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    • 5. 发明授权
    • High power inductance device
    • 大功率电感器件
    • US08698585B2
    • 2014-04-15
    • US13395233
    • 2010-09-06
    • Takashi TakiguchiYuko KanazawaMikio KitaokaSatoshi Ota
    • Takashi TakiguchiYuko KanazawaMikio KitaokaSatoshi Ota
    • H01F27/08
    • H01F27/22H01F27/255
    • A high power inductance device enables a large ferrite magnetic core to be manufactured at low cost and with ease and improves heat radiation efficiency to reduce an increase in the temperature of the core. The inductance device has a ferrite magnetic core and a winding wire wound around the ferrite magnetic core and is mounted on a heat radiation structure through at least one of the front surfaces of the ferrite magnetic core. The ferrite magnetic core is made of a core aggregate obtained by arranging side by side a plurality of ferrite cores 10 having a completely-closed magnetic path structure or a quasi-closed magnetic path structure with a magnetic gap such that an interval is placed between the ferrite cores and magnetic paths are parallel to each other. The inductance device is mounted such that at least one plane surface of the peripheral surfaces of each of the ferrite cores is brought into direct or indirect contact with the heat radiation structure 18 with a metal plate 12 inserted into the interval between the ferrite cores and the common winding wire 14 wound around all the ferrite cores.
    • 高功率电感器件能够以低成本且容易地制造大型铁氧体磁芯,并且提高散热效率以减小芯的温度升高。 电感器件具有铁氧体磁芯和缠绕在铁氧体磁芯上的绕组,并且通过铁氧体磁芯的至少一个前表面安装在散热结构上。 铁氧体磁芯由芯集合体制成,所述芯集合体通过并排布置具有完全闭合的磁路结构的多个铁氧体磁芯10或具有磁隙的准闭合磁路结构,使得在 铁氧体磁芯和磁路彼此平行。 电感装置被安装成使得每个铁氧体磁芯的外周表面的至少一个平面表面与插入铁氧体磁芯和铁氧体磁芯之间的间隔中的金属板12直接或间接地与散热结构18接触 共同的绕组线14缠绕在所有的铁氧体磁芯上。
    • 6. 发明授权
    • Apparatus for rotary bi-axle type friction welding
    • 旋转双轴式摩擦焊接装置
    • US3954215A
    • 1976-05-04
    • US452818
    • 1974-03-20
    • Nobuo TakagiTakeshi KuboTakashi Takiguchi
    • Nobuo TakagiTakeshi KuboTakashi Takiguchi
    • B23K20/12B23K27/00
    • B23K20/121
    • This disclosure relates to an apparatus for friction welding wherein an improved friction welding of a first and a second workpieces are carried out in a manner such that welded and plasticized workpieces are rapidly synchronized and also a larger thrust is provided at only the end stage of the welding so that change of metallic structure of welded workpieces due to cooling which tends to cause cracks in the welded portion is prevented.In order to carry out this improved friction welding, the apparatus for friction welding includes a second driving means for driving the second workpiece, detecting means for detecting the sum of the lengths of welded workpieces capable of providing a signal for interrupting the drive of the first workpiece and hydraulic systems capable of adjusting the thrust according to a signal from the detecting means.
    • 本公开涉及一种用于摩擦焊接的装置,其中第一和第二工件的改进的摩擦焊接以这样的方式进行,使得焊接和塑化的工件快速同步,并且仅在最终阶段提供较大的推力 焊接,防止焊接工件的金属结构由于冷却而导致焊接部分产生裂缝的变化。
    • 7. 发明申请
    • HIGH POWER INDUCTANCE DEVICE
    • 高功率感应装置
    • US20120169443A1
    • 2012-07-05
    • US13395233
    • 2010-09-06
    • Takashi TakiguchiYuko KanazawaMikio KitaokaSatoshi Ota
    • Takashi TakiguchiYuko KanazawaMikio KitaokaSatoshi Ota
    • H01F27/22
    • H01F27/22H01F27/255
    • A high power inductance device enables a large ferrite magnetic core to be manufactured at low cost and with ease and improves heat radiation efficiency to reduce an increase in the temperature of the core. The inductance device has a ferrite magnetic core and a winding wire wound around the ferrite magnetic core and is mounted on a heat radiation structure through at least one of the front surfaces of the ferrite magnetic core. The ferrite magnetic core is made of a core aggregate obtained by arranging side by side a plurality of ferrite cores 10 having a completely-closed magnetic path structure or a quasi-closed magnetic path structure with a magnetic gap such that an interval is placed between the ferrite cores and magnetic paths are parallel to each other. The inductance device is mounted such that at least one plane surface of the peripheral surfaces of each of the ferrite cores is brought into direct or indirect contact with the heat radiation structure 18 with a metal plate 12 inserted into the interval between the ferrite cores and the common winding wire 14 wound around all the ferrite cores.
    • 高功率电感器件能够以低成本且容易地制造大型铁氧体磁芯,并且提高散热效率以减小芯的温度升高。 电感器件具有铁氧体磁芯和缠绕在铁氧体磁芯上的绕组,并且通过铁氧体磁芯的至少一个前表面安装在散热结构上。 铁氧体磁芯由芯集合体制成,所述芯集合体通过并排布置具有完全闭合的磁路结构的多个铁氧体磁芯10或具有磁隙的准闭合磁路结构,使得在 铁氧体磁芯和磁路彼此平行。 电感装置被安装成使得每个铁氧体磁芯的外周表面的至少一个平面表面与插入铁氧体磁芯和铁氧体磁芯之间的间隔中的金属板12直接或间接地与散热结构18接触 共同的绕组线14缠绕在所有的铁氧体磁芯上。