SlideShare a Scribd company logo
1 of 37
Dr. SURENDRAN PARAMBADATH
           (M.Sc, M.Phil, M.Tech)



  Formerly: Post Doctoral Research Associate,
Nano-Information Materials Research Laboratory,
 Pusan National University, Busan-South Korea

         Currently: Assistant Professor
   Govt. Polytechnic College, Perinthalmanna
Nature keep all metals in their ore form.

         Metals are usually extracted from their ores.

 Nature tries to convert the metals again into their ore form.

The surface of metals are attacked             when exposed to
environment.

Chemicals are chemically turned to new substances such as
oxides,                                                hydated
oxides, carbonates, chlorides, sulphides, sulphates etc having
entirely new properties.

Once the metals begin to decay or get corroded, they suffer a
loss in electrical conductivity, tensile strength, color and luster.
Definition of Corrosion
Corrosion is the slow process of decay of the
metal, due to the attack of the atmosphere gases
on the surface of the metal, resulting in the
formation of metallic compounds such oxides,
hydroxides, carbonates, sulphides etc.
                       OR
Corrosion is the process of destruction or
deterioration of the metal and alloys by unwanted
or unintentional chemical or electrochemical
attack by its environments staring its surface.
Type of Corrosion
1. Dry or Chemical Corrosion:
It is due to the direct chemical action of
environmental atmosphere gases such as O2.
H2S, SO2, N2, halogens or anhydrous
inorganic liquids with metal surfaces.


2. Wet or Electrochemical Corrosion:
   It is due to the existence of separate
“anodic” and “cathodic” areas in the system
between which current flows through the
conducting liquid and the anode gets oxidized
and wasted.
Electrochemical Theory of Corrosion
                 (Mechanism Of Corrosion)
Corrosion is an electrochemical process.

Galvanic cells are setup between dissimilar metals in contact with each
other or between dissimilar parts of he same metal when surrounded by
moist air or liquid.

Anodic area oxidation takes place

Cathodic area reduction takes place.

Metallic ions formed at the anodic part and ions formed at the
cathodic part diffuses towards each other through conducting
medium and the corrosion product is formed somewhere between
the anodic and cathodic areas.
Anodic iron gets oxidised to Fe2+

M                 Mn+ + ne-

The oxygen at the cathode changes to OH- by reduction.
½ O2 + H2O +2e-                 2 OH-
Factors Affecting
   Corrosion
 Rate & Extent of corrosion
1. The position of metals in the electrochemical Series
                 Metal                     SRP, Eo
                 Lithium----------------- -3.05 V
More oxidation                                         Less Reduction
                 Potassium
                 Calcium
                 Sodium
  Decreasing     Magnesium                            Increasing
  tendency       Aluminum                             order of std
  to loose       Zinc                                 reduction
  electrons      Nickel                               potential
                 Tin
                 Hydrogen--------------- 0.00
                 Copper
                 Silver
                 Platinum
                 Gold---------------------- +1.15 V
When two metals are in contact with each other, in
presence of an electrolyte, the more active metal
becomes the anode and easily undergoes oxidation
ie, corrosion.



                                More active




                          Less active


Greater the difference between the reduction
potentials of the metals, more severe will be the rate of
corrosion.
2. Relative areas of anodic and cathodic parts


When two dissimilar metals or alloys are in
contact and the anodic area is smaller than the
cathodic area, the corrosion of the anode become
rapid and severe.
                    Cathode

                                          Anode
3. Purity of the metal

A pure metal is more corrosion resistant than an
impure metal. The rate and extent of corrosion
increases with the amount of impurities present.
4.Physical state of the metal

Smaller the size of the metal, more the area under
stress and greater is the corrosion.
5. Solubility and volatility of corrosion product


If the product of corrosion is soluble in the
corroding medium and also is volatile, corrosion
occurs faster.
6. Nature of the corroding environment

