• Title/Summary/Keyword: 티타늄 표면

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Effects of recycling on the mechanical properties and the surface topography of Nickel-Titanium alloy wires (재생 과정이 니켈-티타늄 호선의 물리적 성질과 표면 거칠기에 미치는 영향)

  • Lee, Sung-Ho;Chang, Young-Il
    • The korean journal of orthodontics
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    • v.30 no.4 s.81
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    • pp.453-465
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    • 2000
  • The purpose of this study was to investigate the change of mechanical properties, surface topography and frictional force of various nickel titanium wires after recycling. Three types of nickel-titanium wires and one type of stainless steel wire were divided to three groups: as-received condition(T0:control group), treated in artificial saliva for four weeks(T1) and autoclaved after being treated in artificial saliva(T2). Some changes were observed for the selected mechanical properties in tensile test, surface topography by means of SEM and 3D profilogram, and frictional coefficient. The findings suggest that: 1. Nickel-titanium wires demonstrated no statistically significant differences in maximum tensile strength, elongation rate and modulus of elasticity, but stainless steel wire demonstrated statistically significant differences in maximum tensile strength, elongation rate and modulus of elasticity between the groups(p<0.05). 2. NiTi, Optimalloy, Stainless Steel wires demonstrated increased pitting and corrosion in SEM finding. 3. Recycled NiTi, Optimalloy and stainless steel wires demonstrated significantly greater surface roughness(Ra and Rq) through 3D profilogram when compared with the control wires(p<0.05), but Sentalloy didn't demonstrate significant difference. 4. Recycled NiTi, Optimalloy and stainless steel wires demonstrated significantly greater maximum frictional coefficient when compared with the control wires(p<0.05), but Sentalloy didn't demonstrate significant difference The changes of surface roughness and frictional coefficient in NiTi and Optimalloy had no clinical implication. Consequently recycled nickel titanium wires demonstrated no clinical problem in tensile properties, surface topography and frictional coefficient.

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Comparison of biofilm on titanium and zirconia surfaces: in vivo study (생체 내 티타늄과 지르코니아 표면에서 형성시킨 치면세균막의 비교)

  • Lim, Kyu-Taek;Lee, Ji-Hyun;Lim, Il-Gu;Park, So-Hyun;Lim, Hyun-Phil;Kim, Ok-Su
    • The Journal of Korean Academy of Prosthodontics
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    • v.51 no.4
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    • pp.245-251
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    • 2013
  • Purpose: This study was conducted to compare in vivo biofilm formation on titanium surface and zirconia surface. Materials and methods: For biofilm formation on titanium and zirconia in oral cavity, after producing oral appliances using acrylic resin and orthodontic wire tailored to 9 subjects, we made titanium and zirconia specimens ($6mm{\times}6mm{\times}2mm$), fixed them on oral appliances and maintained them in oral cavity of test subjects for 24 and 72 hours. Test subjects who have equipped two pairs of specimens maintained oral hygiene not by using toothpaste but only by tooth brushing. After 24 and 72 hours, we removed and observed specimens through scanning electron microscopy (SEM). Results: Biofilm formation showed large deviation depending on individuals. For formation comparison between titanium and zirconia for 24 hours, zirconia showed less biofilm formation than titanium. Biofilm formation showed large deviation depending on individuals. As for formation comparison between zirconia and titanium, the degree of biofilm formation in zirconia was less than it was in titanium after a lapse of 24 hours. The result of biofilm formation in 72 hours trial show that zirconia has an inclination to formate less biofilm than it was in titanium. Conclusion: Based on the above results, we can conclude that early biofilm formation in oral cavity was influenced by difference of abutment materials.

Pure inorganic scratch resistive layer on the titanium and the stainless steel surfaces by a sol-gel coating method (졸-겔 코팅법에 의한 티타늄과 스테인리스표면위의 무기질 내스크래치 보호막)

  • Kim, Ho-Hyeong;Kim, Gyun-Tak;Lee, Heung-Ryeol;Hwang, Tae-Jin
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2009.10a
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    • pp.198-199
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    • 2009
  • 티타늄과 스테인리스 기판위에 졸-겔 코팅법으로 무기질 보호막을 형성하였고 기계적 특성을 테스트 하였다. 무기질 보호막은 금속 표면위에 졸-겔 코팅용액을 스프레이 코팅하여 제작하였다. 티타늄과 스테인리스 기판위에 적용한 무기질 보호막은 현저한 내스크래치성 향상을 보였다. 또한 실리카 나노입자의 첨가에 따른 무기질 보호막의 경도 향상을 보였다. 그러나 실리카 나노입자가 2 wt% 이상 첨가됨에 따라 보호막의 경도가 감소함을 알 수 있었다.

