CN107984081B - Laser engraving machine light channel structure - Google Patents

Laser engraving machine light channel structure Download PDF

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Publication number
CN107984081B
CN107984081B CN201810016728.1A CN201810016728A CN107984081B CN 107984081 B CN107984081 B CN 107984081B CN 201810016728 A CN201810016728 A CN 201810016728A CN 107984081 B CN107984081 B CN 107984081B
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CN
China
Prior art keywords
ring
diaphragm
pin hole
turntable
radial direction
Prior art date
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Expired - Fee Related
Application number
CN201810016728.1A
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Chinese (zh)
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CN107984081A (en
Inventor
赵烟桥
于博洋
樊琪
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Harbin University of Science and Technology
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Harbin University of Science and Technology
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Publication date
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Priority to CN201810016728.1A priority Critical patent/CN107984081B/en
Publication of CN107984081A publication Critical patent/CN107984081A/en
Application granted granted Critical
Publication of CN107984081B publication Critical patent/CN107984081B/en
Expired - Fee Related legal-status Critical Current
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K26/00Working by laser beam, e.g. welding, cutting or boring
    • B23K26/02Positioning or observing the workpiece, e.g. with respect to the point of impact; Aligning, aiming or focusing the laser beam
    • B23K26/06Shaping the laser beam, e.g. by masks or multi-focusing
    • B23K26/064Shaping the laser beam, e.g. by masks or multi-focusing by means of optical elements, e.g. lenses, mirrors or prisms
    • B23K26/0643Shaping the laser beam, e.g. by masks or multi-focusing by means of optical elements, e.g. lenses, mirrors or prisms comprising mirrors
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23KSOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
    • B23K26/00Working by laser beam, e.g. welding, cutting or boring
    • B23K26/02Positioning or observing the workpiece, e.g. with respect to the point of impact; Aligning, aiming or focusing the laser beam
    • B23K26/06Shaping the laser beam, e.g. by masks or multi-focusing
    • B23K26/064Shaping the laser beam, e.g. by masks or multi-focusing by means of optical elements, e.g. lenses, mirrors or prisms
    • B23K26/0648Shaping the laser beam, e.g. by masks or multi-focusing by means of optical elements, e.g. lenses, mirrors or prisms comprising lenses

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  • Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Engineering & Computer Science (AREA)
  • Plasma & Fusion (AREA)
  • Mechanical Engineering (AREA)
  • Laser Beam Processing (AREA)
  • Manufacture Or Reproduction Of Printing Formes (AREA)

Abstract

Laser engraving machine light channel structure of the present invention belongs to laser-engraving technique field;The light channel structure sets gradually object lens, pin hole, diaphragm and ellipsoidal mirror along the light direction of propagation;The objective focus positions and ellipsoidal mirror over focus position are overlapped, and pin hole is arranged in overlapping position;Collimated light beam forms point light source along optical axis direction illumination objective, in pin hole position, reflexes to perifocus position using ellipsoidal mirror, is converged to a hot spot;Diaphragm can move between pin hole and ellipsoidal mirror along optical axis direction, and the openings of sizes of diaphragm can adjust;Laser engraving machine light channel structure of the present invention, can not only eliminate aberration from principle, improve the quality of laser beam, and have accurate control laser beam energy, change the effect of laser beam convergent angle.

