Professional Certificate of Competency in Mechanical Engineering

Integrated Masters with deeper specialization and research focus
Taught in English
Duration 3 Months
Mode Online
Level Undergraduate
Degree Undergraduate Certificate
Closing soon January 2027

Course Overview

The Professional Certificate of Competency in Mechanical Engineering from the Engineering Institute of Technology is designed for engineers and technicians seeking to solidify their understanding of core mechanical engineering principles. This online, part-time certificate equips you with essential knowledge in areas like force, work, power, moments, torques, and the fundamental principles of design manufacturing. You will explore critical topics including engineering materials, mechanical design, gears, bearings, and fluid engineering, gaining a comprehensive overview of the discipline's practical applications. This programme is ideal for professionals aiming to enhance their technical capabilities and broaden their expertise in mechanical systems.

You will study this online certificate part-time over 3 months, engaging with 12 comprehensive modules that delve into the practical aspects of mechanical engineering. The curriculum covers vital subjects such as heat transfer mechanisms, mechanical drives, prime movers, and mechanical vibrations, alongside manufacturing processes and maintenance strategies. You will also gain an understanding of mechanical engineering codes and standards, including ISO 9000/1 and Six Sigma. Upon successful completion, you will graduate with a Professional Certificate of Competency, enhancing your professional profile and readiness for advanced roles in the mechanical engineering field.

Course Curriculum & Details

Detailed information for serious evaluators

Program Overview

This Professional Certificate of Competency in Mechanical Engineering covers fundamental principles and advanced applications within the field. The curriculum explores engineering materials, mechanical design, gears, bearings, and various mechanical drives. It also delves into prime movers, fluid engineering, heat transfer theory, and mechanical vibrations. Finally, the program addresses manufacturing systems, maintenance strategies, and essential mechanical engineering codes and standards.

1 Module 1: Mechanical Engineering Basics

Introduction and basic concepts
Units for engineering quantities
Interpretation of mechanical drawings
Friction – importance in mechanical systems, types, static and dynamic friction coefficients

2 Module 2: Engineering Materials

Stress-strain relationship
Properties of engineering materials: strength, hardness, ductility, and toughness
Thermal processing of metals and how it affects their properties
Ferrous and non-ferrous alloys
The common failure of modes of materials: Fracture, fatigue, creep and corrosion

3 Module 3: Mechanical Design

Basic principles
Factor of safety
Static equilibrium
Design for static strength
Threaded fasteners
Keys and keyways
Riveted joints
Design for fatigue strength

4 Module 4: Gears and Bearings

Gears: Terminologies, types, ratios, and gear trains
Gear selection and gearboxes
Troubleshooting gear problems
Bearings: Loads, types, selection and troubleshooting
Installation guidelines

5 Module 5: Mechanical Drives

Belt and chain drives
Mechanical couplings
Hydrostatic drives
Hydrodynamic drives
Torque converters and fluid couplings
Clutches: Types, performance, and selection
Brakes: Types, performance, and selection

6 Module 6: Prime Movers

What is a prime mover?
Internal combustion engines
Electric motors
Hydraulic and air motors
Gas turbines
Mechanical variable speed drives
Hydraulic and pneumatic cylinders
Comparative merits/demerits of different prime movers
Primer mover selection criteria, applications

7 Module 7: Fluid Engineering

Concepts: Viscous flow and Reynolds number
Piping, selection, and sizing
Pumps and valves: Types and applications
Fluid engineering symbols and diagrams
Analysis of piping systems
Seals, fittings, flanges gaskets and O-rings
Mechanical seals: Types, selection, and maintenance

8 Module 8: Theory of Heat Transfer

Laws of thermodynamics
Thermal cycles
Heat exchangers: Types, maintenance, and troubleshooting
Heat pumps
Air conditioning
Heat: Conduction, convection, and radiation

9 Module 9: Mechanical Vibrations

Single degree of freedom system
Terminologies: Amplitude, phase, and frequency
The natural frequency of vibration
Multiple degrees of freedom system
Vibration measurement: sensors, analyzers, and interpretation
Use of vibration as a condition monitoring tool
Troubleshooting and correcting unwanted Vibrations