 A.Temperature: Corrosion generally increases
   with rise in temperature of environment.
 B.Humidity of the air: Rate of corrosion
   increases with presence of moisture in the
   atmosphere.
 C.Impurities: Presence of impurities like
   CO2, H2S, SO2, acid fumes etc increases
   corrosion rate.
 D.Influence of pH: In acid medium corrosion is
   more and in alkaline medium it is less.
Rusting of Iron
Rust: Fe2O3.XH2O            or Fe(OH)3
A galvanic cell is set up between two dissimilar parts of the same
metal iron.

a) The portion of iron which is in contact with water acts as
anode and the other portion in contact with air acts as cathode.

b) Anodic iron gets oxidised to Fe2+
Anode
Fe                Fe2+ + 2e-
Cathode
The oxygen at the cathode changes to OH- by reduction.
½ O2 + H2O +2e-                    2 OH-

The electron released at the anode move through the metal to the
cathodic site.
c) Fe2+ and OH- ions combine to form Fe(OH)2 which gets
oxidized to Fe(OH)3.

Fe2+ + OH-                Fe(OH)2

4 Fe(OH)2   + O2 + 2H2O                     4Fe(OH)3

Overall reaction

2 Fe + O2 + 4H+                     2Fe2+    + 2H2O
Conditions for rusting

1.Impurities in iron
2.Presence of oxygen
3.Presence of moisture
4.Presence of electrolyte
5.Presence of Cl2 or SO2 in the atm.
Prevention of rusting

1.Minimizing the impurities in iron
2. Giving suitable coating of Zn/Sn/Cr
3.Painting the iron surface
Prevention of Corrosion
1. Maintaining the purity of the metal
Pure metals are generally corrosion resistant.
2. Alloying with other elements
It to found that alloying with suitable
elements increases corrosion resistance of
most metals.
3. Modification of environment

Deaeration of aqueous environment and
dehumidification decreases the rate of
corrosion.
4. Barrier protection or Protective coatings


    1.Metallic Coating
    2.Non-metallic coatings
    3.Organic coatings
i. Metallic Coating

a) Using less active metal
b) Using a more active metal


Galvanization is the process of
coating iron or steel sheets with a
thin layer of zinc by dipping in
molten zinc.
The iron or steel article is first cleaned with
dil. H2SO4 at 60-90oC (Pickling).

Then the article is treated with 5% HF to remove
grains of sand, washed with water and dried.

It is dipped in molten zinc (425-450oC).

A layer of zinc gets coated on the article, which
is then pressed through a roller to remove excess
zinc.
ii. Non-Metallic Coating


a) Phosphate coating by alkaline solution of phosphate.
b) Chromate coating using chromate solutions.
c) Anodizing on non-ferrous metals.
iii. Organic Coating

Plastics, polythene, rubber etc, are used for coating to
prevent corrosion.

Mainly on articles like, ship, submarines. Etc.
CATHODIC PROTECTION
         OR
ELECTRICAL PROTECTION
Zn             Zn2+ + 2e-   Anode



½ O2 + H2O + 2e-            2OH-      Cathode




     Cathode


                                      Zn




                                    Anode
Thank You

More Related Content

What's hot (20)

Pitting Corrosion_Rahul
Pitting Corrosion_RahulPitting Corrosion_Rahul
Pitting Corrosion_Rahul
 
corrosion presentation
corrosion presentationcorrosion presentation
corrosion presentation
 
Forms of corrosion
Forms of corrosionForms of corrosion
Forms of corrosion
 
Chapter5 corrosion
Chapter5 corrosionChapter5 corrosion
Chapter5 corrosion
 
Corrosion
CorrosionCorrosion
Corrosion
 
Corrosion Prevention
Corrosion PreventionCorrosion Prevention
Corrosion Prevention
 
Corrosion and it's type
Corrosion and it's typeCorrosion and it's type
Corrosion and it's type
 
Secondary steel making processes
Secondary steel making processesSecondary steel making processes
Secondary steel making processes
 
Corrosion presentation
Corrosion presentationCorrosion presentation
Corrosion presentation
 
