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      Theory and applications of colloidal suspension rheology

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      https://www.riss.kr/link?id=M15977903

      • 저자
      • 발행사항

        Cambridge, UK ; New York : Cambridge University Press, 2021

      • 발행연도

        2021

      • 작성언어

        영어

      • 주제어
      • DDC

        531.1134 판사항(22)

      • ISBN

        9781108423038 (hardback)
        1108423035 (hardback)
        9781108394826 (epub)
        1108394825 (epub)

      • 자료형태

        단행본(다권본)

      • 발행국(도시)

        England

      • 서명/저자사항

        Theory and applications of colloidal suspension rheology / edited by Norman J. Wagner, Jan Mewis.

      • 형태사항

        xxii, 413 p. : ill., charts ; 23 cm.

      • 총서사항

        Cambridge series in chemical engineering

      • 일반주기명

        Includes bibliographical references and index.

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      목차 (Table of Contents)

      • CONTENTS
      • List of Contributors = xiii
      • Preface = xv
      • General List of Symbols = xviii
      • Useful Physical Constants and Values = xxii
      • CONTENTS
      • List of Contributors = xiii
      • Preface = xv
      • General List of Symbols = xviii
      • Useful Physical Constants and Values = xxii
      • 1 Introduction To Colloidal Suspension Rheology / Norman J. Wagner ; Jan Mewis = 1
      • 1.1 Structure of this Chapter and the Book = 1
      • 1.2 Introduction and Observations = 3
      • 1.3 Colloidal Hard Spheres = 4
      • 1.4 Brownian Hard Sphere Rheology = 10
      • 1.5 Colloidal Interaction Potentials = 21
      • 1.6 Colloidal Phase Behavior beyond Brownian Hard Spheres = 25
      • 1.7 Thixotropy = 28
      • Story 1.1 Ruth N. Weltmann and Early Studies of Thixotropy = 34
      • Appendix : Rheological Definitions = 34
      • Chapter Notation = 38
      • References = 39
      • 2 Theory Of Colloidal Suspension Structure, Dynamics, And Rheology / Gerhard Nagele ; Jan K. G. Dhont ; Thomas Voigtmann = 44
      • 2.1 Introduction = 44
      • 2.2 Low Reynolds Number Hydrodynamics = 47
      • 2.3 Smoluchowski Equation for Particles in Shear Flow = 57
      • 2.4 Langevin Dynamics of Brownian Particles = 61
      • 2.5 Suspension Rheology = 72
      • 2.6 Mode Coupling Theory of Dense Suspension Flow = 95
      • 2.7 Summary and Outlook = 111
      • References = 111
      • 3 Methods Of Colloidal Simulation / Ronald G. Larson = 120
      • 3.1 Introduction = 120
      • 3.2 Continuum Solvent Methods - Unmeshed Solvent = 125
      • 3.3 Continuum Solvent Methods - Meshed Solvent = 132
      • 3.4 Particle Solvent Methods - Unmeshed Solvent = 134
      • 3.5 Particle Solvent Methods - Meshed Solvent = 141
      • 3.6 Summary = 145
      • Chapter Notation = 146
      • References = 147
      • 4 Microstructure Under Flow / Norman J. Wagner = 155
      • 4.1 Introduction = 155
      • 4.2 Structure Factors from Scattering = 156
      • 4.3 Direct Observation Using Microscopy = 165
      • 4.4 Summary and Outlook = 169
      • References = 169
      • 5 Rheology Of Colloidal Glasses And Gels / George Petekidis ; Norman J. Wagner = 173
      • 5.1 Introduction = 173
      • 5.2 Landmark Observations = 175
      • 5.3 Colloidal Glasses due to Interparticle Repulsion = 177
      • 5.4 Colloidal Gels and Attractive Glasses = 190
      • Chapter Notation = 218
      • References = 218
      • 6 Suspensions Of Soft Colloidal Particles / Dimitris Vlassopoulos ; Michel Cloitre = 227
      • 6.1 Introduction = 227
      • 6.2 Landmark Observations = 227
      • 6.3 Classification of Soft Colloids = 233
      • 6.4 Soft Particle Interactions and State Diagrams = 238
      • Story 6.1 The Origins of Soft Particle Rheology = 243
      • 6.5 Linear Viscoelasticity and Diffusion Dynamics = 244
      • 6.6 Flow Properties of Soft Particle Suspensions = 251
      • 6.7 Slow Dynamics = 262
      • 6.8 Mixtures and Osmotic Interactions = 268
      • 6.9 Summary = 274
      • Chapter Notation = 275
      • References = 276
      • 7 Biocolloid Rheology / Surita Bhatia ; Wendy Horn = 291
      • 7.1 Landmark Observations and Example Applications = 291
      • 7.2 Self-assembled Colloids : Block Copolymer Micelles = 294
      • 7.3 Protein Solutions = 302
      • 7.4 Conclusions and Outlook = 307
      • Acknowledgments = 307
      • Chapter Notation = 307
      • References = 308
      • 8 Hemorheology / Antony N. Beris = 316
      • 8.1 Introduction = 316
      • Story 8.1 Early History of the Study of Blood, Blood Flow, and Hemorheology = 317
      • 8.2 Structural Overview - Mesoscopic Micromechanical Effects and Models = 322
      • 8.3 Steady State Shear Blood Rheology Models = 324
      • 8.4 Models for Transient Shear Flow = 329
      • 8.5 Comparison of Model Predictions to Steady Shear and UD-LAOS Experimental Data = 338
      • 8.6 Summary and Outlook = 341
      • Acknowledgments = 342
      • Chapter Notation = 342
      • References = 343
      • 9 Applications = 352
      • 9.1 Introduction / Jan Mewis ; Norman J. Wagner = 352
      • 9.2 Paints / Alex Routh = 353
      • 9.3 Carbon Blacks / Jeffrey Richards = 367
      • 9.4 Bitumen / Asphalt / Norman J. Wagner = 375
      • 9.5 Cement, Mortar, and Concrete / Nicolas Roussel = 380
      • 9.6 Large Scale Processing / Peter Scales = 389
      • Chapter Notation = 397
      • References = 398
      • Index = 407
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      Theory and Applications of Colloidal Suspension Rheology 양장본 Hardcover

      An essential text written by an international coalition of rheologists. Guides formulation and processing, and aids understanding of foundational theory and simulation methods. Covering gels and glasses to industrial slurries and naturally occurring suspensions, this constitutes a modern reference for researchers and practitioners alike.

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