4.4 Article

Observation and quantification of water penetration into Strain Hardening Cement-based Composites (SHCC) with multiple cracks by means of neutron radiography

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.nima.2010.04.119

Keywords

Water penetration; Strain hardening cement-based composites (SHCC); Multiple crack formation; Neutron radiography; Integral water repellent material

Funding

  1. National Basic Research Program of China (973 Project) [2009CB623203]
  2. National Natural Science Foundation of China [50739001, 50878109]
  3. Natural Science Foundation of Shandong Province [ZR2009FQ014, Z2006F02]
  4. National Key Technology R and D Program [2007BAB27B03]

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Durability of reinforced concrete structures has become a crucial issue with respect to economy, ecology and sustainability. One major reason for durability problems of concrete structures is the limited strain capacity of cement-based materials under imposed tensile stress. By adding PVA fibers, a new material named Strain Hardening Cement-based Composites (SHCC) with high strain capacity can be produced. Due to the formation of multiple micro-cracks, wide cracks can be avoided in SHCC under an imposed strain. The high strain capacity, however, is beneficial with respect to durability only if the multi-crack formation in SHCC does not lead to significantly increased water penetration. If water and aggressive chemical compounds such as chlorides and sulfates dissolved in water penetrate into the cement-based matrix and reach the steel reinforcement service-life of reinforced concrete structures will be reduced significantly. In this project, neutron radiography was applied to observe and quantify the process of water penetration into uncracked SHCC and after the multi-crack formation. In addition, water penetration into integral water repellent cracked and uncracked SHCC, which has been produced by adding a silane-based water repellent agent to the fresh SHCC mortar has been investigated. Results will be discussed with respect to durability. (C) 2010 Elsevier B.V. All rights reserved.

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