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    • 63. 发明申请
    • METHOD FOR DETECTING CONCENTRATION OF PARTICLES AND DEVICE THEREFOR
    • 检测颗粒浓度及其装置的方法
    • US20120242328A1
    • 2012-09-27
    • US13514095
    • 2010-06-15
    • Hidemi UkaiTakashi Fujii
    • Hidemi UkaiTakashi Fujii
    • G01R33/00
    • G01N15/0656G01N33/2835G01N2015/0681
    • A magnetic particle producing part including magnetic and counterpart members in a path of a particle-includable liquid, at least one of the members being moved to press the other member in the liquid, the magnetic member being worn by particles in the liquid to produce magnetic particles; a magnetic particle measuring part positioned in the path same as in the producing part to measure the magnetic particle concentration in the liquid; and a control part converting the concentration of the magnetic particles detected by the measuring part into a concentration of particles in the liquid on the basis of a calibration line representing a correlation preliminarily measured between the concentrations of the magnetic particles and of the particles in the liquid to detect the concentration in the liquid.
    • 一种磁性颗粒产生部件,包括在可颗粒包含的液体的路径中的磁性和对应部件,至少一个部件被移动以挤压液体中的另一个部件,磁性部件被颗粒在液体中磨损以产生磁性 粒子; 位于与生产部分相同的路径中的磁性粒子测量部分,以测量液体中的磁性颗粒浓度; 以及控制部,其基于表示在所述液体中的所述磁性粒子的浓度与所述粒子的浓度之间预先测定的相关性的校准线,将由所述测定部检测出的所述磁性粒子的浓度变换为所述液体中的粒子浓度 以检测液体中的浓度。
    • 65. 发明申请
    • IMAGING DEVICE FOR RECOGNITION AND METHOD OF CONTROLLING THE SAME
    • 用于识别的成像装置及其控制方法
    • US20110285897A1
    • 2011-11-24
    • US13147207
    • 2010-11-26
    • Takashi Fujii
    • Takashi Fujii
    • G06K9/00H04N5/232H04N5/235
    • G03B7/093G03B15/00G06K9/00255G06K9/2027H04N5/23212H04N5/23219H04N5/2353H04N5/238
    • An imaging device for recognition (100) includes an image pickup unit (101) that sequentially generates a plurality of images by shooting an object, a face recognition unit (105) that recognizes, in each of the plurality of images, an object region in which the object is located in the image, a face tracking unit (106) that tracks the object region across the plurality of images, an area calculation unit (109) that calculates an area of the object region, and an exposure control unit (102) that sets a first exposure time for the image pickup unit (101) in the case where the area is smaller than a first threshold, and sets a second exposure time longer than the first exposure time in the case where the area is equal to or larger than the first threshold.
    • 一种用于识别的成像装置(100)包括通过拍摄对象顺序地生成多个图像的图像拾取单元(101),在多个图像中的每一个中识别出多个图像中的对象区域的面部识别单元(105) 对象位于图像中的区域计算单元,用于跟踪多个图像中的对象区域的面部跟踪单元,计算对象区域的面积的区域计算单元,以及曝光控制单元, ),其在所述区域小于第一阈值的情况下为所述图像拾取单元(101)设置第一曝光时间,并且在所述区域等于或等于所述情况下设置比所述第一曝光时间长的第二曝光时间 大于第一阈值。
    • 69. 发明授权
    • Process and apparatus for producing fine particles
    • 用于生产细颗粒的方法和设备
    • US07828999B2
    • 2010-11-09
    • US11574785
    • 2005-09-07
    • Kazuhiro YubutaKeitaroh NakamuraTakashi Fujii
    • Kazuhiro YubutaKeitaroh NakamuraTakashi Fujii
    • B29B9/00
    • C01G23/006B01J19/088B01J2219/0869B01J2219/0871B01J2219/0877B01J2219/0884B01J2219/0898B82Y30/00C01B13/34C01F7/027C01F7/30C01F7/308C01G1/00C01G1/02C01P2004/62C01P2004/64C09C1/407
    • A fine particle producing process introduces a material for producing fine particles into a thermal plasma flame to make a vapor-phase mixture and quenches the vapor-phase mixture to form the fine particles. In the process, the material for producing the fine particles is dispersed or dissolved in a dispersion medium or solvent, preferably containing a combustible material to prepare a dispersion such as a slurry, a colloidal solution or a dissolution solution, the dispersion is made into a form of droplets, or the material for producing the fine particles is dispersed with a carrier gas and a combustible material and the dispersion in a droplet form or the dispersed material is introduced into the thermal plasma flame. In the fine particle producing process and apparatus, a gas of an amount sufficient to quench the vapor-phase mixture is supplied toward a tail of the thermal plasma flame. In the process and apparatus, primary fine particles are introduced into a cyclone to be subjected to cooling and classification and secondary fine particles having a particle size of 100 nm or less which are left upon removal of coarse particles are recovered.
    • 微细粒子的制造方法将用于制造细颗粒的材料引入热等离子体火焰中以形成气相混合物并使气相混合物骤冷以形成微粒。 在此过程中,用于制造细颗粒的材料分散或溶解在优选含可燃材料的分散介质或溶剂中以制备浆料,胶体溶液或溶解溶液等分散体,将其分散成 液滴的形式或用于制造细颗粒的材料用载气和可燃材料分散,并且将液滴形式的分散体或分散的材料引入热等离子体火焰中。 在微粒生成方法和装置中,向热等离子体火焰的尾部供给足以猝灭气相混合物的量的气体。 在该方法和装置中,将初级细颗粒引入旋风分离器中以进行冷却和分级,并回收在除去粗颗粒时残留的粒径为100nm以下的二次细颗粒。