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    • 5. 发明授权
    • Nondestructive identification method and nondestructive identification device
    • 非破坏性识别方法和非破坏性识别装置
    • US08363781B2
    • 2013-01-29
    • US12597072
    • 2008-04-23
    • Masayo KatoKoichi NittohHitoshi SakaiChikara KonagaiKatsumi Hosaka
    • Masayo KatoKoichi NittohHitoshi SakaiChikara KonagaiKatsumi Hosaka
    • G01N23/06G01N23/04G06K9/00
    • G01N23/10G01N2223/302G01N2223/626
    • A nondestructive identification device includes: a radiation source 1 irradiating an x-ray 2 to a standard sample 5 made of a known material and a sample 3; a sensor 4 detecting a radiation ray having transmitted the standard sample 5 and the sample 3; a signal processing device 7 converting a signal of the sensor 4 into an image; an image processing device 8 which performs adjustment on an entire second image to make a luminance value of a part of the standard sample 5 in the obtained image or a relation between the luminance value and a thickness of the standard sample 5 in a first image where the energy of the radiation source 1 is first energy be the same as that in the second image where the energy of the radiation source 1 is second energy, and which performs a computation processing to take a difference or a ratio between the adjusted second image and the first image; and a display device 9 displaying an image.
    • 非破坏性识别装置包括:将辐射源1照射到由已知材料制成的标准样品5和样品3的x射线2; 检测发射了标准样品5和样品3的放射线的传感器4; 信号处理装置7,将传感器4的信号转换为图像; 图像处理装置8,对第一图像进行整个第二图像的调整,以使得所获得的图像中的标准样本5的一部分的亮度值或标准样本5的亮度值与厚度之间的关系, 辐射源1的能量是第一能量与第二图像中的能量相同,其中辐射源1的能量是第二能量,并且其执行计算处理以获得调整后的第二图像和 第一张图片; 以及显示图像的显示装置9。
    • 6. 发明申请
    • NONDESTRUCTIVE IDENTIFICATION METHOD AND NONDESTRUCTIVE IDENTIFICATION DEVICE
    • 非结构识别方法和非结构识别装置
    • US20100119037A1
    • 2010-05-13
    • US12597072
    • 2008-04-23
    • Masayo KatoKoichi NittohHitoshi SakaiChikara KonagaiKatsumi Hosaka
    • Masayo KatoKoichi NittohHitoshi SakaiChikara KonagaiKatsumi Hosaka
    • G01N23/06G01N23/04G06K9/00
    • G01N23/10G01N2223/302G01N2223/626
    • A nondestructive identification device includes: a radiation source 1 irradiating an x-ray 2 to a standard sample 5 made of a known material and a sample 3; a sensor 4 detecting a radiation ray having transmitted the standard sample 5 and the sample 3; a signal processing device 7 converting a signal of the sensor 4 into an image; an image processing device 8 which performs adjustment on an entire second image to make a luminance value of a part of the standard sample 5 in the obtained image or a relation between the luminance value and a thickness of the standard sample 5 in a first image where the energy of the radiation source 1 is first energy be the same as that in the second image where the energy of the radiation source 1 is second energy, and which performs a computation processing to take a difference or a ratio between the adjusted second image and the first image; and a display device 9 displaying an image.
    • 非破坏性识别装置包括:将辐射源1照射到由已知材料制成的标准样品5和样品3的x射线2; 检测发射了标准样品5和样品3的放射线的传感器4; 信号处理装置7,将传感器4的信号转换为图像; 图像处理装置8,对第一图像进行整个第二图像的调整,以使得所获得的图像中的标准样本5的一部分的亮度值或标准样本5的亮度值与厚度之间的关系, 辐射源1的能量是第一能量与第二图像中的能量相同,其中辐射源1的能量是第二能量,并且其执行计算处理以获得调整后的第二图像和 第一张图片; 以及显示图像的显示装置9。
    • 9. 发明授权
    • Radiation discriminative measuring apparatus and radiation discriminative measuring method
    • 辐射鉴别测量仪和辐射鉴别测量方法
    • US06313465B1
    • 2001-11-06
    • US09239967
    • 1999-01-29
    • Koichi NittohTakeshi TakaharaYukihiro FukutaChikara Konagai
    • Koichi NittohTakeshi TakaharaYukihiro FukutaChikara Konagai
    • G01T124
    • G01T7/00G01T1/2008
    • A radiation discriminative measurement is performed by using a radiation discriminative measuring apparatus which comprises a radiation source for radiating radiations, first, second and third scintillators disposed in a region which is irradiated with the radiations radiated from the radiation source, and an image pickup means to deal with the light beams emitted from the first, second and third scintillators and the discrimination measurement includes the steps of arranging the first, second and third scintillators in a region which is irradiated with the radiations radiated from the radiation source, causing the first scintillator to respond to type A, type B and type C radiations radiated from the radiation source and to emit alight beam in a first wavelength region, causing the second scintillator to respond to type B and type C radiations which pass through the first scintillator so as to to emit a light beam in a second wavelength region, and causing the third scintillator to respond to a type C radiation which passes through the third scintillator so as to emit a light beam in a third wavelength region which is different from said first and second wavelength regions. The data of the scintillators are corrected in accordance with the wavelengths and the measurement of radiations according to the type thereof is discriminated and simultaneously measured.
    • 辐射鉴别测量通过使用辐射鉴别测量装置来执行,所述辐射鉴别测量装置包括放射辐射的辐射源,第一,第二和第三闪烁体,其被布置在辐射从辐射源辐射的辐射的区域中;以及图像拾取装置, 处理从第一,第二和第三闪烁体发射的光束,并且鉴别测量包括以下步骤:将第一,第二和第三闪烁体布置在辐射从辐射源辐射的辐射的区域中,使第一闪烁体 对从辐射源辐射的A型,B型和C型辐射进行响应,并在第一波长区域发射光束,使得第二闪烁体响应通过第一闪烁器的B型和C型辐射,以便 在第二波长区域中发射光束,并使第三闪烁体重新开始 涉及通过第三闪烁体的C型辐射,以便在与所述第一和第二波长区域不同的第三波长区域中发射光束。 闪烁体的数据根据​​波长进行校正,并且根据其类型对辐射的测量进行鉴别和同时测量。