Forms Of Corrosion
 Forms Of Corrosion Forms Of Corrosion
Forms Of Corrosion
 
Welding metallurgy and different welding processes
Welding metallurgy and different welding processesWelding metallurgy and different welding processes
Welding metallurgy and different welding processes
 
Corrosion Testing's: OCP, LPR, and PD
Corrosion Testing's: OCP, LPR, and PDCorrosion Testing's: OCP, LPR, and PD
Corrosion Testing's: OCP, LPR, and PD
 
Corrosion seminar 1
Corrosion seminar 1Corrosion seminar 1
Corrosion seminar 1
 
Corrosion and its Control.ppt
Corrosion and its Control.pptCorrosion and its Control.ppt
Corrosion and its Control.ppt
 
Galvanic corrosion
Galvanic corrosionGalvanic corrosion
Galvanic corrosion
 
Different types of corrosion
Different types of corrosionDifferent types of corrosion
Different types of corrosion
 
Corrosion Process and Control
Corrosion Process and ControlCorrosion Process and Control
Corrosion Process and Control
 
Crystal Defects
Crystal DefectsCrystal Defects
Crystal Defects
 
Corrosion basic
Corrosion basicCorrosion basic
Corrosion basic
 
Corrosion types & prevention
Corrosion types & preventionCorrosion types & prevention
Corrosion types & prevention
 

Viewers also liked

Corrosion Sl Part One
Corrosion Sl Part OneCorrosion Sl Part One
Corrosion Sl Part OneSteve1954
 
10 major industrial applications of sulfuric acid
10 major industrial applications of sulfuric acid10 major industrial applications of sulfuric acid
10 major industrial applications of sulfuric acidrita martin
 
Aluminum Anodizing
Aluminum AnodizingAluminum Anodizing
Aluminum AnodizingAACOA.com
 
TALAT Lecture 5203: Anodizing of Aluminium
TALAT Lecture 5203: Anodizing of AluminiumTALAT Lecture 5203: Anodizing of Aluminium
TALAT Lecture 5203: Anodizing of AluminiumCORE-Materials
 
surface characteristics and electrochemical impedance investigation of spark-...
surface characteristics and electrochemical impedance investigation of spark-...surface characteristics and electrochemical impedance investigation of spark-...
surface characteristics and electrochemical impedance investigation of spark-...mohammad fazel
 
Unit 2-science-of-corrosion
Unit 2-science-of-corrosionUnit 2-science-of-corrosion
Unit 2-science-of-corrosionanuragmbst
 
Hand book-of-electroplating-anodizing-surface-finishing
Hand book-of-electroplating-anodizing-surface-finishingHand book-of-electroplating-anodizing-surface-finishing
Hand book-of-electroplating-anodizing-surface-finishingFany van Lopez
 
C16 alcohols and carboxylic acids
C16 alcohols and carboxylic acidsC16 alcohols and carboxylic acids
C16 alcohols and carboxylic acidsChemrcwss
 
Relation betwee n hc print version
Relation betwee n hc  print version Relation betwee n hc  print version
Relation betwee n hc print version sulaimanmohd80
 

Viewers also liked (20)

Prevention of corrosion
Prevention of corrosionPrevention of corrosion
Prevention of corrosion
 
Corrosion
CorrosionCorrosion
Corrosion
 
Cathodic and anodic protection
Cathodic and anodic protectionCathodic and anodic protection
Cathodic and anodic protection
 
final report.edit
final report.editfinal report.edit
final report.edit
 
Chapter 5
Chapter 5Chapter 5
Chapter 5
 
Science of corrosion
Science of corrosionScience of corrosion
Science of corrosion
 
Corrosion Sl Part One
Corrosion Sl Part OneCorrosion Sl Part One
Corrosion Sl Part One
 
10 major industrial applications of sulfuric acid
10 major industrial applications of sulfuric acid10 major industrial applications of sulfuric acid
10 major industrial applications of sulfuric acid
 
