• Title/Summary/Keyword: 유리세라믹

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Effect of softening point of glass frit on the sintering behavior of low-temperature cofitrable glass/ceramic composites (유리 프릿트의 연화점이 저온소성용 글라스/세라믹 복합체의 소결거동에 미치는 영향)

  • 구기덕;오근호
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.8 no.4
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    • pp.619-625
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    • 1998
  • The effect of softening point and glass amount of glass frit on the sintering behavior of low temperature cofirable glass/ceramic composites was studied and according to these results, glass/ceramic composites with high sintered density was fabricated. The density of composites was increased as the glass amount was increased. In case of using the glass with low softening point, the deformation of specimen was occurred though the ratio of the glass amount in the specimen was low. But, in case of using the glass with high softening point, the sintered density of composites was increased in accordance with glass amount. With the specimen of high softening point, the deformation was not happened. Therefore, it was found that the densification was progressed continuously in high glass amount. From the study on the effect of softening point of glass on sintering behavior, the suitable softening point and glass amount for fabrication of glass/ceramic composites can be anticipated. When glass frit with softening point of $790^{\circ}C$ was chosen according to this result, low temperature cofirable glass/ceramic composites with high density (97%) at $900^{\circ}C$ was fabricated.

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A Study on the Recovery of Lithium from Secondary Resources of Ceramic Glass Containing Li-Al-Si by Ca-based Salt Roasting and Water Leaching Process (Li-Al-Si 함유 유리세라믹 순환자원으로부터 Ca계열 염배소법 및 이에 따른 수침출 공정에 의한 리튬의 회수 연구)

  • Sung-Ho Joo;Dong Ju Shin;Dongseok Lee;Shun Myung Shin
    • Resources Recycling
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    • v.32 no.1
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    • pp.42-49
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    • 2023
  • The glass ceramic secondary resource containing Li-Al-Si is used in inductor, fireproof glass, and transparent cookware and accounts for 14% of the total consumption of Li, which is the second most widely used after Li-ion batteries. Therefore, new Li resources should be explored when the demand for Li is exploding, and extensive research on Li recovery is needed. Herein, we recovered Li from fireproof Li-Al-Si glass ceramic, which is a new secondary resource containing Li. The fireproof glass among all Li-Al-Si glass ceramics was used as raw material that contained 1.5% Li, 9.4% Al, and 28.9% Si. The process for recovering Li from the fireproof glass was divided into two parts: (1) calcium salt roasting and (2) water leaching. In calcium salt roasting, a sample of fireproof glass was crushed and ground below 325 mesh. The leaching efficiency was compared based on the presence or absence of heat treatment of the fireproof glass. Moreover, the leaching rates based on the input ratios of calcium salt, Li-Al-Si glass, and ceramics and the leaching process based on calcium salt roasting temperatures were compared. In water leaching, the leaching and recovery rates of Li based on different temperatures, times, solid-liquid ratios, and number of continuous leaching stages were compared. The results revealed that fireproof glass ceramics containing Li-Al-Si should be heat treated to change phase to beta-type spodumene. CaCO3 salt should be added at a ratio of 6:1 with glass ceramics containing Li-Al-Si, and then leached 4 times or more to achieve a recovery efficiency of Li over 98% from a solution containing 200 mg/L of Li.

MULTIPHONON ABSORPTION IN $As_2S_3$ AND $GeS_{2.1}$ GLASSES ($As_2S_3$ 유리와 $GeS_{2.1}$ 유리의 Multiphonon 영역에서의 흡수)

  • ;C. T,. Moynihan
    • Journal of the Korean Ceramic Society
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    • v.22 no.2
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    • pp.58-62
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    • 1985
  • 2.5~40$mu extrm{m}$ 영역에서 $As_2S_3$$GeS_{2.1}$ 유리의 적외선흡수에 관하여 연구했다. Lucovsky와 그의 연구팀이 제창훈 분자 모델에 의하면 8-20$\mu\textrm{m}$ 영역에서 위의 유리물질의 multiphonon 흡수대는 고립된 각 분자의 기본진동대의 overtone 및 combination과 같다. Lucovsky와 Galeener는 이이론에 입각하여 network 구조를 갖는 유리가 적외선 및 라만 스펙트럼에서 나타나는 multiphonon combination 과 overtone 진동수를 예언하는 실험적 선택룰을 제안했다 우리가 얻은 As2S3 및 GeS2.1 유리의 적외선 스펙트럼은 이 유리에 대해 적용한 위의 실험법칙과 잘 일치한다.

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Fabrication of Pb Free Solder Glass for Electronic Packaging Application (전자 패키징용 Pb Free 저융점 유리의 제조)

  • 최승철;이창식;유재륜;정경원
    • Journal of the Korean Ceramic Society
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    • v.38 no.7
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    • pp.628-633
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    • 2001
  • 전자 패키징에 적용 가능한 저융점 유리 중에서 납성분이 포함되어 있지 않는 Bi계 유리의 연구를 행하였다. 기판과의 일체화를 위한 유리의 응용으로, 소자와의 반응 억제와 열응력 완화를 위해 유리의 저융점화 및 열팽창계수를 제어하였다. 본 연구에서 제조된 Bi계 유리는 DTA와 TMA의 열분석을 통해 5$50^{\circ}C$ 부근에서 연화점이 있고, 열팽창계수는 7.52~12.09$\times$$10^{-6}$/$^{\circ}C$의 범위였으며, 비유전율은 9~13이었다. 본 연구의 납성분을 포함되어 있지 않는 유리조성은 우수한 내산성을 나타내었다.

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