• 제목/요약/키워드: Planetary milling

검색결과 91건 처리시간 0.022초

Fabrication of Bi-2212/$SrSO_4$ Composite Superconductors by Melting Powder Mixtures

  • Kim, Kyu-Tae;Jang, Seok-Hern;Lim, Jun-Hyung;Park, Eui-Cheol;Joo, Jin-Ho;Lee, Hoo-Jeong;Hong, Gye-Won;Kim, Chan-Joong;Kim, Hye-Rim;Hyun, Ok-Bae
    • 한국분말야금학회:학술대회논문집
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    • 한국분말야금학회 2006년도 Extended Abstracts of 2006 POWDER METALLURGY World Congress Part2
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    • pp.1245-1246
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    • 2006
  • We fabricated Bi-2212/$SrSO_4$ composite superconductors and evaluated the effects of the powder mixing method and melting temperature on their microstructure and superconducting properties. The Bi-2212 powders were mixed with $SrSO_4$ by hand-mixing (HM) and planetary ball milling (PBM) and then the powder mixtures were melted at $1100^{\circ}C{\sim}1200^{\circ}C$, solidified, and annealed. We found that the powder mixture prepared by PBM was finer and more homogeneously mixed than that prepared by HM, resulting in more homogeneous microstructure and smaller $SrSO_4$ and second phases after annealing.

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Ni5Y 합금상이 형성된 Ni계 산화물 분산강화 아토마이징 분말의 밀링 거동 분석 (Analysis on Milling Behavior of Oxide Dispersion Strengthened Ni-based Atomizing Powder with Ni5Y Intermetallic Phase)

  • 박천웅;변종민;최원준;김영도
    • 한국분말재료학회지
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    • 제26권2호
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    • pp.101-106
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    • 2019
  • Ni-based oxide dispersion strengthened (ODS) alloys have a higher usable temperature and better high-temperature mechanical properties than conventional superalloys. They are therefore being explored for applications in various fields such as those of aerospace and gas turbines. In general, ODS alloys are manufactured from alloy powders by mechanical alloying of element powders. However, our research team produces alloy powders in which the $Ni_5Y$ intermetallic phase is formed by an atomizing process. In this study, mechanical alloying was performed using a planetary mill to analyze the milling behavior of Ni-based oxide dispersions strengthened alloy powder in which the $Ni_5Y$ is the intermetallic phase. As the milling time increased, the $Ni_5Y$ intermetallic phase was refined. These results are confirmed by SEM and EPMA analysis on microstructure. In addition, it is confirmed that as the milling increased, the mechanical properties of Ni-based ODS alloy powder improve due to grain refinement by plastic deformation.

유성볼밀링으로 제조한 2성분 정제의 인장강도 변화 (Tensile Strength Variation of Binary Tablets Produced by Planetary Ball Milling)

  • 심철호
    • Journal of Pharmaceutical Investigation
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    • 제38권1호
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    • pp.1-8
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    • 2008
  • Planetary ball mill was used to decrease and control the particle size of excipients. The effects of the weight of sample and the revolution number of mill, and grinding time on the particle size of the ground sample were analyzed by response surface methodology. The optimum conditions for the milling of microcrystalline cellulose were 38.82 g of the weight of sample and 259 rpm of the revolution number of mill, and 45 minutes of grinding time. The predicted value of the particle size at the these conditions was $19.02{\mu}m$, of which the experimental value at the similar conditions was $18.68{\mu}m$. The tensile strength of tablets of single-component powders, such as microcrystalline cellulose, hydroxypropylmethyl cellulose and starch, binary mixtures and ground binary mixtures of these powder were measured at various relative densities. It was found that the logarithm of the tensile strength of the tablets was proportional to the relative density. A simple model, based upon Ryshkewitch-Duckworth equation that was originally proposed for porous materials, has been developed in order to predict the relationship between the tensile strength and relative density of ground binary tablets based on the properties of the constituent single-component powders. The validity of the model has been verified with experimental results for ground binary mixtures. It has demonstrated that this model can well predict the tensile strength of ground binary mixtures based upon the properties of single-component powders, such as true density, and the compositions. When the tensile strength of the mixture of microcrystalline cellulose hydroxypropylmethyl cellulose (90:10) and the ground mixture of them were compared, the tensile strength of the ground mixture decreased widely from 45.3 to 5.6% compared to the mixture in case the relative density of tablets was in the range of $0.7{\sim}0.9$. When the tensile strength of the mixture of microcrystalline cellulose starch (80:20) and the ground mixture of them were compared, the tensile strength of the ground mixture decreased widely from 31.0 to 11.6% compared to the mixture in case the relative density of tablets was in the range of $0.7{\sim}0.9$.

