SlideShare a Scribd company logo
1 of 22
Metal Alloys.
1. Alloying a metal is done by combining it with one or
more other metals or non-metals that often improve its
properties.
2. The term alloy is used to describe a mixture of atoms in
which the primary constituent is a metal.
3. The primary metal is called the base.
Reasons for Alloying.
• To improve its properties such as Toughness. Example: Iron
is relatively soft, Carbon is brittle but Steel is very tough.
• To reduce the melting point. Example: Lead melts at 327 °c,
Tin melts at 232 °c but Solder melts at approx. 183 °c.
• To prevent rusting. Example: Stainless steel is produced by
alloying iron with chromium and carbon.
The chromium forms an impenetrable oxide layer that
adheres strongly to the iron surface preventing the formation
of rust.
Aluminium Alloys.
However, pure aluminium is soft and lacks
strength, but alloyed with small amounts of
copper, magnesium, silicon, manganese, and
other elements gives it very useful properties.
Aluminium is very abundant and is used
in pure form for a lot of different things,
like kitchen foil, mirrors, coins and
industrial components.
Substitutional Alloys are
where the metals combining
have atoms of the same size.
Brass is an example.
Interstitial Alloys are where
one of the alloying elements
combining has atoms of
smaller size. Steel is an
example. Carbon atoms are
much smaller and fit into the
gaps in the Iron atoms.
Classification of Alloys.
Substitutional
Alloy.
Interstitial
Alloy.
Solid Solution Alloys.
Solid Solution Alloys:
When metals combine they sometimes become completely soluble in each other.
Metals which combine in this way are said to form solid solutions. When this type of
alloy solidifies, only one type of crystal is formed. Under a microscope the crystalline
structure of a solid solution alloy looks very like a pure metal. Solid solution alloys
have similar properties to pure metals but have greater strength. They also have
poorer electrical/thermal conductivity, greater hardness but not as elastic as pure
metals.
How are Metal Alloys made.
Lead Tin
+ =
Solder
The metals forming the alloy are melted in a furnace in a crucible. They are then
poured into blocks called ingots and allowed to solidify. When a molten metal is
mixed with another molten metal and allowed to solidify an alloy is formed. The
new solid metal will have gone through ‘Phase’ changes to become an alloy.
Metallic Phases.
Heat
More
Heat
CoolingMore
Cooling
What is Thermal Equilibrium.
Left click with the mouse on the link above to play the
video.
https://www.youtube.com/watch?v=vcgYQ-u7qfc
What are Thermal Equilibrium Diagrams.
Thermal equilibrium diagrams are special diagrams which contain information
about changes that take place in alloys. The temperature at which a particular
alloy changes from liquid to solid is an example of the type of thermal information
contained in a thermal equilibrium diagram.
Cooling Curve of a Pure Metal.
Cooling Curve of a Solid Solution (An Alloy).
Set of Cooling Curves for various
Solid Solutions.
Developing a Thermal Equilibrium Diagram.
How a Thermal Equilibrium Diagram is Constructed.
Label the Thermal Equilibrium Diagram below.
• Solidus Line – All points below this line are in solid
form.
• Liquidus Line – All points above this line are in
liquid form.
• Pasty Region - Between the solidus and liquidus
lines, all points are in a mixture of liquid and solid
(pasty) form.
• Liquid Region – The alloy is completely liquid in
this region.
• Solid Region – The alloy is completely solid in this
region.
Parts of the Thermal Equilibrium Diagram.
Effects of Alloying Elements on Steel Properties:
Carbon: Raising carbon content increases hardness slightly and wear resistance
considerably.
Manganese: Small amounts of Manganese reduce brittleness and improve
forgeability. Larger amounts of manganese improve hardenability, permit oil
quenching, and reduce quenching deformation.
Silicon: Improves strength, toughness, and shock resistance.
Tungsten: Improves "hot hardness" - used in high-speed tool steel.
Vanadium: Refines carbide structure and improves forgeability, also improving
hardness and wear resistance.
Molybdenum: Improves deep hardening, toughness, and in larger amounts, "hot
hardness". Used in high speed tool steel because it's cheaper than tungsten.
Chromium: Improves hardenability, wear resistance and toughness.
Nickel: Improves toughness and wear resistance to a lesser degree.
Including these elements in varying combinations can act synergistically,
increasing the effects of using them alone.
(a) Draw a thermal equilibrium diagram from the table listed below.
Classwork /Homework:
(b) Label the diagram and describe its main features.
(c) For the alloy 50% B, determine from the diagram the ratio of the phases at 400 °C
Homework Answer:
(a)
(b)
Liquidus line: for the alloy system this line represents the boundary
between the fully liquid state and the beginning of solidification.
Solidus line: the boundary line that determines the end of
solidification. Below this line, the alloy is completely solid.
Liquid region: the two metals are in a liquid state.
Solid region: the two metals are in a solid state.
Pasty region: between the liquidus and solidus lines, the alloy is in
a partly liquid and a partly solid state.
 
