CN1745955A - Method and apparatus for supercharging water constraint layer based on laser impact technology - Google Patents

Method and apparatus for supercharging water constraint layer based on laser impact technology Download PDF

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Publication number
CN1745955A
CN1745955A CN 200510094810 CN200510094810A CN1745955A CN 1745955 A CN1745955 A CN 1745955A CN 200510094810 CN200510094810 CN 200510094810 CN 200510094810 A CN200510094810 A CN 200510094810A CN 1745955 A CN1745955 A CN 1745955A
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China
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water
laser
tap
control
constraint layer
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CN100409994C (en
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张永康
任旭东
周建忠
冯爱新
葛涛
王利强
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Jiangsu University
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Jiangsu University
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Abstract

An apparatus based on laser impact technique for pressurizing the water restraining layer is composed of water cleaning unit, water flow controlling box, adjustable tap, following controller of tap, water recovering unit, pressure regulating knob and microcomputer controller. Its method includes such steps as cleaning water, controlling the speed and flow of water stream for preventing turbulent flow and ensuring high thickness uniformity of water layer and pressurizing effect, and recovering water for reuse.

Description

Method and apparatus based on the novel supercharging water constraint layer of laser impact technology
Technical field
The present invention relates to machine-building and laser impact technology field, refer in particular to a kind of apparatus and method laser impact intensified and the novel supercharging water constraint layer that is shaped that are used for.
Background technology
Laser shock processing (LSP) is a kind of manufacturing process with very good prospect, and its principle is that the shock wave and the material of high power (Gpa level) short pulse (ns level) induced with laser interacts.This technology is mainly used in material modification, impacts aspects such as moulding and Non-Destructive Testing, and this technology has obtained extensive use in all trades and professions such as mechanical manufacturing engineering, Aero-Space, microelectronics, military affairs at present.
Restraint layer in the laser shock processing is meant that the one deck that covers the material surface that is hit is to laser-light transparent (optical maser wavelength is had good penetrability) material, its shock wave to induced with laser has played effect of contraction, thereby has effectively strengthened action time and the active force of shock wave to the material that is hit.The restraint layer technology is handled laser-impact has synergistic effect, be to produce the obviously important means of laser blast wave effect, be that laser blast wave is able to engineering key in application and precondition, so good restraint layer quality is one of technology the most key in the laser impact technology.
Domestic and foreign literature, the restraint layer in the patent that can consult at present are generally water, waterglass, glass and flexible lamina etc.As U.S. Pat 5741559 " Laser peening process and apparatus " is exactly that to adopt flowing water be restraint layer; Use flexible lamina as restraint layer in addition in addition, as China patent CN1404954 " a kind of be used for flexible lamina that laser-impact is handled ".All there is open defect in several restraint layer materials, and the pressurized effect of glass is remarkable, but owing to need repeat when clamping inconvenience and large tracts of land are impacted and repeatedly multiple spot impacts and clamping repeatedly, and can not be used for the curved surface laser-impact, operate loaded down with trivial detailsly, cleaning is complicated, so practicality is very poor; Though flexible lamina can solve the former some defectives, because restraint layer be flexible, synergy is obvious not as the restraint layer of rigidity, and the selection of flexible lamina, making have relatively high expectations, so cost is also higher relatively; And when using water as restraint layer, better flexible, can realize that large tracts of land is impacted and repeatedly multiple spot impact, but it is undesirable always that water is tested report both at home and abroad as its pressurized effect of restraint layer, and the turbulent flow of current makes the uniformity that water flows through test specimen surface water restraint layer thickness accurately not control in the existing experimental provision, and the punch-through effect that is easy to generate flowing water influences the laser-impact effect.The thickness that goes out water constraint layer as U.S. Pat 5741559 " Laser peening process andapparatus " middle finger is approximately 0.01~20mm, but the water constraint layer thickness of this patent can not accurately control, can only approximately estimate.Also have not seen reported in the data that other parameter controls (comprising water velocity, water flow pressure, flow width and area) of water constraint layer at home and abroad can be consulted in the laser-impact.
Summary of the invention
The purpose of this invention is to provide a kind of be used for novel method and device laser impact intensified and laser impact forming water constraint layer increase impact effect, can guarantee the uniformity and the controllability of the cascade restraint layer thickness in surface of the work Laser Processing zone, further laser-impact can be applied to irregular test specimen surface, realize batch production production.
