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    • 1. 发明授权
    • Hybrid magnetic bearing
    • 混合磁轴承
    • US07683514B2
    • 2010-03-23
    • US11988773
    • 2006-08-30
    • Hiroyuki OnumaToru MasuzawaYohji Okada
    • Hiroyuki OnumaToru MasuzawaYohji Okada
    • H02K7/09
    • F16C32/0465F16C32/048
    • In a hybrid magnetic bearing, the electromagnet has a core wound with a control coil and has a main pole and a commutating pole with a commutating pole permanent magnet provided approximately parallel to each other at predetermined intervals in a protruding condition radially or axially to the rotor. In the magnetic bearing provided radially, two electromagnets are placed oppositely to each other across the rotor in an approximately horizontal position, and the rotor is arranged so as to have a predetermined gap with the main pole and the commutating pole, and the permanent magnet is provided between the adjacent electromagnets. In the magnetic bearing provided axially, two electromagnets are placed in parallel in an approximately horizontal position, and the rotor is arranged so as to have a predetermined gap with the main pole and the commutating pole, and the permanent magnet is provided between the adjacent electromagnets.
    • 在混合动力磁轴承中,电磁铁具有卷绕有控制线圈的铁芯,并且具有主极和整流极,其具有换向极永磁体,所述整流极永磁体以预定的间隔大致平行地设置在与转子径向或轴向的突出状态 。 在径向设置的磁性轴承中,两个电磁铁在大致水平的位置上跨过转子相对设置,并且转子被布置成与主极和换向极具有预定的间隙,并且永磁体是 设置在相邻的电磁体之间。 在轴向设置的磁轴承中,两个电磁铁平行放置在大致水平的位置,并且转子被布置成与主极和换向极具有预定的间隙,并且永磁体设置在相邻的电磁体之间 。
    • 2. 发明申请
    • Hybrid Magnetic Bearing
    • 混合磁轴承
    • US20090079284A1
    • 2009-03-26
    • US11988773
    • 2006-08-30
    • Hiroyuki OnumaToru MasuzawaYohji Okada
    • Hiroyuki OnumaToru MasuzawaYohji Okada
    • F16C32/04
    • F16C32/0465F16C32/048
    • In a hybrid magnetic bearing, the electromagnet has a core wound with a control coil and has a main pole and a commutating pole with a commutating pole permanent magnet provided approximately parallel to each other at predetermined intervals in a protruding condition radially or axially to the rotor. In the magnetic bearing provided radially, two electromagnets are placed oppositely to each other across the rotor in an approximately horizontal position, and the rotor is arranged so as to have a predetermined gap with the main pole and the commutating pole, and the permanent magnet is provided between the adjacent electromagnets. In the magnetic bearing provided axially, two electromagnets are placed in parallel in an approximately horizontal position, and the rotor is arranged so as to have a predetermined gap with the main pole and the commutating pole, and the permanent magnet is provided between the adjacent electromagnets.
    • 在混合动力磁轴承中,电磁铁具有卷绕有控制线圈的铁芯,并且具有主极和整流极,其具有换向极永磁体,所述整流极永磁体以预定的间隔大致平行地设置在与转子径向或轴向的突出状态 。 在径向设置的磁性轴承中,两个电磁铁在大致水平的位置上跨过转子相对设置,并且转子被布置成与主极和换向极具有预定的间隙,并且永磁体是 设置在相邻的电磁体之间。 在轴向设置的磁轴承中,两个电磁铁平行放置在大致水平的位置,并且转子被布置成与主极和换向极具有预定的间隙,并且永磁体设置在相邻的电磁体之间 。
    • 5. 发明授权
    • Injection molding machine
    • 注塑机
    • US07165966B2
    • 2007-01-23
    • US10448226
    • 2003-05-30
    • Hiroyuki OnumaKatsuhito OguraKatsuyoshi KidoHarumichi Tokuyama
    • Hiroyuki OnumaKatsuhito OguraKatsuyoshi KidoHarumichi Tokuyama
    • B29B11/06
    • B29C45/5008B29C2045/1793B29C2045/5032Y10T408/75
    • There is provided an injection molding machine provided with an injection mechanism that enables a high-speed injection.The injection molding machine includes: a heating barrel for melting and kneading a resin fed from a hopper, said barrel having an injection nozzle at its front end; a screw movably and rotatably inserted in the heating barrel; a screw drive shaft coupled at its one end to the rear end of the screw; charging means including a charging motor for rotationally driving the screw drive shaft to rotate the screw so as to melt the resin in the heating barrel while conveying the resin forward of the screw, and measure the volume of the molten resin, and torque transmission means for transmitting the driving torque of the charging motor to the screw drive shaft and permitting a displacement of the screw drive shaft in the axial direction; a body frame fixing and supporting the charging motor and the torque transmission means, said frame including a front plate fixing and supporting the base of the heating barrel; injection drive means including a linear-movement shaft coupled to the rear end of the screw drive shaft and movable in the axial direction, and an injection motor for advancing the screw and producing an injection force for injecting the molten resin in the heating barrel; and shaft coupling means for coupling the rear end of the screw drive shaft to the linear-movement shaft such that only a thrust in the axial direction is transmitted to the screw drive shaft.
