• Title/Summary/Keyword: sheath alloying

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피복합금을 사용한 Bi-2223 선재의 열전도도 및 전기전도도 특성평가 (Effects of Ag-alloy sheath on thermal/electrical conductivity of Bi-2223 superconductor tapes)

  • 장석헌;지봉기;임준형;주진호;나완수
    • Progress in Superconductivity
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    • 제4권2호
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    • pp.180-183
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    • 2003
  • We evaluated the effect of alloying-element additions to Ag sheath on thermal conductivity of Bi-2223 superconductor tapes. In order to evaluate the effect of sheath alloys and their configuration on the properties of tape, various combinations of Ag and Ag alloys were selected as inner and outer sheath. Thermal conductivity of the tapes was measured by using thermal integral method at 10∼120 K. It is observed that the presence of alloying-elements such as Mg, Sb, and Au in Ag sheath results in decreased thermal conductivity at low temperature. Specifically, the thermal conductivity of AgMg, AgSb, and AgAu at 40 K were 411.4, 142.3, and 109.7 W/(m·K), respectively, which is about 2∼9 times lower than that of Ag (1004.6 W/(m·K)). In addition, the thermal conductivity of alloy-sheathed tape was significantly dependent on their values of constituent sheath materials.

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합금원소 첨가에 따른 Ag 피복 Bi-2223 초전도 선재의 열전도도 측정 및 특성평가 (The Effects of Alloying-Element Additions to Ag Sheath on Thermal Conductivity and Properties of Bi-2223 Superconductor Tapes)

  • 주진호;장석헌;김정호;임준형;김규태;지봉기
    • 한국전기전자재료학회논문지
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    • 제16권7호
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    • pp.627-633
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    • 2003
  • The effects of alloying-element additions to Ag sheath on thermal conductivity and mechanical properties of Bi-2223 superconductor tapes have been evaluated. In order to evaluate the effects of sheath alloys and their configuration on the properties of tape, various combinations of Ag and Ag alloys were selected as the inner and outer sheath. Thermal conductivity of the tapes was evaluated by using thermal integral method at 10 ∼120 K. It was observed that the addition of Mg, Sb, and Au to Ag sheath significantly decreased the thermal conductivity at low temperature probably due to the alloying effect. Specifically, the thermal conductivity of AgMg, AgSb, and AgAu at 40 K were 411.4, 142.3, and 109.7 W/(m·K), respectly, which is about 2∼9 times lower than that of Ag (1004.6 W/(m·K)). In addition, the thermal conductivity of alloy-sheathed tape was significantly dependent on their thermal conductivities of constituent sheath materials. The mechanical properties of alloy-sheathed tapes were also evaluated. Yield strength and tensile strength were improved but workability decreased for alloy-sheathed tapes.

기지금속을 달리한 Bi-2223 초전도 선에서의 기계적 특성 변화 (Mechanical properties at Bi-2223 HTS tapes with various sheath materials)

  • 하동우;이동훈;양주생;김상철;황선역;하홍수;오상수
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2004년도 하계학술대회 논문집 Vol.5 No.1
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    • pp.551-554
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    • 2004
  • Bi-2223 HTS tapes are used widely for application of superconducting power systems. However there are need the properties of high strength and low AC loss. Two kinds of Bi-2223 HTS tapes with different Ag sheath were used to know the effect of sheath alloying for the strength and the resistivity. The workability and reaction degree of superconducting phase at Bi-2223 HTS tapes were investigated. We designed conventional type-Ag/alloy and double sheathed mono filament type-Ag/alloy/alloy in order to increase the strength and resistivity of matrix in Bi-2223 HTS tapes. The effect of axial strain and thermal cycling on the critical current was investigated for the Bi-2223 HTS tapes. Because the workability of double sheath Bi-2223 HTS tape was lower than one sheath Bi-2223 HTS tape, it was need additional softening treatment. Bi-2223 formation reaction was decreased by Ag alloy matrix during sintering process. Two kinds of Bi-2223/Ag tapes with different Ag sheath were used to know the effect of sheath alloying for the tensile strain. Critical current is drastically decreased for Ag/alloy and Ag/alloy/alloy sheathed tapes at tensile strain above 0.24 % and 0.34 %, respectively. This result showed that mechanical strength was increased over than 40 % by introduce double sheath at mono filament stage.

