• Title/Summary/Keyword: 티타늄 표면

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Dynamic Oxidation Behaviors of Aluminide Coated Titanium Alloys (알루미나이드 코팅된 티타늄 합금의 동적산화거동)

  • Son, Youngil;Park, Jinsoo;Park, Joonsik
    • Journal of the Korean Society of Propulsion Engineers
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    • v.19 no.5
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    • pp.84-90
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    • 2015
  • Titanium alloys has been received an attention due to their excellent specific strength and many other superior properties in the application of components of flying subjects. In this study, Ti-6Al-4V (Ti64 alloy) has been selected in order to evaluate oxidation and degradation behaviors under the exposure of high temperature flame. The alloy has been coated with Al diffusion coating routes. The coated alloys showed an improved oxidation and degradation behaviors. The oxidation and degradation mechanism for the coated and uncoated alloys has been discussed in terms of microstructural observations.

Effect of titanium surface microgrooves and thermal oxidation on in vitro osteoblast responses (마이크로그루브 및 열산화 복합 티타늄 표면의 골아세포분화 증진효과)

  • Seo, Jin-Ho;Lee, Richard sungbok;Ahn, Su-Jin;Park, Su-Jung;Lee, Myung-Hyun;Lee, Suk Won
    • The Journal of Korean Academy of Prosthodontics
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    • v.53 no.3
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    • pp.198-206
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    • 2015
  • Purpose: We aimed to investigate the effect of combined various microgrooves and thermal oxidation on the titanium (Ti) and to evaluate various in vitro responses of human periodontal ligament cells (PLCs). Materials and methods: Grade II titanium disks were fabricated. Microgrooves were applied on titanium discs to have $0/0{{\mu}m}$, $15/3.5{{\mu}m}$, $30/10{{\mu}m}$, and $60/10{{\mu}m}$ of respective width/depth by photolithography. Thermal oxidation was performed on the microgrooves of Ti substrata for 3 h at $700^{\circ}C$ in air. The experiments were divided into 3 groups: control group (ST), thermal oxidation group (ST/TO), and combined microgrooves and thermal oxidation group (Gr15-TO, Gr30-TO, Gr60-TO). Surface characterization was performed by field-emission scanning microscopy. Cell adhesion, osteoblastic differentiation, and mineralization were analyzed using the bromodeoxyurdine (BrdU), Alkaline phosphatase (ALP) activity, and extracellular calcium deposition assays, respectively. Statistical analysis was performed using the oneway analysis of variance and Pearson's bivariate correlation analysis (SPSS Version 17.0). Results: In general, the combined microgrooves and thermal oxidation group (Gr15-TO, Gr30-TO, Gr60-TO) showed significantly higher levels compared with the control (ST) or thermal oxidation (ST-TO) groups in the BrdU expression, ALP activity, and extracellular calcium deposition. Gr60-TO group induced highest levels of cell adhesion and osteoblastic differentiation. Conclusion: Within the limitation of this study, we conclude that the Ti surface treatment using combined microgrooves and thermal oxidation is highly effective in inducing the cell adhesion andosteoblastic differentiation. The propose surface is also expected to be effective in inducing rapid and strong osseointegration of Ti oral implants.

Effects of $N_2$ and C contents on color changes of Ti Composites (질소와 탄소 함량이 티타늄 화합물의 색상 변화에 미치는 영향)

  • Jang, Seung-Hyeon;Lee, Yeong-Min;Jeong, Jae-In;Yang, Ji-Hun;Park, Yeong-Hui;Lee, Gyeong-Hwang;Im, Tae-Gyun
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2009.10a
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    • pp.169-169
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    • 2009
  • 티타늄 화합물은 뛰어난 물리적 특성과 인체 무해성을 가지고 있어 생체, 내식 및 내마모 재료 등에 널리 응용되고 있으며, 비교적 공정이 단순하고 공정 변수 조절이 용이한 스퍼터링법으로 밀도가 높고 공극이 없는 박막을 만들 수 있다. 티타늄 화합물은 마그네트론 스퍼터링을 이용하여 합성하였고, 소량의 질소와 메탄 가스의 유량 조절을 통해 화합물의 조성을 변화시켜 색을 경향성 있게 변화 시켰다.

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Effects of Cooling Method Followed by Casting on the Interfacial and Mechanical Properties of Dental CP-Ti Casts (치과용 티타늄 주조체의 냉각방법이 표면반응층 및 기계적 특성에 미치는 영향)

  • Moon, Soo;Jung, Jun-Young;Kim, Ki-Ju;Lee, Jin-Hyung
    • Journal of Biomedical Engineering Research
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    • v.24 no.5
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    • pp.375-380
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    • 2003
  • In this study. we have intended to control the properties of surface reaction zone generated between pure titanium and oxide investment moulds. Commercially pure titanium was centrifugally casted and silica$.$alumina based phosphate bonded investment was used as the mould material. The effect of cooling methods after casting on the surface reaction zone and mechanical properties of casts were investigated. The resulting casts showed the multilayered surface reaction zone regardless of cooling method. Especially. water cooling method produced the titanium casts with thinner surface reaction zone. weaker strength. and higher elongation properties compared to air cooling. It can thus be known that the resulting casts had satisfactory mechanical properties as dental materials. From these results, the cooling rate dependence of interfacial and mechanical properties can be attributed to the diffusion of oxygen from casting environment, which control the reaction of titanium and mould.