Gas Absorption and Release Properties of Zn(BH4)2 and MgH2-Zn(BH4)2-Ni-Ti-Fe Alloy

  • Kwak, Young Jun;Kwon, Sung Nam;Song, Myoung Youp
    • 한국재료학회지
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    • 제25권1호
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    • pp.43-47
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    • 2015
  • $Zn(BH_4)_2$ was prepared by milling $ZnCl_2$ and $NaBH_4$ in a planetary ball mill in an Ar atmosphere, and XRD analysis, SEM observation, FT-IR analysis, DTA, and TGA were performed for synthesized $Zn(BH_4)_2$ samples. 90 wt% $MgH_2$+1.67 wt% $Zn(BH_4)_2(+NaCl)$+5 wt% Ni+1.67 wt% Ti+1.67 wt% Fe (named $90MgH_2+1.67Zn(BH_4)_2(+NaCl)$+5Ni+1.67Ti+1.67Fe) samples were also prepared by milling in a planetary ball mill in an $H_2$ atmosphere. The gas absorption and release properties of the $Zn(BH_4)_2(+NaCl)$ and $90MgH_2+1.67Zn(BH_4)_2(+NaCl)_2(+NaCl)$+5Ni+1.67Ti+1.67Fe samples were investigated. An FT-IR analysis showed that $Zn(BH_4)_2$ formed in the $Zn(BH_4)_2(+NaCl)$ samples prepared by milling $ZnCl_2$ and $NaBH_4$. At the first cycle at $320^{\circ}C$, $90MgH_2+1.67Zn(BH_4)_2(+NaCl)$+5Ni+1.67Ti+1.67Fe absorbed 2.95 wt% H for 2.5 min and 4.93 wt% H for 60 min under 12 bar $H_2$, and released 1.46 wt% H for 10 min and 4.57 wt% H for 60 min under 1.0 bar $H_2$.

화력발전소 매립 석탄재의 분쇄가 지오폴리머의 강도에 미치는 영향 (Grinding Effects of Coal-Fired Pond Ash on Compressive Strength of Geopolymers)

  • 이수정;강남희;전철민;주형태
    • 자원리싸이클링
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    • 제23권6호
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    • pp.3-11
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    • 2014
  • 화력발전소 바닥재는 입자크기의 범위가 넓고 미연탄소 함량이 높아 지오폴리머의 원료로 잘 사용되지 않는다. 지오폴리머의 원료로서 바닥재가 대부분인 매립 석탄재를 대량 재활용하기 위한 가공공정을 평가하기 위하여 로드밀과 유성볼밀로 분쇄하여 지오폴리머의 강도에 미치는 영향을 알아보았다. 기계적 분쇄가 바닥재의 비정질 함량 변화에 미치는 영향은 거의 없었다. 이는 석탄재의 주요 결정질 상인 뮬라이트가 침상으로 존재하는데, 침상의 뮬라이트는 높은 강도와 인성을 갖기 때문에 비정질화되기 어렵기 때문으로 판단된다. 그러나 분쇄 효과는 입자크기를 감소시켰으며 매립 석탄재 입자의 크기 분포를 보다 균일하게 하여 알칼리와의 반응성을 증가시켰다. 로드밀은 상대적으로 입자크기의 범위를 좁게 만들었지만 입자크기 감소효과는 적었다. 그럼에도 불구하고 로드밀의 분쇄는 최대 약 37%의 압축강도를 증가시켰으며, 이는 유성볼밀의 효과와 동일하였다. 로드밀 분쇄는 매립 석탄재의 반응성을 증가시켜 지오폴리머의 원료로 대량 재활용하기에 적합한 공정이다.

기계적 밀링 공정에 의해 제조된 Al-B4C 복합분말의 밀링 거동 연구 (Milling Behaviors of Al-B4C Composite Powders Fabricated by Mechanical Milling Process)

  • 홍성모;박진주;박은광;이민구;이창규;김주명;이진규
    • 한국분말재료학회지
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    • 제19권4호
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    • pp.291-296
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    • 2012
  • In the present work, Al-$B_4C$ composite powders were fabricated using a mechanical milling process and its milling behaviors and mechanical properties as functions of $B_4C$ sizes ( $100{\mu}m$, 500 nm and 50 nm) and concentrations (1, 3 and 10 wt.%) were investigated. For achieving it, composite powders and their compacts were fabricated using a planetary ball mill machine and magnetic pulse compaction technology. Al-$B_4C$ composite powders represent the most uniform dispersion at a milling speed of 200 rpm and a milling time of 240 minutes. Also, the smaller $B_4C$ particles were presented, the more excellent compositing characteristics are exhibited. In particular, in the case of the 50 nm $B_4C$ added compact, it showed the highest values of compaction density and hardness compared with the conditions of $100{\mu}m$ and 500 nm additions, leading to the enhancement its mechanical properties.

