• 제목/요약/키워드: Ablation Characteristics

검색결과 138건 처리시간 0.028초

Nano Fabrication of Functional Materials by Pulsed Laser Ablation

  • 윤종원
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2009년도 추계학술발표대회
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    • pp.6.2-6.2
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    • 2009
  • Nanostructured materials arecurrently receiving much attention because of their unique structural andphysical properties. Research has been stimulated by the envisagedapplications for this new class of materials in electronics, optics, catalysisand magnetic storage since the properties derived from nanometer-scalematerials are not present in either isolated molecules or micrometer-scalesolids. This study presents the experimental results derived fromthe various functional materials processed in nano-scale using pulsed laserablation, since those materials exhibit new physical phenomena caused by thereduction dimensionality. This presentation consists of three mainparts to consider in pulsed laser ablation (PLA) technique; first nanocrystallinefilms, second, nanocolloidal particles in liquid, and third, nanocoating fororganic/inorganic hybridization. Firstly, nanocrystalline films weresynthesized by pulsed laser deposition at various Ar gas pressures withoutsubstrate heating and/or post annealing treatments. From the controlof processng parameters, nanocystalline films of complex oxides and non-oxidematerials have been successfully fabricated. The excellentcapability of pulsed laser ablation for reactive deposition and its ability totransfer the original stoichiometry of the bulk target to the deposited filmsmakes it suitable for the fabrication of various functionalmaterials. Then, pulsed laser ablation in liquid has attracted muchattention as a new technique to prepare nanocolloidal particles. Inthis work, we represent a novel synthetic approach to directly producehighly-dispersed fluorescent colloidal nanoparticles using the PLA from ceramicbulk target in liquid phase without any surfactant. Furthermore, novel methodbased on simultaneous motion tracking of several individual nanoparticles isproposed for the convenient determination of nanoparticle sizedistributions. Finally, we report that the GaAs nanocrystals issynthesized successfully on the surface of PMMA (polymethylmethacrylate)microspheres by modified PLD technique using a particle fluidizationunit. The characteristics of the laser deposited GaAs nanocrytalswere then investigated. It should be noted that this is the first successfultrial to apply the PLD process nanocrystals on spherical polymermatrices. The present process is found to be a promising method fororganic/inorganic hybridization.

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펨토초 레이저의 이송속도에 따른 Invar 합금의 어블레이션 특성 (Characteristics of the Femto-second Pulsed Laser Ablation according to Feed Velocity on the Invar Alloy)

  • 정일영;강경호;김재도;손익부;노영철;이종민
    • 한국정밀공학회지
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    • 제26권3호
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    • pp.25-31
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    • 2009
  • Femto-second laser ablation with the various feed velocities of the Invar alloy and the micro surface milling for the processing condition were studied. We used a regenerative amplified Ti:sapphire laser with a 1kHz repetition rate, 184fs pulse duration time and 785nm wavelength. Femto-second laser pulse was irradiated on the Invar alloy with the air blowing at the condition of various laser peak powers and feed velocities. An ablation characteristic according to feed velocity of the Invar alloy was appeared as the non-linear type at different zone of energy fluence. The micro surface milling of the Invar alloy using a mapping method was investigated. The optimal condition of micro surface milling was laser peak power of 22.8mW, feed velocity of 1 mm/s, beam gap of $1{\mu}m$. With the optimal processing condition, the fine rectangular shape without burr and thermal damage was achieved. Using the femto-second laser system, it demonstrates excellent tool for micro surface milling of the Invar alloy without heat effects and poor edge.

재진입 환경의 탄소/페놀릭 복합재 구조물의 열기계적 연계 해석 (Thermomechanical Coupled Analysis of Carbon/phenolic Composite Structures in Reentry Environments)

  • 손명진;신의섭
    • 한국항공우주학회지
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    • 제47권6호
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    • pp.414-421
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    • 2019
  • 본 논문에서는 재진입 환경에 노출된 탄소/페놀릭 복합재 구조물에 대한 열기계적 연계 해석을 수행하였다. 열기계적 연계를 위한 해석 인터페이스를 상용 소프트웨어를 이용하여 구축하였다. 열분해 및 삭마에 따른 물리적 거동 변화를 모사하기 위해 온도장과 변위장의 주요 지배방정식을 고려하였다. 구축한 해석 인터페이스를 이용하여 탄소/페놀릭 복합재 구조물에 대한 열기계적 연계해석을 수행하였으며 이를 아크 가열 풍동을 이용한 삭마 실험 결과와 비교하였다. 또한 탄소/페놀릭 복합재를 적용한 재진입 캡슐에 대한 열기계적 연계 해석을 수행하였다. 이를 통해 탄소/페놀릭 복합재의 삭마 특성 및 열 보호 효과와 구축한 해석 인터페이스의 활용성을 확인하였다.

