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首页> 外文期刊>Journal of Micromechanics and Microengineering >Application of gel-casting to the fabrication of 1-3 piezoelectric ceramic-polymer composites for high-frequency ultrasound devices
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Application of gel-casting to the fabrication of 1-3 piezoelectric ceramic-polymer composites for high-frequency ultrasound devices

机译:凝胶浇铸在高频超声装置中1-3压电陶瓷-聚合物复合材料的制造中的应用

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摘要

A modified gel-casting technique was used to fabricate a 1-3 piezoelectric ceramic/polymer composite substrate formed by irregular-shaped pillar arrays of small dimensions and kerfs. This technique involves the polymerization of aqueous piezoelectric (PZT) suspensions with added water-soluble epoxy resin and polyamine-based hardener that lead to high strength, high density and resilient ceramic bodies. Soft micromoulding was used to shape the ceramic segments, and micropillars with lateral features down to 4 μm and height-to-width aspect ratios of ~10 were achieved. The composite exhibited a clear thickness resonance mode at approximately 70 MHz and a k_(eff) ~ 0.51, demonstrating that the ceramic micropillars possess good electrical properties. Furthermore, gel-casting allows the fabrication of ceramic structures with non-conventional shapes; hence, device design is not limited by the standard fabrication methods. This is of particular benefit for high-frequency transducers where the critical design dimensions are reduced.
机译:使用改进的凝胶浇铸技术来制造由小的尺寸和切口的不规则形状的柱状阵列形成的1-3压电陶瓷/聚合物复合衬底。该技术涉及将水性压电(PZT)悬浮液与添加的水溶性环氧树脂和聚胺基硬化剂进行聚合,从而产生高强度,高密度和弹性陶瓷体。使用软微成型法对陶瓷段进行成型,并获得了侧向特征低至4μm,纵横比约10的微柱。该复合材料在约70 MHz处表现出清晰的厚度共振模式,k_(eff)〜0.51,表明陶瓷微柱具有良好的电性能。此外,凝胶浇铸允许制造具有非常规形状的陶瓷结构。因此,器件设计不受标准制造方法的限制。这对于减小关键设计尺寸的高频换能器特别有用。

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