CN213105153U - Sealed dust removal structure during laser marking or cutting - Google Patents

Sealed dust removal structure during laser marking or cutting Download PDF

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Publication number
CN213105153U
CN213105153U CN202021617046.5U CN202021617046U CN213105153U CN 213105153 U CN213105153 U CN 213105153U CN 202021617046 U CN202021617046 U CN 202021617046U CN 213105153 U CN213105153 U CN 213105153U
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marble
dust
dust removal
sealed
laser marking
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CN202021617046.5U
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Chinese (zh)
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姜基锡
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Laservall Laser Technology Shenzhen Co ltd
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Laservall Laser Technology Shenzhen Co ltd
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Abstract

The utility model provides a sealed dust removal structure during laser marking or cutting, including the marble platform, the marble stand is located above the marble platform, and marble stand top is equipped with the laser instrument subassembly, and the laser instrument subassembly passes through the fix with screw on marble portal frame crossbeam, and the lens that shakes is installed in portal frame crossbeam side, and dust removal structure installs in marble portal frame crossbeam side, and dust removal structure contains flexible organ cover, lift cylinder and dust excluding hood, and the dust excluding hood contains the air knife, the sealed pad of EVA foam, transparent observation window, ventilation hose and convulsions horn mouth. The sealed dust removal structure used in laser marking or cutting can solve the problems that the surface of a product is polluted, the table surface of equipment is polluted, accumulated dust and dust can block light, and the marking effect and the cutting effect of the product are affected.

