会议论文详细信息
5th International Conference Recent Trends in Structural Materials
Evaluation of dielectric properties of 3D printed objects based on printing resolution
Veselý, P.^1 ; Tichý, T.^1 ; Šefl, O.^2 ; Horynová, E.^1
Dept. of Electrotechnology, Czech Technical University, Technická 2, Praha
166 27, Czech Republic^1
Dept. of Electrical Power Engineering, Czech Technical University, Technická 2, Praha
166 27, Czech Republic^2
关键词: Base material;    Dielectric strengths;    Dissipation factors;    Fused deposition modelling;    Objects properties;    Plastic components;    Printing quality;    Printing resolution;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/461/1/012091/pdf
DOI  :  10.1088/1757-899X/461/1/012091
来源: IOP
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【 摘 要 】

Fused Deposition Modelling (FDM) is one of the most common methods of 3D printing used in many fields of industry, especially in development departments. Since plastics are fundamental materials for electronics industry, the aim of this work is to examine dielectric properties of objects printed from such materials. This works contribution is the evaluation of the dependency of the printed objects properties on printing quality and the use of 3D printed plastic components in electronics. For the experiment, three commonly used materials in FDM were chosenPLA, ABS and PET-G. The materials were pure without any additional admixtures and the relevant test samples were printed with different printing resolution (height of one layer). The following properties were examinedpermittivity, dissipation factor and dielectric strength. The results showed that permittivity slightly decreased with increasing height of one layer. Dissipation factor varied significantly in the measured range and there was no apparent dependency on the printing resolution. Rather, it was an indicator of the printing quality. Dielectric strength also slightly decreased with the decreasing resolution; however this parameter was governed primarily by the employed material. Generally, an improvement of the dielectric properties of these materials is required due to a relatively small dielectric strength, for example by adding admixtures to the base material or better printing quality.

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