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Effects of Surface Treatment of Cathode Materials on the Electrodeposition Behavior of Fe-Ni Alloy (표면처리와 전극 재료가 철-니켈 합금 도금에 미치는 영향)

  • Kang, Na Young;Lee, Jae Ho
    • Journal of the Microelectronics and Packaging Society
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    • v.29 no.4
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    • pp.71-75
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    • 2022
  • In this research, Fe-Ni alloy films were electrodeposited on stainless steel (SS304 and SS430) and Ti plates to investigate the effects of surface conditions of cathode on deposits. The Ti plates were electropolished in 3 M H2SO4-methanol electrolytes at various conditions before electrodeposition, and unpolished Ti and the optimized specimen, polished at 10 V for 8 min, were used as cathode. The anomalous codeposition, the phenomenon which more active Fe is reduced preferentially, occurred on all substrate, however, there were differences in composition of all deposits. As the results of potential monitoring during electrodeposition, it was confirmed that the larger overpotential was applied to the deposition cell when using Ti cathode, leading to high Fe content of deposits from unpolished Ti due to increase in nucleation of Fe. Also, it was founded that the polished Ti can reduced deposition overpotential.

Surface roughness changes caused by the galvanic corrosion between a titanium abutment and base metal alloy (티타늄 지대주와 비귀금속 합금사이의 갈바닉 부식에 의한 표면 거칠기 변화 평가)

  • Lee, Jung-Jin;Song, Kwang-Yeob;Ahn, Seung-Keun;Park, Ju-Mi
    • The Journal of Korean Academy of Prosthodontics
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    • v.49 no.1
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    • pp.65-72
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    • 2011
  • Purpose: The purpose of this study was to evaluate the level of electro-chemical corrosion and surface roughness change for the cases of Ti abutment connected to restoration made of base metal alloys. Materials and methods: It was hypothesized that Ni-Cr alloys in different compositions possess different corrosion resistances, and thus the specimens ($13{\times}13{\times}1.5\;mm$) in this study were fabricated with 3 different types of metal alloys, commonly used for metal ceramic restorations. The electrochemical characteristics were evaluated with potentiostat (Parstat 2273A) and the level of surface roughness change was observed with surface roughness tester. Paired t-test was used to compare mean average surface roughness (Ra) changes of each specimen group. Results: All specimens made of nickel-chromium based alloys, average surface roughness was increased significantly (P < .05). Among them, the Ni-Cr-Be alloy ($0.016{\pm}.007\;{\mu}m$) had the largest change of roughness followed by Ni-Cr ($0.012{\pm}.003\;{\mu}m$) and Ni-Cr-Ti ($0.012{\pm}.002\;{\mu}m$) alloy. There was no significant changes in surface roughness between each metal alloys after corrosion. Conclusion: In the case of galvanic couples of Ti in contact with all specimens made of nickel-chromium based alloys, average surface roughness was increased.

티타늄 실리사이드 박막의 형성과정에 대한 연구

  • Lee, Jung-Hwan;Lee, Sang-Hwan;Gwon, O-Jun
    • ETRI Journal
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    • v.11 no.4
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    • pp.50-56
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    • 1989
  • 초고집적 반도체 제조에 널리 쓰이고 있는 티타늄 실리사이드 박막의 형성 조건에 따른 특성을 분석하였다. 실리콘 웨이퍼 위에 티타늄 박막을 스퍼터링 방식으로 증착하고, 급속 열처리(RTA) 방식으로 실리사이드화 온도 및 시간을 변화시켰다. 박막의 깊이에 따른 조성변화를 측정하기 위하여 AES 및 RBS 분석을, 결정구조의 분석을 위하여 XRD를, 전기적 특성을 평가하기 위하여 4-point probe로 면저항($R_s$)을측정하였다. 열처러 온도가 $500^{\circ}C$에서 부터 티타늄과 실리콘의 혼합이 일어나기 시작하여, $600~700^{\circ}C$에서는 거의 대부분의 티타늄이 2배 정도의 실리콘과 $Tisi_2$ 형성에 필요한 조성을 이루었으나, 반도체 공정에서 목표로 하는 전기전도성을 가지는 C54 $Tisi_2$ 결정구조를 형성하기 위해서는 $700^{\circ}C$이상에서 30초 이상의 열처리 조건이 필요하였다. 특히 열처리전에 이입되기 쉬운 산소 및 질소 등이 티타늄과 실리콘의 혼합과 실리사이드 결정화에 중요한 영향을 미치며, 이를 방지하기 위하여 티타늄 표면을 비정질 실리콘으로 덮은 경우에 C54 $Tisi_2$의 형성이 쉽게 이루어지는 효과가 관찰되었다.

