pH-responsive superabsorbent polymers: A pathway to self-healing of mortar
暂无分享,去创建一个
Nele De Belie | Peter Dubruel | David Schaubroeck | Didier Snoeck | Sandra Van Vlierberghe | Arn Mignon | P. Dubruel | D. Schaubroeck | N. Belie | S. Vlierberghe | D. Snoeck | A. Mignon | Nathalie Luickx | Nathalie Luickx
[1] F. Stallmach,et al. Water balance and pore structure development in cementitious materials in internal curing with modified superabsorbent polymer studied by NMR , 2009 .
[2] C. Bamford,et al. Ester formation and hydrolysis, and related reactions , 1972 .
[3] G. De Schutter,et al. Automated air void analysis of hardened concrete — a Round Robin study , 2006 .
[4] Anthony Duncan Jefferson,et al. ISSUES RELATING TO THE AUTONOMIC HEALING OF CEMENTITIOUS MATERIALS , 2007 .
[5] C. Meyer. The greening of the concrete industry , 2009 .
[6] N. Belie,et al. Autogenous healing of cracks in cementitious materials with varying mix compositions , 2009 .
[7] P. Dubruel,et al. Effect of high amounts of superabsorbent polymers and additional water on the workability, microstructure and strength of mortars with a water-to-cement ratio of 0.50 , 2014 .
[8] N. Buenfeld,et al. Potential of superabsorbent polymer for self-sealing cracks in concrete , 2010 .
[9] Liv Haselbach,et al. Potential for Carbon Dioxide Absorption in Concrete , 2009 .
[10] P. Dubruel,et al. Visualization of water penetration in cementitious materials with superabsorbent polymers by means of neutron radiography , 2012 .
[11] Philip R. Christensen,et al. Thermal infrared emission spectroscopy of anhydrous carbonates , 1997 .
[12] Yoshikazu Araki,et al. Feasibility of externally activated self-repairing concrete with epoxy injection network and Cu-Al-Mn superelastic alloy reinforcing bars , 2014 .
[13] Marianne Tange Hasholt,et al. Void structure of concrete with superabsorbent polymers and its relation to frost resistance of concrete , 2015 .
[14] Carl-Johan Fogelholm,et al. Dissolution of steelmaking slags in acetic acid for precipitated calcium carbonate production , 2007 .
[15] W. Verstraete,et al. Use of bacteria to repair cracks in concrete , 2010 .
[16] G. Wegner,et al. Amorphous Calcium Carbonate: Synthesis and Potential Intermediate in Biomineralization , 2004 .
[17] C. Choi,et al. Effects of Divalent Cations on Alkaline Hydrolysis of Poly(ethylene terephthalate) Fabric , 1995 .
[18] P. G. Wahlbeck,et al. Application of transpiration theory to TGA data: Calcium carbonate and zinc chloride , 1995 .
[19] Marianne Tange Hasholt,et al. Can superabsorent polymers mitigate autogenous shrinkage of internally cured concrete without compromising the strength , 2012 .
[20] Adam Neville,et al. Autogenous Healing—A Concrete Miracle? , 2002 .
[21] Pietro Lura,et al. Techniques and materials for internal water curing of concrete , 2006 .
[22] P. Dubruel,et al. pH-sensitive superabsorbent polymers: a potential candidate material for self-healing concrete , 2014, Journal of Materials Science.
[23] F. Andersen,et al. Infrared spectra of amorphous and crystalline calcium carbonate , 1991 .
[24] Arthur E. Martell,et al. Ligand design for selective complexation of metal ions in aqueous solution , 1989 .
[25] P. Dubruel,et al. The use of superabsorbent polymers as a crack sealing and crack healing mechanism in cementitious materials , 2012 .
[26] S. Bang,et al. Calcite precipitation induced by polyurethane-immobilized Bacillus pasteurii. , 2001, Enzyme and microbial technology.
[27] Surendra P. Shah,et al. Permeability study of cracked concrete , 1997 .
[28] A. Mukherjee,et al. Lactose mother liquor as an alternative nutrient source for microbial concrete production by Sporosarcina pasteurii , 2009, Journal of Industrial Microbiology & Biotechnology.
[29] Viktor Mechtcherine,et al. Effect of internal curing by using superabsorbent polymers (SAP) on autogenous shrinkage and other properties of a high-performance fine-grained concrete: results of a RILEM round-robin test , 2014 .
[30] Carola Edvardsen,et al. Water Permeability and Autogenous Healing of Cracks in Concrete , 1999 .
[31] S. Zwaag. Self‐Healing Materials , 2007 .
[32] Mickaël Thiery,et al. Measurement methods of carbonation profiles in concrete: Thermogravimetry, chemical analysis and gammadensimetry , 2007 .
[33] V. Cnudde,et al. Preliminary results about 3D distribution of superabsorbent polymers in mortars , 2008 .
[34] Michael D. Lepech,et al. Autogenous healing of engineered cementitious composites under wet–dry cycles , 2009 .
[35] P. Dubruel,et al. Self-healing cementitious materials by the combination of microfibres and superabsorbent polymers , 2014 .
[36] O. Jensen,et al. Water-entrained cement-based materials: II. Experimental observations , 2002 .