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    • 43. 发明授权
    • Cleaning device and image forming apparatus
    • 清洁装置和成像装置
    • US08369766B2
    • 2013-02-05
    • US12554295
    • 2009-09-04
    • Tadakazu EdureTsutomu KomiyamaMasaaki TakahashiTaku Fukuhara
    • Tadakazu EdureTsutomu KomiyamaMasaaki TakahashiTaku Fukuhara
    • G03G21/00
    • G03G15/161G03G21/105G03G21/12
    • A cleaning device includes: a first scraping member that scrapes off a developer on a surface of a moving body that circularly moves; a second scraping member that is disposed downstream from the first scraping member in a moving direction of the moving body, and that scrapes off residuals remaining on the surface of the moving body; a container having: a first housing portion that houses the developer scraped off by the first scraping member, as a recovered material; and a second housing portion that houses the residuals scraped off by the second scraping member; a discharge port that is disposed in the first housing portion, wherein the developer in the first housing portion is discharged to an outside of the container through the discharge port; and a conveying member that conveys the recovered material housed in the first housing portion to the discharge port.
    • 清洁装置包括:第一刮削构件,其刮除循环移动的移动体的表面上的显影剂; 第二刮削构件,其沿着移动体的移动方向设置在第一刮削构件的下游,并且清除残留在移动体的表面上的残留物; 容器,具有:容纳由第一刮削构件刮下的显影剂作为回收材料的第一壳体部; 以及第二壳体部分,其容纳由第二刮削构件刮下的残余物; 排出口,其布置在所述第一壳体部分中,其中所述第一壳体部分中的显影剂通过所述排出口排出到所述容器的外部; 以及输送构件,其将容纳在第一壳体部分中的回收材料输送到排出口。
    • 46. 发明授权
    • Communication control device for passenger protection device
    • 乘客保护装置通信控制装置
    • US07606647B2
    • 2009-10-20
    • US11222481
    • 2005-09-08
    • Hiroshi SeikaiSyoji NaritaHideaki OzawaMasaaki Takahashi
    • Hiroshi SeikaiSyoji NaritaHideaki OzawaMasaaki Takahashi
    • B60R21/0136
    • B60R21/0136B60R21/013B60R21/0132B60R2021/01184
    • A communication control device for passenger protection device includes a satellite sensor unit and an ECU being connected to the satellite sensor unit via a communication line. The satellite sensor unit includes a satellite sensor main body, which detects an impact against a vehicle, and a controller, which obtains a measurement from a signal detected by the satellite sensor main body. The ECU includes a main controller which determines deployment of a passenger protection device. The controller of the satellite sensor unit is adapted to compares the measurement or a calculated value which is calculated based on the measurement with a preset reference value range, and, when the measurement or the calculated value is within the reference value range, the controller transmits a communication from the satellite sensor unit to the ECU at an interval which is longer than a predetermined time interval.
    • 用于乘客保护装置的通信控制装置包括卫星传感器单元和经由通信线路连接到卫星传感器单元的ECU。 卫星传感器单元包括检测对车辆的撞击的卫星传感器主体,以及从由卫星传感器主体检测出的信号获得测量值的控制器。 ECU包括确定乘客保护装置的部署的主控制器。 卫星传感器单元的控制器适于将测量或基于测量计算的计算值与预设的参考值范围进行比较,并且当测量值或计算值在参考值范围内时,控制器传送 以比预定时间间隔长的间隔从卫星传感器单元到ECU的通信。
    • 48. 发明授权
    • Numerically controlled curved surface machining unit
    • 数控曲面加工单元
    • US06999845B2
    • 2006-02-14
    • US10967350
    • 2004-10-19
    • Junichi HiraiHiroshi AraiTamotsu HariharaOsamu ChibaMasaaki TakahashiNobuhisa Kanamaru
    • Junichi HiraiHiroshi AraiTamotsu HariharaOsamu ChibaMasaaki TakahashiNobuhisa Kanamaru
    • G06F19/00G05B13/02G05B19/25
    • G05B19/4103G05B19/4099G05B2219/34141
    • A numerically controlled curved-surface machining unit equipped with three linearly moving axes and, at least, one rotary axis, including a simultaneous multiple-axis control NC machine numerically controlled by a numerical control unit with a numerical control NURBS interpolation function. The unit enables reading, as CL (cutter location) data, tool control point vector data and tool axis vector data, along a machining direction on a workpiece coordinate system for a curved surface, obtaining feed rates therefor, and calculation by conversion of the CL data into position vectors of three linear axes on a machine coordinate system, rotation angles and feed rates on the machine coordinate system so as to operate the simultaneous multiple-axis control NC machine on the basis of a machine configuration of the simultaneous multiple-axis control NC machine. The unit forms at least one NURBS curve having continuous curvature, calculates data therefor and converts the NURBS curve into NC data for NURBS interpolation.
