BANFILL P F G, SAUNDERS D C. On the viscosimetric examinationof cement pastes [J]. Cem Concr Res , 1981, 11: 363–370.
[2]
TOUTOU Z, ROUSSEL N. Multi scale experimental study of concreterheology: from water scale to gravel scale [J]. Mater Struct, 2006,37(2): 167–176.
[3]
ROUSSEL N. Steady and transient flow behaviour of fresh cementpastes [J]. Cem Concr Res, 2005, 35: 1656–1664.
[4]
ROUSSEL N, LEMAITRE A,FLATT R J, et al. Steady state flow ofcement suspensions: A micromechanical state of the art [J]. Cem ConcrRes, 2010, 40(1): 77–84.
[5]
COUSSOT P, ANCEY C. Rheophysical classification of concentratedsuspensions and granular pastes [J]. Phys Rev E, 2009, 59: 4445–4457.
[6]
PERROT A, LECOMPTE T, KHELIFI H, et al. Yield stress andbleeding of fresh cement pastes [J]. Cem Concr Res, 2012, 42(7):937–944.
[7]
FLATT R J. Dispersion forces in cement suspensions [J]. Cem ConcrRes, 2004, 34: 399–408.
[8]
HOT J, BESSAIES-BEY H, BRUMAUD C, et al. Adsorbing polymersand viscosity of cement pastes [J]. Cem Concr Res, 2014, 63: 12–19.
[9]
OVARLEZ G, BERTRAND F, RODTS S. Local determination of theconstitutive law of a dense suspension of non-colloidal particlesthrough magnetic resonance imaging [J]. J Rheol, 2006, 50: 259–292.
[10]
BRUMAUD C, BAUMANN R, SCHMITZ M, et al. Cellulose ethersand yield stress of cement pastes [J]. Cem Concr Res, 2014, 55: 14–21.
[11]
FLATT R J, SCHOBER I, RAPHAEL E, et al. Conformation of AdsorbedComb Copolymer Dispersants [J]. Langmuir, 2009, 25(2): 845–855.
[12]
KJELDSEN A M, FLATT R J, BERGSTR?M L. Relating the molecularstructure of comb-type superplasticizers to the compression rheology ofMgO suspensions [J]. Cem Concr Res, 2006, 36: 1231–1239.
[13]
BESSAIES-BEY H. Polymères et propriétés rhéologiques d'une pa_tede ciment: une approche physique générique / Polymers andrheological properties of cement pastes; a physical generic approach[D]. Univ Paris Est (In French), 2015.
[14]
LANGE A, HIRATA T, PLANK J. Influence of the HLB Value ofPolycarboxylate Superplasticizers on the Flow Behavior of Mortar andConcrete [J]. Cem Concr Res, 2014, 60: 45 – 50.
[15]
FLATT R J, ROUSSEL N, CHEESEMAN C R. Concrete: An ecomaterial that needs to be improved [J]. J Eur Ceram Soc, 2012, 32(11):2787–2798.
[16]
YIM Hong Jae, KIM Jae Hong, KWAK Hyo-Gyoung, et al. Evaluationof internal bleeding in concrete using a self-weight bleeding test [J].Cem Concr Res, 2013, 53: 18–24.
[17]
PENG Ya, JACOBSEN S. Influence of water/cement ratio, admixturesand filler on sedimentation and bleeding of cement paste [J]. CemConcr Res, 2013, 54: 133–142.
[18]
BRUMAUD C, BESSAIES-BEY H, MOHLER C, et al. Celluloseethers and water retention [J]. Cem Concr Res, 2013, 53: 76–184.
[19]
BüLICHEN D, KAINZ J, PLANK J. Working mechanism of methylhydroxyethyl cellulose (MHEC) as water retention agent [J]. CemConcr Res, 2012, 42: 953–959.
[20]
BüLICHEN D, PLANK J. Water retention capacity and workingmechanism of methyl hydroxypropyl cellulose (MHPC) in gypsumplaster — Which impact has sulfate? [J]. Cem Concr Res, 2013, 46:66–72.
[21]
MARLIERE C, MABROUK E, LAMBLET M, et al. How waterretention in porous media with cellulose ethers works [J]. Cem ConcrRes, 2012, 42: 1501–1512.
[22]
POINOT T, GOVIN A, GROSSEAU P. Importance of coil-overlappingfor the effectiveness of hydroxypropylguars as water retention agent incement-based mortars [J]. Cem Concr Res, 2014, 56: 61–68.
[23]
POINOT T, GOVIN A, GROSSEAU P. Influence ofhydroxypropylguars on rheological behavior of cement-based mortars[J]. Cem Concr Res, 2014, 58: 161–168.
[24]
POINOT T, BARTHOLIN M C, GOVIN A, et al. Influence of thepolysaccharide addition method on the properties of fresh mortars [J].Cem Concr Res, 2015, 70: 50–59.
[25]
DALAS F, NONAT A, POURCHET S, et al. Tailoring the anionicfunction and the side chains of comb-like superplasticizers to improvetheir adsorption [J]. Cem Concr Res, 2015, 67: 21–30.
[26]
ZHANG Yanrong, KONG Xiangming, LU Zhenbao, et al. Effects ofthe charge characteristics of polycarboxylate superplasticizers on the adsorption and the retardation in cement pastes [J]. Cem Concr Res,2015, 67: 184–196.
[27]
JOSEF K, WINNEFELD F, ZURBRIGGEN R. Polymer dispersionsand their interaction with mortar constituents and ceramic tile surfacesstudied by zeta-potential measurements and atomic force microscopy[J]. Cem Concr Comp, 2012, 34: 604–611.