(c)
a) Explain any two of the following:
(i) Allotropy;
(ii) Interstitial solid solution;
(iii) The difference between amorphous structures and crystalline structures;
(iv) The degree of brittleness in body-centered cubic (bcc) structures and the
degree of brittleness in face-centered cubic (fcc) structures.
Homework/Question.
BCC FCC
(i) Allotropy:
Allotropy is the ability of a material to exist in different forms.
(ii) Interstitial solid solution:
An atom from another element moves into the space between the atoms of the parent metal lattice. This
causes compression of the surrounding atoms and will strengthen the material as it takes a higher stress to
cause deformation.
(iii) Amorphous structures do not have a pattern in the arrangement of their atoms but are a more random
structure. Pitch, glass and some plastics have this type of structure. Crystalline structures have atoms that
are bonded together in a pattern that is repeated. Metals with bcc and fcc unit cells are examples of a
crystalline structure.
(iv) Brittleness in bcc and fcc structures:
In the bcc structure, the structure is arranged with an atom at the corner of a cube and an atom in the centre
of the cube. This structure is associated with brittleness.
In the fcc structure atoms are at the corners of a cube and a single atom in the centre of each face of the cube.
Atoms are more tightly packed which allows metals to be more ductile.
Homework/Answer.
The table shows the solidification temperatures for the various alloys of metal A
and metal B. The melting point of metal A is 1083 ºC and the melting point of
metal B is 1453 ºC.
Using the graph paper supplied:
(i) Draw the thermal equilibrium diagram according to the given data;
(ii) Label the main features of the diagram;
(iii) Determine, from the diagram, the ratio of the phases at 1250ºC for the
alloy of 50% metal B.
Homework/Question.
% of metal B in
alloy
10 20 30 40 50 60 70 80 90
Start of
solidification (°C)
1160 1220 1270 1320 1350 1380 1400 1430 1440
End of solidification
(°C)
1080 1090 1110 1140 1170 1220 1270 1330 1380
Homework/Answer.
(ii) Label the following features:
Liquidus line, Solidus line, Liquid region, Solid region and Pasty region
(iii) Ratio of phases at 1250 °C for 50% metal B:
Mass of solid is 50-26 = 24 = 3
Mass of liquid 66-50 16 2
1083 °C
1453 °C
1250 °C
Liquid Region.
Solid Region.
Liquidus Line.
Solidus Line.
Pasty Region.

More Related Content

What's hot

Solid solution strengthening
Solid solution strengtheningSolid solution strengthening
Solid solution strengtheningJAYESH PAREKH
 
Strengthening mechanism ppt
Strengthening mechanism pptStrengthening mechanism ppt
Strengthening mechanism pptHitesh Basitti
 
Chapter 6 Mechanical Engineering Materials 22343
Chapter 6 Mechanical Engineering Materials  22343 Chapter 6 Mechanical Engineering Materials  22343
Chapter 6 Mechanical Engineering Materials 22343 Sandip Polytechnic,Nashik
 
Solidification
Solidification Solidification
Solidification Naman Dave
 
Extractive metallurgy (Basic Principles)
Extractive metallurgy (Basic Principles) Extractive metallurgy (Basic Principles)
Extractive metallurgy (Basic Principles) Vikas Barnwal
 
Metallic glasses ppt
Metallic glasses  pptMetallic glasses  ppt
Metallic glasses pptManish Mor
 
Solidification and microstructure of metals
Solidification and microstructure of metals Solidification and microstructure of metals
Solidification and microstructure of metals Bibin Bhaskaran
 
Surface heat treatment (or) case hardening
Surface heat treatment (or) case hardeningSurface heat treatment (or) case hardening
Surface heat treatment (or) case hardeningbooks5884
 
Unit i classification of steel and cast iron microstructure
Unit i  classification of steel and cast iron microstructureUnit i  classification of steel and cast iron microstructure
Unit i classification of steel and cast iron microstructureS.DHARANI KUMAR
 

What's hot (20)

Solid solution strengthening
Solid solution strengtheningSolid solution strengthening
Solid solution strengthening
 
Strengthening mechanism ppt
Strengthening mechanism pptStrengthening mechanism ppt
Strengthening mechanism ppt
 
Intermetallics
IntermetallicsIntermetallics
Intermetallics
 
Superalloys
SuperalloysSuperalloys
Superalloys
 
Ceramic materials 1
Ceramic materials  1Ceramic materials  1
Ceramic materials 1
 
Chapter 6 Mechanical Engineering Materials 22343
Chapter 6 Mechanical Engineering Materials  22343 Chapter 6 Mechanical Engineering Materials  22343
Chapter 6 Mechanical Engineering Materials 22343
 
Solidification
Solidification Solidification
Solidification
 
Extractive metallurgy (Basic Principles)
Extractive metallurgy (Basic Principles) Extractive metallurgy (Basic Principles)
Extractive metallurgy (Basic Principles)
 
Iron making
Iron makingIron making
Iron making
 
Metallurgy
MetallurgyMetallurgy
Metallurgy
 
Cast Aluminum Alloys
Cast Aluminum AlloysCast Aluminum Alloys
Cast Aluminum Alloys
 
Cast Iron
Cast IronCast Iron
Cast Iron
 
Metallic glasses ppt
Metallic glasses  pptMetallic glasses  ppt
Metallic glasses ppt
 
MATERIAL SCIENCE
MATERIAL SCIENCEMATERIAL SCIENCE
MATERIAL SCIENCE
 
U4 p1 welding metallurgy
U4 p1 welding metallurgyU4 p1 welding metallurgy
U4 p1 welding metallurgy
 