빗각 증착법(Oblique Angle Deposition)으로 코팅된 금속 및 화합물 박막의 특성

  • Yang, Ji-Hun;Park, Hye-Seon;Jeong, Jae-Hun;Song, Min-A;Jeong, Jae-In
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.02a
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    • pp.151-151
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    • 2012
  • 빗각 증착법(oblique angle deposition; OAD)을 이용하여 코팅된 알루미늄과 질화 티타늄 박막의 특성을 분석하였다. OAD는 기판과 증발원이 수평하게 위치하는 일반적인 코팅방법과 다르게 기판이 증발원과 수평하게 놓이지 않고 일정한 각으로 기울여 코팅하는 방법을 의미한다. 코팅 시 기판이 증발원과 수평하지 않으면 입사되는 증기가 일정한 각도를 유지하기 때문에 코팅되는 박막의 구조가 달라지고 이로 인해서 물리적 특성도 변하게 된다. 본 연구에서는 음극아크와 스퍼터링을 이용하여 각각 질화 티타늄과 알루미늄을 빗각으로 코팅하여 박막의 미세구조와 물성 변화를 관찰하였다. 스퍼터링을 이용하여 빗각 코팅된 알루미늄의 경우, 박막의 구조가 치밀해지고 표면 조도가 낮아지는 현상이 관찰되었다. 알루미늄 박막의 치밀도와 표면조도 향상은 가시광선 영역의 반사율을 높이는 효과가 있었다. 강판에 알루미늄을 코팅하여 염수분무를 실시한 결과, 치밀한 조직으로 인해서 내식성이 향상되는 결과를 보였다. 음극 아크를 이용하여 빗각 코팅된 질화 티타늄 박막에서 기판과 수직하지 않고 일정한 각도로 기울어진 주상 조직이 관찰되었다. 기판에 수직하게 성장된 질화 티타늄 박막과 비교하여 기울어진 주상 구조의 박막은 경도가 높아지는 특성 변화가 관찰되었다. 빗각 증착법을 이용하여 박막의 조직, 물성 등을 제어할 수 있었다. 박막에 다양한 기능을 부여하는 코팅방법으로 빗각 증착법이 활용될 수 있을 것으로 판단된다.

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Thin Micro-Porous Scaffold Layer on Metallic Substrate (금속기질에 앓은 마이크로 다공질 스케폴드 코팅에 관한 연구)

  • Sin, D.C.;Miao, X.;Kim, W.C.
    • Journal of Power System Engineering
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    • v.14 no.5
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    • pp.41-47
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    • 2010
  • 티타늄과 티타늄 합금은 재료적 특이성 때문에 심장 혈관 임플란트에서 일반적으로 사용되어 왔다. 일찍이 적용된 예로는 인공심장판막, 심박조율기의 보호케이스, 혈액 순환 장치 등이 있다. 하지만 물질유도혈전증(Material-induced thrombosis)은 혈전폐색에 의해 기인한 기능 손실로 심장혈관 임플란트 장치의 주된 합병증으로 존재하고 있으며, 심장혈관 임플란트의 혈전유전자는 심장혈관장치의 발달에 주된 난관 중 하나로 남아있다. 그리고 텍스처 혈액 접합 물질(Textured blood-contacting material)은 1960년대 초반 이후부터 혈액순환 보조 장치의 임상실험에 사용되고 있다. 접합 물질에 내장된 텍스처 섬유조직 표면은 형성, 성장, 안정적 부착, 생물학적 내벽(neointimal layer) 등 유도 혈액(entrapping blood) 성분에 의해 형성된다. 공동(cavity) 형상의 용해 가능한 미립자를 사용하는 SCPL법(Solvent casting/particulate leaching method)은 티타늄 기질 이전에 형성된 폴리우레탄 위에 텍스처(texture)를 생성하기 위해 사용되었다. 또한 콜라겐의 부동화(不動化)에 의한 공동(cavity)은 혈액 접합면에 잔존하기 위한 내피세포를 고정할 수 있는 효과가 있다. cpTi로 층화된 PU 기소공성(microporous)은 구조적 특성과 혈전증 감소를 위한 생물학적 내벽 사용의 잠재성을 평가하기 위한 세포 공동체 실험을 통해서 평가되었다.

