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Rheology generally refers to the branch of physics that deals with the deformation and flow of matter, including the non-newtonian flow of liquids as well as the plastic flow of solids. As we know, the non-newtonian fluids often used for various engineering purposes.

This [course_title] is intended to familiarise you with the concept of analysing the behaviour of such fluids. More importantly, this course explains some commonly practised material systems and their rheological behaviour.

Assessment

This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer needs to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.

Certification

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Course Credit: NPTEL

Course Curriculum

Introduction to Rheology 00:06:00
Structured materials yield stress 00:31:00
Normal stresses 1 00:31:00
Normal stresses 2 00:31:00
Strain and convected rate 1 00:32:00
Strain and convected rate 2 00:22:00
Strain and convected rate 3 00:35:00
Strain and convected rate 4 00:35:00
Survey of material functions for polymers 1 00:23:00
Survey of material functions for polymers 2 00:31:00
Survey of material functions for polymers 3 00:30:00
Survey of material functions for polymers 4 00:23:00
Lecture 13 Introduction to tensors 00:30:00
Introduction to tensors 2 00:32:00
Introduction to tensors 3 00:34:00
Survey of material functions for multiphase systems 1 00:31:00
Review of material functions 1 00:34:00
Review of material functions 2 00:16:00
Rotational rheometry 00:29:00
General linear viscoelasticity 00:40:00
Time temperature superposition 00:33:00
Relaxation time spectrum 2 00:16:00
Linear viscoelasticity: solidlike materials 00:34:00
Linear viscoelasticity: generalized Maxwell model 00:36:00
Relaxation time spectrum 1 00:31:00
Governing equations for rheology 1 00:32:00
Governing equations for rheology 2 00:31:00
Lecture 24 Rheometers 2 00:31:00
Rheometers 1 00:29:00
Rheometers 3 00:29:00
Rheometers 4 00:31:00
Rheometers 5 00:36:00
Viscoelasticity – relaxation process 00:27:00
Viscous response 1 00:31:00
Viscous response 2 00:22:00
Viscoelasticity – Maxwell model 00:30:00
Linear viscoelasticity – oscillatory shear 00:33:00
Linear viscoelasticity – oscillatory shear 2 00:31:00
Rheometric flows 00:31:00
Kinematics for simple flows 2 00:31:00
Kinematics for simple flows 00:23:00
Velocity gradient and strain rate 1 Stress and strain rate 3 00:25:00
Velocity gradient and strain rate 1 00:29:00
Stress and strain rate 1 00:27:00
Stress and strain rate 2 00:31:00
LIVE _ Basics of Rheology 00:48:00
Applications of rheology : mechanisms at the molecular and microscopic scales 1 00:29:00
Applications of rheology : mechanisms at the molecular and microscopic scales 2 00:22:00
Applications of rheology : some example material systems 2 00:31:00
Applications of rheology : some example material systems 2 00:31:00
Flow phenomena in complex materials and Microstructure 1 00:25:00
Flow phenomena in complex materials and Microstructure 2 00:23:00
Lecture 51 Yield stress and thixotropic materials 00:34:00
Lecture 52 Normal stresses and stress growth 00:29:00
Lecture 54 Review of material functions 3 00:24:00
Lecture 53 Rheometer demonstration 00:24:00
Lecture 55 Survey of material functions for multiphase macromolecular systems 00:33:00
Lecture 56 Problems during rheometry – example of cone and plate 00:33:00
Lecture 57 Problems during rheometry – example of cone and plate 2 00:37:00
Lecture 58 Strain, convected derivatives, non-linear models 00:20:00
Lecture 59 Strain, convected derivatives, non-linear models 2 00:33:00
Lecture 60 Rheometer demonstration 00:29:00
Lecture 61 Microscopic modeling of rheology 00:31:00
Lecture 62 Microscopic modeling of rheology 2 00:26:00
Assessment
Submit Your Assignment 00:00:00
Certification 00:00:00

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