Aluminium Alloys
Aluminium AlloysAluminium Alloys
Aluminium Alloys
 
Dual phase steels
Dual phase steelsDual phase steels
Dual phase steels
 
Solidification and microstructure of metals
Solidification and microstructure of metals Solidification and microstructure of metals
Solidification and microstructure of metals
 
Surface heat treatment (or) case hardening
Surface heat treatment (or) case hardeningSurface heat treatment (or) case hardening
Surface heat treatment (or) case hardening
 
Unit i classification of steel and cast iron microstructure
Unit i  classification of steel and cast iron microstructureUnit i  classification of steel and cast iron microstructure
Unit i classification of steel and cast iron microstructure
 

Viewers also liked

Metals - Ferrous and Non Ferrous
Metals - Ferrous and Non FerrousMetals - Ferrous and Non Ferrous
Metals - Ferrous and Non Ferrousfjpwhelan
 
Ferrous and non-ferrous metals
Ferrous and non-ferrous metalsFerrous and non-ferrous metals
Ferrous and non-ferrous metalstomwheats
 
Annealing , normalizing , quenching , martensitic transformation (1)
Annealing , normalizing , quenching , martensitic transformation (1)Annealing , normalizing , quenching , martensitic transformation (1)
Annealing , normalizing , quenching , martensitic transformation (1)thiru1mech
 
Steel and effect of alloying elements
Steel and effect of alloying elementsSteel and effect of alloying elements
Steel and effect of alloying elementstemkin abdlkader
 
semiconductor electronics
semiconductor electronicssemiconductor electronics
semiconductor electronicsManas Mantri
 
4.1 Thermal Equilibrium
4.1 Thermal Equilibrium4.1 Thermal Equilibrium
4.1 Thermal EquilibriumNur Farizan
 
EFFECT OF DEPOSITION AND ANNEALING TEMPERATURES ON OPTICAL BAND GAP OF SNO2 T...
EFFECT OF DEPOSITION AND ANNEALING TEMPERATURES ON OPTICAL BAND GAP OF SNO2 T...EFFECT OF DEPOSITION AND ANNEALING TEMPERATURES ON OPTICAL BAND GAP OF SNO2 T...
EFFECT OF DEPOSITION AND ANNEALING TEMPERATURES ON OPTICAL BAND GAP OF SNO2 T...IAEME Publication
 
The alloying elements(final)
The alloying elements(final)The alloying elements(final)
The alloying elements(final)Bilal Ashar
 
Iron iron carbon equilibrium diagram
Iron iron carbon equilibrium diagramIron iron carbon equilibrium diagram
Iron iron carbon equilibrium diagramRushikesh Raval
 
Ug pmc processing
Ug pmc processingUg pmc processing
Ug pmc processingSethu Ram
 
equilibrium diagrams
equilibrium diagramsequilibrium diagrams
equilibrium diagramsGourav Kapoor
 
Types of phase diagrams
Types of phase diagramsTypes of phase diagrams
Types of phase diagramsGulfam Hussain
 
Binary phase diagrams
Binary phase diagramsBinary phase diagrams
Binary phase diagramsanandpratap
 
Dr.R.Narayanasamy, Dr.S.Sivasankaran and Dr.K.Siva Prasad on Mechanical Alloying
Dr.R.Narayanasamy, Dr.S.Sivasankaran and Dr.K.Siva Prasad on Mechanical AlloyingDr.R.Narayanasamy, Dr.S.Sivasankaran and Dr.K.Siva Prasad on Mechanical Alloying
Dr.R.Narayanasamy, Dr.S.Sivasankaran and Dr.K.Siva Prasad on Mechanical AlloyingDr.Ramaswamy Narayanasamy
 

Viewers also liked (20)

Metals - Ferrous and Non Ferrous
Metals - Ferrous and Non FerrousMetals - Ferrous and Non Ferrous
Metals - Ferrous and Non Ferrous
 
Ferrous and non-ferrous metals
Ferrous and non-ferrous metalsFerrous and non-ferrous metals
Ferrous and non-ferrous metals
 
Alloy
AlloyAlloy
Alloy
 
Annealing , normalizing , quenching , martensitic transformation (1)
Annealing , normalizing , quenching , martensitic transformation (1)Annealing , normalizing , quenching , martensitic transformation (1)
Annealing , normalizing , quenching , martensitic transformation (1)
 
Steel and effect of alloying elements
Steel and effect of alloying elementsSteel and effect of alloying elements
Steel and effect of alloying elements
 
semiconductor electronics
semiconductor electronicssemiconductor electronics
semiconductor electronics
 
4.1 Thermal Equilibrium
4.1 Thermal Equilibrium4.1 Thermal Equilibrium
4.1 Thermal Equilibrium
 
Thermal equilibrium
Thermal equilibriumThermal equilibrium
Thermal equilibrium
 
Galvanized Steel Manufacturing
Galvanized Steel Manufacturing Galvanized Steel Manufacturing
Galvanized Steel Manufacturing
 
EFFECT OF DEPOSITION AND ANNEALING TEMPERATURES ON OPTICAL BAND GAP OF SNO2 T...
EFFECT OF DEPOSITION AND ANNEALING TEMPERATURES ON OPTICAL BAND GAP OF SNO2 T...EFFECT OF DEPOSITION AND ANNEALING TEMPERATURES ON OPTICAL BAND GAP OF SNO2 T...
EFFECT OF DEPOSITION AND ANNEALING TEMPERATURES ON OPTICAL BAND GAP OF SNO2 T...
 
