• 제목/요약/키워드: Diamond Like Carbon Coating

검색결과 109건 처리시간 0.036초

일체형 지대주의 Diamond Like Carbon 표면 처리와 나사 조임 시기가 풀림 현상에 미치는 영향 (THE INFLUENCE OF ABUTMENT SCREW TIGHTENING TIMING AND DLC COATING OF CONICAL CONNECTION IMPLANT SYSTEM)

  • 김기홍;곽재영;허성주
    • 대한치과보철학회지
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    • 제46권2호
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    • pp.209-216
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    • 2008
  • 본 연구의 목적은 내측연결형 임플랜트와 일체형 지대주를 사용하여 최종 보철물을 시적한 뒤에 5만 번의 반복하중 후에 다시 체결하고 20만 번의 반복하중을 가한 후의 지대주 풀림토크와 20만 번의 반복하중을 받은 지대주 풀림토크가 어떻게 달라지는지를 비교하고자 하는 것이다. 실험 재료로는 타이타늄 지대주와 DLC 코팅된 지대주를 사용하였다. 실험군은 4군으로 모두 8개의 ITI SLA $4.1{\times}10mm$ 를 사용하였다. A군과 B군은 5만번, 20만번 반복하중을 가하고 Periotest값과 풀림 토크값을 측정하였으며 C군과 D군은 20만번 반복하중을 가하고 Periotest 값과 풀림토크값을 측정하였다. 풀림 토크값의 측정은 디지털 토크 게이지를 사용하였고, 반복하중은 MTS. (Bionix 850 II, MTS, U.S.A.)를 사용하였으며 100N/cm의 힘을 20도의 경사, 14Hz 의 조건으로 가하였다. A군과 C군은 코팅하지 않은 타이타늄 지대주를 사용하였으며, B군과 D군은 DLC 코팅한 지대주를 사용하였다. 1. 5만번 반복하중을 가한 뒤 측정한 풀림 토크는 B군에서 약간 더 큰 평균값을 보였다. 하지만 통계학적으로 두 군간에 유의한 차이를 보이지 않았다 (P>0.05). 2. 20만번 반복하중을 가한 뒤 측정한 최종 풀림 토크 값은 A군은 C군보다, B군은 D군보다 약간 더 큰 평균값을 보였으나 통계학적으로 두 군간에 유의한 차이를 보이지 않았다 (P>0.05). 3. 20만번 반복하중을 가한 최종 풀림 토크 값은 A, B군과 C, D군 사이에 통계학적으로 유의할 만한 차이가 없었다 (P>0.05).

Effect of Hydrodynamic Condition on the Electrochemical Behavior of Various Metals in 3.5 wt% NaCl Solution

  • Pan, Szu-Jung;Hadinata, Samuel-Sudibyo;Kao, Ruey-Chy;Tsai, Wen-Ta
    • Corrosion Science and Technology
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    • 제14권5호
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    • pp.218-225
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    • 2015
  • The electrochemical behaviors of various metals with and without diamond-like-carbon (DLC) coating in 3.5 wt% NaCl solution were investigated. The effect of hydrodynamic conditions was focused by employing a rotating disc electrode (RDE). The experimental results showed that each bare metal had a more positive corrosion potential and a higher corrosion rate due to enhanced oxygen transport at the higher rotating speed of the RDE. DLC coating caused a substantial increase in the corrosion resistance of all metals studied. However, localized corrosion was still found in the DLC-coated metal at sites where deposition defects existed. Surface morphology examination was performed after the electrochemical test to confirm the roles of hydrodynamic conditions and DLC coating.