Principles of corrosion
Principles of corrosionPrinciples of corrosion
Principles of corrosion
 
Aluminum Anodizing
Aluminum AnodizingAluminum Anodizing
Aluminum Anodizing
 
CORROSIVE DAMAGE IN METALS AND ITS PREVENTION
CORROSIVE DAMAGE IN METALS AND ITS PREVENTIONCORROSIVE DAMAGE IN METALS AND ITS PREVENTION
CORROSIVE DAMAGE IN METALS AND ITS PREVENTION
 
TALAT Lecture 5203: Anodizing of Aluminium
TALAT Lecture 5203: Anodizing of AluminiumTALAT Lecture 5203: Anodizing of Aluminium
TALAT Lecture 5203: Anodizing of Aluminium
 
Zwilling
ZwillingZwilling
Zwilling
 
surface characteristics and electrochemical impedance investigation of spark-...
surface characteristics and electrochemical impedance investigation of spark-...surface characteristics and electrochemical impedance investigation of spark-...
surface characteristics and electrochemical impedance investigation of spark-...
 
Unit 2-science-of-corrosion
Unit 2-science-of-corrosionUnit 2-science-of-corrosion
Unit 2-science-of-corrosion
 
Acids And Bases
Acids And  BasesAcids And  Bases
Acids And Bases
 
Hand book-of-electroplating-anodizing-surface-finishing
Hand book-of-electroplating-anodizing-surface-finishingHand book-of-electroplating-anodizing-surface-finishing
Hand book-of-electroplating-anodizing-surface-finishing
 
C16 alcohols and carboxylic acids
C16 alcohols and carboxylic acidsC16 alcohols and carboxylic acids
C16 alcohols and carboxylic acids
 
Corrosion.ppt
Corrosion.pptCorrosion.ppt
Corrosion.ppt
 
Relation betwee n hc print version
Relation betwee n hc  print version Relation betwee n hc  print version
Relation betwee n hc print version
 

Similar to Corrosion-Dr. Surendran Parambadath

Chemistry of Materials4_CORROSION.pptx
Chemistry of Materials4_CORROSION.pptxChemistry of Materials4_CORROSION.pptx
Chemistry of Materials4_CORROSION.pptxsant4chem1
 
2-Corrosion-Its-Control.ppt
2-Corrosion-Its-Control.ppt2-Corrosion-Its-Control.ppt
2-Corrosion-Its-Control.pptShararehShojaei1
 
I/II SEM BE, VTU, ENGINEERING CHEMISTRY , Module 2
I/II SEM BE, VTU, ENGINEERING CHEMISTRY , Module 2I/II SEM BE, VTU, ENGINEERING CHEMISTRY , Module 2
I/II SEM BE, VTU, ENGINEERING CHEMISTRY , Module 2rashmi m rashmi
 
22CYT12 & Chemistry for Computer Systems_Unit-II-Corrosion & its Control Meth...
22CYT12 & Chemistry for Computer Systems_Unit-II-Corrosion & its Control Meth...22CYT12 & Chemistry for Computer Systems_Unit-II-Corrosion & its Control Meth...
22CYT12 & Chemistry for Computer Systems_Unit-II-Corrosion & its Control Meth...KrishnaveniKrishnara1
 
vnd.openxmlformats-officedocument.presentationml.presentation&rendition=1.pptx
vnd.openxmlformats-officedocument.presentationml.presentation&rendition=1.pptxvnd.openxmlformats-officedocument.presentationml.presentation&rendition=1.pptx
vnd.openxmlformats-officedocument.presentationml.presentation&rendition=1.pptxVictus4
 
Corrosion and degradation of materials
Corrosion and degradation of materialsCorrosion and degradation of materials
Corrosion and degradation of materialsGhassan Alshahiri
 
