• 제목/요약/키워드: Rust cleaner

검색결과 4건 처리시간 0.016초

과전류 제한 기능을 갖는 연료 분사장치의 고속 구동 방법 (High Speed Operation of Fuel Injectors with Over Current Protection)

  • 양형열;서의석
    • 전기학회논문지
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    • 제60권11호
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    • pp.2043-2048
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    • 2011
  • High speed drive method for a fuel injector cleaner with current control is presented in this paper. The fuel injector cleaner is used for cleaning the fuel injectors in vehicles when it is clogged with deposit and rust. The fuel injector cleaner cleans the fuel injector by turning on and off the fuel injector rapidly. When the fuel injectors are cleaned, the switching speed is very important. However, when the fuel injector is turned off, the residual current in the fuel injector coil slows down the return action of the plunger in the fuel injector deteriorating performance and speed of the fuel injector cleaner. In this paper, fast turn off operation method of fuel injectors is developed for more effective cleaning. The simulation and experiment results show the validity of the proposed method.

화장품과 식품 재료를 이용한 각종 산업장비 녹(rust) 세정에 관한 연구 (A Study on Rust Cleaning of Various Industrial Equipment Using Cosmetic and Food Materials)

  • 염석재;정선도;오은하
    • 한국응용과학기술학회지
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    • 제38권1호
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    • pp.19-28
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    • 2021
  • 부식은 환경과의 반응에 의한 금속의 열화이다. 이는 완전히 제거하기가 어렵다. 부식은 보호장벽이 파괴 된 후 빠르게 진행되며 매트릭스로의 금속 양이온 확산, 산화물 형성과 국소 pH 변화 같은 금속 표면과 국소 환경의 조성과 특성을 변경하는 여러 반응이 일어난다. 강과 철의 부식에 대한 연구는 이론적, 실제적 관심사이며 상당한 관심을 받고 있다. 산업용 산세척, 산 스케일 제거, 세척 및 유정 산성화에 널리 사용되는 산 용액은 금속 재료에 대한 부식 공격을 억제하기 위해 부식 억제제를 사용해야한다. 녹을 물리적으로 제거하려면 고가의 특수 장비가 필요하며 이를 화학적으로 제거하면 부식을 유발하거나 금속의 수명을 단축 할 수 있다. 본 연구에서는 퍼머 환원제와 킬레이트 개념을 적용하여 화장품 및 식품소재를 이용한 친환경 녹 세정제를 개발하였고 산업 및 온수 관, 각종 산업 기기의 녹을 제거하기 위해 적용하여 보았다. 그 결과, 녹 세정제는 기존 처리 방식에 비해 녹을 더 효과적이고 안전하게 제거하는 것으로 나타났다. 동일한 시간에서 녹 제거 효율은 기존의 방법보다 공업용 배관의 경우 1.75 ~ 2.5 배, 보일러 온수용 배관의 경우 1.56 ~ 2.2 배 우수하였다.

Improved Cleaning Method for Dental Instruments

  • Kim, In-Geol;Lee, Yun-Ji
    • Journal of Korean Dental Science
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    • 제3권2호
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    • pp.26-33
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    • 2010
  • We searched at the "PubMed.gov" and "jendodon.com" sites to conduct a literature review on dental instruments that are reused in clinical settings and on infection control involving pre-disinfection or sterilization cleaning/rinsing. The keyword "dental clean" was used for the Web search. We found the present official definition of instrument cleaning performed prior to disinfection or sterilization rather limiting ("removal of foreign matter (soil, organism, etc.) from the instruments"). Thus, we proposed to expand the definition to include the removal of oils applied to protect the metallic instruments and from corrosion, stains, and rust resulting from the frequent reuse of the instruments. Clinicians are found to clean their dental instruments (a) immediately after treating their patients or (b) following their treatment but not immediately afterward. In the latter case, we recommend presoaking to be added. Ultrasonic sterilization of 5~15 minutes is found to be more effective in terms of eliminating residual matter from the instruments compared to other methods. To check on the cleaning results, we recommend visual inspection, which can be quick and practical in clinical settings. The latest products being developed and marketed on the market address the related problems. Nonetheless, research must be continued on the effects of presoak, cleaning/rinsing, disinfection, and high-temperature or heating-based sterilization on the dental instruments and on dental clinicians' practices in cleaning, disinfection, and sterilization. We advise dental clinicians to select the proper cleaning methods and detergents for their instruments to help eliminate or prevent corrosion, staining, and rusting, to reduce the maintenance costs, and to ensure user-friendly instruments/apparatuses.

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계명대학교 박물관 보존과학실 소개 (Conservation Laboratory of Keimyung University Museum)

  • 김병주
    • 보존과학연구
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    • 통권6호
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    • pp.247-258
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    • 1985
  • Conservation laboratory was attached to Keimyung University Museum inMarch 1980 and ever since it has been devoted mainly to the processing andconservation of metal objects. A number of objects have been processed inthis laboratory during the period, including those already in the collection ofthe Museum, those which were discovered during the three major excavationsof Kaya tombs conducted by the Museum, and those processed on commissionfrom other museums in the country,The activities of this laboratory include: (1) conserving the objects againstfurther erosion; (2) raising the archaeological value of the objects by revealingthe structure of such parts of the objects as concealed under rust; and (3)recovering the original shape of damaged objects.The methods adopted by the laboratory include: (1) removing from theobjects the ionized chlorine which usually are the major cause of erosion; (2)strengthening the objects by soaking them in acrylic resins; and (3) applyingresins to the surface of the objects to protect them from further erosion.Chemicals much employed by the laboratory includes the acrylic resin(Ruschot; developed jointly by the Cultural Property Research Institute ofKorea and Samwha Paint Company), the sodium sesquicarbonate, the sodiumhydroxide, the lithium hydroxide, and the benzotriazole.Major apparatus in the laboratory includes the vacuum immersion tank, theairbrasive, the ultrasonic cleaner, the pH-ion meter, the water bath, the zoomstereo microscope, the drying oven, and the drill.

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