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Mechanical and Thermal Properties of Ag sheath alloys for Bi-2223 superconductor tape

  • Kim, Tae-Woo;Joo, Jin-Ho;Nah, Wan-Soo;Yoo, Jai-Moo;Ko, Jae-Woong;Kim, Hai-Doo;Chung, Hyung-Sik;Lee, Sang-Hyun
    • Progress in Superconductivity
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    • 제1권1호
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    • pp.61-67
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    • 1999
  • We evaluated the effect of alloying element additions to Ag sheath on mechanical, electrical and thermal properties of Bi-2223. Additions of Au, Pd and Mg to Ag sheath increased hardness and strength, while reduced elongation and electrical and thermal conductivity. In addition, microstructural investigation showed that the grain size of Ag significantly decreased with increasing content of alloying elements. The improvements in strength and hardness are believed to be due to the presence of alloying elements that lead to strengthen materials by combined effects of solid-solution, dispersion hardening and grain size hardening. Thermal conductivity of Ag and Ag alloys was evaluated in the temperature range from 77 K to 300 K, and com-pared to calculated value obtained by Wiedermann-Franz law. It was observed that the thermal conductivity decreased with increasing the content of alloying elements. Specifically, the thermal conductivity of $Ag_{0.92}Pd_{0.06}Mg_{0.02}$ alloy was measured to be $48.2W/(m{\cdot}K)$ at 77 K, which is about 6 times lower than that of $Ag(302.6W/(m{\cdot}K))$.

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고온초전도 선재용 피복합금의 열전도도 측정 및 특성평가 (Thermal conductivity and properties of sheath alloy for High-$T_c$ superconductor tape)

  • 박형상;지봉기;김중석;임준형;오승진;오승진;주진호;나완수;유재무
    • 한국전기전자재료학회논문지
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    • 제13권8호
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    • pp.711-717
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    • 2000
  • Effect of alloying element additions to Ag on thermal conductivity electrical conductivity and mechanical properties of sheath materials for BSCCO tapes has been characterized. The thermal conductivity at low temperature range(10~300K) of Ag alloys were evaluated by both direct and indirect measurement techniques and compared with each other. It was observed that thermal conductivity decreased with increasing the content of alloying elements such as Au, Pd and Mg. Thermal conductivity of pure Ag at 30 K was measured to be 994.0 W/m.K on the other hand the corresponding values of A $g_{0.9995}$/M $g_{0.0005}$, A $g_{0.974}$/A $u_{0.025}$/M $g_{0.001}$, A $g_{0.973}$/Au.0.025//M $g_{0.002}$, and A $g_{0.92}$/P $d_{0.06}$/M $g_{0.02}$ were 342.6, 62.1, 59.2, 28.9 W/m.K respectively indicating 3 to 30 times lower than that of pure Ag. In addition alloying element additions to Ag improved mechanical strength while reduced elongation probably due to the strengthening mechanisms by the presence of additive atoms.s.

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고온초전도 PIT선재의 반복 열응력 및 변형률 의존성 (Dependence of thermal cycling and axial strain on HTS PIT tapes)

  • 하홍수;이동훈;최정규;양주생;황선역;김상철;하동우;오상수;권영길
    • 한국초전도저온공학회:학술대회논문집
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    • 한국초전도저온공학회 2003년도 추계학술대회 논문집
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    • pp.131-133
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    • 2003
  • The effect of axial strain and thermal cycling on the critical current is investigated for the Bi-2223/Ag PIT tapes. The axial strain was applied to the tapes by the U-shape sample holder. Two kinds of Bi-2223/Ag tapes with different Ag sheath are used to know the effect of sheath alloying for the tensile strain. The influence of thermal cycling between room temperature and 77 K on critical current are examined. Critical current is drastically decreased for Ag/alloy and Ag/alloy/alloy sheathed tapes at tensile strain above 0.22% and 0.3%, respectively.