Description

Laser engraving machine light channel structure
The application is a kind of divisional application of application for a patent for invention " laser engraving machine light channel structure ".
The original bill applying date: 2017-01-11.
Original bill application number: 2017100209222.
A kind of original bill denomination of invention: laser engraving machine light channel structure.
Technical field
Laser engraving machine light channel structure of the present invention belongs to laser-engraving technique field.
Background technique
Laser engraving has a wide range of applications in fields such as woodcut, stone inscription, seals.The laser engraving of high quality needs tight Lattice control the quality of laser beam, eliminate the interference of aberration to the full extent;Meanwhile also accurately to control the energy of laser beam, meeting The parameters such as poly- angle.
Summary of the invention
For in laser engraving field, the technical need of laser beam quality and Parameter adjustable, the invention discloses one kind Laser engraving machine light channel structure can not only eliminate aberration from principle, improve the quality of laser beam, and have accurate control Laser beam can, change laser beam convergent angle effect.
The object of the present invention is achieved like this:
Laser engraving machine light channel structure sets gradually object lens, pin hole, diaphragm and ellipsoid reflection along the light direction of propagation Mirror;The objective focus positions and ellipsoidal mirror over focus position are overlapped, and pin hole is arranged in overlapping position;Collimated light beam is along optical axis Direction illumination objective forms point light source in pin hole position, reflexes to perifocus position using ellipsoidal mirror, be converged to a little Hot spot;Diaphragm can move between pin hole and ellipsoidal mirror along optical axis direction, and the openings of sizes of diaphragm can adjust.
The openings of sizes of above-mentioned laser engraving machine light channel structure, diaphragm can adjust, by being realized with flowering structure:
The diaphragm is by the window transparent plate for the not pivoting being coaxially disposed, the radial direction notch turntable of pivoting It is formed with the circumferencial direction notch turntable of pivoting;
The window transparent plate circumferencial direction the first ring and the second ring, in the first radius of radial direction and the second half The region iuuminting that diameter surrounds, other regions are opaque;Folded central angle is between first radius and the second radiusα,αIt can be by 360 degree divide exactly;
The radial direction notch turntable is divided into 360/ in circumferencial directionαA region, in each area, in circumference First ring and the second ring in direction, in the region iuuminting that two radiuses of radial direction surround, other regions are opaque;Two Folded central angle is 360/ between radiusαIt is arranged in a region at arithmetic progression, maximum is no more thanα
The circumferencial direction notch turntable is divided into 360/ in circumferencial directionαA region, in each area, in circumference First ring in direction and two rings among the second ring, in the region that the first radius of radial direction and the second radius surround thoroughly Light, other regions are opaque;The distance between two rings are 360/αIt is arranged in a region at arithmetic progression, maximum is no more than the The distance between one ring and the second ring.
The above laser engraving machine light channel structure, in the opposite side and radial direction of window transparent plate and circumferencial direction notch turntable The two sides of notch turntable are provided with annular groove, and equidistantly distributed has ball in annular groove, and the ball is fixed by ball rack; Window transparent plate and circumferencial direction notch turntable are made by magnetic material, and synonyms pole is staggered relatively, using magnetic force, by window Mouth transparent plate, radial direction notch turntable and the absorption of circumferencial direction notch turntable.
The above laser engraving machine light channel structure, window transparent plate are fixedly mounted on sleeve, and there are two complete on the sleeve Exactly the same through slot disposed in parallel, the through slot cover 360-αThe circumference of angle;Radial direction notch turntable and circumferencial direction lack Mouth turntable side is provided with spanner, and the spanner is stretched out from the through slot being arranged on sleeve, pulls spanner, realizes radius side Rotation to notch turntable and circumferencial direction notch turntable.
360/ is equidistantly provided on the through slotαA sipes is provided with the through-hole for being directed toward sipes two sides on the spanner, Spring is provided in through-hole, the two sides of the spring are mounted on cap nut;Spring in its natural state, between two caps away from From through slot width is greater than, under compression, the distance between two caps are less than through slot width to spring.
