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    • 1. 发明申请
    • METHOD FOR PRODUCING LAMINATED DIELECTRIC MATERIAL
    • 生产层压电介质材料的方法
    • US20100038014A1
    • 2010-02-18
    • US12582003
    • 2009-10-20
    • Satoru TOMENOYasuko OsakiKazuo WatanabeKatsuyoshi Nakayama
    • Satoru TOMENOYasuko OsakiKazuo WatanabeKatsuyoshi Nakayama
    • C03B29/00
    • H01G4/105C03C3/085C03C10/0036C03C10/0045C03C14/004C03C27/06H01B3/087H01G4/1218H05K1/0306H05K3/4611H05K3/4629
    • To provide a method for producing a laminated dielectric material using a stabilized glass.A method for producing a laminated dielectric material wherein the absolute value of the difference in the average linear expansion coefficient at from 50 to 350° C. between any adjacent dielectric layers is at most 15×10−7/° C.; at least one raw material layer before firing, comprises, as represented by mass %, from 50 to 80% of glass powder and from 20 to 50% of alumina powder; said glass powder comprises, as represented by mol %, from 45 to 60% of SiO2, from 2 to 10% of Al2O3, from 10 to 30% of BaO, from 10 to 20% of ZnO, etc.; and each of glass powders contained in two raw material layers adjacent to said raw material layer, comprises, as represented by mol %, from 45 to 55% of SiO2, from 2 to 20% of Al2O3, from 20 to 45% of MgO, etc.; and the glass transition temperature of the latter glass powder is higher by at least 50° C. than that of the former.
    • 提供一种使用稳定化玻璃制造叠层电介质材料的方法。 一种叠层电介质材料的制造方法,其中任何相邻电介质层之间的平均线性膨胀系数在50〜350℃之间的绝对值为15×10 -7 /℃以下。 烧成前的至少一个原料层,以质量%表示50〜80%的玻璃粉末和20〜50%的氧化铝粉末, 所述玻璃粉末以摩尔%表示,含有45〜60%的SiO 2,2〜10%的Al 2 O 3,10〜30%的BaO,10〜20%的ZnO等。 并且与所述原料层相邻的两个原料层中含有的玻璃粉末,以摩尔%表示,含有45〜55%的SiO 2,2〜20%的Al 2 O 3,20〜45%的MgO, 等等。; 并且后者玻璃粉末的玻璃化转变温度比前者高至少50℃。
    • 2. 发明申请
    • OPTICAL GLASS
    • 光学玻璃
    • US20100304950A1
    • 2010-12-02
    • US12790141
    • 2010-05-28
    • Satoru TOMENOYuki Kondo
    • Satoru TOMENOYuki Kondo
    • C03C3/068
    • C03C3/068
    • The present invention relates to an optical glass containing, in terms of mass % on the basis of oxides, B2O3: 10 to 20%, SiO2: 0.5 to 12%, ZnO: 5 to 19%, Ta2O5: 2.5 to 17%, Li2O: 0.2 to 3%, ZrO2: 0.6 to 4.9%, WO3: 1 to 20%, La2O3: 25 to 50%, Gd2O3: 0 to 13%, and Y2O3: 0.2 to 20%, provided that La2O3+Gd2O3+Y2O3 is 35 to 60%, in which the optical glass does not substantially contain Nb2O5, and has a refractive index (nd) of 1.82 to 1.86, an Abbe's number (νd) of 37 to 44 and a glass transition point (Tg) of 630° C. or lower.
    • 本发明涉及以氧化物为基准的质量%B 2 O 3:10〜20%,SiO 2:0.5〜12%,ZnO:5〜19%,Ta 2 O 5:2.5〜17%,Li 2 O :0.2〜3%,ZrO 2:0.6〜4.9%,WO 3:1〜20%,La 2 O 3:25〜50%,Gd 2 O 3:0〜13%,Y 2 O 3:0.2〜20% 35〜60%,其中光学玻璃基本上不含有Nb 2 O 5,折射率(nd)为1.82〜1.86,阿贝数(n n = d)为37〜44,玻璃化转变温度(Tg)为 630℃以下。
    • 4. 发明授权
    • Optical glass
    • 光学玻璃
    • US08377835B2
    • 2013-02-19
    • US12790141
    • 2010-05-28
    • Satoru TomenoYuki Kondo
    • Satoru TomenoYuki Kondo
    • C03C3/066
    • C03C3/068
    • The present invention relates to an optical glass containing, in terms of mass % on the basis of oxides, B2O3: 10 to 20%, SiO2: 0.5 to 12%, ZnO: 5 to 19%, Ta2O5: 2.5 to 17%, Li2O: 0.2 to 3%, ZrO2: 0.6 to 4.9%, WO3: 1 to 20%, La2O3: 25 to 50%, Gd2O3: 0 to 13%, and Y2O3: 0.2 to 20%, provided that La2O3+Gd2O3+Y2O3 is 35 to 60%, in which the optical glass does not substantially contain Nb2O5, and has a refractive index (nd) of 1.82 to 1.86, an Abbe's number (νd) of 37 to 44 and a glass transition point (Tg) of 630° C. or lower.
    • 本发明涉及以氧化物为基准的质量%B 2 O 3:10〜20%,SiO 2:0.5〜12%,ZnO:5〜19%,Ta 2 O 5:2.5〜17%,Li 2 O :0.2〜3%,ZrO 2:0.6〜4.9%,WO 3:1〜20%,La 2 O 3:25〜50%,Gd 2 O 3:0〜13%,Y 2 O 3:0.2〜20% 35〜60%,其中光学玻璃基本上不含有Nb 2 O 5,折射率(nd)为1.82〜1.86,阿贝数(n n = d)为37〜44,玻璃化转变温度(Tg)为 630℃以下。