• 제목/요약/키워드: SI reaction

검색결과 2,028건 처리시간 0.028초

폴리머 Precursor를 이용한 in-situ 나노 복합체의 제조 : I. 질화규소 표면에서의 $SiO_2$ 피막형성에 따른 폴리머의 흡착거동 (Fabrication of in-situ Formed Namo-Composite Using Polymer Precursor : I. Adsorption Behavior of Polymer Followed $SiO_2$ Surface formation onto Silicon Nitride Surface)

  • 정연길;백운규
    • 한국세라믹학회지
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    • 제37권3호
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    • pp.280-287
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    • 2000
  • Adsorption behavior and amount of phenolic resin followed silica (SiO2) formation onto silicon nitride(Si3N4) surface were investigated using electrokinetic sonic amplitude (ESA) technique and with UV spectrometer, to fabricate Si3N4/SiC nano-composite based on reaction between SiO2 formed and phenolic resin absorbed onto Si3N4 particle. The amount of SiO2 formed and carbon from phenolic resin absorbed onto Si3N4 surface were calculated quantitatively to adjust the reaction between SiO2 and phenolic resin, resulting in no residual SiO2 and carbon. As a result, pre-heated tempeature for optimized reaction was below 25$0^{\circ}C$, in which there was no residual SiO2 and carbon.

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비정질 $SiO_2$${alpha}-Al_2O_3$부터 Mullite를 합성하기 위한 고체상태 반응속도 (Solid-state reaction kinetics for the formation of mullite($3Al_2O_3{\cdot}2SiO_2$) from amorphous $SiO_2$ and ${alpha}-Al_2O_3$)

  • 김익진;곽효섭;고영신
    • 한국결정성장학회지
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    • 제8권2호
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    • pp.332-341
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    • 1998
  • ${\alpha}-Al_2O_3$와 비정질 SiO2부터 Mullite를 합성하기 위한 고체상태반응의 반응속도를 1450~$1480^{\circ}C$ 온도 범위에서 연구하였다. 반응속도는 $Al_2O_3$분말을 코팅한 28.16wt%의 $SiO_2$와 일정한 온도에서 여러 시간동안 가열하여 생성된 혼합물에 의하여 결정되었다. MgO안의 반응물과 미반응물의 양은 X-선 회절분석에 의하여 결정되었다. Mullite의 부피율과 peak intensity 비의 자료로부터 $Al_2O_3$$SiO_2$$3Al_2O_3\;{\cdot}\;2SiO_2$형태로의 반응은 $1450^{\circ}C$$1480^{\circ}C$ 사이에서 시작되었다. 고체상태반응 활성화 에너지는 Arrhenius 식에 의하여 결정되었다. 활성화 에너지는 31.9KJ/mol이다.

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반응용탕단조법에 의한 $(Al_2O_3+Si)/Mg$ 하이브리드 금속복합재료의 제조 및 특성평가 (Fabrication and Properties of Reaction Squeeze Cast $(Al_2O_3+Si)/Mg$ Hybrid Metal Matrix Composites)

  • 오동현;전상혁;박익민;조경목;최일동
    • 한국주조공학회지
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    • 제20권1호
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    • pp.13-20
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    • 2000
  • In the present study,($10%Al_2O_3+5%Si$)/AZ91 Mg hybrid composite was fabricated using the squeeze casting method. During squeeze casting, Molten Mg was infiltrated into the preform of $10%Al_2O_3+5%Si$ and reaction product of $Mg_2Si$ intermetallic compound was formed by the reaction between molten Mg and Si Powder. Microstructure has been observed and mechanical properties were evaluated for the reaction squeeze cast(RSC) hybrid composite. It was found that Si powder totally reacted with molten Mg to form $Mg_2Si$. Reinforcement($Al_2O_3$) and the reaction product ($Mg_2Si$) are fairly uniformly distributed in Mg Matrix for the squeeze cast hybrid composite. Mechanical Properties were improved with hybridization of reinforcements, namely higher hardness and enhanced wear resistance comparing squeeze cast($15%Al_2O_3$)/AZ91 Mg composite.