The alloying elements(final)
The alloying elements(final)The alloying elements(final)
The alloying elements(final)
 
Iron iron carbon equilibrium diagram
Iron iron carbon equilibrium diagramIron iron carbon equilibrium diagram
Iron iron carbon equilibrium diagram
 
Ug pmc processing
Ug pmc processingUg pmc processing
Ug pmc processing
 
equilibrium diagrams
equilibrium diagramsequilibrium diagrams
equilibrium diagrams
 
Phase diagrams
Phase diagramsPhase diagrams
Phase diagrams
 
Cooling curve
Cooling curveCooling curve
Cooling curve
 
Types of phase diagrams
Types of phase diagramsTypes of phase diagrams
Types of phase diagrams
 
Binary phase diagrams
Binary phase diagramsBinary phase diagrams
Binary phase diagrams
 
Dr.R.Narayanasamy, Dr.S.Sivasankaran and Dr.K.Siva Prasad on Mechanical Alloying
Dr.R.Narayanasamy, Dr.S.Sivasankaran and Dr.K.Siva Prasad on Mechanical AlloyingDr.R.Narayanasamy, Dr.S.Sivasankaran and Dr.K.Siva Prasad on Mechanical Alloying
Dr.R.Narayanasamy, Dr.S.Sivasankaran and Dr.K.Siva Prasad on Mechanical Alloying
 
PHASE DIAGRAMS
PHASE DIAGRAMSPHASE DIAGRAMS
PHASE DIAGRAMS
 

Similar to Alloying Metals. Leaving Cert. Engineering.

Introduction to metals Dr Ambreen Azam
Introduction to metals Dr Ambreen AzamIntroduction to metals Dr Ambreen Azam
Introduction to metals Dr Ambreen Azamazam_786
 
DJJ3213 MATERIAL SCIENCE CHAPTER 4 NOTE.ppt
DJJ3213 MATERIAL SCIENCE CHAPTER 4 NOTE.pptDJJ3213 MATERIAL SCIENCE CHAPTER 4 NOTE.ppt
DJJ3213 MATERIAL SCIENCE CHAPTER 4 NOTE.pptfieyzaadn
 
Material Bonding Powerpoint
Material Bonding PowerpointMaterial Bonding Powerpoint
Material Bonding PowerpointJutka Czirok
 
Metals - Physical Properties
Metals - Physical PropertiesMetals - Physical Properties
Metals - Physical PropertiesArrehome
 
Chapter 13 – Heat Treatment of Steels.ppt
Chapter 13 – Heat Treatment of Steels.pptChapter 13 – Heat Treatment of Steels.ppt
Chapter 13 – Heat Treatment of Steels.pptsabry said
 
UNIT - I ---CONSTITUTION OF ALLOYS.pptx
UNIT - I ---CONSTITUTION OF ALLOYS.pptxUNIT - I ---CONSTITUTION OF ALLOYS.pptx
UNIT - I ---CONSTITUTION OF ALLOYS.pptxShanmathyAR2
 
UNIT2-Solidificationcastingprocessmetal.ppt
UNIT2-Solidificationcastingprocessmetal.pptUNIT2-Solidificationcastingprocessmetal.ppt
UNIT2-Solidificationcastingprocessmetal.pptPraveen Kumar
 
Manfacturing processes
Manfacturing processesManfacturing processes
Manfacturing processesMayank Gupta
 
SOLIDIFICATION OF CASTING
SOLIDIFICATION OF CASTINGSOLIDIFICATION OF CASTING
SOLIDIFICATION OF CASTINGVivek Tyagi
 
Metallurgy and it’s recent advancement in orthodontics
Metallurgy and it’s recent advancement in orthodonticsMetallurgy and it’s recent advancement in orthodontics
Metallurgy and it’s recent advancement in orthodonticsDr.Rahul Tiwari
 
Alloys in prosthodontics
Alloys  in prosthodonticsAlloys  in prosthodontics
Alloys in prosthodonticsKelly Norton
 
Week 3 - Material Perfromance (1).pdf
Week 3 - Material Perfromance (1).pdfWeek 3 - Material Perfromance (1).pdf
Week 3 - Material Perfromance (1).pdfPUTRIZAHEERA
 
Unit III Part-A Equilibrium Diagrams.pptx
Unit III  Part-A  Equilibrium Diagrams.pptxUnit III  Part-A  Equilibrium Diagrams.pptx
Unit III Part-A Equilibrium Diagrams.pptxDr. Sandip Thorat
 
solidification and heat treatment.ppt
solidification and heat treatment.pptsolidification and heat treatment.ppt
solidification and heat treatment.pptSehranAmjad1
 

Similar to Alloying Metals. Leaving Cert. Engineering. (20)

Introduction to metals Dr Ambreen Azam
Introduction to metals Dr Ambreen AzamIntroduction to metals Dr Ambreen Azam
Introduction to metals Dr Ambreen Azam
 
Heat treatment of steels
Heat treatment of steelsHeat treatment of steels
Heat treatment of steels
 
DJJ3213 MATERIAL SCIENCE CHAPTER 4 NOTE.ppt
DJJ3213 MATERIAL SCIENCE CHAPTER 4 NOTE.pptDJJ3213 MATERIAL SCIENCE CHAPTER 4 NOTE.ppt
DJJ3213 MATERIAL SCIENCE CHAPTER 4 NOTE.ppt
 
