• 제목/요약/키워드: mechanical alloying(MA)

검색결과 128건 처리시간 0.022초

기계적 합금화에 의한 Ni Silicide 분말의 합성 (Synthesis of Ni Silicides by Mechnical Alloying)

  • 변창섭
    • 한국분말재료학회지
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    • 제6권2호
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    • pp.145-151
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    • 1999
  • Nickel silicides ($Ni_5$Si$_2$, Ni$_2$Si and NiSi) have been synthesized by mechanical alloying (MA) of Ni-27.9at.9at%Si, Ni-33.3at% and Ni-50.0at% powder mixtures, respectively. From in situ thermal analysis, eash citical milling period for the formation of the three phases was observed to be 40.2, 34.9 and 57.5 min, at which there was a rapid increase in temperature. This indicates that rapid, self-propagating high-temperature synthesis (SHS) reactions were observed to produce the three phases during room-temperature high-energy ball milling of elemental powders. Each Ni silicide, Ni and Si, however, coexisted for an extended milling time even after the critical milling period. The powders mechanically alloyed after the critical period showed the rapid increase in microhardness. The Hv values were found to be higher than 1000kgf/mm$^2$. The formation of nickel silicides by mechanical alloying and the relevant reaction rates appeared to be influenced by the critical milling period and the heat of formation of the products involved ($Ni_5$Si$_2$$\rightarrow$-43.1kJ/mol.at., Ni$_2$Si$\rightarrow$-47.6kJ/mol.at., NiSi$\rightarrow$-42.4kJ/mol.at).

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기계적 합금화에 의한 나노구조 Fe-Co 합금분말의 제조 및 자성특성 (Fabrication of Nanostructured Fe-Co powders by Mechanical Alloying and Their Magnetic Properties)

  • 정진영
    • 한국분말재료학회지
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    • 제6권1호
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    • pp.27-35
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    • 1999
  • A study was made on the fabrication of nanostructured Fe-Co powders by mechanical alloying and their magnetic properties. Microstrural development during the process of MA was inverstigated by means of X-ray diffraction, differential thermal analyzer, scanning electron microscopy and transmission electron microscopy. The magnetic properties of NS Fe-Co powders were evaluated through the measurements of the saturation magnetization $(M_s)$ as well as the coercivity $(H_c)$. The average grain size calculated from line braodening in XRD peak was about 10nm or less and confirmed by TEM. In this experiment, two different milling methods (cycle opertion and conventional milling) were used. Cycle operation had an advantage over the conventional milling method in that more refined powders can be obtained. Solid state alloying of the components was confirmed from both the change of the saturation magnetization and the change of lattice parameter with Co contentration. Maxium $M_s$ was obtained at the composition of 30at.%Co. Relatively high coercivities of 10~150e were obtained for the compositions investigated, and this seems to be due to the high amount of internal strain introduced during milling.

기계적 합금화에 의한 Ti-37.5at%Si 분말의 합성 및 소결 특성 (The Synthesis of Ti-37.5at%Si Powders by MA and Their Sintering Characteristics)

  • 이상호;변창섭;김동관
    • 한국분말재료학회지
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    • 제8권4호
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    • pp.223-230
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    • 2001
  • Ti-37.5at%Si elemental powder mixtures were mechanically alloyed by a high-energy ball mill, followed by CIP (cold isostatic pressing) and HIP (hot isostatic pressing) for different processing conditions. Only elemental phases (Ti and Si) were observed for the 5 min mechanically alloyed (MA 5 min) powder, but only $Ti_5Si_3$phase was observed for the 30 min mechanically alloyed (MA 30 min) powder. $Ti_5Si_3$phase was observed for the HIPed compact of MA 5 min and 30 min powders at 150 and 190 MPa for 3 hr at $1000^{\circ}C$. For the HIPed compacts, the highest sintered density was obtained to be 99.5% of theoretical density by a HIP step at $1350^{\circ}C$ at 190MPa for 3hr. The hardness values of the HIPed $Ti_5Si_3$compacts at $1350^{\circ}C$ at 150/190 MPa for 3hr were higher than HRC 76. The densification and mechanical property of HIPed $Ti_5Si_3$compacts was found to depend on more HIP temperature than HIP pressure.

