• 제목/요약/키워드: Pulse laser ablation

검색결과 101건 처리시간 0.025초

시뮬레이션을 통한 레이저 융삭 추진의 우주 쓰레기 제거 응용 가능성 연구 (Research on Applicability of Laser Ablation Propulsion to Space Debris Removal by Simulations)

  • 유성문;이승민
    • 한국군사과학기술학회지
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    • 제25권2호
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    • pp.169-176
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    • 2022
  • Laser ablation propulsion(LAP) is the method to create impulse by laser ablation. It can be used to deorbit the space debris(SD), as its long-range property and versatility on any material. In this paper, we find out several requirements of the LAP system(LAPS) to deorbit the SD by simple numerical calculations of the SD orbit and laser beam flux. As a result, minimum operable altitude angle turned out to be a crucial variable to the LAPS. Moreover, if minimum operable altitude angle is 10°, and if the minimum distance between the LAPS and the SD is below 450 km, 1 m/s2 is sufficient to deorbit the SD by once. With 18 kJ/3 ns pulsed laser and cube shaped 100 kg SD, 1 m/s2 acceleration can be achieved by increasing the pulse repetition rate over 34~53 Hz, depending on the size of the SD. This capability could compare with the conceptual design of the Japan Establishment for a Power-laser Community Harvest(J-EPoCH) facility, which include 8 kJ, 5 PW@100 Hz laser.

폴리머의 엑시머레이저 어블레이션에 관한 연구 (A study of excimer laser ablation of polymer)

  • 신동식;이제훈;서정;김도훈
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2003년도 춘계학술대회 논문집
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    • pp.1857-1860
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    • 2003
  • The ablative decomposition mechanism of PMMA(polymethyt methacrylate), PET(polyethylene terephthalate) and PC(polycarbonate) with KrF excimer laser(λ: 248nm, pulse duration: 5ns) is investigated. The UV/Vis spectrometer analysis showed that PMMA is a weak absorber and PET, PC are a strong absorber at the wavelength of 248nm. The results(surface debris, melt, etch depth, etching shape) from drilling and direct writing experiments imply that ablation mechanism of PMMA is dominated by photothermal process, while that of PET, PC are dominated by photochemical process.

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Er:YAG 레이저를 이용한 치아 삭제시 동일출력에서 펄스에너지와 조사반복률의 영향 (Effect of Pulse Energy and Pulse Repetition Rate at the Identical Total Power During Enamel Ablation Using an Er:YAG Laser)

  • 원정연;김미은;김기석
    • Journal of Oral Medicine and Pain
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    • 제31권3호
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    • pp.223-229
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    • 2006
  • Er:YAG 레이저를 이용한 치아경조직 삭제의 효율과 안전도는 물분사량, 조사시간, 조사방법, 에너지, 조사반복율 등의 다양한 변수에 의해 좌우된다. 이 연구의 목적은 출력을 고정한 상태에서 에너지와 조사반복율을 달리하였을 때 삭제율과 치수내 온도변화가 어떤 요소에 의해 더 많이 좌우되는지를 평가하고자 하였다. 발거된 건전 대구치를 두 조각으로 나누어 치아표본을 준비하여 $300mJ{\times}10Hz$, $200mJ{\times}15Hz$, 및 $150mJ{\times}20Hz$의 조건에서 1.6 ml/min의 물을 분사하면서 법랑질표면에 3초간 Er:YAG 레이저를 조사하였다. 레이저 조사 전후의 치아 무게를 측정하여 그 차이로 삭제율을 평가하였다. 각 군당 표본은 10개로 하였다. 위의 조건에서 발생하는 치수내 온도변화를 평가하기 위하여 발거된 건전한 대구치를 이용하여 access cavity를 형성하고 치수조직을 제거한 다음, hard acrylic resin으로 만든 block에 치아를 매식하고 레이저를 조사되는 측 치수벽과 반대측 치수벽에 온도측정탐침을 위치시켜 레이저조사과정과 그 후에 발생하는 온도변화를 측정하였다. 조사조건은 삭제율 평가시와 동일하게 하였으며 각 군당 표본은 5개로 하였다. 실험의 결과, 3W의 출력에서 치아삭제량은 펄스에너지의 증가에 따라 함께 증가되었다.(p=0.000) 반면에 치수 내 온도는 조사반복율의 증가에 의해 상승되었으나 각 군별, 조사측간에 유의한 차이는 없었다. 다만, $150{\times}20Hz$의 조사조건에서만 조사측 치수벽이 반대측에 비해 유의한 온도증가를 보였다(p=0.033). 본 연구의 결과는 Er:YAG 레이저의 치아삭제율은 조사반복율보다 펄스에너지의 영향을 많이 받는다는 점을 시사하고 있다.

