CN208556364U - Laser cutting device - Google Patents

Laser cutting device Download PDF

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Publication number
CN208556364U
CN208556364U CN201821137196.9U CN201821137196U CN208556364U CN 208556364 U CN208556364 U CN 208556364U CN 201821137196 U CN201821137196 U CN 201821137196U CN 208556364 U CN208556364 U CN 208556364U
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CN
China
Prior art keywords
cutting head
guiding rail
cutting device
laser cutting
blanking punch
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Active
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CN201821137196.9U
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Chinese (zh)
Inventor
张华成
欧永发
郑其锋
王军
卓劲松
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Gd Han's Yueming Laser Group Co Ltd
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Gd Han's Yueming Laser Group Co Ltd
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Priority to CN201821137196.9U priority Critical patent/CN208556364U/en
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Abstract

The utility model relates to a kind of laser cutting devices, including two Y-direction guide rails, blanking punch group;Blanking punch group includes X direction guiding rail, the first cutting head being slidably installed on X direction guiding rail and the second cutting head, the X for driving the first cutting head and the second cutting head to move along the X direction guiding rail to mobile mechanism and connects the X of the second cutting head to driving mechanism;The both ends of X direction guiding rail are separately positioned in two Y-direction guide rails.Above-mentioned laser cutting device drives the first cutting head and the second cutting head to move simultaneously along X direction guiding rail by X to mobile mechanism, it drives the second cutting head along X direction guiding rail to driving mechanism by X and opposite first cutting head moves, to which the second cutting head can be moved synchronously with the first cutting head, second cutting head can also be moved with respect to the first cutting head, it is able to achieve each workspace to the wider cutting pattern of breadth while carrying out cutting work, be conducive to improve working efficiency.

