UnitLevel 2Undergraduate

MTE2541 Crystal structures, thermodynamics and phase equilibria

Faculty of Engineering

MTE2541 Crystal structures, thermodynamics and phase equilibria is a level 2, 6-credit-point, undergraduate unit from the Faculty of Engineering, offered in 2020 in Semester 1 at Clayton. It has no prerequisites and unlocks 6 units, leading on to 8 units in all.

Credit points
6
Offered in 2020
Semester 1
Clayton
Workload
144 hours
per semester

This is the 2020 handbook entry. See the 2021 entry.

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Requisites

Overview

This unit will begin by exploring the structure of materials on the atomic scale. The arrangements of atoms within solids will be explored in detail, with a focus on crystalline materials. The topic of crystallography will be formally explored, including crystal structures, lattices, motifs, symmetry elements and the stereographic projection. There will also be an introduction to defects in crystalline materials, including vacancies, interstitials, dislocations and grain boundaries. The second half of the unit will focus on the microstructure of materials, considering how the stability of different phases of materials depends on basic thermodynamic functions. The key parameter of Gibbs Free Energy will lead to the use of phase diagrams to describe systems and these diagrams will then be used to explain and predict the microstructures of binary alloys.

Offerings in 2020

Teaching periodCampusMode
First semesterClaytonOn campus

Learning outcomes

When you finish this unit, you should be able to:

  1. 1

    determine the definitive characteristics of the key classes of materials, recognise common prototype  structures for metallic, ionic and ceramic crystals, and possess an understanding of the factors influencing the development of these structures

  2. 2

    display knowledge of elementary crystallography, including crystal lattices, crystal structures, elements of symmetry and their representation

  3. 3

    understand the geometry and crystallography of common crystal defects, and their effects on material properties

  4. 4

    understand the derivation of binary and ternary alloy phase diagrams from the laws of thermodynamics, based on the concept of Gibbs free energy

  5. 5

    Use a binary phase diagram to quantitatively describe equilibrium states and understand the microstructures to be expected for various binary material systems exhibiting, in particular complete solid solubility, eutectic, eutectoid, and peritectic reactions

  6. 6

    use basic laboratory skills to study the microstructure of materials, be able to work effectively within a team in carrying out laboratory work, be able to keep appropriate laboratory records and develop skills to communicate the results and conclusions of practical work.

Workload and teaching

The minimum total expected workload to achieve the learning outcomes for this unit is 144 hours per semester typically comprising a mixture of scheduled learning activities and independent study. Independent study may include associated readings, assessment and preparation for scheduled activities. A unit requires on average three to five hours of scheduled activities per week. Scheduled activities may include a combination of teacher-directed learning, peer directed learning and online engagement.

Contacts

Chief Examiners
Professor Neil Cameron
Unit Coordinators
Associate Professor Noel Rutter

Common questions

What are the prerequisites for MTE2541?

MTE2541 has no prerequisites, but enrolment rules apply.

What can I take after MTE2541?

MTE2541 is a prerequisite or corequisite for 6 units, including CHE4172, MTE3541, MTE3547, MTE4593, MTE4597 and MTE4598. Those lead on to 8 units in all.

When is MTE2541 offered?

In 2020, MTE2541 runs in Semester 1 at Clayton.

How much work is MTE2541?

The handbook expects about 144 hours of study across the semester. No students have rated its difficulty yet.

More details

Credit points
6
Level
2
Study level
Undergraduate
Faculty
Faculty of Engineering
Organisational unit
Department of Materials Science and Engineering
Type
Coursework
EFTSL
0.125
Student contribution
SCA Band 2
Study abroad
Not available
Handbook years
20202021