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Solid Mechanics unit (ENG449)

2027 Unit information is now available. View 2027 unit information

Planned Year of Introduction:  2028

Introduction

This unit provides a comprehensive introduction to the fundamental principles of Solid Mechanics, focusing on the behaviour of materials under various loading conditions, including tension, compression, torsion, and bending. In addition to theoretical concepts such as stress, strain, deformation, and failure criteria, the unit integrates the Finite Element Method (FEM) as a key computational tool for analysing complex structures. Students will gain practical experience with ANSYS software to model, simulate, and interpret real-world engineering problems, allowing them to assess mechanical behaviour, stresses, strains, and deformations in structural components. By the end of the unit, students will be able to apply both analytical and numerical methods to solve solid mechanics problems, perform failure and safety analyses, and use FEM and ANSYS in practical design and optimisation scenarios. Additionally, students will learn how to incorporate solid mechanics principles into their structural designs, ensuring that solutions are sustainable, resilient, and capable of addressing future climate challenges.

Summary

Unit name Solid Mechanics
Unit code ENG449
Credit points 12.5
College/School Sciences and Engineering
School of Engineering
Discipline Engineering
Coordinator Doctor Gholamreza Kefayati
Delivered By University of Tasmania
Level Honours

Sustainable Development Goals

The Unit Coordinator has identified that this unit aligns with the following UN Sustainable Development Goals. We welcome your thoughts and feedback on the alignment of the unit with these goals.

Learning Outcomes

  • Describe the fundamental concepts of stress, strain, and material behaviour under various loading conditions in solid mechanics
  • Analyse structural components using the principles of solid mechanics to determine internal forces, stresses, and deflections
  • Apply the Finite Element Method (FEM) and ANSYS software to model, simulate, and analyse mechanical structures under various loading conditions

Fee Information

Field of Education Commencing Student Contribution 1,3 Grandfathered Student Contribution 1,3 Approved Pathway Course Student Contribution 2,3 Domestic Full Fee 4
not applicable

1 Please refer to more information on student contribution amounts.
2 Please refer to more information on eligibility and Approved Pathway courses.
3 Please refer to more information on eligibility for HECS-HELP.
4 Please refer to more information on eligibility for FEE-HELP.

If you have any questions in relation to the fees, please contact UniConnect or more information is available on StudyAssist.

Please note: international students should refer to What is an indicative Fee? to get an indicative course cost.

Requisites

Prerequisites

ENG329 Mechanical Design

Teaching

Teaching Pattern

Three 2 hours workshop per week

AssessmentFinite Element Method (FEM) Assignment 1 (20%)|Finite Element Method (FEM) Assignment 2 (30%)|Project (50%)
TimetableView the lecture timetable | View the full unit timetable

Textbooks

Required

Required readings will be listed in the unit outline prior to the start of classes.

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