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    • 28. 发明授权
    • Monolithic piezoactuator with rotation of the polarisation in the transition region and use of said piezoactuator
    • 具有在过渡区域中的偏振旋转的单片压电致动器以及所述压电致动器的使用
    • US07545080B2
    • 2009-06-09
    • US11996573
    • 2006-07-26
    • Harald Johannes KastlAndreas LenkCarsten SchuhClaus Zumstrull
    • Harald Johannes KastlAndreas LenkCarsten SchuhClaus Zumstrull
    • H01L41/08
    • H01L41/257H01L41/0471H01L41/0838H01L41/273Y10T29/42
    • A piezoactuator has at least one piezoelectric-active partial stack with piezoceramic layers arranged one over the other with piezoceramic material and electrode layers arranged between the piezoceramic layers, at least one piezoelectric-inactive terminating region arranged over the partial stack and at least one transition region between the partial stack and the terminating region, the partial stack, the terminating region and the transition region all connected together to give a monolithic complete stack. The transition region has a transition region stack with piezoceramic layers arranged one over the other and electrode layers arranged between the piezoceramic layers both have a form and are arranged on each other such that, in the stack direction of the transition region stack, from piezoceramic layer to piezoceramic layer there is a successive rotation about a main axis of the polarity and/or a rotation of the main axis of the electric control is provided.
    • 压电致动器具有至少一个压电活性部分叠层,压电陶瓷层彼此排列,压电陶瓷材料和布置在压电陶瓷层之间的电极层,至少一个排列在部分叠层上的压电非活化终止区域和至少一个过渡区域 在部分堆叠和终止区域之间,部分堆叠,终止区域和过渡区域全部连接在一起,以提供整体堆叠。 过渡区域具有过渡区堆叠,其中压电陶瓷层彼此排列,并且布置在压电陶瓷层之间的电极层都具有一种形式并且彼此排列,使得在过渡区堆叠的堆叠方向上,从压电陶瓷层 对于压电陶瓷层,存在围绕极性的主轴的连续旋转和/或提供电控制的主轴的旋转。
    • 29. 发明申请
    • ADAPTING A PRODUCTION PROCESS FOR COMPONENTS OF A COMPONENT GROUP
    • US20220358267A1
    • 2022-11-10
    • US17624251
    • 2020-06-24
    • Carsten Schuh
    • Carsten Schuh
    • G06F30/27G06Q50/04G05B19/4097
    • The invention relates to adapting a process for producing components of a component assembly, wherein, during the production process of a first component of the component assembly, a real digital model (15) of the first component is provided with information regarding design, production, actual geometry (5), field usage, repair and/or recycling of the first component and is updated, comprising the steps of:—acquiring (S1) specifications (11) for the components of the component assembly;—creating (S2) a CAD model (12) for manufacturing the first component according to the specifications (11);—creating (S3) the real digital model (15);—adapting (S4) the real digital model (15) on the basis of first information obtained as a result of creating (S2) the CAD model (12);—manufacturing (S5, 13) the first component according to the CAD model (12);—adapting (S6) the real digital model (15) on the basis of second information obtained as a result of manufacturing (S5, 13) the first component;—comparing (S7) the real digital model (15) with the specifications (11) for the components of the component assembly;—adapting (S8) the CAD model (12) taking into account the comparison (S7) and additional parameters; and—using (S9) the adapted CAD model (12) for further manufacturing of the components of the component assembly.