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    • 1. 发明授权
    • Glass composition for an electric lamp, stem and bulb for an electric lamp using the same, and electric lamp using the same
    • 用于使用其的电灯的电灯,灯杆和灯泡的玻璃组合物,以及使用其的电灯
    • US06812175B2
    • 2004-11-02
    • US10232343
    • 2002-08-30
    • Akira KawaseTomoko AtagiMasanobu Ito
    • Akira KawaseTomoko AtagiMasanobu Ito
    • C03C3078
    • C03C3/091C03C3/078C03C3/089
    • To suppress breakage of glass for an electric lamp in a process in which the glass that has already been formed is processed further, a glass composition for an electric lamp is provided. The glass composition contains, expressed in mol %, 70 to 85% of SiO2, 12 to 17% of R2O, and 2 to 8.5% of MO (where R represents at least one selected from Li, Na and K, and M represents at least one selected from Mg, Ca, Sr, Ba, Zn and Pb). In the glass composition, the respective contents of CaO, MgO, BaO and SrO satisfy the relationship, CaO+MgO>BaO+SrO. The glass composition has a brittleness index value B determined by the Vickers hardness test of 7,000 m−1/2. Preferably, the contents of SrO and BaO are 0 to 0.5% and 0.1 to 1%, respectively. More preferably, the respective contents of K2O and Na2O satisfy the relationship, K2O>Na2O.
    • 在进一步处理已经形成的玻璃的工序中,为了抑制电灯的玻璃破裂,提供了一种电灯用玻璃组合物。 玻璃组合物含有以摩尔%表示的为70〜85%的SiO 2,12〜17%的R 2 O和2〜8.5%的MO(其中R表示选自Li,Na和K中的至少一种,M表示 至少一种选自Mg,Ca,Sr,Ba,Zn和Pb)。 在玻璃组成中,CaO,MgO,BaO和SrO的含量满足CaO + MgO> BaO + SrO的关系。 玻璃组合物具有通过维氏硬度试验确定的脆性指数值B,其为7000m -1/2。 优选地,SrO和BaO的含量分别为0〜0.5%和0.1〜1%。 更优选地,K 2 O和Na 2 O的相应含量满足K 2 O> Na 2 O的关系。
    • 4. 发明授权
    • Low melting high lithia glass compositions and methods
    • 低熔点高锂钛玻璃组合物和方法
    • US06624103B2
    • 2003-09-23
    • US09850777
    • 2001-05-08
    • Carol M. JantzenJohn B. PickettConnie A. Cicero-HermanJames C. Marra
    • Carol M. JantzenJohn B. PickettConnie A. Cicero-HermanJames C. Marra
    • C03C3078
    • C03C1/002C03C3/064C03C3/087C03C3/091C03C3/105Y10S588/901
    • The invention relates to methods of vitrifying waste and for lowering the melting point of glass forming systems by including lithia formers in the glass forming composition in significant amounts, typically from about 0.16 wt % to about 11 wt %, based on the total glass forming oxides. The lithia is typically included as a replacement for alkali oxide glass formers that would normally be present in a particular glass forming system. Replacement can occur on a mole percent or weight percent basis, and typically results in a composition wherein lithia forms about 10 wt % to about 100 wt % of the alkali oxide glass formers present in the composition. The present invention also relates to the high lithia glass compositions formed by these methods. The invention is useful for stabilization of numerous types of waste materials, including aqueous waste uranium oxides The decrease in melting point achieved by the present invention desirably prevents volatilization of hazardous or radioactive species during vitrification.
    • 本发明涉及玻璃化废物的方法以及通过在玻璃形成组合物中将钛石形成物以相当于所述总玻璃形成氧化物的量计,通常为约0.16重量%至约11重量% 。 锂二氧化物通常包括作为通常存在于特定玻璃成形体系中的碱性氧化物玻璃成型体的替代物。 替代可以以摩尔百分数或重量百分数计算,并且通常产生组合物,其中锂化物形成组合物中存在的碱金属氧化物玻璃形成物的约10重量%至约100重量%。 本发明还涉及通过这些方法形成的高锂钛玻璃组合物。 本发明可用于稳定许多类型的废料,包括含水废水铀氧化物。本发明实现的熔点的降低期望防止玻璃化过程中有害或放射性物质的挥发。
    • 5. 再颁专利
    • Flat panel display
    • 平板显示器
    • USRE37920E1
    • 2002-12-03
    • US09060741
    • 1998-04-15
    • Dawne M. MoffattDean V. Neubauer
    • Dawne M. MoffattDean V. Neubauer
    • C03C3078
    • C03C3/085C03C3/091G02F2001/133337
    • A flat panel display comprising an aluminosilicate glass panel that exhibits a strain point higher than 640° C., a weight loss less than 20 mg/cm2 after immersion for 24 hours in an aqueous 5% by weight HCl solution at 95° C., a CTE in the range of 31-57×10−7/° C., is nominally free of alkali metal oxides and has a composition consisting essentially of, as calculated in percent by weight on an oxide basis, 49-67% SiO2, at least 6% Al2O3, the Al2O3 being 6-14% in conjunction with 55-67% SiO2 and 16-23% in conjunction with 49-58% SiO2, SiO2+Al2O3>68%, 0-15% B2O3, at least one alkaline earth metal oxide selected from the group consisting of, in the proportions indicated, 0-21% BaO, 0-15% SrO, 0-18% CaO, 0-8% MgO and 12-30% BaO+CaO+SrO+MgO.
