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    • 6. 发明授权
    • Actuators with graded activity
    • 执行员有分级活动
    • US5519278A
    • 1996-05-21
    • US363073
    • 1994-12-23
    • Manfred KahnPeter MaticGeorge C. Kirby, III
    • Manfred KahnPeter MaticGeorge C. Kirby, III
    • H01L41/22H01L41/08
    • H01L41/43H01L41/257H01L41/313H01L41/333
    • A method for reducing and/or shifting stress in at least one outer end poon of an actuator made from a piezoelectric material. The actuator is affixed to a substrate by an adhesive bond and adapted to cycle between an expanded and contracted positions, which creates stresses in the actuator and in the bond. The method includes the step of doping at least one outer portion of the actuator with a metal oxide to reduce piezoelectric activity therein. In a preferred embodiment, the doped outer portion has a gradient composition varying from the maximum at the end of the actuator to essentially zero concentration at a point inward of the end. The system includes a doped piezoelectric actuator adhesively bonded to a substrate and electrodes attached to the actuator for receiving electrical energy, the actuator containing a metal oxide dopant in the outer portions thereof.
    • 一种用于减小和/或移动由压电材料制成的致动器的至少一个外端部中的应力的方法。 致动器通过粘合剂粘合固定到基底上并且适于在膨胀和收缩位置之间循环,这在位置上产生致动器和粘结中的应力。 该方法包括用金属氧化物掺杂致动器的至少一个外部部分以降低其中的压电活动的步骤。 在优选实施例中,掺杂的外部部分具有从致动器的端部处的最大值到端部内侧的点处的基本上为零的梯度组成。 该系统包括粘附到基板的掺杂压电致动器和附接到致动器的用于接收电能的电极,致动器在其外部包含金属氧化物掺杂剂。
    • 9. 发明申请
    • Instrumented thoracic model
    • 仪器胸廓模型
    • US20060191544A1
    • 2006-08-31
    • US11365952
    • 2006-02-28
    • Kirth SimmondsRichard EverettPeter MaticAlan Leung
    • Kirth SimmondsRichard EverettPeter MaticAlan Leung
    • C12Q1/00A61B5/00A61K36/54
    • A61K36/54A61K38/014A61K2300/00
    • An nstrumented thoracic model for measuring the effects of impacts is provided. The model has simulated skeletal components, simulated tissue, simulated internal organs, and sensors that are optimally placed in the simulated tissue and organs, said simulated organs and said simulated skeletal components. Simulated human tissue is made of a modified ballistic gelatin, comprising ordinance gelatin, chilled water and an antimicrobial agent in a desired volume or weight percentage. The resulting mixture is then poured into a container or mold having the desired tissue shape, and then chilled until the mixture has set. Simulated lung tissue is made of the modified ballistic gelatin, but also incorporates nicrospheres to approximate the density and modality of the lungs. The sensors of the thoracic model are optimally placed using primary component analysis
    • 提供了一种用于测量影响影响的仪器胸廓模型。 该模型模拟骨骼组件,模拟组织,模拟内脏和最佳放置在模拟组织和器官中的传感器,所述模拟器官和所述模拟骨骼组件。 模拟的人体组织由改进的弹道明胶制成,包括规定的明胶,冷冻水和抗微生物剂,所需体积或重量百分比。 然后将所得混合物倒入具有所需组织形状的容器或模具中,然后冷却直至混合物固化。 模拟的肺组织由改良的弹道明胶制成,但也包含微球以近似肺的密度和形态。 胸部模型的传感器使用主要成分分析进行了优化