• 제목/요약/키워드: Vacuum arc

검색결과 323건 처리시간 0.019초

Sn 및 Cu를 첨가한 치과 주조용 Co-Cr-Mo계 합금제조 및 용해과정 분석 (Manufactures of dental casting Co-Cr-Mo based alloys in addition to Sn, Cu and analysis of infrared thermal image for melting process of its alloys)

  • 강후원;박영식;황인;이창호;허용;원용관
    • 대한치과기공학회지
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    • 제36권3호
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    • pp.141-147
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    • 2014
  • Purpose: Dental casting #Gr I (Co-25Cr-5Mo-3Sn-1Mn-1Si), #Gr II (Co-25Cr-5Mo-5Cu-1Mn -1Si) and #Gr III (Co-25Cr-5Mo-3Sn-5Cu-1Mn-1Si) master alloys of granule type were manufactured the same as manufacturing processes for dental casting Ni-Cr and Co-Cr-Mo based alloys of ingot type. These alloys were analyzed melting processes with heating time of high frequency induction centrifugal casting machine using infrared thermal image analyzer. Methods: These alloys were manufactured such as; alloy design, the first master alloy manufatured using vacuum arc casting machine, melting metal setting in crucible, melting in VIM, pouring in the mold of bar type, cutting the gate and runner bar and polishing. These alloys were put about 30g/charge in the ceramic crucible of high frequency induction centrifugal casting machine and heat, Infrared thermal image analyzer indicated alloys in the crucible were set and operated. Results: The melting temperatures of these alloys measuring infrared thermal image analyzer were decreased in comparison with remanium$^{(R)}$ GM 800+, vera PDI$^{TM}$, Biosil$^{(R)}$ f, WISIL$^{(R)}$ M type V, Ticonium 2000 alloys of ingot type and vera PDS$^{TM}$(Aabadent, USA), Regalloy alloys of shot type. Conclusion: Co-Cr-Mo based alloy in addition to Sn(#Gr I alloy) were decreased the melting temperature with heating time of high frequency induction centrifugal casting machine using infrared thermal image analyzer.

콘센트 전원 접속구 화재 발생 메커니즘 고찰과 새로운 감식 방법 제시 (Fire Mechanism in Power Connection Points of Outlets and Suggestion of a New Identification Method)

  • 박진영;방선배;은희림;오세혁;이유빈;고영호
    • 한국화재소방학회논문지
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    • 제34권3호
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    • pp.76-84
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    • 2020
  • 대부분의 콘센트 화재는 플러그 핀과 핀받이 주변에서 발생하는 것으로 알려져 있다. 하지만, 플러그 접속점 이외에 콘센트의 전원 접속구에서도 화재가 발생할 수 있다는 것을 간과하면 안 된다. 본 연구에서는, 전원 접속구에 연선이 불완전하게 접속될 때, 발화 가능성을 확인하였다. 실험은 기초실험과 재현실험으로 나누어 진행하였다. 기초실험은 접속구에 체결되는 연선의 가닥 수에 따른 발화 가능성을 확인하고 잔존물의 특징을 파악하였다. 재현실험은 전등, 청소기, 히터 등의 부하를 콘센트에 연결하고 접속구에서의 발화가 화재로 진전되는지 확인하였다. 실험 결과, 접속구에서 발생한 발열과 아크로 인해 화재로 진전되었고, 잔존물인 U-자 고정금구와 클립에서 부분적 손실이 식별되었다. 이에 따라, 연선을 사용한 전기배선이 콘센트에 불완전 접속되었을 때, 화재의 발생 가능성을 증명하였고, 잔존물의 특징으로부터 화재원인을 판정할 수 있다는 것을 확인하였다.

니켈계 초내열합금의 응고 및 용질원소의 편석 거동에 미치는 레늄 및 루테늄 첨가의 영향 (Effect of Re and Ru Addition on the Solidification and Solute Redistribution Behaviors of Ni-Base Superalloys)

  • 서성문;정희원;이재현;유영수;조창용
    • 대한금속재료학회지
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    • 제49권11호
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    • pp.882-892
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    • 2011
  • The influence of rhenium (Re) and ruthenium (Ru) addition on the solidification and solute redistribution behaviors in advanced experimental Ni-base superalloys has been investigated. A series of model alloys with different levels of Re and Ru were designed based on the composition of Ni-6Al-8Ta and were prepared by vacuum arc melting of pure metallic elements. In order to identify the influence of Re and Ru addition on the thermo-physical properties, differential scanning calorimetry analyses were carried out. The results showed that Re addition marginally increases the liquidus temperature of the alloy. However, the ${\gamma}^{\prime}$ solvus was significantly increased at a rate of $8.2^{\circ}C/wt.%$ by the addition of Re. Ru addition, on the other hand, displayed a much weaker effect on the thermo-physical properties or even no effect at all. The microsegregation behavior of solute elements was also quantitatively estimated by an electron probe microanalysis on a sample quenched during directional solidification of primary ${\gamma}$ with the planar solid/liquid interface. It was found that increasing the Re content gradually increases the microsegregation tendency of Re into the dendritic core and ${\gamma}^{\prime}$ forming elements, such as Al and Ta, into the interdendritic area. The strongest effect of Ru addition was found to be Re segregation. Increasing the Ru content up to 6 wt.% significantly alleviated the microsegregation of Re, which resulted in a decrease of Re accumulation in the dendritic core. The influence of Ru on the microstructural stability toward the topologically close-packed phase formation was discussed based on Scheil type calculations with experimentally determined microsegregation results.