• Title/Summary/Keyword: NiTi

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의료용 Ti-Ni 합금의 개발 동향

  • Nam, Tae-Hyeon
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2010.05a
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    • pp.7-7
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    • 2010
  • 형상기억합금은 합금이 갖는 형상기억효과 및 초탄성효과 때문에 학문적으로 공업적으로 큰 흥미를 끌어왔다. 형상 기억효과는 Au-Cd 합금과 Cu-Zn 합금에서 최초로 발견되었지만 당시에는 크게 주목을 받지 못하였다. 그 후 1962년 Ti-Ni 합금에서 형상기억효과가 발견된 이래로 크게 주목을 받게 되었고, 곧바로 상용화를 위한 노력이 이어져 리벳, 열엔진, 커플링, 회로차단기 등에 적용이 시도되었다. 현재까지 약 300여종에 이르는 형상기억합금이 개발되어 있지만 형상기억효과의 안정성, 우수성, 내식성, 가공성, 내피로성, 내마모성이 우수한 Ti-Ni 합금이 가장 실용화에 적합한 합금으로 인식되고 있다. Ti-Ni합금은 1960년대에 개발되었지만 의료분야에 적용되기 시작한 것은 1980년대이고, 그 후 미국의 FDA가 Ti-Ni 합금으로 제조된 몇몇 3급(Class III) 임플란트를 인증하면서 시장규모도 폭발적으로 증가하고 있다. 일본의 경우 1980년대 초부터 Ti-Ni 합금을 치과용 임플란트로써 사용하여 왔, 독일, 중국, 러시아도 1980년대부터 임상에 적용해 왔다. 우리나라는 2004년 식약청(식품의약안정청)으로부터 제조 및 판매가 허가되어 현재 실제 임상에 적용되고 있다. 이와 같이 Ti-Ni 합금이 의료용 금속재료로서 널리 쓰이게 된 가장 근본적인 이유는 말할 나위 없이 합금이 갖는 형상기억효과 및 초탄성효과 때문이다. 본 강연에서는 Ti-Ni 합금을 의료용 금속재료의 입장에서 재조명해보고, 본 합금이 의료용 금속재료로서 어떠한 장점이 있으며, 그러한 장점을 의료분야에서 어떻게 응용하고 있는가에 대해 소개하고자 한다. 또한 의료용 Ti-Ni 합금에서 향후 개선되어야 할 요소에 대해서도 논의하고자 한다.

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Effects of Mo Content on Surface Characteristics of Dental Ni-Ti Alloys (치과용 Ni-Ti합금의 표면특성에 미치는 Mo함량의 영향)

  • Han-Cheol Choe;Jae-Un Kim;Sun-Kyun ark
    • Corrosion Science and Technology
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    • v.22 no.1
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    • pp.64-72
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    • 2023
  • Ni-Ti shape memory alloy for dental nerve treatment devices was prepared by adding Mo to Ni-Ti alloy to improve flexibility and fatigue fracture characteristics and simultaneously increase corrosion resistance. Surface properties of the alloy were evaluated. Microstructure analysis of the Ni-Ti-xMo alloy revealed that the amount of needle-like structure increased with increasing Mo content. The shape of the precipitate showed a pattern in which a long needle-like structure gradually disappeared and changed into a small spherical shape. As a result of XRD analysis of the Ni-Ti-xMo alloy, R-phase structure appeared as Mo was added. R-phase and B2 structure were mainly observed. As a result of DSC analysis, phase transformation of the Ti-Ni-Mo alloy showed a two-step phase change of B2-R-B19' transformation with two exothermic peaks and one endothermic peak. As Mo content increased, R-phase formation temperature gradually decreased. As a result of measuring surface hardness of the Ti-Ni-Mo alloy, change in hardness value due to the phase change tended to decrease with increasing Mo content. As a result of the corrosion test, the corrosion potential and pitting potential increased while the current density tended to decrease with increasing Mo content.

