomplish disconnected, partly disconnected large format material and elastomeric material (thicker) the processing entirely of the dual-purpose high accuracy of coiled material, sheet material; Moreover by being provided with clutch, make mair motor to adopt common electric machine, cost is lower, speed is faster, and ton force is larger, more easily cuts off material.
For more clearly setting forth architectural feature of the present invention and effect, below in conjunction with accompanying drawing and specific embodiment, the present invention is described in detail:
Accompanying drawing explanation
Fig. 1 is the assembling schematic perspective view of the preferred embodiment of the present invention;
Fig. 2 is the assembling schematic perspective view of another angle of preferred embodiment of the present invention;
Fig. 3 is the sectional view of the preferred embodiment of the present invention;
Fig. 4 is the enlarged diagram of pressing mechanism in the preferred embodiment of the present invention;
Fig. 5 is the enlarged diagram pushing up cutter mechanism in the preferred embodiment of the present invention;
Fig. 6 is the enlarged diagram of transmission mechanism in the preferred embodiment of the present invention.
Accompanying drawing identifier declaration:
10, body 11, left wallboard
12, right wallboard 13, support bar
14, platform is cut in base plate 15, jumping
16, slide 17, protective cover
18, conveyer belt guide wheel 19, drawing-inroller
101, accommodation space 20, transmission mechanism
21, transmission main shaft 22, flywheel
23, clutch 24, connecting rod
25, eccentric wheel 30, mair motor
40, pressing mechanism 41, turbine
42, worm screw 43, torque arm
44, servomotor 45, voltage regulating meter
46, regulating hand wheel of pressure 50, upper bolster
51, toolsetting handwheel 52, voltage regulating meter
60, cutter mechanism 61, pushing tow assembly is pushed up
611, guide holder 612, thimble
613, regulating spring cap 614, spring
62, argue for the sake of arguing 63, drive cylinder body
Detailed description of the invention
Please refer to shown in Fig. 1 to Fig. 6, that show the concrete structure of the preferred embodiment of the present invention, include body 10, transmission mechanism 20, mair motor 30, pressing mechanism 40 and upper bolster 50.
Wherein, this body 10 includes left wallboard 11, right wallboard 12, support bar 13 and base plate 14, between the lower end that this support bar 13 is connected to left wallboard 11 and the lower end of right wallboard 12, between the upper end that this base plate 14 is connected to left wallboard 11 and the upper end of right wallboard 12, the surface of this base plate 14 is provided with jumping and cuts platform 15, enclosed by this left wallboard 11, right wallboard 12, support bar 13 and base plate 14 and form an accommodation space 101.
This transmission mechanism 20 is positioned at aforementioned accommodation space 101, this transmission mechanism 20 includes transmission main shaft 21, flywheel 22, clutch 23 and two connecting rods 24, this flywheel 22 to be fixed on transmission main shaft 21 and to be connected with clutch 23, and this two connecting rod 24 is all installed on the two ends of transmission main shaft 21 respectively by an eccentric wheel 25.
This mair motor 30 is positioned at aforementioned accommodation space 101 and is connected with clutch 23.
This pressing mechanism 40 includes turbine 41, worm screw 42 and two torque arm 43, this two torque arm 43 also connects with aforementioned corresponding connecting rod 24 respectively through bottom plate 14 all from top to bottom, this turbine 41 and worm screw 42 to be arranged in two torque arm 43 and to be positioned at the top of jumping and cutting platform 15, and this turbine 41 and worm screw 42 are driven by a servomotor 44; Further, this each torque arm 43 is provided with voltage regulating meter 45, to monitor the size of actual pressure; And, this worm screw 42 is provided with regulating hand wheel of pressure 46, to carry out suitably regulating in time to pressure.
This upper bolster 50 is positioned to jump to be cut directly over platform 15, and aforementioned turbine 41 and worm screw 42 impel upper bolster 50 fine setting to move up and down.In bottom plate 14, the left and right sides is provided with slide 16, and this upper bolster 50 is up and down along this two slide 16; And the upper left right septum of this upper bolster 50 has been arranged side by side multiple toolsetting handwheel 51, the side of each regulating hand wheel of pressure 51 corresponding is other has been provided with voltage regulating meter 52, reasonably to regulate pressure to the cutter in upper bolster 50.
