Property and Degradation Characteristics of Concrete Prepared with Aggregate Contained Montmorillonite

Yanwei Wang , Chao Xu , Haoxin Li

Journal of Wuhan University of Technology Materials Science Edition ›› 2019, Vol. 34 ›› Issue (1) : 127 -131.

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Journal of Wuhan University of Technology Materials Science Edition ›› 2019, Vol. 34 ›› Issue (1) : 127 -131. DOI: 10.1007/s11595-019-2025-y
Cementitious Materials

Property and Degradation Characteristics of Concrete Prepared with Aggregate Contained Montmorillonite

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Abstract

To evaluate the property and degradation characteristics of concrete prepared with aggregate contained montmorillonite, concretes were prepared with aggregates contained montmorillonite, and then concrete slump loss, compressive strength, electric flux, the resistance to carbonization, freezing-thawing and sulfate attack were evaluated. The results show that montmorillonite appearance alters concrete slump loss and compressive strength. But montmorillonite increases electric flux and compactness. The carbonization, freezingthawing and sulfate attack results indicate that montmorillonite enhances carbonization depth, increases mass loss after 300 cycle freezing-thawing, as well as mass loss after sulfate attack. Overall, it is adverse to the concrete resistance to the carbonization, freezing-thawing and sulfate attack.

Keywords

property / degradation / montmorillonite / slump / durability

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Yanwei Wang, Chao Xu, Haoxin Li. Property and Degradation Characteristics of Concrete Prepared with Aggregate Contained Montmorillonite. Journal of Wuhan University of Technology Materials Science Edition, 2019, 34(1): 127-131 DOI:10.1007/s11595-019-2025-y

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References

[1]

Liu T, Song W, Zou D, et al. Dynamic Mechanical Analysis of Cement Mortar Prepared with Recycled Cathode Ray Tube(CRT) Glass as Fine Aggregate[J]. J. Clean. Prod., 2018, 174: 1 436-1 443.

[2]

Zhang P, Wittmann FH, Vogel M, et al. Influence of Freeze–Thaw Cycles on Capillary Absorption and Chloride Penetration into Concrete[ J]. Cem. Concr. Res., 2017, 100: 60-67.

[3]

Liu M, Tan H, He X. Effects of Nano–SiO2 on Early Strength and Microstructure of Steam–Cured High Volume Fly Ash Cement System[J]. Constr. Build.Mater., 2019, 194: 350-359.

[4]

Gao X, Zhang J, Su Y. Influence of Vibration–Induced Segregation on Mechanical Property and Chloride Ion Permeability of Concrete with Variable Rheological Performance[J]. Constr. Build.Mater., 2019, 194: 32-41.

[5]

Huang H, Gao X, Li L, et al. Improvement Effect of Steel Fiber Orientation Control on Mechanical Performance of UHPC[J]. Constr. Build. Mater., 2018, 188: 709-721.

[6]

Xu G, Shen W, Zhang B, et al. Properties of Recycled Aggregate Concrete Prepared with Scattering–Filling Coarse Aggregate Process[J]. Cem. Concr. Compos., 2018, 93: 19-29.

[7]

Wang Q, Wang D, Chen H. The Role of Fly Ash Microsphere in the Microstructure and Macroscopic Properties of High–Strength Concrete [J]. Cem. Concr. Compos., 2017, 83: 125-137.

[8]

Tang W C, Wang Z, Liu Y, et al. Influence of Red Mud on Fresh and Hardened Properties of Self–Compacting Concrete[J]. Constr. Build. Mater., 2018, 178: 288-300.

[9]

Ren Q, Jiang Z, Li H, et al. Fresh and Hardened Properties of Self–Compacting Concrete Using Silicon Carbide Waste as a Viscosity–Modifying Agent[J]. Constr. Build.Mater., 2019, 200: 324-332.

[10]

Yang X, Liu J, Li H, et al. Effect of Triethanolamine Hydrochloride on the Performance of Cement Paste[J]. Constr. Build.Mater., 2019, 200: 218-225.

[11]

Huang Y, Xu C, Li H, et al. Utilization of the Black Tea Powder as Multifunctional Admixture for the Hemihydrate Gypsum[J]. J. Clean. Prod., 2019, 210: 231-237.

[12]

Zou F, Tan H, Guo Y, et al. Effect of Sodium Gluconate on Dispersion of Polycarboxylate Superplasticizer with Different Grafting Density in side Chain[J]. J. Ind. Eng. Chem., 2017, 55: 91-100.

[13]

Liu T, Zou D, Teng J, et al. The Influence of Sulfate Attack on the Dynamic Properties of Concrete Column[J]. Constr. Build.Mater., 2012, 28(1): 201-207.

[14]

Huang Y, Li H, Jiang Z, et al. Migration and Transformation of Sulfur in the Municipal Sewage Sludge during Disposal in Cement Kiln[J]. Waste Manage., 2018, 77: 537-544.

[15]

Ahmad MR, Chen B, Oderji SY, et al. Development of a New Bio–Composite for Building Insulation and Structural Purpose Using Corn Stalk and Magnesium Phosphate Cement[J]. Energ. Buildings, 2018, 173: 719-733.

[16]

Qin L, Gao X, Li Q. Upcycling Carbon Dioxide to Improve Mechanical Strength of Portland Cement[J]. J. Clean. Prod., 2018, 196: 726-738.

[17]

Tan H, Gu B, Guo Y, et al. Improvement in Compatibility of Polycarboxylate Superplasticizer with Poor–Quality Aggregate Containing Montmorillonite by Incorporating Polymeric Ferric Sulfate[J]. Constr. Build.Mater., 2018, 162: 566-575.

[18]

Liu T, Zou D, Du C, et al. Influence of Axial Loads on the Health Monitoring of Concrete Structures Using Embedded Piezoelectric Transducers[J]. Struct. Health. Monit., 2017, 16: 202-214.

[19]

Liu T, Qin S, Zou D, et al. Experimental Investigation on the Durability Performances of Concrete Using Cathode Ray Tube Glass as Fine Aggregate under Chloride Ion Penetration or Sulfate Attack[J]. Constr. Build.Mater., 2018, 163: 634-642.

[20]

Tan H, Zhang X, He X, et al. Utilization of Lithium Slag by Wet–Grinding Process to Improve the Early Strength of Sulphoaluminate Cement Paste[J]. J. Clean. Prod., 2018, 205: 536-551.

[21]

Qin L, Gao X, Chen T. Recycling of Raw Rice Husk to Manufacture Magnesium Oxysulfate Cement based Lightweight Building materials [J]. J. Clean. Prod., 2018, 191: 220-232.

[22]

Shi T, Gao Y, Corr DJ, et al. FTIR Study on Early Age Hydration of Carbon Nanotubes Modified Cement–based Materials[J]. Adv. Cem. Res., 2018

[23]

Zhang P, Wittmann FH, Lura P, et al. Application of Neutron Imaging to Investigate Fundamental Aspects of Durability of Cement–based Materials: A Review [J]. Cem. Concr. Res., 2018, 108: 152-166.

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