10 Module 10: Manufacturing and Production Systems

Metal production – foundry process
Cast making and metal melting
Die and precision casting
Heat treatment (hardening and softening)
Hot and cold working of metal
Presses
Numerical control
Machining and metal cutting
Broaching, shaping and sawing
Basics of welding and types of welded joints
Brazing
CAD/CAM
Rapid prototyping

11 Module 11: Maintenance

Objectives, reliability, and availability
Breakdown, preventive and predictive maintenance
Standard practices and tools
Lubrication
Factors influencing equipment downtime
Hazardous failures
Condition monitoring methods
Non-destructive testing and inspections
Planning and inspection schedules

12 Module 12: Mechanical Engineering Codes and Standards

Need for standardization
Mechanical engineering standards
Overview of standards
Benefits of standardization
ISO 9000/1
Six-sigma

Cost & Affordability

A clear picture of what this course will cost you

Program Costs

First Year Fee Tuition fee
USD 979.00
Total Program Cost Estimated total tuition
USD 979.00

Currency note: Program costs shown in USD based on the available tuition breakdown.

Living Costs

Accommodation
USD 641.00 - USD 1,522.00
Food & Groceries USD 6,400.00 - USD 8,000.00
Transport USD 1,061.00 - USD 1,350.00
Utilities & Bills USD 1,206.00 - USD 1,359.00
Estimated Total USD 8,667.00 - USD 9,109.00

Living cost estimates are based on Melbourne Campus.

Outcomes & Employability

What happens after you graduate

79%
Graduate Employment Rate Within 6 to 12 months of graduation

Common Graduate Roles

CybersecurityDevOps & Site Reliability EngineeringEnergy Equipment & ServicesEnvironmental & Sustainability ServicesEnvironmental & Sustainable ConstructionMetallurgy & Mineral ProcessingMining Engineering & OperationsRegulatory & Government AffairsRoad Transport & LogisticsSurface & Underground Mining

Top Employers Hiring for this course

Acwa Operations

Australian Energy Market Operator (AEMO)

BHP

Botswana Power Corporation

Cementation Africa

Chevron

Debswana Diamond Company

Energy Queensland

Why Study Professional Certificate of Competency in Mechanical Engineering at Engineering Institute of Technology

What makes this program stand out

January 2027 Closing soon

Next intake is in January 2027

Life at Engineering Institute of Technology in Australia

What daily life looks like for international students

Language

English

Primary language everywhere

Climate

Mild & Rainy

10-20°C average, pack layers

Safety (Numbeo Safety Index)

Very Safe

Exeter is one of UK's safest cities

Frequently Asked Questions

Common questions about Professional Certificate of Competency in Mechanical Engineering at Engineering Institute of Technology

Can I work while studying?

International students can work up to 48 hours per fortnight during term time and unlimited hours during breaks. No separate work permit is required for this.

What English language score do I need for this course?

To enroll, you must meet the English proficiency requirements, including an overall IELTS score of 5.5 and a minimum of 5.0 in listening, reading, speaking, and writing. This ensures you can fully engage with the course material.

What jobs can I get after studying this course?

Job titles in this field include Mechanical Engineer, Design Engineer, Manufacturing Engineer, and Maintenance Engineer.

What will I actually study in this course?

This professional development course is designed for engineers and technicians who need to understand the essentials of mechanical engineering.

Course Benefits

  • Receive a Certificate of Completion from EIT.
  • Learn from well-known faculty and industry experts from around the globe.
  • Flexibility of attending anytime from anywhere, even when you are working full-time.
  • Interact with industry experts during the webinars and get

When can I start — what are the intake months?

The course has intake months in January and August. You can apply for admission during these times to start your learning journey.
ℹ️️
ℹ️️
ℹ️️
 
Account
  • New student?

Search for universities & courses

ℹ️️
ℹ️️
ℹ️️
ℹ️️