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A Relationship between Fracture Toughness Kc and Energy Release Rate Gc According to Fracture Morphology Analysis

  • Haohao Liu
  • , Jinlun Yan
  • , Aofei Li
  • , Zhenyu He
  • , Yuchen Xie
  • , Han Yan
  • , Dawei Huang*
  • *Corresponding author for this work
  • China Aerospace Science and Technology Corporation
  • Beihang University
  • Beijing Key Laboratory of Aero-Engine Structure and Strength

Research output: Contribution to journalArticlepeer-review

Abstract

This study investigated the relationship between fracture toughness (Kc) and energy release rate (Gc) through fracture morphology analysis, emphasizing the critical role of fractal dimensions in accurately characterizing fracture surfaces. Traditional linear elastic fracture mechanics (LEFM) models relate Gc to Kc by combining energy principles with the nominal area of the fracture surface. However, real materials often exhibit plasticity, and their fracture surfaces are not regular planes. To address these issues, this research applied fractal theory and introduced the concept of ubiquitiform surface area to refine the calculation of fracture surfaces, leading to more accurate estimates of Gc and Kc. The method was validated through standard compact tensile specimen tests on a nickel-based superalloy at 550 °C. Additionally, the analysis of fractal dimension differences and dispersion in various fracture regions provides a novel perspective for evaluating the fracture toughness of materials.

Original languageEnglish
Article number740
JournalCrystals
Volume14
Issue number8
DOIs
StatePublished - Aug 2024

Keywords

  • energy release rate (G)
  • fractal dimension
  • fracture
  • fracture toughness (K)
  • scatter

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