Description

Sealed dust removal structure during laser marking or cutting
Technical Field
The utility model relates to a laser construction technical field specifically is a dust removal structure of sealed when laser marking or cutting.
Background
The laser marking or cutting is to burn the material by utilizing high-energy laser pulses to leave a special specified burning mark on the surface of the material or cut a specified shape according to a required path; the dust fragments generated in the marking or cutting process pollute the surface of the product, pollute the table top of the equipment, and the accumulated dust fragments can block light to influence the marking effect and the cutting effect of the following product.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the shortcoming that exists among the background art, provide a dust removal structure of sealed when laser marking or cutting.
In order to achieve the above object, the utility model provides a technical scheme, a sealed dust removal structure during laser marking or cutting, comprising a marble platform, a marble column, a laser component, a vibration lens, an X-axis linear motor, a Y-axis linear motor and a dust removal structure, wherein the marble column is arranged on the marble platform, the laser component is arranged at the top of the marble column, the laser component is fixed on a marble portal frame beam through screws, the vibration lens is arranged at the side of the marble portal frame beam, the dust removal structure is arranged below the vibration lens, lifting cylinders are arranged at two sides of the dust removal structure, the dust removal structure comprises a flexible organ cover, a lifting cylinder and a dust removal cover, the lifting cylinder with lifting function is arranged at two sides of the flexible organ cover, the flexible organ cover is arranged below the vibration lens, the dust excluding hood is located flexible organ cover below, the dust excluding hood contains air knife, the sealed pad of EVA foam, transparent observation window, ventilation hose and convulsions horn mouth, the air knife is located the dust excluding hood front end, the ventilation hose is located the dust excluding hood side, transparent observation window is located the dust excluding hood side, the convulsions horn mouth is located the dust excluding hood rear end, the sealed pad of EVA foam is located the dust excluding hood bottommost, X axle linear electric motor is located above the marble platform, Y axle linear electric motor is located X axle linear electric motor and above and mutually perpendicular, be provided with the microscope carrier above the Y axle linear electric motor, be provided with the tool above the microscope carrier.
Preferably, the two lifting cylinders are respectively positioned on two sides of the flexible organ cover and fixed on the side surface of the beam of the marble portal frame through machined plate locking screws and positioning pins, and a guide rod is arranged beside each lifting cylinder for positioning.
Preferably, the dust excluding hood includes that air knife, EVA foam are sealed to seal up, transparent observation window, ventilation hose and convulsions horn mouth, another termination air knife of ventilation hose termination fan air inlet, the connection at ventilation hose both ends is fixed through the larynx hoop, the air knife forms the air curtain in the tool top and removes dust, when the lift cylinder pushes down messenger's tool and is in encapsulated situation, EVA foam is sealed to seal up and is laminated with the microscope carrier is seamless.
Preferably, there are two transparent observation windows respectively located at two sides of the dust hood.
Preferably, the laser subassembly includes the laser instrument, and the laser subassembly is located marble stand top, the lens that shakes is located marble stand side, all through fix with screw on the marble.
Preferably, X-axis linear motor and Y-axis linear motor mutually perpendicular just are located marble platform top, X-axis linear motor and Y-axis linear motor all contain the tow chain.
Preferably, the air knife and the front and back of the air draft horn mouth are installed oppositely, metal plate materials are adopted for manufacturing, and the screw is locked on the dust removal cover.
Preferably, the ventilation hose and the air draft bell mouth are both connected with a fan for blowing and sucking air.
The utility model provides a sealed dust removal structure when laser marking or cutting has following beneficial effect:
1. the utility model has the advantages of, because the sealed cowling is whole to tool platform cover, laser marking or cutting position whole control inside the dust excluding hood, the dust is gone out, the appointed direction air curtain convection current of rethread, dust and inside air only can be walked on only the route, and dust removal effect can be more effective.
2. Secondly, remove dust through sealed dust excluding hood and air curtain, in time take away the garrulous end of dust that produces among laser marking or the cutting process to guarantee the cleanness of workstation, also avoid the garrulous end of dust to splash everywhere simultaneously.
3. Finally, because transparent organic glass is adopted on two sides below the dust removing cover, the marking or cutting condition and the dust removing condition can be observed in the whole dust removing process.
Drawings
Fig. 1 is an overall schematic view of a sealed dust removing structure for laser marking or cutting according to the present invention;
fig. 2 is an assembly schematic view of a sealed dust removing structure for laser marking or cutting according to the present invention;
fig. 3 is a schematic view of a jig assembly of a sealed dust removing structure for laser marking or cutting according to the present invention;
fig. 4 is a schematic view of a dust-removing sealing cover assembly of a sealed dust-removing structure for laser marking or cutting according to the present invention;
in FIGS. 1-4: 1. a marble platform; 2. a marble pillar; 3. a marble portal frame beam; 4. a laser assembly; 5. an X-axis linear motor; 6. a Y-axis linear motor; 7. a vibrating lens; 8. a flexible organ cover; 9. a dust removal structure; 10. a lifting cylinder; 11. a dust hood; 12. reinforcing ribs; 13. an X-axis drag chain; 14. A CCD camera assembly; 15. a Y-axis drag chain mounting plate; 16. sealing the housing; 17. a ventilation hose; 18. an air draft bell mouth; 19. an X-axis drag chain mounting plate; 20. a Y-axis drag chain; 21. a guide bar; 22. a stage; 23. A jig; 26. an EVA foam gasket; 27. an air knife; 28. a transparent viewing window.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Example 1
As shown in fig. 1-2, a sealed dust removal structure during laser marking or cutting, including marble platform 1, marble stand 2, laser instrument subassembly 4, the lens 7 shakes, X axle linear electric motor 5, Y axle linear electric motor 6 and dust removal structure 9, marble stand 2 is located marble platform 1 above, 2 tops of marble stand are equipped with laser instrument subassembly 4, laser instrument subassembly 4 passes through the fix with screw on marble portal frame crossbeam 3, the lens 7 that shakes is installed in marble portal frame crossbeam 3 side, dust removal structure 9 is located the lens 7 below that shakes, overall structure uses marble stand 2 as the benchmark, all install on the marble, make stable in structure firm.
Through adopting above-mentioned technical scheme, laser instrument subassembly 4 uses the marble to guarantee the stability and the precision of light path as the benchmark, shakes the installation of camera lens 7 and pastes tight marble, guarantees that the steadiness does not rock, guarantees to beat the accuracy of mark and cutting, and same dust collector installs in marble portal frame crossbeam 3 side, and the benchmark is stable, and the cylinder promotes when marcing has chromium plating light circle guide arm to do accurate direction, and these have at first guaranteed the matching nature of dust collecting structure 9 to the equipment precision.
Example 2
As shown in fig. 2-4, lifting cylinders 10 are arranged on two sides of a dust removing structure 9, the dust removing structure 9 comprises a flexible organ cover 8, the lifting cylinders 10 and a dust removing cover 11, the lifting cylinders 10 are arranged on two sides of the flexible organ cover 8, the flexible organ cover 8 is located below the vibrating lens 7, and the dust removing cover 11 is located below the flexible organ cover 8; dust excluding hood 11 contains air knife 27, EVA foam sealing gasket 26, transparent observation window 28, ventilation hose 17 and convulsions horn mouth 18, and air knife 27 is located 11 front ends of dust excluding hood, and ventilation hose 17 is located 11 sides of dust excluding hood, and transparent observation window 28 is located 11 sides of dust excluding hood, and convulsions horn mouth 18 is located 11 rear ends of dust excluding hood, and EVA foam sealing gasket 26 is located 11 bottommost of dust excluding hood, and stable in structure is reasonable.
The laser marking or cutting positions are all controlled in the dust removing cover 11, dust can not come out, then the dust and the internal air can only travel through a unique path through air curtain convection in the appointed direction, and the dust removing effect is more effective; dust fragments generated in the laser marking or cutting process are sucked away in time so as to ensure the cleanness of the workbench and avoid splashing of the dust fragments everywhere; the two sides of the transparent organic glass are transparent, and the dust removal process is visual.
The above is only the preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, without departing from the concept of the present invention, several modifications and improvements can be made, which should also be regarded as the protection scope of the present invention, and these will not affect the effect of the implementation of the present invention and the practicability of the patent.

