• 제목/요약/키워드: plasma arc melting

검색결과 42건 처리시간 0.023초

Characterization and Formation Mechanism of Zr-Cu and Zr-Cu-Al Metallic Glass Thin Film by Sputtering Process

  • Lee, Chang-Hun;Sun, Ju-Hyun;Moon, Kyoung-Il;Shin, Seung-Yong
    • 한국진공학회:학술대회논문집
    • /
    • 한국진공학회 2012년도 제42회 동계 정기 학술대회 초록집
    • /
    • pp.271-272
    • /
    • 2012
  • Bulk Metallic Glasses (BMGs or amorphous alloy) exhibit high strength and good corrosion resistance. Applications of thin films and micro parts of BMGs have been used a lot since its inception in the research of BMGs. However, Application and fabrication of BMGs are limited to make structural materials. Thin films of BMGs which is sputtered on the surface of structural materials by sputtering process is used to improve limits about application of BMGs. In order to investigate the difference of properties between designed alloys and thin films, we identified that thin films deposited on the surface that have the characteristic of the amorphous films and the composition of designed alloys. Zr-Cu (Cu=30, 35, 38, 40, 50 at.%) and Zr-Cu-Al (Al=10 at.% fixed, Cu=26, 30, 34, 38 at.%) alloys were fabricated with Zr (99.7% purity), Cu (99.997% purity), and Al (99.99% purity) as melting 5 times by arc melting method before rods 2mm in diameter was manufactured. In order to analyze GFA (Glass Forming Ability), rods were observed by Optical Microscopy and SEM and $T_g$, $T_x$, ($T_x$ is crystallization temperature and $T_g$ is the glass transition temperature) and Tm were measured by DTA and DSC. Powder was manufactured by Gas Atomizer and target was sintered using powder in large supercooled liquid region ($=T_x-T_g$) by SPS(Spark Plasma Sintering). Amorphous foil was prepared by RSP process with 5 gram alloy button. The composition of the foil and sputtered thin film was analyzed by EDS and EPMA. In the result of DSC curve, binary alloys ($Zr_{62}Cu_{38}$, $Zr_{60}Cu_{40}$, $Zr_{50}Cu_{50}$) and ternary alloys ($Zr_{64}Al_{10}Cu_{26}$, $Zr_{56}Al_{10}Cu_{34}$, $Zr_{52}Al_{10}Cu_{38}$) have $T_g$ except for $Zr_{70}Cu_{30}$ and $Zr_{60}Al_{10}Cu_{30}$. The compositions with $T_g$ made into powders. Figure shows XRD data of thin film showed similar hollow peak.

  • PDF

Mo-Hf-C계 합금의 열처리에 따른 미세조직 변화에 관한 연구 (A Study on the Change of Microstructures by Heat-treatment in Mo-Hf-C Alloys)

  • 윤국한;김형기;이종무;박원구;최주
    • 한국재료학회지
    • /
    • 제3권2호
    • /
    • pp.111-120
    • /
    • 1993
  • 플라즈마 아크 용해에 의해 0.31-1.14at%Hf과 0.08-1.00at%C의 조성을 갖는 Mo시편을 제조하여, 열처리에 따른 미세조직 변화를 광학현미경, AES(Auger Electron Spectroscopy)및 투과전자현미경(TEM)으로 조사하였다. 산소함량이 약 830ppm인 초기분말을 압분체로 성형하여 용해한 결과, 산소함량 약 40-130ppm의 시편으로 제조할 수 있었으며, 이때 Hf및 C의 첨가량이 증가할수록 시편의 결정립은 미세화되었다. Mo-1.14at% Hf-1.00at % C 조성의 시편을 열처리한 결과 130$0^{\circ}C$에서 결정립내의 편상의 ${\beta}$-Mo 탄화물(molybdenum carbide)이 열역학적으로 더욱 안정한 $\alpha$-Mo 탄화물로 변태되기 시작하고, 1400-150$0^{\circ}C$온도 구간에서는 급내에 의해 고용되어 있던 Hf과 C이 반응하여 미량의 Hf탄화물이 석출되었으며, 150$0^{\circ}C$에서는 결정립계에 Hf 탄화물이 편석되었다. 1500-170$0^{\circ}C$에서는 결정립계에 편석된 Hf탄화물이 분해되고 열역학적으로 더욱 안정한 Hf 산화물(Hafnium oxide)이 석출되었으며, 결정립내에도 미세한 Hf 산화물이 석출되었다.

  • PDF