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Mo-65.8at%Si 혼합분말의 기계적 합금화에 미치는 밀링매체 재료의 영향 (Effect of Milling Medium Materials on Mechanical Alloying of Mo-65.8at%Si Powder Mixture)

  • 박상보
    • 한국분말재료학회지
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    • 제4권3호
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    • pp.179-187
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    • 1997
  • Milling media of steel and zirconia were used to produce $MoSi_2$ by mechanical alloying (MA) of Mo and Si powders. The effect of milling media on MA of Mo-65.8at%Si powder mixture has been investigated by SEM, XRD, DTh and in-situ thermal analysis. The powders mechanically alloyed by milling medium of steel for 8 hours showed the structure of fine mixture of Mo and Si, and those mechanically alloyed by milling medium of zirconia for longer milling time showed the structure of fine mixture of Mo and Si. The tetragonal $\alpha$-$MoSi_2$ Phase and the tetragonal $Mo_5Si_3$ phase appeared with small Mo peaks in the powders milled by milling medium of steel for 4 and 8 hours. The $\alpha$-$MoSi_2$ phase and the hexagonal $\beta$-$MoSi_2$ phase were formed after longer milling time. The $\alpha$-$MoSi_2$ phase appeared with large Mo peaks in the powders milled by milling medium of zirconia for 4 hours. The phases, $\alpha$-$MoSi_2$ and $\beta$-$MoSi_2$. were formed in the powders milled for longer milling time. DTA and annealing results showed that Mo and Si were transformed into $\alpha$-$MoSi_2$ and $Mo_5Si_3$, while $\beta$-$MoSi_2$ into $\alpha$-$MoSi_2$. In-situ thermal analysis results demonstrated that there were a sudden temperature rise at 212 min and a gradual increase in temperature in case of milling media of steel and zirconia, respectively. The results indicate that MA can be influenced by materials of milling medium which can give either impact energy on powders or thermal energy accumulated in vial.

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기계적 합금화 방법에 의한 질화철 분말의 합성 (Synthesis of iron nitrides powders subjected to mechanical alloying)

  • 이충효
    • 한국결정성장학회지
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    • 제9권5호
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    • pp.516-520
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    • 1999
  • 유형성 볼밀을 사용하여 순수한 철분말 암모니아가스 분위기 중에서 기계적 합금화(MA) 처리를 하였다. 그 결과 질소함량이 23 at% 까지 준안정 질화철 분말을 얻을 수 있었다. 질화철 분말의 생성상은 질소 함량이 14.5 at% N 이하의 경우 bcc과포화 고용체가, 20.8 at% N에서는 고온에서 안정한 비평형 hcp 결정 분말이었다. MA법으로 제조한 Fe-N계 분말의 포화 자화는 질소농도가 증가함에 따라 단조로운 감소를 보였으며 보고된 bct 질화철에서의 포화자화값 증가와 대조적인 결과를 나타냈다. 질소원자 주위의 상세한 를 조사하기 위하여 중성자 회절 실험을 행하였다. 그 결과, 9.5 at% N의 질화철 분말의 경우 질소원자 주위의 철원자의 배위수는 3.9이었으며, 이러한 결정구조해석 결과로부터 질소원자는 철원자로 이루어진 4면체의 중심에 위치하고 있는 것으로 판단되었다.

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Application of Pseud-superplastic PM Process to Ti-Al Intermetallic Compound for MEMS Parts

  • Miyano, Naoki;Kumagai, Yusuke;Yoshimoto, Masayoshi;Nishimura, Yuta;Tanaka, Shigeo;Ameyama, Kei
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part2
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    • pp.1292-1293
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    • 2006
  • A non-equilibrium powder metallurgy processing such as an MA/SPS (Mechanical Alloying / Spark Plasma Sintering) process is examined in a Ti-48moll%Al. TiAl intermetallic compound is a potential light-weight/high-temperature structural material. One of the major problems, however, limiting the practical use of the material is its poor workability. From this point, the powder metallurgy (PM) processing route has been attractive alternative of the conventional processing for such material The MA/SPS process is able to apply to a LIGA process. Optimization of the pseudo-superplasticity enables to fabricate micro-parts made of fine grained ceramics composites of TiAl by the LIGA process.

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기계적합금화법을 이용한 고온 고강도 Al-Nb-Zr 합금 제조 및 특성 평가 (Elevation of Properties of Al-Nb-Ar alloys Fabricated by Mechanical Alloying Metho)

  • 권대환;안인섭;김상식;이광민;박민우
    • 한국재료학회지
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    • 제10권7호
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    • pp.499-504
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    • 2000
  • 최근에 고온용 항공기 구조 재료로 Ti, Zr, V, Nb 및 Ta 등의 천이금속을 첨가한 Al 합금계 제조와 특성에 관한 연구가 되어져 왔다. 본 연구에서는 Al-Nb합금에 Zr을 첨가하여 상형성거동을 연구하였다. Al-1.3at.%(Nb+Zr) 합금에서 Nb와 Zr의 원자비를 1:3, 1:1 및 3:1로 하여 기계적합금화하였다. 기계적합금화하는 동안 Al-Nb-Zr의 형태변화와 미세구조를 SEM, XRD 및 TEM으로 관찰하였다. X-선 회절 시험에 의하여 $Nb_2Al$$Al_3Zr_4$가 생성됨을 확인하였다. $500^{\circ}C$에서 1시간동안의 진공열처리에 의하여 $Al_3Zr$, $Al_3Zr_4$ 등의 금속간화합물을 형성하였다. 30시간동안 기계적 합금화한 분말을 열처리하여 TEM으로 관찰한 결과 100nm 이하의 금속간화합물 입자들을 관찰하였다.

