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    • 1. 发明授权
    • Hopper gate opening and closing mechanism
    • 料斗开门机构
    • US09523601B2
    • 2016-12-20
    • US14009496
    • 2011-04-05
    • Takayuki NagaiKoji Morimoto
    • Takayuki NagaiKoji Morimoto
    • G01G19/393G01G13/00
    • G01G19/393G01G13/006Y10T74/18296
    • A mechanism for opening and closing a hopper gate of the present invention, which is used in a combination weigher which performs combination calculation based on weights of objects, to find a combination in which a total of the weights of the objects falls within an allowable range with respect to a target weight, comprises an actuator (31) for generating a driving force for opening and closing the hopper gate (14A); a transmission mechanism for transmitting the driving force to the hopper gate (14A); a detecting device (60) capable of detecting an original point of a rotary shaft of the transmission mechanism, the original point corresponding to a position in which the hopper gate (14A) is closed; and a controller (18) capable of receiving an output signal of the detecting device (60).
    • 一种用于打开和关闭本发明的料斗门的机构,其用于基于对象的重量执行组合计算的组合秤中,以找到其中物体的总重量落在允许范围内的组合 相对于目标重量,包括用于产生用于打开和关闭料斗门(14A)的驱动力的致动器(31); 用于将驱动力传递到料斗门(14A)的传动机构; 能够检测传动机构的旋转轴的原点的检测装置(60),与漏斗门(14A)关闭的位置对应的原点; 以及能够接收检测装置(60)的输出信号的控制器(18)。
    • 2. 发明申请
    • HOPPER GATE OPENING AND CLOSING MECHANISM
    • HOPPER门开启和关闭机制
    • US20140102229A1
    • 2014-04-17
    • US14009496
    • 2011-04-05
    • Takayuki NagaiKoji Morimoto
    • Takayuki NagaiKoji Morimoto
    • G01G19/393
    • G01G19/393G01G13/006Y10T74/18296
    • A mechanism for opening and closing a hopper gate of the present invention, which is used in a combination weigher which performs combination calculation based on weights of objects, to find a combination in which a total of the weights of the objects falls within an allowable range with respect to a target weight, comprises an actuator (31) for generating a driving force for opening and closing the hopper gate (14A); a transmission mechanism for transmitting the driving force to the hopper gate (14A); a detecting device (60) capable of detecting an original point of a rotary shaft of the transmission mechanism, the original point corresponding to a position in which the hopper gate (14A) is closed; and a controller (18) capable of receiving an output signal of the detecting device (60).
    • 一种用于打开和关闭本发明的料斗门的机构,其用于基于对象的重量执行组合计算的组合秤中,以找到其中物体的总重量落在允许范围内的组合 相对于目标重量,包括用于产生用于打开和关闭料斗门(14A)的驱动力的致动器(31); 用于将驱动力传递到料斗门(14A)的传动机构; 能够检测传动机构的旋转轴的原点的检测装置(60),与漏斗门(14A)关闭的位置对应的原点; 以及能够接收检测装置(60)的输出信号的控制器(18)。
    • 3. 发明授权
    • Three-dimensional shape measuring apparatus
    • 三维形状测量仪
    • US07812969B2
    • 2010-10-12
    • US11820972
    • 2007-06-21
    • Koji MorimotoYoshihisa AbeShinichi Horita
    • Koji MorimotoYoshihisa AbeShinichi Horita
    • G01B11/24
    • G01B11/2545
    • A three-dimensional shape measuring apparatus includes a measuring section and a data integrating section. The measuring section has three-dimensional measurement dimensions, and measures a three-dimensional shape of a measurement object in a non-contact state. The measuring section measures a three-dimensional shape of a part of the measurement object multiple times by shifting the measurement dimensions to obtain multiple measurement data. The measurement dimensions are shifted in such a manner that at least portions of consecutive measurement dimensions by the shifting are lapped one over the other. The data integrating section integrates the multiple measurement data to obtain the three-dimensional shape of the measurement object. The data integrating section executes the data integration, using reliability information attributed to the respective measurement data.