    • 一种平板显示器,其包括呈现高于640℃的应变点的铝硅酸盐玻璃面板,在95℃的5重量%HCl水溶液中浸渍24小时后的重量损失小于20mg / cm 2, 在31-57×10-7 /℃的范围内的CTE名义上不含碱金属氧化物,并且其组成基本上由以氧化物为基准计算的百分比为49-67%的SiO 2,至少 6%Al2O3,Al2O3为6-14%,结合55-67%的SiO2和16-23%,与49-58%的SiO2,SiO2 + Al2O3> 68%,0-15%的B2O3,至少一种碱 选自所选比例为0-21%BaO,0-15%SrO,0-18%CaO,0-8%MgO和12-30%BaO + CaO + SrO + MgO的地球金属氧化物 。
    • 6. 发明授权
    • Dielectric forming material and dielectric forming paste for use in plasma display panel
    • 用于等离子体显示面板的电介质形成材料和电介质形成膏
    • US06309992B1
    • 2001-10-30
    • US09497452
    • 2000-02-03
    • Yoshiro MoritaHiroyuki OshitaMasahiko OhjiKazuo Hadano
    • Yoshiro MoritaHiroyuki OshitaMasahiko OhjiKazuo Hadano
    • C03C3078
    • C03C17/04C03C8/04C03C8/10H01J2211/38
    • A dielectric forming material for use as a transparent dielectric layer formed on an inside surface of a front glass substrate in a plasma display panel comprises powder of colored glass. The powder of colored glass comprises a base glass and coloring ingredients added thereto. The coloring ingredients comprise CoO and NiO. The powder of colored glass provides a glass film having a spectral transmittance T%(460 nm) of 50-75% at the wavelength of 460 nm or a glass film having a spectral transmittance T%(460 nm) higher than a spectral transmittance T%(550 nm) at the wavelength of 550 nm and a spectral transmittance T%(620 nm) at the wavelength of 620 nm. The glass film is formed by applying the colored glass powder onto a soda lime glass plate having a thickness of 1.7 mm and by baking the colored glass powder to form a baked film having a thickness of 20-40 &mgr;m as the glass film.
    • 在等离子体显示面板的前面玻璃基板的内表面上形成的用作透明电介质层的电介质形成材料包括有色玻璃粉末。 有色玻璃的粉末包括基础玻璃和添加着色成分。 着色成分包括CoO和NiO。 彩色玻璃粉末提供波长为460nm的光谱透射率T%(460nm)为50-75%的玻璃膜或具有高于光谱透射率T的光谱透射率T%(460nm)的玻璃膜 波长550nm处的%(550nm)波长和波长620nm的光谱透射率T%(620nm)。 通过将彩色玻璃粉末涂布在厚度为1.7mm的钠钙玻璃板上,通过烘烤着色玻璃粉末形成厚度为20〜40μm的烘烤膜作为玻璃膜而形成玻璃膜。
    • 9. 发明授权
    • Funnel glass for a cathode ray tube
    • 用于阴极射线管的漏斗玻璃
    • US06251811B1
    • 2001-06-26
    • US09343522
    • 1999-06-30
    • Osamu YanagisawaYuichi KurokiRyousuke Akagi
    • Osamu YanagisawaYuichi KurokiRyousuke Akagi
    • C03C3078
    • C03C3/105C03C3/102C03C4/087H01J2229/86
    • A funnel glass containing PbO for a cathode ray tube, wherein when the composition is represented by wt % based on oxides, the content of SrO is at least 1.0 wt %, the content of BaO is at least 1.0 wt %, and the ratio of the content of PbO to the total amount of PbO, SrO, BaO, CaO and MgO, is at most 0.69, and whereby the lead elution A of the glass as measured by the following method A is at most 1.0 &mgr;g/cm2, and the X-ray absorption coefficient at a wavelength of 0.6 Å is at least 40 cm−1: Method A: The glass is immersed in distilled and deionized water at 90° C. for 20 hours, whereupon the glass is taken out, and the amount of lead in the distilled and deionized water is measured by inductively coupled plasma emission spectrometry, and the measured value of the amount of lead is divided by the surface area of the glass, and the product is taken as the lead elution A.
    • 含有用于阴极射线管的PbO的漏斗玻璃,其中,当组合物以氧化物为基准的重量%表示时,SrO的含量为至少1.0重量%,BaO的含量为至少1.0重量% PbO,SrO,BaO,CaO和MgO的总量的PbO含量为0.69以下,由以下方法A测定的玻璃的铅洗脱A为1.0mug / cm 2以下, 波长为0.6的X射线吸收系数为至少40cm -1:方法A:将玻璃在90℃下浸入蒸馏水和去离子水中20小时,取出玻璃, 通过电感耦合等离子体发射光谱法测量蒸馏水和去离子水中的铅,将铅的测量值除以玻璃的表面积,将产物作为铅洗脱液A.