Application of Polymer Plaster Composites in Additive Manufacturing of High-Strength Components

Author:

Junk Stefan1,Matt Rebecca1

Affiliation:

1. University of Applied Sciences Offenburg

Abstract

Today, 3D-printing with polymer plaster composites is a common method in Additive Manufacturing. This technique has proven to be especially suitable for the production of presentation models, due to the low cost of materials and the possibility to produce color-models. But nowadays it requires refinishing through the manual application of a layer of resin. However, the strength of these printed components is very limited, as the applied resin only penetrates a thin edge layer on the surface. This paper develops a new infiltration technique that allows for a significant increase in the strength of the 3D-printed component. For this process, the components are first dehydrated in a controlled two-tier procedure, before they are then penetrated with high-strength resin. The infiltrate used in this process differs significantly from materials traditionally used for infiltration. The result is an almost complete penetration of the components with high-strength infiltrate. As the whole process is computer-integrated, the results are also easier to reproduce, compared to manual infiltration. On the basis of extensive material testing with different testing specimen and testing methods, it can be demonstrated that a significant increase in strength and hardness can be achieved. Finally, this paper also considers the cost and energy consumption of this new infiltration method. As a result of this new technology, the scope of applicability of 3D-printing can be extended to cases that require significantly more strength, like the production of tools for the shaping of metals or used for the molding of plastics. Furthermore, both the process itself and the parameters used are monitored and can be optimized to individual requirements and different fields of application.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference10 articles.

1. T. Wohlers, Wohlers Report - Additive Manufacturing and 3D Printing State of the Industry Annual Worldwide Progress Report, Wohlers Associates Inc., Fort Collins, CO (USA), (2014).

2. U. Berger, A. Hartmann, D. Schmid, Additive Fertigungsverfahren: Rapid Prototyping, Rapid Tooling, Rapid Manufacturing, Europa Lehrmittel, Haan-Gruiten, (2013).

3. I. Gibson, D. W. Rosen, B. Stucker, Additive Manufacturing Technologies: Rapid Prototyping to Direct Digital Manufacturing, Springer, New York, (2010).

4. N. de Beer, Additive Manufacturing - Turning Mind into Mater, Sierra College for Applied Competitive Technologies, Rocklin, CA (USA), (2013).

5. S. Junk, S. Côté, Energy and material efficiency in additive manufacturing using 3D printing, in: Proceedings of the 10th Global Conference on Sustainable Manufacturing, Istanbul, Turkey, 2012 1-6.

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