    • 三维形状测量装置包括测量部分和数据积分部分。 测量部具有三维测量尺寸,并且测量非接触状态下的测量对象的三维形状。 测量部通过移动测量尺寸来测量测量对象的一部分的三维形状以获得多个测量数据。 测量尺寸以这样的方式移动,使得通过移位的连续测量尺寸的至少一部分彼此重叠。 数据积分部分集成了多个测量数据,以获得测量对象的三维形状。 数据积分部使用归属于各测量数据的可靠性信息来执行数据积分。
    • 4. 发明授权
    • Method and apparatus for three-dimensional measurement
    • 用于三维测量的方法和装置
    • US07490019B2
    • 2009-02-10
    • US11643203
    • 2006-12-21
    • Tadashi FukumotoKoji Morimoto
    • Tadashi FukumotoKoji Morimoto
    • G01C9/14
    • G01B11/2518
    • A three-dimensional measurement method for conducting measurement of a three-dimensional shape of a surface of an object using a three-dimensional measuring device is provided. The method includes providing, in advance, a posture sensor that detects a posture of the three-dimensional measuring device, providing, in advance, a parameter table in which a parameter corresponding to a posture of the three-dimensional measuring device is stored, and calculating three-dimensional shape data of the object using measurement data and the parameter, the measurement data being obtained by conducting measurement of the object with the three-dimensional measuring device and the parameter being read out from the parameter table according to a posture of the three-dimensional measuring device upon the measurement.
    • 提供一种使用三维测量装置进行物体表面的三维形状测量的三维测量方法。 该方法包括预先提供检测三维测量装置的姿势的姿势传感器,预先提供存储与三维测量装置的姿势对应的参数的参数表,以及 使用测量数据和参数来计算对象的三维形状数据,所述测量数据是通过利用所述三维测量装置进行所述对象的测量而获得的,并且所述参数根据所述参数表从所述参数表读出 测量三维测量装置。
    • 5. 发明授权
    • Electrophotographic apparatus
    • 电子照相设备
    • US5307134A
    • 1994-04-26
    • US977050
    • 1992-11-16
    • Shigeki NakajimaKoji Morimoto
    • Shigeki NakajimaKoji Morimoto
    • B41J11/00G03G15/00G03G15/20G03G21/00
    • G03G15/2003G03G15/2017G03G15/2039
    • An electrophotographic apparatus for providing a thermally fixed toner image on a recording medium and wherein the fixing temperature can be selectively canceled. The apparatus is of the type including: an image forming unit for forming a toner image to be printed and for then transferring the toner image onto a recording medium, a feed mechanism for feeding a recording medium supplied via one of at least two guide paths to the image forming unit, a fixing unit for thermally fixing the transferred toner image on the recording medium, and a temperature control unit for setting a fixing temperature for the fixing unit. A controller is provided to determine the particular guide paths used to supply the recording medium and to command the temperature control unit to set a fixing temperature in accordance with the determined guide path. Preferably, one of the guide path is supplied by a sheet feeder and the other guide path is a horizontal path permitting manual insertion, and the controller causes a lower fixing temperature to be set when the recording medium is supplied by the feeder and a higher fixing temperature when the recording mechanism is supplied via the horizontal guide path.