Surface Analysis of Ni-Cr and Co-Cr Alloys with Addition of Ti and Mo for Dental CAD/CAM Use (Ti 및 Mo 첨가에 따른 치과 CAD/CAM용 Ni-Cr 및 Co-Cr합금의 표면분석)

  • Moon, Dae-Sun;Choe, Han-Cheol
    • Journal of the Korean institute of surface engineering
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    • v.51 no.3
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    • pp.139-148
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    • 2018
  • In this study, surface analysis of Ni-Cr and Co-Cr alloys with addition of Ti and Mo for dental CAD/CAM use has been researched experimentally. The surface characteristics of the alloys were examined by Vickers hardness test, bonding strength test, surface roughness test, field-emission scanning electron microscopy, energy dispersive X-ray spectroscopy, and X-ray diffraction spectroscopy. The shrinkage of the sintered Ni-Cr alloy alloy was slightly larger than that of Ni-Cr-Ti alloy, and larger than Co-Cr alloy. Also, the addition of Mo showed a tendency to decrease shrinkage somewhat. From the result of XRD analysis, NiCr, $Ni_3Cr$ and $Ni_3Ti$ were observed in the sintered Ni-13Cr-xTi and Ni-13Cr-xMo alloys. In addition, ${\sigma}-CrCo$, $Co_2Mo_3$ and $TiCo_2$ were formed in the sintered Co-Cr-xTi and Co-Cr-xMo alloys. Surface hardness of Ti and Mo added alloy was higher than those of Ni-Cr and Co-Cr alloy. The bond strength between sintered alloy and porcelain was $16.1kgf/mm^2$ for Ni-13Cr alloy, $17.8kgf/mm^2$ for Ni-13Cr-5Ti alloy, and $8.2kgf/mm^2$ for Ni-13Cr-10Ti alloy, respectively.

Corrosion Behavior of TiN Ion Plated Steel Plate(III)-Effects of Ni and Ti interlayer thickness- (TiN 이온 플레이팅한 강판의 내식성에 관한 연구(III)-Ni 및 Ti 하지코팅두께의 영향-)

  • 한전건;연윤모
    • Journal of the Korean institute of surface engineering
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    • v.26 no.2
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    • pp.55-62
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    • 1993
  • The effect of interlayer coating thickness of Ni and Ti on corrosion behavior was studied for TiN ion plat-ed steel plate. Interlayer coating was carried out in a single and bi-layer to a various thickness combination prior to final TiN coating. Corrosion behavior was evaluated by anodic polarization test in 1N H2SO4 as well as salt spray test. Ni interlayer coating was effectived in reducing corrosion current density of active region and Ti interlayer coating over Ni coating reduced the anodic corrosion current density by an order of 4 with increasing the thickness of Ti up to$ 3\mu\textrm{m}$. The improvement of corrosion resistance by Ni/Ti interlayer coating was attributed to the effective prevention of penetration of active corrosion agent resulting from the inherent corrosion resistance of Ni and Ti. Putting corrosion behavior was observed from salt spray test result for all specimens and corrosion resistance at salt atmosphere was enhanced with increasing Ni and Ti thickness, Cor-lay TiN coating was spalled out by the generation of corrosion products.

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Pore Structure and Mechanic:11 Property of Porous TiNi Biomaterial Produced by Self-Propagating High-Temperature Synthesis (고온자전합성법으로 제조된 다공성 TiNi 생체재료의 기공구조 및 기계적 특성)

  • 김지순;강지훈;양석균;정순호;권영순
    • Journal of Powder Materials
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    • v.10 no.1
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    • pp.34-39
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    • 2003
  • Porous TiNi bodies were produced by Self-propagating High-temperature Synthesis (SHS) method from a powder mixture of Ti and Ni. Porosity, pore size and structure, mechanical property, and transformation temperature of TiNi product were investigated. The average porosity and pore size of produced porous TiNi body are 63% and $216\mutextrm{m}$, respectively. XRD analysis showed that the major phase of produced TiNi body is B2 phase. Its average fracture strength and elastic modulus measured under dry condition were $22\pm2$ MPa and $0.18\pm0.01$GPa, respectively. It could be strained up to 7.3 %. The transformation temperatures determined by DSC showed the $M_s$ temperature of $67^{\circ}C$ and $A_f$ temperature of $99^{\circ}C$.

Fabrication and Interface Properties of TiNi/6061Al Composite (TiNi 형상기억합금을 이용한 복합재료의 제조 및 계면 특성)

  • Kim, Sun-Guk;Lee, Jun-Hui
    • Korean Journal of Materials Research
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    • v.9 no.4
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    • pp.419-427
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    • 1999
  • TiNi shape memory alloy was shape memory heat-treated and investigated its mechanical properties with the variation of prestrain. Also 6061 Al matrix composites with TiNi shape memory alloy fiber as reinforcement have been fabricated by Permanent Mold Casting to investigate the microstructures and interface properties. Yield stress of TiNi wire was the most high in the case of before heat-treatment and then decreased as increasing heat-treatment time. In each heat-treatment condition, the yield stress of TiNi wire was not changed with increasing the amount of prestrain. The interface bonding of TiNi/6061Al composite was fine. There was a 2$\mu\textrm{m}$ thickness of diffusion reaction layer at the interface. We could find out that this diffusion reaction layer was made by the mutual diffusion. The diffusion rate from Al base to TiNi wire was faster than that of reverse diffusion and the amount of the diffusion was also a little more than that of reverse.