A kind of method of the novel supercharging water constraint layer based on laser impact technology: water enters in the control water tank by water inlet pipe, cover the zone to be processed of surface of the work through adjustable tap, surface of the work is a little less than the current plane in the process engineering, laser instrument inspires laser permeate water restraint layer and impacts surface of the work, the beginning impact forging, in forming process, regulate flow and the speed that adjusting pressuring knob is controlled water outlet by microcomputerized controller, to guarantee in impact process, not occur the turbulent flow of current; Regulate the width and the thickness of adjustable tap control water constraint layer current by microcomputerized controller, flow width will guarantee to cover the zone to be processed of surface of the work, the thickness of water constraint layer is then regulated according to the material and the thickness of concrete workpiece, and guarantee that water flows through the uniformity of surface of the work water constraint layer thickness, improve the boost performance of water constraint layer; Follow the laser facula advanced in unison by microcomputerized controller control tap with line control unit, guarantee that water constraint layer covers the zone to be processed of workpiece, and can be according to the real-time water outlet direction of adjusting adjustable tap of the degree of irregularity of work surface, the water outlet direction of adjustable tap can realize 360 degree rotations, guarantees that the current plane is vertical with the Laser Transmission direction; Water flows through surface of the work and falls into apparatus for recovering later on, flows into purifier by return pipe, finishes the once circulation of component shaping.
A kind of novel supercharging water constraint layer device based on laser impact technology, its by a control water tank that is used to control discharge, tap with line control unit, a purifier, an apparatus for recovering, a microcomputerized controller; The control water tank is made up of adjusting pressuring knob, water inlet pipe, adjustable tap, purifier links to each other with the control water tank by water inlet pipe, apparatus for recovering is positioned at control water tank below, its upper end is a little less than the adjustable tap of control water tank, apparatus for recovering links to each other with purifier by return pipe, microcomputerized controller is controlled adjusting pressuring knob, adjustable tap, tap respectively with line control unit, purifier.
The adjusting parameter of the device of water constraint layer is: the speed of current is 5~10cm/s, and water flow pressure is 0.1~0.5kg/cm 2, the width 10~30mm of current, greater than laser spot diameter, current are at the about thick 1~5mm of surface of the work.
The present invention has improved the pressurized effect of water constraint layer in laser-impact is handled, in the laser-impact process, automatically control the direction that the speed of flowing water restraint layer current and flow and water cover surface of the work by microcomputerized controller, obtain to test the thickness of the restraint layer that needs, the area of restraint layer, realize plate large tracts of land multiple spot and repeatedly impact automatically continuously, and because flexibility can be used for the processing of curved surface laser-impact well.
Advantage of the present invention is as follows:
(1) this method adopts adjusting pressuring knob to regulate adjustable water discharge of water faucet and can guarantee water as the uniformity of restraint layer on the laser-impact surface, has reduced the splash phenomena of water constraint layer when impacting;
(2) the adjustable tap of this method can be adjusted the thickness of water constraint layer, can adjust the thickness of best water constraint layer according to the difference of the different of workpiece material and distortion institute energy requirement like this;
(3) tap of this method can be adjusted by the real-time tracking laser facula with line control unit, can be applicable to processing of large tracts of land plate and Machining of Curved Surface, and handling for laser-impact has certain practical value;
(4) this method adopts the water reclaiming clean, when practical laser adds the bump in man-hour, need not extra water system, and the water constrained system is simple like this, reduces cost, has increased practical application.Help the application of in the future small-sized real-time laser-impact system.
Description of drawings
Fig. 1: structural representation of the present invention
Fig. 2: the part figure of laser-impact curved surface
1. adjustable tap 2. adjusting pressuring knobs 3. control water tanks 4. water inlet pipes 5. purifiers 6. microcomputerized controllers 7. return pipes 8. apparatus for recovering 9. workpiece 10. water constraint layers 11. laser beams 12. taps are with line control unit 13. current 14. laser beams 15. aircraft blades
The specific embodiment
Embodiment 1
When the large tracts of land multiple spot repeatedly impacts the alloying metal surface, at first by microcomputerized controller (6) setting laser hot spot path, route map according to microcomputerized controller (6) setting, tap can be controlled adjustable tap (1) in real time with line control unit (12) and follow laser facula (11) adjustment, cascade does not stop to move along with moving of laser facula, the adjusting parameter that microcomputerized controller (6) control tap is rationally regulated the device of water constraint layer is: the speed of current is 8cm/s, water flow pressure 0.3kg/cm 2, the width 20mm of current, current be at the about thick 5mm of surface of the work, thereby reach desirable restraint layer parameter.In the laser-impact process; purifier (5) purifies the water that flows to control water tank (3); impurity thereby minimizing is flowed through in the water of surface of the work; improve the quality of water constraint layer (10); improve the laser-impact effect; apparatus for recovering (8) reclaims the surplus water behind the impact experiment; and be back to purifier (5) purification utilization again by return pipe; the work such as cleaning work platform in the experiment gap have been reduced like this; having reduced single-piece workpiece single-point process time single impacts respectively; need not to shut down clamping and cleaning, finally realize big drape forming or reinforcement.
Embodiment 2:
In laser-impact curved surface aircraft blade, the blade laser-impact that water constraint layer is used for the whole gyroscope wheel of aircraft (F119) abroad, but this blade is owing to be curved surface, water directly is punched in the uniformity that can not guarantee restraint layer thickness on the blade, and can not guarantee that horizontal plane direction and laser beam are perpendicular.Microcomputerized controller among the present invention (6) is controlled adjustable tap (1) in real time and is made that water constraint layer (13) thickness of aircraft spoon of blade normal vertical plane is even, and tap can move along with the mobile retinue of laser facula (14) with line control unit (12), can guarantee that like this laser vertical impact on the surface of workpiece, makes laser-impact respond well.

