• Title/Summary/Keyword: Mechanical alloying (MA)

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Phase Transformation in Al-4at.%Zr Alloy during Mechanical Alloying and Heat-treatment Processes (Al-4at.%Zr합금의 기계적합금화 공정과 열처리과정에서 발생하는 상변화거동)

  • Park, Jae-Pil;Kim, Il-Ho;Kwun, S.I.
    • Journal of Powder Materials
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    • v.12 no.1
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    • pp.36-42
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    • 2005
  • Four different mechanical alloying(MA) processes were employed to fabricate very fine intermetallic compound $Al_3Zr$ particles dispersed Al composite materials(MMC) with Al-4at.%Zr composition. Phase transformations including phase stability during MA and heat treatment processes were investigated. Part of Zr atoms were dissolved into Al matrix and part of them reacted with hydrogen produced by decomposition of PCA(methanol) to form hydride $ZrH_2$ during first MA process. These $ZrH_2$ hydrides disappeared when alloy powders were heat treated at $500^{\circC}$. Stable $Al_3Zr$ dispersoids with $DO_23$ structure were formed by heat treating the mechanically alloyed powders at $400^{\circC}$. On the other hand, metastable $Al_3Zr$dispersoids with $L1_2$ structure were formed during first MA of powers with Al-25at.%Zr composition. These metastable $Al_3Zr$ dispersoids transformed to stable $Al_3Zr$ with $DO_23$ structure when heat treated above $450^{\circC}$.

Battery Electrode Characteristics of Si-based Composite by Mechanical Alloying Method (기계적 합금화법에 의한 실리콘계 복합물질의 전지전극특성)

  • Lee, Churl-Kyoung;Lee, Jong-Ho;Lee, Sang-Woo
    • Journal of Powder Materials
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    • v.16 no.6
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    • pp.389-395
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    • 2009
  • A Si-CuO-graphite composite was prepared by a mechanical alloying (MA) method. The Si-CuO composite has a mixture structure, where CuO is homogeneously dispersed in Si. Also, $Cu_2O$ and $Cu_3Si$ phases were formed during MA and heat treatment. Graphite with the Si-CuO composite was mixed in the same mill for 30 minutes with weight ratio of Si-CuO composite and graphite as 1:1. The Si-CuO composite was homogeneously covered with graphite. SiC phase was not formed. Electrochemical tests of the composite have been investigated, and the first charge and discharge capacities of the material were about 870mAh/g and 660mAh/g, respectively. Those values are about 76% of the first cycle efficiency. The cycle life of the composite showed that the initial discharge capacity of 660 mAh/g could be maintained up to 92% after 20 cycles.

Formation and Electronic Properties of the Amorphous Cu-Ta Alloy Powders Subjected to Mechanical Alloying (기계적 합금화에 의한 비정질 Cu-Ta 분말의 제조 및 전자물성)

  • Lee, Chung-Hyo;Asahina, Tadashi;Mizutani, Uichiro
    • Korean Journal of Materials Research
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    • v.4 no.6
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    • pp.620-625
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    • 1994
  • We recently showed from the neutron diffraction and extended X-ray absorption fine structure studies the structural evidence for the formation of an amorphous phase in immiscible Cu-Ta system subjected to mechanical alloying. In a system with a positive heat of mixing like Cu-Ta, we consider it necessary to confirm the formation of an amorphous phase not only from the structural studies but also from a change in the electronic properties. We show the electronic evidence for the formation of the chemical bonding between the unlike atoms Cu and Ta for the 120 h-milling sample through changes in superconducting transition temperature and X-ray photoemission spectroscopy valence band structure.

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Synthesis and characterization of soft magnetic composite in Fe2O3-Mg system by mechanical alloying (기계적합금화에 의한 Fe2O3-Mg계 연자성 콤포지트의 합성 및 평가)

  • Lee, Chung-Hyo
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.25 no.6
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    • pp.245-251
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    • 2015
  • We have applied mechanical alloying (MA) to produce soft magnetic composite material using a mixture of elemental $Fe_2O_3$-Mg powders. An optimal milling and heat treatment conditions to obtain soft magnetic ${\alpha}$-Fe/MgO composite with fine microstructure were investigated by X-ray diffraction, differential scanning calorimetry (DSC) and vibrating sample magnetometer (VSM) measurement. It is found that ${\alpha}$-Fe/MgO composite powders in which MgO is dispersed in ${\alpha}$-Fe matrix are obtained by MA of $Fe_2O_3$ with Mg for 30 min. The saturation magnetization of ball-milled powders increases with increasing milling time and reaches to a maximum value of 69.5 emu/g after 5 h MA. The magnetic hardening due to the reduction of the ${\alpha}$-Fe grain size by MA was also observed. Densification of the MA powders was performed in a spark plasma sintering (SPS) machine at $800{\sim}1000^{\circ}C$ under 60 MPa. X-ray diffraction result shows that the average grain size of ${\alpha}$-Fe in ${\alpha}$-Fe/MgO nanocomposite sintered at $800^{\circ}C$ is in the range of 110 nm.