    • 一种用于在记录介质上提供热定影的调色剂图像的电子照相设备,其中定影温度可以被选择性地消除。 该装置的类型包括:图像形成单元,用于形成要被打印的调色剂图像,然后将调色剂图像转印到记录介质上;进给机构,用于将经由至少两个引导路径之一供给的记录介质馈送到 图像形成单元,用于将转印的调色剂图像热定影在记录介质上的定影单元和用于设置定影单元的定影温度的温度控制单元。 提供控制器以确定用于提供记录介质的特定引导路径,并且命令温度控制单元根据所确定的引导路径来设置定影温度。 优选地,引导路径中的一个由供纸器供应,另一个引导路径是允许手动插入的水平路径,并且当记录介质由馈送器供应时,控制器引起较低的定影温度,并且更高的固定 当经由水平引导路径供给记录机构时的温度。
    • 6. 发明申请
    • Release Agent for Toner, and Toner
    • 碳粉和碳粉的脱模剂
    • US20110305983A1
    • 2011-12-15
    • US13203087
    • 2010-02-08
    • Seiji KounouKoji MorimotoKenji NasuTakenori Fujimura
    • Seiji KounouKoji MorimotoKenji NasuTakenori Fujimura
    • G03G9/16C08F255/00
    • G03G9/08797C08F255/02G03G9/08782G03G9/08786C08F212/08
    • The objectives of the present invention are attained with a release agent for toner that is obtained by grafting styrene compounds to an α-olefin polymer that conforms to the following conditions (a) and (b), wherein 70 mass % or more of the release agent is insoluble in 2-butanone when the release agent is dispersed at 25° C. into 2-butanone so that the mass ratio of the release agent to the dispersion is 15%. (a) The α-olefin polymer is to be produced by polymerization of at least one α-olefin monomer that has 16 or more to 36 or less carbon atoms. (b) The α-olefin polymer is to have a melting point between 30° C. or higher and 80° C. or lower, and has one peak temperature whose peak has the half-height width of 15° C. or less in a measurement of the melting behavior of the α-olefin polymer by means of differential scanning calorimetry.
    • 本发明的目的是通过将苯乙烯化合物接枝到符合以下条件(a)和(b)的α-烯烃聚合物获得的调色剂用脱模剂来实现的,其中70质量%以上的释放 当脱模剂在25℃下分散到2-丁酮中时,试剂不溶于2-丁酮,使得脱模剂与分散体的质量比为15%。 (a)α-烯烃聚合物是通过聚合至少一种具有16个或更多至36个或更少碳原子的α-烯烃单体制备的。 (b)α-烯烃聚合物的熔点为30℃以上且80℃以下,峰值半峰宽度为15℃以下,峰值温度为15℃以下 通过差示扫描量热法测量α-烯烃聚合物的熔融行为。
    • 7. 发明申请
    • Three-dimensional shape measuring apparatus
    • 三维形状测量仪
    • US20070296979A1
    • 2007-12-27
    • US11820972
    • 2007-06-21
    • Koji MorimotoYoshihisa AbeShinichi Horita
    • Koji MorimotoYoshihisa AbeShinichi Horita
    • G01B11/24G01B11/30
    • G01B11/2545
    • A three-dimensional shape measuring apparatus includes a measuring section and a data integrating section. The measuring section has three-dimensional measurement dimensions, and measures a three-dimensional shape of a measurement object in a non-contact state. The measuring section measures a three-dimensional shape of a part of the measurement object multiple times by shifting the measurement dimensions to obtain multiple measurement data. The measurement dimensions are shifted in such a manner that at least portions of consecutive measurement dimensions by the shifting are lapped one over the other. The data integrating section integrates the multiple measurement data to obtain the three-dimensional shape of the measurement object. The data integrating section executes the data integration, using reliability information attributed to the respective measurement data.
    • 三维形状测量装置包括测量部分和数据积分部分。 测量部具有三维测量尺寸,并且测量非接触状态下的测量对象的三维形状。 测量部通过移动测量尺寸来测量测量对象的一部分的三维形状以获得多个测量数据。 测量尺寸以这样的方式移动,使得通过移位的连续测量尺寸的至少一部分彼此重叠。 数据积分部分集成了多个测量数据,以获得测量对象的三维形状。 数据积分部使用归属于各测量数据的可靠性信息来执行数据积分。