• 제목/요약/키워드: SHS process

검색결과 99건 처리시간 0.029초

고온자전 반응에 의한 $MoSi_{2}$ 합성법의 열전달 해석 (Heat Transfer analysis for Self-propagating High Temperature Synthesis of $MoSi_{2}$)

  • 채수원;조해규;김용석
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 1994년도 추계학술대회 논문집
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    • pp.303-308
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    • 1994
  • The finite element method has been used to model and analyze the heat transfer phenomena during manufacturing process of MoSi $_{2}$ by SHS. For this urpose nonlinear transient heat transfer analyses by using ANSYS have been performed to compute the temperature distributiuon and the peak temperature in the test specimen. The effects of manufacturing process parameters such as a pre-heating temperature, the velocity of reaction zone have also been investigated. The results of the analysis have been compared with the experimental results.

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SHS법에 의한 $\textrm{ZrB}_2$ 합성과 반응소결된 $\textrm{ZrB}_2$-ZrC계 복합체의 제조 (Fabrication of $\textrm{ZrB}_2$ by SHS Process and Reaction-bonded $\textrm{ZrB}_2$-ZrC Composite)

  • 이윤복;김정섭;김상배;박홍채;오기동
    • 한국재료학회지
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    • 제9권1호
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    • pp.8-13
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    • 1999
  • $ZrB _2$ was prepared from a mixture of $ZrO_2$, $B_2$$O_3$and Mg by SHS method. The combustion products were successfully obtained from a mixture of $Zro_2$:$B_2$$O_3$:Mg=1:2.0:8.5(molar ratio). MgO, by-product, was removed to 92.7% by leaching with 1M HCl solution at 9$0^{\circ}C$, for 10 hours. After leaching, the mean particle size of the resultant $ZrB_2$powders was 23.6$\mu\textrm{m}$. $ZrB_2$-ZrC composite was suitably obtained from a mixture of C/Zr=1.2 molar ratio by arc-melting method. The density of arc-melted specimen increased by adding excess zirconium content(x). The bulk density was 6.17g/㎤ for x=0, and 6.37g/㎤ x=4. Vickers hardness of arc-melted specimen was /$1290kg\textrm{mm}^2$ for x=0, and fracture toughness increased to 4.2MPa.m\ulcornerforx=4 compared to 3.4MPa.m\ulcornerfor x=0.

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SHS법에 의한 붕화지르코늄의 합성 및 치밀화에 미치는 첨가제의 영향 (Effect of Additives on Synthesis of $\textrm{ZrB}_{2}$ By SHS Process and Its Densification)

  • 이윤복;곽철상;김상배;김영우;박홍채;오기동
    • 한국재료학회지
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    • 제8권7호
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    • pp.653-658
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    • 1998
  • ZrO2, B2O3 및 AI을 사용하여 SHS법에 의한 붕화지르코늄을 합성을 하고 산화철과 알루미늄 분말의 첨가가 합성물의 치밀화에 미치는 영향에 대하여 검토하였다. 합성물중에 존재하는 결정상은 대부분이 ZrB2와 $\alpha$-AI2O3상이었다. 산화붕소와 알루미늄의 몰비가 1.0:3.3이상일 때 합성물의 치밀화는 크게 증가하였고, ZrB2 입자도$\alpha$-AI2O3용융상과 더불어 조대하였다. 산화철 1목에 대하여 알루미늄을 1-3몰을 첨가한 것과 산화철 1.5몰에 대하여 알루미늄을 3몰 첨가시 $\alpha$-AI2O3를 중심으로하는 슬라그상으로부터 용융상의 분이가 가능하였고, 이들 용융상에 존재하는 결정상은 ZrB2이외에 Fe, Fe2B, Zr2Fe상이었다. 용융상의 상대밀도는 산화철 1몰에 대하여 알루미늄을 1몰 첨가시 83.2%인 반면에 그 이상의 첨가량에 대해서는 치밀화는 크게 증가하여 알루미늄을 3몰 첨가한 경우 상대밀도는 93.7%로서 최대를 나타내었다.