Claims (3)

1, a kind of method of the novel supercharging water constraint layer based on laser impact technology, it is characterized in that: water enters in the control water tank (3) by water inlet pipe (4), cover the zone to be processed on workpiece (9) surface through adjustable tap (1), workpiece in the process (9) surface is a little less than the current plane, laser instrument inspires laser permeate water restraint layer and impacts workpiece (9) surface, the beginning impact forging, in forming process, regulate the flow and the speed of adjusting pressuring knob (2) control water outlet respectively by microcomputerized controller (6); Regulate the width and the thickness of adjustable tap (1) control water constraint layer current, and control tap and follow the laser facula advanced in unison, adjust the water outlet direction of adjustable tap, make the current plane vertical with the Laser Transmission direction with line control unit (12); Water falls into apparatus for recovering (8) after flowing through workpiece (9) surface, flows into purifier (5) by return pipe (7), finishes the once circulation of component shaping.
2, the method for a kind of novel supercharging water constraint layer based on laser impact technology according to claim 1, it is characterized in that: the adjusting parameter of the device of water constraint layer is: the speed of current is 5~10cm/s, water flow pressure is 0.1~0.5kg/cm 2, the width 10~30mm of current, greater than laser spot diameter, current are at the about thick 1~5mm of surface of the work.
3, a kind of supercharging device of the novel water constraint layer based on laser impact technology is characterized in that: be made up of with line control unit (12), a purifier (5), an apparatus for recovering (8), a microcomputerized controller (6) control water tank (3), a tap that is used to control discharge; The control water tank is made up of adjusting pressuring knob (2), water inlet pipe (4), adjustable tap (1), purifier (5) links to each other with control water tank (3) by water inlet pipe (4), apparatus for recovering (8) is positioned at control water tank (3) below, its upper end is a little less than the adjustable tap (1) of control water tank (3), apparatus for recovering (8) links to each other with purifier (5) by return pipe (7), microcomputerized controller (6) is controlled adjusting pressuring knob (2), adjustable tap (1), tap respectively with line control unit (12), purifier (5).
CNB2005100948109A 2005-10-14 2005-10-14 Method and apparatus for supercharging water constraint layer based on laser impact technology Expired - Fee Related CN100409994C (en)