Corrosion
CorrosionCorrosion
CorrosionKumar
 
ENGINEERING CHEMISTRY: Module 2-corrosion & its control - metal finishing
ENGINEERING CHEMISTRY: Module 2-corrosion & its control - metal finishingENGINEERING CHEMISTRY: Module 2-corrosion & its control - metal finishing
ENGINEERING CHEMISTRY: Module 2-corrosion & its control - metal finishingrashmi m rashmi
 
Corrosion Chemistry : Its Causes and Remedy
Corrosion Chemistry : Its Causes and RemedyCorrosion Chemistry : Its Causes and Remedy
Corrosion Chemistry : Its Causes and RemedyArijitDhali
 
Theories of Corrosion - Copy.pdf
Theories of Corrosion - Copy.pdfTheories of Corrosion - Copy.pdf
Theories of Corrosion - Copy.pdfPranavVaidya33
 
EC-CDT-Unit-2; Corrosion and types of corrosion
EC-CDT-Unit-2; Corrosion and types of corrosionEC-CDT-Unit-2; Corrosion and types of corrosion
EC-CDT-Unit-2; Corrosion and types of corrosionb23me005
 

Similar to Corrosion-Dr. Surendran Parambadath (20)

Chemistry of Materials4_CORROSION.pptx
Chemistry of Materials4_CORROSION.pptxChemistry of Materials4_CORROSION.pptx
Chemistry of Materials4_CORROSION.pptx
 
2-Corrosion-Its-Control.ppt
2-Corrosion-Its-Control.ppt2-Corrosion-Its-Control.ppt
2-Corrosion-Its-Control.ppt
 
2-Corrosion-Its-Control.ppt
2-Corrosion-Its-Control.ppt2-Corrosion-Its-Control.ppt
2-Corrosion-Its-Control.ppt
 
CORROSION ENGINEERING.pptx
CORROSION ENGINEERING.pptxCORROSION ENGINEERING.pptx
CORROSION ENGINEERING.pptx
 
Corrosion.pptx
Corrosion.pptxCorrosion.pptx
Corrosion.pptx
 
Corrosion & Mechanism of Dry corrosion
Corrosion & Mechanism of Dry corrosionCorrosion & Mechanism of Dry corrosion
Corrosion & Mechanism of Dry corrosion
 
I/II SEM BE, VTU, ENGINEERING CHEMISTRY , Module 2
I/II SEM BE, VTU, ENGINEERING CHEMISTRY , Module 2I/II SEM BE, VTU, ENGINEERING CHEMISTRY , Module 2
I/II SEM BE, VTU, ENGINEERING CHEMISTRY , Module 2
 
22CYT12 & Chemistry for Computer Systems_Unit-II-Corrosion & its Control Meth...
22CYT12 & Chemistry for Computer Systems_Unit-II-Corrosion & its Control Meth...22CYT12 & Chemistry for Computer Systems_Unit-II-Corrosion & its Control Meth...
22CYT12 & Chemistry for Computer Systems_Unit-II-Corrosion & its Control Meth...
 
Corrosion & its control measures
Corrosion & its control measuresCorrosion & its control measures
Corrosion & its control measures
 
vnd.openxmlformats-officedocument.presentationml.presentation&rendition=1.pptx
vnd.openxmlformats-officedocument.presentationml.presentation&rendition=1.pptxvnd.openxmlformats-officedocument.presentationml.presentation&rendition=1.pptx
vnd.openxmlformats-officedocument.presentationml.presentation&rendition=1.pptx
 
Types of corrosion
Types of corrosionTypes of corrosion
Types of corrosion
 
Corrosion and degradation of materials
Corrosion and degradation of materialsCorrosion and degradation of materials
Corrosion and degradation of materials
 
Corrosion
CorrosionCorrosion
Corrosion
 
ENGINEERING CHEMISTRY: Module 2-corrosion & its control - metal finishing
ENGINEERING CHEMISTRY: Module 2-corrosion & its control - metal finishingENGINEERING CHEMISTRY: Module 2-corrosion & its control - metal finishing
ENGINEERING CHEMISTRY: Module 2-corrosion & its control - metal finishing
 
