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    • 7. 发明授权
    • Fluorophosphate fluorescent glass capable of exhibiting fluorescence in
the visible region
    • 能够在可见光区域显示荧光的氟磷酸荧光玻璃
    • US5755998A
    • 1998-05-26
    • US754274
    • 1996-11-20
    • Masaaki YamazakiMasaaki OtsukaShinobu NagahamaNaruhito Sawanobori
    • Masaaki YamazakiMasaaki OtsukaShinobu NagahamaNaruhito Sawanobori
    • G02F1/1335C03C3/247C03C4/00C03C4/12C09K11/72C09K11/73G02F1/13357
    • C03C4/12C03C3/247C03C4/0071
    • According to the present invention, there is provided a fluorophosphate fluorescent glass, capable of converting invisible ultraviolet rays into visually observable visible rays with a high efficiency and available for controlling the optical axis of a laser beam such as excimer laser, etc. The feature of this fluorescent glass consists in a fluorophosphate fluorescent glass capable of exhibiting fluorescence in the visible region, having a chemical composition comprising, at least, (I) phosphorus (P), oxygen (O) and fluorine (F), as glass constituting components, and (II) at least one member selected from the group consisting of divalent europium, terbium, samarium and manganese, as a fluorescent agent, the divalent europium being contained as an essential component and at least one of samarium and manganese being contained as an essential component when terbium is contained. In particular, a fluorophosphate fluorescent glass exhibiting a blue fluorescence containing europium as an essential component and a fluorophosphate fluorescent glass exhibiting a white fluorescence containing at least one of samarium and manganese as an essential component are provided.
    • 根据本发明,提供一种能够将不可见的紫外线以高效率转换为视觉可见的可见光并可用于控制激光束如准分子激光等的光轴的氟磷酸盐荧光玻璃。特征在于 该荧光玻璃由能够在可见光区域显示出荧光的氟磷酸盐荧光玻璃构成,具有至少包含(I)磷(P),氧(O)和氟(F))的化学组成作为玻璃构成成分, 和(II)选自由二价铕,铽,钐和锰组成的组中的至少一种作为荧光剂,所含的二价铕作为必需组分,并且包含钐和锰中的至少一种作为必需元素 包含铽时的成分。 特别地,提供了以铕作为必需成分的蓝色荧光的氟磷酸盐荧光玻璃和显示含有钐和锰中的至少一种作为必要成分的白色荧光的氟磷酸盐荧光玻璃。
    • 10. 发明授权
    • Oxide phosphorescent glass capable of exhibiting a long lasting
after-glow and photostimulated luminescence
    • 氧化磷光玻璃能够表现出持久的余辉和光刺激发光
    • US6123872A
    • 2000-09-26
    • US210904
    • 1998-12-16
    • Masaaki YamazakiYoshinori YamamotoNaruhito SawanoboriShinobu Nagahama
    • Masaaki YamazakiYoshinori YamamotoNaruhito SawanoboriShinobu Nagahama
    • G21K4/00C03C3/066C03C3/068C03C3/093C03C3/095C03C4/04C03C4/12C09K11/08C09K11/63C09K11/79G01T1/00C09K11/00
    • C03C4/04C03C3/066C03C3/068C03C4/12C09K11/757C09K11/7755C09K11/778
    • The present invention provides an oxide glass capable of exhibiting a long lasting afterglow and photostimulated phosphorescence, whereby energy can be accumulated by radiation excitation, for example, by .gamma.-rays, X-rays, UV-rays, etc., light emission can be continued for a long time even after stopping the excitation. Furthermore, the long lasting afterglow and photostimulated luminescence oxide glass can be used not only as a phosphorescent material for night illumination or night signal, but also as a material for confirming an infrared laser or controlling an optical axis because of exhibiting photostimulated luminescence by irradiation of infrared rays or visible rays. In addition, this glass is useful for recording or reproducing of .gamma.-rays, X-rays or UV-rays images. This glass material is represented, in term of atoms for making up the glass, by the following chemical composition (mol %):______________________________________ SiO.sub.2 1 to 55% B.sub.2 O.sub.3 1 to 50% (SiO.sub.2 + B.sub.2 O.sub.3 = 20 to 60%) ZnO 30 to 75% Tb.sub.2 O.sub.3 0 to 7% MnO 0 to 2% (Tb.sub.2 O.sub.3 + MnO = 0.01 to 7%) R.sub.2 O 0 to 25% (R: at least one atom selected from Li, Na, K and Cs) R'O 0 to 25% (R': at least one atom selected from Mg, Ca, Sr and Ba) Al.sub.2 O.sub.3 0 to 15% Ga.sub.2 O.sub.3 0 to 15% GeO.sub.2 0 to 20% ZrO.sub.2 0 to 5% Ln.sub.2 O.sub.3 0 to 8% (Ln: at least one atom selected from Y, La, Gd, Yb, Lu, Sm, Dy, Tm and Pr) and Sb.sub.2 O.sub.3 0 to 0.5%. ______________________________________
    • 本发明提供能够显示持久的余辉和光刺激的磷光的氧化物玻璃,由此例如通过γ射线,X射线,紫外线等可以通过辐射激发而积聚能量,可以发光 持续很长时间,即使停止激发。 此外,持久的余辉和光刺激的发光氧化物玻璃不仅可以用作夜间照明或夜间信号的磷光材料,而且可以用作确认红外激光或控制光轴的材料,因为通过照射显示光刺激的发光 红外线或可见光。 此外,这种玻璃可用于记录或再现γ射线,X射线或UV射线图像。 根据以下化学成分(摩尔%)表示玻璃材料:SiO 2 1〜55%-B 2 O 3〜50%(SiO 2 + B 2 O 3 = 20〜60%) - ZnO 30〜75%-Tb 2 O 3〜7%-MnO 0〜2%(Tb 2 O 3 + MnO = 0.01〜7%)-R 2 O 0〜25%(R:至少一种选自Li,Na,K和Cs的原子) - R'O 0〜25%(R':选自Mg,Ca,Sr和Ba中的至少一个原子)-Al 2 O 3 0〜15%-Ga 2 O 0〜15%-GeO 0〜20%-ZrO 2 0〜5 %Ln2O3 0〜8%(Ln:选自Y,La,Gd,-Yb,Lu,Sm,Dy,Tm和Pr中的至少一个原子)和Sb 2 O 3 0〜0.5%。 -