Phase Diagrams in Materials Science and Engineering

Phase Diagrams in Materials Science and Engineering

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Lecture 54 : Ternary Four Phase Equilibria - I

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54 of 61

Lecture 54 : Ternary Four Phase Equilibria - I

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Phase Diagrams in Materials Science and Engineering

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  1. 1 Lecture 1 : Introduction to the Course
  2. 2 Lecture 2 : Heterogeneous equilibrium and Free energy Formalism
  3. 3 Lecture 3 : Concept of Chemical Potential
  4. 4 Lecture 4 : Phase Rule-I
  5. 5 Lecture 5 : Phase Rule-II and Single Component Equilibria
  6. 6 Lecture 6: Single Component Phase Diagram
  7. 7 Lecture 7 : Binary Phase Diagram -Isomorphous Diagram
  8. 8 Lecture 8 : Binary Isomorphous System
  9. 9 Lecture 9 : Solidification of Isomorphous Alloys
  10. 10 Lecture 10 : Free Energy of Binary Isomorphous Phase Diagram
  11. 11 Lecture 11 : Phase Diagram of Binary Eutectic Systems
  12. 12 Lecture 12 : Solidification of eutectic, hyper-eutectic alloys & their morphologies I
  13. 13 Lecture 13 : Solidification of eutectic, hyper-eutectic alloys & their morphologies II
  14. 14 Lecture 14: Phase diagrams of binary eutectic two terminal solid solution
  15. 15 Lecture 15: Phase diagrams of binary peritectic System-I
  16. 16 Lecture 16: Phase diagrams of binary peritectic System-II
  17. 17 Lecture 17 : Phase diagrams of binary peritectic System with intermediate phases
  18. 18 Lecture 18 : Intermediate Phases
  19. 19 Lecture 19 : Introduction to Monotectic Phase Diagram
  20. 20 Lecture 20 : Microstructural Evolution of Monotectic Phase Diagram
  21. 21 Lecture 21 : Free Energy Composition diagrams for Monotectic systems and Syntactic phase diagram
  22. 22 Lecture 22 : Quasichemical theory-I
  23. 23 Lecture 23 : Quasichemical theory-II
  24. 24 Lecture 24 : Quasichemical theory_Free energy formalism
  25. 25 Lecture 25 : Solid State Reaction
  26. 26 Lecture 26 : Introduction to Iron-Carbon phase diagram
  27. 27 Lecture 27 : Eutectoid Transformation in Iron-Carbon phase diagram
  28. 28 Lecture 28 : Austenite to pearlite transformation in Iron-Carbon phase diagram
  29. 29 Lecture 29 : Hypo-eutectoid steels
  30. 30 Lecture 30 : Pearlite Transformation
  31. 31 Lecture 31 : Martensite Transformation -I
  32. 32 Lecture 32 : Martensite Transformation -II
  33. 33 Lecture 33 : Tempering of Martensite
  34. 34 Lecture 34 : Bainite Transformation
  35. 35 Lecture 35 : TTT curves for Steel
  36. 36 Lecture 36 : Cast Iron - I
  37. 37 Lecture 37 : Cast Iron - II
  38. 38 Lecture 38 : Ductile Iron & Nodular Iron
  39. 39 Lecture 39 : Malleable Iron
  40. 40 Lecture 40 : Alloyed Cast Iron
  41. 41 Lecture 41 : Phase Diagram for different Solid State Reaction
  42. 42 Lecture 42 : Phase Diagram of Ceramic
  43. 43 Lecture 43 : Ternary Phase Diagram-I
  44. 44 Lecture 44 : Ternary Phase Diagram-II
  45. 45 Lecture 45 : Ternary Phase Diagram and Tie Line Construction - I
  46. 46 Lecture 46 : Ternary Phase Diagram and Tie Line Construction - II
  47. 47 Lecture 47 : Ternary Phase Diagram and Tie Line Construction - III
  48. 48 Lecture 48 : Ternary Isomorphous Phase Diagram
  49. 49 Lecture 49 : Ternary Three Phase Equilibria
  50. 50 Lecture 50 : Three Phase Equilibria in Ternary Systems - I
  51. 51 Lecture 51 : Three Phase Equilibria in Ternary Systems - II
  52. 52 Lecture 52 : Solidification Behaviour of Ternary Alloy
  53. 53 Lecture 53 : Three Phase Equilibria
  54. 54 Lecture 54 : Ternary Four Phase Equilibria - I
  55. 55 Lecture 55 : Ternary Four Phase Equilibria - II
  56. 56 Lecture 56 : Solidification Behaviour of ternary eutectic alloys
  57. 57 Lecture 57 : Phase diagram of ternary eutectic with terminal solid solution
  58. 58 Lecture 58 : Ternary peritectic reaction
  59. 59 Lecture 59 : Quasi-peritectic reaction
  60. 60 Lecture 60 : Case Studies on Ternary Phase Diagrams-I
  61. 61 Lecture 61 : Case Studies on Ternary Phase Diagrams-II

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