Wet corrosion and its types with mechanisms
Wet corrosion and its types with mechanismsWet corrosion and its types with mechanisms
Wet corrosion and its types with mechanisms
 
Corrosion.pdf
Corrosion.pdfCorrosion.pdf
Corrosion.pdf
 
Corrosion
CorrosionCorrosion
Corrosion
 
Corrosion Chemistry : Its Causes and Remedy
Corrosion Chemistry : Its Causes and RemedyCorrosion Chemistry : Its Causes and Remedy
Corrosion Chemistry : Its Causes and Remedy
 
Theories of Corrosion - Copy.pdf
Theories of Corrosion - Copy.pdfTheories of Corrosion - Copy.pdf
Theories of Corrosion - Copy.pdf
 
EC-CDT-Unit-2; Corrosion and types of corrosion
EC-CDT-Unit-2; Corrosion and types of corrosionEC-CDT-Unit-2; Corrosion and types of corrosion
EC-CDT-Unit-2; Corrosion and types of corrosion
 

More from Surendran Parambadath

Soaps and detergents Dr. surendran parambadath
Soaps and detergents  Dr. surendran parambadathSoaps and detergents  Dr. surendran parambadath
Soaps and detergents Dr. surendran parambadathSurendran Parambadath
 
Nanomaterials dr.surendran prambadath
Nanomaterials dr.surendran prambadathNanomaterials dr.surendran prambadath
Nanomaterials dr.surendran prambadathSurendran Parambadath
 
Formula and equations dr.surendran prambadath
Formula and equations dr.surendran prambadathFormula and equations dr.surendran prambadath
Formula and equations dr.surendran prambadathSurendran Parambadath
 
Acids and bases dr.surendran prambadath
Acids and bases dr.surendran prambadathAcids and bases dr.surendran prambadath
Acids and bases dr.surendran prambadathSurendran Parambadath
 
Surface chemistry-Dr. Surendran Parambadath
Surface chemistry-Dr. Surendran ParambadathSurface chemistry-Dr. Surendran Parambadath
Surface chemistry-Dr. Surendran ParambadathSurendran Parambadath
 
Organic chemistry Dr. Surendran Parambadath
Organic chemistry Dr. Surendran ParambadathOrganic chemistry Dr. Surendran Parambadath
Organic chemistry Dr. Surendran ParambadathSurendran Parambadath
 
Environmental chemistry-Dr. Surendran Parambadath
Environmental chemistry-Dr. Surendran ParambadathEnvironmental chemistry-Dr. Surendran Parambadath
Environmental chemistry-Dr. Surendran ParambadathSurendran Parambadath
 
Electrochemistry-Dr. Surendran Parambadath
Electrochemistry-Dr. Surendran ParambadathElectrochemistry-Dr. Surendran Parambadath
Electrochemistry-Dr. Surendran ParambadathSurendran Parambadath
 

More from Surendran Parambadath (11)

Soaps and detergents Dr. surendran parambadath
Soaps and detergents  Dr. surendran parambadathSoaps and detergents  Dr. surendran parambadath
Soaps and detergents Dr. surendran parambadath
 
Nanomaterials dr.surendran prambadath
Nanomaterials dr.surendran prambadathNanomaterials dr.surendran prambadath
Nanomaterials dr.surendran prambadath
 
Formula and equations dr.surendran prambadath
Formula and equations dr.surendran prambadathFormula and equations dr.surendran prambadath
Formula and equations dr.surendran prambadath
 
Acids and bases dr.surendran prambadath
Acids and bases dr.surendran prambadathAcids and bases dr.surendran prambadath
Acids and bases dr.surendran prambadath
 
P h dr.surendran prambadath
P h dr.surendran prambadathP h dr.surendran prambadath
P h dr.surendran prambadath
 
Surface chemistry-Dr. Surendran Parambadath
Surface chemistry-Dr. Surendran ParambadathSurface chemistry-Dr. Surendran Parambadath
Surface chemistry-Dr. Surendran Parambadath
 