Description

Laser cutting device
Technical field
The utility model relates to laser cutting technique fields, more particularly to a kind of laser cutting device.
Background technique
Laser cutting is the laser launched from laser, through light path system, is focused into the laser beam of high power density.Swash Light beam is irradiated to workpiece surface, so that workpiece is reached fusing point or boiling point, while the high pressure gas in the same direction with light beam will melt or gasification Metal is blown away.With the movement of light beam and workpiece relative position, laser cutting process is with sightless light beam instead of tradition Mechanical blades, have precision high, the features such as Automatic Typesetting saves material, and notch is smooth, and processing cost is low, be widely used to each A cutting industrial circle.
For traditional double crossbeam laser cutting devices, opposite can not be carried out between multiple cutting heads on same crossbeam It is mobile, can only synchronizing moving, cutting pattern wider for breadth, can not each workspace to figure cut simultaneously, Working efficiency is low.
Utility model content
Based on this, it is necessary to relatively-movable before providing a kind of cutting head to swash aiming at the problem that current traditional technology Light cutter device.
A kind of laser cutting device, including two Y-direction guide rails, blanking punch group;The blanking punch group include X direction guiding rail, cunning set The first cutting head and the second cutting head on the X direction guiding rail, for driving first cutting head and second cutting The X that head is moved along the X direction guiding rail is to the X of mobile mechanism and connection second cutting head to driving mechanism;The X to The both ends of guide rail are separately positioned in two Y-direction guide rails, and the X is to driving mechanism for driving second cutting head along institute State X direction guiding rail and the relatively described first cutting head movement.
Above-mentioned laser cutting device drives the first cutting head and the second cutting head simultaneously along guide X by X to mobile mechanism Rail movement drives the second cutting head along X direction guiding rail and opposite first cutting head moves, so that second cuts by X to driving mechanism Cutting head can move synchronously with the first cutting head, and the second cutting head can also be moved with respect to the first cutting head, be able to achieve to breadth Each workspace of wider cutting pattern carries out cutting work simultaneously, is conducive to improve working efficiency.
The quantity of the blanking punch group two in one of the embodiments, two blanking punch group relative spacings are set It sets.
The X includes two synchronizing wheels, is set in two synchronizing wheels to mobile mechanism in one of the embodiments, Synchronous belt, the power mechanism with a synchronizing wheel transmission connection, two synchronizing wheel are separately positioned on the two of the X direction guiding rail End.
In one of the embodiments, the X to driving mechanism include the X that is slidably installed on the X direction guiding rail to slide, peace Mounted in X of the X on slide to pinch roller and X to transmission mechanism, be mounted on X of the X on transmission mechanism to runner, with And it is set in the X to X on pinch roller of runner and the X to transmission belt, the X is to transmission belt and the synchronous belt friction Contact, second cutting head are connect with the X to slide.
The bottom of the X direction guiding rail is provided with two X to guide rod in one of the embodiments, and two X distinguish to guide rod It is located at the two sides of the X direction guiding rail;The X is provided at least two X to directive wheel, at least two institutes to the bottom of slide X is stated to directive wheel respectively with two X to guide rod sliding contact.
It in one of the embodiments, further include for driving the blanking punch group to move along the Y-direction that the Y-direction guide rail moves Motivation structure.
Belt is provided in the Y-direction guide rail in one of the embodiments,;The Y-direction mobile mechanism is sliding including two Y-directions Seat, the Y-direction pinch roller being mounted on the Y-direction slide and Y-direction transmission mechanism, the Y-direction being mounted on the Y-direction transmission mechanism turn Wheel and the Y-direction transmission belt being set on the Y-direction pinch roller and the Y-direction runner;The two Y-direction slides are slidably installed in respectively In the Y-direction guide rail, the Y-direction transmission belt is contacted with the belt friction, the both ends of the X direction guiding rail respectively with the Y-direction Slide connection.
Synchronizing shaft is connected between the two Y-direction runners in one of the embodiments,.
It in one of the embodiments, further include the projector being arranged in above the blanking punch group.
It in one of the embodiments, further include the vision system being arranged in above the blanking punch group.
Detailed description of the invention
Fig. 1 is the structural schematic diagram of the laser cutting device of a better embodiment of the utility model;
Fig. 2 is the blanking punch group of the laser cutting device of Fig. 1 and the structural schematic diagram of Y-direction mobile mechanism;
Fig. 3 be Fig. 1 laser cutting device structural schematic diagram from X to driving mechanism;
Fig. 4 be Fig. 3 laser cutting device bottom view from X to driving mechanism;
Fig. 5 is the structural schematic diagram of the Y-direction mobile mechanism of the laser cutting device of Fig. 2.
The meaning of each label in attached drawing are as follows:
Y-direction guide rail 10, belt 11, fixing seat 12;
Blanking punch group 20, X direction guiding rail 30, the first cutting head 40, the second cutting head 50;
X is to mobile mechanism 60, synchronizing wheel 61, synchronous belt 62, power mechanism 63;