[28]
WEI F, STOFFELBACH F, RIEGER J, et al. A new class oforganosilane-modified polycarboxylate superplasticizers with lowsulfate sensitivity [J]. Cem Concr Res, 2012, 42: 166–172.
[29]
SHENGHUA L, GAO Ruijun, CAO Qiang, et al. Preparation andcharacterization of poly-carboxymethyl-β-cyclodextrinsuperplasticizer[J]. Cem Concr Res, 2012, 42: 1356–1361.
[30]
LEI L, PLANK J. Synthesis, working mechanism and effectiveness ofa novel cycloaliphatic [J]. Cem Concr Res, 2012, 42: 118–123.
[31]
LUCIE Crépy, PETIT Jean-Yves, WIRQUIN Eric, et al. Synthesis andevaluation of starch-based polymers as potential dispersants in cementpastes and self leveling compounds [J]. Cem Concr Comp, 2014, 45:29–38.
[32]
JI Dong, LUO Zhenyang, HE Ming, et al. Effect of both grafting andblending modifications on the performance oflignosulphonate-modified sulphanilic acid–phenol–formaldehydecondensates [J]. Cem Concr Res, 2012, 42: 1199–1206.
[33]
LOU Hongming, JI Kaibin, LIN Houkeng, et al. Effect of molecularweight of sulphonated acetone-formaldehyde condensate on itsadsorption and dispersion properties in cementitious system [J]. CemConcr Res, 2012, 42: 1043–1048.
[34]
BETIOLI A M, GLEIZE P J P, JOHN V M, et al. Effect of EVA onthe fresh properties of cement paste [J]. Cem Concr Comp, 2012, 34:255–260.
[35]
PEI Ruoting, LIU Jun, WANG Shuangshuang. Use of bacterial cellwalls as a viscosity-modifying admixture of concrete [J]. Cem ConcrComp, 2015, 55: 186–195.
[36]
LEI L, PLANK J. A concept for a polycarboxylate superplasticizerpossessing enhanced clay tolerance [J]. Cem Concr Res, 2012, 42:1299–1306.
[37]
NG S, PLANK J. Interaction mechanisms between Namontmorillonite clay and MPEG-based polycarboxylatesuperplasticizers [J]. Cem Concr Res, 2012, 42: 847–854.
[38]
ALONSO M M, PALACIOS M, PUERTAS F. Compatibility betweenpolycarboxylate-based admixtures and blended-cement pastes [J]. CemConcr Comp, 2013, 35: 151–162.
[39]
SCHR?FL C, GRUBER M, PLANK J. Preferential adsorption ofpolycarboxylate superplasticizers on cement and silica fume inultra-high performance concrete (UHPC) [J]. Cem Concr Res, 2012, 42:1401–1408.
[40]
BESSAIES-BEY H, HOT J, BAUMANN R, et al. Consequences ofcompetitive adsorption between polymers on the rheological behaviourof cement pastes [J]. Cem Concr Comp, 2014, 54: 17–20.
[41]
RECAL DE LUMMER N, PLANK J. Combination of lignosulfonateand AMPS?-co-NNDMA water retention agent—An example for dualsynergistic interaction between admixtures in cement [J]. Cem ConcrRes, 2012, 42: 728–735.
[42]
PICKELMANN J, PLANK J. A mechanistic study explaining thesynergistic viscosity increase obtained from polyethylene oxide (PEO)and β-naphthalene sulfonate (BNS) in shotcrete [J]. Cem Concr Res,2012, 42: 1409–1416.
[43]
BEUSHAUSEN H, GILLMER M, ALEXANDER M. The influence ofsuper absorbent polymers on strength and durability properties ofblended cement mortars [J]. Cem Concr Comp, 2014, 52: 73–80.
[44]
BEUSHAUSEN H, GILLMER M. The use of superabsorbent polymersto reduce cracking of bonded mortar overlays [J]. Cem Concr Comp,2014, 52: 1–8.
[45]
HASHOLT M T, JENSEN O M. Chloride migration in concrete withsuperabsorbent polymers [J]. Cem Concr Comp, 2015, 55: 290–297.
[46]
SCHR?FL C, MECHTCHERINE V, GORGES M. Relation betweenthe molecular structure and the efficiency of superabsorbent polymers(SAP) as concrete admixture to mitigate autogenous shrinkage [J].Cem Concr Res, 2012, 42: 865–873.
[47]
POURJAVADI A, FAKOORPOOR S M, HOSSEINI P, et al.Interactions between superabsorbent polymers and cement-basedcomposites incorporating colloidal silica nanoparticles [J]. Cem ConcrComp, 2013, 37: 196–204.
[48]
MAHAUT F, CHATEAU X, COUSSOT P, et al. Yield stress andelastic modulus of suspensions of non-colloidal particles in yield stressfluids[J]. J Rheol, 2008, 52: 287–313.
[49]
MAHAUT F, MOKEDDEM S, CHATEAU X, et al. Effect of coarseparticle volume fraction on the yield stress and thixotropy ofcementitious materials[J]. Cem Concr Res, 2008, 38(11): 1276–1285.
[50]
ONODA G Y, LINIGER E G. Random loose packings of uniformspheres and the dilatancy onset[J]. Phys Rev Lett, 1990, 64:2727–2730.
[51]
YAMMINE J, CHAOUCHE M, GUERINET M, et al. From ordinaryrheology concrete to self compacting concrete: a transition betweenfrictional and hydrodynamic interactions [J]. Cem Concr Res, 2008, 38:890–896.
[52]
MANSOUTRE S, COLOMBET P, VAN DAMME H. Water retentionand granular rheological behaviour of fresh C3S paste as function ofconcentration [J]. Cem Concr Res, 1999, 29: 1441–1453.