CN2664011Y - A lens vibrating type laser scanning system - Google Patents

A lens vibrating type laser scanning system Download PDF

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Publication number
CN2664011Y
CN2664011Y CN 200320116330 CN200320116330U CN2664011Y CN 2664011 Y CN2664011 Y CN 2664011Y CN 200320116330 CN200320116330 CN 200320116330 CN 200320116330 U CN200320116330 U CN 200320116330U CN 2664011 Y CN2664011 Y CN 2664011Y
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CN
China
Prior art keywords
axis
scanner head
servo motor
laser
axis scanner
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Expired - Lifetime
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CN 200320116330
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Chinese (zh)
Inventor
黄树槐
史玉升
叶春生
陈国清
谢军
文世峰
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Huazhong University of Science and Technology
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Huazhong University of Science and Technology
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Priority to CN 200320116330 priority Critical patent/CN2664011Y/en
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Publication of CN2664011Y publication Critical patent/CN2664011Y/en
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Abstract

The utility model discloses a lens vibrating type laser scanning system, which comprises a laser, a focusing module, an X axis scanning head and a Y axis scanning head. The laser beam reaches the focus point working plane through the focusing module, the X axis scanning head and the Y axis scanning head. The X axis scanning head (4) and the Y axis scanning head (5) both consist of a full digital alternative current servo motor (7 and 9) and a lens (8 and 10) added on a rotational shaft. The limit apparatus is arranged on the rotational shaft of the full digital alternative current servo motor (7 and 9). A control system (15) can control the movement of the lens (8 and 10) on the X axis and Y axis by two controllers (12 and 13) of the full digital alternative current servo motor, thereby realizing two-dimension scanning. A dynamical focusing module is added to realize three-dimension scanning. The laser scanning system has the advantages of a simple structure, high precision, fast scanning speed, high reliability, low cost and overcoming temperature floating of analog type.