Material Bonding Powerpoint
Material Bonding PowerpointMaterial Bonding Powerpoint
Material Bonding Powerpoint
 
Welding metallurgy part i
Welding metallurgy part iWelding metallurgy part i
Welding metallurgy part i
 
Solved paper msmt 2
Solved paper msmt 2Solved paper msmt 2
Solved paper msmt 2
 
Metals - Physical Properties
Metals - Physical PropertiesMetals - Physical Properties
Metals - Physical Properties
 
Chapter 13 – Heat Treatment of Steels.ppt
Chapter 13 – Heat Treatment of Steels.pptChapter 13 – Heat Treatment of Steels.ppt
Chapter 13 – Heat Treatment of Steels.ppt
 
Chapter 1.2
Chapter 1.2Chapter 1.2
Chapter 1.2
 
UNIT - I ---CONSTITUTION OF ALLOYS.pptx
UNIT - I ---CONSTITUTION OF ALLOYS.pptxUNIT - I ---CONSTITUTION OF ALLOYS.pptx
UNIT - I ---CONSTITUTION OF ALLOYS.pptx
 
UNIT2-Solidificationcastingprocessmetal.ppt
UNIT2-Solidificationcastingprocessmetal.pptUNIT2-Solidificationcastingprocessmetal.ppt
UNIT2-Solidificationcastingprocessmetal.ppt
 
Manfacturing processes
Manfacturing processesManfacturing processes
Manfacturing processes
 
Alloys 1
Alloys 1Alloys 1
Alloys 1
 
SOLIDIFICATION OF CASTING
SOLIDIFICATION OF CASTINGSOLIDIFICATION OF CASTING
SOLIDIFICATION OF CASTING
 
Metallurgy and it’s recent advancement in orthodontics
Metallurgy and it’s recent advancement in orthodonticsMetallurgy and it’s recent advancement in orthodontics
Metallurgy and it’s recent advancement in orthodontics
 
Alloys in prosthodontics
Alloys  in prosthodonticsAlloys  in prosthodontics
Alloys in prosthodontics
 
Final solved paper msmt 1
Final solved paper msmt 1Final solved paper msmt 1
Final solved paper msmt 1
 
Week 3 - Material Perfromance (1).pdf
Week 3 - Material Perfromance (1).pdfWeek 3 - Material Perfromance (1).pdf
Week 3 - Material Perfromance (1).pdf
 
Unit III Part-A Equilibrium Diagrams.pptx
Unit III  Part-A  Equilibrium Diagrams.pptxUnit III  Part-A  Equilibrium Diagrams.pptx
Unit III Part-A Equilibrium Diagrams.pptx
 
solidification and heat treatment.ppt
solidification and heat treatment.pptsolidification and heat treatment.ppt
solidification and heat treatment.ppt
 

Recently uploaded

Yaroslav Rozhankivskyy: Три складові і три передумови максимальної продуктивн...
Yaroslav Rozhankivskyy: Три складові і три передумови максимальної продуктивн...Yaroslav Rozhankivskyy: Три складові і три передумови максимальної продуктивн...
Yaroslav Rozhankivskyy: Три складові і три передумови максимальної продуктивн...Lviv Startup Club
 
Understanding the Pakistan Budgeting Process: Basics and Key Insights
Understanding the Pakistan Budgeting Process: Basics and Key InsightsUnderstanding the Pakistan Budgeting Process: Basics and Key Insights
Understanding the Pakistan Budgeting Process: Basics and Key Insightsseribangash
 
M.C Lodges -- Guest House in Jhang.
M.C Lodges --  Guest House in Jhang.M.C Lodges --  Guest House in Jhang.
M.C Lodges -- Guest House in Jhang.Aaiza Hassan
 
Monte Carlo simulation : Simulation using MCSM
Monte Carlo simulation : Simulation using MCSMMonte Carlo simulation : Simulation using MCSM
Monte Carlo simulation : Simulation using MCSMRavindra Nath Shukla
 
Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...
Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...
Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...anilsa9823
 
Mondelez State of Snacking and Future Trends 2023
Mondelez State of Snacking and Future Trends 2023Mondelez State of Snacking and Future Trends 2023
Mondelez State of Snacking and Future Trends 2023Neil Kimberley
 
A DAY IN THE LIFE OF A SALESMAN / WOMAN
A DAY IN THE LIFE OF A  SALESMAN / WOMANA DAY IN THE LIFE OF A  SALESMAN / WOMAN
A DAY IN THE LIFE OF A SALESMAN / WOMANIlamathiKannappan
 
MONA 98765-12871 CALL GIRLS IN LUDHIANA LUDHIANA CALL GIRL
MONA 98765-12871 CALL GIRLS IN LUDHIANA LUDHIANA CALL GIRLMONA 98765-12871 CALL GIRLS IN LUDHIANA LUDHIANA CALL GIRL
MONA 98765-12871 CALL GIRLS IN LUDHIANA LUDHIANA CALL GIRLSeo
 
Mysore Call Girls 8617370543 WhatsApp Number 24x7 Best Services
Mysore Call Girls 8617370543 WhatsApp Number 24x7 Best ServicesMysore Call Girls 8617370543 WhatsApp Number 24x7 Best Services
Mysore Call Girls 8617370543 WhatsApp Number 24x7 Best ServicesDipal Arora
 
