• 제목/요약/키워드: Mechanochemical processing

검색결과 20건 처리시간 0.029초

Fabrication of SiC-TiC Composites via Mechanochemical Synthesis

  • Park, Heon-Jin;Lee, Ki-Min;Kim, Hyung-Jong;Lee, June-Gunn
    • 한국세라믹학회지
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    • 제38권4호
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    • pp.314-318
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    • 2001
  • SiC-TiC composites have been fabricated by using a mechanochemical processing of a mixture of Si, Ti, and C at room temperature and subsequent hot pressing. TiC powders have been obtained by the mechanochemical processing of a mixture of Ti and C whereas SiC powders has not been obtained from a mixture of Si and C. By using the exothermic reaction between Ti and C, SiC-TiC powder could be obtained from the mixture of Si, Ti, and C using the mechanochemical processing for more than 12h. The X-ray diffraction analysis has shown that the powder subjected to the mechanochemical processing consisted of the particles having crystallite size below 10nm. Fully densified SiC-TiC composites have been obtained by hot-pressing of the powder at 1850$\^{C}$ for 3h and it has shown comparable mechanical properties to those of the SiC-TiC composites prepared from the commercially available SiC and TiC powders. Flexural strength of 560 MPa and fracture toughness of 4.8 MP$.$am$\_$1/2/ have been shown for the SiC-TiC composites with composition corresponding to 0.75:0.25:1 mole ratio of Si:Ti:C.

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Application of Mechanochemical Processing for Preparation of Si3N4-based Powder Mixtures

  • Sopicka-Lizer, Malgorzata;Pawlik, Tomasz
    • 한국세라믹학회지
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    • 제49권4호
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    • pp.337-341
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    • 2012
  • Mechanochemical processing (MCP) involves several high-energy collisions of powder particles with the milling media and results in the increased reactivity/sinterability of powder. The present paper shows results of mechanochemical processing (MCP) of silicon nitride powder mixture with the relevant sintering additives. The effects of MCP were studied by structural changes of powder particles themselves as well as by the resulting sintering/densification ability. It has been found that MCP significantly enhances reactivity and sinterability of the resultant material: silicon nitride ceramics could be pressureless sintered at $1500^{\circ}C$. Nevertheless, a degree of a silicon nitride crystal lattice and powder particle destruction (amorphization) as detected by XRD studies, is limited by the specific threshold. If that value is crossed then particle's surface damage effects are prevailing thus severe evaporation overdominates mass transport at elevated temperature. It is discussed that the cross-solid interaction between particles of various chemical composition, triggered by many different factors during mechanochemical processing, including a short-range diffusion in silicon nitride particles after collisions with other types of particles plays more important role in enhanced reactivity of tested compositions than amorphization of the crystal lattice itself. Controlled deagglomeration of $Si_3N_4$ particles during the course of high-energy milling was also considered.

메카노케미컬 방식에 의한 BMN 세라믹 합성 (Mechanochemical Synthesis of $Ba(Mg_{1/3}Nb_{2/3})O_{3}$ Ceramics)

  • 조정호;조종래;김강언;정수태;조상희
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 추계학술대회 논문집
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    • pp.208-211
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    • 2000
  • Ba(Mg$_{1}$3/$Nb_{2/3}$)O$_3$ powders were synthesised from mechanochemically treated mixtures of Ba(OH)$_2$. 8$H_2O$, MgO and Nb$_2$O$_{5}$. Perovskite BMN powder of nanosized particles was successfully synthesized by using mechanochemical methods. Density and dielectric constant of samples with mechanochemical methods showed higher values than those of conventional processing.ng.

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기계화학적 반응을 고려한 단결정 실리콘과 비정질 보로실리케이트의 나노 변형 거동에 관한 연구 (A Study on the Nano-Deformation Behaviors of Single Crystal Silicon and Amorphous Borosilicate Considering the Mechanochemical Reaction)

  • 윤성원;신용래;강충길
    • 소성∙가공
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    • 제12권7호
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    • pp.623-630
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    • 2003
  • Nanomachining process, static nanoplowing, is one of the most promising lithographic technologies in terms of the low cost of operation and variety of workable materials. In nanomachining process, chemical effects are more dominant factor compared with those by physical deformation or fracture. For example, during the nanoscratch on a silicon surface in the atmosphere, micro protuberances are formed due to the mechanochemical reaction between diamond tip and the surfaces. On the contrary, in case of chemically stable materials, such as ceramic or glass, surface protuberances are not formed. The purpose of this study is to understand effects of the mechanochemical reaction between tip and surfaces on deformation behaviors of hard-brittle materials. Nanometerscale elasoplastic deformation behavior of single crystal silicon (100) was characterized with micro protuberance phenomena, and compared with that of borosilicate (Pyrex glass 7740). In addition, effects of the silicon protuberances on nanoscratch test results were discussed.