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자체반응열 고온합성법에 의한 탄화티타늄 합성에 관한 메카니즘 (Mechanism on the Synthesis of Titanium Carbide by SHS (Self-Propagating High-Temperature Synthesis) Method)

  • 하호;황규민;한희동
    • 한국세라믹학회지
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    • 제31권11호
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    • pp.1249-1258
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    • 1994
  • Titanium carbide was synthesized by reacting the prepared titanium powder and carbon black using SHS method sustains the reaction spontaneously, utilizing heat generated by the exothermic reaction itself. In this process, the effect of the particle size of titanium powder on combustion temperature and combustion wave velocity was investigated. By controlling combustion temperature and combustion wave velocity via mixing Ti and C powder with TiC, the reaction kinetics of TiC formation by SHS method was considered. Without reference to the change of combustion temperature and combustion wave velocity, TiC was easily synthesized by combustion reaction. As the particle size of titanium powder was bigger, or, as the amount of added diluent(TiC) increased, combustion temperature and combustion wave velocity were found to be decreased. The formation of TiC by combustion reaction in the Ti-C system seems to occur via two different mechanisms. At the beginning of the reaction, when the combustion temperatures were higher than 2551 K, the reaction was considered to be controlled by the rate of dissolution of carbon into a titanium melt with an apparent activation energy of 148 kJ/mol. For combustion temperatures less than 2551 K, it was considered to be controlled by the atomic diffusion rate of carbon through a TiC layer with an apparent activation energy of 355 kJ/mol. The average particle size of the synthesized titanium carbide was smaller than that of the starting material(Ti).

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SHS 공정에 의해 제조된 MoxW1-xSi2 발열체의 열화메커니즘 (Degradation Mechanism of MoxW1-xSi2 Heating Elements Fabricated by SHS Process)

  • 이동원;이상헌;김용남;이성철;구상모;오종민
    • 한국전기전자재료학회논문지
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    • 제30권10호
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    • pp.631-636
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    • 2017
  • The degradation mechanism of $Mo_xW_{1-x}Si_2$ ultrahigh-temperature heating elements fabricated by self-propagating high-temperature synthesiswas investigated. The $Mo_xW_{1-x}Si_2$ specimens (with and without post-annealing) were subjected to ADTs (accelerated degradation tests) at temperatures up to $1,700^{\circ}C$ at heating rates of 3, 4, 5, 7, and $14^{\circ}C/min$. The surface loads of all the specimen heaters were increased with the increase in the target temperature. For the $Mo_xW_{1-x}Si_2$ specimens without annealing, many pores and secondary-phase particles were observed in the microstructure; the surface load increased to $23.9W/cm^2$ at $1,700^{\circ}C$, while the bending strength drastically reduced to 242 MPa. In contrast, the $Mo_xW_{1-x}Si_2$ specimens after post-annealing retained $single-Mo_xW_{1-x}Si_2$ phases and showed superior durability after the ADT. Consequently, it is thought that the formation of microcracks and coarse secondary phases during the ADT are the main causes for the degraded performance of the $Mo_xW_{1-x}Si_2$ heating elements without post-annealing.

과열증기와 초고압 처리법을 적용한 간장 소스의 냉장저장 중 품질 특성 변화 (Changes in Quality Characteristics of Seasoned Soy Sauce Treated with Superheated Steam and High Hydrostatic Pressure during Cold Storage)