나노초 야그 레이저 어블레이션에 의한 실리콘의 폭발적 제거 현상 (Explosive mass-removal processes during high power nanosecond Nd-YAG laser ablation of silicon)

  • 정성호
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2000년도 추계학술대회논문집A
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    • pp.736-742
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    • 2000
  • Mass removed from crystalline silicon samples during high power single-pulse laser ablation was studied by measuring the resulting crater morphology with a white light interferometric microscope. The volume and depth of the craters show a strong nonlinear change as the laser irradiance increases across a threshold value, that is, approximately $2.2{\times}10^{10}\;W/cm^2$. Time-resolved shadowgraph images of the ablation plume show the ejection of large particulates from the sample for laser irradiance above the threshold, with a time delay of about 300-400 nsec. The thickness of superheated liquid layer near the critical temperature was numerically estimated, considering the transformation of liquid metal into liquid dielectric near the critical state (i.e., induced transparency). The estimated thickness of the superheated layer at a delay time of 200 nsec agreed with the measured crater depths, suggesting that induced transparency promotes the formation of a deep superheated liquid layer which leads to an explosive boiling responsible for the sudden increase of crater volume and depth.

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다층 PCB 기판의 미세 가공을 위한 UV레이저 어블레이션에 관한 연구 (A Study on UV Laser Ablation for Micromachining of PCB Type Substrate)

  • 장원석;김재구;윤경구;신보성;최두선
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1997년도 추계학술대회 논문집
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    • pp.887-890
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    • 1997
  • Recently micromachining using DPSSL(Diode Pumped Solid State Laser) with 3rd harmonic wavelength is actively studied in laser machining area. Micromachining using DPSSL have outstanding advantages as UV source comparing with excimer laser in various aspect such a maintenance cost, maskless machining, high repetition rate and so on. In this study micro-drilling of PCB type substrate which consists of Cu-PI-Cu layer was performed using DPSS Nd:YAG laser(355nm, wavelength) in vector scanning method. Experimental and numerical method(Matlab simulation, FEM) are used to optimize process parameter and control machining depth. The man mechanism of this process is laser ablation. It is known that there is large gap between energy threshold of copper and that of PI. Matlab simulation considering energy threshold of material is performed to effect of duplication of pulse and FEM thermal analysis is used to predict the ablation depth of copper. This study could be widely used in various laser micromachining including via hole microdrilling of PCB, and micromachining of semiconductor components, medical parts and printer nozzle and so on.

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빔 쉐이핑을 이용한 펨토초 레이저 ITO 박막 가공 깊이 제어에 대한 연구 (Study of ablation depth control of ITO thin film using a beam shaped femtosecond laser)

  • 김훈영;윤지욱;최원석;;황경현;조성학
    • 한국레이저가공학회지
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    • 제17권1호
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    • pp.1-6
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    • 2014
  • Indium tin oxide (ITO) is an important transparent conducting oxide (TCO). ITO films have been widely used as transparent electrodes in optoelectronic devices such as organic light-emitting devices (OLED) because of their high electrical conductivity and high transmission in the visible wavelength. Finding ways to control ITO micromachining depth is important role in the fabrication and assembly of display field. This study presented the depth control of ITO patterns on glass substrate using a femtosecond laser and slit. In the proposed approach, a gaussian beam was transformed into a quasi-flat top beam by slit. In addition, pattern of square type shaped by slit were fabricated on the surfaces of ITO films using femtosecond laser pulse irradiation, under 1030nm, single pulse. Using femtosecond laser and slit, we selectively controlled forming depth and removed the ITO thin films with thickness 145nm on glass substrates. In particular, we studied the effect of pulse number on the ablation of ITO. Clean removal of the ITO layer was observed when the 6 pulse number at $2.8TW/cm^2$. Furthermore, the morphologies and fabricated depth were characterized using a optical microscope, atomic force microscope (AFM), and energy dispersive X-ray spectroscopy (EDS).