Sales & Marketing Alignment: How to Synergize for Success
Sales & Marketing Alignment: How to Synergize for SuccessSales & Marketing Alignment: How to Synergize for Success
Sales & Marketing Alignment: How to Synergize for SuccessAggregage
 
Tech Startup Growth Hacking 101 - Basics on Growth Marketing
Tech Startup Growth Hacking 101  - Basics on Growth MarketingTech Startup Growth Hacking 101  - Basics on Growth Marketing
Tech Startup Growth Hacking 101 - Basics on Growth MarketingShawn Pang
 
HONOR Veterans Event Keynote by Michael Hawkins
HONOR Veterans Event Keynote by Michael HawkinsHONOR Veterans Event Keynote by Michael Hawkins
HONOR Veterans Event Keynote by Michael HawkinsMichael W. Hawkins
 
KYC-Verified Accounts: Helping Companies Handle Challenging Regulatory Enviro...
KYC-Verified Accounts: Helping Companies Handle Challenging Regulatory Enviro...KYC-Verified Accounts: Helping Companies Handle Challenging Regulatory Enviro...
KYC-Verified Accounts: Helping Companies Handle Challenging Regulatory Enviro...Any kyc Account
 
BEST ✨ Call Girls In Indirapuram Ghaziabad ✔️ 9871031762 ✔️ Escorts Service...
BEST ✨ Call Girls In  Indirapuram Ghaziabad  ✔️ 9871031762 ✔️ Escorts Service...BEST ✨ Call Girls In  Indirapuram Ghaziabad  ✔️ 9871031762 ✔️ Escorts Service...
BEST ✨ Call Girls In Indirapuram Ghaziabad ✔️ 9871031762 ✔️ Escorts Service...noida100girls
 
Keppel Ltd. 1Q 2024 Business Update Presentation Slides
Keppel Ltd. 1Q 2024 Business Update  Presentation SlidesKeppel Ltd. 1Q 2024 Business Update  Presentation Slides
Keppel Ltd. 1Q 2024 Business Update Presentation SlidesKeppelCorporation
 
Best VIP Call Girls Noida Sector 40 Call Me: 8448380779
Best VIP Call Girls Noida Sector 40 Call Me: 8448380779Best VIP Call Girls Noida Sector 40 Call Me: 8448380779
Best VIP Call Girls Noida Sector 40 Call Me: 8448380779Delhi Call girls
 
Value Proposition canvas- Customer needs and pains
Value Proposition canvas- Customer needs and painsValue Proposition canvas- Customer needs and pains
Value Proposition canvas- Customer needs and painsP&CO
 
7.pdf This presentation captures many uses and the significance of the number...
7.pdf This presentation captures many uses and the significance of the number...7.pdf This presentation captures many uses and the significance of the number...
7.pdf This presentation captures many uses and the significance of the number...Paul Menig
 
Event mailer assignment progress report .pdf
Event mailer assignment progress report .pdfEvent mailer assignment progress report .pdf
Event mailer assignment progress report .pdftbatkhuu1
 

Recently uploaded (20)

Yaroslav Rozhankivskyy: Три складові і три передумови максимальної продуктивн...
Yaroslav Rozhankivskyy: Три складові і три передумови максимальної продуктивн...Yaroslav Rozhankivskyy: Три складові і три передумови максимальної продуктивн...
Yaroslav Rozhankivskyy: Три складові і три передумови максимальної продуктивн...
 
Understanding the Pakistan Budgeting Process: Basics and Key Insights
Understanding the Pakistan Budgeting Process: Basics and Key InsightsUnderstanding the Pakistan Budgeting Process: Basics and Key Insights
Understanding the Pakistan Budgeting Process: Basics and Key Insights
 
M.C Lodges -- Guest House in Jhang.
M.C Lodges --  Guest House in Jhang.M.C Lodges --  Guest House in Jhang.
M.C Lodges -- Guest House in Jhang.
 
Monte Carlo simulation : Simulation using MCSM
Monte Carlo simulation : Simulation using MCSMMonte Carlo simulation : Simulation using MCSM
Monte Carlo simulation : Simulation using MCSM
 
Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...
Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...
Lucknow 💋 Escorts in Lucknow - 450+ Call Girl Cash Payment 8923113531 Neha Th...
 
Mondelez State of Snacking and Future Trends 2023
Mondelez State of Snacking and Future Trends 2023Mondelez State of Snacking and Future Trends 2023
Mondelez State of Snacking and Future Trends 2023
 
A DAY IN THE LIFE OF A SALESMAN / WOMAN
A DAY IN THE LIFE OF A  SALESMAN / WOMANA DAY IN THE LIFE OF A  SALESMAN / WOMAN
A DAY IN THE LIFE OF A SALESMAN / WOMAN
 
MONA 98765-12871 CALL GIRLS IN LUDHIANA LUDHIANA CALL GIRL
MONA 98765-12871 CALL GIRLS IN LUDHIANA LUDHIANA CALL GIRLMONA 98765-12871 CALL GIRLS IN LUDHIANA LUDHIANA CALL GIRL
MONA 98765-12871 CALL GIRLS IN LUDHIANA LUDHIANA CALL GIRL
 
