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    • 51. 发明授权
    • Vertical grain milling machine
    • 立铣机
    • US5752664A
    • 1998-05-19
    • US812407
    • 1997-03-05
    • Satoru SatakeKazuo Hironaka
    • Satoru SatakeKazuo Hironaka
    • B02B3/06B02B3/00B02B3/04B02C7/13
    • B02B3/00B02B3/04
    • In an abrasive type vertical grain milling machine, there are mounted, on a main shaft extending generally vertically and disposed rotatably in an upright bran-removing cylinder, a screw roll for feeding grain, a plurality of abrasive milling rolls disposed below the screw roll in spaced relation to each other along the main shaft for abrading the grain, and a rotary roll disposed below the plurality of abrasive milling rolls for sending out the grain having been abraded to a grain discharge portion in such a manner that the plurality of abrasive milling rolls and the rotary roll are located within the bran-removing cylinder, a gap defined between the abrasive milling rolls adjacent to each other forming a jet-air slot, the bran-removing cylinder being communicated with a grain supply portion at an upper end thereof and with the grain discharge portion at a lower end thereof. A lower part of the bran-removing cylinder is extended downward so as to face horizontally to the rotary roll. Further, the abrasive type grain milling machine has an agitating projection provided on an outer peripheral surface of the rotary roll for agitating the grain having been abraded, and the rotary roll has a jet-air hole through which jet air is sent toward the grain being agitated by the agitating projection.
    • 在研磨型立式谷物铣床中,安装在主轴上,大致垂直延伸并可旋转地布置在直立的麸皮去除圆筒中,用于进给谷物的螺旋辊,多个研磨研磨辊设置在螺旋辊下方 沿着主轴彼此间隔开的关系用于研磨谷物;以及旋转辊,其设置在多个磨料研磨辊下方,用于将已经磨损的颗粒送出到排出部分,使得多个磨料研磨辊 并且旋转辊位于除去麸皮滚筒内,在彼此相邻的磨料研磨辊之间限定的间隙形成喷气空气狭槽,麸皮去除圆筒在其上端与颗粒供应部分连通, 其谷粒排出部分在其下端。 麸皮去除圆筒的下部向下延伸,以便与旋转辊水平面对。 此外,研磨型谷物研磨机具有设置在旋转辊的外周面上的搅拌突起,用于搅拌已经磨损的颗粒,并且旋转辊具有喷射空气孔,喷射空气通过喷射空气孔被送向颗粒 被搅动投影所搅动。
    • 53. 发明授权
    • Husking apparatus
    • 老虎机
    • US5678477A
    • 1997-10-21
    • US725427
    • 1996-10-03
    • Satoru SatakeHiroyuki FukumitsuMasaya Yamamoto
    • Satoru SatakeHiroyuki FukumitsuMasaya Yamamoto
    • B02B7/02B02B3/04B02B3/00B02B3/06
    • B02B3/045
    • In a husking apparatus comprising: a husking portion having a pair of husking rolls which are adjustable in clearance between them and rotated in opposite directions with different peripheral speeds to perform husking of paddy grain; and a supply portion disposed above the husking portion for supplying paddy grain to be husked to the husking portion, wherein the supply portion is so constructed as to supply paddy grain from the supply portion to the husking portion in the form of a layer in such a manner that a thickness of the layer of a flow of paddy grain becomes not greater than two grains at the husking portion, and the supply portion is so constructed as to supply paddy grain to the husking portion at a speed not less than a flowing-down speed corresponding to a minimum husking throughput desired of the husking apparatus so that husking is performed with a throughput not less than the minimum husking throughput, it is possible to enhance the husking throughput while minimizing the breakage of paddy grain. In cases where paddy is the one of long-grain variety of rice, the flowing-down speed of paddy grain is set to be not less than 3 m/sec when the paddy grain reaches a region around the clearance between the pair of husking rolls.