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펨토초 레이저 절삭 공정을 이용한 생분해성 나노섬유 표면 미세 패터닝 공정 (Micropatterning on Biodegradable Nanofiber Scaffolds by Femtosecond Laser Ablation Process)

  • 정용우;전인동;김유찬;석현광;정석;전호정
    • 한국표면공학회지
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    • 제49권6호
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    • pp.555-559
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    • 2016
  • A biodegradable nanofiber scaffolds using electrospining provide fibrous guidance cues for controlling cell fate that mimic the native extracellular matrix (ECM). It can create a pattern using conventional electrospining method, but has a difficulty to generate one or more pattern structures. Femtosecond(fs) laser ablation has much interested in patterning on biomaterials in order to distinguish the fundamental or systemic interaction between cell and material surface. The ablated materials with a short pulse duration using femtosecond laser that allows for precise removal of materials without transition of the inherent material properties. In this study, linear grooves and circular craters were fabricated on electrospun nanofiber scaffolds (poly-L-lactide(PLLA)) by femtosecond laser patterning processes. As parametric studies, pulse energy and beam spot size were varied to determine the effects of the laser pulse on groove size. We confirmed controlling pulse energy to $5{\mu}J-20{\mu}J$ and variation of lens maginfication of 2X, 5X, 10X, 20X created grooves of width to approximately $5{\mu}m-50{\mu}m$. Our results demonstrate that femtosecond laser processing is an effective means for flexibly structuring the surface of electrospun PLLA nanofibers.

펨토초 레이저 어블레이션을 이용한 알루미나 세라믹 기판의 정밀 마이크로 드릴링 (Precision microdrilling of alumina ceramic substrates by femtosecond laser ablation)

  • 김성훈;손익부;노영철;이종민;정성호
    • 한국레이저가공학회지
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    • 제11권1호
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    • pp.25-31
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    • 2008
  • The characteristics of femtosecond laser ablation of $Al_2O_3$ for prescision microfabrication are studied experimentally. Specifically, the process time during femtosecond laser drilling of microholes with $sub-100{\mu}m$ diameter are investigated for varying laser fluence, scan speed and beam path designs like trepanning with continuously changed start points. The accumulation of sub-micrometer size particles within the hole and the deterioration of edge clarity and roundness for decreasing hole diameter are examined and through process optimization the microdrilling with good hole quality is achieved using a femtosecond laser system (repetitionrate 1 kHz, wavelength 785 nm, pulse duration 185 fs)

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극초단 레이저를 이용한 PC-TEMs 초정밀 가공에 대한 연구 (Polycarbonate Track-Etched Membrane Micromachining by Ultrafast Pulse Laser)

  • 최혜운
    • 한국정밀공학회지
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    • 제28권1호
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    • pp.24-30
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    • 2011
  • PC-TEMs (Polycarbonate Track-Etched membranes) were micro-drilled for biomedical applications by ultrafast pulsed laser. The ablation and damage characteristics were studied on PE-TEMs by assuming porous thin membranes. The experiments were conducted in the range of 2.02 $J/cm^2$ and 8.07$J/cm^2$. The ablation threshold and damage threshold were found to be 2.56$J/cm^2$ and 1.14$J/cm^2$, respectively. While a conical shaped drilled holes was made in lower fluence region, straight shaped holes were drilled in higher fluence region. Nanoholes made the membrane as porous material and ablation characteristics for both bulk and thin film membranes were compared.

레이저를 이용한 마이크로/나노 알루미늄 입자 생성과 점화 (Generation and ignition of micro/nano - aluminum particles using laser)

  • 이경철;여재익
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2012년도 제38회 춘계학술대회논문집
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    • pp.429-434
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    • 2012
  • 금속 연료로 사용되는 마이크로/나노 알루미늄 입자를 산화피막에 의한 점화 지연을 최소화 하는 점화 방법을 제시 하였다. 알루미늄 입자를 생성시킴과 동시에 가열하여 입자가 생성된 직후 산소와 접촉시 격렬한 산화 반응을 유도하여 점화를 시키는 방법이다. 1064 nm 파장의 Nd:YAG 펄스 레이저를 이용한 레이저 삭마(laser ablation)를 알루미늄 시편에 발생시켜 입자를 생성하였으며, 산란 기법(scattering method)을 이용하여 입자를 가시화하여 생성을 확인하였다. 10.6 ${\mu}m$ 파장의 $CO_2$ 연속 레이저를 사용하여 알루미늄 시편을 가열하고 생성된 입자의 점화 열원으로 사용하여 알루미늄 입자가 점화되고 연소되어 이동하는 궤적을 확인하였다.

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