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Numerical Modelling of the Effect of Filler/Matrix Interfacial Strength on the Fracture of Cementitious Composites

The interface between filler and hydration products can have a significant effect on the mechanical properties of the cement paste system. With different adhesion properties between filler and hydration products, the effect of microstructural features (size, shape, surface roughness), particle distr...

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Autores principales: Ouyang, Xiaowei, Pan, Zichao, Qian, Zhiwei, Ma, Yuwei, Ye, Guang, van Breugel, Klaas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6120022/
https://www.ncbi.nlm.nih.gov/pubmed/30082635
http://dx.doi.org/10.3390/ma11081362
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author Ouyang, Xiaowei
Pan, Zichao
Qian, Zhiwei
Ma, Yuwei
Ye, Guang
van Breugel, Klaas
author_facet Ouyang, Xiaowei
Pan, Zichao
Qian, Zhiwei
Ma, Yuwei
Ye, Guang
van Breugel, Klaas
author_sort Ouyang, Xiaowei
collection PubMed
description The interface between filler and hydration products can have a significant effect on the mechanical properties of the cement paste system. With different adhesion properties between filler and hydration products, the effect of microstructural features (size, shape, surface roughness), particle distribution and area fraction of filler on the fracture behavior of a blended cement paste system is supposed to be different, as well. In order to understand the effect of the microstructural features, particle distribution and area fraction of filler on the fracture behavior of a blended cement paste system with either strong or weak filler-matrix interface, microscale simulations with a lattice model are carried out. The results show that the strength of the filler-matrix interface plays a more important role than the microstructural features, particle distribution and area fraction of filler in the crack propagation and the strength of blended cement paste. The knowledge acquired here provides a clue, or direction, for improving the performance of existing fillers. To improve the performance of fillers in cement paste in terms of strength, priority should be given to improving the bond strength between filler particles and matrix, not to modifying the microstructural features (i.e., shape and surface roughness) of the filler.
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spelling pubmed-61200222018-09-05 Numerical Modelling of the Effect of Filler/Matrix Interfacial Strength on the Fracture of Cementitious Composites Ouyang, Xiaowei Pan, Zichao Qian, Zhiwei Ma, Yuwei Ye, Guang van Breugel, Klaas Materials (Basel) Article The interface between filler and hydration products can have a significant effect on the mechanical properties of the cement paste system. With different adhesion properties between filler and hydration products, the effect of microstructural features (size, shape, surface roughness), particle distribution and area fraction of filler on the fracture behavior of a blended cement paste system is supposed to be different, as well. In order to understand the effect of the microstructural features, particle distribution and area fraction of filler on the fracture behavior of a blended cement paste system with either strong or weak filler-matrix interface, microscale simulations with a lattice model are carried out. The results show that the strength of the filler-matrix interface plays a more important role than the microstructural features, particle distribution and area fraction of filler in the crack propagation and the strength of blended cement paste. The knowledge acquired here provides a clue, or direction, for improving the performance of existing fillers. To improve the performance of fillers in cement paste in terms of strength, priority should be given to improving the bond strength between filler particles and matrix, not to modifying the microstructural features (i.e., shape and surface roughness) of the filler. MDPI 2018-08-06 /pmc/articles/PMC6120022/ /pubmed/30082635 http://dx.doi.org/10.3390/ma11081362 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ouyang, Xiaowei
Pan, Zichao
Qian, Zhiwei
Ma, Yuwei
Ye, Guang
van Breugel, Klaas
Numerical Modelling of the Effect of Filler/Matrix Interfacial Strength on the Fracture of Cementitious Composites
title Numerical Modelling of the Effect of Filler/Matrix Interfacial Strength on the Fracture of Cementitious Composites
title_full Numerical Modelling of the Effect of Filler/Matrix Interfacial Strength on the Fracture of Cementitious Composites
title_fullStr Numerical Modelling of the Effect of Filler/Matrix Interfacial Strength on the Fracture of Cementitious Composites
title_full_unstemmed Numerical Modelling of the Effect of Filler/Matrix Interfacial Strength on the Fracture of Cementitious Composites
title_short Numerical Modelling of the Effect of Filler/Matrix Interfacial Strength on the Fracture of Cementitious Composites
title_sort numerical modelling of the effect of filler/matrix interfacial strength on the fracture of cementitious composites
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6120022/
https://www.ncbi.nlm.nih.gov/pubmed/30082635
http://dx.doi.org/10.3390/ma11081362
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