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Self-Healing Concrete
Mechanical Properties of MAX Phases
Ebook series2 titles

Materials Research Foundations Series

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About this series

Self-healing techniques are most successful in preventing concrete from cracking or breaking. The book reviews the most promising methods, including the use of polymers, epoxy resins, fungi or cementitious composites; biomineralization, continuing hydration or carbonation or wet/dry cycling. Various micro-organisms are able to produce favorable

LanguageEnglish
Release dateApr 5, 2021
Self-Healing Concrete
Mechanical Properties of MAX Phases

Titles in the series (2)

  • Mechanical Properties of MAX Phases

    97

    Mechanical Properties of MAX Phases
    Mechanical Properties of MAX Phases

    MAX Phase Materials are uniquely structured carbide and nitride materials which combine the rigidity, oxidation-resistance and high-temperature strength of ceramic materials with such metallic properties as good machinability, thermal-shock resistance, damage-tolerance and good transport properties. Potential applications include microelectronic

  • Self-Healing Concrete

    101

    Self-Healing Concrete
    Self-Healing Concrete

    Self-healing techniques are most successful in preventing concrete from cracking or breaking. The book reviews the most promising methods, including the use of polymers, epoxy resins, fungi or cementitious composites; biomineralization, continuing hydration or carbonation or wet/dry cycling. Various micro-organisms are able to produce favorable

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