고주파 열치료 장비의 Cool-Tip 온도에 따른 소간의 소작 특성 (Ablation Characteristics of Bovine Liver According to Cool-Tip Temperature of RFA Equipment)

  • 최영재;김정구
    • 대한방사선기술학회지:방사선기술과학
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    • 제38권2호
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    • pp.155-161
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    • 2015
  • 본 연구는 고주파 열치료 시 내부냉각방식 cool-tip의 냉각수 온도에 따른 소작 특성을 확인하기 위하여 소간을 이용하여 냉각수 온도변화에 따른 소간의 소작 특성의 변화를 통해 냉각수 온도변화와 소작 특성의 상관관계를 확인하고자 하였다. 실험에 사용된 소간은 2 cm cool-tip 사용 시 $4{\times}4{\times}4cm^3$, 3 cm인 cool-tip 사용 시에는 $6{\times}6{\times}6cm^3$로 소간을 절제하였으며, 소작된 소간은 MRI를 이용하여 영상검사를 실시하였으며, Freehand 기법으로 소작된 부위의 면적과 둘레를 측정하였다. 2 cm, 3 cm cool-tip을 사용하여 6분, 12분 소작 시 cool-tip 온도가 상승함에 따라 면적과 둘레는 감소함을 나타냈으며, cool-tip 온도와 면적 및 둘레의 상관관계는 통계학적으로 유의한 결과를 나타내었다(p=.000). 소작 범위에 대한 실제 측정과 MRI을 이용한 측정을 비교한 결과 MRI를 이용한 면적과 둘레 측정이 더 정확한 것을 확인하였으며, 대응표본 T-검정을 이용한 통계적 결과 또한 유의하였다(p=.038). 고주파 열치료 장비의 cool-tip 냉각수 온도가 증가함에 따라 소간의 소작 범위가 감소한 원인은 고주파 열치료 장비의 에너지가 정확히 전달되지 못하고 탄화가 발생하기 때문이다. 따라서 고주파 열치료에서 탄화의 발생을 줄이고, 고주파 에너지가 정확히 전달되어 치료 효과를 높이기 위해서는 냉각수의 온도를 낮은 온도로 일정하게 유지하여 사용하여야 고주파 열치료의 효과가 증대될 것이라 사료된다.

유한 요소 해석을 이용한 고주파 간 종양 절제술의 입력 파형 최적화를 위한 연구 (A Study For Optimizing Input Waveforms In Radiofrequency Liver Tumor Ablation Using Finite Element Analysis)

  • 임도형;남궁범석;이태우;최진승;탁계래;김한성
    • 대한의용생체공학회:의공학회지
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    • 제28권2호
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    • pp.235-243
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    • 2007
  • Hepatocellular carcinoma is significant worldwide public health problem with an estimated annually mortality of 1,000,000 people. Radiofrequency (RF) ablation is an interventional technique that in recent years has come to be used for treatment of the hepatocellualr carcinoma, by destructing tumor tissues in high temperatures. Numerous studies have been attempted to prove excellence of RF ablation and to improve its efficiency by various methods. However, the attempts are sometimes paradox to advantages of a minimum invasive characteristic and an operative simplicity in RF ablation. The aim of the current study is, therefore, to suggest an improved RF ablation technique by identifying an optimum RF pattern, which is one of important factors capable of controlling the extent of high temperature region in lossless of the advantages of RF ablation. Three-dimensional finite element (FE) model was developed and validated comparing with the results reported by literature. Four representative Rf patterns (sine, square, exponential, and simulated RF waves), which were corresponding to currents fed during simulated RF ablation, were investigated. Following parameters for each RF pattern were analyzed to identify which is the most optimum in eliminating effectively tumor tissues. 1) maximum temperature, 2) a degree of alteration of maximum temperature in a constant time range (30-40 second), 3) a domain of temperature over $47^{\circ}C$ isothermal temperature (IT), and 4) a domain inducing over 63% cell damage. Here, heat transfer characteristics within the tissues were determined by Bioheat Governing Equation. Developed FE model showed 90-95% accuracy approximately in prediction of maximum temperature and domain of interests achieved during RF ablation. Maximum temperatures for sine, square, exponential, and simulated RF waves were $69.0^{\circ}C,\;66.9^{\circ}C,\;65.4^{\circ}C,\;and\;51.8^{\circ}C$, respectively. While the maximum temperatures were decreased in the constant time range, average time intervals for sine, square, exponential, and simulated RE waves were $0.49{\pm}0.14,\;1.00{\pm}0.00,\;1.65{\pm}0.02,\;and\;1.66{\pm}0.02$ seconds, respectively. Average magnitudes of the decreased maximum temperatures in the time range were $0.45{\pm}0.15^{\circ}C$ for sine wave, $1.93{\pm}0.02^{\circ}C$ for square wave, $2.94{\pm}0.05^{\circ}C$ for exponential wave, and $1.53{\pm}0.06^{\circ}C$ for simulated RF wave. Volumes of temperature domain over $47^{\circ}C$ IT for sine, square, exponential, and simulated RF waves were 1480mm3, 1440mm3, 1380mm3, and 395mm3, respectively. Volumes inducing over 63% cell damage for sine, square, exponential, and simulated RF waves were 114mm3, 62mm3, 17mm3, and 0mm3, respectively. These results support that applying sine wave during RF ablation may be generally the most optimum in destructing effectively tumor tissues, compared with other RF patterns.

