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2D Finite Element Model for Quasistatic Crack Formation in Multiphase Materials Driven by Internal Phases Expansion

This dataset contains the source code for modeling crack formation caused by the expansion
internal phases, driven by deterioration mechanisms such as pyrrhotite
oxidation or Alkali Silica Reaction (ASR) in concrete. It also includes simulation results and the
necessary input files for the various Fortran components. A comprehensive
description is available in the NIST IR: Quasistatic Crack Formation in Multiphase
Materials Driven by Internal Phases Expansion Mechanisms: Application to
Cement-Based-Materials, DOI: https://doi.org/10.6028/NIST.IR.8591.

About this Dataset

Updated: 2026-09-19
Metadata Last Updated: 2025-09-18 00:00:00
Date Created: N/A
Data Provided by:
Dataset Owner: N/A

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Table representation of structured data
Title 2D Finite Element Model for Quasistatic Crack Formation in Multiphase Materials Driven by Internal Phases Expansion
Description This dataset contains the source code for modeling crack formation caused by the expansion internal phases, driven by deterioration mechanisms such as pyrrhotite oxidation or Alkali Silica Reaction (ASR) in concrete. It also includes simulation results and the necessary input files for the various Fortran components. A comprehensive description is available in the NIST IR: Quasistatic Crack Formation in Multiphase Materials Driven by Internal Phases Expansion Mechanisms: Application to Cement-Based-Materials, DOI: https://doi.org/10.6028/NIST.IR.8591.
Modified 2025-09-18 00:00:00
Publisher Name National Institute of Standards and Technology
Contact mailto:[email protected]
Keywords Expansive phases; Quasi-brittle fracture mechanics; Crack nucleation and initiation; Crack Propagation; Concrete degradation
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    "title": "2D Finite Element Model for Quasistatic Crack Formation  in Multiphase Materials Driven by Internal Phases Expansion",
    "description": "This dataset contains the source code for modeling crack formation caused by the expansion \ninternal phases, driven by deterioration mechanisms such as pyrrhotite \noxidation or Alkali Silica Reaction (ASR) in concrete. It also includes simulation results and the \nnecessary input files for the  various Fortran components. A comprehensive \ndescription is available in the NIST IR: Quasistatic Crack Formation in Multiphase \nMaterials Driven by Internal Phases Expansion Mechanisms: Application to \nCement-Based-Materials, DOI: https:\/\/doi.org\/10.6028\/NIST.IR.8591.",
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