• 제목/요약/키워드: non-sintering binder

검색결과 16건 처리시간 0.017초

Microstructure of Non-Sintered Inorganic Binder using Phosphogypsum and Waste Lime as Activator

  • Kim, Ji-Hoon;An, Yang-Jin;Mun, Kyung-Ju;Hyung, Won-Gil
    • 한국건축시공학회지
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    • 제18권3호
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    • pp.305-312
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    • 2018
  • This study is about the development of a non-sintered binder (NSB) which does not require a sintering process by using the industrial by-products Phosphogypsum (PG), Waste Lime (WL) and Granulated Blast Furnace Slag (GBFS). In this report, through SEM analysis of the NSB paste hardening body, micropore analysis of paste using the mercury press-in method and microstructure observation were executed to consider the influence of the formation of the pore structure and the distribution of pore volume on strength, and the following conclusions were reached. 1) Pore structure of NSB paste of early age is influenced by hydrate generation amount by GBFS and activator. 2) Through observing the internal microstructure of NSB binder paste, it was found that the strength expression at early age due to hydration reaction was achieved with a large amount of ettringite serving as the frame with C-S-H gel generated at the same time. It was confirmed that C-S-H gel wrapped around ettringite, and as time passed, the amount generated continually increased, and C-S-H gel tightly filled the pores of hardened paste, forming a dense network-type web structure. 3) For NSB-type cement, the degree of formation of gel pores below $10{\mu}m$ had a greater influence on strength improvement than simple pore reduction by charging capillary pores, and the pore size that had the greatest effect on strength was micropores with diameter below $10{\mu}m$.

알칼리 활성반응에 의한 Briquette ash의 강도 발현 특성 (The Compressive Strength Development of Briquette Ash by Alkali Activated Reaction)

  • 서명덕;이수정;박현혜;김윤종;이수옥;김택남;조성백
    • 한국재료학회지
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    • 제18권9호
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    • pp.463-469
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    • 2008
  • Non-sintering cement was manufactured with briquette ash. Alkali activator for compression bodies used a NaOH solution. In order to apply alkali-activated briquette ash and the non-sintering cement to concrete, several experimental studies were performed. It was necessary to study the binder obtained by means of a substitute for the cement. This study concentrated on strength development according to the concentration of NaOH solution, the curing temperature, and the curing time. The highest compressive strength of compression bodies appeared as $353kgf/cm^2$ cured at $80^{\circ}C$ for 28 days. This result indicates that a higher curing temperature is needed to get a higher strength body. Also, geopolymerization was examined by SEM and XRD analysis after the curing of compression bodies. According to SEM and XRD, the main reaction product in the alkali activated briquette ash is aluminosilicate crystal.

무기계 산업폐기물을 자극제로 이용한 비소성 시멘트의 수화반응 (Hydration Reaction of Non-Sintering Cement Using Inorganic Industrial Waste as Activator)

  • 문경주;이철웅;소승영;소양섭
    • 콘크리트학회논문집
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    • 제18권2호
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    • pp.267-274
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    • 2006
  • 시멘트 산업은 석회석, 점토, 석탄 및 전기를 다량 소모할 뿐만 아니라 지구 온난화 및 산성비의 주요 원인인 $CO_2,\;SO_3$, and NOX 등의 온실가스를 다량 배출하는 산업이기 때문에 향후 온실가스 감축은 시멘트 업계의 가장 큰 현안으로 등장할 것으로 예견된다. 교토의정서의 준수와 시멘트 수요의 증가를 동시에 충족시키기 위해서는 이산화탄소의 배출이 적거나 거의 없는 시멘트의 개발이 필요하다. 본 연구는 고로슬래그미분말에 폐인산석고 및 폐석회를 황산염 및 알칼리 자극제로 이용하여 비소성 시멘트를 제조하고 X선 회절분석, 전자현미경 분석, 열분석 및 pH분석을 통해 비소성 시멘트의 수화반응을 조사하였다. 실험 결과 비소성 시멘트의 주요 생성광물은 고로슬래그 미분말의 유리질 피막이 파괴되면서 알칼리 자극 및 황산염 자극을 받아 고로슬래그 내부에서 용출되는 이온이 인산석고와 반응하여 ettingite를 생성시키고 고로슬래그 중의 남은 성분은 서서히 C-S-H(I)계의 겔상 수화물을 형성함으로서 강도를 발현하며 이때 인산석고는 단순 자극작용 뿐만 아니라 GBFS와 반응하는 결합재 역할도 동시에 수행한다.

