• Title/Summary/Keyword: 흡수체

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Comparative Seismic Evaluation of Structures by Energy Absorption Efficiency (에너지 흡수효율에 의한 구조물간 내진 성능 비교)

  • 김장훈
    • Journal of the Earthquake Engineering Society of Korea
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    • v.5 no.3
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    • pp.37-43
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    • 2001
  • The energy concept has been extended to compare the hysteretic performance between various structural systems. As a result, the energy absorption efficiency is defined as the cumulative energy absorption capacity of a structural system normalized by that of the elasto-perfectly plastic system as a benchmark for comparisons. For this, the construction of energy curves from the experimental results obtained by cyclic loading tests is required. Using the proposed procedure, structures differing from each other in geometry, material and construction can be relatively and objectively compared for seismic performance. Also the beauty of this method is in its irrelevance to the structural failure mode. The proposed procedure was validated by application to the experimental results of two different specimens.

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Development of Broad-band Electromagnetic Wave Aborbers in Cut Corn and Cylinder Types (원추절단형 및 원기둥형 광대역 페라이트 전파흡수체 개발에 관한 연구)

  • 김동일;박종구;원영수;이영구;정세모
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.11 no.6
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    • pp.900-906
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    • 2000
  • The remarkable progress of electronics and radio communications technology has made our life abundant. On the other hand, the countermeasure of EMl/EMC becomes more important socially according to the increased use of electromagnetic waves. It had been required that the absorbing ability of an electromagnetic wave absorber is more than 20 dB, the bandwidth of which is required through 30 MHz to 1,000 MHz for satisfying the international standard about an anechoic chamber for EMl/EMS measurement. From November of 1998, however, the CISPR11 has accepted the extended frequency band to 18 GHz in the bandwidth of EMI measurement. In this paper, we proposed the cut corn type and cylinder type absorbers satisfying the above requirments and carried out broadband design using the equivalent material constants method.

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A Study on Development of Ferrite Wave Absorber with Cutting Corn-Shaped Type (원추절단형 페라이트 전파흡수체의 최적설계 및 제작에 관한 연구)

  • 김동일;박종구;정세모;이영구
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.4 no.4
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    • pp.721-726
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    • 2000
  • The remarkable progress of electronics and radio communications technology has made our life abundant. On the other hand, the countermeasure of EMC becomes more important socially according to the increased use of electromagnetic waves. It had been required that the absorbing ability of an electromagnetic wave absorber is mote than 20 dB, the bandwidth of which is required through 30 MHz to 1,000 MHB for satisfying the international standard about an anechoic chamber lot EMl/EMS measurement. From November of 1998, however, the CISPR11 has accepted the extended frequency band from 30 MHz to 18 GHz in the bandwidth of EMI measurement. In this paper, we proposed the cutting corn-shaped type satisfying the above requirements and carried out broadband design using the equivalent material constants method. Moreover, we have fabricated it and compared its characteristics with simulated one.

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Se-coated Cu-Ga-In 금속전구체 셀렌화 반응메카니즘 연구

  • Kim, U-Gyeong;Gu, Ja-Seok;Park, Hyeon-Uk
    • Proceedings of the Materials Research Society of Korea Conference
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    • 2011.05a
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    • pp.47.2-47.2
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    • 2011
  • 광전환 효율 20% (AM1.5G) 이상의 고효율 화합물 박막태양전지의 광흡수층으로 많은 관심을 받고 있는 $Cu(In,Ga)Se_2$ (CIGS) 태양전지의 광흡수층은 다양한 공정에 의해 제조가 가능하다. 현재 고효율 CIGS 셀 생성을 위해 널리 사용되고 있는 CIGS 흡수층 성장공정은 "co-evaporation (동시증발법)"과 2-step 공정이라 불리는 "precursorselenization(전구체-셀렌화)" 방법이다. 동시증발법은 개별원소 Cu, In, Ga, Se들을 고진공 분위기에서 고온(550~600$^{\circ}C$) 기판위에 증착하는 방법으로 소면적에서 가장 좋은 효율(~20%)을 보이는 공정이다. 하지만, 고온, 고진공 공정조건과 대면적 증착시 온도 및 조성 불균일 등의 문제점 등으로 상용화에 어려움이 있다. 전구체-셀렌화 공정은 1단계에서 다양한 방식(예: 스퍼터링, 전기도금, 프린팅 등) 방식으로 CuGaIn 전구체를 증착하고, 2단계에서 고온(550~600$^{\circ}C$)하에 H2Se gas 혹은 Se vapor와 반응시켜 CIGS를 생성한다. 일본의 Showa Shell와 Honda Soltec 등에 의해 이미 상업화 되었듯이, 저비용 대면적으로 상업화 가능성이 높은 공정으로 평가되고 있다. 하지만, 2단계에서 사용되는 H2Se 및 Se vapor의 유독성, 기상 Se과 금속전구체 간의 느린 셀렌화 반응속도, 셀렌화반응 후 생성된 CIGS 박막 두께방향으로의 Ga 불균일 분포, 생성된 CIGS/Mo 계면 접착력 저하 등의 문제점들이 개선, 해결되어야만 상업화에 성공할 수 있을 것이다. 본 연구에서는 Se layer가 코팅된 금속전구체의 셀렌화 반응메카니즘을 in-situ high-temperature XRD를 이용하여 연구하였다. 금속전구체는 스퍼터링, 스프레이 등 다양한 방법으로 제조되었고, 반응메카니즘 연구결과를 바탕으로 Se 코팅된 금속전구체를 이용한 급속열처리 공정의 최적화를 시도하였다.

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