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Mod-01 Lec-01 Introduction |
Mechanical Engineering |
50 min |
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Mod-01 Lec-02 A Brief History of Rotor Dynamics |
Mechanical Engineering |
52 min |
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Mod-01 Lec-03 The State of the Art of Rotor Dynamics |
Mechanical Engineering |
54 min |
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Mod-02 Lec-01 Simple Rotor Models with Rigid Bearings |
Mechanical Engineering |
49 min |
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Mod-02 Lec-02 Jeffcott Rotor Model |
Mechanical Engineering |
47 min |
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Mod-02 Lec-03 Variant of Jeffcott Rotor Model |
Mechanical Engineering |
51 min |
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Mod-03 Lec-01 Rigid Rotor Mounted on Simple Anistropic Springs as Bearings |
Mechanical Engineering |
52 min |
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Mod-03 Lec-02 Rigid Rotor Mounted on Complex Anisotropic Bearings |
Mechanical Engineering |
50 min |
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Mod-03 Lec-03 Flexible Shaft with a Rigid Disc Mounted on Anistropic Supports |
Mechanical Engineering |
55 min |
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Mod-04 Lec-01 Gyroscopic Effects : Synchronous whirl of a Rotor Systems with a thin Disc |
Mechanical Engineering |
51 min |
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Mod-04 Lec-02 Gyroscopic Effects : Synchronous and Asynchronous pure wobbling motions |
Mechanical Engineering |
46 min |
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Mod-04 Lec-03 Gyroscopic Effects : Asynchronous whirl of a Rotor system with a thin Disc |
Mechanical Engineering |
57 min |
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Mod-04 Lec-04 Gyroscopic Effects : Asynchronous whirl analysis with Dynamic Approach |
Mechanical Engineering |
49 min |
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Mod-05 Lec-01 Torsional Vibrations: Simple Rotor Systems |
Mechanical Engineering |
51 min |
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Mod-05 Lec-02 Three Disc Rotor System |
Mechanical Engineering |
47 min |
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Mod-05 Lec-03 Transfer Matrix Approach I |
Mechanical Engineering |
51 min |
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Mod-05 Lec-04 Transfer Matrix Approach II |
Mechanical Engineering |
44 min |
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Mod-05 Lec-05 Transfer Matrix Approach III |
Mechanical Engineering |
52 min |
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Mod-05 Lec-06 Geared and Branched Systems |
Mechanical Engineering |
52 min |
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Mod-05 Lec-07 Continuous System and Finite Element Method |
Mechanical Engineering |
51 min |
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Mod-05 Lec-08 Finite Element Method |
Mechanical Engineering |
99 min |
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Mod-05 Lec-09 Finite Element Analysis |
Mechanical Engineering |
52 min |
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Mod-05 Lec-10 Finite Element Analysis III |
Mechanical Engineering |
53 min |
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Mod-06 Lec-01 Influence Coefficient Method |
Mechanical Engineering |
50 min |
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Mod-06 Lec-02 Transfer Matrix Method I |
Mechanical Engineering |
50 min |
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Mod-06 Lec-03 Transfer Matrix Method II |
Mechanical Engineering |
49 min |
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Mod-06 Lec-04 Transfer Matrix Method III |
Mechanical Engineering |
56 min |
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Mod-06 Lec-05 Continuous System Approach |
Mechanical Engineering |
50 min |
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Mod-06 Lec-06 Finite Element Method I |
Mechanical Engineering |
52 min |
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Mod-06 Lec-07 Finite Element Method II |
Mechanical Engineering |
52 min |
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Mod-06 Lec-08 Finite Element Method III |
Mechanical Engineering |
54 min |
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Mod-07 Lec-01 Instability in Rotor Systems: Bearings |
Mechanical Engineering |
72 min |
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Mod-07 Lec-02 Fluid-Film Bearings |
Mechanical Engineering |
47 min |
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Mod-07 Lec-03 Internal Damping & Asymmetrical Shaft |
Mechanical Engineering |
51 min |
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Mod-07 Lec-04 Steam Whirl and Seals |
Mechanical Engineering |
50 min |
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Mod-07 Lec-05 Subcritical Speed Whirl |
Mechanical Engineering |
51 min |
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Mod-08 Lec-01 Introduction to Rigid Rotor Balancing |
Mechanical Engineering |
49 min |
Click to view videos |
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Mod-08 Lec-02 Dynamic Balancing of Rotors: Rigid Rotor Balancing |
Mechanical Engineering |
49 min |
Click to view videos |
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Mod-08 Lec-03 Dynamic Balancing of Rotors:Flexible Rotor Model Balancing |
Mechanical Engineering |
51 min |
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Mod-08 Lec-04 Dynamic Balancing of Rotors:Influence Coefficient Method for Flexible Rotor |
Mechanical Engineering |
56 min |
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Mod-09 Lec-01 Common Faults & Vibration signatures |
Mechanical Engineering |
49 min |
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Mod-09 Lec-02 Condition Based Monitiring |
Mechanical Engineering |
45 min |
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