Cordierite glass and borosilicate/Si₃N₄microcomposite powders were used as starting materials. The composition of the cordierite glass was 17.8MgO-23.lAl₂O₃-48.1SiO₂-5.0TiO₂-5.0ZnO-1.0B₂O₃by weight percent. The borosilicate/Si₃N₄mi...

http://chineseinput.net/에서 pinyin(병음)방식으로 중국어를 변환할 수 있습니다.
변환된 중국어를 복사하여 사용하시면 됩니다.
https://www.riss.kr/link?id=A3347639
1995
Korean
569.274
학술저널
49-57(9쪽)
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
Cordierite glass and borosilicate/Si₃N₄microcomposite powders were used as starting materials. The composition of the cordierite glass was 17.8MgO-23.lAl₂O₃-48.1SiO₂-5.0TiO₂-5.0ZnO-1.0B₂O₃by weight percent. The borosilicate/Si₃N₄mi...
Cordierite glass and borosilicate/Si₃N₄microcomposite powders were used as starting materials. The composition of the cordierite glass was 17.8MgO-23.lAl₂O₃-48.1SiO₂-5.0TiO₂-5.0ZnO-1.0B₂O₃by weight percent. The borosilicate/Si₃N₄microcomposite powder was prepard from α-Si₃N₄as core particles coated with borosilicate gel by a sol-gel process. Green sheets were fabricated with the microcomposite and cordierite glass powders, which were mixed with the composition of 0/100, 12.5/87.5 and 25/75 by volume ratio, by tape casting. These sheets were sintered at 800∼1000℃ for 2 hrs. The characterization of the sintered specimens for low dielectric constant, low temperature fireable ceramic substrates were conducted with SEM, XRD, density and dielectric constant.
Glass 함유 BaTiO_3_ 유전체의 전기 및 기계적 특성
MOD법에 의한(Ba · Pb) TiO_3_ 박막 제조 및 특성에 대한 연구