Description

A kind of mirror-vibrating laser scanning system
Technical field
The utility model belongs to the optical, mechanical and electronic integration field, is specifically related to a kind of mirror-vibrating laser scanning system.
Background technology
The range of application of laser scanner technique is more and more wider, its application industry relates to quick shaping, image transfer, photoelectricity medical treatment, Laser Processing etc., as laser fine process equipment, isotopic separation equipment, computing machine---and film output device, laser printer, satellite communication device, laser amusement equipment, laser resistor trimming equipment, contactless printing/printing, facsimile equipment and military night vision system, laser radar, air surveillance and the navigational system of cruising.
In laser scanner techniques such as quick shaping, laser labelling are used, require laser beam can accurately focus on optional position on the visual field, and moving according to the relation of determining of luminous point carried out.
In the various laser scanner techniques, mirror-vibrating scanning is a kind of scan mode that extensively adopts.It is fast that it has speed, the bearing accuracy advantages of higher.Its principle as shown in Figure 1, the light beam that laser instrument 1 sends is by focus module 3, through X-axis scanner head 4, Y-axis scanner head 5 arrives focus working faces 6, is called 2-D vibration mirror formula scanning system.Laser beam is by dynamic focussing module 2 and focus module 3, and through X-axis scanner head 4, Y-axis scanner head 5 arrives focus working face 6, is referred to as three-dimensional mirror-vibrating scanning system.
At present, the mirror-vibrating laser scanning system all adopts the topworks of galvanometer as scanning system, and galvanometer is a topworks to the electric current sensitivity, and therefore, system control mode is the analog quantity control mode.The analog quantity control mode is difficult to realize the technical characterstic of " volume is little, reliability height, the dissipation of heat is few ", and exists temperature to float, be subject to shortcomings such as interference.
Summary of the invention
The purpose of this utility model is to overcome above-mentioned weak point, and a kind of mirror-vibrating laser scanning system is provided, and this system can overcome the shortcoming that temperature is floated, is subject to disturb, and it is little to have a volume, reliability height, the advantage that the dissipation of heat is few.
A kind of mirror-vibrating laser scanning system that the utility model provides, comprise laser instrument, focus module, X-axis scanner head and Y-axis scanner head, laser beam is passed through focus module, arrive the focus working face through X-axis scanner head and Y-axis scanner head, it is characterized in that: described X-axis scanner head and Y-axis scanner head are formed by digital ac servo motor and the eyeglass that is attached in its rotating shaft, and the rotating shaft of digital ac servo motor is provided with stop means; Control system is controlled two eyeglasses respectively by the controller of two digital ac servo motors and is moved on X-axis and Y-axis, realizes two-dimensional scan.
Different with existing scanner head driving, the utility model adopts the topworks of digital ac servo motor as scanner head, has realized digital control.This system has little, the high precision of volume, high response, advantage such as control is simple, reliability is high and the dissipation of heat is few.Native system can scan the two dimensional surface shape of various complexity, is core with it, can constitute various practical laser scanning systems.
Description of drawings
Fig. 1 is a mirror-vibrating scanning system schematic diagram;
Fig. 2 constitutes synoptic diagram for scanner head;
Fig. 3 is the formation synoptic diagram of dynamic focussing module;
Fig. 4 is the scanning light path synoptic diagram of 2-D vibration mirror formula laser scanning system;
Fig. 5 is a mechanical position limitation piece synoptic diagram;
Fig. 6 is the structural drawing of 2-D vibration mirror formula laser scanning system control system;
Fig. 7 is the structural drawing of three-dimensional mirror-vibrating laser scanning system control system.
Embodiment
The utility model also is by laser instrument 1, focus module 3, and X-axis scanner head 4 and Y-axis scanner head 5 constitute 2-D vibration mirror formula scanning system.Set up dynamic focussing module 2 before the focus module 3, can constitute three-dimensional mirror-vibrating scanning system.
Below above-mentioned each parts are illustrated respectively.
As shown in Figure 2, X-axis scanner head 4 and Y-axis scanner head 5 all are made up of motor 7 and the eyeglass 8 that is attached in its rotating shaft.Motor adopts the digital ac servo motor, and the rotational angle of eyeglass is: ± 30 °.
Focus module 3 can adopt prior art, and its design has multiple, as under the smaller situation of laser power, can adopt being made up of convex lens and expanding the bundle focus module as shown in Figure 1.
Dynamic focussing module 2 is applicable to scanning system behind the object lens.Dynamic focussing module has been finished the out of focus on the full visual field has been proofreaied and correct.As shown in Figure 3.Its principle of work is: a runner 18 is installed on the output shaft of digital ac servo motor 11, is driven a lens mount that moves 16 by steel band 17 gearings such as grade on precise guide rail and realize moving around fast.The maximum moving range of lens mount is 10mm.Because no back and forth movement dead band can be improved its control accuracy greatly.Like this, also just realized rotatablely moving of motor changed into the rectilinear motion of microscope base.
Dynamic focussing module 2 is formed the focuson system of scanning system with focus module 3.Only dynamic focussing module 2 does reciprocating linear motion under the driving of motor.3 of focus module are static.The focuson system plays focussing force on the one hand, plays the optical lever effect on the other hand, limits the displacement of dynamic focussing module.
Because the full digital AC servo motor is continuously running, exceed the horizontal glass sheet its in designed angle (being generally: ± 30 °), swing, on servomotor, stop means should be set.For simply, safely as seen, can adopt adjustable mechanical position limitation block.As shown in Figure 4, A, each band is a bit made relative adjustment and can be got spacing angular range on the B dish.The center through hole of mechanical position limitation block is passed in the rotating shaft of servomotor, and block is fixed on the bearing of motor.
For flat scanning among a small circle, adopt 2-D vibration mirror formula scanning system.As Fig. 4, shown in Figure 6, control system 15 is by the digital ac servo motor 7 of X-axis scanner head controller 12 control X-axis scanner heads; Digital ac servo motor 10 by Y-axis scanner head controller 13 control Y-axis scanner heads; Servomotor is the full digital AC servo motor of absolute value encoder mode.
Eyeglass 8,10 on X, the Y-axis scanner head reflexes to laser beam on the predetermined X of workplace 6, the Y coordinate points under the control of servomotor 7,9, and by the coupling of X, Y-axis scanner head, system realizes two-dimensional scan.
The position of X, Y-axis scanner head can require design, optimal design according to reality.
For large-scale flat scanning, mirror-vibrating scanning system behind the three-dimensional object lens of employing drive attitude focus module.As Fig. 2, Fig. 4, shown in Figure 7, control system 15 is by the digital ac servo motor 7 of X-axis scanner head controller 12 control X-axis scanner heads; Digital ac servo motor 10 by Y-axis scanner head controller 13 control Y-axis scanner heads; By the digital ac servo motor 11 in the controller 14 control dynamic focussing modules of dynamic focussing module.Three servomotors are the full digital AC servo motor of absolute value encoder mode.
Eyeglass 8,10 on X, the Y-axis scanner head reflexes to laser beam on the predetermined X of workplace 6, the Y coordinate points under the control of servomotor 7,9.By the compensation of dynamic focussing module 2, the laser beam that reflexes on X, the Y arbitrary coordinate point focuses at grade all the time.
The position of X, Y-axis scanner head can require design, optimal design according to reality.
Above-mentioned control system 15 can refer to that industrial control computer, PC and single-chip microcomputer etc. have the controller of data-handling capacity, is responsible for the control of total system and coordinates.Controller 12-14 refers to the controller of control servomotor motion.
With the scanning system that is applied to the powder sintered shaping of selective laser (SLS) is example.By adopting laser instrument after the supporting type selecting is the CO2 laser instrument, scanning field of view 400mm * 400mm.The MINAS A serial motors that the digital ac servo motor adopts PANASONIC motor company to produce, control system adopts industrial computer, the moving range ± 5mm of dynamic focussing module, scanner head mechanical deflection angle ± 20 °, sweep velocity reaches 2m/s, and the size of hot spot is 350um on the visual field.

