4.6 Article

Production and Processing of a Spherical Polybutylene Terephthalate Powder for Laser Sintering

Journal

APPLIED SCIENCES-BASEL
Volume 9, Issue 7, Pages -

Publisher

MDPI
DOI: 10.3390/app9071308

Keywords

selective laser sintering; powder bed fusion; additive manufacturing; PBT; powder; melt emulsification; powder production; polymer processing

Funding

  1. Swiss Commission for Technology and Innovation (CTI)

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Featured Application This work describes in detail a process chain for the production of spherical laser sintering powders. The shown methods can be applied to extend the number of suitable laser sintering materials. This work describes the production of a spherical polybutylene terephthalate (PBT) powder and its processing with selective laser sintering (SLS). The powder was produced via melt emulsification, a continuous extrusion-based process. PBT was melt blended with polyethylene glycol (PEG), creating an emulsion of spherical PBT droplets in a PEG matrix. Powder could be extracted after dissolving the PEG matrix phase in water. The extrusion settings were adjusted to optimize the size and yield of PBT particles. After classification, 79 vol. % of particles fell within a range of 10-100 mu m. Owing to its spherical shape, the powder exhibited excellent flowability and packing properties. After powder production, the width of the thermal processing (sintering) window was reduced by 7.6 degrees C. Processing of the powder on a laser sintering machine was only possible with difficulties. The parts exhibited mechanical properties inferior to injection-molded specimens. The main reason lied in the PBT being prone to thermal degradation and hydrolysis during the powder production process. Melt emulsification in general is a process well suited to produce a large variety of SLS powders with exceptional flowability.

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