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    • 3. 发明申请
    • HIGH-LEAD CONTENT CRYSTAL GLASS
    • 高铅内含水晶玻璃
    • WO2010142256A3
    • 2011-04-14
    • PCT/CZ2010000068
    • 2010-06-09
    • PRECIOSA ASKORENOVSKY JANSAZANOVA KVETAVAVRENA JIRI
    • KORENOVSKY JANSAZANOVA KVETAVAVRENA JIRI
    • C03C3/102A44C17/00C03C4/00
    • C03C3/102C03C4/0028
    • High-lead content crystal glass shows with advantage the refraction index higher than 1.58, high light transmission, increased mechanical solidity and chemical resistance is suitable, especially, for the production and refinement of glass jewellery products, decorative and utility objects, including chandelier trimmings and semi-finished products. This glass contains, presented in % wt., 48 to 53 % of silica SiO2, 30 to 33 % of lead monoxide PbO, 10 to 13 % of the sum of potassium oxide and sodium oxide K2O + Na2O, 1 to 3 % of calcium oxide CaO, 0.5 to 1 % of zinc oxide ZnO, 0.5 to 1 % of boron trioxide B2O3, less than 0.3 % of barium monoxide BaO, less than 0.3% of aluminium oxide AI2O3, 0.2 to 0.5 % of antimony trioxide Sb2O3, 0.007 to 0.01 % of oxides of iron.
    • 高铅含量水晶玻璃的折射指数高于1.58,透光率高,机械坚固性和耐化学腐蚀性优良,特别适用于玻璃珠宝产品,装饰和实用物品的生产和精制,包括吊灯饰面和 半成品。 该玻璃含有以重量%计的二氧化硅SiO 2为48〜53%,一氧化铅PbO为30〜33%,氧化钾和氧化钾K 2 O + Na 2 O为10〜13%,钙为1〜3% 氧化物CaO,0.5〜1%的氧化锌ZnO,0.5〜1%的三氧化硼B 2 O 3,少于0.3%的一氧化钡BaO,小于0.3%的氧化铝Al 2 O 3,0.2〜0.5%的三氧化锑Sb 2 O 3,0.007〜 0.01%的铁氧化物。
    • 4. 发明申请
    • HIGH-LEAD CONTENT GLASS
    • 高铅玻璃
    • WO2010142256A2
    • 2010-12-16
    • PCT/CZ2010/000068
    • 2010-06-09
    • PRECIOSA A.S.KOŘENOVSKÝ, JanSÁZANOVÁ, KvětaVavřena Jiři
    • KOŘENOVSKÝ, JanSÁZANOVÁ, KvětaVavřena Jiři
    • C03C3/102
    • C03C3/102C03C4/0028
    • High-lead content crystal glass shows with advantage the refraction index higher than 1.58, high light transmission, increased mechanical solidity and chemical resistance is suitable, especially, for the production and refinement of glass jewellery products, decorative and utility objects, including chandelier trimmings and semi-finished products. This glass contains, presented in % wt., 48 to 53 % of silica SiO 2 , 30 to 33 % of lead monoxide PbO, 10 to 13 % of the sum of potassium oxide and sodium oxide K 2 O + Na 2 O, 1 to 3 % of calcium oxide CaO, 0.5 to 1 % of zinc oxide ZnO, 0.5 to 1 % of boron trioxide B 2 O 3 , less than 0.3 % of barium monoxide BaO, less than 0.3% of aluminium oxide AI 2 O 3 , 0.2 to 0.5 % of antimony trioxide Sb 2 O 3 , 0.007 to 0.01 % of oxides of iron.
    • 高铅含量水晶玻璃的折射指数高于1.58,透光率高,机械坚固性和耐化学腐蚀性优良,特别适用于玻璃珠宝产品,装饰和实用物品的生产和精制,包括吊灯饰面和 半成品。 该玻璃含有以重量%计的二氧化硅SiO 2为48〜53%,一氧化铅PbO为30〜33%,氧化钾和氧化钾K 2 O + Na 2 O为10〜13%,钙为1〜3% 氧化物CaO,0.5〜1%的氧化锌ZnO,0.5〜1%的三氧化硼B 2 O 3,少于0.3%的一氧化钡BaO,小于0.3%的氧化铝Al 2 O 3,0.2〜0.5%的三氧化锑Sb 2 O 3,0.007〜 0.01%的铁氧化物。
    • 5. 发明申请
    • SCINTILLATION DETECTOR
    • SCINTILLATION检测器
    • WO1995004289A1
    • 1995-02-09
    • PCT/CZ1994000020
    • 1994-08-03
    • PRECIOSA A.S.DE NOTARISTEFANI, FrancescoBLAZEK, KarelMALY', Petr
    • PRECIOSA A.S.
    • G01T01/202
    • G01T1/202G01T1/2002G01T1/2018
    • The compound scintillation detector (1) with high space and time resolution with scintillation elements (8a - 8e) are created by single crystals of ytrite-aluminium garnet both with ingredient of cerium with polished surface. The input surfaces (9a - 9e) and the bases (10a - 10e) for input of scintillation radiation are created on the opposite ends of scintillation elements (8a - 8e). The level of reflection of dielectric reflecting layers for a light emitted by scintillation elements (8a to 8e), incidenced on the reflecting layers under the angle of incidence within a range 0 to 45 DEG is higher than 50 %. The reflecting layers are created by a deposition and followed chemical-thermal processing. The bases (10a - 10e) for input of scintillation light have anti-reflecting layers on which a light is incidenced under the angle within the range for 0 to 45 DEG . The input surfaces (9a - 9e) of scintillation elements (8a - 8e) are advantageously created by dielectric interference or diffusion reflecting layer with a thickness up to 5 mu m. The effective optical separation of particular scintillation elements (8a - 8e) is advantageously realized by light-tight layer created by metal deposition. The considerably compact variant of the detector (1) is reached by a filler. The optical evaluation equipment (4) connected with the basis (10a - 10e) is created by photomultiplier with high space resolution.
    • 具有闪烁元件(8a-8e)的高空间和时间分辨率的复合闪烁检测器(1)由具有抛光表面的铈成分的yiteite-Aluminium石榴石的单晶产生。 在闪烁元件(8a-8e)的相对端产生用于输入闪烁辐射的输入表面(9a-9e)和基座(10a-10e)。 由入射角在0〜45°范围内的反射层发射的闪烁元件(8a〜8e)发出的光的介质反射层的反射水平高于50%。 通过沉积和随后的化学热处理产生反射层。 用于输入闪烁光的基座(10a-10e)具有防反射层,在该反射层上在0至45°的范围内的角度上发生光。 闪烁元件(8a-8e)的输入表面(9a-9e)有利地由厚度达5微米的介电干涉或扩散反射层产生。 特别的闪烁元件(8a-8e)的有效光学分离有利地通过由金属沉积产生的不透光层来实现。 通过填料达到检测器(1)的相当紧凑的变型。 与基准(10a-10e)连接的光学评估设备(4)由具有高空间分辨率的光电倍增管产生。