Uneingeschränkter Zugang

Frost-salt Testing Non-air Entrained High-Performance Fly-ash Concrete. Part I: Relations Liquid uptake - Internal Cracking – Scaling


Zitieren

Holtberget SH, Xiang X, Dørum C, Veie J & Minoretti A : “The Choice of Materials for the E39 Fjord Crossing Project”. Nordic Concrete Research, 2019. 61(2): pp. 39-51. Search in Google Scholar

Liu PR & Raftery AE : “Country-based rate of emissions reductions should increase by 80% beyond nationally determined contributions to meet the 2 C target”. Nature Communications earth & environment, 2021. 2(1): p. 1-10. Search in Google Scholar

Paris agreement : “Report of the Conference of the Parties to the United Nations Framework Convention on Climate Change (21st Session, 2015: Paris)”. Retrived December. 2015. HeinOnline. Search in Google Scholar

Scrivener KL, John VM & Gartner EM: “Eco-efficient cements: Potential economically viable solutions for a low-CO2 cement-based materials industry”. Cement and Concrete Research, 2018. 114: p. 2-26. Search in Google Scholar

EN 206. BSI Standards Publication Concrete : “Specification, performance, production and conformity”. Br Stand 2013:30. Search in Google Scholar

Boumaaza M, Linger L, Boutillon L & Paul-Dauphin B: “Implementation of Low Carbon Concrete: allowance and constraints set by international main standards. A review”. Search in Google Scholar

De la Varga I, Castro J, Bentz D & Weiss J: “Application of internal curing for mixtures containing high volumes of fly ash”. Cement and Concrete Composites, 2012. 34(9): p. 1001-1008. Search in Google Scholar

Siddique R : “Properties of self-compacting concrete containing class F fly ash”. Materials & Design, 2011. 32(3): p. 1501-1507. Search in Google Scholar

Sleiman SAH, Rhardane A, Alam SY, Grondin F, Loukili A & Izoret, L. : “A numerical microscopically informed upscale approach for analyzing the reliability of testing method for concrete resistance to freeze-thaw”. Construction and Building Materials, 2022. 317: p. 125772. Search in Google Scholar

Lindmark S : “Mechanisms of salt frost scaling of Portland cement-bound materials: Studies and hypothesis”. 1999, Lund University. Search in Google Scholar

Skripkiūnas G, Nagrockienė D, Girskas G, Vaičienė M & Baranauskaitė E: “The cement type effect on freeze–thaw and deicing salt resistance of concrete”. Procedia engineering, 2013. 57: p. 1045-1051. Search in Google Scholar

Zhao J, Cai G, Gao D & Zhao S : “Influences of freeze–thaw cycle and curing time on chloride ion penetration resistance of Sulphoaluminate cement concrete”. Construction and Building Materials, 2014. 53: p. 305-311. Search in Google Scholar

Gagné R, Pigeon M & Aïtcin PC : “Durabilité au gel des bétons de hautes performances mécaniques”. Materials and structures, 1990. 23(2): p. 103-109. Search in Google Scholar

Jacobsen S, Hammer TA & Sellevold EJ: “Frost testing of High Strength Concrete: Internal Cracking vs. Scaling of OPC and Silica Fume Concretes. in Frost Resistance of Building Materials,” Proceedings of Nordic Research Seminar, Lund. 1996. Search in Google Scholar

Palecki S & Setzer M.J : “Freeze-thaw durability of high-performance concrete– Mechanism of water uptake and internal damage”. in 2nd International RILEM Symposium on Advances in Concrete through Science and Engineering. 2006. RILEM Publications SARL. Search in Google Scholar

Shpak A, Gong F & Jacobsen S: “Frost durability of high-volume fly ash concrete: Relation liquid transport-damage”. Cement and Concrete Research, 2023. 163: p. 107017. Search in Google Scholar

Du L & Folliard K.J : “Mechanisms of air entrainment in concrete”. Cement and concrete research, 2005. 35(8): p. 1463-1471. Search in Google Scholar

Tunstall L.E : “Air entraining admixtures: Mechanisms, evaluations, and interactions”. Cement and Concrete Research, 2021. 150: p. 106557. Search in Google Scholar

Branco F G, Tadeu A, Belgas MDL & Reis C. : “Experimental evaluation of the durability of cork concrete”. International Journal for Housing Science and Its Applications, 2008. 32(2): p. 149. Search in Google Scholar

Mark A : “Microsphere-based admixture for durable concrete”. Concrete international, 2014. 36(3): p. 59-63. Search in Google Scholar

Toutanji H, Delatte N, Aggoun S, Duval R & Danson A : “Effect of supplementary cementitious materials on the compressive strength and durability of short-term cured concrete”. Cement and concrete research, 2004. 34(2): p. 311-319. Search in Google Scholar

Li Y, Wu B & Wang R : “Critical review and gap analysis on the use of high-volume fly ash as a substitute constituent in concrete”. Construction and Building Materials, 2022. 341: p. 127889. Search in Google Scholar

Shpak A : “Production and documentation of frost durable high-volume fly ash concrete: air entrainment, cracking and scaling in performance testing”. (Ph.D Thesis), Norwegian University of Science and Technology (NTNU) 2020. Search in Google Scholar

Technical Specification (CN/TS): “Testing hardened concrete – part 9: Freeze-thaw resistance with de-icing salts, Scaling”. CEN/TS 12390-9:2016. Search in Google Scholar

Mørtsell E, Maage M & Smeplass S : “A particle – matrix model for prediction of workability of concrete”. Production Methods and Workability of Concrete 32 (2004): 429. Search in Google Scholar

Smeplass S & Mortsell E: “The applicability of the particle matrix model to self-conmpacting concrete (SCC)”. Nordic Concrete Research-Publications, 2001. 26: p. 83-95. Search in Google Scholar

Jacobsen S & Sellevold E : “Frost/salt scaling testing of concrete-importance of absorption during test”. Nordic Concrete Research, 1994. 14(1): p. 1994. Search in Google Scholar

Standard, British : Testing hardened concrete.” Compressive Strength of Test Specimens, BS EN (2009): 12390-3. Search in Google Scholar

Neville A.M : “Properties of concrete”. Vol. 4. London: Longman, 1995. Search in Google Scholar

Fagerlund G : “Influence of environmental factors on the frost resistance of concrete: a contribution to the BRITE/EURAM project BREU-CT92-0591” The Residual Service Life of Concrete Structures (1994). Search in Google Scholar

Valenza II, John J & George W. Scherer : “A review of salt scaling: I. Phenomenology.” Cement and Concrete Research 37.7 (2007): 1007-1021 Search in Google Scholar

Auberg R : “Zuverlässige Prüfung des Frost-und Frost-Tausalz-Widerstands von Beton mit dem CDF-und CIF-test”. (PhD thesis). Vol. Heft 6. 1999, Universität GH Essen, Germany: Shaker. 248. Search in Google Scholar

eISSN:
2545-2819
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
2 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Materialwissenschaft, Materialverarbeitung