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    • 4. 发明申请
    • Electromagnetic clamp and method for clamping a structure
    • 电磁夹具和夹紧结构的方法
    • US20040212471A1
    • 2004-10-28
    • US10424462
    • 2003-04-28
    • The Boeing Company
    • Arthur C. DayBruce David Stanley
    • H01F007/20
    • H01F7/20B25B11/002H01F2007/208Y10T29/4902Y10T29/49071Y10T29/49073Y10T29/49105
    • The electromagnetic clamp and method includes an electromagnet and a clamping piece located on opposite sides of a structure to clamp the structure. The electromagnet attracts the clamping piece through the structure when the electromagnet is energized, such that the electromagnet and clamping piece exert force on the structure, and an operation, such as drilling and/or fastener installation, may be performed on the structure. The configuration of the electromagnet creates the force necessary to securely clamp the structure. The electromagnet includes a coil and a core, and the core of the electromagnet is located within a longitudinal aperture that extends through the coil. The smallest lateral dimension of the core is chosen to maximize the flux density between the core and the clamping piece. As such, the smallest lateral dimension of the electromagnet may be greater than the distance between the clamping piece and the electromagnet.
    • 电磁夹具和方法包括电磁体和位于结构的相对侧上以夹紧结构的夹紧件。 当电磁体通电时,电磁体通过结构吸引夹紧件,使得电磁体和夹紧件对结构施加力,并且可以在结构上执行诸如钻孔和/或紧固件安装的操作。 电磁铁的结构产生牢固夹紧结构所需的力。 电磁体包括线圈和芯,并且电磁体的芯位于延伸穿过线圈的纵向孔内。 选择芯的最小横向尺寸以使芯和夹紧件之间的通量密度最大化。 因此,电磁体的最小横向尺寸可以大于夹紧件和电磁体之间的距离。