• 제목/요약/키워드: microstructure and critical current density

검색결과 62건 처리시간 0.023초

국부용융성장법으로 제조한 (Sm/Y)-Ba-Cu-0계 고온복합초전도체의 CeO2첨가에 따른 초전도특성 (Superconducting Properties of (Sm/Y)-Ba-Cu-0 High Tc Composite Superconductors with CeO2 Additive by Zone-Melt Textured Growth)

  • 김소정
    • 한국전기전자재료학회논문지
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    • 제15권3호
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    • pp.269-274
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    • 2002
  • (Sm/Y)-Ba-Cu-O system high Tc composite superconductors with/without $CeO_2$ additive were directionally grown by zone-melting process, haying large temperature gradient, In air atmosphere. Cylindrical green rods of $({Sm/y})_{1.8}Ba_{2.4}Cu_{3.4}O_x$ [(Sm/Y)1.8] composite oxides by cold isostatic pressing(CIP) method using rubber mold were fabricated. The microstructure and superconducting properties were investigated by XRD, SEM, TEM and SQUID magnetometer. The size of nonsuperconducting $({Sm/y})_2BaCuO_5$ inclusions of the melt-textured (Sm/Y)1.8 sample with CeO$_2$ additive were remarkably reduced and uniformly distributed within the superconducting (Sm/Y)1.8 matrix. Both samples, with/without $CeO_2$ additive, showed an onset Tc $\geq$ 90 K and sharp superconducting transition. The critical current density Jc value of the $CeO_2$ addictive were $1{\times}10^5A/\textrm{cm}^2$ in 77 K, 0 Tesla.

F-free Y & Cu 전구용액을 이용한 YBCO 박막 제조 (Fabrication of YBCO films in MOD processing using F-free Y & Cu precursor solution)

  • 김영국;유재무;고재웅;정국채;김영준;한봉수
    • 한국초전도ㆍ저온공학회논문지
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    • 제8권1호
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    • pp.15-18
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    • 2006
  • A new precursor solution wilt low fluorine content was synthesized for MOD processing of coated conductors. In this study, the precursor solution for MOD processing was synthesized using F-free yttrium and copper precursor. It was shown that crack-free and uniform precursor films were formed after calcination in humidified oxygen atmosphere. Less than 2 hours were required to finish the calcination process. The relatively gradual weight loss during the calcination process is attributed to the feasibility of fast calcination profile. The calcined precursor film was converted to a YBCO film without any secondary phases after annealing in wet $Ar/O_2$ atmosphere. Fully converted film shows uniform microstructure and high critical current density. $(Jc=2.7MA/cm^2) $.

YBCO-Ag 복합초전도체의 강도, 파괴인성 및 초전도성질에 관한 연구 (A Study of Strength, Fracture Toughness and Superconducting Properties of YBCO-Ag Composite Superconductors)

  • 주진호;어순철
    • 한국재료학회지
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    • 제8권5호
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    • pp.394-398
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    • 1998
  • 은(Ag)의 첨가가$ YBa_{2}$$Cu_{3}$$O_{7-\delta}$ (YBCO) 고온초전도체의 미세조직, 기계적 및 전기적 성질에 미치는 효과를 연구하였다. 소량의 Af(5, 10, 15 vol.%)는 각각 금속분말상태와 질산염인 $AgNO_{3}$초전도체의 강도와 인성값이 Ag의 함량이 증가할수록 높게 나타났으며, 이는 Ag입자에 의해 야기되는 강화기루에 의한 것으로 생각된다. 또한 Ag를 질산염의 분말상태로 첨가하여 만든 YBCO-Ag 복합재료가 금속분말상태로 첨가하여 만들었을 때보다 강도 및 인성값이 더 우수한 것으로 나타났다. $AgNO_{3}$를 첨가한 복합체가 상대적으로 더 우수한 기계적 성질을 가지는 것은 Ag 입자가 더 미세하고 균일하게 분포되었기 때문으로 판단된다. Ag 첨가로 인해 YBCO 복합초전도체의 전류밀도값은 미세하게 증가하는 것으로 관찰되었다.

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Sinter forging으로 제조한 Y-BA-Cu-O/Ag 고온 초전도 복합체의 미세조직과 특성 (A Study on the Microstructure and Properties of Y-BA-Cu-O/Ag composite High $T_{c}$ Superconductor prepared by Sinter-forging Process)