The utility model has the advantages that
The first, in laser engraving machine light channel structure of the present invention, due to being only provided with object lens, pin hole, diaphragm and ellipsoid In addition to this reflecting mirror, then mixes light source and attenuator and can form complete light path system, element is few, and structure is simple;
The second, it in laser engraving machine light channel structure of the present invention, due to having abandoned the lens arrangement in conventional light path, and adopts With ellipsoidal mirror, solves the Aberration Problem that lens can not overcome from principle, greatly improve the quality of laser beam, have Effect avoid aberration light beam to carving area outside injury, to improve engraving quality;
Third, since diaphragm can move between pin hole and ellipsoidal mirror along optical axis direction, can change The irradiating angle of laser beam;Simultaneously as the openings of sizes of diaphragm can adjust, therefore the convergent angle of laser beam can be changed;
4th, since laser engraving machine light channel structure of the present invention uses ellipsoidal mirror, ellipsoidal mirror is utilized Bifocus conjugated nature utilizes the property that can also be emitted from the light beam of over focus incidence from over focus, with lens arrangement or puts down Face reflecting mirror or spherical reflector are compared, and are realized wide-angle convergence, can not only be improved the engraving time of coarse texture, and It can be realized special engraving effect.
Detailed description of the invention
Fig. 1 is laser engraving machine light channel structure schematic diagram of the present invention.
Fig. 2 is the structural schematic diagram of window transparent plate 31.
Fig. 3 is the structural schematic diagram of radial direction notch turntable 32.
Fig. 4 is the structural schematic diagram of circumferencial direction notch turntable 33.
Fig. 5 is the assembling structure schematic diagram of window transparent plate, radial direction notch turntable and circumferencial direction notch turntable.
Fig. 6 is the structural schematic diagram of ball rack.
Fig. 7 is the mounting structure schematic diagram between diaphragm and sleeve.
Fig. 8 is through slot expansion Local map.
Fig. 9 is schematic diagram of structural changes when spanner passes through through slot.
In figure: 1 object lens, 2 pin holes, 3 diaphragms, 31 window transparent plates, 32 radial direction notch turntables, 33 circumferencial direction notches Turntable, 34 balls, 35 ball racks, 36 spanners, 37 springs, 38 caps, 4 ellipsoidal mirrors, 5 sleeves.
Specific embodiment
The specific embodiment of the invention is described in further detail with reference to the accompanying drawing.
Specific embodiment one
The laser engraving machine light channel structure of the present embodiment, schematic diagram are as shown in Figure 1.The laser engraving machine light channel structure is along light The line direction of propagation sets gradually object lens 1, pin hole 2, diaphragm 3 and ellipsoidal mirror 4;1 focal position of object lens and ellipsoid 4 over focus position of reflecting mirror is overlapped, and pin hole 2 is arranged in overlapping position;Collimated light beam is along optical axis direction illumination objective 1, in 2 position of pin hole Point light source is formed, perifocus position is reflexed to using ellipsoidal mirror 4, is converged to a hot spot;Diaphragm 3 can be in pin hole 2 It is moved between ellipsoidal mirror 4 along optical axis direction, the openings of sizes of diaphragm 3 can adjust.
It should be noted that diaphragm 3 can move between pin hole 2 and ellipsoidal mirror 4 along optical axis direction, this field Structure that technical staff can be axially moveable with reference to eyeglass in zoom lens relative to shell is realized, is not necessarily in this application It is discussed in detail.
Specific embodiment two
The laser engraving machine light channel structure of the present embodiment further limits diaphragm 3 on the basis of specific embodiment one Openings of sizes can adjust, by being realized with flowering structure:
The diaphragm 3 is by the window transparent plate 31 for the not pivoting being coaxially disposed, the radial direction notch of pivoting Turntable 32 and the circumferencial direction notch turntable 33 of pivoting composition;
The window transparent plate 31 circumferencial direction the first ring and the second ring, in the first radius of radial direction and second The region iuuminting that radius surrounds, other regions are opaque;Folded central angle is α between first radius and the second radius, and α can Divided exactly by 360 degree;Window transparent plate 31 is as shown in Figure 2;