Claims (2)

1, a kind of mirror-vibrating laser scanning system, comprise laser instrument, focus module, X-axis scanner head and Y-axis scanner head, laser beam is passed through focus module, arrive the focus working face through X-axis scanner head and Y-axis scanner head, it is characterized in that: described X-axis scanner head (4) and Y-axis scanner head (5) are formed by digital ac servo motor (7,9) and the eyeglass (8,10) that is attached in its rotating shaft, and the rotating shaft of digital ac servo motor (7,9) is provided with stop means; Control system (15) is controlled eyeglass (8,10) respectively by the controller (12,13) of two digital ac servo motors and is moved on X-axis and Y-axis, realizes two-dimensional scan.
2, scanning system according to claim 1, it is characterized in that: described focus module (3) is provided with dynamic focussing module (2) before, this module includes digital ac servo motor (11), runner with stopper (18) is housed on the output shaft of servomotor, runner (18) is reciprocating on guide rail by gearing drive lens seat (16), be provided with condenser lens in the lens mount, be used to finish the out of focus on the full visual field is proofreaied and correct.
CN 200320116330 2003-12-12 2003-12-12 A lens vibrating type laser scanning system Expired - Lifetime CN2664011Y (en)

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Application Number Priority Date Filing Date Title
CN 200320116330 CN2664011Y (en) 2003-12-12 2003-12-12 A lens vibrating type laser scanning system

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Application Number Priority Date Filing Date Title
CN 200320116330 CN2664011Y (en) 2003-12-12 2003-12-12 A lens vibrating type laser scanning system

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CN2664011Y true CN2664011Y (en) 2004-12-15

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104464483A (en) * 2014-12-25 2015-03-25 湖北工程学院 Two-dimensional galvanometric laser scanning teaching demonstration device and implementing method thereof
CN111168234A (en) * 2018-11-11 2020-05-19 上海三克激光科技有限公司 Light beam shaping system and method
CN117148565A (en) * 2023-10-30 2023-12-01 杭州爱新凯科技有限公司 Front focusing galvanometer scanning system and scanning method with adjustable multiplying power

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104464483A (en) * 2014-12-25 2015-03-25 湖北工程学院 Two-dimensional galvanometric laser scanning teaching demonstration device and implementing method thereof
CN104464483B (en) * 2014-12-25 2017-01-11 湖北工程学院 Two-dimensional galvanometric laser scanning teaching demonstration device and implementing method thereof
CN111168234A (en) * 2018-11-11 2020-05-19 上海三克激光科技有限公司 Light beam shaping system and method
CN117148565A (en) * 2023-10-30 2023-12-01 杭州爱新凯科技有限公司 Front focusing galvanometer scanning system and scanning method with adjustable multiplying power
CN117148565B (en) * 2023-10-30 2024-02-02 杭州爱新凯科技有限公司 Front focusing galvanometer scanning system and scanning method with adjustable multiplying power

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Effective date of abandoning: 20031212

C25 Abandonment of patent right or utility model to avoid double patenting