  • 박종현;김병철;송진태
    • 한국재료학회지
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    • 제4권1호
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    • pp.37-43
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    • 1994
  • Y-BA-Cu-O계 고온초전도체의 미세조직을 가공과 열처리로써 제어하여 조직의 배향화와 치밀화를 기하여 높은 임계전류밀도($J_c$)를 갖는 초전도체의 개발을 목적으로sinter forging법으로 Y-BA-Cu-O/Ag 고온초전도복합체를 제조하였다. sinter forging을 통하여 고온 초전도체의 미세조직의 texture화를 가져왔으며, 이 경우 (123)결정립의 C축 방위가 단일축의 압축방향으로 배향화 되었다. 한편, texture의 orientation facter는 고온일수록, 압력이 클수록 크고, 조직의 배향화도 뚜렷하였으며 그에 따라 $J_c$역시 증가하였다. 이러한 결과로 미루어 결정의 배향도는 $J_c$를 좌우하는 중요한 변수라고 사려되었다. 또한 sinter forging 시킨Y-MA-Cu-O/Ag 복합체의 on set온도는 sinter forging온도에 크게 의존치 않았으나, 고온일수록 off set 온도($T_c\;^{zero}$)가 다소 떨어졌다. 한편, 첨가된 Ag는 주고(123)결정입계에 존재하였으며, 이들이 (123)결정립간의 결합을 촉진시켜 임계전류밀도를 크게 향상시켰으며, Y-BA-Cu-O/Ag 복합체의 $J_c$는 2,000 A/$\textrm{cm}^2$ 이상이었다.

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ZnO 나노막대가 형성된 STO기판에 증착한 Y-Ba-Cu-O 박막의 미세구조 분석 (Microstructure Analysis of Y-Ba-Cu-O thin Films Grown on STO Substrates with Controlled ZnO Nanorods)

  • 오세권;장건익;;강병원;김경원;이초연;현옥배
    • Progress in Superconductivity
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    • 제11권1호
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    • pp.47-51
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    • 2009
  • For many large-scale applications of high-temperature superconducting materials, large critical current density ($J_c$) in high applied magnetic fields are required. A number of methods have been reported to introduce artificial pinning centers in $YBa_2Cu_3O_{7-{\delta}}$ films for enhancement of their $J_c$. We studied the microstructures and characteristic of $YBa_2Cu_3O_{7-{\delta}}$ films fabricated on $SrTiO_3$ (100) substrates with ZnO nanorods as pinning centers. Au catalyst nanoparticles were synthesized on STO substrates with self assembled monolayer to control the number of ZnO nanorods. The density of Au nanoparticles is approximately $240{\sim}260{\mu}m^{-2}$ with diameters of $41{\sim}49nm$. ZnO nanorods were grown on STO by hot-walled PLD with Au nanoparticles. Typical size of ZnO nanorod was around 179 nm in diameter and $2{\sim}6{\mu}m$ in length respectively. YBCO films deposited directly on STO substrates show the c-axis orientation, while YBCO films with ZnO nanorods exhibit any mixed phases without any typical crystal orientation.

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저온분사로 제조된 Cu계 비정질 코팅층 특성에 미치는 분말 예열 온도의 영향 (Effect of Powder Preheating Temperature on the Properties of Cu based Amorphous Coatings by Cold Spray Deposition)

  • 조진현;박동용;이진규;이기안
    • 대한금속재료학회지
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    • 제47권11호
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    • pp.728-733
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    • 2009
  • Cu based amorphous ($Cu_{54}Zr_{22}Ti_{18}Ni_{6}$) powders were deposited onto Al 6061 substrates by cold spray process with different powder preheating temperatures (below glass transition temperature: $350^{\circ}C$, near glass transition temperature: $430^{\circ}C$ and near crystallization temperature: $500^{\circ}C$). The microstructure and macroscopic properties (hardness, wear and corrosion) of Cu based amorphous coating layers were also investigated. X-ray diffraction results showed that cold sprayed Cu based amorphous coating layers of $300{\sim}350{\mu}m$ thickness could be well manufactured regardless of powder preheating temperature. Porosity measurements revealed that the coating layers of $430^{\circ}C$ and $500^{\circ}C$ preheating temperature conditions had lower porosity contents (0.88%, 0.93%) than that of the $350^{\circ}C$ preheating condition (4.87%). Hardness was measured as 374.8 Hv ($350^{\circ}C$), 436.3 Hv ($430^{\circ}C$) and 455.4 Hv ($500^{\circ}C$) for the Cu based amorphous coating layers, respectively. The results of the suga test for the wear resistance property also corresponded well to the hardness results. The critical anodic current density ($i_{c}$) according to powder preheating temperature conditions of $430^{\circ}C$, $500^{\circ}C$ was lower than that of the sample preheated at $350^{\circ}C$, respectively. The higher hardness, wear and corrosion resistances of the preheating conditions of near $T_{g}$ and $T_{x}$, compared to the properties of below $T_{g}$, could be well explained by the lower porosity of coating layer.

분사열분해 CVD 법으로 증착된 YBCO 박막의 특성에 미치는 기판 온도의 영향 (The Effect of Substrate Temperature on Superconducting Properties of YBCO Films Prepared by Spray Pyrolysis Method using Metal Nitrate Precursors)

  • 김재근;홍석관;유석구;조한우;김병주;안지현;홍계원;이희균
    • Progress in Superconductivity
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    • 제9권1호
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    • pp.102-106
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    • 2007
  • YBCO films have been synthesized using a spray pyrolysis method. We used nitrates of Y, Ba, Cu as precursors. Deposition was made on $LaAlO_3$ (100) single crystal substrate by spraying the mist of aqueous precursor solution generated by a concentric nozzle. The distance between concentric nozzle and substrate was 15 cm. C-axis oriented films were obtained at deposition temperature of $740{\sim}800^{\circ}C$ and working pressure of 20 Torr. Oxygen partial pressure was 3 Torr and substrate was transported with the speed ranging from 0.23 cm/min to 0.7 cm/min by reel to reel. Scanning electron microscope (SEM) and X-ray diffraction (XRD) observation revealed that films are smooth and highly textured with (001) planes parallel to substrate. Highest critical current density (Jc) was $1.38\;MA/cm^2$ at 77K and self-field for the film with a thickness of $0.5\;{\mu}m$ prepared at a substrate temperature of $780^{\circ}C$ and $PO_2\;=3\;Torr$. The effect of temperature on the microstructure and YBCO phase formation will be discussed.

