4.5 Article

Mineralogical Sequence of Self-Healing Products in Cracked Marine Concrete

Journal

MINERALS
Volume 9, Issue 5, Pages -

Publisher

MDPI
DOI: 10.3390/min9050284

Keywords

concrete; cracks; self-healing; seawater; binder; mechanism; mineralogy; long-term

Funding

  1. Norwegian Public Roads Administration (NPRA) through their Ferry-free E39 coastal route project
  2. Durable Advanced Concrete Structure (DaCS) project - Norwegian Research Council [245645/O30]
  3. SINTEF
  4. NTNU
  5. NPRA
  6. Norcem AS
  7. Skanska Norge AS
  8. Veidekke Entreprenor AS
  9. Multiconsult AS
  10. Unicon AS
  11. Mapei AS
  12. AF Gruppen Norge AS
  13. Norbetong AS
  14. Axion AS
  15. Concrete Structures AS

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Self-healing of cracked concrete beams after 25 years of marine exposure was investigated. The extent of self-healing and the chemical and mineralogical composition of the self-healing products were characterized, and mechanisms proposed. There was no effect of varying silica fume (4%, 12%) and fly ash content (0%, 20%) on the mineralogy and chemistry of the self-healing products and the extent of self-healing. Crack widths smaller than 0.2 mm appeared closed. With increasing crack depth, a sequence of changing mineralogy of self-healing products was found. In the outer part of the crack (0-5 mm depth from the exterior surface) only calcite was precipitated followed by brucite layers from 5-30 mm depth. The brucite was occasionally intermixed with calcite. At crack depths >30 mm only ettringite was observed. It is hypothesized that the mineralogical sequence observed with increasing crack depth occurs due to an increasing pH of the solution inside the crack with increased crack depth. Self-healing of cracks in marine exposed concrete is proposed to happen through precipitation of ions from seawater partly in reaction with ions from the cement paste in the outer part of the crack and through dissolution and reprecipitation of ettringite at larger crack depths.

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