《高分子流变学》PPT课件资料.ppt
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1、高分子流变学高分子流变学PPTPPT课课件件I.1 Shear Thinning/Thickening(cont.)Tube flow and“shear thinning”.In each part,the Newtonina behavior is shown on the left(N);the behavior of a polymer on the right(P).(a)A tiny sphere falls at the same rate through each;(b)the polymer flows out faster than the Newtonian fluid.
2、Reproduced from R.B.Bird,R.C.Armstrong and O.Hassager,Dynamics of Polymeric Liquids.Vol I:Fluid Mechanics,2nd edition,Wiley-Interscience(1987),p.61.Retrieved from the video of Non-Newtonian Fluid Mechanics(University of Wales Institute of Non-Newtonian Fluid Mechanics,2000)I.2 Normal Stress Differen
3、ce and ElasticityRod-ClimbingFixed cylinder with rotating rod.(N)The Newtonian liquid,glycerin,shows a vortex;(P)the polymer solution,polyacrylamide in glycerin,climbs the rod.Reproduced from R.B.Bird,R.C.Armstrong and O.Hassager,Dynamics of Polymeric Liquids.Vol I:Fluid Mechanics,2nd edition,Wiley-
4、Interscience(1987),p.63.Retrieved from the video of Non-Newtonian Fluid Mechanics(University of Wales Institute of Non-Newtonian Fluid Mechanics,2000)I.2 Normal Stress Difference and Elasticity(cont.)Extrudate Swell(also called“die swell”)Behavior of fluid issuing from orifices.A stream of Newtonian
5、 fluid(N,silicone fluid)shows no diameter increase upon emergence from the capillary tube;a solution of 2.44 g of polymethylmethacrylate(Mn=106 g/mol)in 100 cm3 of dimethylphthalate(P)shows an increase by a factor in diameter as it flows downward out of the tube.Reproduced from A.S.Lodge,Elastic Liq
6、uids,Academic Press,New York(1964),p.242.Retrieved from the video of Non-Newtonian Fluid Mechanics(University of Wales Institute of Non-Newtonian Fluid Mechanics,2000)Tubeless SiphonWhen the siphon tube is lifted out of the fluid,the Newtonian liquid(N)stops flowing;the macromolecular fluid(P)contin
7、ues to be siphoned.Reproduced from R.B.Bird,R.C.Armstrong and O.Hassager,Dynamics of Polymeric Liquids.Vol I:Fluid Mechanics,2nd edition,Wiley-Interscience(1987),p.74.Retrieved from the video of Non-Newtonian Fluid Mechanics(University of Wales Institute of Non-Newtonian Fluid Mechanics,2000)I.2 Nor
8、mal Stress Difference and Elasticity(cont.)Elastic RecoilAn aluminum soap solution,made of aluminum dilaurate in decalin and m-cresol,is(a)poured from a beaker and(b)cut in midstream.In(c),note that the liquid above the cut springs back to the breaker and only the fluid below the cut falls to the co
9、ntainer.Reproduced from A.S.Lodge,Elastic Liquids,Academic Press,New York(1964),p.238.I.2 Normal Stress Difference and Elasticity(cont.)A solution of 2%carboxymethylcellulose(CMC 70H)in water is made to flow under a pressure gradient that is turned off just before frame 5.Reprodeced from A.G.Fredric
10、kson,Principles and Applications of Rheology,Prentice-Hall,Englewood cliffs,NJ(1964),p.120.Dimensionless groups in Non-Newtonian fluid mechanics the Deborah number(De):the characteristic time of the fluid,tflow:the characteristic time of the flow system the Weissenberg number(We):the characteristic
11、strain rate in the flowDimensionless groups in Newtonian fluid mechanics the Reynolds number(Re)L:the characteristic length;V,and are the velocity,the density and the viscosity of fluidI.3 The Deborah/Weissenberg Number I.3 The Deborah/Weissenberg Number(cont.)Streak photograph showing the streamlin
12、es for the flow downward through an axisymmetric sudden contraction with contraction ratio 7.675 to 1 as a function of De.(a)De=0 for a Newtonian glucose syrup.(b-e)De=0.2,1,3 and 8 respectively for a 0.057%polyacrylamide glucose solution.Reproduced from D.B.Boger and H.Nguyen,Polym.Eng.Sci.,18,1038