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Evaluation of titanium surface properties by $Nd:YVO_4$ laser irradiation: pilot study ($Nd:YVO_4$ 레이저 조사에 따른 티타늄의 표면특성 평가: 예비 연구)

  • Kim, Ae-Ra;Park, Ji-Yoon;Kim, Yeon;Jun, Sei-Won;Seo, Yoon-Jeong;Park, Sang-Won
    • The Journal of Korean Academy of Prosthodontics
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    • v.51 no.3
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    • pp.167-174
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    • 2013
  • Purpose: This study was conducted to evaluate the roughness and surface alternations of three differently blasted titanium discs treated by $Nd:YVO_4$ Laser irradiation in different conditions. Materials and methods: Thirty commercially pure titanium discs were prepared and divided into three groups. Each group was consisted of 10 samples and blasted by $ZrO_2$ (zirconium dioxide), $Al_2O_3$ (aluminum oxide), and RBM (resorbable blasted media). All the samples were degreased by ultrasonic cleaner afterward. Nine different conditions were established by changing scanning speed (100, 300, 500 mm/s) and repetition rate (5, 15, 35 kHz) of $Nd:YVO_4$ Laser (Laser Pro D-20, Laserval $Korea^{(R)}$, Seoul, South Korea). After laser irradiation, a scanning electron microscope, X-ray diffraction analysis, energy dispersive X-ray spectroscopic analysis, and surface roughness analysis were used to assess the roughness and surface alternations of the samples. Results: According to a scanning electron microscope (SEM), titanium discs treated with laser irradiation showed characteristic patterns in contrast to the control which showed irregular patterns. According to the X-ray diffraction analysis, only $Al_2O_3$ group showed its own peak. The oxidation tendency and surface roughness of titanium were similar to the control in the energy dispersive X-ray spectroscopic analysis. The surface roughness was inversely proportional to the scanning speed, whereas proportional to the repetition rate of $Nd:YVO_4$. Conclusion: The surface microstructures and roughness of the test discs were modified by the radiation of $Nd:YVO_4$ laser. Therefore, laser irradiation could be considered one of the methods to modify implant surfaces for the enhancement of osseointegration.

티타늄 임플란트와 수산화아파타이트 사이의 접착력 향상을 위한 Yttria-stabilized Zirconia Buffer Layer에 관한 연구

  • Park, Hyeong-Seok;Gang, Seong-Geun;Lee, Won-Jun
    • Proceedings of the Korean Vacuum Society Conference
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    • 2010.02a
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    • pp.386-386
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    • 2010
  • 최근 널리 보급되고 있는 치과용 임플란트는 티타늄(Ti) 또는 티타늄 합금(Ti-6Al-4V) 보철과 크라운을 연결하여 사용하고 있다. 티타늄은 생체 친화성이 우수하나, 생체 활성도가 없어 치유기간이 긴 단점이 있다. 이를 보완하기 위해 인체 경조직과 유사한 수산화아파타이트(hydroxyapatite, $Ca_{10}(PO_4)_6(OH)_2)$를 티타늄 임플란트 표면에 코팅하는 방법이 연구되고 있으나 수산화아파타이트 코팅은 티타늄과의 접착성이 나쁘기 때문에 시술 및 사용과정에서 코팅층이 임플란트로부터 박리되는 문제점이 있다. 본 연구에서는 티타늄과 수산화아파타이트 사이에서 접착력을 향상시키는 buffer layer로서 지르코니아(8YSZ, 8mol% Yttria-stabilized zirconia)를 연구하였다. 지르코니아는 고온에서 안정하며, 티타늄 합금과 수산화아파타이트 사이의 반응을 방지하며, 박막밀도와 기계적 강도가 좋은 생체세라믹스이다. 지르코니아 박막을 펄스 레이저 증착법을 이용하여 증착 온도 $600^{\circ}C$, 레이저 fluence $2\;J/cm^2$에서 산소($O_2$) 분압을 바꿔 가며 증착하였다. 그 위에 수산화아파타이트 박막을 역시 펄스 레이저 증착법으로 증착하였다. Scratch test와 Pull-off test를 통해 접착력을 평가한 결과 지르코니아 buffer layer 삽입에 의해 티타늄 합금과 수산화아파타이트 사이의 접착력이 향상되었음을 확인하였다. 또한 산소분압이 박막의 특성 및 접착력에 미치는 영향을 고찰하였다.

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