MoN-Cu Thin Films Deposited by Magnetron Sputtering with Single Alloying Target (단일 합금타겟을 이용한 마크네트론 스퍼터링 공정으로 증착된 MoN-Cu 박막)

  • Lee, Han-Chan;Moon, Kyoung-Il;Shin, Paik-Kyun
    • Journal of the Korean institute of surface engineering
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    • v.49 no.4
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    • pp.368-375
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    • 2016
  • MoN-Cu thin films were prepared to achieve appropriate properties of high hardness and low friction coefficient, which could be applied to automobile engine parts for reducing energy consumption as well as solving wear problems. Composite thin films of MoN-Cu have been deposited by various processes using multiple targets such as Mo and Cu. However, those deposition with multiple targets revealed demerits such as difficulties in exact control of composition and homogeneous deposition. This study is aiming for suggesting an appropriate process to solve those problems. A single alloying target of Mo-Cu (10 at%) was prepared by powder metallurgy methods of mechanical alloying (MA) and spar plasma sintering (SPS). Thin film of MoN-Cu was then deposited by magnetron sputtering using the single alloying target of Mo-Cu (10 at%). Properties of the resulting MoN-Cu thin film were examined and compared to those of MoN-Cu thin films prepared with double targets of Mo and Cu.

Detail analysis of the peak disappearance of minor phase in mechanically alloyed samples(II) (기계적 합금화 시료에서 미소상 피이크의 소멸현상 해석(II))

  • Kim, Hye-Sung
    • Journal of the Korean Society of Industry Convergence
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    • v.4 no.1
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    • pp.27-34
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    • 2001
  • Refining of powder particles and their dissolution into the Al matrix during mechanical alloying(MA) were investigated by using X-ray diffraction(XRD) transmission electron microscopy (TEM) functions of alloy composition, milling time and ball to powder ratio(BPR). It is found that Ti particles less than 20nm are observed in a dark field image of mechanically alloyed Al-10wt%Ti whose XHD pattern exhibits no Ti peak. The observed change of lattice constant of AI indicates that about 1 wt%Ti can he solved in Al after MA for a long time, independent of alloy composition, milling time and BPR, suggesting that most of Ti particles arc retained in the Al matrix. It is concluded that the disappearance of XRD 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.

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Synthesis and Microstructural Characterization of Cu-C Composite Metal Powder by Mechanical Alloying (기계적 합금화 방법에 의한 Cu-C계 복합금속분말의 제조 및 미세구조 제어 특성)

  • 이광민
    • Journal of Powder Materials
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    • v.4 no.1
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    • pp.42-47
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    • 1997
  • It was investigated whether mechanical alloying (MA) processing could be more effective to the formation of metallic composite powder in Cu-C system. Elemental powder mixtures of Cu-70vo1.%C were mechanically alloyed with an attritor in an argon atmosphere and microstructural evolution was examined by X-ray diffraction analysis, scanning electron microscopy and transmission electron microscopy. It has been found that even with the high volume fraction of immiscible graphite in Cu-C system, the refinement with a few ten nanometer size as well as the highly uniform distribution of copper phases have been achieved by the MA processing.

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Synthesis of Cathode Material-Nickel Sulfides by Mechanical Alloying for Sodium Batteries

  • Liu, Xiaojing;Ahn, Hyo-Jun;Ahn, In-Shup
    • Journal of Powder Materials
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    • v.19 no.3
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    • pp.182-188
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    • 2012
  • In this study, fine cathode materials $Ni_3S_2$ and $NiS_2$ were synthesized using the simple, convenient process of mechanical alloying (MA). In order to improve the cell properties, wet milling processes were conducted using low-energy ball milling to decrease the mean particle size of both materials. The cells of Na/$Ni_3S_2$ and Na/$NiS_2$ show a high initial discharge capacity of 425 mAh/g and 577 mAh/g respectively using wet milled powder particles, which is much larger than commercial ones, providing some potential as new cathode materials for rechargeable sodium-ion batteries.

The synthesis of $Nb_3Sn$ alloy powders by mechanical alloying (기계적 합금화 방법에 의한 $Nb_3Sn$합금 제조)

  • Lee, Sung-Man
    • Proceedings of the KIEE Conference
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    • 1996.11a
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    • pp.464-467
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    • 1996
  • The microstructural evolution during mechanical alloying of Nb and Sn powders, of average composition Nb3Sn, has been investigated by X-ray diffraction(XRD) and scanning electron microscopy(SEM). Observations by SEM showed a progressive change of milling time. From the XRD studies, the structural development with milling time depends on the ball size for a given powder/ball ratio. Using a larger ball of 9.5mm diameter, the elemental powders initially alloy mechanically to form an A15 structure phase, and then amorphised with continued milling. However, in case of milling with a smaller ball of 3.968mm diameter, an amorphous phase is first formed. These results can be understood by considering the dependence of the milling energy on the ball size. The homogeneous stoichiometric $Nb_3Sn$ phase could be easily obtained by heat treatment of a supersaturated solid solution produced by MA. Heat treatment of an amorphous phase formed by MA resulted in the mixture of the $Nb_3Sn$ and $Nb_6Sn_5$ phases.

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Phase Formation Behavior of Mechanical Alloyed Al-25at% Nb Powder Mixtures (기계적 합금화에 의한 Al-25at%Nb 혼합분말의 상형성 거동)

  • 이상호;김동관;이진형
    • Korean Journal of Materials Research
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    • v.5 no.8
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    • pp.997-1004
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    • 1995
  • Intermetallic compound NbAl₃and amorphous phases were synthesized by mechanical alloying of elemental powder mixtures of niobium and aluminum. The composition of the powder mixtures was Nb-45wt%Al(75at%Al). The mechanical alloying was performed with a high energy SPEX 8000 mixer/mill up to 72 hrs. The resulting powders were analyzed by XRD, DTA, SEM and TEM. The mechanically alloyed powders exhibited lamellar structures in the early stage. And the elements of Nb and Al were homogeneously distributed over the Powder when a steady state was reached. An intermetallic compound, NbAl₃, was formed by mechanical alloying for 4 hrs. The mechanically alloyed powders exhibited a large exotherm around 600℃, corresponding to formation of stable NbAl₃and stress relief.

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