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Reliability Centered Maintenance (RCM) and Fault Diagnosis and Dynamic Balancing Techniques for Rotating Equipment – December 21–26, Chengdu. Chapter 1: Reliability Centered Maintenance (RCM). Reliability-centered condition-based maintenance. 1. Evolution of equipment management; 2. The emergence and development of RCM ; 3. Applications of RCM in various industries ; 4. RCM Implementation Process ; 5. Key RCM Technologies ; 6. Construction of RCM management system ; 7. RCM application practice cases. Chapter 2 Basic Knowledge of Vibration and Principles of Vibration Measurement 1. Definition and Measurement of Vibration ; 2. Vibration measurement parameters ; 3. Selection and applications of vibration sensors ; 4. The significance of TSI in vibration 5. The significance and conversions of vibration displacement, velocity, and acceleration ; 6. Three elements of vibration ; 7. Vibration analysis methods ; 8. Various vibration spectra and their applications. Chapter 3 Interpretation of Vibration Standards 1. Domestic and International Vibration Standards ; 2. Basis and role in the establishment of vibration standards ; 3. Scope of application of GB/T6075.2 vibration standards ; 4. Scope of application of GB/T11348.2 vibration standards ; 5. Zones for vibration assessment criteria ; 6. Shaft vibration criteria I and II ; 7. Vibration amplitude during unsteady operating conditions ; 8. Unit vibration alarm values and trip values ; 9. Turbine vibration protection logic ; 10. Issues related to the implementation of vibration standards. Chapter 4 Shaft Unbalance 1. Concept of Unbalance ; 2. Vibration of the rotor system caused by imbalance ; 3. Stress and damage caused by imbalance ; 4. Other issues that appear unbalanced ; 5. Unbalance problem—blade detachment ; 6. Rotating blade detachment detection method ; 7. Characteristics of several typical vibrations. Chapter 5 Rotor Bending 1. Understanding Rotor Bending ; 2. Mechanism of rotor bending ; 3. Dynamic response of a bent rotor ; 4. Thermal bending during shutdown ; 5. Thermal bending during operation ; 6. Diagnosing rotor bending ; 7. Eliminate rotor thermal bending ; 8. Bend failure cases. Chapter 6 Radial Loads and Misalignment – Static Radial Loads ; 2. Misalignment concept ; 3. Vibration mechanism caused by misalignment ; 4. Reasons for misalignment ; 5. Representation of misalignment ; 6. Misalignment cases. Chapter 7 Dynamic and Static Rubbing 1. Introduction to Friction and Loosening ; 2. Local radial friction and full-perimeter friction ; 3. Changes in friction force and spring stiffness ; 4. Meaning of the Newkirk effect ; 5. Reasons for dynamic and static contact ; 6. Characteristics of friction faults ; 7. Other faults with characteristics similar to friction faults ; 8. Prevention and elimination of static and kinetic friction ; 9. Friction failure cases. Chapter 8 Fluid-Induced Instability 1. Instability Modes: Vortices and Oscillations ; 2. Fault characteristics of fluid-induced instability ; 3. Other faults that can produce similar fault characteristics ; 4. Identification of the instability source ; 5. Eliminate fluid-induced instability ; 6. Typical cases of fluid-induced instability. Chapter 9 On-site High-Speed Dynamic Balancing 1. Balancing Methods ; 2. Multimodal and multiplanar balance ; 3. Multi-planar balance through influence vectors ; 4. Selection of lag angle and test load weight ; 5. Rigid rotor balancing cases ; 6. Flexible rotor balancing case study. Chapter 10 Vibration of Auxiliary Equipment 1. Reference Standards for Vibration Limits of Auxiliary Equipment ; 2. Vibration fault diagnosis and cases for fans ; 3. Vibration fault diagnosis of pumps and case studies ; 4. Motor vibration fault diagnosis and cases ; 5. Vibration fault diagnosis of gearboxes and cases ; 6. Vibration fault diagnosis of rolling bearings and cases. Chapter 11: The Importance of TSI and TDM for Equipment Fault Diagnosis 1. The testing principle of TSI and its proper configuration ; 2. How to choose TSI correctly ; 3. TSI fault inquiry and fault diagnosis ; 4. Testing principle of TDM ; 5. How to choose TDM correctly ; 6. TDM fault querying and fault diagnosis ; 7. How to use TDM correctly. Chapter 12: On-site Troubleshooting – Various units describe the faults of their existing equipment, and on-site troubleshooting is carried out.