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Al-9Si-0.3Mg 주조용 합금에서 Sludge 형성이 금형소착 반응층 두께에 미치는 영향 (Effect of Sludge Formation on the Thickness of Die Soldering Reaction Layer in Al-9Si-0.3Mg Casting Alloy)

  • 김헌주
    • 한국주조공학회지
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    • 제30권2호
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    • pp.76-82
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    • 2010
  • Effect of reaction time and sludge formation on the thickness of die soldering reaction layer has been studied in Al-9Si-0.3Mg casting alloy. Ternary ${\alpha}_{bcc}-Al_8Fe_2Si$ and ${\alpha}_{hcp}-Al_8Fe_2Si$ intermetallic compounds formed at the interface of SKD61 tool steel by interaction diffusion of Al, Fe and Si atoms after 0.5hr and 6hr immersion time, respectively. Binary ${\eta}-Fe_2Al_5$ additionally formed at the interface of SKD61 tool steel after 10hr immersion time. Thickness of soldering reaction layer in die surface increased as immersion time increased from 0.5hr to 24hr. Sludge formation was ascertained in the samples which were immersed in the melts more than 10hr. Reaction of die soldering after sludge formation was more accelerated than that of before sludge formation due to a decrease in Fe content, followed by higher diffusion rate of Al in the melt by sludge formation.

SiC Fiber 강화 다공질 반응 소결 탄화규소 Composite의 제조 및 기계적 특성 (Fabrication of SiC Fiber Reinforced Porous Reaction Bonded SiC Composite and Its Mechanical Properties)

  • 한재호;박상환
    • 한국세라믹학회지
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    • 제43권8호
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    • pp.509-514
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    • 2006
  • In this study, chopped Hi-Nicalon SiC fiber Reinforced Porous Reaction Bonded SiC (RBSC) composites and it fabrication process were developed by using Si melt infiltration process. The porosity and average pore size in fabricated chopped SiC fiber reinforced porous RBSC composites were in the range of $30{\sim}40%$ and $40-90{\mu}m$, which mainly determined by the SiC powder size used as starting material and amount of residual Si in porous composites. The maximum flexural strength of chopped SiC fiber reinforced porous RBSC composite was as high as 80 MPa. The delayed fracture behavior was observed in chopped SiC fiber reinforced porous RBSC composites upon 3-point bending strength test.

Fabrication of SiC Fiber-SiC Matrix Composites by Reaction Sintering

  • Lim, Kwang-Young;Kim, Young-Wook;Park, Ji-Yeon
    • 한국세라믹학회지
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    • 제45권4호
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    • pp.204-207
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    • 2008
  • This paper presents a new process for producing SiC fiber-SiC matrix(SiC/SiC) composites by reaction sintering. The processing strategy for the fabrication of the SiC/SiC composites involves the following: (1) infiltration of the SiC fiber fabric using a slurry consisting of Si and C precursors, (2) stacking the slurry-infiltrated SiC fiber fabric at room temperature, (3) cross-linking the stacked composites, (4) pyrolysis of the stacked composites, and (5) hot-pressing of the pyrolyzed composites. It was possible to obtain dense SiC/SiC composites with relative densities of >96% and a typical flexural strength of ${\sim}400$ MPa.

용융염계에서 자전연소합성법에 의한 α-Si3N4 분말의 제조 (Part 3. 반응기구) (Preparation of α-Si3N4 Powder, in Reaction System Containing Molten Salt, by SHS (Part 3. Reaction Mechanism))

  • 윤기석;양범석;박영철;원창환
    • 한국세라믹학회지
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    • 제41권12호
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    • pp.907-914
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    • 2004
  • [ $Si-NaCl-NH_4Cl-NaN_3$ ]계에서 자전연소에 의한 Si의 질화반응기구에 대하여 알아보았다. 희석제로서 첨가된 NaCl은 질화반응 초기에 Si의 용융에 따른 Si의 성장을 억제하여 완전한 질화반응에 도움을 주는 것으로 나타났다. 또한 $NH_{4}Cl$$NaN_3$는 반응과정 동안 서로 분해하고 결합하여 생성물로서 NaCl을 형성하였고, 이 과정에서의 발열반응은 시편을 예열함으로써 질화반응에 도움을 주었다. 본 반응계에서 주된 질화반응기구는 액상-기상 반응기구였다. 그리고 ${\alpha}-Si_{3}N_4$의 제조를 위한 최적의 펠렛 기공도는 $67-69%\$였다.

