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    • 1. 发明授权
    • Phosphor sheet for radiation detector, radiation detector and apparatus for radiographic equipment
    • 用于放射线检测器的荧光板,用于射线照相设备的放射线检测器和设备
    • US07675039B2
    • 2010-03-09
    • US10528661
    • 2003-09-25
    • Eiji OyaizuMasami Okamura
    • Eiji OyaizuMasami Okamura
    • G01T1/20
    • G21K4/00C09K11/7767C09K11/7784
    • A phosphor sheet 8 for a radiation detector used by being attached to a photoelectric conversion film 20 of a radiation detector 4 includes a sheet-shaped support 11, and a phosphor layer 12 provided thereon. The phosphor layer 12 contains a europium-activated rare earth oxysulfide phosphor having a europium concentration in a range of 0.01 to 3.5 mol %. The radiation detector 4 includes the phosphor sheet 8 being irradiated with radiation rays transmitted through a specimen and converting the radiation rays into light, a photoelectric conversion film 20 for converting the light from the phosphor sheet 8 into electric charges, and a charge information reading section 30 for reading out the charges generated on the photoelectric conversion film 20 for each of a plurality of pixels 31.
    • 用于通过安装在放射线检测器4的光电转换膜20上的放射线检测器的荧光体片8包括片状支撑体11和设置在其上的荧光体层12。 荧光体层12含有铕激活的稀土氧硫化物荧光体,其铕浓度为0.01〜3.5摩尔%。 放射线检测器4包括用透射通过样本的放射线照射荧光体片8并将辐射线变换成光的光电转换膜20,用于将来自荧光体片8的光转换成电荷的光电转换膜20以及电荷信息读取部 30,用于读出对于多个像素31中的每一个在光电转换膜20上产生的电荷。
    • 4. 发明申请
    • Phosphor sheet for radiation detector, radiation detector employment it and equipment for detecting radiation
    • 用于放射线检测器的荧光板,辐射探测器及其用于检测辐射的设备
    • US20060054830A1
    • 2006-03-16
    • US10528661
    • 2003-09-25
    • Eiji OyaizuMasami Okamura
    • Eiji OyaizuMasami Okamura
    • G01T1/20H05B33/00
    • G21K4/00C09K11/7767C09K11/7784
    • A phosphor sheet 8 for a radiation detector used by being attached to a photoelectric conversion film 20 of a radiation detector 4 includes a sheet-shaped support 11, and a phosphor layer 12 provided thereon. The phosphor layer 12 contains a europium-activated rare earth oxysulfide phosphor having a europium concentration in a range of 0.01 to 3.5 mol %. The radiation detector 4 includes the phosphor sheet 8 being irradiated with radiation rays transmitted through a specimen and converting the radiation rays into light, a photoelectric conversion film 20 for converting the light from the phosphor sheet 8 into electric charges, and a charge information reading section 30 for reading out the charges generated on the photoelectric conversion film 20 for each of a plurality of pixels 31.
    • 用于通过安装在放射线检测器4的光电转换膜20上的放射线检测器的荧光体片8包括片状支撑体11和设置在其上的荧光体层12。 荧光体层12含有铕激活的稀土氧硫化物荧光体,其铕浓度为0.01〜3.5摩尔%。 放射线检测器4包括用透射通过样本的放射线照射荧光体片8并将辐射线变换成光的光电转换膜20,用于将来自荧光体片8的光转换成电荷的光电转换膜20以及电荷信息读取部 30,用于读出对于多个像素31中的每一个在光电转换膜20上产生的电荷。
    • 8. 发明授权
    • Cold-accumulating material and cold-accumulating refrigerator using the same
    • 蓄冷材料和使用其的冷堆冰箱
    • US06334909B1
    • 2002-01-01
    • US09331157
    • 1999-06-17
    • Masami OkamuraTomohisa AraiKeisuke Hashimoto
    • Masami OkamuraTomohisa AraiKeisuke Hashimoto
    • H01F1053
    • F25B9/14C09K5/14F25B2309/003H01F1/0009H01F1/015
    • A cold accumulating material comprising magnetic substance expressed by the general formula: RCu1−xM1+x  (1) wherein R denotes at least one of rare earth element selected from the group consisting of Y, La, Ce, Pr, Nd, Pm, Sm, Eu, Gd, Tb, Dy, Er, Ho, Tm and Yb, M denotes at least one element selected from the group consisting of Ag, Au, Al, Ga, In, Ge, Sn, Sb, Si, Bi, Ni, Pd, Pt, Zn, Co, Rh, Ir, Mn, Fe, Ru, Cr, Mo, W, V, Nb, Ta, Ti, Zr and Hf, and wherein Ni and Ge are not simultaneously selected, and x in atomic ratio satisfies a relation: −0.95≧x≧0.90. According to the above structure, there can be provided a cold accumulating material and a refrigerator using the cold accumulating material capable of exhibiting a remarkable and stable refrigerating performance at an extremely low temperature for a long time.