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기계적 합금화한 Al-Ti 시료에서 미소상 피이크의 소멸현상과 ${Al_3}Ti$ 형성에 관한 연구 (The Study on Peak Disappearance of Minor Phase and Formation of ${Al_3}Ti$ in Mechanically Alloyed Al-Ti Samples)

  • 김진곤;김혜성;김병희
    • 한국재료학회지
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    • 제11권12호
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    • pp.1035-1041
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    • 2001
  • The refining process and solubility of Ti in Al matrix during mechanical alloying (MA) were investigated by using X-ray diffraction (XRD), transmission electron microscopy (TEM) as functions of alloy composition, milling time and ball to powder ratio (BPR). Mechanical alloyed samples were annealed for investigating their stability and the formation behavior of$Al_3Ti$in the temperature range from$200{\circ}C$to$600{\circ}C$. It is observed from present experimental that disappearance of Ti peaks in mechanically alloyed Al-10wt%Ti is not simply attributable to the dissolution of Ti into Al, but associated mainly with extreme refining and/or heavy straining of Ti particles The annealing of the mechanically alloyed Al-Ti powders show differences in aluminide formation behavior when Ti content in Al is equal to or less than l0wt% and higher than l5wt%Ti. When Ti-content in Al is equal to or less than l0wt%, the MA powders transform directly to a global equilibrium state forming $DO_{22}- type\;Al_3$Ti above$400{\circ}C$. In the Al-Ti samples with equal to or higher than l5wt%Ti, transitional phases of cubic$Al_3Ti$and tetragonal $Al_{24}Ti_8$ are formed above$400{\circ}C$. They are stable only below$500{\circ}C$, and, $DO_{22}-type\;Al_3Ti$ becomes dominant aluminide at temperature higher than$ 600{\circ}C$.

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Graphite-Ni계 분말의 제조 및 용사 코팅 특성에 미치는 공정변수의 영향 (Fabrication of Graphite-Ni Composite Powders and Effect of Thermal Spray Coating Parameters on Mechanical and Microstructural Properties)

  • 권준철;최문관;김일호;홍태환;권순용;이영근;박순옥;어순철
    • 한국분말재료학회지
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    • 제12권2호
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    • pp.136-145
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    • 2005
  • Graphite-Ni composite powders were synthesized by mechanical alloying(MA) and spray drying(SD). Fabricated powders as well as commercial graphite-Ni powders were thermally sprayed on mild steel substrates using high velocity oxygen fuel (HVOF) thermal spray process and flame thermal spray process. The effects of several process parameters on related properties in thermally sprayed coatings have been investigated and correlated with microstructures in this study. The results indicated that the desired properties can be obtained when commercial powders were applied using HVOF process, while coating properties in case of MA powder application were inferior to those in HVOF process in so far. However, it is suggested that property enhancement can be obtained if the fraction of hexagonal graphite phase can be increased in mechanically alloyed powders.

기계적 합금방법으로 제조한 극초미세 조직의 W-Cu 복합분말의 금속사출성형 연구 (Metal Injection Molding of Nanostructured W-Cu Composite Powders Prepared by Mechanical Alloying)

  • 김진천
    • 한국분말재료학회지
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    • 제5권2호
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    • pp.145-153
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    • 1998
  • W-Cu alloy is attractive to thermal managing materials in microelectronic devices because of its good thermal properties. The metal injection molding (MIM) of W-Cu systems can satisfy the need for mass production of the complex shaped W-Cu parts in semiconductor devices. In this study, the application of MIM process of the mechanically alloyed (MA) W-Cu composite powders, which had higher sinterability were investigated. The MA W-Cu powders and reduction treated (RT) powders were injected by using of the multicomponent binder system. The multi-stage debinding cycles were adopted in $N_2$ and $H_2$ atmosphere. The isostatic repressing treatment was carried out in order to improve the relative density of brown parts. The brown part of RT W-Cu composite powder sintered at 110$0^{\circ}C$ had shown the higher sinterability compared to that of MA powder. The relative sintered density of all specimens increased to 96% by sintering at 120$0^{\circ}C$ for 1 hour. The relationship between green density and the sintering behavior of MA W-Cu composite powder was analyzed and discussed on the basis of the nanostructured characteristics of the MA W-Cu composite powder.

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