• Title/Summary/Keyword: 분리식 커플링

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Flip-Flap Valve-Type Breakaway Coupling through Reverse Engineering (역설계를 통한 Flip-Flap 밸브형 분리식 커플링에 관한 연구)

  • Ahn, Hee-Hak;Yi, Chung-Seob
    • Journal of the Korean Society of Manufacturing Process Engineers
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    • v.15 no.4
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    • pp.16-22
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    • 2016
  • This study is a structural analysis of 3" Cryogenic Safety Breakaway Coupling using a manufactured product from KLAW Company. Breakaway coupling is very important in the pipe system, especially when transporting fuel or gas in the pipeline. For the analysis of the patent infringement target, Dover and KLAW Company's technologies (US 08127785, EP 0764809) were analyzed. Finally, the flip-flap valve overlap was measured after combining the breakaway coupling through 3D modeling, and the valve overlap had a 0.7mm measurement value from the height gauge. The safety breakaway coupling consisted of a total of 62 pieces (body: 42, valve module: 21).

Gly-His-Lys Conjugated Chitosan and its Cell Proliferation Effects (Gly-His-Lys 펩타이드가 결합된 키토산과 그의 세포증식 효과에 관한 연구)

  • Ha Byung-Jo;Lee Yoon-Sik;Park Soo Nam
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.30 no.3 s.47
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    • pp.399-404
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    • 2004
  • Novel GHK-conjugated chitosan was prepared by the solid-phase method using $N^{\alpha}-Fmoc$ amino acids/BOP coupling reagent. For this purpose, the chitosan microbeads which had a mean diameter of 70 um were prepared by the W/O emulsion-phase separation method. The GHK was successfully coupled to the chitosan microbeads by stepwise solid-phase method. The result of amino aid analysis was in good agreement with the theoretical values; $Gly_{1.02}\;of\;His_{1.13}\;Lys_{0.96).$. The cell proliferation effect of the GHK-bound chitosan microbeads was measured by MTT assay. We concluded that GHK-bound chitosan microbeads gave higher cell Proliferation effect than chitosan microbeads.

Characteristic Verification of Electronically Scanned Array Antenna for a Ku-band FMCW Radar (Ku-대역 FMCW 레이더용 전자식 빔 조향 배열 안테나 특성 검증)

  • Chae-Hyun Jung;Jaemin Lee;Minchul Kim;Hang-Soo Lee;Sungjun Yoo;Sunghoon Jang
    • The Journal of the Institute of Internet, Broadcasting and Communication
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    • v.23 no.4
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    • pp.65-71
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    • 2023
  • In this paper, the design, fabrication and verification steps of an electronically scanned array antenna(AESA) for a photonics-based Ku-band FMCW radar system is described. The presented system consists of a transmitter and a receiver respectively, which has a same antenna in the transceiver. The designed antenna has 2×8 array configuration and operates at Ku-band. The VSWR(Voltage Standing Wave Ratio) of each 16-radiators and the coupling power between radiators is measured. Also, in order to minimize the radar system damage because of handover power from the transmitter antenna to the receiver antenna when the transmitter works, the isolation between the transmitter antenna and the receiver antenna is optimized by test. As a result, beamwidth, side lobe level and beam steering characteristic are obtained by synthesizing each radiator pattern measurement data after each beam pattern of 16-radiators is measured in the near-field chamber.