Mysore Call Girls 8617370543 WhatsApp Number 24x7 Best Services
Mysore Call Girls 8617370543 WhatsApp Number 24x7 Best ServicesMysore Call Girls 8617370543 WhatsApp Number 24x7 Best Services
Mysore Call Girls 8617370543 WhatsApp Number 24x7 Best Services
 
Sales & Marketing Alignment: How to Synergize for Success
Sales & Marketing Alignment: How to Synergize for SuccessSales & Marketing Alignment: How to Synergize for Success
Sales & Marketing Alignment: How to Synergize for Success
 
Tech Startup Growth Hacking 101 - Basics on Growth Marketing
Tech Startup Growth Hacking 101  - Basics on Growth MarketingTech Startup Growth Hacking 101  - Basics on Growth Marketing
Tech Startup Growth Hacking 101 - Basics on Growth Marketing
 
HONOR Veterans Event Keynote by Michael Hawkins
HONOR Veterans Event Keynote by Michael HawkinsHONOR Veterans Event Keynote by Michael Hawkins
HONOR Veterans Event Keynote by Michael Hawkins
 
KYC-Verified Accounts: Helping Companies Handle Challenging Regulatory Enviro...
KYC-Verified Accounts: Helping Companies Handle Challenging Regulatory Enviro...KYC-Verified Accounts: Helping Companies Handle Challenging Regulatory Enviro...
KYC-Verified Accounts: Helping Companies Handle Challenging Regulatory Enviro...
 
BEST ✨ Call Girls In Indirapuram Ghaziabad ✔️ 9871031762 ✔️ Escorts Service...
BEST ✨ Call Girls In  Indirapuram Ghaziabad  ✔️ 9871031762 ✔️ Escorts Service...BEST ✨ Call Girls In  Indirapuram Ghaziabad  ✔️ 9871031762 ✔️ Escorts Service...
BEST ✨ Call Girls In Indirapuram Ghaziabad ✔️ 9871031762 ✔️ Escorts Service...
 
VVVIP Call Girls In Greater Kailash ➡️ Delhi ➡️ 9999965857 🚀 No Advance 24HRS...
VVVIP Call Girls In Greater Kailash ➡️ Delhi ➡️ 9999965857 🚀 No Advance 24HRS...VVVIP Call Girls In Greater Kailash ➡️ Delhi ➡️ 9999965857 🚀 No Advance 24HRS...
VVVIP Call Girls In Greater Kailash ➡️ Delhi ➡️ 9999965857 🚀 No Advance 24HRS...
 
Keppel Ltd. 1Q 2024 Business Update Presentation Slides
Keppel Ltd. 1Q 2024 Business Update  Presentation SlidesKeppel Ltd. 1Q 2024 Business Update  Presentation Slides
Keppel Ltd. 1Q 2024 Business Update Presentation Slides
 
Best VIP Call Girls Noida Sector 40 Call Me: 8448380779
Best VIP Call Girls Noida Sector 40 Call Me: 8448380779Best VIP Call Girls Noida Sector 40 Call Me: 8448380779
Best VIP Call Girls Noida Sector 40 Call Me: 8448380779
 
Value Proposition canvas- Customer needs and pains
Value Proposition canvas- Customer needs and painsValue Proposition canvas- Customer needs and pains
Value Proposition canvas- Customer needs and pains
 
7.pdf This presentation captures many uses and the significance of the number...
7.pdf This presentation captures many uses and the significance of the number...7.pdf This presentation captures many uses and the significance of the number...
7.pdf This presentation captures many uses and the significance of the number...
 
Event mailer assignment progress report .pdf
Event mailer assignment progress report .pdfEvent mailer assignment progress report .pdf
Event mailer assignment progress report .pdf
 

Alloying Metals. Leaving Cert. Engineering.

