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Master of Engineering in Structural Integrity

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UniKL University Malaysia

Master of Engineering in Structural Integrity

university icon
UniKL University Malaysia

Master of Engineering in Structural Integrity

Qualification
Master's Degree
Duration
1.5 years
Intake
JanJanJulJulSepSep
English Requirement
IELTS 5.0
Offer Letter
Free
Class Type
Physical
Course Fee for International Students
Yearly Tuition fees
Year Fee
1st YearMYR 19,200
2nd YearMYR 9,600
Other Fees
Description Fee
Approx. Visa FeeMYR 2,200
Avg. Security Bond FeeMYR 1,500
Caution DepositMYR 1,000
International Student FeeMYR 1,510
Registration Fee (Per Semester)MYR 680

Would you like to apply to
UniKL University Malaysia ?

The Master of Engineering in Structural Integrity program offers a specialized pathway for both engineering graduates and professionals to deepen their expertise in ensuring structural integrity across industries. Through a comprehensive curriculum covering foundational and advanced theories, students gain practical skills in materials testing, structural analysis, inspection, NDT techniques, and fitness-for-service assessment. Emphasizing hands-on learning and incorporating IoT technology, graduates emerge as industry-ready professionals equipped to address real-world challenges and contribute to fail-safe design, corrosion control, structural health monitoring, and asset integrity management in the context of Industry 4.0.

Entry Requirement

A Bachelor's Degree in Engineering or Bachelor's Degree from University Kuala Lumpur with a minimum CGPA of 2.50

 

For other qualifications and certificates (e.g., UEC, Foundation, STAM, etc..) please contact our educational consultants or submit your application for Admission assessment

Future Careers 

structural engineering, aerospace, automotive, and manufacturing, where they can apply their expertise in materials testing, structural analysis, and inspection to ensure safety and reliability. With specialized knowledge in fail-safe design, corrosion control, and asset integrity management, they are also well-suited for roles in maintenance and structural health monitoring, while their proficiency in IoT technologies positions them for careers in digital transformation and innovation-driven projects.

 
 

Semester 1

  • Advanced Materials and Metallurgy
  • Fracture Mechanics
  • NDT Inspections
  • Structural Health Monitoring
  • Failure Assessment Procedures

Semester 2

  • Engineering Research Methodology
  • Assets Integrity Management
  • Reliability Engineering
  • Elective 1
  • Elective 2

Semester 3

  • Research Project

Electives

  • Numerical Modelling of Solids and Structures
  • Condition Based Maintenance
  • Advanced Ultrasonic Testing
  • Advanced Radiographic Testing
  • Advanced Methods in Structural Reliability
  • Advanced Electromagnetic Testing
  • Underwater Welding Engineering
  • Ship Structural Design
  • Ship Structural Survey
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