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High-k and low-loss thermoplastic composites for Fused Deposition Modeling and their application to 3D-printed Ku-band antennas

机译:用于融合沉积建模的高k低损耗热塑性复合材料及其在3D打印Ku波段天线中的应用

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Four types of high-permittivity and low-loss electromagnetic composites for Fused Deposition Modeling (FDM) based on Cyclo-Olefin Polymer (COP) and Acrylonitrile Butadiene Styrene (ABS), reinforced by Ba0.55Sr0.45TiO3, MgCaTiO2, or TiO2 co-fired micro-fillers, have been prepared and characterized up to 17 GHz using cavity resonators. Thin-sheet specimens made of 25% v/v COP-MgCaTiO2, prepared by FDM, exhibit a relative permittivity εr of ~ 4.74 and loss tangent tanδd lower than 0.0018, while 25% v/v COP-Ba0.55Sr0.45TiO3 specimens exhibit relative permittivity εr of ~ 4.92 and loss tangent tanδd lower than 0.0115. Meanwhile, 30% v/v COP-TiO2 specimens exhibit a relative permittivity εr of ~ 4.56 and a record low loss tangent tanδd lower than 0.0014, while the 6% v/v ABS-Ba0.55Sr0.45TiO3 specimens demonstrate relative permittivity εr of ~ 3.98 and loss tangent tanδd below 0.0088. Rectangular edge-fed patch antennas operating at ~ 17 GHz are fabricated using 3D printing to compare the size and performance against designs that used commercial microwave laminates.
机译:Ba0.55Sr0.45TiO3,MgCaTiO2或TiO2共混增强的四类高介电常数和低损耗电磁复合材料,用于基于环烯烃聚合物(COP)和丙烯腈丁二烯苯乙烯(ABS)的熔融沉积建模(FDM)使用腔谐振器已经准备好了可燃烧的微型填充物,并在高达17 GHz的频率下对它们进行了表征。 FDM制备的由25%v / v COP-MgCaTiO2制成的薄板样品的相对介电常数εr为〜4.74,损耗角正切tanδd低于0.0018,而25%v / v COP-Ba0.55Sr0.45TiO3样品显示相对介电常数εr约为4.92,损耗角正切tanδd低于0.0115。同时,30%v / v COP-TiO2样品的相对介电常数εr为〜4.56,创纪录的低损耗正切tanδd低于0.0014,而6%v / v的ABS-Ba0.55Sr0.45TiO3样品的相对介电常数εr为-0.004约3.98,损耗正切tanδd低于0.0088。使用3D打印制造了工作于〜17 GHz的矩形边缘馈电贴片天线,以将尺寸和性能与使用商用微波层压板的设计进行比较。

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