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Selection of Nickel-Titanium Files according to the Clinical Procedure and Factors of File Fracture: A Narrative Review

  • Hyeon-Cheol, Kim
    • Journal of Korean Dental Science
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    • v.15 no.2
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    • pp.112-120
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    • 2022
  • In this article, the contemporary root canal treatment procedure using nickel-titanium (NiTi) instruments was reviewed to understand the correlations between the properties of files and safety of the clinical usage. Literatures were reviewed according to the process of clinical procedure of the root canal preparation, mainly for shaping during orifice flaring, glide-path preparation, and main canal instrumentation. Considering the reasons for NiTi file fracture, clinically implacable issues and ideas were discussed to reduce the fracture risk and increase clinical efficiency of the NiTi file systems. Various kinds of NiTi file systems have their own characteristics and properties given from their geometries and heat treatments and so on. Proper selection and careful usage of the NiTi file systems may reduce the risk of file fracture and increase the efficiency of NiTi file systems. Understanding of the clinical implications from the mechanical properties and characteristics of the engine driven NiTi instruments may decrease the risk of NiTi file fractures and increase the success rate in root canal treatment.

Effect of Thermomechanical Treatment on the Phase Transformation and Superelasticity in Ti-Ni-Cu Shape Memory Alloy (Ti-Ni-Cu 형상기억합금의 상변태 및 초탄성에 미치는 가공열처리의 영향)

  • Lee, O.Y.;Park, Y.K.;Chun, B.S.
    • Journal of the Korean Society for Heat Treatment
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    • v.7 no.4
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    • pp.253-261
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    • 1994
  • Transformation behavior and superelastic behavior of Ti-Ni-Cu alloys with various Cu content has been investigated by means of electrical resistivity measurement, X-ray diffraction, tensile test and transmission electron microscopy. Two types of heat treatment are given to the specimens: i) Solutions treatment. ii) thermo-mechanical treatment. The transformation sequence in solution treated Ti-Ni-Cu Alloys substituted by Cu for Ni up to 5at.% occurs to $B2{\rightleftarrows}B19^{\prime}$ and it proceeds in two stages by addition of 10at.%Cu, i. e, $B2{\rightleftarrows}B19{\rightleftarrows}B19^{\prime}$. Also, it has been found that Ti-30Ni-20Cu alloy transformed in one stage : $B2{\rightleftarrows}B19$. The thermo-mechanically treated Ti-47Ni-3Cu alloy transformed in two stages: B2${\rightleftarrows}$rhomboheral phase${\rightleftarrows}B19^{\prime}$, while transformation sequence in Ti-45Ni-5Cu and Ti-40Ni-10Cu alloy transformed as same as solution treated specimens. The critical stress for inducing slip deformation in solution treated and thermo-mechanically treated Ti-40Ni-10Cu alloy is about 90MPa and 320Mpa respectively.

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Novel Ni-Silicide Structure Utilizing Cobalt Interlayer and TiN Capping Layer and its Application to Nano-CMOS (Cobalt Interlayer 와 TiN capping를 갖는 새로운 구조의 Ni-Silicide 및 Nano CMOS에의 응용)

  • 오순영;윤장근;박영호;황빈봉;지희환;왕진석;이희덕
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.40 no.12
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    • pp.1-9
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    • 2003
  • In this paper, a novel Ni silicide technology with Cobalt interlayer and Titanium Nitride(TiN) capping layer for sub 100 nm CMOS technologies is presented, and the device parameters are characterized. The thermal stability of hi silicide is improved a lot by applying co-interlayer at Ni/Si interface. TiN capping layer is also applied to prevent the abnormal oxidation of NiSi and to provide a smooth silicidc interface. The proposed NiSi structure showed almost same electrical properties such as little variation of sheet resistance, leakage current and drive current even after the post silicidation furnace annealing at $700^{\circ}C$ for 30 min. Therefore, it is confirmed that high thermal robust Ni silicide for the nano CMOS device is achieved by newly proposed Co/Ni/TiN structure.