4.7 Article

Preparation and Characterization of Nano-CaCO3/Ceresine Wax Composite Shell Microcapsules Containing E-44 Epoxy Resin for Self-Healing of Cement-Based Materials

Journal

NANOMATERIALS
Volume 12, Issue 2, Pages -

Publisher

MDPI
DOI: 10.3390/nano12020197

Keywords

self-healing; microcapsules; cement-based materials; nano-CaCO3; nanoindentation

Funding

  1. National Natural Science Foundation of China [52108221]
  2. National Natural Science Foundation of Ningbo City [2021J092]
  3. State Key Laboratory of Silicate Materials for Architectures (Wuhan University of Technology) [SYSJJ2021-11]

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In this study, nano-CaCO3/ceresine wax composite shell microcapsules were prepared to improve the self-healing ability of cement-based materials. The results showed that the addition of nano-CaCO3 improved the encapsulation ability and mechanical properties of microcapsules. The incorporation of these microcapsules into mortar significantly enhanced its self-healing ability.
As an intelligent material, microcapsules can efficiently self-heal internal microcracks and microdefects formed in cement-based materials during service and improve their durability. In this paper, microcapsules of nano-CaCO3/ceresine wax composite shell encapsulated with E-44 epoxy resin were prepared via the melt condensation method. The core content, compactness, particle size distribution, morphologies, chemical structure and micromechanical properties of microcapsules were characterized. The results showed that the encapsulation ability, mechanical properties and compactness of microcapsules were further improved by adding nano-CaCO3 to ceresine wax. The core content, elastic modulus, hardness and weight loss rate (60 days) of nano-CaCO3/ceresine wax composite shell microcapsules (WM2) were 80.6%, 2.02 GPA, 72.54 MPa and 1.6%, respectively. SEM showed that WM2 was regularly spherical with a rough surface and sufficient space inside the microcapsules to store the healing agent. The incorporation of WM2 to mortar can greatly improve the self-healing ability of mortar after pre-damage. After 14 days of self-healing, the compressive strength recovery rate, proportion of harmful pores and chloride ion diffusion coefficient recovery rate increased to 90.1%, 45.54% and 79.8%, respectively. In addition, WM2 also has good self-healing ability for mortar surface cracks, and cracks with initial width of less than 0.35 mm on the mortar surface can completely self-heal within 3 days.

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