Ni-MH 2차전지용 AB5계 수소저장합금의 소결에 따른 전극 특성 (The Electrode Characteristics of the Sintered AB5-type Metal Hydrogen Storage Alloy for Ni-MH Secondary Battery)

  • 장상민;박원;최승준;노학;최전;박충년
    • 한국수소및신에너지학회논문집
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    • 제7권2호
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    • pp.157-164
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    • 1996
  • The AB5-type metal hydride electrodes using $(LM)Ni_{4.49}Co_{0.1}Mn_{0.205}Al_{0.205}$(LM : Lanthaniumrich Mischmetal) alloy powders(${\leq}200$mesh) which were coated with 25wt% copper in an acidic bath were prepared with or without addition of 10wt% PTFE as a binder. Prior to electrochemical measurements, the electrodes were sintered at $40^{\circ}C$ for 1 and 2hrs in vacuum with Mm(mischmetal) and sponge type Ti getters. The properties such as maximum capacity, cycle life and mechanical strength of the negative electrode have been investigated. The surface analysis of the electrode was also obtained before and after charge-discharge cycling using scanning electron microscope(SEM). From the observations of electrochemical behavior, it was found that the sintered electrode shows a lower maximum discharge capacity compared with non-sintered electrode but it shows a better cycle life. For the both electrodes with or without addition of PTFE binder, the values of mechanical strength were obtained, and their values increased with increasing sintering time. However, there is little difference of discharge capacity for both electrodes.

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Fabrication of Equiatomic CoCrFeMnNi High-Entropy Alloy by Metal Injection Molding Process Using Coarse-Sized Powders

  • Eun Seong Kim;Jae Man Park;Ji Sun Lee;Jungho Choe;Soung Yeoul Ahn;Sang Guk Jeong;Do Won Lee;Seong Jin Park;Hyoung Seop Kim
    • 한국분말재료학회지
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    • 제30권1호
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    • pp.1-6
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    • 2023
  • High-entropy alloys (HEAs) are attracting attention because of their excellent properties and functions; however, they are relatively expensive compared with commercial alloys. Therefore, various efforts have been made to reduce the cost of raw materials. In this study, MIM is attempted using coarse equiatomic CoCrFeMnNi HEA powders. The mixing ratio (powder:binder) for HEA feedstock preparation is explored using torque rheometer. The block-shaped green parts are fabricated through a metal injection molding process using feedstock. The thermal debinding conditions are explored by thermogravimetric analysis, and solvent and thermal debinding are performed. It is densified under various sintering conditions considering the melting point of the HEA. The final product, which contains a small amount of non-FCC phase, is manufactured at a sintering temperature of 1250℃.

디지털 프린팅 용액 공정 소재 개발 동향

  • 오석헌;손원일;박선진;김의덕;백충훈
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2010년도 춘계학술발표대회
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    • pp.19.2-19.2
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    • 2010
  • Printed electronics using printing process has broadened in all respects such as electrics (lighting, batteries, solar cells etc) as well as electronics (OLED, LCD, E-paper, transistor etc). Copper is considered to be a promising alternative to silver for printed electronics, due to very high conductivity at a low price. However, Copper is easily oxidized, and its oxide is non-conductive. This is the highest hurdle for making copper inks, since the heat and humidity that occurs during ink making and printing simply accelerates the oxidation process. A variety of chemical treatments including organic capping agents and metallic coating have been used to slow this oxidation. We have established synthetic conditions of copper nanoparticles (CuNPs) which are resistant to oxidation and average diameter of 20 to 50nm. Specific resistivity should be less than $4\;{\mu}{\Omega}{\cdot}cm$ when sintered at lower temperature than $250^{\circ}C$ to be able to apply to conductive patterns of FPCBs using ink-jet printing. Through this study, the parameters to control average diameter of CuNPs were found to be the introduction of additive agent, the feeding rate of reducing agent, and reaction temperature. The CuNPs with various average diameters (58, 40, 26, 20nm) could be synthesized by controlling these parameters. The dispersed solution of CuNPs with an average size of 20 nm was made with nonpolar solvent containing 3 wt% of binder, and then coated onto glass substrate. After sintering the coated substrates at $250^{\circ}C$ for 30 minutes in nitrogen atmosphere, metallic copper film resulted in a specific resistivity of $4.2\;{\mu}{\Omega}{\cdot}cm$.

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