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    • 3. 发明申请
    • SMALL SCALE SMART MATERIAL ACTUATOR AND ENERGY HARVESTING APPARATUS
    • 小规模智能材料执行器和能量采集设备
    • WO2011006028A3
    • 2011-04-21
    • PCT/US2010041461
    • 2010-07-09
    • VIKING AT LLCMOLER JEFFERY B
    • MOLER JEFFERY B
    • H01L41/04B81B3/00
    • H01L41/083B81B3/0021H02N2/043H02N2/186
    • A micro-scale, smart material actuator having an overall length smaller than 10mm comprising a multilayer piezoelectric stack housed in a mechanical amplifier made up of a fixed supporting member, a movable supporting member connected to compliant links attached to one or more actuating arms such that, when a suitable electric current is applied to the piezoelectric stack, the resulting expansion is translated through the movable supporting member, thereby causing movement in the actuating arms A method of generating electricity from motion using such an actuator is also disclosed in which the actuating arms are connected to a source of mechanical motion and the piezoelectric stack is connected to an electrical load, whereby the mechanical motion causes the piezoelectric stack to generate electrical charge that is then discharged into the load.
    • 一种总长度小于10mm的微尺度智能材料致动器,包括容纳在由固定支撑构件构成的机械放大器中的多层压电堆叠,连接到附接到一个或多个致动臂的柔性链节的可移动支撑构件,使得 当合适的电流施加到压电叠层时,所产生的膨胀通过可移动支撑构件平移,从而导致致动臂中的运动还公开了使用这种致动器从运动产生电的方法,其中致动臂 连接到机械运动源,并且压电叠层连接到电负载,由此机械运动导致压电叠层产生电荷,然后将其排出到负载中。
    • 4. 发明申请
    • HIGH SPEED SMART MATERIAL ACTUATOR WITH SECOND STAGE
    • 具有第二级的高速智能材料执行器
    • WO2012118548A3
    • 2013-02-28
    • PCT/US2011064229
    • 2011-12-09
    • VIKING AT LLCMOLER JEFFERY B
    • MOLER JEFFERY B
    • H01L41/04H02N2/02
    • H02N2/043H01L41/053
    • A smart material actuator apparatus having a smart material device, compensator, movable supporting member, two mechanical webs, two actuating arms, and a second stage assembly. Application of an electrical potential causes the smart material device to expand, thereby moving the actuating arms. That movement causes resilient strips to urge a second stage attachment surface in a direction substantially parallel to the smart material device. Optional dampening assemblies may be added where high speed operation is desired, and an optional valve assembly may be attached where an actuated valve, such as a high speed actuated air valve, is needed.
    • 具有智能材料装置,补偿器,可移动支撑构件,两个机械腹板,两个致动臂和第二平台组件的智能材料致动器装置。 施加电势导致智能材料装置膨胀,从而移动致动臂。 该运动导致弹性条在基本上平行于智能材料装置的方向上推动第二级附接表面。 可以在需要高速操作的地方添加可选的阻尼组件,并且可选的阀组件可以附接在需要诸如高速致动空气阀的致动阀。
    • 5. 发明申请
    • HIGH SPEED SMART MATERIAL ACTUATOR WITH SECOND STAGE
    • 具有第二级的高速智能材料执行器
    • WO2012118548A2
    • 2012-09-07
    • PCT/US2011/064229
    • 2011-12-09
    • VIKING AT, LLCMOLER, Jeffery, B.
    • MOLER, Jeffery, B.
    • H02N2/043H01L41/053
    • A smart material actuator apparatus having a smart material device, compensator, movable supporting member, two mechanical webs, two actuating arms, and a second stage assembly. Application of an electrical potential causes the smart material device to expand, thereby moving the actuating arms. That movement causes resilient strips to urge a second stage attachment surface in a direction substantially parallel to the smart material device. Optional dampening assemblies may be added where high speed operation is desired, and an optional valve assembly may be attached where an actuated valve, such as a high speed actuated air valve, is needed.
    • 具有智能材料装置,补偿器,可移动支撑构件,两个机械腹板,两个致动臂和第二平台组件的智能材料致动器装置。 施加电势导致智能材料装置膨胀,从而移动致动臂。 该运动导致弹性条在基本上平行于智能材料装置的方向上推动第二级附接表面。 可以在需要高速操作的地方添加可选的阻尼组件,并且可选的阀组件可以附接在需要诸如高速致动空气阀的致动阀。
    • 10. 发明申请
    • MOUNTABLE ARM SMART MATERIAL ACTUATOR AND ENERGY HARVESTING APPARATUS
    • 可安装的ARM智能材料执行器和能量采集设备
    • WO2011006164A2
    • 2011-01-13
    • PCT/US2010/041727
    • 2010-07-12
    • VIKING AT, LLCMOLER, Jeffery, B.
    • MOLER, Jeffery, B.
    • H01L41/04
    • H02N2/043H02N2/188Y10T29/4973
    • A smart material actuator comprising a mechanical amplifier with a fixed supporting member, at least one mountable actuating arm, and mechanical web having at least one compliant member attached to the mountable arm and a movable supporting member. A piezoelectric stack is affixed between a first mounting surface on the fixed supporting member and a second mounting surface on the movable supporting member. With the fixed supporting member being substantially rigid, and the piezoelectric stack being affixed between the first mounting surface and the second mounting surface, which are substantially parallel, applying an appropriate electric potential to the piezoelectric stack will cause it to expand substantially without angular movement. The expansion urges the second mounting surface away from the first, thereby causing the compliant members of the mechanical web to flex, thereby moving the mountable actuating arm. The configuration of the web and the length of the mountable arm cause the actuating end of the arm to move across a distance greater than the expansion of the piezoelectric stack. In this way, the expansion of the stack is effectively amplified by the mechanical amplifier. Actuators of this type may be used both to create mechanical motion from electrical energy and to harvest electrical energy from mechanical motion, or sense the degree of such motion. A number of arm designs and means of attachment to external components are disclosed, in addition to methods of generating electricity from mechanical motion and generating vibration using such actuators and methods of tuning the resonant frequency and increasing the efficiency of energy harvesting through resonant operation.
    • 一种智能材料致动器,包括具有固定支撑构件的机械放大器,至少一个可安装的致动臂,以及具有附接到可安装臂的至少一个顺从构件和可移动支撑构件的机械腹板。 压电堆叠被固定在固定支撑构件上的第一安装表面和可移动支撑构件上的第二安装表面之间。 由于固定的支撑构件基本上是刚性的,并且压电叠层固定在基本上平行的第一安装表面和第二安装表面之间,对压电叠层施加合适的电势将使其在没有角度运动的情况下基本上膨胀。 膨胀促使第二安装表面远离第一安装表面,从而使机械网的柔顺构件弯曲,从而移动可安装的致动臂。 腹板的构造和可安装臂的长度使得臂的致动端移动超过压电叠层的膨胀的距离。 以这种方式,堆叠的扩展被机械放大器有效放大。 这种类型的致动器可以用于从电能产生机械运动并且从机械运动中获取电能,或者感测到这种运动的程度。 除了通过机械运动产生电力并使用这种致动器产生振动的方法以及调谐共振频率并且通过谐振操作提高能量收集的效率的方法之外,还公开了许多臂设计和附接到外部部件的装置。