Laser-Sintering of Cyclic Olefine Copolymer for Low Dielectric Loss Applications

Author:

Romeis Manuel1,Ehrngruber Michael2,Drummer Dietmar1

Affiliation:

1. Institute of Polymer Technology, Friedrich-Alexander-University Erlangen-Nurnberg, 91058 Erlangen, Germany

2. Institute of Microwaves and Photonics, Friedrich-Alexander-University Erlangen-Nurnberg, 91058 Erlangen, Germany

Abstract

With increasing demands for data transfer, the production of components with low dielectric loss is crucial for the development of advanced antennas, which are needed to meet the requirements of next-generation communication technologies. This study investigates the impact of a variation in energy density on the part properties of a low-loss cyclic olefin copolymer (COC) in the SLS process as a way to manufacture complex low-dielectric-loss structures. Through a systematic variation in the laser energy, its impact on the part density, geometric accuracy, surface quality, and dielectric properties of the fabricated parts is assessed. This study demonstrates notable improvements in material handling and the quality of the manufactured parts while also identifying areas for further enhancement, particularly in mitigating thermo-oxidative aging. This research not only underscores the potential of COC in the realm of additive manufacturing but also sets the stage for future studies aimed at optimizing process parameters and enhancing material formulations to overcome current limitations.

Funder

Federal Ministry of Economic Affairs and Climate Action

Publisher

MDPI AG

Reference40 articles.

1. Laser sintering of polyamides and other polymers;Goodridge;Prog. Mater. Sci.,2012

2. Progress in Additive Manufacturing and Rapid Prototyping;Kruth;Cirp Ann.,1998

3. 3D printing with polymers: Challenges among expanding options and opportunities;Stansbury;Dent. Mater.,2016

4. Development of material-adapted processing strategies for laser sintering of polyamide 12;Greiner;Adv. Ind. Eng. Polym. Res.,2021

5. Additive Manufacturing: Polymers Applicable for Laser Sintering (LS);Schmid;Procedia Eng.,2016

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