Effects of Surface Pretreatment and Composition of Noble Metal Oxide on the DSE (표면 전처리 및 귀금속 산화물층 조성이 DSE에 미치는 영향)

  • Kim, Jin-Hwa;Son, Seong-Ho;Park, Seong-Cheol;Kim, Hyeong-Mi;Jeon, Sang-Hyeon
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2015.05a
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    • pp.58-58
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    • 2015
  • DSE(dimentional stable electrode)의 미세구조와 전기화학적 성능은 전극 재질, 코팅액과 지지체인 티타늄의 전처리, 코팅법, 코팅 두께, 소결 온도와 같은 전극 제조법과 인자들에 의해 크게 영향을 받는다. 본 연구에서는 DSE 성능에 영향을 주는 다양한 전극 제조법 및 공정인자 중에서 모재인 티타늄의 표면 전처리 및 귀금속 산화물 층 조성이 전극의 성능과 수명에 미치는 영향을 고찰하였다.

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On the effect of saline immersion to the removal torque for resorbable blasting media and acid treated implants (Resorbable blasting media 및 산처리한 임플란트의 제거회전력에 생리식염수를 적시는 것이 미치는 영향)

  • Kwon, Jae-uk;Cho, Sung-am
    • Journal of Dental Rehabilitation and Applied Science
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    • v.34 no.1
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    • pp.1-9
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    • 2018
  • Purpose: The purpose of this study is to investigate the effect of the titanium implant soaked in saline after RBM and acid etched surface treatment on the initial osseointegration by comparing the removal torque and the surface analysis compared to the titanium implant with only RBM and acid etched surface treatment. Materials and Methods: The control group was RBM and acid etched surface treated implants (RBM + HCl), and the test group was implants soaked in saline for 2 weeks after RBM and acid etched surface treatment (RBM + HCl + Sal). The control and test group implants were placed in the left and right tibiae of 10 rabbits, respectively, and at the same time, the insertion torque (ITQ) was measured. After 10 days, the removal torque (RTQ) was measured by exposing the implant site. FE-SEM, EDS, Surface roughness and Raman spectroscopy were performed for the surface analysis of the new implant specimens used in the experiments. Results: There was significant difference in insertion torque and removal torque between control group and experimental group (P = 0.014 < 0.05). Surface roughness of experimental group is higher than control group. Conclusion: Saline soaking after RBM and acid etched surface treatment of titanium implants were positively affect the initial osseointegration as compared to titanium implants with only RBM and acid etched surface treatment.

Effect of Surface Treatments of Titanium on Bond Strength and Interfacial Characterization in Titanium-Ceramic Prosthesis (티타늄의 표면처리방법에 따른 티타늄-세라믹 보철시편의 결합강도와 계면특성)

  • Chung, In-Sung;Kim, Chi-Young
    • The Journal of the Korea Contents Association
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    • v.10 no.10
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    • pp.219-225
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    • 2010
  • The bonding strength between titanium and ceramic were analyzed according to the bonding agent and the coating methods of Au and TiN respectively. The bonding strength was measured through the 3 point bending test. Consequently, the bonding strength of the special bonding agent after the TiN coated (SPTB) group was $72.20({\pm}5.25)MPa$ which was the strongest one among groups. The bonding strength of the special bonding agent treated only (SPB) group was $67.66({\pm}12.10)MPa$, the special bonding agent after the Au coating SPGB group was $46.95({\pm}12.48)MPa$ and the SP group was $43.80({\pm}5.12)MPa$. Taking these results into account, the bonding strength of the SPB group shows the same as it of the SPTB group, however, it is stronger than SP group. And the TiN coated SPTB group shows the stronger bonding strength than the Au coated SPGB group.

Evaluation of 12nm Ti Layer for Low Temperature Cu-Cu Bonding (저온 Cu-Cu본딩을 위한 12nm 티타늄 박막 특성 분석)

  • Park, Seungmin;Kim, Yoonho;Kim, Sarah Eunkyung
    • Journal of the Microelectronics and Packaging Society
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    • v.28 no.3
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    • pp.9-15
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    • 2021
  • Miniaturization of semiconductor devices has recently faced a physical limitation. To overcome this, 3D packaging in which semiconductor devices are vertically stacked has been actively developed. 3D packaging requires three unit processes of TSV, wafer grinding, and bonding, and among these, copper bonding is becoming very important for high performance and fine-pitch in 3D packaging. In this study, the effects of Ti nanolayer on the antioxidation of copper surface and low-temperature Cu bonding was investigated. The diffusion rate of Ti into Cu is faster than Cu into Ti in the temperature ranging from room temperature to 200℃, which shows that the titanium nanolayer can be effective for low-temperature copper bonding. The 12nm-thick titanium layer was uniformly deposited on the copper surface, and the surface roughness (Rq) was lowered from 4.1 nm to 3.2 nm. Cu bonding using Ti nanolayer was carried out at 200℃ for 1 hour, and then annealing at the same temperature and time. The average shear strength measured after bonding was 13.2 MPa.