Advanced Machinery Dynamics and Balancing
Course Description
Modern industrial machinery operates under high speeds, variable loads, and strict reliability requirements. Advanced understanding of machinery dynamics and proper balancing techniques is essential to minimize vibration, prevent mechanical failures, and extend equipment life. This 5-day advanced course provides in-depth knowledge of machinery dynamic behavior, rotor dynamics, resonance phenomena, and professional balancing techniques, with a strong focus on practical industrial applications.
The Training Course Will Highlight ?
  • Comprehensive 5-day professional program
  • Advanced rotor dynamics and resonance analysis
  • Practical vibration interpretation
  • Field balancing methodologies
  • Real industrial case studies
  • Reliability-centered maintenance focus
Training Objective

  • Analyze machinery dynamic behavior and vibration response
  • Evaluate rotor dynamics and critical speeds
  • Identify types of machinery imbalance
  • Apply advanced balancing techniques
  • Interpret vibration and phase data
  • Perform effective field balancing
  • Improve machinery reliability and lifespan

Target Audience

  • Mechanical and Maintenance Engineers
  • Rotating Equipment Engineers
  • Reliability Engineers
  • Vibration Analysts and Technicians
  • Maintenance Supervisors

Training Methods

Daily Agenda

Day 1: Machinery Dynamics Fundamentals

  • Vibration fundamentals
  • Degrees of freedom
  • Mass, stiffness, and damping
  • Free and forced vibration
  • Natural frequencies and mode shapes

 

Day 2: Dynamic Behavior of Rotating Machinery

  • Unbalance forces
  • Shaft dynamics
  • Gyroscopic effects
  • Resonance and critical speeds

 

Day 3: Rotor Dynamics and Imbalance

  • Rigid flexible rotors
  • Bearing and support effects
  • Types of imbalance
  • ISO balancing grades

 

Day 4: Balancing Theory and Field Techniques

  • Single-plane and two-plane balancing
  • Influence coefficient method
  • Trial weights and correction
  • Safety and instrumentation

 

Day 5: Vibration-Based Balancing & Case Studies

  • Frequency and phase analysis
  • Fault differentiation
  • Industrial case studies
  • Best practices and review
Accreditation

CDGA attendance certificate will be issued to all attendees completing minimum of 75% of the total course duration.

Quick Enquiry

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Course Rounds : (5 -Days)


Code Date Venue Fees Register
ME186-01 04-05-2026 Dubai USD 5450
ME186-02 17-08-2026 Dubai USD 5450
ME186-03 23-11-2026 Istanbul USD 5950
Prices doesn't include VAT

UpComing Date


Details
  • Start date 04-05-2026
  • End date 08-05-2026

Venue
  • Country UAE
  • Venue Dubai

Quality Policy

 Providing services with a high quality that are satisfying the requirements
 Appling the specifications and legalizations to ensure the quality of service.
 Best utilization of resources for continually improving the business activities.

Technical Team

CDGA keen to selects highly technical instructors based on professional field experience

Strengths and capabilities

Since CDGA was established, it considered a training partner for world class oil & gas institution

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Ireland, Ireland

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