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Flexible Ceramic-Polymer Composite Substrates With Spatially Variable Dielectrics for MiniaturizedRF Applications

机译:具有用于小型化的型近距离应用的柔性陶瓷聚合物复合材料基材,具有空间可变电介质

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The goal of this research is to develop a process suitable for producing monolithic conformal substrates with a spatial arrangement of material cells according to a particular design creating novel material systems, useful for many multi- functional electronic and Radio Frequency devices. In this study, MCT ceramics (Mg-Ca-Ti-O systems) and organic binders (polymer solution) are mixed and fabricated as films through a process called tape casting to compromise between high dielectric constant and flexibility. Prior to optimizing the process, several characterization studies are carried out: Commercial spray dried MCT powders (Transtech Inc.) with dielectric constant k=70 and k=20 were analyzed as pressed and produced into tape cast films. Dielectric properties are then measured by an Agilent 16451B material analysis kit and their microscopic behavior is examined by scanning electron microscopy. Results show that flexible composite films show a maximum dielectric constant of s~22 unlike their powder pressed form with e -16 but their loss behavior deteriorates when compared with their sintered form and a loss tangent factor of 0.001. The difference is attributed to the air content vs. polymer presence of the material in powder pressed form. Also, these substrates naturally are no longer flexible; hence studies are focused on their tape cast form. The potential of these dielectric shades to serve as candidate constituents for producing monolithic textured polymer-ceramic-composites with controllable loss is studied further. Four properties are of prime importance: tunability of dielectric constants to achieve miniaturization, flexibility via low temperature processing of polymers and loss controllability.
机译:该研究的目的是开发一种适用于生产单片共形衬底的过程,其根据特定设计产生具有材料电池的空间布置,这是一种创建新颖的材料系统,可用于许多多功能电子和射频器件。在该研究中,通过称为带铸件的过程将MCT陶瓷(Mg-Ca-Ti-O系统)和有机粘合剂(聚合物溶液)混合并制造为薄膜,以在高介电常数和柔韧性之间损害。在优化该过程之前,进行了几种表征研究:用介电常数K = 70和K = 20分析商业喷雾干燥MCT粉末(Transtech Inc.),按压制并制造成带浇铸膜。然后通过Agilent 16451B材料分析试剂盒测量介电性质,通过扫描电子显微镜检查它们的微观行为。结果表明,柔性复合膜显示出S〜22的最大介电常数,与其粉末压制形式与e -16相比,但与烧结形式相比,它们的损失行为劣化,损耗正切因子0.001。差异归因于空气含量与聚合物存在于粉末压制形式中的材料。此外,这些基材自然不再是柔性的;因此,研究重点放在磁带铸造形式上。进一步研究了这些介电色调的潜在介电学,作为用于生产具有可控损耗的整体纹理聚合物 - 复合材料的候选成分。四个性质是主要重要性的:介电常数的可调性,实现小型化,通过低温加工的聚合物和损失可控性的灵活性。

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