The radial direction notch turntable 32 is divided into 360/ α region in circumferencial direction, in each area, in circle The first ring and the second ring of circumferential direction, in the region iuuminting that two radiuses of radial direction surround, other regions are opaque;Two Folded central angle arranges in 360/ α region at arithmetic progression between a radius, and maximum is no more than α;Radial direction notch turns Disk 32 is as shown in Figure 3;It should be noted that in the present invention, arranging at arithmetic progression, refer to that number is arranged according to size order Afterwards at arithmetic progression, but can not arrange in sequence;
The circumferencial direction notch turntable 33 is divided into 360/ α region in circumferencial direction, in each area, in circle First ring of circumferential direction and two rings among the second ring, in the region that the first radius of radial direction and the second radius surround Light transmission, other regions are opaque;The distance between two rings arrange in 360/ α region at arithmetic progression, and maximum is no more than The distance between first ring and the second ring;Circumferencial direction notch turntable 33 is as shown in Figure 4.
In the present embodiment, by direction of the rotating radius notch turntable 32 and circumferencial direction notch turntable 33, keep window saturating 31 transmission region of CD and 33 transmission region permutation and combination of radial direction notch turntable 32 and circumferencial direction notch turntable change light The openings of sizes of door screen, to change the convergent angle of laser beam.
Specific embodiment three
The laser engraving machine light channel structure of the present embodiment, on the basis of specific embodiment one or specific embodiment two, into One step limits window transparent plate 31, the assembling structure of radial direction notch turntable 32 and circumferencial direction notch turntable 33 in diaphragm 3, As shown in Figure 5.
In the two sides of the opposite side and radial direction notch turntable 32 of window transparent plate 31 and circumferencial direction notch turntable 33, It is provided with annular groove, equidistantly distributed has ball 34 in annular groove, and the ball 34 is fixed by ball rack 35;Window transparent plate 31 It is made with circumferencial direction notch turntable 33 by magnetic material, synonyms pole is staggered relatively, using magnetic force, by window transparent plate 31, radial direction notch turntable 32 and circumferencial direction notch turntable 33 adsorb.
In the present embodiment, the structural schematic diagram of ball rack 35 is as shown in fig. 6, ball 34 is put into the hole of ball rack 35, In the direction of vertical optical axis, the position of ball 34 is limited by ball rack 35;It should be noted that ball rack 35 is needed by transparent material Material is made, it is ensured that light transmission.
Specific embodiment four
The laser engraving machine light channel structure of the present embodiment, in specific embodiment one, specific embodiment two or specific embodiment On the basis of three, the mounting structure between diaphragm 3 and sleeve 5 is further limited, as shown in Figure 7.
Window transparent plate 31 is fixedly mounted on sleeve 5, and there are two identical disposed in parallel logical on the sleeve 5 Slot, the circumference of the through slot covering 360- α angle;Radial direction notch turntable 32 and 33 side of circumferencial direction notch turntable are all provided with It is equipped with spanner 36, the spanner 36 is stretched out from the through slot being arranged on sleeve 5, pulls spanner 36, realizes radial direction notch The rotation of turntable 32 and circumferencial direction notch turntable 33.
Mounting structure between the present embodiment diaphragm 3 and sleeve 5 can be realized radial direction notch turntable 32 and circumference side The technical purpose being pivoted to notch turntable 33.
Specific embodiment five
The laser engraving machine light channel structure of the present embodiment further limits spanner 36 on the basis of specific embodiment four Matching relationship between through slot.
Wherein, 360/ α sipes is equidistantly provided on through slot, it is as shown in Figure 8 that Local map is unfolded in through slot;
It is provided with the through-hole for being directed toward sipes two sides on the spanner 36, is provided with spring 37 in through-hole, the spring 37 Two sides are mounted on cap nut 38;In its natural state, the distance between two caps 38 are greater than through slot width, spring 37 to spring 37 Under compression, the distance between two caps 38 are less than through slot width.
Structure change when spanner 36 is by through slot is as shown in Figure 9, it should be noted that between spring 37 and cap nut 38 Mounting means, those skilled in the art can be realized, do not need to introduce in further detail.
Such structure design, when can make spanner 36 by sipes, under the elastic force effect of spring 37, two caps 38 block In sipes, the positioning of pair radius direction notch turntable 32 and 33 circumferencial direction of circumferencial direction notch turntable is realized, and then make window Mouth transparent plate 31, radial direction notch turntable 32 and circumferencial direction notch turntable 33 are in fixed position permutation and combination.