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Low Temperature Thermal Conductivity of Sheath Alloys for High $T_{c}$ Superconductor Tape

  • Park, Hyung-Sang;Oh, Seung-Jin;Jinho Joo;Jaimoo Yoo
    • Transactions on Electrical and Electronic Materials
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    • 제1권2호
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    • pp.32-37
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    • 2000
  • Effect of alloying element additions to Ag on thermal conductivity and electrical conductivity of sheath materials for Bi-Pb-Sr-Ca-Cu-O(BSCCO) tapes has been characterized. The thermal conductivity at low temperature range (10~300K) of Ag and Ag alloys were evaluated by both direct and indirect measurement techniqueas and compared with each other, It was observed that the thermal conductivity decreases with increasing the content of alloying element such as Au, Pd and Mg. Thermal conductivity of pure Ag at 3 0K was measured to be 994.0 W(m.K) on the other hand, the corresponding values of $Ag_{0.9995}Mg_{0.0005}$, $Ag_{0.974}$, $Au_{0.025}$, $Mg_{0.001}$, $Ab_{0.973}$, $Au_{0.025}$, $Mg_{0.002}$ and $Ag_{0.92}$, $Pb_{0.06}$, $Mg_{0.02}$ were 342.6, 62.1, 59.2 and 28.9 W(m.K), respectively, indicating 3 to 30 times lower than that of pure Ag. In addition, the thermal conductivity of pure Ag measured by direct and indirect measurement techniques was 303.2 and 363.8 W(m.K) The difference in this study is considered to be within an acceptable error range compared to the reference data.

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Bi-2212 초전도 테이프에서 임계전류의 응력/변형률 특성에 미쳐는 외부강화의 영향 (Effect of External Reinforcement on Stress/strain Characteristics of Critical Current in Ag Alloy Sheathed Bi-2212 Superconducting Tapes)

  • 신형섭
    • 한국초전도ㆍ저온공학회논문지
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    • 제3권1호
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    • pp.6-10
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    • 2001
  • Stress/stram dependencies of the critical current $I_c$ in AgMgNi sheathed multifilamentary Bi(2212) superconducting tapes were evaluated at 77K, 0T. The external reinforcement was accomplished by soldering Ag-Mg tapes to sin91e side or both sides of the sample. With the external reinforcement. the strength of tapes increased but $I_c$, decreased The $I_c$, degradation characteristic according to the external reinforcement was improved markedly in terms of the stress although it appeared less rectal.table on the basis of the strain. Effects of external reinforcement were discussed in a viewpoint of monitoring sensitivity of cracking in superconducting filaments by considering n-value representing the transport behavior of the current. It is closely associated with the location of them relative to the voltage-monitoring region in the tape.

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은 합금 시스 Bi-2223 고온초전도 테이프의 임계전류밀도 향상 (Improvement of Jc for Ag alloy Sheathed Bi-2223 HTSC Tape)

  • 장현만;오상수;하동우;류강식;김상현
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1996년도 하계학술대회 논문집 C
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    • pp.1489-1491
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    • 1996
  • The effect of Ag alloy sheath have been investigated in terns of critical current density and mechanical property. Nevertheless the continuous improvement of critical current density($J_c$) of Ag sheathed Bi2223 oxide superconducting wire processed with powder in tube(PIT) method, poor mechanical strength is still considered to be demerits for power application. In this study, we prepared two kinds of Ag- x wt% Cu alloy and pure Ag sheathed Bi2223 superconducting tapes. The hardness and tensile strength of prepared tapes has been measured. Their mechanical propertes were improved by Ag alloying.

