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    • 81. 发明授权
    • Method of spraying powder on a substrate
    • 将粉末喷涂在基材上的方法
    • US5614254A
    • 1997-03-25
    • US214300
    • 1994-03-17
    • Hiroshi MurataKimio MiyagawaEiji ShinodaHideo Moriyama
    • Hiroshi MurataKimio MiyagawaEiji ShinodaHideo Moriyama
    • B05B7/14B05B13/04B05D1/12B05B3/00B05D1/40
    • B05B7/144B05B13/04B05B13/0405B05B7/1472
    • A method of spraying a powder onto a substrate includes the steps of mounting the substrate in a fixed position; mounting a spray nozzle such that an outlet end thereof confronts the substrate; moving the spray nozzle such that a locus on the spray nozzle moves along a zig-zag pattern; and spraying the powder from the spray nozzle onto the substrate during the movement of the spray nozzle. The step of mounting the spray nozzle includes mounting the spray nozzle to a first oscillation link, and mounting the first oscillation link to a reciprocable slider. The step of moving the spray nozzle includes oscillating the first oscillation link relative to the slider, and reciprocating the slider during oscillation of the first oscillation link. The step of mounting the spray nozzle further includes mounting the slider to a second oscillation link. The step of reciprocating the slider includes oscillating the second oscillation link about a pivot point. The step of oscillating the second oscillation link includes positioning a revolving member in a slot formed in the second oscillation link, and revolving the revolving member. The step of oscillating the first oscillation link includes positioning a further revolving member in a slot formed in the first oscillation link, and revolving the further revolving member.
    • 将粉末喷涂到基板上的方法包括将基板安装在固定位置的步骤; 安装喷嘴使其出口端面对基板; 移动喷嘴,使得喷嘴上的轨迹沿着锯齿形图案移动; 并且在喷嘴移动期间将粉末从喷嘴喷射到基底上。 安装喷嘴的步骤包括将喷嘴安装到第一振荡链路上,并将第一振荡链路安装到往复滑动件上。 移动喷嘴的步骤包括相对于滑块振动第一振荡链路,并且在第一振荡链路振荡期间使滑块往复运动。 安装喷嘴的步骤还包括将滑块安装到第二振荡连杆。 使滑块往复运动的步骤包括围绕枢轴点摆动第二振荡环。 振动第二振荡链路的步骤包括将旋转构件定位在形成在第二振荡链路中的槽中,并且使旋转构件旋转。 振动第一振荡链路的步骤包括将另外的旋转构件定位在形成在第一振荡环中的槽中,并且旋转另外的旋转构件。
    • 82. 发明授权
    • Apparatus for coating powder particles
    • 用于涂抹粉末颗粒的装置
    • US5230735A
    • 1993-07-27
    • US844319
    • 1992-03-02
    • Hiroshi MurataKimio MiyagawaMutsuo Kokubu
    • Hiroshi MurataKimio MiyagawaMutsuo Kokubu
    • B01F3/12B01F5/20B01F13/10B01J2/00
    • B01F5/205B01F15/0254B01J2/006B01F2003/1257B01F2013/1094B01F2013/1097
    • A method of coating powder particles includes the steps of circulating an air flow containing the powder particles in a dispersed state therein in a cylinder whose inner wall is wetted with a coating liquid to bring the powder particles into contact with the coating liquid on the inner wall, and drying the powder particles thus coated with the coating liquid. An apparatus for coating powder particles comprises a drying chamber including an inner space for drying powder particles on the surfaces of which a coating liquid is deposited while floating the powder particles by an air flow, a powder-particle feeding device connected to the top of the drying chamber for feeding an air flow containing dispersed powder particles into the inner space through a cylindrical path, and a coating-liquid supplying mechanism for wetting the inner wall of the cylindrical path of the powder-particle feeding means.
    • 涂布粉末颗粒的方法包括以下步骤:将分散状态的含有粉末颗粒的气流循环到内壁用涂布液润湿的气缸中,使粉末颗粒与内壁上的涂布液接触 并干燥由涂覆液体涂覆的粉末颗粒。 一种用于涂覆粉末颗粒的装置包括:干燥室,包括用于干燥其表面上的粉末颗粒的内部空间,其中沉积有涂布液,同时通过空气流浮动粉末颗粒;粉末颗粒进料装置, 干燥室,用于通过圆柱形路径将含有分散的粉末颗粒的空气流供给到内部空间;以及涂布液供给机构,用于润湿粉末颗粒进料装置的圆柱形路径的内壁。
    • 85. 发明授权
    • Displaying magnetic panel and its display device
    • 显示磁性面板及其显示设备
    • US4143472A
    • 1979-03-13
    • US865550
    • 1977-12-29
    • Yasuzo MurataTakeo YokoyamaHiroshi Murata
    • Yasuzo MurataTakeo YokoyamaHiroshi Murata
    • G09B1/08B43L1/00G02F1/09G09F7/04G09F9/37B43L1/12
    • B43L1/008G02F2001/094
    • A display device is disclosed which employs a magnetic panel. The magnetic panel is formed by two oppositely arranged substrates at least one of which is transparent or semi-transparent. The space between the two substrates is filled with a dispersing liquid having a yielding value higher than 5 dyne/cm.sup.2. The dispersing liquid is prepared with fine magnetic grains, a coloring agent, a dispersing medium, and a fine grain thickener. Preferably, a multi-cell structure is provided in the space between the two substrates and the substrates are sealed to the multi-cell structure to form a plurality of independent display cells. A displaying magnet in the form of a pen is used to form a display by causing the fine magnetic grains to migrate to the front of the magnetic panel. An erasing magnet is slidably disposed at the rear of the magnetic panel.
