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Complex permittivity and anisotropy measurement of 3D-printed PLA at microwaves and millimeter-waves

机译:微波和毫米波下3D打印PLA的复介电常数和各向异性测量

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The use of 3D-printing based on extrusion depositing technologies for electromagnetic applications (such as dielectric antenna design or human mimicking tissues) is increasing as a low cost alternative to other small-scale fabrication technologies. As a result, it is of utmost scientific interest to know the exact dielectric properties of commercially available printable materials, such as polylactide acid (PLA). The extrusion depositing process may originate an anisotropic behavior of the material permittivity especially at mm-waves. We investigate this plastic's complex permittivity across the microwave spectrum from 0.5 GHz to 20 GHz and at 40 GHz and 60 GHz. We propose a new indirect method for the complex permittivity determination at microwave frequencies based on a microstrip line with stubs and a superstrate. At 40 GHz and 60 GHz, the printed PLA samples are characterized using waveguide and open resonator methods. Results show that throughout the tested frequency range the dielectric constant along the normal direction to the printing surface is around 2.75±0.05 and tan δ = (1.1±0.2)×10-2. However, at least for the tested mm-wave bands, the dielectric constant along the parallel direction to the printing surface is around 2.96, corresponding to nearly 7% anisotropy.
机译:基于挤压沉积技术的3D打印在电磁应用(例如电介质天线设计或人体模仿组织)中的使用正在增加,这是其他小规模制造技术的一种低成本替代方案。结果,了解诸如聚丙交酯酸(PLA)的可商购可印刷材料的确切介电性能是最科学的兴趣。挤压沉积过程可能会引起材料介电常数的各向异性,尤其是在毫米波处。我们研究了这种塑料在从0.5 GHz到20 GHz以及在40 GHz和60 GHz的整个微波频谱上的复介电常数。我们提出了一种新的间接方法,该方法用于基于微波频率的复数介电常数测定,该方法基于带有短截线和上覆层的微带线。在40 GHz和60 GHz时,使用波导和开放谐振器方法对印刷的PLA样品进行表征。结果表明,在整个测试频率范围内,沿垂直于印刷表面方向的介电常数约为2.75±0.05,tanδ=(1.1±0.2)×10-2。但是,至少对于所测试的毫米波波段,沿着平行于印刷表面的方向的介电常数约为2.96,相当于近7%的各向异性。

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