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PIEZOCERAMIC BASED INTELLIGENT COMPOSITE MATERIALSAND STRUCTURES

机译:基于压电陶瓷的智能复合材料和结构

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Piezoceramics proved to be a key material in micro systems and smart structure technology. Usernof actuators, sensors and electronics buried in the load bearing structure offers the opportunity forrnnoise reduction, vibration and shape control, micro positioning and health monitoring. Innovativernsolutions are arising from new materials and integration technologies, based on thin and thick filmrnprocessing, tape casting, multilayer and fibre fabrication. Piezoceramic multilayer stacks allowingrnfor the new generation of diesel and gasoline injectors can serve as an exemplary example of thernhigh innovative potential of this material class. The paper is going to discuss the material-rnprocessing- and application relationships in view of advanced solutions for structural integratedrnactuators and strain sensors. Progress in improved piezoceramics (high temperature application,rntransparent), active composites (polymer, metal, ceramic matrix) and integrated modules arernexpected to stimulate innovative ideas especially in automotive engineering.
机译:事实证明,压电陶瓷是微系统和智能结构技术中的关键材料。埋在承重结构中的用户执行器,传感器和电子设备为降低噪声,振动和形状控制,微定位和健康监控提供了机会。基于薄膜和厚膜加工,流延,多层和纤维制造的新材料和集成技术产生了创新的解决方案。压电陶瓷多层堆栈可用于新一代柴油和汽油喷射器,可以作为此类材料的巨大创新潜力的示例。鉴于结构集成致动器和应变传感器的高级解决方案,本文将讨论材料与加工之间的关系和应用。期望改进压电陶瓷(高温应用,透明),活性复合材料(聚合物,金属,陶瓷基体)和集成模块方面的进步,以激发创新思想,尤其是在汽车工程领域。

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