노즐목 적용 탄소/탄소 복합재료의 열반응 특성 연구 (A Study on the Thermal Response Characteristics of Carbon/Carbon Composites for Nozzle Throat Insert)

  • 함희철;배주찬;황기영;강윤구
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2005년도 제25회 추계학술대회논문집
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    • pp.162-166
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    • 2005
  • 고체로켓 모터의 노즐목 삽입재에 적용하는 탄소/탄소 복합재료의 열반응 특성을 분석하였다. 내열평가 시험은 3종류의 TPEM 모터를 사용하였고, 추진제는 2종류를 사용하였다. 삭마율은 연소실 압력이 상승함에 따라, 산화몰분율이 증가함에 따라 증가하고, 소재 밀도가 증가함에 따라 감소한다.

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PASB 아크 플라즈마 챔버에서 발생하는 유동 및 물질전달에 관한 연구 (Study on the Flow and Mass Transfer in a PASB Arc Plasma Chamber)

  • 이종철;김윤제
    • 한국유체기계학회 논문집
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    • 제11권4호
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    • pp.7-13
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    • 2008
  • The computational investigation is performed to find out the interaction of arc plasmas with surrounding materials and the thermal flow characteristics in a PASB (Puffer-Assisted Self-Blast) chamber, which is one of new breaking concepts in $SF_6$ switchgears. It is very important to define the flow and mass transfer happened during the full arcing history for further understanding complex physics inside the chamber. In this study, we have considered two diffusion processes by the hot arc plasma, one is PTFE nozzle ablation and the other is Cu electrode evaporation, simultaneously. It was found that the principle of the pressure-rise inside the chamber is confirmed by the computational results and the increase of the electrical conductivity of the residual gas near current zero is critical to the chamber design.

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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레이저 어블레이션에 의해 증착된 비정질 다이아몬드 박막의 결합및 물리적 특성 (Bonding and Physical Characteristics of Diamond-like Carbon Films Prepared by Laser Ablation)

  • 박환태;홍영규;김재기;김진승;박찬
    • 한국진공학회지
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    • 제5권1호
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    • pp.1-5
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    • 1996
  • Noncrystalline films of diamond-like carbon (DLC) have been prepared by laser ablation technique at room temperature. A Q-switched Nd-YAG laser beam with wavelength of 1064 nm and pulse duration of 10 ns was focused onto a graphite target with power densities of about $10^9 W/\textrm{cm}^2$. The physical properties of the resulting films were analyzed with density, hardness, and resistivity measurements. The surface and bonding structure were investigated by atomic force microscopy (AFM), Raman spectroscopy, electron energy loss spectroscopy (EELS).

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가공방법에 따른 소형 도광판용 광학패턴 금형의 표면특성연구 (Surface characteristics on the optical pattern die of light guiding plate by machining types)

  • 도영수;김종선;고영배;김종덕;윤경환;황철진
    • Design & Manufacturing
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    • 제2권4호
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    • pp.1-4
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    • 2008
  • Micro pattern is applied to the light guiding plate(LGP) to enhance the uniformity of the brightness of the LCD. The micro cones are molded in intaglio on the surface of the LGP. The surface roughness of each cone was 40nm and 38nm in negative and positive die for laser ablation. In chemical etching, the surface roughness was 25nm, 24nm in negative and positive. And the surface roughness of negative and positive dies were 4nm and 5nm for LIGA-reflow process.

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