Claims (1)

1. laser engraving machine light channel structure, which is characterized in that set gradually object lens (1), pin hole (2), light along the light direction of propagation Late (3) and ellipsoidal mirror (4);Object lens (1) focal position and ellipsoidal mirror (4) over focus position are overlapped, weight Pin hole (2) are set at conjunction;Collimated light beam forms point light source along optical axis direction illumination objective (1), in pin hole (2) position, using Ellipsoidal mirror (4) reflexes to perifocus position, is converged to a hot spot;Diaphragm (3) can be reflected in pin hole (2) and ellipsoid Mirror moves between (4) along optical axis direction, and the openings of sizes of diaphragm (3) can adjust;
The openings of sizes of diaphragm (3) can adjust, by being realized with flowering structure:
The diaphragm (3) is by the window transparent plate (31) for the not pivoting being coaxially disposed, the radial direction notch of pivoting Turntable (32) and the circumferencial direction notch turntable (33) of pivoting composition;
The window transparent plate (31) circumferencial direction the first ring and the second ring, in the first radius of radial direction and the second half The region iuuminting that diameter surrounds, other regions are opaque;Folded central angle is α between first radius and the second radius, and α can be whole Except 360 degree;
The radial direction notch turntable (32) is divided into 360/ α region in circumferencial direction, in each area, in circumference First ring and the second ring in direction, in the region iuuminting that two radiuses of radial direction surround, other regions are opaque;Two Folded central angle arranges in 360/ α region at arithmetic progression between radius, and maximum is no more than α;
The circumferencial direction notch turntable (33) is divided into 360/ α region in circumferencial direction, in each area, in circumference First ring in direction and two rings among the second ring, in the region that the first radius of radial direction and the second radius surround thoroughly Light, other regions are opaque;The distance between two rings arrange in 360/ α region at arithmetic progression, and maximum is no more than the The distance between one ring and the second ring;
In the two sides of the opposite side and radial direction notch turntable (32) of window transparent plate (31) and circumferencial direction notch turntable (33), It is provided with annular groove, there is ball (34) equidistantly distributed in annular groove, the ball (34) is fixed by ball rack (35);Window Transparent plate (31) and circumferencial direction notch turntable (33) are made by magnetic material, and synonyms pole is staggered relatively, using magnetic force, Window transparent plate (31), radial direction notch turntable (32) and circumferencial direction notch turntable (33) are adsorbed.
CN201810016728.1A 2017-01-11 2017-01-11 Laser engraving machine light channel structure Expired - Fee Related CN107984081B (en)

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CN201710020922.2A CN106695114B (en) 2017-01-11 2017-01-11 A kind of laser engraving machine light channel structure
CN201810016728.1A CN107984081B (en) 2017-01-11 2017-01-11 Laser engraving machine light channel structure

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CN201810016727.7A Expired - Fee Related CN107984080B (en) 2017-01-11 2017-01-11 A kind of light channel structure for laser engraving machine
CN201710020922.2A Expired - Fee Related CN106695114B (en) 2017-01-11 2017-01-11 A kind of laser engraving machine light channel structure
CN201810016729.6A Expired - Fee Related CN108080784B (en) 2017-01-11 2017-01-11 A kind of light channel structure towards laser engraving machine

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CN201710020922.2A Expired - Fee Related CN106695114B (en) 2017-01-11 2017-01-11 A kind of laser engraving machine light channel structure
CN201810016729.6A Expired - Fee Related CN108080784B (en) 2017-01-11 2017-01-11 A kind of light channel structure towards laser engraving machine

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CN112453692B (en) * 2020-12-01 2022-03-29 强一半导体(苏州)有限公司 MEMS probe laser etching method

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CN108080784B (en) 2019-05-28
CN106695114A (en) 2017-05-24
CN108080784A (en) 2018-05-29
CN107984080A (en) 2018-05-04
CN106695114B (en) 2018-05-25
CN107984080B (en) 2019-05-03
CN107984081A (en) 2018-05-04

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