• 제목/요약/키워드: Sheath alloys

검색결과 9건 처리시간 0.019초

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.

Twisted Multifilamentary BSCCO 2223 Tapes by Using High Resistive Sheath

  • Yoo, Jai-Moo;Ko, Jae-Woong;Kim, Hai-Doo;Chung, Hyung-Sik
    • Progress in Superconductivity
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    • 제1권2호
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    • pp.141-145
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    • 2000
  • Different twist pitches of multi filamentary BSCCO 2223 tapes using high resistivity sheath were fabricated to investigate the effect of twist pitches on the microstructure and critical current property. A conductor with a high resitstivity matrix is possible to allow larger twist pitch for reducing ac losses and reduce eddy current losses simultaneously. The $J_{ct}$ values of 10 mm and 5 mm twisted tapes drop faster than that of untwisted and 20 mm twisted tapes under increasing magneticfield, especially in low field regime (0 $\sim$ 0.03 T). It suggests that weak links in the former are more serious than in the latter, which is in accordance with the microstructure analysis.

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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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경주 계림로 14호분 장식보검 금립의 접합방법에 관한 고찰 (Ornamented Dagger Sheath from Gyerim-ro Tomb No.14, Gyeongju: On the Joining Process of Gold Granules)

  • 유혜선
    • 박물관보존과학
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    • 제16권
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    • pp.4-13
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    • 2015
  • 지금까지 한반도에서 출토된 누금세공유물의 접합방법을 살펴보면 금과 은을 합금한 재료를 사용한 금납법으로 접합한 경우가 대부분이다. 경주 보문동합장분 출토 금제태환이식(국보 제90호), 호암미술관 소장 금제세환이식과 금제태환이식(보물 제557호) 그리고 통일신라시대 감은사지 동삼층석탑 출토 금제풍탁(金製風鐸) 등에서 확인되었다. 그러나 경주 계림로 14호묘 출토 장식보검(裝飾寶劍)의 금립 접합방법은 지금까지 확인된 방식과는 다르다는 것을 SEM-EDS 분석으로 알 수 있었다. 계림로 장식보검의 금립은 크기와 형태가 매우 고르고, 표면에 수지상 조직(樹枝狀組織)을 갖고 있다. 순수한 금속에서는 이 수지상 조직이 나타나지 않으며, 합금된 물질의 특징이라고 할 수 있다. 실제로 금립의 조성은 Au 77wt%, Ag 18wt%, Cu 4wt%의 3원계 합금물질이다. 이 성분 특성(합금 금속)으로 인하여 순수한 금의 녹는점인 1064℃ 보다 훨씬 더 낮은 온도인 1000℃ 미만(약 980℃)에서도 금속의 용해가 가능하게 된다. 그러므로 금땜이나 다른 매개물을 전혀 사용하지 않고도 순간적으로 고온을 가하게 되면 금립의 접합이 가능하게 된다. 그리고 SEM 이미지 관찰에서도 땜의 흔적을 전혀 찾아 볼 수 없는 것으로 보아 융접법에 의한 접합이 이루어진 것으로 추정된다.

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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유한요소법을 이용한 등통로각압출 공정의 마그네슘 분말 고형화 거동 해석: 피복재 효과 (Finite Element Analysis of Densification of Mg Powders during Equal Channel Angular Pressing: Effect of Sheath)

  • 윤승채;김택수;김형섭
    • 한국분말재료학회지
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    • 제16권2호
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    • pp.85-90
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    • 2009
  • Magnesium and its alloys are attractive as light weight structural/functional materials for high performance application in automobile and electronics industries due to their superior physical properties. In order to obtain high quality products manufactured by the magnesium powders, it is important to control and understand the densification behavior of the powders. The effect of the sheath surrounding the magnesium powders on the plastic deformation and densification behavior during equal channel angular pressing was investigated in the study by experimental and the finite element methods. A modified version of Lee-Kim's plastic yield criterion, notably known as the critical relative density model, was applied to simulate the densification behavior of magnesium powders. In addition, a new approach that extracts the mechanical characteristics of both the powder and the matrix was developed. The model was implemented into the finite element method, with which powder compaction under equal channel angular pressing was simulated.

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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