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Cited By (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102494821A (en) * 2011-11-25 2012-06-13 江苏大学 Device for detecting laser shock wave pressure
CN102507064A (en) * 2011-11-25 2012-06-20 江苏大学 Detection device of pressure distribution of laser impact waves
CN103203543A (en) * 2013-02-04 2013-07-17 中国航空工业集团公司北京航空制造工程研究所 Method and device for injecting water restraint layer of laser shock processing blade
CN103302406A (en) * 2013-06-20 2013-09-18 江苏大学 Intra-light water delivery laser shock peening method and device
WO2015101103A1 (en) * 2013-12-31 2015-07-09 唐山轨道客车有限责任公司 Laser shock peening device and water spray pipe thereof
CN104870140A (en) * 2012-12-20 2015-08-26 3M创新有限公司 Material processing low-inertia laser scanning end-effector manipulation
CN105907942A (en) * 2016-06-16 2016-08-31 江苏大学 Device for intensifying shaft sleeve through underwater laser cavitation and intensifying method of device
CN106119518A (en) * 2016-08-10 2016-11-16 江苏大学 A kind of laser impact intensified circulation water injection system
CN106337110A (en) * 2015-07-16 2017-01-18 江苏大学 Apparatus and method for improving cavitation wear resistance of water pump impeller
CN108655569A (en) * 2018-04-13 2018-10-16 江苏大学 A kind of impact of underwater laser is without mold progressive molding device and method
CN110408769A (en) * 2019-07-02 2019-11-05 江苏大学 The device and method that femtosecond laser impact improves corrosion resistance of magnesium alloy
US10745776B2 (en) 2015-08-13 2020-08-18 Jiangsu University Method and device for increasing laser-induced shock wave pressure
CN113088677A (en) * 2021-04-08 2021-07-09 中国航发北京航空材料研究院 Water restraint layer device of laser shock peening technology and measuring method thereof

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5744781A (en) * 1995-08-07 1998-04-28 General Electric Company Method and apparatus for laser shock peening
GB9818484D0 (en) * 1998-08-26 1998-10-21 Rolls Royce Plc A method and apparatus for improving material properties
US6281473B1 (en) * 2000-01-19 2001-08-28 General Electric Company Apparatus and method for controlling confinement media thickness in laser shock peening
US7268317B2 (en) * 2003-09-02 2007-09-11 Lsp Technologies, Inc. Laser peening process and apparatus using a liquid erosion-resistant opaque overlay coating

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102507064A (en) * 2011-11-25 2012-06-20 江苏大学 Detection device of pressure distribution of laser impact waves
CN102494821B (en) * 2011-11-25 2013-11-20 江苏大学 Device for detecting laser shock wave pressure
CN102494821A (en) * 2011-11-25 2012-06-13 江苏大学 Device for detecting laser shock wave pressure
CN104870140B (en) * 2012-12-20 2018-05-22 3M创新有限公司 Material processes low inertial laser scanning end effector manipulation device
CN104870140A (en) * 2012-12-20 2015-08-26 3M创新有限公司 Material processing low-inertia laser scanning end-effector manipulation
CN103203543A (en) * 2013-02-04 2013-07-17 中国航空工业集团公司北京航空制造工程研究所 Method and device for injecting water restraint layer of laser shock processing blade
CN103302406A (en) * 2013-06-20 2013-09-18 江苏大学 Intra-light water delivery laser shock peening method and device
WO2015101103A1 (en) * 2013-12-31 2015-07-09 唐山轨道客车有限责任公司 Laser shock peening device and water spray pipe thereof
CN106337110A (en) * 2015-07-16 2017-01-18 江苏大学 Apparatus and method for improving cavitation wear resistance of water pump impeller
US10745776B2 (en) 2015-08-13 2020-08-18 Jiangsu University Method and device for increasing laser-induced shock wave pressure
CN105907942A (en) * 2016-06-16 2016-08-31 江苏大学 Device for intensifying shaft sleeve through underwater laser cavitation and intensifying method of device
CN106119518A (en) * 2016-08-10 2016-11-16 江苏大学 A kind of laser impact intensified circulation water injection system
CN106119518B (en) * 2016-08-10 2018-01-16 江苏大学 A kind of laser impact intensified circulation water injection system
CN108655569A (en) * 2018-04-13 2018-10-16 江苏大学 A kind of impact of underwater laser is without mold progressive molding device and method
CN108655569B (en) * 2018-04-13 2020-06-26 江苏大学 Underwater laser impact die-free incremental forming device and method
CN110408769A (en) * 2019-07-02 2019-11-05 江苏大学 The device and method that femtosecond laser impact improves corrosion resistance of magnesium alloy
CN113088677A (en) * 2021-04-08 2021-07-09 中国航发北京航空材料研究院 Water restraint layer device of laser shock peening technology and measuring method thereof
CN113088677B (en) * 2021-04-08 2022-06-28 中国航发北京航空材料研究院 Water confinement layer device of laser shock peening technology and measuring method thereof

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