    • 一种脱壳装置,包括:脱壳部,其具有一对脱壳辊,所述一对脱壳辊可以间隙间调节并以不同的圆周速度沿相反方向旋转,从而进行稻谷的脱壳; 以及设置在脱壳部上方的供给部,用于将脱壳的稻谷供给到脱壳部,其中,供给部构成为将谷物从供给部以层状的形式供给到脱壳部, 稻谷流的层的厚度在脱壳部分变得不大于两个晶粒的方式,并且供应部分被构造成以不小于下流的速度将稻谷供应到脱壳部分 速度对应于脱壳装置所需的最小脱壳吞吐量,从而以不小于最小脱壳生产量的生产量进行脱壳,可以在使稻谷破碎最小化的同时提高脱壳生产能力。 在水稻是长粒米饭的情况下,当稻谷到达一对脱壳辊之间的间隙周围的区域时,稻谷的流下速度设定为不小于3m / sec 。
    • 55. 发明授权
    • Bran-removing perforated cylindrical body of abrasive type grain milling
machine
    • 磨粒式磨粒机的抛丸清理多孔筒体
    • US5394792A
    • 1995-03-07
    • US274981
    • 1994-07-13
    • Satoru SatakeYutaka OkadaShigeru Ariji
    • Satoru SatakeYutaka OkadaShigeru Ariji
    • B02B3/06B02B3/04B02B3/00B02B7/02
    • B02B3/04
    • An abrasive type vertical grain milling machine comprises a perforated cylindrical body having at least one perforated arcuate plate member which is formed therein with both a first group of elongated bran-removing holes serving to lead grain to be milled in a direction from an inlet side toward an outlet side of a grain milling chamber when the grain is rotated in the direction of rotation of a grain milling roll assembly within the grain milling chamber and a second group of elongated bran-removing holes serving to lead the grain to be milled in a direction from the outlet side toward the inlet side of the grain milling chamber when the grain is rotated in the direction of rotation of the grain milling roll assembly within the grain milling chamber, and therefore, grain can be milled highly efficiently and the progress of breakage of grains caused at the time of grain milling can be suppressed.
    • 研磨型立式颗粒铣床包括多孔圆柱体,其具有至少一个穿孔的弧形板构件,其中形成有第一组细长的麸皮去除孔,用于将颗粒从沿入口侧朝向 当谷物在晶粒研磨室内的谷物铣削辊组件的旋转方向上旋转时,晶粒研磨室的出口侧和第二组细长的除去麸皮的孔用于将晶粒引向一个方向 当晶粒铣削辊组件在谷物研磨室内的旋转方向旋转时,从晶粒研磨室的出口侧到入口侧,因此可以高效地碾磨谷物,并且破碎的进行 可以抑制在研磨时引起的晶粒。
    • 56. 发明授权
    • Rotationally oscillating separator with eccentric shaft mounting portions
    • 带有偏心轴安装部分的旋转振动分离器
    • US06250479B1
    • 2001-06-26
    • US09638854
    • 2000-08-15
    • Satoru SatakeMakoto TomabechiHideaki MasukaneAkira FukuharaKiminori KonoKazutaka BajyoChozaburo Ikuta
    • Satoru SatakeMakoto TomabechiHideaki MasukaneAkira FukuharaKiminori KonoKazutaka BajyoChozaburo Ikuta
    • B07C900
    • B07B13/18B07B1/06B07B1/288B07B13/16
    • A rotationally oscillating separator for separating mixed rice into unhulled rice and unpolished rice after the rice have passed through a rice huller to remove the hulls from rice. The separator comprises a vertical rotating shaft supported for rotation and having an axis, means for rotatively driving the rotating shaft, said rotating shaft including eccentric sections offset from the axis of the rotating shaft, separating vessels rotatably mounted on the eccentric sections and having a plurality of segmental separating plates disposed in a cone-shaped configuration within the separating vessels, retaining means on the separating vessels for preventing them from freely rotating, each of the eccentric sections having its axis, an upward extension of which is at a slight angle to the axis of the rotating shaft such that it intersects an extension of the axis of the rotating shaft at a point above its eccentric section, whereby the separating vessels are inclined relative to a horizon so that they are rotationally oscillated around the points of intersection between the extensions of the axes of the eccentric sections and the axis of the rotating shaft as phantom fulcrums, as the rotating shaft is rotated.
