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Predicting the Low-cycle Fatigue Life of Additively Manufactured Nickel-Based Superalloys Using the Crystal Plasticity Finite Element Method

  • Peiyan Wang
  • , Liyang Ma
  • , Hang Meng
  • , Jingyi Zhao
  • , Shihui Huo
  • , Zhufeng Yue
  • Northwestern Polytechnical University Xian
  • Xi'an Aerospace Propulsion Institute

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Unveiling the deformation mechanisms and life prediction of novel nickel-based superalloys fabricated by additive manufacturing (AM) is of paramount importance for their application in liquid rocket engines. In this study, the uniaxial tensile and cyclic stress-strain behaviors of a novel AM nickel-based superalloy were investigated using a crystal plasticity finite element (CPFEM) model. The simulation of uniaxial tensile behavior revealed a certain degree of plastic slip occurring intergranular, with the slip direction aligning with the macroscopic fracture direction. In the low-cycle fatigue behavior simulation, the accumulated plastic slip (APS) was incorporated into the fatigue indicator parameter (FIP) to predict the low-cycle fatigue life under two strain amplitudes. Compared to experimental data at strain amplitudes of 0.75% and 1%, the predicted fatigue life before failure is within a 2× scatter band. The research results of this article are beneficial for determining the low cycle fatigue life of new nickel-based superalloys produced by AM, and providing a theoretical basis for their future applications.

Original languageEnglish
Title of host publicationComputational and Experimental Simulations in Engineering - Proceedings of ICCES 2025
EditorsXiqiao Feng, Kun Zhou
PublisherSpringer Science and Business Media B.V.
Pages315-329
Number of pages15
ISBN (Print)9783032111685
DOIs
StatePublished - 2026
Event31st International Conference on Computational and Experimental Engineering and Sciences, ICCES 2025 - Changsha, China
Duration: 25 May 202529 May 2025

Publication series

NameMechanisms and Machine Science
Volume194
ISSN (Print)2211-0984
ISSN (Electronic)2211-0992

Conference

Conference31st International Conference on Computational and Experimental Engineering and Sciences, ICCES 2025
Country/TerritoryChina
CityChangsha
Period25/05/2529/05/25

Keywords

  • Additive manufacturing
  • Crystal plasticity
  • Life prediction
  • Low-cycle fatigue
  • Plastic slip

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