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    • 2. 发明授权
    • Isolator mount for shock and vibration mitigation
    • 隔振器安装用于减震和减震
    • US07303184B1
    • 2007-12-04
    • US11519247
    • 2006-09-12
    • Bruce BowerGareth Knowles
    • Bruce BowerGareth Knowles
    • F16M1/00
    • F16F1/027F16F3/023F16F2224/0208F16F2224/0258F16F2224/0283
    • A passive isolator mount capable of dissipating shocks and vibrations as either heat or magnetic energy is presented. The passive isolator includes a pair of L-shaped or C-shaped brackets capable of withstanding repeated deflections and strains, energy dissipating layers disposed along each bracket, and a bond layer. The energy dissipating layers are composed of a rare earth element or alloy, a ferromagnetic shape alloy, a magnetic shape memory alloy, a magnetostrictive alloy, a magneto-mechanical alloy, a super-elastic alloy, or a combination thereof. The bond layer is disposed between and adheres one energy dissipating layer along a first bracket to an energy dissipating layer along a second bracket so that the resultant passive isolator is C-shaped. Energy dissipating and bond layers completely bisect the passive isolator either widthwise through the thickness of the L-shaped brackets or lengthwise through the thickness of the C-shaped brackets.
    • 提供能够消除作为热能或磁能的冲击和振动的无源隔离器安装座。 被动隔离器包括能够承受反复偏转和应变的一对L形或C形支架,沿着每个支架设置的消能层以及接合层。 能量耗散层由稀土元素或合金,铁磁性合金,磁形记忆合金,磁致伸缩合金,磁 - 机械合金,超弹性合金或其组合构成。 接合层设置在沿着第一支架的一个能量消散层之间并沿着第二支架粘附到能量消散层上,使得所得的被动隔离器为C形。 能量消散和接合层将被动隔离器在宽度方向上完全平分穿过L形支架的厚度或纵向通过C形支架的厚度。
    • 3. 发明授权
    • Current control device
    • 电流控制装置
    • US06943660B2
    • 2005-09-13
    • US10810521
    • 2004-03-26
    • Bruce BowerGareth Knowles
    • Bruce BowerGareth Knowles
    • H01C7/02H01C10/10H01C7/10
    • H01C7/13H01C7/027H01C10/103H01C10/106H01C17/06586Y10T29/435Y10T29/4902Y10T29/49082Y10T29/49098Y10T29/49105Y10T29/49128Y10T29/49147
    • A current control device is described wherein a pressure conduction composite is compressed and decompressed to alter its conductivity and thereby current conduction through the device. The pressure conduction composite is composed of a nonconductive matrix, a conductive filler, and an additive. The invention consists of electrodes and pressure plates contacting the composite. Electrically activated actuators apply a force onto pressures plates. Actuators are composed of a piezoelectric, piezoceramic, electrostrictive, magnetostrictive, and shape memory alloy materials, capable of extending and/or contracting thereby altering pressure and consequently resistivity within the composite. Two or more current control devices are electrically coupled parallel to increase power handling.
    • 描述了一种电流控制装置,其中压力传导复合材料被压缩和减压以改变其导电性,从而改变通过该装置的电流传导。 压力传导复合材料由非导电基体,导电填料和添加剂组成。 本发明包括接触复合材料的电极和压板。 电激活的致动器在压力板上施加力。 致动器由压电,压电陶瓷,电致伸缩,磁致伸缩和形状记忆合金材料组成,能够延伸和/或收缩从而改变复合材料内的压力并因此改变电阻率。 两个或多个电流控制装置并联电耦合以增加功率处理。
    • 4. 发明授权
    • Method of fabricating a current control device
    • 制造电流控制装置的方法
    • US07069642B2
    • 2006-07-04
    • US11044856
    • 2005-01-26
    • Bruce BowerGareth Knowles
    • Bruce BowerGareth Knowles
    • H01C17/28
    • H01C7/13H01C7/027H01C10/103H01C10/106H01C17/06586Y10T29/435Y10T29/4902Y10T29/49082Y10T29/49098Y10T29/49105Y10T29/49128Y10T29/49147
    • A method of fabricating a current control device is presented. The method impregnates a pressure conduction composite within a current control device with a fluid additive via suffusion. The suffusion process is performed by placing the pressure conduction composite within a bath of a liquid additive. The method generally includes the steps of mixing a compressible non-conductive matrix and conductive filler, forming a pressure conduction composite composed of the non-conductive matrix having the conductive filler electrically isolated therein, suffusing the composite within a bath so as to impregnate the composite with an additive, and attaching a pair of conductive plates to the composite. Alternate methods include attaching non-conductive plates to the composite, forming pores within the pressure conduction composite, and inserting a temperature responsive material into a porous composite.
    • 提出了一种制造电流控制装置的方法。 该方法通过充满浸渍流体添加剂的电流控制装置内的压力传导复合材料。 通过将压力传导复合材料放置在液体添加剂的浴中来进行填充过程。 该方法通常包括混合可压缩非导电基质和导电填料的步骤,形成由非导电基体组成的压电传导复合材料,该非导电基体具有电隔离的导电填料,使得该复合物在浴液中浸渍, 并添加一对导电板到复合材料。 替代方法包括将非导电板附接到复合材料,在压力传导复合材料内形成孔,并将温度响应材料插入多孔复合材料。
    • 9. 发明授权
    • Current control device
    • 电流控制装置
    • US06798332B2
    • 2004-09-28
    • US10674712
    • 2003-09-29
    • Bruce BowerGareth Knowles
    • Bruce BowerGareth Knowles
    • H01C1010
    • H01C7/13H01C7/027H01C10/103H01C10/106H01C17/06586Y10T29/435Y10T29/4902Y10T29/49082Y10T29/49098Y10T29/49105Y10T29/49128Y10T29/49147
    • A current control device is described wherein a pressure conduction composite is compressed and decompressed to alter its conductivity and thereby current conduction through the device. The pressure conduction composite is composed of a nonconductive matrix, a conductive filler, and an additive. The invention consists of electrodes and pressure plates contacting the composite. Electrically activated actuators apply a force onto pressures plates. Actuators are composed of a piezoelectric, piezoceramic, electrostrictive, magnetostrictive, and shape memory alloy materials, capable of extending and/or contracting thereby altering pressure and consequently resistivity within the composite. In an alternate embodiment, two or more current control devices are electrically coupled parallel to increase power handling.
    • 描述了一种电流控制装置,其中压力传导复合材料被压缩和减压以改变其导电性,从而改变通过该装置的电流传导。 压力传导复合材料由非导电基体,导电填料和添加剂组成。 本发明包括接触复合材料的电极和压板。 电激活的致动器在压力板上施加力。 致动器由压电,压电陶瓷,电致伸缩,磁致伸缩和形状记忆合金材料组成,能够延伸和/或收缩从而改变复合材料内的压力并因此改变电阻率。 在替代实施例中,两个或多个电流控制装置并联电耦合以增加功率处理。