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A damage model of characterizing the internal damage evolution for DN hydrogel using Multi-Particle Tracking (MPT) method

  • Chong Wang
  • , Yetong Jia
  • , Jiapeng You
  • , Jincheng Lei*
  • , Zishun Liu*
  • *Corresponding author for this work
    • Xi'an Jiaotong University
    • Purdue University

    Research output: Contribution to journalArticlepeer-review

    Abstract

    Under large deformation, Double-network (DN) hydrogels show necking phenomenon with the damage propagating inside the polymer network. Although the internal damage mechanism of DN hydrogel has been extensively studied, there is still a lack of the quantitative description for the internal damage evolution of DN hydrogel. In this work, an optical full-field deformation measurement, named as multi-particle tracking (MPT) method, is developed to measure the inhomogeneous deformation field of DN hydrogel. According to observation of the damage accumulation and propagation of DN hydrogel using MPT method, we propose a damage model to describe the entire damage process of DN hydrogel. In the proposed damage model, damage propagation is characterized by phase transition, and stress softening due to damage accumulation is described by a damage constitutive model. The proposed damage model can predict the overall stress-stretch relationship of DN hydrogel in the monotonic loading and cyclic loading tests. Furthermore, we predict size of the fragments of the first network, and explain the mechanism behind the high toughness of DN hydrogel. This study characterizes the internal damage evolution and proves a quantitative description for the inhomogeneous deformation of DN hydrogel.

    Original languageEnglish
    Article number105360
    JournalMechanics of Materials
    Volume206
    DOIs
    StatePublished - Jul 2025

    Keywords

    • Damage
    • Double network hydrogel
    • Multi-particle tracking
    • Phase transition

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