PE-CVD방법을 이용한 DLC 박막의 기계적특성 평가 (Mechanical Property Evaluation of Diamond-like Carbon Coated by PE-CVD)

  • 강석주;이진우;김석삼
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2003년도 학술대회지
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    • pp.368-376
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    • 2003
  • In this research, DLC thin films are produced as several hundred nm thickness by PE-CVD method. And then these thin films are estimated tribological characteristics to find out useful possibilities as a protecting film for high-quality function and life extension at MEMs by mechanical properties observation . These are measured thickness and residual stress of DLC coating. Compared after measuring friction coefficient, adhesion force, hardness, cohesive force of coating films. As results all test, we can decide several conclusions. First, friction coefficient decreased, as the load increased. otherwise, friction coefficient increased, as thickness of coating film increased under low load$(1\~50mN)$. Secod, adhesion force increased as thickness of coating films. Third, hardness of coating film is affected by substrate coating film when it is less than thickness of 300nm and it has general hardness of DLC coating film when it is more than thickness of 500nm. Fourth, cohesive force of coating film is complexly affected by hardness, adhesion force, residual stress, etc.

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지르코니아 광페룰 사출성형용 WC 코아 핀의 Diamond Like Carbon 코팅 (Diamond Like Carbon Coating on WC Core Pin for Injection Molding of Zirconia Optical Ferrule)

  • 박현우;정세훈;김현영;이광민
    • 한국재료학회지
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    • 제20권11호
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    • pp.570-574
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    • 2010
  • A diamond-like carbon (DLC) film deposited on a WC disk was investigated to improve disk wear resistance for injection molding of zirconia optical ferrule. The deposition of DLC films was performed using the filtered vacuum arc ion plating (FV-AIP) system with a graphite target. The coating processing was controlled with different deposition times and the other conditions for coating, such as input power, working pressure, substrate temperature, gas flow, and bias voltage, were fixed. The coating layers of DLC were characterized using FE-SEM, AFM, and Raman spectrometry; the mechanical properties were investigated with a scratch tester and a nano-indenter. The friction coefficient of the DLC coated on the WC was obtained using a pin-on-disk, according to the ASTM G163-99. The thickness of DLC films coated for 20 min. and 60 min. was about 750 nm and 300 nm, respectively. The surface roughness of DLC films coated for 60 min. was 5.9 nm. The Raman spectrum revealed that the G peak of DLC film was composed of $sp^3$ amorphous carbon bonds. The critical load (Lc) of DLC film obtained with the scratch tester was 14.6 N. The hardness and elastic modulus of DLC measured with the nano-indenter were 36.9 GPa and 585.5 GPa, respectively. The friction coefficient of DLC coated on WC decreased from 0.2 to 0.01. The wear property of DLC coated on WC was enhanced by a factor of 20.

강체인 구와 DLC 코팅면 사이의 압입 및 미끄럼 접촉해석: 지지층 두께의 영향 (Indentation and Sliding Contact Analysis between a Rigid Ball and DLC-Coated Steel Surface: Influence of Supporting Layer Thickness)

  • 이준혁;박태조
    • Tribology and Lubricants
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    • 제30권4호
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    • pp.199-204
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    • 2014
  • Various heat-treated and surface coating methods are used to mitigate abrasion in sliding machine parts. The most cost effective of these methods involves hard coatings such as diamond-like carbon (DLC). DLC has various advantages, including a high level of hardness, low coefficient of friction, and low wear rate. In practice, a supporting layer is generally inserted between the DLC layer and the steel substrate to improve the load carrying capacity. In this study, an indentation and sliding contact problem involving a small, hard, spherical particle and a DLC-coated steel surface is modeled and analyzed using a nonlinear finite element code, MARC, to investigate the influence of the supporting layer thickness on the coating characteristics and the related coating failure mechanisms. The results show that the amount of plastic deformation and the maximum principal stress decrease with an increase in the supporting layer thickness. However, the probability of the high tensile stress within the coating layer causing a crack is greatly increased. Therefore, in the case of DLC coating with a supporting layer, fatigue wear can be another important cause of coating layer failure, together with the generally well-known abrasive wear.