    • 一种数控曲面加工单元,其具有三个直线运动轴和至少一个旋转轴,包括由具有数字NURBS插值功能的数字控制单元数字控制的同时多轴控制NC机床。 该单元使得能够沿着加工方向在工件坐标系上为曲面读取CL(刀具位置)数据,刀具控制点矢量数据和刀具轴向量数据,获得进给速率,并通过CL的转换进行计算 将数据转换为机床坐标系上的三个线性轴的位置矢量,机床坐标系上的旋转角度和进给速度,以便在同时多轴控制的机床配置的基础上同时操作多轴控制NC机床 数控机床。 该单元形成至少一个具有连续曲率的NURBS曲线,计算其数据,并将NURBS曲线转换为NC数据用于NURBS插值。
    • 49. 发明授权
    • Numerically controlled curved surface machining unit
    • 数控曲面加工单元
    • US06934601B2
    • 2005-08-23
    • US10733318
    • 2003-12-12
    • Junichi HiraiHiroshi AraiTamotsu HariharaOsamu ChibaMasaaki TakahashiNobuhisa Kanamaru
    • Junichi HiraiHiroshi AraiTamotsu HariharaOsamu ChibaMasaaki TakahashiNobuhisa Kanamaru
    • G05B19/4099G05B19/4103G06F19/00
    • G05B19/4103G05B19/4099G05B2219/34141
    • A numerically controlled curved-surface machining unit comprises a component converting matrix·angle-addition value forming function of converting CL (cutter location) data into components on a normal coordinate system on the basis of the machine configuration of the simultaneous multiple-axis control NC machine, a component converting function of converting from the workpiece coordinate system to the normal coordinate system, a function of forming second angles of a second rotary axis on the normal coordinate system, a compensating function of forming a continuous angle distribution from a distribution of the second angles, a function of forming first angles of a first rotary axis on a coordinate system rotated by the second angles at the second rotary axis, a compensating function of forming a continuous angle distribution from a distribution of the first angles, a machine coordinate transformation matrix forming function of obtaining a matrix for converting the tool control point vectors on the workpiece coordinate system into a machine coordinate system by using the first angles and the second angles, and a machine coordinate converting function of converting the tool control point vectors into the machine coordinate system by using the machine coordinate transforming matrix.
    • 数控曲面加工单元包括基于同时多轴控制NC的机器配置的零件转换矩阵矩形加法值形成功能,其将CL(刀具位置)数据转换成正常坐标系上的部件 机器,从工件坐标系转换为正常坐标系的分量转换功能,在正常坐标系上形成第二旋转轴的第二角度的功能,从分布的形状分布形成连续角分布的补偿功能 第二角度,在第二旋转轴上旋转了第二角度的坐标系上形成第一旋转轴的第一角度的函数,从第一角度的分布形成连续角度分布的补偿功能,机械坐标变换 获得用于转换刀具控制点ve的矩阵的矩阵形成函数 通过使用第一角度和第二角度将工件坐标系上的工件转换为机床坐标系,以及通过使用机床坐标变换矩阵将刀具控制点矢量转换为机床坐标系的机床坐标转换功能。
    • 50. 发明授权
    • Scroll-type compressor having an oil communication path in the fixed scroll
    • 涡卷式压缩机在固定涡旋件中具有油连通路径
    • US06755632B1
    • 2004-06-29
    • US10357387
    • 2003-02-04
    • Shigeru ItoMasaaki TakahashiMasaaki TakahataKiyofumi Ito
    • Shigeru ItoMasaaki TakahashiMasaaki TakahataKiyofumi Ito
    • F04C1804
    • F04C29/028
    • A scroll-type compressor includes a housing including a suction chamber and a discharge chamber. The compressor also includes a fixed scroll including a first spiral element. Specifically, the fixed scroll is fixed to the housing, and a sealing member seals the fixed scroll and the housing. The compressor further includes an orbiting scroll including a second spiral element. Specifically, the orbiting scroll is positioned inside the suction chamber, and the first spiral element and the second spiral element interfit with each other to form a fluid pocket. Moreover, the compressor includes a driving mechanism for moving the orbiting scroll in an orbiting motion, a rotation prevention mechanism for preventing the orbiting scroll from rotating, and a first circumferential groove formed at a circumferential surface of the fixed scroll. The compressor also includes a second circumferential groove formed at a bottom surface of the first circumferential groove, and the sealing member closes an open end of the second circumferential groove, such that a first communication path passes through the second circumferential groove. The compressor further includes a second communication path lying at a lower portion of the fixed scroll. Specifically, the second communication path allows fluid communication between a lower portion of the discharge chamber and a lower portion of the first communication path. Moreover, the compressor includes a third communication path formed at an upper portion of the fixed scroll. Specifically, the third communication path allows fluid communication between an upper portion of the suction chamber and an upper portion of the first communication path.
    • 涡旋式压缩机包括:壳体,其包括吸入室和排出室。 压缩机还包括包括第一螺旋元件的固定涡旋盘。 具体地,固定涡旋盘固定在壳体上,密封部件密封固定涡旋盘和壳体。 压缩机还包括包括第二螺旋元件的绕动涡旋件。 具体地说,绕动涡盘位于吸入室的内部,并且第一螺旋元件和第二螺旋元件彼此相互配合以形成流体袋。 此外,压缩机包括用于使绕动涡盘沿轨道运动移动的驱动机构,用于防止绕动涡盘旋转的防止转动机构,以及形成在固定涡旋盘的圆周面上的第一周向槽。 压缩机还包括形成在第一周向槽的底面的第二周向槽,密封构件封闭第二周向槽的开口端,使得第一连通路径穿过第二周向槽。 压缩机还包括位于固定涡旋件的下部的第二连通路径。 具体地,第二连通路径允许排出室的下部与第一连通路径的下部之间的流体连通。 此外,压缩机包括形成在固定涡旋件的上部的第三连通路径。 具体地,第三连通路径允许吸入室的上部和第一连通路径的上部之间的流体连通。