X is to driving mechanism 70, and X is to slide 71, and X is to pinch roller 72, and X is to transmission mechanism 73, and X is to runner 74, directive wheel 75;
Y-direction mobile mechanism 80, Y-direction slide 81, Y-direction pinch roller 82, Y-direction transmission mechanism 83, Y-direction runner 84, Y-direction directive wheel 85, synchronizing shaft 86;
Projector 90, vision system 100.
Specific embodiment
The utility model will be described more fully below for the ease of understanding the utility model,.But this is practical It is novel to realize in many different forms, however it is not limited to embodiment described herein.On the contrary, providing these implementations The purpose of example is to make the understanding of the disclosure of the utility model more thorough and comprehensive.
Unless otherwise defined, all technical and scientific terms used herein are led with the technology for belonging to the utility model The normally understood meaning of the technical staff in domain is identical.Terminology used in the description of the utility model herein only be The purpose of description specific embodiment, it is not intended that in limitation the utility model.
It should be noted that it can directly on the other element when element is referred to as " being fixed on " another element Or there may also be elements placed in the middle.When an element is considered as " connection " another element, it, which can be, is directly connected to To another element or it may be simultaneously present centering elements.On the contrary, when element is referred to as " directly existing " another element "upper", There is no intermediary elements.Term as used herein "vertical", "horizontal", "left" and "right" and similar statement are For illustrative purposes.
Fig. 1 to Fig. 5 is please referred to, is the laser cutting device of one better embodiment of the utility model, including two Y-direction guide rails 10, both ends are separately positioned in Y-direction guide rail 10 blanking punch group 20, the Y for driving blanking punch group 20 to move along Y-direction guide rail 10 To mobile mechanism 80, the projector being arranged in above blanking punch group 90 and vision system 100.
Referring again to Fig. 1, the setting of two Y-direction guide rails, 10 relative spacing, Y-direction guide rail 10 is fixed on extraneous workbench.Y Belt 11 is provided on direction guiding rail 10;Further, the both ends of Y-direction guide rail 10 are provided with fixing seat 12, the both ends point of belt 11 It is not fixed in fixing seat 12.The bottom of Y-direction guide rail 10 is provided with two Y-direction guide rods, and two Y-direction guide rods are located at Y-direction respectively and lead The two sides of bar.
Referring again to Fig. 1, in the present embodiment, the quantity of blanking punch group 20 two, between two blanking punch groups 20 are opposite Every setting.Be conducive to improve cutting efficiency;In other embodiments, the quantity of blanking punch group 20 be also one or two with On.Blanking punch group 20 includes X direction guiding rail 30, the first cutting head 40 being slidably installed on X direction guiding rail 30 and the second cutting head 50, is used for The first cutting head 40 and the second cutting head 50 is driven to cut along the X that X direction guiding rail 30 moves to mobile mechanism 60 and connection second First 50 X is to driving mechanism 70.
The both ends of X direction guiding rail 30 are separately positioned in two Y-direction guide rails 10, and further the both ends of X direction guiding rail 30 are equipped with and wear Hole, the both ends of X direction guiding rail 30 pass through perforating movable respectively and are set on belt 11.The bottom of X direction guiding rail 30 is provided with two guides X Bar, two X are located at the two sides of X direction guiding rail 30 to guide rod respectively.
Referring again to Fig. 2, X includes two synchronizing wheels 61, the synchronous belt being set in two synchronizing wheels 61 to mobile mechanism 60 62, the power mechanism 63 being sequentially connected with a synchronizing wheel 61, two synchronizing wheels 61 are separately positioned on the both ends of X direction guiding rail 30;Power Mechanism 63 drives synchronous belt 62 to move by synchronizing wheel 61, and then drives the first cutting head 40 and the second cutting head 34 along guide X Rail 30 moves.
Referring again to Fig. 3, X is to driving mechanism 70 for driving the second cutting head 50 along X direction guiding rail 30 and opposite first Cutting head 40 moves.X to driving mechanism 70 include the X that is slidably installed on X direction guiding rail 30 to slide 71, be mounted on X on slide 71 X to pinch roller 72 and X to transmission mechanism 73, be mounted on X of the X on transmission mechanism 73 to runner 74 and be set in X to turning X of the 74 and X on pinch roller 72 is taken turns to transmission belt (not shown);X is arranged to pinch roller 72 close to synchronous belt 62, and X is to transmission belt With 62 CONTACT WITH FRICTION of synchronous belt, i.e. lower section of the X to transmission belt around to X to pinch roller 72 and 62 CONTACT WITH FRICTION of synchronous belt;Second cuts First 22 and X is cut to connect to slide 71.In the present embodiment, X is two to the quantity of pinch roller 72, and two X divide to pinch roller 72 X is not set to the two sides of slide 71, X to transmission belt from an X to 72 lower section of pinch roller around later, from X to the top of slide 71 By, then from another and X to pinch roller 72 below bypass, two X are set to pinch roller 72 and are conducive to improve X to transmission belt and same Frictional force between band 62 is walked, slipping phenomenon is less prone to.X drives X to transport to transmission belt by X to transmission mechanism 73 to runner 74 It is dynamic, since X is to transmission belt and 62 CONTACT WITH FRICTION of synchronous belt, so that X is moved to transmission belt along 30 relative synchronization band 62 of X direction guiding rail, To which opposite first cutting head 40 of the second cutting head of driving 50 moves, the second cutting head 50 and the first cutting head are adjusted to realize The distance between 40.
