353
Views
11
CrossRef citations to date
0
Altmetric
Original Articles

Influence of nanoparticles on mechanical and nondestructive properties of high-performance concrete

, , &
Pages 409-433 | Received 26 Mar 2018, Accepted 12 Jun 2018, Published online: 16 Nov 2018

References

  • P. Zhang, Q. Li, H. Zhang. Fracture properties of high-performance concrete containing fly ash. J. Mater. Des. Appl., 2012, 2, 170–176.
  • P. Zhang, C. H. Liu, Q. F. Li, T. H. Zhang, P. Wang. Fracture properties of steel fiber reinforced high performance concrete containing nano-SiO2 and fly ash. Curr. Sci., 2014, 7, 980–987.
  • M. Mahmoudi, M. H. Behbodi, S. H. Sedigh ziabari. Role of nano-technology in the construction industry to reduce environmental pollution. J. Environ. Sci. Technol., 2008, 10, 3.
  • F. Pacheco-Torgal, S. Jalali. Nanotechnology: advantages and drawbacks in the field of construction and building materials. Construct. Build. Mater., 2011, 25, 582–590.
  • F. Brandl, N. Bertrand, E. M. Lima, R. Langer. Nanoparticles with photoinduced precipitation for the extraction of pollutants from water and soil. Nat. Commun., 2015, 6, 7765.
  • A. Singh. Nanoparticles for environmental clean-up: an overview. Int. J. Appl. Chem., 2016, 12, 175–181.
  • S. S. Patil, U. U. Shedbalkar, A. Truskewycz, B. A. Chopade, A. S. Ball. Nanoparticles for environmental clean-up: a review of potential risks and emerging solutions. Environ. Technol. Innov., 2016, 5, 10–21.
  • N. Wilson. Nanoparticles: environmental problems or problem solvers? Bioscience., 2018, 68, 241–246.
  • K. V. Priya1, D. Vinutha. “Effect of nano silica in rice husk ash concrete”: International Conference on Advances in Engineering & Technology (ICAET-2014). J. Mech. Civil Eng., 2014, 39–43.
  • A. N. Givi, S. Abdul Rashid, F. N. A. Aziz, M. A. M. Salleh. Influence of 15 and 80 nano-SiO2 particles addition on mechanical and physical properties of ternary blended concrete incorporating rice husk ash. J. Exp. Nanosci., 2013, 8, 1–18.
  • S. L. Colston, D. O’Connor, P. Barnes. Functional micro-concrete: the incorporation of zeolites and inorganic nano-particles into cement microstructures. J. Mater. Sci. Lett., 2000, 19, 1085–1088.
  • Y. Qing, Z. Zenan, K. Deyu, C. Rongshen, Influence of nano-SiO2 addition on Properties of hardened cement paste as compared with silica fume. Construct. Build. Mater., 2007, 21, 539–545.
  • K. L. Lin, W. C. Chang, D. F. Lin, H. L. Luo, M. C. Tsai. Effects of nano-SiO2 and different ash particle sizes on sludge ash–cement mortar. J. Environ. Manage., 2008, 88, 708–14.
  • P. Jaishankar, K. Saravana Raja Mohan. Influence of nano particles in high performance concrete (HPC). Int. J. ChemTech Res., 2015, 8, 278–284.
  • A. H. Shekaria, M. S. Razzaghi. Influence of nano particles on durability and mechanical properties of high performance concrete. Proc. Eng., 2011, 14, 3036–3041
  • C. Cárdenas, J. I. Tobón, C. García, J. Vila. Functionalized building materials: photocatalytic abatement of NOx by cement pastes blended with TiO2 nanoparticles. Construct. Build. Mater., 2012, 36, 820–825.
  • M. S. Morsy, S. H. Alsayed, M. Aqel. Effect of nano-clay on mechanical properties and microstructure of ordinary Portland cement mortar. Int. J. Environ. Eng., 2010, 10, 21–25.
  • H. A. Abdel Gawwad, S. Abd El-Aleemb, A. S. Faried. Influence of nano-silica and -metakaolin on the hydration characteristics and microstructure of air-cooled slag-blended cement mortar. Geosyst. Eng., 2017, 20, 276–285.
  • R. S. Khaled, S. I. Zaki. How nanotechnology can change concrete industry. 1st international conference on sustainable built environment infrastructures in developing countries, ISSN 2170-0095, 12–14 January, 2009, 407–414.
  • M. Amin, K. Abu El-hassan. Effect of using different types of nano materials on mechanical properties of high strength concrete. Construct. Build. Mater., 2015, 80, 116–124.
  • S. Riahia, A. Nazai. Effect of water-cement ratio on abrasive strength, porosity and permeability of nano-silica concrete. World Appl. Sci. J., 2013, 17, 929–933.
  • P. Aggarwal, R. P. Singh, Y. Aggarwal. Use of nano-silica in cement based materials – a review. Cogent Eng., 2015, 2, 1–11.
  • K. Sololev, M. F. Gutiérrez. How nanotechnology can change the concrete world. Am. Ceram. Soc. Bull., 2010, 84, 10–14.
