Detail publikačního výsledku

Backstress shift modelling concept for improving uniaxial ratcheting predictions for wrought 304 stainless steel and additively manufactured Inconel 718

ADAMEC, T.; HASSAN, T.; ZAPLETAL, J.; KONDEPATI, S.; ŠEBEK, F.

Originální název

Backstress shift modelling concept for improving uniaxial ratcheting predictions for wrought 304 stainless steel and additively manufactured Inconel 718

Anglický název

Backstress shift modelling concept for improving uniaxial ratcheting predictions for wrought 304 stainless steel and additively manufactured Inconel 718

Druh

Článek WoS

Originální abstrakt

The Chaboche model is one of the widely used models, but it still shows limitations in predicting various complex responses. For example, issues in predicting ratcheting responses of metals and alloys under stress-controlled loading, especially under uniaxial cyclic loading, have been demonstrated. Therefore, this study evaluates the performance of the Chaboche model under uniaxial cyclic loading with an emphasis given to the simulation of uniaxial ratcheting responses. A modification to the model is proposed to enhance its prediction of the uniaxial ratcheting response for a wide range of ratcheting rates. The modification technique is called the backstress shift model, developed on the basis of experimental observations of the similarity between the strain- and stress-controlled hysteresis loops. A backstress memory surface is introduced and its material parameters are calibrated using responses of stainless steel 304 and Inconel 718 superalloy. For this study, data for steel are collected from the literature and experiments are performed on superalloy to acquire a set of data for development and validation of the proposed model. The modified model demonstrates better predictability of the uniaxial ratcheting responses compared to the Chaboche model with the threshold, especially for the additively manufactured nickel-based superalloy. The modified model also works well for the wrought 304 stainless steel.

Anglický abstrakt

The Chaboche model is one of the widely used models, but it still shows limitations in predicting various complex responses. For example, issues in predicting ratcheting responses of metals and alloys under stress-controlled loading, especially under uniaxial cyclic loading, have been demonstrated. Therefore, this study evaluates the performance of the Chaboche model under uniaxial cyclic loading with an emphasis given to the simulation of uniaxial ratcheting responses. A modification to the model is proposed to enhance its prediction of the uniaxial ratcheting response for a wide range of ratcheting rates. The modification technique is called the backstress shift model, developed on the basis of experimental observations of the similarity between the strain- and stress-controlled hysteresis loops. A backstress memory surface is introduced and its material parameters are calibrated using responses of stainless steel 304 and Inconel 718 superalloy. For this study, data for steel are collected from the literature and experiments are performed on superalloy to acquire a set of data for development and validation of the proposed model. The modified model demonstrates better predictability of the uniaxial ratcheting responses compared to the Chaboche model with the threshold, especially for the additively manufactured nickel-based superalloy. The modified model also works well for the wrought 304 stainless steel.

Klíčová slova

Cyclic hardening; Cyclic softening; Evolutionary algorithm; Isotropic hardening; Uniaxial ratcheting

Klíčová slova v angličtině

Cyclic hardening; Cyclic softening; Evolutionary algorithm; Isotropic hardening; Uniaxial ratcheting

Autoři

ADAMEC, T.; HASSAN, T.; ZAPLETAL, J.; KONDEPATI, S.; ŠEBEK, F.

Vydáno

01.11.2025

Nakladatel

Elsevier

ISSN

0997-7538

Periodikum

EUROPEAN JOURNAL OF MECHANICS A-SOLIDS

Svazek

114

Číslo

1

Stát

Nizozemsko

Strany od

1

Strany do

17

Strany počet

17

URL

Plný text v Digitální knihovně

BibTex

@article{BUT198326,
  author="Tomáš {Adamec} and Tasnim {Hassan} and Josef {Zapletal} and Sudhir Kumar {Kondepati} and František {Šebek}",
  title="Backstress shift modelling concept for improving uniaxial ratcheting predictions for wrought 304 stainless steel and additively manufactured Inconel 718",
  journal="EUROPEAN JOURNAL OF MECHANICS A-SOLIDS",
  year="2025",
  volume="114",
  number="1",
  pages="1--17",
  doi="10.1016/j.euromechsol.2025.105770",
  issn="0997-7538",
  url="https://www.sciencedirect.com/science/article/pii/S0997753825002049"
}

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