13、(1978).Typical viscosity curve of a polyolefin-PP homopolymer,melt flow rate(230 C/2.16 Kg)of 8 g/10 min-at 230 C with indication of the shear rate regions of different conversion techniques.Reproduced from M.Gahleitner,“Melt rheology of polyolefins”,Prog.Polym.Sci.,26,895(2001).I.4 Flow Regimes of
14、Typical ProcessingChapter I Non-Newtonian Flows:Phenomenology“The mountains flowed before the Lord”From Deborahs Song,Judges,5:5SecondaryflowI.5 Secondary Flows and InstabilitySecondary flow around a rotating sphere in a polyacrylamide solution.Reporduce from H.Giesekus in E.H.Lee,ed.,Proceedings of
15、 the Fourth International Congress on Rheology,Wiley-Interscience,New York(1965),Part 1,pp.249-266Newtonian fluid(N):water-glycerinNon-Newtonian fluid(P):100 ppm polyacrylamide in water-glycerinSecondaryflowSteady streaming motion produced by a long cylinder oscillating normal to its axis.The cylind
16、er is viewed on end and the direction of oscillation is shown by the double arrow.The photographs do not show streamlines but mean particles pathlines made visible by illuminating tiny Spheres with a stroboscope synchronized with the cylinder frequency.Reproduced from C.T.Chang and W.R.Schowalter,Na
17、ture,252,686(1974).I.5 Secondary Flows and Instability(cont.)Melt instabilityPhotographs of LLDPE melt pass through a capillary tube under various shear rates.The shear rates are 37,112,750 and 2250 s-1,respectively.Reproduced from R.H.Moynihan,“The Flow at Polymer and Metal Interfaces”,Ph.D.Thesis,
18、Department of Chemical Engineering,Virginia Tech.,Blackburg,VA,1990.Retrieved from the video of Non-Newtonian Fluid Mechanics(University of Wales Institute of Non-Newtonian Fluid Mechanics,2000)SharkskinMelt fractureI.5 Secondary Flows and Instability(cont.)Taylor-Couette flowFlow visualization of t
19、he elastic Taylor-Couetteinstability in Boger fluids.http:/www.cchem.berkeley.edu/sjmgrp/Taylor vortexR1R2S.J.Muller,E.S.G.Shaqfeh and R.G.Larson,“Experimental studies of the onset of oscillatory instability in viscoelastic Taylor-Couette flow”,J.Non-Newtonian Fluid Mech.,46,315(1993).I.5 Secondary
20、Flows and Instability(cont.)Reproduced from G.M.Kavanagh and S.B.Ross-Murphy,“Rheological characterisation of polymer gels”,Prog.Polym.Sci.,23,533(1998).I.6 Probing Techniquesq2-1 RheometryShear and Shearfree FlowsFlow Geometries&Viscometric Functionsq2-2 Basic Vector/Tensor ManipulationsVector Oper
21、ationsTensor Operationsq2-3 Material Functions in Simple Shear FlowsSteady Flows Unsteady Flowsq2-4 Material Functions in Elongational FlowsTopics in Each SectionTopics in Each SectionqTwo standard kinds of flows,shear and shearfree,are used to characterize polymeric liquids2.1.Rheometry2.1.Rheometr
22、yFIG.3.1-1.Steady simple shear flowFIG.3.1-2.Streamlines for elongational flow(b=0)(a)Shear(b)ShearfreeShear rateElongationrateqThe Stress TensorxyzShear FlowElongational Flow*See 2.2Total stresstensor*Hydrostatic pressure forcesStress tensorqClassification of Flow Geometries(a)Shear(b)ElongationCon
23、e-and-PlateConcentric CylinderParallel PlatesCapillaryMoving ClampsPressure Flow:Drag Flows:qTypical Shear/Elongation Rate Range&Concentration Regimes for Each GeometriesHomogeneousdeformation:*Nonhomogeneousdeformation:Parallel Plates(a)Shear(b)ElongationCapillaryCone-and-PlateConcentric CylinderCo
24、ncentrated RegimeDilute RegimeFor Melts&High-Viscosity SolutionsMoving clamps*Stress and strain are independent of position throughout the sampleExample:Concentric CylinderFIG.Concentric cylinder viscometer(From p.188 of ref 3)qViscometric Functions&Assumptions(homogeneous)Flow Instability in a Conc
25、entric Cylinder Viscometer for a Newtonian LiquidLaminar Secondary TurbulentOnset of Secondary FlowTurbulentTaylor vorticesTa(or Re)plays the central role!Rod Climbingis not a subtle effect,as demonstrated on thecover by Ph.D.student Sylvana Garcia-Rodrigues from Columbia.Ms.Garcia-Rodrigues is stud
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