    • 公开了一种使用磁性面板的显示装置。 磁性面板由两个相对布置的基底形成,其中至少一个是透明或半透明的。 两个基板之间的空间填充有屈服值高于5达因/ cm 2的分散液。 分散液由精细的磁性颗粒,着色剂,分散介质和细粒增稠剂制备。 优选地,在两个基板之间的空间中提供多单元结构,并且将基板密封到多单元结构以形成多个独立的显示单元。 使用笔形式的显示磁体通过使细磁粒移动到磁性面板的前部而形成显示。 擦除磁体可滑动地设置在磁性面板的后部。
    • 86. 发明授权
    • PON system, station side device and method for operating the same, and access control device
    • PON系统,站侧设备及其操作方法,以及访问控制设备
    • US09426547B2
    • 2016-08-23
    • US14240425
    • 2012-03-15
    • Hiroshi Murata
    • Hiroshi Murata
    • H04L12/28H04Q11/00
    • H04Q11/0067H04L12/2861H04L12/2869H04Q2011/0081
    • The present invention relates to a station side device having a plurality of PON lines and connected thereto. A fallback mode where a partial access control unit is not allowed to communicate communication frames is performed by switching an upper switch and a lower switch in the manner shown in the following (a) and (b): (a) output destinations of downstream frames to the first and second PON lines and inputted to the upper switch are aggregated into a first access control unit, and output destinations of the downstream frames inputted from the first access control unit to the lower switch are distributed to first and second optical transmitting and receiving units and; and (b) output destinations of upstream frames inputted from the first and second optical transmitting and receiving units and to the lower switch are aggregated into the first access control unit.
    • 本发明涉及具有多条PON线路并与其连接的站侧设备。 通过以下面(a)和(b)所示的方式切换上部开关和下部开关来执行部分访问控制单元不允许通信通信帧的回退模式:(a)下游帧的输出目的地 向第一和第二PON线路输入并输入到上层交换机的第一和第二PON线路被聚合成第一访问控制单元,并且从第一访问控制单元输入到下层交换机的下游帧的输出目的地被分配到第一和第二光发送和接收 单位和 和(b)从第一和第二光发送和接收单元输入的上游帧的输出目的地和下部交换机的输出目的地被聚合到第一访问控制单元中。
    • 88. 发明授权
    • Industrial vehicle
    • 工业车辆
    • US08825246B2
    • 2014-09-02
    • US13283708
    • 2011-10-28
    • Shigenori IwaseTadashi YamadaHiroshi MurataNobuyoshi UematsuTakashi Ushio
    • Shigenori IwaseTadashi YamadaHiroshi MurataNobuyoshi UematsuTakashi Ushio
    • B60L11/00B60W20/00
    • B60W20/00B60L3/0046B66F9/24H01M10/484H01M2220/20Y02T10/7258
    • An industrial vehicle having a vehicle body includes a battery, an electric motor, an electrolyte level sensor, a vehicle operating with lowered electrolyte level, a vehicle operating time calculator, a data-storing device storing data of the vehicle operating time, an electric motor limiting condition and a motor controller. The electric motor is driven to generate torque. The electrolyte level sensor detects whether or not electrolyte level of the battery is lower than a predetermined level. The vehicle operating time is a time elapsing while the electrolyte level is lower than the predetermined level. The vehicle operating time calculator counts the vehicle operating time in accordance with the detection of the electrolyte level. The electric motor limiting condition limits operation of the electric motor gradually in accordance with the vehicle operating time. The motor controller controls operation of the electric motor based on the electric motor limiting condition.
    • 具有车体的工业车辆包括电池,电动机,电解液液位传感器,电解液液位降低的车辆,车辆运行时间计算器,存储车辆运转时间数据的数据存储装置,电动马达 限制条件和电机控制器。 驱动电动机产生转矩。 电解质液位传感器检测电池的电解质水平是否低于预定水平。 车辆运行时间是电解液液面低于预定水平时经过的时间。 车辆操作时间计算器根据电解质水平的检测来计算车辆操作时间。 电动机限制条件根据车辆运行时间逐渐限制电动机的运行。 电动机控制器基于电动机限制条件控制电动机的操作。