The noble method for superhydrophobic thin film coating

  • 서현욱;김광대;정명근;김동운;김명주;닐라이 쿠마르 데;김영독;임동찬;이규환;엄성현;이재영
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2011년도 제40회 동계학술대회 초록집
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    • pp.496-496
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    • 2011
  • A very simple and cost-effective method for fabrication of SiOx-incorporated diamond-like carbon (DLC) thin films at a preparation temperature of less than $200^{\circ}C$ was developed. Since DLC coating can be prepared not under vacuum but atmospheric conditions without any carrier gas flow, not only wafers but also powderic substrates can be used for DLC coating. Formation of DLC coating could result in appearance of superhydrophobic behaviors, which was sustained in a wide range of pH (1~14). DLC-coated surfaces selectively interacted with toluene in a toluene/water mixture. These results imply that our preparation method of the DLC coating can be useful in many application fields such as creating self-cleaning surfaces, and water and air purification filters.

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중적외선 영역의 무반사 코팅된 ZnS 기판의 설계와 광학 특성 (Design and Analysis of Optical Properties of Anti-reflection Coated ZnS Substrates in the Mid-infrared Region)

  • 박범근;백종후
    • 센서학회지
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    • 제31권4호
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    • pp.255-259
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    • 2022
  • In this study, we fabricated ZnS substrates with excellent transmittance in the mid-infrared region (3-5 ㎛) using hot pressing instead of conventional chemical vapor deposition (CVD). Diamond-like carbon (DLC) was coated on either one or both sides of the ZnS substrates to improve their mechanical properties and transmittance efficiency. To reduce the reflectance and further improve transmittance in the mid-infrared region, anti-reflection (AR) coating was designed for DLC/ZnS /AR and AR/ ZnS /AR structures. The coating structure, microstructure, and optical properties of the AR-coated ZnS substrates were subsequently investigated by employing energy dispersive X-ray spectroscopy, scanning electron microscopy, and Fourier-transform infrared (FTIR) spectroscopy. The FTIR spectroscopy results demonstrated that, in the mid-infrared region, the average transmittance of the samples with AR coating on one and both sides increased by approximately 18% and 27%, respectively. Thus, AR coating improved the transmittance of the ZnS substrates.

Tribological properties of DLC films on polymers

  • Hashizume, T.;Miyake, S.;Watanabe, S.;Sato, M.
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2002년도 proceedings of the second asia international conference on tribology
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    • pp.175-176
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    • 2002
  • Our study is to search for tribological properties of diamond-like carbon (DLC) films as known as anti- wear hard thin film on various polymers. This report deals with the deposition of DLC films on various polymer substrates in vacuum by magnetron radio frequency (RF) sputtering method with using argon plasma and graphite, titanium target. The properties of friction and wear are measured using a ball-on-disk wear -testing machine. The properties of friction and wear have been remarkably improved by DLC coating. Moreover the composition of DLC films has been analyzed by using auger electron spectroscopy(AES). The wear rate of titanium-containing DLC film is lower than that of no-metal-containing DLC film.

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Deposition of hard coatings on polycarbonate substrate by high frequency ion beam

  • Kim, Sung-Ryong;Song, Jun-Seob;Choi, Young-Joon;Kim, Jong-Hun
    • Journal of Korean Vacuum Science & Technology
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    • 제2권2호
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    • pp.101-106
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    • 1998
  • The poor wear and scratch properties of polycarbonate have limited its application in many fields. In order to improve the wear and scratch properties of polycarbonate we have deposited diamond like carbon (DLC) coatings. The diamond like carbon coatings were made using a high frequency ion beam gun by introducing H2 and CH4 gases. The coatings were characterized with Raman spectroscopy, scanning electron microscope, ellipsometer, microscratch tester and hazemeter. Polymeric hard coating was applied onto the polycarbonate substrate before depositing a DLC coating to investigate the effect of interlayer on the system's failure mode.

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