  • L. Chandrakanthamma, A. B. Deepasree, I. S. P. Madhan, N. M. Haabil, R. C. Vishvanathan. Assessment of concrete strength on structure using non destructive testing. IOSR J. Mech. Civil Eng, 1, 01–04.
  • V. Vaitkevičius, E. Šerelis, Ž. Rudžionis. Nondestructive testing of ultra-high performance concrete to evaluate freeze-thaw resistance. Mechanika., 2012, 18, 164–169.
  • M. F. Fu, J. G. Xiong, G. Q. Song. Study and application of nano-materials in concrete. Eng. Mech., 2004, 21, 48–51.
  • P. K. Jal, M. Sudarshan, A. Saha, S. Patel.Synthesis and characterization of nanosilica prepared by precipitation method. Colloids Surf. A: Physicochem. Eng. Aspects., 2004, 240, 173–178.
  • C. L. D. Castro, B. S. Mitchell. (Ed: M.-I. Baraton) Nanoparticles from Mechanical Attrition, Synthesis, Functionalization and Surface Treatment of Nanoparticles., American Scientific, 2002, Chapter-1, 1–15.
  • I. Borner, J. Eckert. Nanostructure formation and steady-state grain size of ball-milled iron powders. Mater. Sci. Eng. A., 1997, 226–228, 541–545.
  • A. M. Fadzil, M. S. M. Norhasri, M. S. Hamidah, M. R. Zaidi, J. M. Faizal. Alteration of nano metakaolin for ultra high performance concrete. (Eds.: Z. Ismail, R. Hassan, M. Yusoff, N. Mohd Amin, M. Arshad Fadzil), InCIEC. Springer Science & Business Media Singapore, 2014, 887–894. doi:10.1007/978-981-4585-02-6_76.
  • P. Sistani, L. Sofimaryo, Z. Masoudi, A. Sayad, R. Rahimzadeh, B. Salehi. A penicillin biosensor by using silver nanoparticles. Int. J. Electrochem. Sci., 2014, 9, 6201–6212.
  • J. Esmaeili, K. Andalibi. Investigation of the effects of nano-silica on the properties of concrete in comparison with micro-silica. Int. J. Nano Dimens., 2013, 3, 321–328.
  • E. Ghafari, H. Costa, E. Júlio, A. Portugal, L. Durães. The effect of nanosilica addition on flowability, strength and transport properties of ultra high performance concrete. Mater. Des., 2014, 59, 1–9.
  • J. Massana, E. Reyes, J. Bernal, N. León, E. Sánchez-Espinosa. Influence of nano- and micro-silica additions on the durability of a high-performance self-compacting concrete. Construct. Build. Mater., 2018, 165, 93–103.
  • M. Jalal, E. Mansouri, M. Sharifipour, A. R. Pouladkhan. Mechanical, rheological, durability and microstructural properties of high performance selfcompacting concrete containing SiO2 micro and nanoparticles. Mater. Des., 2012, 34, 389–400.
  • I. B. Muhit, S. S. Ahmed, M. M. Amin, M. T. Raihan. Effects of silica fume and fly ash as partial replacement of cement on water permeability and strength of high performance concrete. Assoc. Civil Environ. Eng., 2013, 108–115.
  • M. Resheidat, N. Al-Araji, M. Ghanma. Effect of charcoal on the porosity and the properties of concrete. Innov. Dev. Concrete Mater. Construct. (published online Jul, 2015), https://www.icevirtuallibrary.com/doi/abs/10.1680/iadicmac.31791.0059.
  • M. N. AI-Khalaf, H. A. Yousift. Use of rice husk ash in concrete. Int. J. Cem. Compos. Lightweight Concr., 1984, 6, 241–248.
  • R. S. Ravindrarajah. Strength evaluation of high-strength concrete by ultrasonic pulse velocity method. NDTE Int., 1997, 30, 260.
  • A. S. Nik, O. L. Omran. Estimation of compressive strength of self-compacted concrete with fibers consisting nano-SiO2 using ultrasonic pulse velocity. Construct. Build. Mater., 2013, 44, 654–662.
  • W. Punurai, J. Jarzynski, J. Qu, J. Y. Kim, J. J. Laurence, E. K. Kimberly. Characterization of multi-scale porosity in cement paste by advanced ultra-sonic techniques. Cem. Concr. Res., 2007, 37, 38–46.
  • J. Rimkevičienė, V. Ostaševičius, V. Jūrėnas, R. Gaidys. Experiments and simulations of ultra-sonically assisted turning tool. Mechanika., 2009, 1, 42–46.
  • A. Rotmanas. Interaction of ultrasonic oscillation system and a cylinder – shaped support. Mechanika., 2002, 5, 41–44.
  • F. Mastrantonio, F. Valgimigli, L. Grassi, P. Cappa, G. De Micheli, S. Carrara. Comparative performance of different nano structured electrochemical sensors on insulin detection. BioNanoSci., 2013, 3, 285–288.
  • L. P. Singh, S. R. Karade, S. K. Bhattacharyya, M. M. Yousuf, S. Ahalawat. Beneficial role of nanosilica in cement based materials – a review. Construct. Build. Mater., 2013, 47, 1069–1077.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.