Mechanochemical Processing(MP)에 의한 Cement-fly Ash 계 Mortar의 제조 (Fabrication of Cement-fly Ash Mortar by Using Mechanochemical Processing(MP))

  • 이형직;구자훈;유인상;송두규;정해경;권혁병;윤상옥;이형복;이홍림
    • 한국세라믹학회지
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    • 제39권2호
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    • pp.126-134
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    • 2002
  • Mechanochemical Processing(MP)을 거친 Cement(MPC) 또는 Fly Ash(MPFA)를 사용하여 fly ash 다량 혼화 고강도 mortar의 제조를 위한 연구를 수행하였다. 단순 ball milling processing를 거친 cement(Ball-mill Processed Cement, BPC)와 채취 그대로의 처리하지 않은 fly ash(As Received Fly Ash, ARFA) 혼화시의 공시체와 비교하여 동일한 fly ash의 혼화량(10, 20, 30 wt%), 동일한 재령(7일 및 28일)의 압축강도 및 미세구조의 관점에서 고찰하였다. MPC와 ARFA 및 BPC와 MPFA를 사용한 mortar 공시체가 BPC와 ARFA를 사용한 것보다 각각 5-11% 및 10-20% 상승한 압축강도 값을 나타내었다. 더욱이 MPC와 MPFA의 동시 혼화 mortar 공시체의 압축강도가 fly ash 혼화량 20 wt% 공시체에서 강도 상승률 24%를 나타내었는데 이 값은 MPC 사용에 의한 강도 향상 비율(8%)과 MPFA 혼화에 의한 강도 향상 비율(12%)의 합을 상회하는 synergy 효과를 나다내는 강도 향상율을 나타냈다. 상기의 강도 증진은 MP에 있어서 fly ash와 cement 입자가 혼합되면서 기계적 에너지가 공급되므로 각 입자의 서로에 대한 친화성이 증대되며, 이로 인하여 수화물 생성시 cement와 fly ash 입자간의 결합력이 더욱 증가하게 되어 압축강도가 증가하는 것으로 고려된다.

$La_2O_3$와 NiO의 혼합물로부터 $LaNiO_3$의 메카노케미칼 합성 (Mechanochemical synthesis of $LaNiO_3$ from mixtures of $La_2O_3$ and NiO)

  • 김대영;서병준;손세모;김강언;정수태
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2002년도 하계학술대회 논문집 Vol.3 No.2
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    • pp.621-624
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    • 2002
  • Lanthanum nickel oxide$(LaNiO_3)$ powders have been prepared via a mechanochemical processing without any additional heat treatment. When a mixed lanthanum and nickel oxide was mechanically activated for 6 hours with 450 rpm, a stable and single phase perovskite powder was successfully synthesized and its crystallite size of about 90 nm is calculated by using the Scherrer equation.

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기계화학공정(機械化學工程)에 의한 은(銀)염화물로부터 고순도 은(銀)분말 제조(製造) (Preparation of Pure Silver Powders by using Mechanochemical Process)

  • Lee, Jaer-Yeong;Tung Le, M.;Ahn, Jong-Gwan;Kim, Jong-Oh;Chung, Hun S.;Kim, Byoung-Gyu
    • 자원리싸이클링
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    • 제15권5호
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    • pp.33-37
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    • 2006
  • 기계화학적공정을 이용한 고순도 미립 은분말 제조를 목적으로 동일당량비의 염화은 (AgCl)과 구리(Cu)분말을 혼합하여, 이를 대기조건에서 유성밀로 반응진행 시켰다. 염화은과 구리분말의 초기 혼합물은 반응을 통하여 염화구리와 은분말의 새로운 혼합 상으로 변화하였다. 반응생성물로부터 은분말의 고순도 분리는 1 mol의 수산화암모늄에 의한 침출처리를 실시함으로써 가능하였다. 또한, 기계화학공정에 의한 기능재료 합성에 있어서, 가장 큰 단점인 강한 응집반응생성물을 제어하고자, 첨가제 polyvinylpyrrolidone (PVP)를 혼합 분쇄하였으며, 그 결과 반응생성 은분말의 미립화, 강한 응집상 억제가 가능하였고, 또한 침출공정에서는 고순도 분리된 은분말의 표면산화를 억제하는 효과도 얻을 수 있었다.

Effect of Preparation on Structure and Magnetic Properties of ZnFe2O4

  • Niyaifar, Mohammad
    • Journal of Magnetics
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    • 제19권2호
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    • pp.101-105
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    • 2014
  • In this work, Zinc ferrite nanoparticles have been prepared by various methods, conventional (ZC), mechanochemical processing (ZM) and Sol-Gel (ZS) method, to compare their structural and magnetic properties. The cation distribution obtained from XRD shows the degrees of inversions are 4%, 14.8%, and 16.4% from the normal $ZnFe_2O_4$ structure. Fourier transform infrared spectroscopy (FT-IR) confirms changes in cation distribution of $ZnFe_2O_4$ fabricated by sol-gel and mechanochemical processing. The $^{57}Fe$ M$\ddot{o}$ssbauer spectra of the samples were recorded at room temperature. The spectra exhibit a line broadening. The magnetic properties of the samples were studied by vibration sample magnetometer (VSM) at room temperature and the results show that the sample ZM has ferrimagnetic behaviour.