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    • 3. 发明授权
    • Method of preparing barium fluorohalide phosphor
    • 制备卤化砷鎓荧光粉的方法
    • US06361714B1
    • 2002-03-26
    • US09586595
    • 2000-06-02
    • Yasuo IwabuchiChiyuki UmemotoKenji TakahashiKazuhiro Hasegawa
    • Yasuo IwabuchiChiyuki UmemotoKenji TakahashiKazuhiro Hasegawa
    • C09K1100
    • C09K11/7706C09K11/7705
    • A method of preparing a barium fluorohalide phosphor including a mixing step in which phosphor materials are mixed, a firing step in which a resulting mixture of phosphor materials is fired, an annealing step, and a cooling step in which the mixture of phosphor materials is cooled to the ordinary temperature. In the firing step, after the mixture of phosphor materials has been fired at a constant temperature, an atmosphere at the time of the firing is removed while the constant temperature is maintained, and is replaced with an atmosphere different from the atmosphere at the time of the firing, and thereafter, annealing is carried out. In the cooling step, the atmosphere at the time of the firing is removed and replaced with a first different atmosphere, and then first cooling is carried out. Further, the first atmosphere is removed and replaced with a second atmosphere, and then second cooling is carried out. Alternatively, in the cooling step, the atmosphere at the time of the firing is removed and replaced with vacuum or a neutral gas atmosphere, and then cooling is carried out.
    • 一种制备包括混合荧光体材料的混合步​​骤的卤化钡荧光粉的方法,煅烧所得的荧光体材料混合物的烧制步骤,退火步骤和冷却步骤,其中将荧光体材料的混合物冷却 达到常温。 在烧成工序中,将荧光体材料的混合物在恒定温度下烧成后,在保持恒温的同时除去烧成时的气氛,并且在不同于大气的气氛 进行烧成,然后进行退火。 在冷却步骤中,除去烧成时的气氛并用第一不同的气氛代替,然后进行第一次冷却。 此外,除去第一气氛并用第二气氛替换,然后进行第二冷却。 或者,在冷却步骤中,除去烧成时的气氛,用真空或中性气体气体置换,然后进行冷却。
    • 6. 发明授权
    • Radiation image recording and read-out method and apparatus
    • 辐射图像记录和读出方法及装置
    • US4710626A
    • 1987-12-01
    • US883287
    • 1986-07-07
    • Kenji TakahashiChiyuki UmemotoHisatoyo Kato
    • Kenji TakahashiChiyuki UmemotoHisatoyo Kato
    • G03B42/02G01T1/29G03C5/16G03G15/22G21K4/00H01L31/00H01L31/09H04N5/32
    • G21K4/00G01T1/2014G01T1/2016G03C5/16
    • In a radiation image recording and read-out system in which a radiation image is once recorded on a recording material comprising a stimulable phosphor layer, the recording material is then scanned with a laser beam, and light emitted from the recording material is photoelectrically read out to reproduce a visible image, a gas ion laser beam having a wavelength shorter than 600 nm is employed as the laser beam. The recording material is fixed on a supporting material, circulated and reused to record radiation images thereon. The apparatus comprises a mechanism for circulating the recording material with respect to the image read-out section by repeatedly moving the supporting material and the image read-out section with respect to each other, and an erasing apparatus for eliminating the radiation energy remaining in the recording material after the read-out step. The supporting material is an endless belt, a rotatable drum or a plate, and the recording material is a continuous phosphor layer or a phosphor sheet.
