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    • 3. 发明申请
    • Self-piercing rivet
    • 自穿铆钉
    • US20070104553A1
    • 2007-05-10
    • US11591705
    • 2006-11-02
    • Andre PhilipskotterJohannes EcksteinMichael RutherHerbert WaltzRoland Porepp
    • Andre PhilipskotterJohannes EcksteinMichael RutherHerbert WaltzRoland Porepp
    • F16B39/00F16B19/08
    • F16B19/086
    • A self-piercing rivet of a special rivet geometry is described, which in particular is suitable for joining high strength steel sheets, but can also be used for other metal sheets. The self-piercing rivet is in particular characterized by a special underhead geometry as well as a special geometry of the rivet foot (cutting region). Thus the self-piercing rivet has an underhead chamfer which with a radial plane of the self-piercing rivet encloses an angle of 20°+5°/−5° and merges tangentially into the cylindrical outer surface of the rivet shank via a radius. In the region of the rivet foot the self-piercing rivet has a plane shank face, which extends essentially at a right angle to the rivet axis and which merges “smoothly” into the cylindrical inner surface via a shank inner surface and a radius. In comparison to conventional self-piercing rivets the special rivet geometry enables lower joining forces and tensile forces in the joining operation, an optimized load bearing performance and an optimum joint quality of the self-piercing rivet joint as well as minimum gap formation between the rivet and the metal sheet.
    • 描述了特殊铆钉几何形状的自穿孔铆钉,其特别适用于连接高强度钢板,但也可用于其它金属板。 自穿铆钉的特征特征在于特殊的底部几何以及铆钉(切割区域)的特殊几何形状。 因此,自穿铆钉具有底部倒角,其中自穿孔铆钉的径向平面包围20°±5°/ -5°的角度,并通过半径切向地并入铆钉柄的圆柱形外表面。 在铆钉脚的区域中,自穿铆钉具有平面柄面,其基本上以与铆钉轴线成直角的方式延伸,并通过柄内表面和半径“平稳地”并入圆柱形内表面。 与传统的自穿铆钉相比,特殊的铆钉几何能够在接合操作中实现较低的接合力和拉力,优化的承载性能以及自穿铆钉接头的最佳接头质量以及铆钉之间的最小间隙形成 和金属片。
    • 4. 发明申请
    • MAGNETIC PUMPING MACHINES
    • 磁力泵机
    • US20090191073A1
    • 2009-07-30
    • US12019697
    • 2008-01-25
    • Herbert KopecekMichael Bernhard SchmitzJohannes EcksteinNicola MarcucciStefano MeucciCarlos Jimenez Haertel
    • Herbert KopecekMichael Bernhard SchmitzJohannes EcksteinNicola MarcucciStefano MeucciCarlos Jimenez Haertel
    • F04B17/00F04B35/04
    • F04B35/045F04B17/04F04B17/044
    • Magnetic pumping systems and methods of pumping using such systems are disclosed. In one embodiment, a system for pumping fluid comprises: a substantially cylinder-shaped pump housing (200); a magnetic piston (210) residing within the pump housing (200) for displacing the fluid; a magnetic actuator (220) surrounding the pump housing (200), wherein the magnetic actuator (220) is configured to move the piston (210) by a magnetic force between the magnetic piston (210) and the magnetic actuator (220); and a magnetic ring (230) surrounding and attached to the magnetic actuator (220) for increasing a magnitude of the magnetic force. In another embodiment, a system for pumping fluid comprises: a pump housing (10); a magnetic piston (20) residing within the pump housing (10) for displacing the fluid; an electromagnetic actuator (150) outside the pump housing (10) comprising a movable conductive coil (160), wherein the electromagnetic actuator (150) is configured to move the piston (20) by an electromagnetic force; and an external driver for moving the conductive coil (160).
    • 公开了使用这种系统的抽吸系统和泵送方法。 在一个实施例中,用于泵送流体的系统包括:基本上圆柱形的泵壳体(200); 位于泵壳体(200)内的用于移动流体的磁性活塞(210); 围绕所述泵壳体(200)的磁性致动器(220),其中所述磁性致动器(220)构造成通过磁力在所述磁性活塞(210)和所述磁性致动器(220)之间移动所述活塞(210) 以及围绕并附接到所述磁致动器(220)的磁环(230),用于增加所述磁力的大小。 在另一个实施例中,用于泵送流体的系统包括:泵壳体(10); 位于泵壳体(10)内的磁性活塞(20),用于移动流体; 包括可移动导电线圈(160)的所述泵壳体(10)外部的电磁致动器(150),其中所述电磁致动器(150)构造成通过电磁力移动所述活塞(20) 和用于移动导电线圈(160)的外部驱动器。
    • 8. 发明授权
    • Self-piercing rivet
    • 自穿铆钉
    • US07628573B2
    • 2009-12-08
    • US11591705
    • 2006-11-02
    • Andre PhilipskötterJohannes EcksteinMichael RutherHerbert WältzRoland Porepp
    • Andre PhilipskötterJohannes EcksteinMichael RutherHerbert WältzRoland Porepp
    • F16B19/08
    • F16B19/086
    • A self-piercing rivet of a special rivet geometry is described, which in particular is suitable for joining high strength steel sheets, but can also be used for other metal sheets. The self-piercing rivet is in particular characterized by a special underhead geometry as well as a special geometry of the rivet foot (cutting region). Thus the self-piercing rivet has an underhead chamfer which with a radial plane of the self-piercing rivet encloses an angle of 20°+5°/−5° and merges tangentially into the cylindrical outer surface of the rivet shank via a radius. In the region of the rivet foot the self-piercing rivet has a plane shank face, which extends essentially at a right angle to the rivet axis and which merges “smoothly” into the cylindrical inner surface via a shank inner surface and a radius. In comparison to conventional self-piercing rivets the special rivet geometry enables lower joining forces and tensile forces in the joining operation, an optimized load bearing performance and an optimum joint quality of the self-piercing rivet joint as well as minimum gap formation between the rivet and the metal sheet.
    • 描述了特殊铆钉几何形状的自穿孔铆钉,其特别适用于连接高强度钢板,但也可用于其它金属板。 自穿铆钉的特征特征在于特殊的底部几何以及铆钉(切割区域)的特殊几何形状。 因此,自穿铆钉具有底部倒角,其中自穿孔铆钉的径向平面包围20°±5°/ -5°的角度,并通过半径切向地融合到铆钉柄的圆柱形外表面中。 在铆钉脚的区域中,自穿铆钉具有平面柄面,其基本上以与铆钉轴线成直角的方式延伸,并通过柄内表面和半径“平稳地”并入圆柱形内表面。 与传统的自穿铆钉相比,特殊的铆钉几何能够在接合操作中实现较低的接合力和拉力,优化的承载性能以及自穿铆钉接头的最佳接头质量以及铆钉之间的最小间隙形成 和金属片。