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    • 4. 发明申请
    • Electrical connector
    • 电连接器
    • US20070054556A1
    • 2007-03-08
    • US11516655
    • 2006-09-07
    • Takeshi FukushimaTsuyoshi Sakata
    • Takeshi FukushimaTsuyoshi Sakata
    • H01R9/03
    • H01R12/716
    • An electrical connector to be connected to a cable includes a first housing having a casing with a substantially rectangular shape and a fitting section protruding from the casing in a direction that the electrical connector is fitted to a mate connector; a first shell covering the casing; and a first terminal arranged in the fitting section. The first terminal has contact sections at upper and lower sides of one end thereof for contacting with a terminal of the mate connector, and a connecting section at the other end thereof for connecting with a core wire of the cable. It is arranged such that a distance from the contact section at the upper side to the connecting section is substantially same as a distance from the contact section at the lower side to the connecting section.
    • 要连接到电缆的电连接器包括具有大致矩形形状的壳体的第一壳体和沿着电连接器装配到配合连接器的方向从壳体突出的配合部分; 覆盖壳体的第一壳体; 以及布置在所述装配部中的第一端子。 第一端子在其一端的上端和下侧具有接触部分,用于与配合连接器的端子接触,并且在另一端处具有用于与电缆的芯线连接的连接部分。 它被布置为使得从上侧的接触部到连接部的距离与从下侧的接触部到连接部的距离大致相同。
    • 8. 发明授权
    • Method of producing molding die for use in producing a ceramic honeycomb structure body
    • 制造陶瓷蜂窝结构体的成型用模具的制造方法
    • US07807943B2
    • 2010-10-05
    • US12068278
    • 2008-02-05
    • Takeshi Fukushima
    • Takeshi Fukushima
    • B23K26/00
    • B23P15/243B23K26/042B23K26/146B26F3/004B28B2003/203
    • In a method of producing a molding die for use in producing honeycomb structure bodies, a reference position is determined as a relative position on a workpiece between a pillar of a high-pressure water jet and a reference hole. The reference hole is penetratingly formed in a workpiece. The outer periphery of the pillar passes through the reference hole without contacting the inner wall and opening edge of the reference hole. A slit groove formation position is aligned with a pillar formation position by relatively shifting the pillar to the workpiece based on coordinate data where the reference position becomes its origin. Each slit groove is formed in the workpiece by supplying the pillar onto the slit groove formation position on the workpiece while irradiating and scanning a laser beam into the pillar of a high-pressure water jet many times along the slit groove formation position on the workpiece.
    • 在制造用于生产蜂窝结构体的成形模具的方法中,将基准位置确定为在高压水射流的柱和参考孔之间的工件上的相对位置。 参考孔深深地形成在工件上。 柱的外周边通过参考孔而不接触参考孔的内壁和开口边缘。 基于基准位置成为其原点的坐标数据,通过相对地将柱移动到工件,狭缝槽形成位置与柱形成位置对准。 通过在工件上的狭缝槽形成位置向激光束照射和扫描高压水射流的支柱多次,沿着工件上的狭缝槽形成位置将激光束照射并扫描到工件上的狭缝槽形成位置上,将每个狭缝槽形成在工件中。
    • 9. 发明申请
    • Method of producing molding die for use in producing a ceramic honeycomb structure body
    • 制造陶瓷蜂窝结构体的成型用模具的制造方法
    • US20080191390A1
    • 2008-08-14
    • US12068278
    • 2008-02-05
    • Takeshi Fukushima
    • Takeshi Fukushima
    • B28B11/12B23K26/36
    • B23P15/243B23K26/042B23K26/146B26F3/004B28B2003/203
    • In a method of producing a molding die for use in producing honeycomb structure bodies, a reference position is determined as a relative position on a workpiece between a pillar of a high-pressure water jet and a reference hole. The reference hole is penetratingly formed in a workpiece. The outer periphery of the pillar passes through the reference hole without contacting the inner wall and opening edge of the reference hole. A slit groove formation position is aligned with a pillar formation position by relatively shifting the pillar to the workpiece based on coordinate data where the reference position becomes its origin. Each slit groove is formed in the workpiece by supplying the pillar onto the slit groove formation position on the workpiece while irradiating and scanning a laser beam into the pillar of a high-pressure water jet many times along the slit groove formation position on the workpiece.
    • 在制造用于生产蜂窝结构体的成形模具的方法中,将基准位置确定为在高压水射流的柱和参考孔之间的工件上的相对位置。 参考孔深深地形成在工件上。 柱的外周边通过参考孔而不接触参考孔的内壁和开口边缘。 基于基准位置成为其原点的坐标数据,通过相对地将柱移动到工件,狭缝槽形成位置与柱形成位置对准。 通过在工件上的狭缝槽形成位置向激光束照射和扫描高压水射流的支柱多次,沿着工件上的狭缝槽形成位置将激光束照射并扫描到工件上的狭缝槽形成位置上,将每个狭缝槽形成在工件中。