Polumers-Dr. Surendran Parambadath
Polumers-Dr. Surendran ParambadathPolumers-Dr. Surendran Parambadath
Polumers-Dr. Surendran Parambadath
 
Organic chemistry Dr. Surendran Parambadath
Organic chemistry Dr. Surendran ParambadathOrganic chemistry Dr. Surendran Parambadath
Organic chemistry Dr. Surendran Parambadath
 
Fuels-Dr. Surendran Parambadath
Fuels-Dr. Surendran ParambadathFuels-Dr. Surendran Parambadath
Fuels-Dr. Surendran Parambadath
 
Environmental chemistry-Dr. Surendran Parambadath
Environmental chemistry-Dr. Surendran ParambadathEnvironmental chemistry-Dr. Surendran Parambadath
Environmental chemistry-Dr. Surendran Parambadath
 
Electrochemistry-Dr. Surendran Parambadath
Electrochemistry-Dr. Surendran ParambadathElectrochemistry-Dr. Surendran Parambadath
Electrochemistry-Dr. Surendran Parambadath
 

Corrosion-Dr. Surendran Parambadath

  • 1.
  • 2. Dr. SURENDRAN PARAMBADATH (M.Sc, M.Phil, M.Tech) Formerly: Post Doctoral Research Associate, Nano-Information Materials Research Laboratory, Pusan National University, Busan-South Korea Currently: Assistant Professor Govt. Polytechnic College, Perinthalmanna
  • 3. Nature keep all metals in their ore form. Metals are usually extracted from their ores. Nature tries to convert the metals again into their ore form. The surface of metals are attacked when exposed to environment. Chemicals are chemically turned to new substances such as oxides, hydated oxides, carbonates, chlorides, sulphides, sulphates etc having entirely new properties. Once the metals begin to decay or get corroded, they suffer a loss in electrical conductivity, tensile strength, color and luster.
  • 4. Definition of Corrosion Corrosion is the slow process of decay of the metal, due to the attack of the atmosphere gases on the surface of the metal, resulting in the formation of metallic compounds such oxides, hydroxides, carbonates, sulphides etc. OR Corrosion is the process of destruction or deterioration of the metal and alloys by unwanted or unintentional chemical or electrochemical attack by its environments staring its surface.
  • 5. Type of Corrosion 1. Dry or Chemical Corrosion: It is due to the direct chemical action of environmental atmosphere gases such as O2. H2S, SO2, N2, halogens or anhydrous inorganic liquids with metal surfaces. 2. Wet or Electrochemical Corrosion: It is due to the existence of separate “anodic” and “cathodic” areas in the system between which current flows through the conducting liquid and the anode gets oxidized and wasted.
  • 6. Electrochemical Theory of Corrosion (Mechanism Of Corrosion) Corrosion is an electrochemical process. Galvanic cells are setup between dissimilar metals in contact with each other or between dissimilar parts of he same metal when surrounded by moist air or liquid. Anodic area oxidation takes place Cathodic area reduction takes place. Metallic ions formed at the anodic part and ions formed at the cathodic part diffuses towards each other through conducting medium and the corrosion product is formed somewhere between the anodic and cathodic areas.
  • 7. Anodic iron gets oxidised to Fe2+ M Mn+ + ne- The oxygen at the cathode changes to OH- by reduction. ½ O2 + H2O +2e- 2 OH-
  • 8. Factors Affecting Corrosion Rate & Extent of corrosion
  • 9. 1. The position of metals in the electrochemical Series Metal SRP, Eo Lithium----------------- -3.05 V More oxidation Less Reduction Potassium Calcium Sodium Decreasing Magnesium Increasing tendency Aluminum order of std to loose Zinc reduction electrons Nickel potential Tin Hydrogen--------------- 0.00 Copper Silver Platinum Gold---------------------- +1.15 V