  • 최윤;오지혜;배인영;조은경;권대중;박혜원;윤선
    • 한국식품조리과학회지
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    • 제29권4호
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    • pp.387-398
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    • 2013
  • 본 연구에서는 한식에서 활용도가 높은 간장 소스를 생산할 때 새로운 가공 기술인 과열증기와 초고압 기술을 적용해보고, 저장기간 동안($5^{\circ}C$, 30일) 그 품질의 변화를 비교 하였다. 소스 제조에 앞서 사과, 양파, 마늘을 과열증기로 전처리하였으며, 그 결과 저장기간(0,7일)동안 PPO의 활성이 억제되고 색과 BP의 변화가 거의 없음을 확인하였고, 관능적으로 색, 향, 맛, 질감 및 전체적인 기호도도 우수한 것으로 나타났다. 이후 과열증기로 전처리한 재료를 첨가하여 간장소스를 제조하였고 열 또는 초고압을 이용하여 살균처리 하였다. 저장기간(0,7,14,30일) 동안 소스의 품질 특성을 분석한 결과, 살균방법에 따라 염도, 당도, pH에는 큰 차이가 없었다. 색도 측정 시 과열증기로 전처리하지 않은 재료를 첨가한 간장 소스에 비해 과열증기로 전처리한 재료를 첨가한 간장 소스에서 L값이 유의적으로 높았으며, 특히 살균 방법에 따라서는 초고압 처리한 경우 L값이 높게 유지되었다. 일반 세균은 열 또는 초고압 살균 시 저장기간 동안 4 log CFU/g 이하를 유지하고 있었으며, 대장균 과 B. cereus는 모든 군에서 검출되지 않았다. 소스의 점도는 열 또는 초고압 살균한 군에서 저장기간 동안 유지되었으며, 살균하지 않은 군은 점차 감소하였다. 간장 소스를 이용하여 만든 불고기의 관능검사 결과, 과열증기 전처리와 초고압 살균을 병행한 군에서 색, 향, 전체적인 기호도가 유의적으로 높게 평가되었으며, 짠 맛과 단 맛은 처리방법에 따라 큰 차이를 보이지 않았다. 즉, 사과, 양파, 마늘을 과열증기로 전처리한 후 간장 소스를 제조하고, 소스 살균을 위해 비가열 살균 방법인 초고압으로 처리했을 때 냉장 저장 중 품질 특성이 가장 좋은 것으로 나타났다. 이상의 결과를 종합해 볼 때 냉장 유통 간장 소스 제조 시 품질이 유지되고 관능적으로 우수하며, 위생적으로 안전한 소스를 생산하기 위해 과열증기와 초고압 기술이 적용될 수 있을 것으로 사료된다.

SHS 공정에 의한 열전대 보호관용 $ZrB_2$ 세라믹스의 제조 (Fabrication of $ZrB_2$ Ceramics for Thermocouple Protective Tubes by SHS Process)

  • 곽철상;김상배;이윤복;박홍채;오기동
    • 한국세라믹학회지
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    • 제34권11호
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    • pp.1165-1172
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    • 1997
  • ZrB2 powders were prepared from a mixture of ZrO2, B2O3 and Mg by self-propagating high temperature synthesis method. The combustion product was successfully obtained from a mixture of ZrO2:B2O3:Mg=1:2:8.5 molar ratio. By-product, MgO was effectively removed by leaching with 1M HCl solution at 9$0^{\circ}C$ for over 5hours. After leaching, the Mg content was 0.86~1.42 wt%, and the mean particle size was 4.72${\mu}{\textrm}{m}$. The addition of 7.5 wt%(14Ni:1.0C) as a sintering aid greatly densified ZrB2 bodies compared with that of only Ni. The ZrB2 sintered bodies containing 7.5 wt%(14Ni:1.0C) was 94.3% of the theoretical density. In this case, ZrB2 existed as a major phase and had a bend strength of 300 MPa and a vickers hardness of 2000 kg/$\textrm{mm}^2$.

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자체반응열 고온합성법에 의한 질화티타늄 합성에 관한 연구 (A Study on the Synthesis of Titanium Nitride by SHS(Self-propagating High-temperature Synthesis) Method)

  • 하호;김광래;이희철
    • 한국세라믹학회지
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    • 제30권12호
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    • pp.1096-1102
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    • 1993
  • Titanium nitride was synthesized by reacting Ti powder with nitrogen gas using SHS method. In this process, the effects of nitrogen pressure, dilution with TiN, or additiion of titanium hydride(TiH1.924) on the conversion of Ti to TiN were investigated. In particular, much effects were given to solve the problem of the conversion drop due to partial melting and subsequent sintering of Ti parciels, by controlling combustion temperature and combustion wave velocity via mixing Ti powder with TiN or/and TiH1.924. For the diluted titanium powders with TiN, the conversion close to 100% was resulted when the nitrogen pressure was over 8atm and with diluent content of 60wt%, and the self-propagating reaction was not sustained when the diluent content was higher than 60wt%. For samples mixed to be 55wt% in Ti component in the mixture of Ti, TiH1.924, and 45% TiN, the conversion was closed to 100% when the amount of titanium hydride added was over 7wt% and the nitrogen pressure was higher than 5atm. The combustion reaction, however, was not sustained when titanium hydride added was more than 10wt%.

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