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Development of novel piezoelectric ceramics and composites for sensors and actuators by solid freeform fabrication

机译:通过固态自由形式制造开发用于传感器和执行器的新型压电陶瓷和复合材料

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Novel piezoelectric ceramic, and ceramic/polymer composite structures were fabricated by solid freeform fabrication (SFF) for sensor and actuator applications. SFF techniques including: Fused Deposition of Ceramics (FDC) and Sanders Prototyping (SP) were utilized to fabricate a variety of complex structures directly from a computer aided design (CAD) file. Many novel and complex composite structures including volume fraction gradients (VFG), staggered rods, radial and curved composites, and actuator designs such as tubes, spirals and telescopings were made using the flexibility provided by the above processes. Radial composites with various connectivities in the radial direction were made for towed array applications. The FDC process was also used to fabricate curved composites with desired radii of curvatures for focusing high intensity ultrasound beams at different points along the axial direction. VFGs were incorporated into some of these designs, with the ceramic content decreasing from the center towards the edges. Many new designs are also being used to manufacture high authority actuators utilizing the FDC technique. The design, fabrication and electromechanical properties of these sensor and actuator structures are discussed in this paper.
机译:新型压电陶瓷以及陶瓷/聚合物复合结构通过固态自由形式制造(SFF)制成,用于传感器和执行器应用。 SFF技术包括:熔融陶瓷沉积(FDC)和桑德斯原型(SP),可直接从计算机辅助设计(CAD)文件中制造各种复杂的结构。利用上述过程提供的灵活性,制造了许多新颖而复杂的复合材料结构,包括体积分数梯度(VFG),交错的杆,径向和弯曲复合材料以及执行器设计,例如管,螺旋和伸缩式设计。制备了在径向上具有各种连接性的径向复合材料,用于拖曳阵列应用。 FDC工艺还用于制造具有所需曲率半径的弯曲复合材料,以将高强度超声束聚焦在沿轴向的不同点上。 VFG被并入其中的某些设计中,陶瓷含量从中心到边缘逐渐降低。许多新设计也被用于利用FDC技术制造高权限执行器。本文讨论了这些传感器和执行器结构的设计,制造和机电性能。

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