    • 一种由以下通式表示的磁性物质的蓄冷材料:其中R表示选自Y,La,Ce,Pr,Nd,Pm,Sm,Eu,Gd,Tb,Dy中的至少一种稀土元素 ,Er,Ho,Tm和Yb,M表示选自Ag,Au,Al,Ga,In,Ge,Sn,Sb,Si,Bi,Ni,Pd,Pt,Zn,Co中的至少一种元素 ,Rh,Ir,Mn,Fe,Ru,Cr,Mo,W,V,Nb,Ta,Ti,Zr和Hf,并且其中不同时选择Ni和Ge,原子比为x满足关系:-0.95 > = x> = 0.90。 根据上述结构,可以提供一种使用能够在极低温度下长期显现出显着且稳定的制冷性能的蓄冷材料的蓄冷材料和冷藏库。
    • 9. 发明授权
    • Regenerator material for extremely low temperatures and regenerator for
extremely low temperatures using the same
    • 用于极低温度的再生器材料和使用其的极低温度的再生器
    • US6042657A
    • 2000-03-28
    • US793261
    • 1997-02-21
    • Masami OkamuraNaoyuki Sori
    • Masami OkamuraNaoyuki Sori
    • F25B9/14H01F1/055
    • F25B9/14F25B2309/003
    • A cold heat accumulating material for extremely low temperatures which comprises cold heat accumulating granular bodies in which a rate of particles, which are destroyed when a compressive force of 5 MPa is applied thereto by a mechanical strength evaluation die, out of the magnetic cold heat accumulating particles constituting the magnetic cold heat accumulating granular bodies is not than 1 wt. %. In this magnetic cold heat accumulating granular bodies, a rate of magnetic cold heat accumulating particles having more than 1.5 form factor R expressed by L2/4.pi.A, wherein L represents a circumferential length of a projected image of each magnetic cold heat accumulating particle, and A a real of the projected image, is not more than 5%. Such a cold heat accumulating material for extremely low temperatures is capable of providing excellent mechanical properties with respect to mechanical vibration with a high reproducibility. A cold heat accumulator for extremely low temperatures is formed by filling a cold heat accumulating container with a cold heat accumulating material for extremely low temperatures comprising the above-mentioned magnetic cold heat accumulating granular bodies. Such a cold heat accumulator for extremely low temperatures can display excellent performance for a long period of time.
    • PCT No.PCT / JP95 / 01653 Sec。 371日期1997年2月21日 102(e)日期1997年2月21日PCT提交1995年8月22日PCT公布。 出版物WO96 / 06315 日本特开1996年2月29日是用于极低温度的冷热蓄热材料,其特征在于,具有冷堆积粒状体,其中,当通过机械强度评价模具施加压力为5MPa时被破坏的颗粒的速度从 构成磁性冷蓄热颗粒体的磁性冷累积粒子不大于1重量%。 %。 在这种磁性冷积热颗粒体中,具有由L + E,fra 2/4 + EE pi A表示的具有大于1.5形状因子R的磁性冷累积颗粒的速率,其中L表示投影图像的周长 每个磁性冷积聚粒子,A是投影图像的实数,不大于5%。 这种用于极低温度的冷累积材料能够以高再现性提供相对于机械振动的优异的机械性能。 通过用包含上述磁性冷蓄热颗粒体的极低温度的冷蓄热材料填充冷蓄热容器来形成极低温度的冷热蓄热器。 这种用于极低温度的冷热蓄热器可以长时间显示出优异的性能。