  • 10. When two metals are in contact with each other, in presence of an electrolyte, the more active metal becomes the anode and easily undergoes oxidation ie, corrosion. More active Less active Greater the difference between the reduction potentials of the metals, more severe will be the rate of corrosion.
  • 11. 2. Relative areas of anodic and cathodic parts When two dissimilar metals or alloys are in contact and the anodic area is smaller than the cathodic area, the corrosion of the anode become rapid and severe. Cathode Anode
  • 12. 3. Purity of the metal A pure metal is more corrosion resistant than an impure metal. The rate and extent of corrosion increases with the amount of impurities present.
  • 13. 4.Physical state of the metal Smaller the size of the metal, more the area under stress and greater is the corrosion.
  • 14. 5. Solubility and volatility of corrosion product If the product of corrosion is soluble in the corroding medium and also is volatile, corrosion occurs faster.
  • 15. 6. Nature of the corroding environment A.Temperature: Corrosion generally increases with rise in temperature of environment. B.Humidity of the air: Rate of corrosion increases with presence of moisture in the atmosphere. C.Impurities: Presence of impurities like CO2, H2S, SO2, acid fumes etc increases corrosion rate. D.Influence of pH: In acid medium corrosion is more and in alkaline medium it is less.
  • 17.
  • 18. Rust: Fe2O3.XH2O or Fe(OH)3 A galvanic cell is set up between two dissimilar parts of the same metal iron. a) The portion of iron which is in contact with water acts as anode and the other portion in contact with air acts as cathode. b) Anodic iron gets oxidised to Fe2+ Anode Fe Fe2+ + 2e- Cathode The oxygen at the cathode changes to OH- by reduction. ½ O2 + H2O +2e- 2 OH- The electron released at the anode move through the metal to the cathodic site.
  • 19. c) Fe2+ and OH- ions combine to form Fe(OH)2 which gets oxidized to Fe(OH)3. Fe2+ + OH- Fe(OH)2 4 Fe(OH)2 + O2 + 2H2O 4Fe(OH)3 Overall reaction 2 Fe + O2 + 4H+ 2Fe2+ + 2H2O
  • 20. Conditions for rusting 1.Impurities in iron 2.Presence of oxygen 3.Presence of moisture 4.Presence of electrolyte 5.Presence of Cl2 or SO2 in the atm.
  • 21. Prevention of rusting 1.Minimizing the impurities in iron 2. Giving suitable coating of Zn/Sn/Cr 3.Painting the iron surface
  • 23. 1. Maintaining the purity of the metal Pure metals are generally corrosion resistant.
  • 24.
  • 25. 2. Alloying with other elements It to found that alloying with suitable elements increases corrosion resistance of most metals.
  • 26. 3. Modification of environment Deaeration of aqueous environment and dehumidification decreases the rate of corrosion.
  • 27. 4. Barrier protection or Protective coatings 1.Metallic Coating 2.Non-metallic coatings 3.Organic coatings
  • 28. i. Metallic Coating a) Using less active metal b) Using a more active metal Galvanization is the process of coating iron or steel sheets with a thin layer of zinc by dipping in molten zinc.
  • 29.
  • 30. The iron or steel article is first cleaned with dil. H2SO4 at 60-90oC (Pickling). Then the article is treated with 5% HF to remove grains of sand, washed with water and dried. It is dipped in molten zinc (425-450oC). A layer of zinc gets coated on the article, which is then pressed through a roller to remove excess zinc.
  • 31. ii. Non-Metallic Coating a) Phosphate coating by alkaline solution of phosphate. b) Chromate coating using chromate solutions. c) Anodizing on non-ferrous metals.
  • 32. iii. Organic Coating Plastics, polythene, rubber etc, are used for coating to prevent corrosion. Mainly on articles like, ship, submarines. Etc.
  • 33.
  • 34. CATHODIC PROTECTION OR ELECTRICAL PROTECTION
  • 35. Zn Zn2+ + 2e- Anode ½ O2 + H2O + 2e- 2OH- Cathode Cathode Zn Anode
  • 36.