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    • 5. 发明授权
    • Releasable fastener system
    • 可拆卸紧固件系统
    • US07200902B2
    • 2007-04-10
    • US10273691
    • 2002-10-19
    • Alan Lampe BrowneNancy L. Johnson
    • Alan Lampe BrowneNancy L. Johnson
    • A44B18/00
    • F16B5/07A41D2300/326A44B18/0003A44B18/0007A44B18/0096A44D2203/00B64C33/02C08L2201/12F16B1/0014F16B2001/0028F16B2001/0035F16F2224/045Y10T24/27Y10T24/2733
    • A releasable fastener system comprises a loop portion and a hook portion. The loop portion includes a support and a loop material disposed on one side thereof whereas the hook portion includes a support and a plurality of closely spaced upstanding hook elements extending from one side thereof. When the hook portion and loop portion are pressed together they interlock to form a releasable engagement. The resulting joint created by the engagement is relatively resistant to shear and pull forces and weak in peel strength forces. The hook elements are formed of a material or have configurations that provide a shape changing capability and/or change in flexural modulus property to the hook elements. In this manner, the shape and/or flexural modulus of the hook elements can be remotely changed to provide a reduction in the shear and/or pull-off forces.
    • 可释放的紧固件系统包括环部分和钩部分。 环部分包括支撑件和设置在其一侧的环形材料,而钩部分包括支撑件和从其一侧延伸的多个紧密间隔的直立钩形元件。 当钩部和环部被压在一起时,它们互锁以形成可释放的接合。 通过接合产生的所得到的接头相对于剪切力和拉力相对地抵抗并且剥离强度力弱。 钩元件由材料形成或具有提供形状变化能力和/或对钩元件的挠曲模量特性的变化的构造。 以这种方式,钩元件的形状和/或挠曲模量可以被远程地改变以提供剪切力和/或拉力的减小。
    • 6. 发明授权
    • Volume filling mechanical structures for modifying crash deceleration pulse
    • 用于修改碰撞减速脉冲的体积填充机械结构
    • US06702366B1
    • 2004-03-09
    • US10235083
    • 2002-09-05
    • Alan Lampe BrowneNancy L. Johnson
    • Alan Lampe BrowneNancy L. Johnson
    • B60R2700
    • B60R19/00B60R2019/007B60R2021/0004F16F7/121
    • A mechanical, active crash pulse management structure for providing modification of crash pulse, wherein the structure has a dormant (initial) state volume, but then in the event of a crash, timely expands into a much larger deployed volume for providing management of an expectant crash energy. The preferred crash energy management structure is a before expansion honeycomb celled material brick, wherein expansion of the honeycomb brick is in a plane transverse to the cellular axis of the cells thereof, and crash crush is intended to be parallel to the cellular axis. In the event of a crash, either an active or passive activation mechanism is provided for causing expansion of honeycomb celled material.
    • 一种用于提供碰撞脉冲修改的机械,主动碰撞脉冲管理结构,其中该结构具有休眠(初始)状态量,但是在发生崩溃的情况下,及时扩展到更大的部署量以提供预期的管理 碰撞能量 优选的碰撞能量管理结构是膨胀前的蜂窝状细胞砖,其中蜂窝状砖的膨胀处于与其单元的细胞轴线相垂直的平面中,并且碰撞挤压旨在平行于细胞轴。 在碰撞的情况下,提供主动或被动的激活机构用于引起蜂窝状细胞材料的膨胀。
    • 7. 发明授权
    • Magnetorheological fluid damper
    • 磁流变阻尼器
    • US07225905B2
    • 2007-06-05
    • US10691091
    • 2003-10-22
    • Chandra Sekhar NamuduriAlan Lampe BrowneNancy L. Johnson
    • Chandra Sekhar NamuduriAlan Lampe BrowneNancy L. Johnson
    • F16F13/30
    • F16F9/535
    • A magnetorheological damper device is provided having an increased shear interface area per unit volume of device, which enhances the stroking force of the damper. The damper generally includes a thrust shaft comprising an external threaded surface in threaded communication with a sealed housing, wherein at least one end of the thrust shaft extends from the housing; a plurality of rotors and stators alternatingly arranged in the housing, wherein the plurality of rotors comprise a planar surface with a centrally located aperture that is rotatably engaged with the threaded surface of the thrust shaft, wherein the plurality of stators is fixedly attached to the housing and comprises a centrally located aperture dimensioned to accommodate vertical movement of the thrust shaft and a planar surface substantially parallel to the planar surface of the at least one rotor, and wherein alternating stators comprises a permanent magnet or an electromagnet; and a magnetorheological fluid disposed in a space defined by the plurality of rotors and stators.
    • 提供了一种磁流变阻尼器装置,其具有每单位体积装置增加的剪切界面面积,这增强了阻尼器的抚摸力。 阻尼器通常包括推力轴,其包括与密封壳体螺纹连通的外螺纹表面,其中推力轴的至少一端从壳体延伸; 多个转子和定子,其交替地布置在壳体中,其中多个转子包括具有中心定位的孔的平坦表面,其可旋转地与推力轴的螺纹表面接合,其中多个定子固定地附接到壳体 并且包括中心定位的孔,其尺寸适于容纳推力轴的垂直运动和基本上平行于至少一个转子的平坦表面的平面,并且其中交替定子包括永磁体或电磁体; 以及设置在由所述多个转子和定子限定的空间中的磁流变流体。
    • 8. 发明授权
    • Releasable fastener system
    • 可拆卸紧固件系统
    • US07140081B2
    • 2006-11-28
    • US10358997
    • 2003-02-05
    • Alan Lampe BrowneNancy L. Johnson
    • Alan Lampe BrowneNancy L. Johnson
    • A44B18/00
    • A44B18/0003A41D2300/326A44B18/0007A44B18/0096A44D2203/00B64C33/02C08L2201/12F16B1/0014F16B5/07F16B2001/0028F16B2001/0035F16F2224/045Y10T24/27
    • A releasable fastener system comprises a loop portion and a hook portion. The loop portion includes a support and a loop material disposed on one side thereof whereas the hook portion includes a support and a plurality of closely spaced upstanding hook elements extending from one side thereof. When the hook portion and loop portion are pressed together they interlock to form a releasable engagement. The resulting joint created by the engagement is relatively resistant to shear and pull forces and weak in peel strength forces. The hook elements are formed of a material or have configurations that provide a shape changing capability and/or change in flexural modulus property to the hook elements. In this manner, the shape and/or flexural modulus of the hook elements can be remotely changed to provide a reduction in the shear and/or pull forces.
    • 可释放的紧固件系统包括环部分和钩部分。 环部分包括支撑件和设置在其一侧的环形材料,而钩部分包括支撑件和从其一侧延伸的多个紧密间隔的直立钩形元件。 当钩部和环部被压在一起时,它们互锁以形成可释放的接合。 通过接合产生的所得到的接头相对于剪切力和拉力相对地抵抗并且剥离强度力弱。 钩元件由材料形成或具有提供形状变化能力和/或对钩元件的挠曲模量特性的变化的构造。 以这种方式,可以远程地改变钩元件的形状和/或弯曲模量,以减少剪切力和/或拉力。