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학술논문Metals and Materials International2013.05 발행KCI 피인용 1

Crystal Phase Evolution, Sintering, and Strength of Anorthite-Based LTCC Materials by Substitution of M2+ (M=Mg, Sr, Ba) for Ca2+

Crystal Phase Evolution, Sintering, and Strength of Anorthite-Based LTCC Materials by Substitution of M2+ (M=Mg, Sr, Ba) for Ca2+

Sin-Il Gu(Korea Institute of Ceramic Engineering Technology); Hyo-Soon Shin(Korea Institute of Ceramic Engineering Technology); Dong-Hun Yeo(Korea Institute of Ceramic Engineering Technology); 남산(고려대학교)

19권 3호, 399~404쪽

초록

LTCC, composed of Ca-Al-Si-O, is well-known for its high strength and phase stability. However research on the correlation of LTCC substrate composition and phase change to strength characteristics has rarely been reported. In this study, an anorthite glass component, group 2 elements, Mg, Sr, and Ba were substituted for Ca, and the resulting changes in the physical properties of the glass were observed. Then,the effect of varying glass composition on the characteristics of LTCCs was investigated. An increase in the Mg content caused an increase in the Tg of glass, sintering temperature of the glass/Al2O3 composite material and synthesis temperature of anorthite. The content of Sr and Ba had almost no correlation with Tg. Synthesis of BaAlO4 and increased LTCC sintering temperature were observed with the addition of Ba,and high strength of over 320 MPa was demonstrated when glass, Al2O3 and a small amount of anorthite were formed.

Abstract

LTCC, composed of Ca-Al-Si-O, is well-known for its high strength and phase stability. However research on the correlation of LTCC substrate composition and phase change to strength characteristics has rarely been reported. In this study, an anorthite glass component, group 2 elements, Mg, Sr, and Ba were substituted for Ca, and the resulting changes in the physical properties of the glass were observed. Then,the effect of varying glass composition on the characteristics of LTCCs was investigated. An increase in the Mg content caused an increase in the Tg of glass, sintering temperature of the glass/Al2O3 composite material and synthesis temperature of anorthite. The content of Sr and Ba had almost no correlation with Tg. Synthesis of BaAlO4 and increased LTCC sintering temperature were observed with the addition of Ba,and high strength of over 320 MPa was demonstrated when glass, Al2O3 and a small amount of anorthite were formed.

발행기관:
대한금속·재료학회
DOI:
http://dx.doi.org/10.1007/s12540-013-3004-z
분류:
재료공학

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Crystal Phase Evolution, Sintering, and Strength of Anorthite-Based LTCC Materials by Substitution of M2+ (M=Mg, Sr, Ba) for Ca2+ | Metals and Materials International 2013 | AskLaw | 애스크로 AI