• Title/Summary/Keyword: 슬라이딩 하중 및 속도

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조사재시험시설 풀물속에 설치된 1톤 버켓 엘리베이터 고찰

  • 송웅섭;이종헌;이홍기;주용선;홍권표
    • Proceedings of the Korean Radioactive Waste Society Conference
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    • 2004.06a
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    • pp.342-343
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    • 2004
  • 조사재시험시설내 풀 ($3{\times}6{\times}10\textrm{m}^3$) 속에는 풀과 핫셀간에 조사재 및 연료를 핫셀로 이송할 수있는 버켓 엘리베이터(bucket elevator)가 설치되어 있다. 허용하중은 1톤이고, 버켓의 제원은 $25{\times}25{\times}150\textrm{cm}^3$ 이다. 버켓의 상하 운동은 체인구동 시스템으로 약 63도의 경사도를 갖고 움직이며, 체인은 사각 튜브의 내측면에 고정되어 있는 상하 가이드 레일 사이에서 특수 제작된 체인이 로울러 슬라이딩 방식으로 버켓의 lug를 잡고 상하로 움직이며 핫셀 작업대(working table) 하부에 설치되어 있는 스프로켓 휠(sprocket wheel)에 감기어 구동하도록 되어 있다.(중략)

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Tribological Wear Behavior of PTFE Impregnated with Cu Nano Particles (구리 나노 입자가 함침된 PTFE의 윤활 마모 거동)

  • Kim, S.Y.;Kim, E.B.;Q., Yoo;Ju, C.S.
    • Journal of Power System Engineering
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    • v.14 no.4
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    • pp.50-55
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    • 2010
  • In order to investigate tribological effects of nano copper particles impregnated(CuN) on surface polytetrafluoroethylene(PTFE) on sealing wear and an experimental study was carried out to determine the wear behavior of copper nano-particles impregnation two kind thickness in super critical $CO_2$ liquid. Experimental results showed that the friction coefficients of CuN PTFE at the low sliding speed(0.44m/s) and the oil temperature ($60^{\circ}C$) were higher than that of virgin PTFE. And a thin nano copper particles impreganated thickness was formed on the surface in the PTFE and the specimen with this treatment has much better friction properties than the original one. Fortunately, at the high load(80 N) and the oil temperature, the friction coefficient of CuN PTFE was lower than that of virgin PTFE. This evidenced the load carrying capacity of CuN PTFE was much better than that of virgin PTFE under the high load condition(80 N) specially. Therefore, it can be concluded that the friction coefficient variation of CuN PTFE is very small but its wear rate decreases greatly with increase in sliding speed.