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이온빔 스퍼터링에 의해 증착된 Mn-Zn 페라이트 박막의 자기 및 전기적 특성
조해석,하상기,이대형,주한용,김형준,김경용,제해준,유병두 한국세라믹학회 1995 한국세라믹학회지 Vol.32 No.3
We investigated the preferred orientation, electrical and magnetic properties of the Mn-Zn ferrite thin films deposited on SiO2/Si(100) by ion beam sputtering. The Cu-added Mn-Zn ferrite thin films had a preferred orientation of (111) with a weak orientation, (311). While the Zn-added one had a strong (111) preferred orientation. The saturation magnetization of the Cu- or Zn-doped Mn-Zn ferrite films increased with increasing substrate temperature (Ts) due to the increase of grain size and the enhancement of crystallinity. For the same reason the coercivity of Cu- or Zn-doped Mn-Zn ferrite films deposited at low Ts increased with increasing Ts, but those of the films deposited at high Ts slightly decreased not only because the defect density of the films decreases but because more grains have multi-domains with increasing Ts. The resistivity of Cu- or Zn-added Mn-Zn ferrite thin fims measured by complex impedance method decreased with increasing Ts due to the ehhancement of crystallinity as well as due to the increase of grain size.
조해석,김상덕,조호진,공선식,최원봉,백용기,김형준,김환,Cho, H.S.,Kim, S.D.,Cho, H.J.,Kong, S.S.,Choi, W.B.,Baek, Y.K.,Kim, H.J.,Kim, H. 한국세라믹학회 1992 한국세라믹학회지 Vol.29 No.8
We investigated the influence of several processes, including the preparation of slurry and preform and the heat-treatment of the preform, on the properties of composites to fabricate the carbon-fiber reinforced glass composites having good mechanical properties. Cerander was determined to be the best binder among Cerander, Rhoplex and Elvacite 2045 by the dipping test and the binder within a preform could be completely eliminatd by burning out the specimen under 10-6 Torr at 400$^{\circ}C$ for more than 1h. The fracture behavior of a composite was largely dependent on the uniformity of carbon-fiber distribution within the composite and the heat-treatment condition of the composite. The higher the glass content, the more difficult to obtain uniform distribution of carbon-fiber. As the hot-pressing temperature increased, the densification process of the composite and the formation of pore due to oxidation of carbon fiber occurred competitively. But, above 1000$^{\circ}C$ the latter played a predominant role. We could fabricated the densest 15 vol.% carbon-fiber-content glass composite having the highest toughness and flexural strength of 250 MPa by hot-pressing under 15 MPa at 900$^{\circ}C$ for 30 min.
스퍼터링 증착된 Y-Ba-Cu-O계 박막의 열처리 전 조성이 열처리 후 박막의 초전도특성 및 미세구조에 미치는 영향
조해석,김형준,Cho, Hae-Seok,Kim, Hyeong-Jun 한국재료학회 1991 한국재료학회지 Vol.1 No.1
$YBa_2Cu_3O_{7-\delta}$ 단일 타게트를 사용하여 R. F. 마그네트론 스퍼터링법으로 MgO(100), Si(100)기판 위에 박막을 증착한 후, $880^{\circ}C$의 산소 분위기에서 1시간 동안 열처리를 하였다. 열처리 전 박막의 미세한 조성변화에 의해서도 열처리 후 박막의 미세구조 및 전기적 특성은 크게 변화했다. MgO(100)기판의 표면에 성장되는 입자들은 선택 배향적으로 성장하려는 경향을 가지므로 가늘고 길쭉한 입자 형상을 띠는 반면에 이들 입자위에 성장되는 다른 입자들은 결정 성장 방향의 선호도가 없으므로 둥근 모양의 입자형상을 가진다. 열처리 전 박학의 조성이 1-2-3을 벗어나면 증착 후 열처리할 때 액상이 형성되며, 액상의 양이 많을수록 선택 배향적 성장이 용이해져 texture를 쉽게 이룬다. 그러나 이러한 액상은 냉각 시에 초전도입자의 입계에 이차상으로 형성되기 때문에 초전도 박막의 전기적 특성, 특히 임계온도를 저하시킨다. 또한 $T_{c,\;zero}$는 $T_{c,\;on}$에 비해서 입계에 형성되는 이차상의 영향을 더 크게 받는다. YBCO films deposited on MgO(100) and Si(100) by rf-magnetron sputtering using stoichiometric single target were annealed under oxygen atmosphere at $880^{\circ}C$ for 1 hr. The microstructure and superconducting properties of YBCO thin films depended on the composition of pre-annealed thin films. Basal planesuperconducting particles grown on MgO(100) substrate had small and rod-like shade due to preferred orientation, while superconducting film grown on the basal plane-superconducting particles showed round-shape particles. If pre-annealed thin film had nonstoichiometric composition, liquid phase was formed during the heat treatment, which made it easy for particles to grow in the preferred orientation and thus to form textured structure. But the thin films with the textured structure did not show good superconducting properties, especially $T_c$, since the liquid phase transformed into second phase in the grain boundary during the cooling. The effect of the second phase on $T_{c, \;zero}$ was greater than that on $T_{c, \;on}$.