Referring again to Fig. 4, further, X is provided at least two X to directive wheel 75, at least to the bottom of slide 71 Two X, respectively with two X to guide rod sliding contact, are moved to directive wheel 75 in opposite first cutting head 40 of the second cutting head of driving 50 When, it can prevent the second cutting head 50 from generating shift phenomenon, be conducive to improve cutting accuracy.In the present embodiment, X is to directive wheel 75 Quantity be three, two of them X to directive wheel 75 and an X to guide rod sliding contact, another X to directive wheel 75 and another X to Guide rod sliding contact.In other embodiments, it is also possible to only one X to directive wheel 75, X distinguishes to the two sides of directive wheel 75 With two X to guide rod sliding contact.
Referring again to Fig. 2 and Fig. 5, Y-direction mobile mechanism 80 includes two Y-direction slides 81, the Y being mounted on Y-direction slide 81 To pinch roller 82 and Y-direction transmission mechanism 83, the Y-direction runner 84 being mounted on Y-direction transmission mechanism 83 and it is set in Y-direction pressure zone Y-direction transmission belt (not shown) on wheel 82 and Y-direction runner 84;Two Y-direction slides 81 are slidably installed in respectively in Y-direction guide rail 10, Y-direction pressure zone Wheel 82 is arranged close to belt 11, Y-direction transmission belt and 11 CONTACT WITH FRICTION of belt, i.e. Y-direction transmission belt is around to the lower section of Y-direction pinch roller 82 With 11 CONTACT WITH FRICTION of belt, the both ends of X direction guiding rail 30 are connect with Y-direction slide 81 respectively.In the present embodiment, Y-direction pinch roller 82 Quantity be two, two Y-direction pinch rollers 82 are separately positioned on the two sides of Y-direction slide 81, and it is advantageous that two Y-direction pinch rollers 82 are arranged In improving frictional force between Y-direction transmission belt and belt 11, it is less prone to slipping phenomenon.The working principle of Y-direction mobile mechanism 80 is such as With X to driving mechanism 70, i.e., Y-direction transmission mechanism 83 drives Y-direction conveyor belt motion by Y-direction runner 84, due to Y-direction transmission belt with 11 CONTACT WITH FRICTION of belt, so that Y-direction transmission belt is moved along 10 opposed belts 11 of Y-direction guide rail, to drive blanking punch group 20 along Y-direction Guide rail 10 moves.
Referring again to Fig. 5, further, the bottom of Y-direction slide 81 is provided at least two Y-direction directive wheels 85, at least Two X can prevent with two Y-direction guide rod sliding contacts when driving blanking punch group 20 to move along Y-direction guide rail 10 respectively to directive wheel 85 Only blanking punch group 20 generates shift phenomenon, is conducive to improve cutting accuracy.
Further, it is connected with synchronizing shaft 86 between two Y-direction runners 84, guarantees the both ends synchronizing moving of X direction guiding rail 30.
Projector 90 and vision system 100 are fixed in extraneous rack, and projector 90 is suitable for not setting figure on cut surface The case where shape, projector 90 are used for graphic projection to be cut to cut surface, can be realized for irregular material visual Change typesetting, contraposition, farthest utilizes leftover pieces, it is automatic to the first cutting head 40 and the second cutting head 50 after typesetting It shares out the work, improved efficiency, manual intervention is few.Vision system 100 is suitable for the case where cut surface is equipped with figure, vision system 100 for shooting the figure on cut surface, the figure that the first cutting head 40 and the second cutting head 50 are extracted according to vision system 100 Automatically it shares out the work, reaches efficiency optimization, the highest effect of stock utilization.In other embodiments, projector 90 and vision System 100 can also be applicable in simultaneously, and in the graphic projection to cut surface to be cut of projector 90, vision system 100 is for shooting Projecting figure.
The laser cutting device of the utility model drives the first cutting head 40 and the second cutting head to mobile mechanism 60 by X 50 move along X direction guiding rail 30 simultaneously, drive the second cutting head 50 along X direction guiding rail 30 and opposite first to driving mechanism 70 by X Cutting head 40 moves, so that the second cutting head 50 can be moved synchronously with the first cutting head 40, the second cutting head 50 can also be with respect to the One cutting head 40 is moved, and is able to achieve each workspace to the wider cutting pattern of breadth while being carried out cutting work, has Conducive to raising working efficiency.
Each technical characteristic of embodiment described above can be combined arbitrarily, for simplicity of description, not to above-mentioned reality It applies all possible combination of each technical characteristic in example to be all described, as long as however, the combination of these technical characteristics is not deposited In contradiction, all should be considered as described in this specification.
Above-described embodiments merely represent several embodiments of the utility model, the description thereof is more specific and detailed, But it cannot be understood as the limitations to utility model patent range.It should be pointed out that for the common skill of this field For art personnel, without departing from the concept of the premise utility, various modifications and improvements can be made, these are belonged to The protection scope of the utility model.Therefore, the scope of protection shall be subject to the appended claims for the utility model patent.

