★ Approved by the CCE Committee, IISc Bengaluru ★ Est. 1975
CCE Home CCE-PROFICIENCE COURSES Structural Analysis and Design Optimization: Theory and Practice
CCE-PROFICIENCE COURSES · JAN – MAY 2026

Online Course on

Structural Analysis and Design Optimization: Theory and Practice

2:0 CREDITS ·JAN – MAY 2026

A structured online programme from IISc introducing the fundamentals of structural analysis and design optimization used in engineering applications. It covers key concepts such as stress, strain, fatigue, and failure analysis, along with optimization techniques for designing efficient and reliable structures. The course also highlights the use of computational tools and case studies to analyse and improve structural performance.

Online IISc Grading Certificate Sat · 12–2 PM Prof. S. B. Kandagal, IISc
2:0
CREDITS
₹12,154
TOTAL FEE
Jan – May 2026
DURATION
Online
MODE
COURSE DETAILS
Structural Analysis and Design Optimization: Theory and Practice
(Jan – May 2026)
Start Date24 Jan 2026
DurationJan – May 2026
ModeOnline
TimingsSat 12–2 PM
Credits2:0
Applications are now closed Download Brochure

Course at a Glance

Online
💻
SYNCHRONOUS CLASSES
24 Jan 2026
📅
Class Start Date
Sat
🕐
12:00 PM – 2:00 PM
Certificate
🎓
Credits

Know the Course Instructor

Prof. S. B. Kandagal

Prof. S. B. Kandagal

CHIEF RESEARCH SCIENTIST

He is a Principal Research Scientist in the Structures & Materials group of the Department of Aerospace Engineering, Indian Institute of Science (IISc), Bangalore. He obtained his B.E. and M.Tech. degrees from NITK, Surathkal, and completed his Ph.D. from IISc, Bangalore. With more than two decades of experience in academic research and advanced experimentation, his expertise lies in structural mechanics, structural dynamics, vibration and noise control, smart structures, experimental modal analysis, structural optimization, and piezoelectric-based energy harvesting. He has made significant contributions to the analysis and control of vibrations in aerospace structures, including the integration of smart materials such as piezoelectric sensors and actuators for sensing, control, and energy harvesting applications. Prof. Kandagal has published several research papers in reputed journals and conferences, actively collaborates on sponsored research projects, and has mentored postgraduate and doctoral researchers at IISc. His work bridges theoretical modeling, experimental validation, and practical aerospace applications, making him a key contributor to research and education in structural and materials engineering at IISc.

structures & Materials, AE, IISc Bengaluru

Objectives of the Course

Advanced research in material science to enhance the life of structures with reduced cost resulted in metal alloys, plastics, composites and nano materials.

Structural design and optimization of components with unusual shapes became possible with FEM software tools such as ANSYS, COMSOL, NASTRON, ABACUS, SYSNOISE, LSDYNA and MATLAB etc.

The fundamental knowledge of stress, strain, shear and torsion in relation to the structures and S-N curves in relation to material fatigue life and failure analysis becomes important.

The interpretation of the FEM software results necessitates for the knowledge of structural system analysis and design optimization.

Training engineers, scientists, entrepreneurs and instructors in industries, institutes and universities to optimally design structural systems for technically superior and commercially viable value-added products to achieve “EMPOWER INDIA WITH SKILL AND Knowledge” for “AATMANIRBHARA BHARAT ABHIYAN”.

Course Syllabus

01

Applied mechanics, Strength of materials, SFD, BMD, AFD, solid mechanics, concept of stress, strain and fatigue. Constitutive laws, Mohr’s Circle, Engineering materials and their properties.

02

Structural analysis concepts for tension, compression, shear, torsion, coupled systems, and S-N curves.

03

Design of beams, torsion, compression members and fasteners (Pins, bolts, rivets and weld). Stability and failure theories for structures.

04

Composite materials and their importance and importance in structural analysis design optimization. Design methods with practical structures and examples.

05

Procedures for product design, development and testing for static and dynalysis (crash, shock and vibration) loading of structures.

06

Thermal aspects and thermal management for power electronics

07

Design principles for scaled rigid and Aeroelastic models.

08

Design principles for scaled rigid and Aeroelastic models.

09

Practical case studies discussion. Design optimization of brake drum, DWR/Tracking ground and ship borne Antenna (Indian Patent), Sluice valve, Cup anemometer, Hydraulic crawler drilling machine, Car window regulator, Metal-composite sprocket, Super insulated thermal box, Impeller, Box culverts (US Patent).

10

Failure analysis of Turbine blades, power plant bed plate, Piston drill bit, raiser arm and induction ladle.n

11

Field audit, impact/collision analysis, stability studies, and design optimization of various engineering systems including chimneys, vehicles, aircraft models, AVMs, and UAV/MAV/drone CG estimation rigs.

Who Can Apply & Who Can Benefit?

Who Can Apply?

  • BE, ME, MSc, AMIE, or equivalent
  • Students and Working Professionals

Who Can Benefit?

  • Mechanical, Civil, Aerospace, Automotive, and Industrial engineers
  • R & D Labs and Construction technologists
  • New product design and development groups
  • Entrepreneurs and Engineering college instructors
  • Professionals planning to pursue postgraduate and higher studies

Course Fee

Fee Breakup
Jan – May 2026
Course Fee ₹10,000
Application Fee ₹300
GST @ 18% ₹1,854
Total (incl. GST) ₹12,154

Class Schedule

DATE
24 Jan 2026
CLASS START DATE
DAYS
Sat
DAYS OF CLASS
TIME
12–2 PM
CLASS TIMINGS
MODE
Online
MODE OF INSTRUCTION
DUR
Jan – May 2026
COURSE DURATION

Reference Books

1
“Vector Mechanics for Engineers- Statics and Dynamics”, Tata-McGraw hill, 12th Edison, 2019
Beer F P and Johnson, E.R
2
“Mechanical engineering design”, Tata-McGraw hill, 10th Edison, 2015
Shigley, J.E and Mischke, C.R.
3
“Optimization methods in Structural Design”, Wiley, John & Sons, 2017
Rothwell

Semester Runs

Jan-May 2026
– 01 Jun 2026
72 Enrolled
39 Certified
Completed
🏆 Course Toppers — Jan-May 2026
2 Certified 2 Toppers
🥇
1
N
NAGULA JAGRUTH RAJ
Student
A+
🥈
2
A
AJITH A
Student
A+

Ready to Enroll?

Apply online at iisc.online · New batches every semester

Applications are now closed Download Brochure