On the optimization of fatigue limit in additively manufactured fiber reinforced polymer composites

Elaheh Azizian-Farsani 1
Mohammad Rouhi Moghanlou 1
Ali Mahmoudi 1
Peyton J. Wilson 1
M.M. Khonsari 1
Publication typeJournal Article
Publication date2025-01-29
scimago Q1
wos Q1
SJR0.994
CiteScore8.0
Impact factor5.4
ISSN23639512, 23639520
Abstract

This study uses the Taguchi optimization methodology to optimize the fatigue performance of short carbon fiber-reinforced polyamide samples printed via fused deposition modeling (FDM). The optimal printing properties that maximize the fatigue limit were determined to be 0.075 mm layer thickness, 0.4 mm infill line distance, 50 mm/s printing speed, and 55 °C chamber temperature with layer thickness being the most critical parameter. To qualify fatigue endurance limit, the energy dissipation in uniaxial fatigue was quantified by using hysteresis energy and temperature rise at steady state. From these results, the fatigue limit for a specimen printed with optimized printing parameters was predicted to be 69 and 70 MPa from hysteresis energy and temperature rise at steady state methods, consecutively, and it was experimentally determined to be 67 MPa. This work demonstrates the effectiveness of the Taguchi optimization method when applied to additive manufacturing and the swift ability to predict the fatigue limit of a material with only one specimen to produce optimal additively manufactured components for industrial applications, as validated by experimental fatigue testing.

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Azizian-Farsani E. et al. On the optimization of fatigue limit in additively manufactured fiber reinforced polymer composites // Progress in Additive Manufacturing. 2025.
GOST all authors (up to 50) Copy
Azizian-Farsani E., Rouhi Moghanlou M., Mahmoudi A., Wilson P. J., Khonsari M. On the optimization of fatigue limit in additively manufactured fiber reinforced polymer composites // Progress in Additive Manufacturing. 2025.
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TY - JOUR
DO - 10.1007/s40964-025-00961-5
UR - https://link.springer.com/10.1007/s40964-025-00961-5
TI - On the optimization of fatigue limit in additively manufactured fiber reinforced polymer composites
T2 - Progress in Additive Manufacturing
AU - Azizian-Farsani, Elaheh
AU - Rouhi Moghanlou, Mohammad
AU - Mahmoudi, Ali
AU - Wilson, Peyton J.
AU - Khonsari, M.M.
PY - 2025
DA - 2025/01/29
PB - Springer Nature
SN - 2363-9512
SN - 2363-9520
ER -
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@article{2025_Azizian-Farsani,
author = {Elaheh Azizian-Farsani and Mohammad Rouhi Moghanlou and Ali Mahmoudi and Peyton J. Wilson and M.M. Khonsari},
title = {On the optimization of fatigue limit in additively manufactured fiber reinforced polymer composites},
journal = {Progress in Additive Manufacturing},
year = {2025},
publisher = {Springer Nature},
month = {jan},
url = {https://link.springer.com/10.1007/s40964-025-00961-5},
doi = {10.1007/s40964-025-00961-5}
}