복합 밀링 공정으로 제조된 산화물 분산 강화 강의 미세조직 및 고온 기계적 특성 (Microstructure and High Temperature Mechanical Properties of Oxide Dispersion Strengthened Steels Manufactured by Combination Milling Process)

  • 이정욱;김영균;김정한;김휘준;이기안
    • 한국분말재료학회지
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    • 제28권5호
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    • pp.389-395
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    • 2021
  • Oxide dispersion-strengthened (ODS) steel has excellent high-temperature properties, corrosion resistance, and oxidation resistance, and is expected to be applicable in various fields. Recently, various studies on mechanical alloying (MA) have been conducted for the dispersion of oxide particles in ODS steel with a high number density. In this study, ODS steel is manufactured by introducing a complex milling process in which planetary ball milling, cryogenic ball milling, and drum ball milling are sequentially performed, and the microstructure and high-temperature mechanical properties of the ODS steel are investigated. The microstructure observation revealed that the structure is stretched in the extrusion direction, even after the heat treatment. In addition, transmission electron microscopy (TEM) analysis confirmed the presence of oxide particles in the range of 5 to 10 nm. As a result of the room-temperature and high-temperature compression tests, the yield strengths were measured as 1430, 1388, 418, and 163 MPa at 25, 500, 700, and 900℃, respectively. Based on these results, the correlation between the microstructure and mechanical properties of ODS steel manufactured using the composite milling process is also discussed.

기계적 합금화 공정에 의한 Hf계 비정질 분말의 미세변형거동 관찰 (Micro-deformation behavior of Brittle Hf-based Metallic Glass during Mechanical Milling)

  • 김송이;이아영;차은지;권도훈;홍성욱;이민우;김휘준;이민하
    • 한국분말재료학회지
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    • 제25권3호
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    • pp.246-250
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    • 2018
  • In this study, we investigate the deformation behavior of $Hf_{44.5}Cu_{27}Ni_{13.5}Nb_5Al_{10}$ metallic glass powder under repeated compressive strain during mechanical milling. High-density (11.0 g/cc) Hf-based metallic glass powders are prepared using a gas atomization process. The relationship between the mechanical alloying time and microstructural change under phase transformation is evaluated for crystallization of the amorphous phase. Planetary mechanical milling is performed for 0, 40, or 90 h at 100 rpm. The amorphous structure of the Hf-based metallic glass powders during mechanical milling is analyzed using differential scanning calorimetry (DSC) and X-ray diffraction (XRD). Microstructural analysis of the Hf-based metallic glass powder deformed using mechanical milling reveals a layered structure with vein patterns at the fracture surface, which is observed in the fracture of bulk metallic glasses. We also study the crystallization behavior and the phase and microstructure transformations under isothermal heat treatment of the Hf-based metallic glass.

탄산(炭酸)세륨으로부터 나노크기 산화(酸化)세륨 제조연구(製造硏究) (Preparation of Nano Size Cerium Oxide from Cerium Carbonate)

  • 김성돈;김철주;윤호성
    • 자원리싸이클링
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    • 제18권6호
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    • pp.24-29
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    • 2009
  • 나노크기의 산화세륨 분말을 제조하기 위해서는 출발물질로 탄산세륨[$Ce_2(CO_3)3{\cdot}XH_2O$]이 널리 사용되고 있는데, 탄산세륨은 소성을 통하여 탄산기체와 수증기를 방출하면서 더욱 작은 입자들로 쪼개진 다공성 구조의 산화세륨이 형성되며 이러한 다공성의 산화세륨을 분쇄함으로서 나노크기의 산화세륨을 얻을 수 있다. 본 연구에서는 염화세륨용액으로부터 중탄산암모늄을 첨가하여 제조된 탄산세륨의 소성온도, 분쇄시간, 유성밀의 회전속도, 분산제 첨가량 및 장입된 분쇄 볼 크기 등의 변화에 따라 얻어지는 산화세륨의 평균 입자크기 분석을 통하여 탄산세륨으로부터 나노크기의 산화세륨 제조공정 특성에 대하여 알아보았으며, 소성온도 $700^{\circ}C$, 분쇄시간 5시간 조건에서 평균 입자크기 160 nm의 산화세륨 분말을 제조할 수 있었다.

Abrasive-reaction Interactions for Nano-composite Structures

  • T., Ketegenov;O., Tyumentseva;D., kasymbecova;N., Korobova;Z., Katranova;F., Urakaev
    • 동굴
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    • 제71호
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    • pp.13-17
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    • 2006
  • New methods of nano sized material and composite coating preparations have been considered on the base of mathematical model of abrasion reaction interaction of milling and grinding bodies in planetary centrifugal mill. The essence of the method is the abrasive and oxidative wear of the milling bodies and amorphous (better inert) additives. Interactions between them has been supplied the necessary impulse of pressure and temperature on the impact frictional contacts and promoted chemical processes. The offered method can find application for such processing as sintering and geological minerals opening.