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오동상감(烏銅象嵌)기법을 활용한 장도(粧刀)의 제작기술 및 복원연구 (Jangdo(Small Ornamental Knives) manufacturing process and restoration research using Odong Inlay application)

  • 윤용현;조남철;정영상;장추남
    • 헤리티지:역사와 과학
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    • 제49권2호
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    • pp.172-189
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    • 2016
  • 본 연구에서는 "오주서종박물고변(五洲書種博物考辯)", "천공개물(天工開物)" 등 고문헌에 기록된 오동 재료와 합금비, 주조 시설, 주조법 등을 확인하고 이를 기초자료로 활용하여 오동상감기법으로 장도를 제작하였다. 오동상감기법 장도 제작은 크게 오동 합금, 은땜 합금, 오동판과 은판 제작, 칼자루와 칼집 제작, 장도의 장석인 두겁 및 부속품 제작, 오동 상감, 조립의 순으로 진행하였다. 오동의 합금은 "오주서종박물고변"에 보이는 상품(上品)으로 전통방식의 진오동(眞烏銅) 합금비인 구리와 금을 20:1의 중량비로 하였다. 은땜의 합금은 상감된 문양에 사용한 경우 은과 황동(Cu 7 : Zn 3)을 중량비 5:1로, 단순 접합 사용한 경우에는 은과 황동을 중량비 5:2로 합금하여 은땜판을 제작하였다. 칼집과 칼자루 제작은 진오동 합금비로 만든 오동 괴를 풀림과 단조작업을 실시하여 오동판의 두께를 0.6mm로, 오동의 뒷면인 은판도 두께 0.6mm로 제작한 뒤, 오동판과 은판 접합, 풀림과 단조, 오동판에 문양 새기기, 은 상감하기, 오동판으로 칼집과 칼자루 모양잡기, 은땜으로 접합하기, 연마 및 광택내기 등의 과정을 거쳐 완성하였다. 붉은색의 오동판 표면을 검은색으로 부식시키는 '오동 살리기(발색하기)'는 오동 합금의 품위에 따라 발색 효과가 차이가 난다. 한지를 30일 정도 썩힌 인뇨(人尿)에 적셔 칼집과 칼자루 등에 감아 따뜻한 곳($25^{\circ}C$ 이상)에 두고 2~3시간이 경과하면 오동판의 겉면만 검은색으로 발색되고 은이 상감된 문양은 그대로 있어 오동상감기법을 재현할 수 있었다. 오동상감 복원에 사용했던 오동판, 은판, 은땜판의 합금성분과 오동의 표면 발색성분을 알기 위해 과학분석을 실시하였다. 오동 합금 분석(시료 2개)결과 고문헌 기록(Cu 95wt%, Au 5wt%)과 평균성분비가 유사한 Cu 95.57wt%, Au 4.16wt%과 차이가 있는 Cu 98.04wt%, Au 1.95wt%로 검출되었는데, 전자는 오동판 가공에 성공률이 높은 반면, 후자는 가공과정에서 터지는 등의 실패가 있었다. 오동판과 은판이 부착된 시료의 성분분석 결과 은판 부분은 Ag 100wt%로 검출되었고, 오동판과 은판이 접합된 부분은 Cu, Ag, Au가 모두 검출되어 접합이 잘 되었음을 확인할 수 있었다. 은과 황동을 합금한 은땜판은 분석결과 Ag 성분이 다양하게 검출되고 있어 성분비와 관계없이 매우 불균질하게 섞여있음을 관찰하였다. 오동판에 검은색으로 발색된 부분의 성분분석 결과 소지 금속에서 검출되지 않았던 S의 함량이 검출되어 S의 함량이 오동 색상에 영향을 미친 것으로 판단되었다. 향후 발색에 대한 정확한 메커니즘을 밝히기 위해서는 추가적인 화합물, 색도 및 재현 연구 등 추가연구가 필요하다. 이번 연구를 통해 시도 및 확인된 고문헌 속의 오동합금 실험 및 재현, 오동상감기법에 의한 장도제작, 오동판 검은색 발색 메커니즘의 과학 분석결과 등은 오동상감기법의 복원을 위한 중요한 기초자료로 활용될 수 있을 것이다.