    • 一种旋转振荡分离器,用于在米饭通过米饭机之后将混合米分离成无壳米和未糙米,以从米中除去壳体。 所述分离器包括:支承用于旋转并具有轴的垂直旋转轴,用于旋转地驱动所述旋转轴的装置,所述旋转轴包括偏离所述旋转轴的轴线的偏心部分,所述分离容器可旋转地安装在所述偏心部分上并具有多个 在分离容器内设置为锥形构造的分段分隔板,在分离容器上的保持装置,用于防止它们自由旋转,每个偏心部分具有其轴线,其向上延伸部与其相对于 旋转轴的轴线使得其在其偏心部分上方的点处与旋转轴的轴线相交,由此分离容器相对于水平面倾斜,使得它们围绕延伸部之间的交叉点旋转振荡 的偏心部分的轴线和旋转轴的轴线作为幻像 旋转轴旋转。
    • 57. 发明授权
    • Method and device for effecting temperature compensation in load cell type load detector
    • 在称重传感器型负载检测器中进行温度补偿的方法和装置
    • US06173619B1
    • 2001-01-16
    • US08982376
    • 1997-12-02
    • Satoru SatakeHiroki Maeda
    • Satoru SatakeHiroki Maeda
    • G01L104
    • G01G3/18G01L1/2281
    • The apparatus for effecting temperature compensation in a load cell type load detector is for a load detecting apparatus having a load cell constituting the load detector formed with a strain gauge attached to a deflectable body, a mount base for positioning the load detector, and a load generating section to receive a flow of objects to be measured. The apparatus includes a pair of thermal source blocks provided so as to be directly in contact with the deflectable body and be disposed respectively at two symmetric positions with respect to the center of the load detector, a pair of temperature sensors provided respectively to the thermal source blocks, a controller for controlling thermal elements based on temperatures detected by the temperature sensors such that a temperature of the load cell type load detector may be maintained at a predetermined constant temperature. The method is carried out by controlling a temperature of the load cell type load detector such that the temperature of the load cell type load detector is not affected by environment temperature changes.
    • 用于在称重传感器型负载检测器中进行温度补偿的装置是用于负载检测装置,其具有构成负载检测器的负载传感器,负载检测器形成有附接到可偏转体的应变计,用于定位负载检测器的安装基座和负载 生成部分以接收待测量的对象的流。 该装置包括一对热源块,其设置成与可偏转体直接接触并且分别设置在相对于负载检测器的中心的两个对称位置处,分别设置在热源上的一对温度传感器 块,用于基于由温度传感器检测到的温度来控制热元件的控制器,使得称重传感器型负载检测器的温度可以保持在预定的恒定温度。 通过控制称重传感器型负载检测器的温度使得负载传感器型负载检测器的温度不受环境温度变化的影响来进行。
    • 59. 发明授权
    • Color-sorting machine for granular materials
    • 颗粒材料分选机
    • US6013887A
    • 2000-01-11
    • US56364
    • 1998-04-07
    • Satoru SatakeTakafumi Ito
    • Satoru SatakeTakafumi Ito
    • G01N21/85B07C5/342G01J3/50
    • B07C5/3425B07C5/366Y10S209/938
    • A color-sorting machine for granular materials optically detects raw material grains falling along a substantially fixed path and sorts out no-good grains by color. An optical detection unit to this end comprises a condenser lens, a plurality of optical filters and a plurality of light-receiving sensors corresponding to the filters and can detect a plurality of wavelengths. The light-receiving sensors lie side by side on the same plane, are formed in a unit body, require no positioning adjustment among the light-receiving sensors, and make it possible to reduce the size of the optical system. A prism is provided between the condenser lens and the light-receiving sensors. The prism has light path diffraction surfaces of the same number as the light-receiving sensors, so that the light-receiving sensors receive light of the same point of view and can perform color sorting. Detected light partition plates are provided between adjacent light path diffraction surfaces of the prism and between the corresponding adjacent light-receiving sensors to improve the precision of optical detection.
    • 一种用于粒状材料的分色机,光学地检测沿着基本上固定的路径落下的原料颗粒,并通过颜色对不良的颗粒进行分类。 为此,光学检测单元包括聚光透镜,多个光学滤光器和对应于滤光器的多个光接收传感器,并且可以检测多个波长。 光接收传感器并排在同一平面上,形成在单元体中,不需要在光接收传感器之间进行定位调整,并且可以减小光学系统的尺寸。 在聚光透镜和光接收传感器之间提供棱镜。 棱镜具有与光接收传感器相同数量的光路衍射表面,使得光接收传感器接收相同视角的光并且可以进行颜色分选。 检测到的光隔离板设置在棱镜的相邻光路衍射表面和相应的相邻的光接收传感器之间,以提高光学检测的精度。