And, cutting platform 15 for aforementioned jumping, being provided with for finely tuning the top cutter mechanism 60 of jumping and cutting the depth of parallelism between platform 15 and upper bolster 50 on base plate 14; Concrete and say, in the present embodiment, this top cutter mechanism 60 includes pushing tow assembly 61, argue for the sake of arguing 62 and drive cylinder body 63; This pushing tow assembly 61 is multiple, the plurality of pushing tow assembly 61 is between left and right every being distributed on base plate 14, this each pushing tow assembly 61 includes guide holder 611, thimble 612, regulating spring cap 613 and spring 614, and this base plate 14 is provided with through hole, and this guide holder 611 is fixed in this through hole; The upper end of this thimble 612 props up jumping through guide holder 611 and cuts platform 15; This regulating spring cap 613 is installed on the lower end of thimble 612; This spring 614 is placed on outside thimble 612, and the two ends of this spring 614 are butted between regulating spring cap 613 and guide holder 611 respectively; These 62 belows being positioned at thimble 612 of arguing for the sake of arguing; This driving cylinder body is that vapour-pressure type drives cylinder body, certainly be not limited to vapour-pressure type and drive cylinder body, also can be fluid pressure type and drive cylinder body, this driving cylinder body 63 is fixed on base plate 14, this driving cylinder body 63 impels argues for the sake of arguing that carrying on 62 makes to argue for the sake of arguing 62 acts on the lower surface of thimble 612, thus makes thimble 612 upwards withstand jumping to cut platform 15 and up move; When thimble 612 is left in 62 downward activities of arguing for the sake of arguing, this spring 614 impels thimble 612 to reset downwards, thus makes to jump and cut the moved downward of platform 15 at self gravitation.
In addition, this body 10 is provided with protective cover 17, covers this upper bolster 50 and pressing mechanism 40 outside this protective cover 17, to realize safety work better.
In addition, the front and back sides of this body 10 is provided with conveyer belt guide wheel 18, and the top that platform 15 is cut in this jumping is provided with drawing-inroller 19, and this drawing-inroller 19 is positioned at by the side of upper bolster 50, and this conveyer belt guide wheel 18 and drawing-inroller 19 are all for carrying material to be cut.
The course of work that the present embodiment is described in detail in detail is as follows:
During work, first, utilize top cutter mechanism 60 to regulate the depth of parallelism of jumping and cutting between platform 15 and upper bolster 50 according to the material characteristic of material to be cut, specifically say, pulling under the effect driving cylinder body 63 pulling force argues for the sake of arguing 62 up carries, and thimble 612 fore-set is jumped cut platform 15 up to move; Simultaneously, as required, servomotor 44 can be started, drives turbine 41 and worm screw 42 by servomotor 44, turbine 41 and worm screw 42 is utilized to finely tune the upper-lower position of upper bolster 50, upper bolster 50 to be adjusted the downforce obtaining suitable size a most suitable position; When the upper-lower position of upper bolster 50 and upper bolster 50 and jump after the depth of parallelism of cutting between platform 15 adjusts, coordinate immediately below material warp let-off upper bolster 50 to be cut by drawing-inroller 19 and conveyer belt guide wheel 18, simultaneously, mair motor 30 is started working, under mair motor 30 outputting power, drive two torque arm 43 to move up and down by transmission mechanism 20, and hauled upper bolster 50 and moved up and down along slide 16 and complete by moving up and down of torque arm operation is cut to the jumping of material.
Design focal point of the present invention is: first, by coordinating the upper-lower position utilizing servomotor, turbine and worm screw fine setting upper bolster, to realize electric pressuring, achieving numerically controlled automatic operation, saving manual debugging pressurization, flexible to operation; Secondly, coordinate the cutter mechanism fine setting jumping of utilization top to cut the depth of parallelism between platform and upper bolster, to realize fine positioning, stability is better, can accomplish disconnected, partly disconnected large format material and elastomeric material (thicker) the processing entirely of the dual-purpose high accuracy of coiled material, sheet material; Moreover by being provided with clutch, make mair motor to adopt common electric machine, cost is lower, speed is faster, and ton force is larger, more easily cuts off material.
The above, it is only preferred embodiment of the present invention, not technical scope of the present invention is imposed any restrictions, thus every above embodiment is done according to technical spirit of the present invention any trickle amendment, equivalent variations and modification, all still belong in the scope of technical solution of the present invention.