Claims (10)

1. a kind of laser cutting device, which is characterized in that including two Y-direction guide rails, blanking punch group;The blanking punch group include X to Guide rail, the first cutting head being slidably installed on the X direction guiding rail and the second cutting head, for driving first cutting head and described The X that second cutting head is moved along the X direction guiding rail is to the X of mobile mechanism and connection second cutting head to driving mechanism; The both ends of the X direction guiding rail are separately positioned in two Y-direction guide rails, and the X is to driving mechanism for driving described second to cut Head is cut along the X direction guiding rail and relatively described first cutting head moves.
2. laser cutting device according to claim 1, which is characterized in that the quantity of the blanking punch group two, two The blanking punch group relative spacing setting.
3. laser cutting device according to claim 1, which is characterized in that the X to mobile mechanism include two synchronizing wheels, It is set in the synchronous belt in two synchronizing wheels, the power mechanism with a synchronizing wheel transmission connection, two synchronizing wheel point The both ends of the X direction guiding rail are not set.
4. laser cutting device according to claim 3, which is characterized in that the X includes being slidably installed in institute to driving mechanism State X on X direction guiding rail to slide, be mounted on X of the X on slide to pinch roller and X to transmission mechanism, be mounted on the X X on transmission mechanism is to runner and is set in the X to X on pinch roller of runner and the X to transmission belt, the X To transmission belt and the synchronous belt CONTACT WITH FRICTION, second cutting head is connect with the X to slide.
5. laser cutting device according to claim 4, which is characterized in that the bottom of the X direction guiding rail be provided with two X to Guide rod, two X are located at the two sides of the X direction guiding rail to guide rod respectively;The X is provided at least two to the bottom of slide A X is to directive wheel, and at least two X are to directive wheel respectively with two X to guide rod sliding contact.
6. laser cutting device according to claim 1, which is characterized in that further include for driving blanking punch group edge The Y-direction mobile mechanism of the Y-direction guide rail movement.
7. laser cutting device according to claim 6, which is characterized in that be provided with belt in the Y-direction guide rail;It is described Y-direction mobile mechanism includes two Y-direction slides, the Y-direction pinch roller being mounted on the Y-direction slide and Y-direction transmission mechanism, is mounted on institute The Y-direction transmission belt stating the Y-direction runner on Y-direction transmission mechanism and being set on the Y-direction pinch roller and the Y-direction runner;Two The Y-direction slide is slidably installed in respectively in the Y-direction guide rail, and the Y-direction transmission belt is contacted with the belt friction, guide X The both ends of rail are connect with the Y-direction slide respectively.
8. laser cutting device according to claim 7, which is characterized in that be connected with synchronization between the two Y-direction runners Axis.
9. laser cutting device according to claim 1, which is characterized in that further include being arranged above the blanking punch group Projector.
10. laser cutting device according to claim 1, which is characterized in that further include being arranged in the blanking punch group The vision system of side.
CN201821137196.9U 2018-07-16 2018-07-16 Laser cutting device Active CN208556364U (en)

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Application Number Priority Date Filing Date Title
CN201821137196.9U CN208556364U (en) 2018-07-16 2018-07-16 Laser cutting device

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Application Number Priority Date Filing Date Title
CN201821137196.9U CN208556364U (en) 2018-07-16 2018-07-16 Laser cutting device

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Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110919205A (en) * 2019-12-24 2020-03-27 曹品志 Novel double-bridge asynchronous cutting structure of laser cutting bed
CN111299863A (en) * 2020-04-02 2020-06-19 济南振宏机械有限公司 Novel laser cutting machine for machining and method
CN111498408A (en) * 2020-05-06 2020-08-07 东莞市末客信息科技有限公司 Interconnected displacement system for automatic mechanical equipment
CN113752397A (en) * 2021-09-02 2021-12-07 营口金辰机械股份有限公司 Trimming device and trimming method
CN114043093A (en) * 2021-10-25 2022-02-15 奔腾激光科技(山东)有限公司 Laser cutting device of two cutting heads of total roof beam

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110919205A (en) * 2019-12-24 2020-03-27 曹品志 Novel double-bridge asynchronous cutting structure of laser cutting bed
CN111299863A (en) * 2020-04-02 2020-06-19 济南振宏机械有限公司 Novel laser cutting machine for machining and method
CN111498408A (en) * 2020-05-06 2020-08-07 东莞市末客信息科技有限公司 Interconnected displacement system for automatic mechanical equipment
CN113752397A (en) * 2021-09-02 2021-12-07 营口金辰机械股份有限公司 Trimming device and trimming method
CN113752397B (en) * 2021-09-02 2023-12-01 营口金辰机械股份有限公司 Cutting method
CN114043093A (en) * 2021-10-25 2022-02-15 奔腾激光科技(山东)有限公司 Laser cutting device of two cutting heads of total roof beam
CN114043093B (en) * 2021-10-25 2023-12-26 奔腾激光科技(山东)有限公司 Laser cutting device with common beam and double cutting heads

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