Improvement of performance of ultra-high performance concrete based composite material added with nano materials
Ultra-high performance concrete (UHPC), a kind of composite material characterized by ultra high strength, high toughness and high durability. It has a wide application prospect in engineering practice. But there are some defects in concrete. How to improve strength and toughness of UHPC remains to...
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2016-03-01
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doaj-1717ae8811b14330bd40133804e87e0c2020-11-24T21:29:46ZengGruppo Italiano FratturaFrattura ed Integrità Strutturale1971-89931971-89932016-03-01103613013810.3221/IGF-ESIS.36.13Improvement of performance of ultra-high performance concrete based composite material added with nano materialsPang Jinchang0Liu Ronggui1School of Civil Engineering and Architecture,ChinaSchool of Civil Engineering and Architecture,ChinaUltra-high performance concrete (UHPC), a kind of composite material characterized by ultra high strength, high toughness and high durability. It has a wide application prospect in engineering practice. But there are some defects in concrete. How to improve strength and toughness of UHPC remains to be the target of researchers. To obtain UHPC with better performance, this study introduced nano-SiO2 and nano-CaCO3 into UHPC. Moreover, hydration heat analysis, X-Ray Diffraction (XRD), mercury intrusion porosimetry (MIP) and nanoindentation tests were used to explore hydration process and microstructure. Double-doped nanomaterials can further enhance various mechanical performances of materials. Nano-SiO2 can promote early progress of cement hydration due to its high reaction activity and C-S-H gel generates when it reacts with cement hydration product Ca(OH)2. Nano-CaCO3 mainly plays the role of crystal nucleus effect and filling effect. Under the combined action of the two, the composite structure is denser, which provides a way to improve the performance of UHPC in practical engineering.http://www.gruppofrattura.it/pdf/rivista/numero36numero_36_art_13.pdfUHPCComposite materialNano materialSiO2 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Pang Jinchang Liu Ronggui |
spellingShingle |
Pang Jinchang Liu Ronggui Improvement of performance of ultra-high performance concrete based composite material added with nano materials Frattura ed Integrità Strutturale UHPC Composite material Nano material SiO2 |
author_facet |
Pang Jinchang Liu Ronggui |
author_sort |
Pang Jinchang |
title |
Improvement of performance of ultra-high performance concrete based composite material added with nano materials |
title_short |
Improvement of performance of ultra-high performance concrete based composite material added with nano materials |
title_full |
Improvement of performance of ultra-high performance concrete based composite material added with nano materials |
title_fullStr |
Improvement of performance of ultra-high performance concrete based composite material added with nano materials |
title_full_unstemmed |
Improvement of performance of ultra-high performance concrete based composite material added with nano materials |
title_sort |
improvement of performance of ultra-high performance concrete based composite material added with nano materials |
publisher |
Gruppo Italiano Frattura |
series |
Frattura ed Integrità Strutturale |
issn |
1971-8993 1971-8993 |
publishDate |
2016-03-01 |
description |
Ultra-high performance concrete (UHPC), a kind of composite material characterized by ultra high strength, high toughness and high durability. It has a wide application prospect in engineering practice. But there are some defects in concrete. How to improve strength and toughness of UHPC remains to be the target
of researchers. To obtain UHPC with better performance, this study introduced nano-SiO2 and nano-CaCO3 into UHPC. Moreover, hydration heat analysis, X-Ray Diffraction (XRD), mercury intrusion porosimetry (MIP) and nanoindentation tests were used to explore hydration process and microstructure. Double-doped nanomaterials can further enhance various mechanical performances of materials. Nano-SiO2 can promote early progress of cement hydration due to its high reaction activity and C-S-H gel generates when it reacts with cement hydration product Ca(OH)2. Nano-CaCO3 mainly plays the role of crystal nucleus effect and filling effect. Under the combined action of the two, the composite structure is denser, which provides a way to
improve the performance of UHPC in practical engineering. |
topic |
UHPC Composite material Nano material SiO2 |
url |
http://www.gruppofrattura.it/pdf/rivista/numero36numero_36_art_13.pdf |
work_keys_str_mv |
AT pangjinchang improvementofperformanceofultrahighperformanceconcretebasedcompositematerialaddedwithnanomaterials AT liuronggui improvementofperformanceofultrahighperformanceconcretebasedcompositematerialaddedwithnanomaterials |
_version_ |
1725965810315296768 |