Claims (9)

1. Full-automatic numerical control jump cuts a machine, it is characterized in that: include
Body, this body includes left wallboard, right wallboard, support bar and base plate, this support bar is connected between the lower end of left wallboard and the lower end of right wallboard, this base plate is connected between the upper end of left wallboard and the upper end of right wallboard, the surface of this base plate is provided with jumping and cuts platform, enclosed by this left wallboard, right wallboard, support bar and base plate and form an accommodation space;
Transmission mechanism, this transmission mechanism is positioned at aforementioned accommodation space, this transmission mechanism includes transmission main shaft, flywheel, clutch and two connecting rods, and this flywheel to be fixed on transmission main shaft and to be connected with clutch, and this two connecting rod is all installed on the two ends of transmission main shaft respectively by an eccentric wheel;
Mair motor, this mair motor is positioned at aforementioned accommodation space and is connected with clutch;
Pressing mechanism, this pressing mechanism includes turbine, worm screw and two torque arm, this two torque arm is all from top to bottom through base plate connecting with aforementioned corresponding connecting rod respectively, and this turbine and worm screw to be arranged in two torque arm and to be positioned at the top that platform is cut in jumping, and this turbine and worm screw are driven by a servomotor;
Upper bolster, this upper bolster is positioned to jump to be cut directly over platform, and aforementioned turbine and worm screw impel upper bolster fine setting to move up and down;
And, cutting platform for aforementioned jumping, being provided with for finely tuning the top cutter mechanism of jumping and cutting the depth of parallelism between platform and upper bolster on base plate;
Described top cutter mechanism includes pushing tow assembly, argues for the sake of arguing and drives cylinder body; This pushing tow assembly includes guide holder, thimble, regulating spring cap and spring, and this base plate is provided with through hole, and this guide holder is fixed in this through hole; The upper end of this thimble props up jumping through guide holder and cuts platform; This regulating spring cap is installed on the lower end of thimble; This spring is placed on outside thimble, and the two ends of this spring are butted between regulating spring cap and guide holder respectively; This is argued for the sake of arguing and is positioned at the below of thimble; This driving cylinder body is fixed on base plate, this driving cylinder body impel argue for the sake of arguing on carry making to argue for the sake of arguing and act on the lower surface of thimble, thus make thimble upwards withstand jumping to cut platform and up move.
2. Full-automatic numerical control jump according to claim 1 cuts machine, it is characterized in that: described pushing tow assembly is multiple, and the plurality of pushing tow assembly is between left and right every being distributed on base plate.
3. Full-automatic numerical control jump according to claim 1 cuts machine, it is characterized in that: described driving cylinder body is that vapour-pressure type drives cylinder body.
4. Full-automatic numerical control jump according to claim 1 cuts machine, it is characterized in that: on described base plate, the left and right sides is provided with slide, and this upper bolster is up and down along this two slide.
5. Full-automatic numerical control jump according to claim 1 cuts machine, it is characterized in that: each torque arm described is provided with voltage regulating meter.
6. Full-automatic numerical control jump according to claim 1 cuts machine, it is characterized in that: the upper left right septum of described upper bolster has been arranged side by side multiple toolsetting handwheel, and the side of each regulating hand wheel of pressure corresponding is other is provided with voltage regulating meter.
7. Full-automatic numerical control jump according to claim 1 cuts machine, it is characterized in that: described worm screw is provided with regulating hand wheel of pressure.
8. the Full-automatic numerical control jump stated according to claim 1 cuts machine, it is characterized in that: described body is provided with protective cover, covers this upper bolster and pressing mechanism outside this protective cover.
9. the Full-automatic numerical control jump stated according to claim 1 cuts machine, it is characterized in that: the front and back sides of described body is provided with conveyer belt guide wheel, and the top that platform is cut in this jumping is provided with drawing-inroller, and this drawing-inroller is positioned at by the side of upper bolster.
CN201310150822.3A 2013-04-26 2013-04-26 Full-automatic numerical control jump cuts machine Active CN103252809B (en)

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CN103252809B true CN103252809B (en) 2015-10-28

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Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106863458B (en) * 2017-03-01 2018-10-23 苏州三久光电科技有限公司 A kind of jump cutting process of film product

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2353501Y (en) * 1998-12-23 1999-12-15 展承油压企业有限公司 Structure-improved punching machine of polypropylene
GB2400067A (en) * 2003-03-26 2004-10-06 Sbl Machinery Co Ltd Cutting and creasing machine, workbench central drive linkage
CN2866048Y (en) * 2005-08-30 2007-02-07 吴昌宏 Servo punching cutting machine
CN201175933Y (en) * 2008-04-01 2009-01-07 戴爱媛 Plastic former
CN201505954U (en) * 2009-10-16 2010-06-16 孙强 High-speed punching machine
CN201629300U (en) * 2010-02-11 2010-11-10 东莞朗诚模具有限公司 Full-automatic high speed IC trimming system
CN202517531U (en) * 2012-04-21 2012-11-07 周为兵 Horizontal edge-trimming machine

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2353501Y (en) * 1998-12-23 1999-12-15 展承油压企业有限公司 Structure-improved punching machine of polypropylene
GB2400067A (en) * 2003-03-26 2004-10-06 Sbl Machinery Co Ltd Cutting and creasing machine, workbench central drive linkage
CN2866048Y (en) * 2005-08-30 2007-02-07 吴昌宏 Servo punching cutting machine
CN201175933Y (en) * 2008-04-01 2009-01-07 戴爱媛 Plastic former
CN201505954U (en) * 2009-10-16 2010-06-16 孙强 High-speed punching machine
CN201629300U (en) * 2010-02-11 2010-11-10 东莞朗诚模具有限公司 Full-automatic high speed IC trimming system
CN202517531U (en) * 2012-04-21 2012-11-07 周为兵 Horizontal edge-trimming machine

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Effective date of registration: 20150928

Address after: 523000 Guangdong province Dongguan City Qiaotou town of Deng Wu Cun long road bridge (Lake Industrial Zone) No. 32 first floor of building A

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Address before: 523000 Guangdong province Dongguan City Qiaotou town Jing Lian community Xinyi Road No. 191

Applicant before: Sun Zhi

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Address after: 523000 Building 2, No. 11, qiaotouqiao new road, Qiaotou town, Dongguan City, Guangdong Province

Patentee after: DONGGUAN HESHUO PRECISION HARDWARE TECHNOLOGY CO.,LTD.

Address before: 523000 Guangdong province Dongguan City Qiaotou town of Deng Wu Cun long road bridge (Lake Industrial Zone) No. 32 first floor of building A

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