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Self-Healing and Re-Adhering Polymer-Cements with Improved Toughness

Published by Pacific Northwest National Laboratory | Department of Energy | Metadata Last Checked: January 27, 2026 | Last Modified: 2020-01-27T23:01:41Z
Polymer-cement experiments were conducted in order to assess the chemical and thermal properties of various polymer-cement composites. This file set includes the following polymer-cement analyses: Polymer-Cement Composite Synthesis Polymer-Cement Interactions by Atomistic Simulations Polymer-Cements Compressive Strength & Fracture Toughness Polymer-Cements Fourier Transform Infrared Spectroscopy (FTIR) Analysis Polymer-Cements Resistance to Thermal Shock-CO2 and H2SO4 Attack Polymer-Cements Rheology Analysis Polymer-Cements Self-Repairing Permeability Analysis Polymer-Cements Scanning Electron Microscopy with Energy Dispersive X-Ray Spectroscopy (SEM-EDX) Compositional Analysis Polymer-Cements Thermogravimetric Analysis (TGA) and Total Organic and Inorganic Carbon Analysis (TOC and TIC) Polymer-Cements X-Ray Diffraction (XRD) Analysis

Resources

10 resources available

  • Polymer-Cement Composite Synthesis.doc

    DOC
  • Polymer-Cement Interactions by Atomistic Simulations.doc

    DOC
  • Polymer-Cements Compressive Strength and Fracture Toughness.doc

    DOC
  • Polymer-Cements FTIR Analysis.doc

    DOC
  • Polymer-Cements Rheology Analysis.docx

    DOCX
  • Polymer-Cements SEM-EDX Compositional Analysis.docx

    DOCX
  • Polymer-Cements TGA and TOC Analysis.docx

    DOCX
  • Geothermal Data Repository_Polymer-cements XRD analysis.docx

    DOCX
  • Polymer-cements Resistance to Thermal Shock-CO2 and H2SO4 Attack.pptx

    PPTX
  • Polymer-Cements Self-Repairing Permeability Analysis.doc

    DOC

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