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INCREASE BEARING FATIGUE LIFE PROVE BY HAND CALCULATION

"Master Bearing Design, Load Calculations & Fatigue Life ."

$220

$1,000

Total Fees INR 110000

Instructor: DeepJyoti-Product-DesignLanguage: English

About the course

INCREASE BEARING FATIGUE LIFE — PROVE BY HAND CALCULATION

Practical Bearing Design, Load Calculation & Fatigue Life Analysis for Mechanical & Design Engineers

Are you simply selecting bearings from a catalogue — or do you want to understand the engineering physics behind bearing loading, failure and fatigue life?

This course is designed for engineers who want to go beyond catalogue selection and software outputs and develop a deeper understanding of Bearing Design through Engineering Formulas, Physics and Hand Calculations.

The course follows a practical engineering methodology:

Engineering Physics → Formula → Hand Calculation → Bearing Selection → Life Validation

🔧 WHAT YOU WILL LEARN

1. Bearing Forces from Spur & Helical Gears

Calculate axial and radial forces acting on bearings due to spur and helical gears and understand how these forces influence bearing loading.

2. Temperature vs. Bearing Fatigue Life

Understand how operating temperature affects bearing performance and fatigue life through engineering calculations.

3. Thermal Expansion of Shafts

Calculate shaft thermal expansion and understand how thermal growth affects bearing loading and the overall bearing arrangement.

4. Shaft Rigidity & Hanging Gear/Pulley Loads

Analyse shaft rigidity and understand how overhung gears, pulleys and external forces can influence bearing loads and shaft behaviour.

5. O, X & Tandem Bearing Arrangements

Understand different angular-contact bearing arrangements and perform bearing load calculations to determine their practical application.

6. Locating & Non-Locating Bearings

Learn how to establish proper locating and non-locating bearing arrangements while considering thermal expansion and operating conditions.

7. Lubrication & Bearing Life

Understand how lubrication affects bearing life using engineering physics and calculation-based methods, rather than treating lubrication as simply a catalogue recommendation.

8. Lubricating Oils & Greases

Study important technical parameters, datasheets and engineering properties of bearing oils and greases and understand their relevance to bearing life.

9. Bush Bearings & Metallurgy

Understand when and why to use bush bearings and investigate the selection through metallurgy, material properties and engineering calculations.

10. Common Bearing Design Mistakes

Identify common mistakes in bearing selection, loading, arrangements, thermal expansion, lubrication and practical machine design.

🎯 WHO SHOULD ATTEND?

This course is designed for:

  • Mechanical Design Engineers
  • Machine Design Engineers
  • Product Design Engineers
  • Mechanical Engineers
  • Equipment Design Engineers
  • FEA & Simulation Engineers
  • R&D Engineers
  • Engineers involved in rotating machinery
  • Engineers who want to strengthen their fundamental bearing design knowledge

📐 THE ENGINEERING APPROACH

This course emphasizes understanding before software.

Instead of simply asking:

“Which bearing should I select?”

Learn to ask:

What loads are acting on the bearing?
Why are those loads generated?
How does shaft expansion affect the bearing?
How does lubrication influence life?
Why does one bearing arrangement work better than another?
How can the calculated bearing life be validated?

Engineering Formula → Hand Calculation → Bearing Selection → Life Validation

🚀 COURSE OBJECTIVE

Don't just select a bearing. Understand the physics behind its life. Calculate it. Prove it. Design it.

The objective is to build the engineering thinking required to make better bearing-design decisions — with real calculations, practical design logic and engineering fundamentals.

Better Calculations → Longer Life → Higher Reliability

ENROLL NOW - Bearing Design & Fatigue Life Training by DeepJyoti Product Design

Syllabus

Meet Deepjyoti Product Design

Empowering Mechanical Design Engineers Worldwide through Creative Training Programs focused on: Application of Core Physics Formulas in Product Design, Reverse Engineering. FEA Simulation Analysis, Failure Analysis, and Testing Design techniques.

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