  • 1. Metal Alloys. 1. Alloying a metal is done by combining it with one or more other metals or non-metals that often improve its properties. 2. The term alloy is used to describe a mixture of atoms in which the primary constituent is a metal. 3. The primary metal is called the base.
  • 2. Reasons for Alloying. • To improve its properties such as Toughness. Example: Iron is relatively soft, Carbon is brittle but Steel is very tough. • To reduce the melting point. Example: Lead melts at 327 °c, Tin melts at 232 °c but Solder melts at approx. 183 °c. • To prevent rusting. Example: Stainless steel is produced by alloying iron with chromium and carbon. The chromium forms an impenetrable oxide layer that adheres strongly to the iron surface preventing the formation of rust.
  • 3. Aluminium Alloys. However, pure aluminium is soft and lacks strength, but alloyed with small amounts of copper, magnesium, silicon, manganese, and other elements gives it very useful properties. Aluminium is very abundant and is used in pure form for a lot of different things, like kitchen foil, mirrors, coins and industrial components.
  • 4. Substitutional Alloys are where the metals combining have atoms of the same size. Brass is an example. Interstitial Alloys are where one of the alloying elements combining has atoms of smaller size. Steel is an example. Carbon atoms are much smaller and fit into the gaps in the Iron atoms. Classification of Alloys. Substitutional Alloy. Interstitial Alloy.
  • 5. Solid Solution Alloys. Solid Solution Alloys: When metals combine they sometimes become completely soluble in each other. Metals which combine in this way are said to form solid solutions. When this type of alloy solidifies, only one type of crystal is formed. Under a microscope the crystalline structure of a solid solution alloy looks very like a pure metal. Solid solution alloys have similar properties to pure metals but have greater strength. They also have poorer electrical/thermal conductivity, greater hardness but not as elastic as pure metals.
  • 6. How are Metal Alloys made. Lead Tin + = Solder The metals forming the alloy are melted in a furnace in a crucible. They are then poured into blocks called ingots and allowed to solidify. When a molten metal is mixed with another molten metal and allowed to solidify an alloy is formed. The new solid metal will have gone through ‘Phase’ changes to become an alloy.
  • 8. What is Thermal Equilibrium. Left click with the mouse on the link above to play the video. https://www.youtube.com/watch?v=vcgYQ-u7qfc
  • 9. What are Thermal Equilibrium Diagrams. Thermal equilibrium diagrams are special diagrams which contain information about changes that take place in alloys. The temperature at which a particular alloy changes from liquid to solid is an example of the type of thermal information contained in a thermal equilibrium diagram.
  • 10. Cooling Curve of a Pure Metal. Cooling Curve of a Solid Solution (An Alloy). Set of Cooling Curves for various Solid Solutions.
  • 11. Developing a Thermal Equilibrium Diagram.
  • 12. How a Thermal Equilibrium Diagram is Constructed.
  • 13. Label the Thermal Equilibrium Diagram below.
  • 14. • Solidus Line – All points below this line are in solid form. • Liquidus Line – All points above this line are in liquid form. • Pasty Region - Between the solidus and liquidus lines, all points are in a mixture of liquid and solid (pasty) form. • Liquid Region – The alloy is completely liquid in this region. • Solid Region – The alloy is completely solid in this region. Parts of the Thermal Equilibrium Diagram.
  • 15. Effects of Alloying Elements on Steel Properties: Carbon: Raising carbon content increases hardness slightly and wear resistance considerably. Manganese: Small amounts of Manganese reduce brittleness and improve forgeability. Larger amounts of manganese improve hardenability, permit oil quenching, and reduce quenching deformation. Silicon: Improves strength, toughness, and shock resistance. Tungsten: Improves "hot hardness" - used in high-speed tool steel. Vanadium: Refines carbide structure and improves forgeability, also improving hardness and wear resistance. Molybdenum: Improves deep hardening, toughness, and in larger amounts, "hot hardness". Used in high speed tool steel because it's cheaper than tungsten. Chromium: Improves hardenability, wear resistance and toughness. Nickel: Improves toughness and wear resistance to a lesser degree. Including these elements in varying combinations can act synergistically, increasing the effects of using them alone.
  • 16. (a) Draw a thermal equilibrium diagram from the table listed below. Classwork /Homework: (b) Label the diagram and describe its main features. (c) For the alloy 50% B, determine from the diagram the ratio of the phases at 400 °C
  • 18. (b) Liquidus line: for the alloy system this line represents the boundary between the fully liquid state and the beginning of solidification. Solidus line: the boundary line that determines the end of solidification. Below this line, the alloy is completely solid. Liquid region: the two metals are in a liquid state. Solid region: the two metals are in a solid state. Pasty region: between the liquidus and solidus lines, the alloy is in a partly liquid and a partly solid state.   (c)
  • 19. a) Explain any two of the following: (i) Allotropy; (ii) Interstitial solid solution; (iii) The difference between amorphous structures and crystalline structures; (iv) The degree of brittleness in body-centered cubic (bcc) structures and the degree of brittleness in face-centered cubic (fcc) structures. Homework/Question. BCC FCC
  • 20. (i) Allotropy: Allotropy is the ability of a material to exist in different forms. (ii) Interstitial solid solution: An atom from another element moves into the space between the atoms of the parent metal lattice. This causes compression of the surrounding atoms and will strengthen the material as it takes a higher stress to cause deformation. (iii) Amorphous structures do not have a pattern in the arrangement of their atoms but are a more random structure. Pitch, glass and some plastics have this type of structure. Crystalline structures have atoms that are bonded together in a pattern that is repeated. Metals with bcc and fcc unit cells are examples of a crystalline structure. (iv) Brittleness in bcc and fcc structures: In the bcc structure, the structure is arranged with an atom at the corner of a cube and an atom in the centre of the cube. This structure is associated with brittleness. In the fcc structure atoms are at the corners of a cube and a single atom in the centre of each face of the cube. Atoms are more tightly packed which allows metals to be more ductile. Homework/Answer.
  • 21. The table shows the solidification temperatures for the various alloys of metal A and metal B. The melting point of metal A is 1083 ºC and the melting point of metal B is 1453 ºC. Using the graph paper supplied: (i) Draw the thermal equilibrium diagram according to the given data; (ii) Label the main features of the diagram; (iii) Determine, from the diagram, the ratio of the phases at 1250ºC for the alloy of 50% metal B. Homework/Question. % of metal B in alloy 10 20 30 40 50 60 70 80 90 Start of solidification (°C) 1160 1220 1270 1320 1350 1380 1400 1430 1440 End of solidification (°C) 1080 1090 1110 1140 1170 1220 1270 1330 1380
  • 22. Homework/Answer. (ii) Label the following features: Liquidus line, Solidus line, Liquid region, Solid region and Pasty region (iii) Ratio of phases at 1250 °C for 50% metal B: Mass of solid is 50-26 = 24 = 3 Mass of liquid 66-50 16 2 1083 °C 1453 °C 1250 °C Liquid Region. Solid Region. Liquidus Line. Solidus Line. Pasty Region.