Research progress on rheological property of shear thickening Fluid

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  • Laboratory of Intelligent Materials and Vibration Control,School of Vehicle Application Engineering,Army Armored Force Academy,Beijing 100072

Received date: 2020-08-10

  Revised date: 2021-10-20

  Online published: 2021-12-31

Abstract

Shear thickening fluids (STFs) are one of the categories of smart materials,whose viscosity increases considerably in the presence of shear strain or shear rate.These fluids were prepared by dispersing hard metal oxide particles into the carrier fluid with stabilizer additives.The main feature of these fluids was their ability to change from liquid to semi-solid state just in few milliseconds after applying an impact.Instability of rheological properties and shear thickening mechanism of STFs were the most important problems against the extensive application of STFs technology in modern industries.The focus was to review the latest related theoretical models,rheological properties,and influencing factors of rheological properties of shear thickening fluids,and layed the foundation for subsequent research.

Cite this article

Zhang Jinqiu, Zhao Mingmei, Li Xin, Zhang Jian, Peng Zhizhao . Research progress on rheological property of shear thickening Fluid[J]. New Chemical Materials, 2021 , 49(12) : 236 -241 . DOI: 10.19817/j.cnki.issn 1006-3536.2021.12.050

References

[1] Gürgen S,Kuşhan M C,LI W.Shear thickening fluids in protective applications:a review[J].Progress in Polymer Science,2017,75:48-72.
[2] Freundlich H,Röder H.Dilatancy and its relation to thixotropy[J].Transactions of the Faraday Society,1938,34:308-316.
[3] Barnes H.Shear-thickening (“Dilatancy”) in suspensions of nonaggregating solid particles dispersed in Newtonian liquids[J].Journal of Rheology,1989,33(2):329-366.
[4] Santos T F,Santos C M S,Aquino M S,et al.Influence of silane coupling agent on shear thickening fluids (STF) for personal protection[J].Journal of Materials Research and Technology,2019,8(5):4032-4039.
[5] Hadde E K,Chen J.Shear and extensional rheological characterization of thickened fluid for dysphagia management[J].Journal of Food Engineering,2019,245:18-23.
[6] Gürgen S,Li W,Kuşhan M C.The rheology of shear thickening fluids with various ceramic particle additives[J].Materials & Design,2016,104:312-319.
[7] Gürgen S,SofuoAğlu M A.Experimental investigation on vibration characteristics of shear thickening fluid filled CFRP tubes[J].Composite Structures,2019,226:111236.
[8] Gillespie T.Application of the hydrodynamic-structural theory of non-Newtonian flow to suspensions which exhibit moderate shear thickening with particular reference to “dilatant” vinyl plastisols[J].Journal of Colloid & Interface Science,1966,22(6):554-562.
[9] Hoffman R L.Discontinuous and dilatant viscosity behavior in concentrated suspensions.Ⅰ.observation of a flow instability[J].Transactions of the Society of Rheology,1972,16(1):155-173.
[10] Brady J F,Bossis G.The rheology of concentrated suspensions of spheres in simple shear flow by numerical simulation[J].Journal of Fluid Mechanics,1985,155:105.
[11] Andreotti B,Barrat J L,Heussinger C.Shear flow of non-Brownian suspensions close to jamming[J].Physical Review Letters,2012,109(10):105901.
[12] Watanabe H,Yao M L,Osaki K,et al.Nonlinear rheology and flow-induced structure in a concentrated spherical silica suspension[J].Rheologica Acta,1998,37(1):1-6.
[13] Seto R,Mari R,Morris J F,et al.Discontinuous shear thickening of frictional hard-sphere suspensions[J].Physical Review Letters,2013,111(21):218301.
[14] Melrose J R,Ball R C.Continuous shear thickening transitions in model concentrated colloids—The role of interparticle forces[J].Journal of Rheology,2004,48(5):937.
[15] Pednekar S,Chun J,Morris J F.Simulation of shear thickening in attractive colloidal suspensions[J].Soft Matter,2017,13(9):1773-1779.
[16] Gopalakrishnan V,Zukoski C F.Effect of attractions on shear thickening in dense suspensions[J].Journal of Rheology,2004,48(6):1321-1344.
[17] Lin N Y C,Guy B M,Hermes M,et al.Hydrodynamic and contact contributions to continuous shear thickening in colloidal suspensions[J].Physical Review Letters,2015,115(22):228304.
[18] Mari R,Seto R,Morris J F,et al.Shear thickening,frictionless and frictional rheologies in non-Brownian suspensions[J].Journal of Rheology,2014,58(6):1693-724.
[19] D'haene P,Fuller G G,Mewis J.Shear thickening effect in concentrated colloidal dispersions[J].Theoretical & Applied Rheology,1992,595-597.
[20] ZupanAčiAč A,Lapasin R,Žumer M.Rheological characterisation of shear thickening TiO2 suspensions in low molecular polymer solution[J].Progress in organic coatings,1997,30(1-2):67-78.
[21] Jianming R,Anguo X,Hongwei W,et al.Review-recent development of ring-opening polymerization of cyclic esters using aluminum complexes[J].Designed Monomers and Polymers,2014,17(4):345-355.
