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- W1985275874 abstract "As known, the electrical induced strain of conventional piezoceramic materials is limited by 0.12 % (2 kV/mm), whichoften requires strain transformation designs, like levers, in order to meet application needs. High fabrication accuracyand low tolerances are crucial points in mechanical manufacturing causing high device costs.Therefore, we developed a piezoelectric composite actuator with inherent stress - strain transformation. Basically,piezoceramic sheets are laminated with spring steel of a certain curvature, which can be realised by a comparativelysimple fabrication technique. The working diagram of these composite bow actuators showed a high level ofperformance adaptable to a wide range of applications. The authors established the value chain covering thepiezoceramic formulation, the processing technology and the design in view of optimum system performance.The paper presents an overview of the design principles, simulation and various aspect of fabrication technologyincluding lamination, sintering and polarization. The new devices are useable in different sectors, for example inautomotive industry as solid state transducer or as the active part in injectors. Moreover, the composite bow actuatorsmay find application in microsystems technology, micro optics and micro fluidics as well as vibration dampers. Thecomposite bow actuators can be used as single component transducer, as well as multi-bow actuator in series or parallelcombination on demand." @default.
- W1985275874 created "2016-06-24" @default.
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- W1985275874 date "2009-03-26" @default.
- W1985275874 modified "2023-09-23" @default.
- W1985275874 title "New modular piezo actuator with built-in stress-strain transformation" @default.
- W1985275874 cites W2037457134 @default.
- W1985275874 doi "https://doi.org/10.1117/12.817529" @default.
- W1985275874 hasPublicationYear "2009" @default.
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