    • 在放射线图像记录和读出系统中,其中放射图像被一次记录在包含可刺激的荧光体层的记录材料上,然后用激光束扫描记录材料,并且从记录材料发射的光被光电读出 为了再现可视图像,采用波长短于600nm的气体离子激光束作为激光束。 记录材料固定在支撑材料上,循环并重复使用以在其上记录辐射图像。 该装置包括用于相对于彼此反复移动支撑材料和图像读出部分而使记录材料相对于图像读出部分循环的机构,以及用于消除残留在图像读出部分中的辐射能量的擦除装置 读出步骤后记录材料。 支撑材料是环形带,可旋转的滚筒或板,并且记录材料是连续的荧光体层或荧光体片。
    • 8. 发明授权
    • Phosphor preparation method
    • 荧光粉制备方法
    • US06290873B1
    • 2001-09-18
    • US09471113
    • 1999-12-23
    • Kenji TakahashiChiyuki UmemotoMakoto FunabashiYuji Isoda
    • Kenji TakahashiChiyuki UmemotoMakoto FunabashiYuji Isoda
    • C09K1161
    • C09K11/7757C09K11/7703C09K11/7706C09K11/7718C09K11/7721C09K11/7731C09K11/7734C09K11/7746C09K11/7749C09K11/7758C09K11/7761C09K11/7764
    • There is provided a method for preparing a highly accelerated-phosphorescent phosphor whose erasability and after-image characteristic are both improved. Phosphor materials are mixed together to obtain a mixture, and the mixture of phosphor materials is fired in a furnace having a firing region whose capacity is 2 to 500 L per kilogram of the mixture, at a temperature of 550 to 1000° C. while introducing 1 to 200 ml of oxygen in volume at room temperature per liter capacity of the firing region in the furnace, to thereby prepare a phosphor represented by the following compositional formula (I): (Ba1−a, MIIa)FX.bMI.cMIII.dA:xLn  (I) wherein, MIIa is alkaline earth metal such as Sr, Ca or Mg; MI is alkali metal such as Li, Na or K; MIII is Al, Ga or In; X is Cl, Br or I; Ln is rare earth element such as Ce, Eu or the like; A is a metallic oxide such as Al2O3; and a, b, c, d and x are numerical values within the ranges of 0≦a≦0.3, 0
    • 提供了一种制备高加速磷光体荧光体的方法,其可擦除性和后图像特性均得到改善。 将荧光体材料混合在一起以获得混合物,并将荧光体材料的混合物在550-1000℃的温度下在具有每千克混合物的容量为2至500L的烧制区域的炉中焙烧,同时引入 在室温下每升容量的烧制区域的体积为1〜200ml的氧气,由此制备由以下组成式(I)表示的荧光体:其中,MIIa是诸如Sr,Ca的碱土金属或 镁 MI是碱金属如Li,Na或K; MIII是Al,Ga或In; X是Cl,Br或I; Ln是Ce,Eu等稀土类元素; A是金属氧化物,如Al2O3; 并且a,b,c,d和x是0≤a≤0.3,0
    • 10. 发明授权
    • Method of preparing barium fluoroiodide, iodine-containing barium fluorohalide phosphor, and radiation image conversion panel
    • 制备氟碘酸钡,含碘卤化钡荧光粉和放射线图像转换面板的方法
    • US06444142B1
    • 2002-09-03
    • US09652130
    • 2000-08-31
    • Hiroshi MatsumotoChiyuki UmemotoKazuhiro Hasegawa
    • Hiroshi MatsumotoChiyuki UmemotoKazuhiro Hasegawa
    • C09K400
    • C01F11/20C01P2002/72C09K11/7705G21K2004/06
    • A method of preparing barium fluoroiodide, an iodine-containing barium fluorohalide in which the barium fluoroiodide is used for at least one of materials thereof, and a radiation image conversion panel are provided. In the method of preparing barium fluoroiodide in a suspension preparing step, barium carbonate is added to and mixed with an aqueous solution of hydrogen iodide, such that a molar ratio of the hydrogen iodide to the barium carbonate is 0.5 to 2. A resultant solution is concentrated such that a concentration of barium iodide dissolved in the solution is at least 3.0 mol/l. Then, hydrogen fluoride is added and reacted to generate a precipitate, a rate of addition of the hydrogen fluoride being adjusted such that a molar ratio of the hydrogen fluoride to the barium carbonate added in the suspension preparing step is 0.4 to 0.8 and a theoretical amount of a precipitate of barium fluoroiodide produced during the addition of the hydrogen fluoride is 0.001 to 10 N/min wherein N is an amount of the precipitate of barium fluoroiodide which will finally be obtained. Then, the precipitate is separated.
    • 提供一种制备氟碘酸钡的方法,其中使用其中的至少一种材料使用钡氟代碘鎓的碘鎓卤化物和放射线图像转换面板。 在悬浮液制备步骤中制备氟碘酸钡的方法中,向碘化氢水溶液中加入碳酸钡并与其混合,使得碘化氢与碳酸钡的摩尔比为0.5-2。所得溶液为 浓缩,使得溶解在溶液中的碘化钡的浓度为至少3.0mol / l。 然后,加入氟化氢并反应生成沉淀物,调节氟化氢的添加速度,使得在悬浮液制备步骤中添加的氟化氢与碳酸钡的摩尔比为0.4〜0.8,理论量 在加入氟化氢期间产生的氟代碘酸钡的沉淀物为0.001至10N / min,其中N是最终将获得的碘酸钡沉淀物的量。 然后,分离沉淀物。