PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2020

Expanding puck and schurmann inter fiber fracture criterion for fiber reinforced thermoplastic 3D-printed composite materials

Authors

Dutra, Thiago Assis
Resende, Hugo Borelli
Blinzler, Brina Jane
Larsson, Ragnar

Materials , vol. 13 , no. 7 , Article 1653

19
Citations
5
Authors

Abstract

© 2020 by the authors.The present work expands the application of Puck and Schurmann Inter-Fiber Fracture criterion to fiber reinforced thermoplastic 3D-printed composite materials. The effect of the ratio between the transverse compressive strength and the in-plane shear strength is discussed and a new transition point between the fracture conditions under compressive loading is proposed. The recommended values of the inclination parameters, as well as their effects on the proposed method, are also discussed. Failure envelopes are presented for different 3D-printed materials and also for traditional composite materials. The failure envelopes obtained here are compared to those provided by the original Puck and Schurmann criterion and to those provided by Gu and Chen. The differences between them are analyzed with the support of geometrical techniques and also statistical tools. It is demonstrated that the Expanded Puck and Schurmann is capable of providing more suitable failure envelopes for fiber reinforced thermoplastic 3D-printed composite materials in addition to traditional semi-brittle, brittle and intrinsically brittle composite materials.

Keywords

3D-printed composite materials Additive manufacturing Failure of composites Puck and schürmann failure criterion

Materials Science (all) (MATE) Condensed Matter Physics (PHYS)
: Scopus
Last Update: 2026-06-25
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