Applied Stress Analysis and Computational Methods

Unit code: NEM2003 | Study level: Undergraduate
12
(Generally, 1 credit = 10 hours of classes and independent study.)
Footscray Park
NEC2001 - Mechanics of Materials; or
NEC2102 - Solid Mechanics
NEM2101 - Mechanical Engineering Design; or
NEM2002 - Mechanical Engineering Design and Optimisation
(Or equivalent to be determined by unit coordinator)
(Corequisite units must be studied concurrently with this unit)
Overview
Enquire

Overview

This unit develops your capability to analyse and model how materials and mechanical components behave under complex loading conditions. You will apply advanced stress analysis and finite element methods (FEM) to evaluate performance, validate results, and enhance the reliability of mechanical designs.

Through simulation-based problem solving, you will strengthen your ability to question assumptions, connect theory with practice, and approach challenges from multiple perspectives. Emphasis is placed on effective finite element modelling, encouraging design choices that prioritise safety, efficiency, and long-term impact. Collaborative projects foster professional judgement and communication skills, preparing you to make evidence-based decisions that support innovation and integrity in mechanical engineering.

Learning Outcomes

On successful completion of this unit, students will be able to:

  1. Analyse stress, strain and deformation under complex loading using analytical methods and numerical computation techniques;
  2. Develop and validate finite element models to predict component response, ensuring appropriate material selection and boundary conditions;
  3. Evaluate simulation results to assess reliability, optimise performance, and inform design improvement; and
  4. Collaborate on research-informed finite element investigations to develop innovative, evidence-based engineering recommendations.

Assessment

For Melbourne campuses

Assessment type: Exercise
|
Grade: 20%
Application of advanced stress analysis principles to solve a practical FEM problem (Individual) (30 mins)
Assessment type: Portfolio
|
Grade: 30%
Structured portfolio of analytical stress analysis and FEM problem-solving tasks with progressive skill development and reflection (Individual) (1500 words)
Assessment type: Project
|
Grade: 50%
FEM optimisation project including problem definition, model development, design refinement, report (Group) (3000 words) and individual Viva (5mins)

Required reading

Required readings will be made available on VU Collaborate.

As part of a course

This unit is studied as part of the following course(s):

Search for units, majors & minors