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Investigation of 3D printed dielectric structure for microwave lens prototyping

机译:用于微波透镜原型的3D打印介电结构的研究

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In this work, we designed and fabricated dielectric materials with predetermined dielectric permittivity. These materials are 3-D printed using fused deposition modeling technique with high impact polystyrene filament. The dielectric structure is composed of discrete layers that are separated into cells. Each unit cell is essentially a plastic cube with square air void in the center. Desired variable relative permittivity was realized by changing the filling ratio. The dependences of relative permittivity on filling ratio are measured and presented. Obtained approximated dependence of relative permittivity can be utilized for microwave lens synthesis for low-cost communication systems.
机译:在这项工作中,我们设计和制造了具有预定介电常数的介电材料。这些材料使用具有高抗冲聚苯乙烯长丝的熔融沉积建模技术进行3-D打印。介电结构由分离成单元的离散层组成。每个单元电池本质上是一个塑料立方体,中间有方形空气孔。期望的可变相对介电常数通过改变填充率来实现。测量并给出了相对介电常数对填充率的依赖性。可以将获得的相对介电常数的近似依赖性用于低成本通信系统的微波透镜合成。

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