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Multilayer substrate including layers of an alumina and borosilicate-lead- glass ceramic material

机译:包括氧化铝和硼硅酸盐-铅-玻璃陶瓷材料层的多层基板

摘要

A multilayer glass-ceramic substrate comprises insulator layers of a composition consisting essentially of, when components are expressed as oxides in percent by weight, 40-60 percent of aluminum oxide, 1-40 percent of lead oxide, 1-30 percent of boron oxide, 2-40 percent of silicon dioxide, 0.01-25 percent of at least one oxide of chemical element(s) of Group II of the periodic table, and 0.01-10 percent of at least one oxide of Group IV element(s) except carbon, silicon, and lead. Each insulator layer may be only from 190 microns down to 10 microns thick. The substrate has a flexural strength of 2,100 kg/cm.sup.2 or more. Preferably, the Group II element(s) is magnesium, calcium, strontium, barium, and/or zinc. The Group IV element(s) is zirconium, titanium, germanium, and/or tin. When the percentages are 40-60 for aluminum oxide, 4.1-16.6 for lead oxide, 1.0-10.0 for boron oxide, 14.0-39.1 for silicon dioxide, 0.1-4.8 for magnesium oxide, 2.0-10.0 for calcium oxide, 0.05-3. 0 for barium oxide, 0.01-3.0 for zirconium oxide, and 0.01-2.5 for titanium oxide, the substrate has a flexural strength of 3,000 kg/cm.sup. 2 or more and an interlayer leakage current of 8 microamperes or less. Each insulator layer has a structure of a vitreous network of borosilicate-lead series glass with the interstices occupied by crystals of aluminum oxide and microcrystalline structures which are obtained by reaction of aluminum oxide and glass of the borosilicate lead series.
机译:多层玻璃陶瓷基底包括绝缘体层,该绝缘体层的组成基本上由以下组成:当组分以重量百分比表示为氧化物时,为40-60%的氧化铝,1-40%的氧化铅,1-30%的氧化硼,2-40%的二氧化硅,0.01-25%的至少一种元素周期表II类化学元素的氧化物和0.01-10%的至少一种IV类元素氧化物的除外碳,硅和铅。每个绝缘体层的厚度可以仅为190微米到10微米。基材的挠曲强度为2,100 kg / cm 2或更高。优选地,II族元素是镁,钙,锶,钡和/或锌。 IV族元素是锆,钛,锗和/或锡。当百分比为氧化铝的40-60,氧化铅的4.1-16.6,氧化硼的1.0-10.0,二氧化硅的14.0-39.1,氧化镁的0.1-4.8,氧化钙的2.0-10.0、0.05-3时。氧化钡为0,氧化锆为0.01-3.0,氧化钛为0.01-2.5,基材的抗弯强度为3,000 kg / cm.sup。 2以上,层间漏电流为8微安以下。每个绝缘体层具有硼硅酸盐-铅系列玻璃的玻璃体网络的结构,其空隙被氧化铝的晶体占据,并且是通过氧化铝和硼硅酸铅系列的玻璃反应获得的微晶结构。

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