[22] Liu D M.Particle packing and rheological property of highly-concentrated ceramic suspensions:φm determination and viscosity prediction[J].Journal of materials science,2000,35(21):5503-5507.
[23] Zarei M,Aalaie J.Application of shear thickening fluids in material development[J].Journal of Materials Research and Technology,2020,9(5):10411-10433.
[24] Wetzel E D,Lee Y S,Egres R G,et al.The effect of rheological parameters on the ballistic properties of shear thickening fluid (STF)-kevlar composites[C].AIP conference proceedings.Columbus(USA):American Institute of Physics,2004,712(1):288-293.
[25] Maranzano B J,Wagner N J.The effects of particle size on reversible shear thickening of concentrated colloidal dispersions[J].The Journal of Chemical Physics,2001,114(23):10514-10527.
[26] Kalman D P,Merrill R L,Wagner N J,et al.Effect of particle hardness on the penetration behavior of fabrics intercalated with dry particles and concentrated particle-fluid suspensions[J].ACS Applied Materials & Interfaces,2009,1(11):2602-2612.
[27] Liu M,Jiang W,Chen Q,et al.A facile one-step method to synthesize SiO2@polydopamine core-shell nanospheres for shear thickening fluid[J].RSC Advances,2016,6(35):29279-29287.
[28] Khan S A,Zoeller N J.Dynamic rheological behavior of flocculated fumed silica suspensions[J].Journal of Rheology,1993,37(6):1225-1235.
[29] Zheng S B,Xuan S H,Jiang W Q,et al.High performance shear thickening fluid based on calcinated colloidal silica microspheres[J].Smart Materials and Structures,2015,24(8):085033.
[30] He Q,Gong X,Xuan S,et al.Shear thickening of suspensions of porous silica nanoparticles[J].Journal of Materials Science,2015,50(18):6041-6049.
[31] Qin J,Zhang G,Shi X.Study of a shear thickening fluid:the suspensions of monodisperse polystyrene microspheres in polyethylene glycol[J].Journal of Dispersion Science and Technology,2017,38(7):935-942.
[32] Shenoy S S,Wagner N J.Influence of medium viscosity and adsorbed polymer on the reversible shear thickening transition in concentrated colloidal dispersions[J].Rheologica Acta,2005,44(4):360-371.
[33] Moriana A D,Tian T,Sencadas V,et al.Comparison of rheological behaviors with fumed silica-based shear thickening fluids[J].Korea-Australia Rheology Journal,2016,28(3):197-205.
[34] Baharvandi H R,Alebooyeh M,Alizadeh M,et al.The influences of particle-particle interaction and viscosity of carrier fluid on characteristics of silica and calcium carbonate suspensions-coated Twaron® composite[J].Journal of Experimental Nanoscience,2016,11(7):550-563.
[35] Antosik A,Gluszek M,Zurowski R,et al.Influence of carrier fluid on the electrokinetic and rheological properties of shear thickening fluids[J].Ceramics International,2017,43(15):12293-12301.
[36] Laha A,Majumdar A.Shear thickening fluids using silica-halloysite nanotubes to improve the impact resistance of p-aramid fabrics[J].Applied Clay Science,2016,132-133:468-474.
[37] Liu M,Chen Q,Wang S,et al.PVP immobilized SiO2 nanospheres for high-performance shear thickening fluid[J].Journal of Nanoparticle Research,2017,19(7):1-13.
[38] Li S,Wang J,Cai W,et al.Effect of acid and temperature on the discontinuous shear thickening phenomenon of silica nanoparticle suspensions[J].Chemical Physics Letters,2016,658:210-214.
[39] Ge J,Tan Z,Li W,et al.The rheological properties of shear thickening fluid reinforced with SiC nanowires[J].Results in Physics,2017,7:3369-3372.
[40] Hu Y,Rajaram C,Wang S,et al.Shear thickening behavior of a rheopectic micellar solution:salt effects[J].Langmuir,1994,10(1):80-85.
[41] Hasanzadeh M,Mottaghitalab V,Babaei H,et al.The influence of carbon nanotubes on quasi-static puncture resistance and yarn pull-out behavior of shear-thickening fluids (STFs) impregnated woven fabrics[J].Composites Part A:Applied Science and Manufacturing,2016,88:263-271.
[42] Liu X Q,Bao R Y,Wu X J,et al.Temperature induced gelation transition of a fumed silica/PEG shear thickening fluid[J].RSC Advances,2015,5(24):18367-18374.
[43] Warren J,Offenberger S,Toghiani H,et al.Effect of temperature on the shear-thickening behavior of fumed silica suspensions[J].ACS Applied Materials & Interfaces,2015,7(33):18650-18661.
[44] Tian T,Peng G,Li W,et al.Experimental and modelling study of the effect of temperature on shear thickening fluids[J].Korea-Australia Rheology Journal,2015,27(1):17-24.
[45] Liu M,Jian W,Wang S,et al.Shear thickening fluid with tunable structural colors[J].Smart Materials and Structures,2018,27(9):095012.
[46] Zhang X,Li W,Gong X.Thixotropy of MR shear-thickening fluids[J].Smart Materials and Structures,2010,19(12):125012.
[47] Bossis G,Grasselli Y,Meunier A,et al.Outstanding magnetorheological effect based on discontinuous shear thickening in the presence of a superplastifier molecule[J].Applied Physics Letters,2016,109(11):111902.
[48] Bossis G,Grasselli Y,Meunier A,et al.Tunable discontinuous shear thickening with magnetorheological suspensions[J].Journal of Intelligent Material Systems and Structures,2018,29(1):5-11.
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