단일 이온원을 사용하는 이온빔 스퍼터링법에 의한 Mn-Zn 페라이트 박막의 증착 기구
조해석,하상기,이대형,홍석경,양기덕,김형준,김경용,유병두,Jo, Hae-Seok,Ha, Sang-Gi,Lee, Dae-Hyeong,Hong, Seok-Gyeong,Yang, Gi-Deok,Kim, Hyeong-Jun,Kim, Gyeong-Yong,Yu, Byeong-Du 한국재료학회 1995 한국재료학회지 Vol.5 No.2
단일 이온원을 사용하는 이온빔 스퍼터링법을 이용하여 Mn-Zn페라이트 박막을 증착하였다. 기판은 1000$\AA$의 산화막이 입혀진 실리콘 웨이퍼를 사용하고 타깃은 (110)Mn-Zn 페라이트 단결정위에 Fe 금속선을 부착한 모자이크 타깃을 사용하엿다. 산소의 유입없이 성장된 박막은 금속선으로부터 스퍼터링된 금속이온들에 의해 상대적인 산소결핍을 나타내어 Wustite 구조를 가졌으며, 이를 해결하기 위해 기판주위로 산소를 유입시켜 증착시킨 결과(111) 우선배향성을 가지는 스피넬 페라이트 상의 박막을 얻을 수 있었다.박막의 성장속도는 이온빔 인출전압, 이온빔 입사각이 증가할수록 감소하였고, 기판과 타깃과의 거리가 멀어질수록 감소하였다. 낮은 이온빔 인출전압에서는 인출전압의 증가에 따라서 박막의 결정화가 향상되었지만, 매우 높은 인출전압에서는 이차이온의 에너지가 너무 높아 박막에 손상을 가하게 되므로 인출전압이 증가할수록 박막의 결정화는 오히려 저하되었다. 스피넬 구조를 가지는 페라이트 박막들은 페리자성을 나타내었으며 박막면에 평행한 방향으로 자화용이축을 가졌다. Mn-Zn ferrite thin films were deposited on $SiO_2(1000 \AA)/Si(100)$ by ion beam sputtering using a single ion source. A mosaic target consisting of a single crystal(ll0) Mn-Zn ferrite with a Fe metal strip on it was used. As-deposited films without oxygen gas flow have a wiistite structure due to oxygen deficiencies, which originated from the extra metal atoms sputtered from the metal strips during deposition. The as-deposited films with oxygen gas flow, however, have a spinel structure with (111) preferred orientation. The crystallization of thin films was maximized at the ion beam extraction voltage of 2.lkV, at which the deposited films are bombarded appropriately by the energetic secondary ions reflected from the target. As the extraction voltage increased or decreased from the optimum value, the crystallinity of thin films becomes poor owing to a weak and severe bombardment of the secondary ions, respectively. Crystallization due to the bombardment of the secondary ions was also maximized at the beam incidence angle of $55^{\circ}$. The as-deposited ferrite thin films with a spinel structure showed ferrimagnetism and had an in-plane magnetization easy axis.
Poly(1-oxotrimethylene) Fibers Prepared by Different Draw Ratios for the Tire Cord Application
조해석,이종찬,정재승,심재윤,김진주,최원재 한국고분자학회 2012 Macromolecular Research Vol.20 No.7
Poly(1-oxotrimethylene) (POTE) was prepared by polymerization of ethylene and carbon monoxide gases in an autoclave using a palladium catalyst system. POTE fibers having different draw ratios were prepared and characterized using differential scanning calorimetry (DSC), X-ray diffraction, and a universal testing machine (UTM). Tensile strength and modulus of POTE fibers having a draw ratio of 16 obtained by drying at 220 oC were found to be 13.4 and 369.8 g/denier, respectively. These values are much larger than those of poly(ethylene terephthalate)(PET) and Nylon 6 fibers that are currently used as tire cords.