    • 提供了一种具有能够高速注射的注射机构的注射成型机。 注射成型机包括:加热筒,用于熔化和捏合从料斗供给的树脂,所述筒在其前端具有喷嘴; 可移动地和可旋转地插入加热筒中的螺钉; 螺钉驱动轴在其一端连接到螺钉的后端; 充电装置包括用于旋转驱动螺杆驱动轴以旋转螺杆的充电电机,以便在将树脂向前输送到螺杆的同时熔化加热筒中的树脂,并测量熔融树脂的体积,以及扭矩传递装置 将所述充电电动机的驱动转矩传递到所述螺杆驱动轴,并允许所述螺杆驱动轴在轴向方向上的位移; 固定和支撑所述充电马达和所述扭矩传递装置的主体框架,所述框架包括固定和支撑所述加热筒的基座的前板; 注射驱动装置,包括联接到螺杆驱动轴的后端并沿轴向移动的线性运动轴,以及用于使螺杆前进并产生用于将熔融树脂注入加热筒中的注射力的注射马达; 以及用于将螺杆驱动轴的后端联接到线性运动轴的轴联结装置,使得仅在轴向方向上的推力传递到螺杆驱动轴。
    • 7. 发明申请
    • MAGLEV MOTOR AND PUMP
    • MAGLEV电机和泵
    • US20100172775A1
    • 2010-07-08
    • US12601491
    • 2008-01-29
    • Hiroyuki Onuma
    • Hiroyuki Onuma
    • F04B17/03H02K7/09
    • F16C32/0465F04D13/06F04D29/048F16C32/048F16C2360/44H02K7/09H02K7/14
    • A maglev motor and a pump using the maglev motor can be provided with strong magnetic bearing force generated by a simple structure, rotation losses of a rotor reduced with the generation of an eddy current suppressed, and a configuration of magnetic bearing can downsize by using a thin rotor. The donut-shaped rotor is arranged between the magnetic bearing unit and the motor unit, the motor yoke of the motor radially has a plurality of projected poles, a coil is close-wound around the projected pole, predetermined clearance is made between the inner side of the rotor and the projected pole, a plurality of two projected poles opposite each other near either end portions of the outer side of the rotor are provided circularly at equal intervals on the magnetic bearing yoke of the magnetic bearing unit, a magnetic bearing coil is close-wound around one of the two projected poles, a first permanent magnet is provided for the other projected pole, predetermined clearance is made on one side of the rotor end portion and the bridge unit for connecting the magnetic bearing unit to the motor unit is provided, a second permanent magnet is provided between the projected pole provided for the magnetic bearing yoke and the bridge yoke of the bridge unit, a third permanent magnet is provided between the motor yoke and the bridge yoke, a plurality of motor permanent magnets opposite the motor yoke are provided inside the rotor, and all projected poles provided on the bridge unit side of the magnetic bearing unit can be close-wound by the magnetic bearing coil, or provided with the first permanent magnet.
    • 磁悬浮电动机和使用磁悬浮电动机的泵可以具有由简单的结构产生的强大的磁轴承力,转子的旋转损耗随着抑制涡流的产生而减小,并且磁轴承的构造可以通过使用 薄转子。 环状转子配置在磁性轴承单元和电动机单元之间,电机的电动机磁轭径向具有多个突出的磁极,线圈围绕投影磁极紧密缠绕,在内侧之间形成规定的间隙 的转子和突出的极之间,在转子的外侧的任一端部附近彼此相对的多个两个突出极相等间隔设置在磁性轴承单元的磁轴承轭上,磁性轴承线圈为 围绕两个投射杆之一缠绕,为另一个突出的杆提供第一永磁体,在转子端部的一侧形成预定的间隙,并且用于将磁轴承单元连接到电动机单元的桥接单元是 只要在设置在磁轴承轭的突出极和桥接单元的桥架之间设置第二永久磁铁,则提供第三永久磁铁 在电动机轭和桥轭之间,在转子内设置有与电动机轭相对的多个电动机永磁体,并且设置在磁轴承单元的桥单元侧的所有突出的磁极可以被磁轴承 线圈,或设置有第一永久磁铁。
    • 10. 发明授权
    • Injection molding machine using a linear motor
    • 注塑机采用直线电机
    • US06962491B2
    • 2005-11-08
    • US10385469
    • 2003-03-12
    • Makoto NishizawaKatsuhito OguraKatsuyoshi KidoHarumichi TokuyamaHiroyuki Onuma
    • Makoto NishizawaKatsuhito OguraKatsuyoshi KidoHarumichi TokuyamaHiroyuki Onuma
    • B29C45/17B29C45/50B29C45/78
    • B29C45/78B29C45/5008B29C2045/1793B29C2945/7604B29C2945/76531B29C2945/76943
    • An injection molding machine using a linear motor, has a linear motor serving as a linear drive mechanism; a temperature sensor configured to detect a temperature of a coil of said linear motor or an ambient temperature thereof; an input unit configured to input a signal of the temperature detected by said temperature sensor; a data converting unit configured to convert the detected temperature signal into temperature data; a storage unit, including a temperature data setting unit configured to preset an allowable temperature, etc., configured to store temperature data converted by said data converting unit; a comparing/calculating unit configured to compare the temperature data converted by said data converting unit with a set value set in said data setting unit and make a calculation thereof; an output unit configured to output an instruction signal and display data, corresponding to a result of the calculation by said comparing/calculating unit; and a display unit configured to display the display data outputted from said comparing/calculating unit.
    • 使用线性电动机的注射成型机具有作为线性驱动机构的线性电动机; 温度传感器,被配置为检测所述线性电动机的线圈的温度或其环境温度; 输入单元,被配置为输入由所述温度传感器检测到的温度的信号; 数据转换单元,被配置为将检测到的温度信号转换为温度数据; 存储单元,包括被配置为预设容许温度等的温度数据设置单元,其被配置为存储由所述数据转换单元转换的温度数据; 比较/计算单元,被配置为将由所述数据转换单元转换的温度数据与在所述数据设置单元中设置的设定值进行比较并进行计算; 输出单元,被配置为输出与所述比较/计算单元的计算结果相对应的指令信号和显示数据; 以及显示单元,被配置为显示从所述比较/计算单元输出的显示数据。