Layered manufacturing for prototyping of novel transducers

A. Safari, M. E. Ebrahimi, S. Turcu, A. Hall, R. Brennan, N. M. Hagh
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引用次数: 3

Abstract

Layered Manufacturing (LM) technology has been implemented to prototype novel piezoelectric ceramics and composites for sensor and actuator applications. Piezoelectric actuators in the form of tubes, telescoping, spirals and ovals have been manufactured. Among actuators, spirals have shown giant tangential displacements up to several millimeters at moderate electric field. Multimaterials actuators have also been prototyped to study field-induced strain in these structures. In addition to actuators, piezocomposite sensors with oriented 2-2 and 3-3 composites were prototyped, in which the ceramic phase was oriented with respect to the poling direction. Various piezoelectric properties were measured and calculated. The hydrostatic figure of merit at an orientation angle of 45 degrees was significantly (50-80 times) larger than those of the conventional piezocomposites. Recently, we have fabricated net shape grain-oriented/single crystal components by integration of LM and Templatcd Grain Growth techniques. Grain oriented PMN-PT, bismuth titanate, and lead niobate components were also made using LM feedstock containing small amounts of platelet or needle-like seeds, resulting in improved piezoelectric properties.
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新型换能器原型的分层制造
分层制造(LM)技术已经应用于传感器和执行器应用的新型压电陶瓷和复合材料的原型。管状、伸缩式、螺旋形和椭圆形的压电致动器已被制造出来。在执行器中,螺旋在中等电场下显示出巨大的切向位移,可达几毫米。为了研究这些结构中的场致应变,还制作了多材料致动器的原型。除致动器外,还制作了2-2和3-3取向复合材料的压电复合传感器原型,其中陶瓷相相对于极化方向取向。测量和计算了各种压电性能。取向角为45度时的流体静力性能比传统的压电复合材料显著(50-80倍)大。近年来,我们通过集成LM和Templatcd晶粒生长技术制备了网状晶粒定向/单晶元件。晶粒取向PMN-PT、钛酸铋和铌酸铅组分也使用含有少量血小板或针状种子的LM原料制成,从而改善了压电性能。
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