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전기방전소결을 이용한 Ti-Ni-Zr 준 결정상의 상변화 연구와 Ti, W 다공체 제작 (Phase Transformation of Ti-Ni-Zr Icosahedral Phase and Fabrication of Porous Ti and W Compacts using Electro-Discharge Sintering)

  • 조재영;송기안;이민하;이효수;이원희;김기범
    • 한국분말재료학회지
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    • 제18권2호
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    • pp.149-158
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    • 2011
  • Electro-Discharge Sintering (EDS) employs a high-voltage/high-current-density pulse of electrical energy, discharged from a capacitor bank, to instantaneously consolidate powders. In the present study, a single pulse of 0.57-1.1 kJ/0.45 g-atomized spherical $Ti_{52}Zr_{28}Ni_{20}$ powders in size range of 10~30 and $30\sim50{\mu}m$ consisting of ${\beta}$-(Ti, Zr) and icosahedral phases were applied to examine the structural evolution of icosahedral phase during EDS. Structural investigation reveals that high electrical input energy facilitates complete decomposition of icosahedral phase into C14 laves and ${\beta}$-(Ti, Zr) phases. Moreover, critical input energy inducing decomposition of the icosahedral phase during EDS depends on the size of the powder. Porous Ti and W compacts have been fabricated by EDS using rectangular and spherical powders upon various input energy at a constant capacitance of $450{\mu}F$ in order to verify influence of powder shape on microstructure of porous compacts. Besides, generated heat (${\Delta}H$) during EDS, which is measured by an oscilloscope, is closely correlated with powder size.

질산염 무기금속 화합물의 분무열분해법에 의한 High-$J_c$ YBCO 박막 제조 (Preparation of High $J_c$ YBCO Films on LAO by Spray Pyrolysis Process Using Nitrate Precursors)

  • 홍석관;김재근;김호진;조한우;유석구;안지현;주진호;이희균;홍계원
    • Progress in Superconductivity
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    • 제8권1호
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    • pp.71-74
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    • 2006
  • High $J_c$ over 1 $MA/cm^2$ YBCO film has been successfully prepared using nitrate precursors by spray pyrolysis method. Aerosol drolpets generated using a concentric spray nozzle were directly sprayed on a $LaAlO_3$(100) single crystal substrate. The cation ratio of precursor solution was Y:Ba:Cu=1:2.65:1.35. The distance between nozzle and substrate was 15 cm. Deposition temperature was ranging from $750^{\circ}C\;to\;800^{\circ}C$. Deposition pressure was 100 Torr, and oxygen partial pressure was varied from 10 Torr to 50 Torr. The microstructure, phase formation, texture development and superconducting properties of deposited films were largely changed with oxygen partial pressure. Deposited films showed a texture with(001) planes parallel to substrate plane. High quality film was obtained when film was deposited at $760^{\circ}C$ with an oxygen partial pressure of 30 Torr. The critical current density($J_c$) of the YBCO film was 1.75 $MA/cm^2$ at 77 K and self-field.

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DCA-MOD 법으로 YBCO 박막 제조시 하소열처리의 승온속도 효과 (Effect of heating rate on calcination heat treatment of YBCO thin films by DCA-MOD method)

  • 김병주;김혜진;조한우;권연경;유정희;이희균;홍계원
    • Progress in Superconductivity
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    • 제8권2호
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    • pp.186-192
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    • 2007
  • High $J_c\;YBa_2Cu_3O_{7-x}$ superconducting films have been fabricated $LaAlO_3(100)$ substrate by MOD method using dichloroacetic acid(DCA) as chelating solvent for preparing precursor solution. Heating rate was varied in order to optimize the calcination heat treatment condition in DCA-MOD method. Coated films were calcined at lower temperature up to $500^{\circ}C$ in flowing humid oxygen atmosphere. The heating rate was calcined from $13.3^{\circ}C/min\;to\;0.28^{\circ}C/min$. Conversion heat treatment was performed $800^{\circ}C$ for 2 h in flowing Ar gas containing 1000 ppm oxygen with a humidity of 9.45%. Surface and cross sectional SEM microstructures showed that particle sizes were increased with heating rate at a calcination step. The amount of pores was increased with heating rate in the calcined films. Dense microstructure and sharp texture were developed in an YBCO films after conversion heat treatment. A high critical current density (Jc) of $1.26MA/cm^2$ (@77 K and self-field) was obtained for the YBCO film which was prepared with a heating rate of $0.28^{\circ}C/min$.

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