• Title/Summary/Keyword: 불화물

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Experience and Recognition of Fluorides for Caries Prevention: Focusing on One University (일개 대학 재학생의 치아우식예방 불소이용법에 관한 경험과 인식)

  • Kim, Soo-Ryeon;Kim, Su-Hyun;Kim, Cho-Rong;Park, Jee-Won;Hwang, Soo-Jeong
    • Journal of dental hygiene science
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    • v.14 no.4
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    • pp.580-588
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    • 2014
  • Fluoride use is the best and widespread method for dental caries prevention. The aim of this study was to investigate experience and recognition of fluoride for caries prevention focusing on majors in one university. Four hundred twenty-four university students were selected by convenience sampling with informed consent and answered the questionnaire by self recording type. The subjects except dental hygiene students knew about purpose of fluoride use (84.6%), over the count fluoride rinse (63.2%), fluoride toothpaste (61.5%), professional fluoride application (56.4%) and water fluoridation (43.6%). They experienced over the count fluoride rinse (67.5%), school fluoride rinse (45.3%), professional fluoride application (30.8%), fluoride toothpaste (28.2%) and water fluoridation (12.0%). The main information paths about fluoride were university lectures among dental hygiene students and internet and mass media, followed by nurse-teachers among non dental hygiene students. The ratios of intention to use fluoride were: 67.8% in dental hygiene, 34.9% in health, 51.4% in non-health in case of professional fluoride application for oneself, 93.1% in dental hygiene, 48.0% in health, 50.4% in non-health in case of professional fluoride application for their children, 79.0% in dental hygiene, 51.3% in health, 55.8% in non-health in case of water fluoridation. The subjects to experience and recognize fluoride for caries prevention had more positive intention to use fluoride. The answers of students majoring in health or medical care were not different from non-health, except dental hygiene. Dental professionals should try to let the public know about fluoride use for caries prevention through mass media and internet as well as individual education in dental clinics.

A Study on the Electrode Properties of $CaNi_5$ Hydrogen Storage Alloy by F-Treatment (불화처리에 의한 $CaNi_5$ 수소저장합금의 전극 특성에 관한 연구)

  • 오세진;강성군
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 1998.11a
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    • pp.92-92
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    • 1998
  • 반도체 기술의 경이적인 발전에 힘입이 최근 휴대용 이동통신기기, 노트북 컴퓨터 등 무선전자제품의 폭발적인 수요와 함께 이들의 소형화, 경량화가 요구되어 전원인 2차전지의 경량화, 고용량화, 장수명화의 필요성이 절실해졌다. Ni-MH 전지는 Ni-Cd전지에 비해 에너지밀도가 1.5~2배에 이르고 충방전 cycle이 길며 오염물질이 없어 환경 친화적이라는 장점이 었다. Ni-MH 전지의 성능은 음극재료인 수소저장합금에 의해 좌우되므로 수소저장능력이 크고 내식 성이 우수한 합금개발이 중요하다. $CaNi_5$는 수소저장능력이 크고 매장량이 많아 값이 싸다는 장점이 있지만 KOH 용액에서 내구성이 떨어진다는 단점이 있어 주로 Heat Pump 재료에만 사용이 제한되어왔다. 본 실험에서는 결정 구조의 nanocrystalline 및 amorphous화함으로써 해리압의 변화, 방전용량의 변화 등 새로운 전극 특성을 나타낸다고 보고되고 있는 MG (Mechanical Grinding)방법을 통해 CaNis 합금의 전극특성의 변화를 살펴보았고, 아울러 고상-기상반응에서 표면에 형성된 산화피막을 제거하여 안정한 불화물을 표면에 형성시킴으로써 불순물 가스에 대한 내구성을 높이고 활성화특성을 향상 시킨다고 보고되고있는 불화처리 방법을 이용하여 불화처리 시간을 달리하면서 용액 속에서의 pH의 변화, ICP분석, 전극의 성능 및 표면 특성변화를 충방전 test, SEM 등을 통해 고찰하였다.

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Effects of Fluorides in the Flux Cored Wire on the Oxygen Content of Weld Metal (플럭스 코어드 와이어의 불화물 종류에 따른 용접금속 산소량의 변화)

  • Cha, Joo-hyeon;Bang, Kook-soo
    • Journal of Ocean Engineering and Technology
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    • v.33 no.6
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    • pp.615-619
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    • 2019
  • Various fluorides, i.e., CaF2, Na3AlF6, K2SiF6, MnF3, MgF2, were added to the flux cored wire, and their effects on the oxygen content of the weld metal were investigated. The investigation showed that the oxygen content of weld metal was not influenced by the type of metallic elements in the fluoride; rather, it was influenced by the stability of the arc during welding. While the wire containing MgF2 showed the most stable arc and the least amount of oxygen in the weld metal, the wire containing MnF3 showed the least stable arc and the greatest amount of oxygen. Since the deoxidation of the weld metal was not affected by the deoxidation elements, such as Ca and Mg, it was possible to predict the oxygen content of the weld metal by the equilibrium Si-Mn deoxidation thermodynamic model.