Abstract
Melt emulsification is an advanced top-down approach that permits to produce spherical particles and thus widens the availability of polymer feed materials for additive manufacturing. In the process the polymer is molten in a continuous phase and droplet breakup is realized in a rotor-stator-device. The stabilization of the newly formed surfaces is quite challenging. Therefore, a new method to identify an appropriate emulsifier by measuring the interfacial tension between the polymer and continuous phase using a high pressure / high temperature cell is presented. The obtained powders are characterized by scanning electron microscopy (SEM) and by a Zimmermann tensile strength tester to determine the powder flowability. The processability of the polymer powders for additive manufacturing is investigated and demonstrated by building single layers by laser beam melting.
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Fanselow, S., Schmidt, J., Wirth, K. E., & Peukert, W. (2016). Production of micron-sized polymer particles for additive manufacturing by melt emulsification. In AIP Conference Proceedings (Vol. 1713). American Institute of Physics Inc. https://doi.org/10.1063/1.4942342
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