완전 탄소 프리폼으로부터 Si 용융 침투에 의해 제조한 반응 소결 탄화규소의 치밀화에 미치는 Y2O3 첨가량의 영향 (Effect of Y2O3 Additive Amount on Densification of Reaction Bonded Silicon Carbides Prepared by Si Melt Infiltration into All Carbon Preform)

  • 조경식;장민호
    • 한국재료학회지
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    • 제31권5호
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    • pp.301-311
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    • 2021
  • The conversion of all carbon preforms to dense SiC by liquid infiltration can become a low-cost and reliable method to form SiC-Si composites of complex shape and high density. Reactive sintered silicon carbide (RBSC) is prepared by covering Si powder on top of 0.5-5.0 wt% Y2O3-added carbon preforms at 1,450 and 1,500℃ for 2 hours; samples are analyzed to determine densification. Reactive sintering from the Y2O3-free carbon preform causes Si to be pushed to one side and cracking defects occur. However, when prepared from the Y2O3-added carbon preform, an SiC-Si composite in which Si is homogeneously distributed in the SiC matrix without cracking can be produced. Using the Si + C = SiC reaction, 3C and 6H of SiC, crystalline Si, and Y2O3 phases are detected by XRD analysis without the appearance of graphite. As the content of Y2O3 in the carbon preform increases, the prepared RBSC accelerates the SiC conversion reaction, increasing the density and decreasing the pores, resulting in densification. The dense RBSC obtained by reaction sintering at 1,500 ℃ for 2 hours from a carbon preform with 2.0 wt% Y2O3 added has 0.20 % apparent porosity and 96.9 % relative density.

SiC와 금속박막간의 계면형성 및 열역학 (Interface formation and thermodynamics between SiC and thin metal films)

  • Chang-Sung Lim;Kwang-Bo Shim;Dong-Woo Shin;Keun-Ho Auh
    • 한국결정성장학회지
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    • 제6권1호
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    • pp.62-72
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    • 1996
  • SiC와 금속박막간의 계변형성 및 반응 생성물의 구조가 $5500^{\circ}C$에서 $1450^{\circ}C$의 온도 범위에서 조사되어졌다. SiC와 코발트간의 반응에 있어서 전형척인 반응충의 순서는 $1050^{\circ}C$에서 $1250^{\circ}C$까지의 온도 범위에서 CoSi/CoSi+C/CoSi/CoSi+C/ $\cdots$ /SiC이었고, SiC와 니켈간의 반응에 있어셔 전형적인 반응충의 순셔는 $950^{\circ}C$에서 $1050^{\circ}C$까지의 온도 범위에서 $Ni_2Si/Ni_2Si+C/Ni_2Si/Ni_2Si+C/ {\cdots} /SiC$이었다. 탄소의 결정화가 SiC / Co 반응에 있어서논 $1450^{\circ}C$ 이상에서 그리고 SiC/Ni 반응에 였어서는 $1250^{\circ}C$ 이상에서 바깐면으로 우선적으로 석출되였다. 또한, 탄 소석출거동을 동반한 주기적인 띠구조의 형성 기구가 열역학적인 고찰을 통하여 논하여졌다.

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Monte Carlo Simulations and DFT Studies of the Structural Properties of Silicon Oxide Clusters Reacting with a Water Molecule

  • Jisu Lee;Gyun-Tack Bae
    • 대한화학회지
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    • 제67권5호
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    • pp.333-338
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    • 2023
  • In this study, the H2O reaction with SiO clusters was investigated using ab initio Monte Carlo simulations and density functional theory calculations. Three chemistry models, PBE1/DGDZVP (Model 1), PBE1/DGDZVP (Si atom), and aug-cc-pVDZ (O and H atoms), (Model 2) and PBE1/aug-cc-pVDZ (Model 3), were used. The average bond lengths, as well as the relative and reaction energies, were calculated using Models 1, 2, and 3. The average bond lengths of Si-O and O-H are 1.67-1.75 Å and 0.96-0.97 Å, respectively, using Models 1, 2, and 3. The most stable structures were formed by the H transfer from an H2O molecule except for Si3O3-H2O-1 cluster. The Si3O3 cluster with H2O exhibited the lowest reaction energy. In addition, the Bader charge distributions of the SinOn and (SiO)n-H2O clusters with n = 1-7 were calculated using Model 1. We determined that the reaction sites between H2O and the SiO clusters possessed the highest fraction of electrons.