Claims (8)

1. A sealed dust removal structure during laser marking or cutting comprises a marble platform (1), a marble upright post (2), a laser component (4), a vibration lens (7), an X-axis linear motor (5), a Y-axis linear motor (6) and a dust removal structure (9), and is characterized in that the marble upright post (2) is positioned on the marble platform (1), the laser component (4) is arranged at the top of the marble upright post (2), the laser component (4) is fixed on a marble portal frame beam (3) through a screw, the vibration lens (7) is arranged on the side surface of the marble portal frame beam (3), the dust removal structure (9) is positioned below the vibration lens (7), and lifting cylinders (10) are arranged on two sides of the dust removal structure (9), the dust removal structure (9) comprises a flexible organ cover (8), lifting cylinders (10) and a dust removal cover (11), the lifting cylinders (10) with lifting functions are arranged on two sides of the flexible organ cover (8), the flexible organ cover (8) is located below the vibration lens (7), and the dust removal cover (11) is located below the flexible organ cover (8); dust excluding hood (11) contain air knife (27), the sealed pad of EVA foam (26), transparent observation window (28), ventilation hose (17) and convulsions horn mouth (18), air knife (27) are located dust excluding hood (11) front end, ventilation hose (17) are located dust excluding hood (11) side, transparent observation window (28) are located dust excluding hood (11) side, convulsions horn mouth (18) are located dust excluding hood (11) rear end, the sealed pad of EVA foam (26) are located dust excluding hood (11) bottommost, X axle linear electric motor (5) are located marble platform (1) above, Y axle linear electric motor (6) are located above X axle linear electric motor (5) and mutually perpendicular, be provided with microscope carrier (22) above Y axle linear electric motor (6), be provided with tool (23) above microscope carrier (22).
2. The sealed dust removing structure during laser marking or cutting according to claim 1, wherein two sets of lifting cylinders (10) are respectively arranged on two sides of the flexible organ cover (8) and fixed on the side surface of the marble portal frame beam (3) through machined plate locking screws and positioning pins, and a guide rod (21) is arranged beside each lifting cylinder (10) for positioning.
3. The sealed dust removal structure during laser marking or cutting according to claim 1, wherein the dust hood (11) comprises an air knife (27), an EVA foam sealing gasket (26), a transparent observation window (28), a ventilation hose (17) and an air draft bell mouth (18), one end of the ventilation hose (17) is connected with an air inlet of a fan, the other end of the ventilation hose (17) is connected with the air knife (27), the two ends of the ventilation hose (17) are connected through a hose clamp, the air knife (27) forms an air curtain above the jig (23) for dust removal, and when the jig (23) is pushed down by the lifting cylinder (10) to be in a sealed state, the EVA foam sealing gasket (26) is in seamless fit with the carrier (22).
4. The sealed dust removing structure for laser marking or cutting according to claim 1, wherein two transparent observation windows (28) are provided, one on each side of the dust removing cover (11).
5. Sealed dust extraction structure during laser marking or cutting according to claim 1, characterized in that the laser assembly (4) comprises a laser and the laser assembly (4) is located on top of the marble pillar (2), and the lens (7) is located on the side of the marble pillar (2) and is fixed to the marble by screws.
6. The sealed dust removing structure during laser marking or cutting according to claim 1, wherein the X-axis linear motor (5) and the Y-axis linear motor (6) are perpendicular to each other and located above the marble platform (1), and both the X-axis linear motor (5) and the Y-axis linear motor (6) comprise drag chains.
7. The sealed dust removal structure for laser marking or cutting according to claim 1, wherein the air knife (27) and the air draft bell mouth (18) are installed in a front-back opposite mode and are made of sheet metal, and the screws are locked on the dust removal cover (11).
8. The sealed dust removing structure during laser marking or cutting according to claim 1, wherein the ventilation hose (17) and the air draft bell mouth (18) are connected with a fan for blowing air and sucking air.
CN202021617046.5U 2020-08-06 2020-08-06 Sealed dust removal structure during laser marking or cutting Active CN213105153U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021617046.5U CN213105153U (en) 2020-08-06 2020-08-06 Sealed dust removal structure during laser marking or cutting

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021617046.5U CN213105153U (en) 2020-08-06 2020-08-06 Sealed dust removal structure during laser marking or cutting

Publications (1)

Publication Number Publication Date
CN213105153U true CN213105153U (en) 2021-05-04

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114833475A (en) * 2022-04-25 2022-08-02 深圳市镭沃自动化科技有限公司 Dust collector of laser equipment
CN115430924A (en) * 2022-11-03 2022-12-06 广东国玉科技股份有限公司 Laser carving equipment
CN117139871A (en) * 2023-10-30 2023-12-01 四川富乐华半导体科技有限公司 Laser cutting and coding platform for copper-clad ceramic carrier plate

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114833475A (en) * 2022-04-25 2022-08-02 深圳市镭沃自动化科技有限公司 Dust collector of laser equipment
CN115430924A (en) * 2022-11-03 2022-12-06 广东国玉科技股份有限公司 Laser carving equipment
CN115430924B (en) * 2022-11-03 2023-02-28 广东国玉科技股份有限公司 Laser etching equipment
CN117139871A (en) * 2023-10-30 2023-12-01 四川富乐华半导体科技有限公司 Laser cutting and coding platform for copper-clad ceramic carrier plate

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