Friday, 4 July 2014

What is hydrogen attack

A surprising fact is that hydrogen atoms are very small and hydrogen ions even smaller and can penetrate most metals. Hydrogen, by various mechanisms, embrittles a metal especially in areas of high hardness causing blistering or cracking especially in the presence of tensile stresses.

Prevent

This problem can be prevented by

  • Using a resistant or hydrogen free material
  • Avoiding sources of hydrogen such as cathodic protection, pickling processes and certain welding processes
  • Removal of hydrogen in the metal by baking.


Corrosion Main

What is Localized Corrosion

Localized corrosion is responsible for 70 % failures from corrosion. 
The consequences of localized corrosion can be a great deal more severe than uniform corrosion generally because the failure occurs without warning and after a surprisingly short period of use or exposure.
Following are the different forms of Localized Corrosion.

  1. Galvanic Corrosion
  2. Pitting Corrosion
  3. Selective Attack
  4. Stray current corrosion
  5. Microbial Corrosion
  6. Inter Granular Corrosion
  7. Concentration Cell Corrosion
  8. Thermogalvanic Corrosion
  9. Corrosion Caused by combined action
  10. Corrosion Fatigue
  11. Fretting Corrosion
  12. Stress Corrosion Cracking
  13. Hydrogen Attack
 

Corrosion Main

What is stress corrosion cracking


The combined action of a static tensile stress and corrosion which forms cracks and eventually catastrophic failure of the component. This is specific to a metal material paired with a specific environment.

Prevention


Prevention can be achieved by:

  • Reducing the overall stress level and designing out stress concentrations
  • Selection of a suitable material not susceptible to the environment
  • Design to minimise thermal and residual stresses
  • Developing compressive stresses in the surface the material
  • Use of a suitable protective coating
Corrosion main

What is Fretting Corrosion

Relative motion between two surfaces in contact by a stick-slip action causing breakdown of protective films or welding of the contact areas allowing other corrosion mechanisms to operate.

Prevention

Prevention is possible by:

  • Designing out vibrations
  • Lubrication of metal surfaces
  • Increasing the load between the surfaces to stop the motion
  • Surface treatments to reduce wear and increase friction coefficient.


Corrosion Main

What is Corrosion Fatigue


The combined action of cyclic stresses and a corrosive environment reduce the life of components below that expected by the action of fatigue alone. This can be reduced or prevented by;

  • Coating the material
  • Good design that reduces stress concentration
  • Avoiding sudden changes of section
  • Removing or isolating sources of cyclic stress

Corrosion Main

What is corrosion caused by combined action


This is corrosion accelerated by the action of fluid flow sometimes with the added pressure of abrasive particles in the stream. The protective layers and corrosion products of the metal are continually removed exposing fresh metal to corrosion.

Prevention


Prevention can be achieved by:

  • Reducing the flow rate and turbulence
  • Use of replaceable or robust linings in susceptible areas
  • Avoiding sudden changes of direction
  • Streamlining or avoiding obstructions to the flow

Corrosion Main

What is Thermogalvanic Corrosion


Temperature changes can alter the corrosion rate of a material and a good rule of thumb is

that 10 oC rise doubles the corrosion rate. If one part of component is hotter than another the
difference in the corrosion rate is accentuated by the thermal gradient and local attack occurs in a zone between the maximum and minimum temperatures. The best method of prevention is to design out the thermal gradient or supply a coolant to even out the difference.

Corrosion main

Concentration Cell Corrosion (Crevice)

If two areas of a component in close proximity differ in the amount of reactive constituent available the reaction in one of the areas is speeded up. An example of this is crevice corrosion which occurs when oxygen cannot penetrate a crevice and a differential aeration cell is set up. Corrosion occurs rapidly in the area with less oxygen.
 
 

Prevention

The potential for crevice corrosion can be reduced by:

  • Avoiding sharp corners and designing out stagnant areas
  • Use of sealants
  • Use welds instead of bolts or rivets
  • Selection of resistant materials
Corrosion Main

What is intergranular corrosion


This is preferential attack of the grain boundaries of the crystals that form the metal. It is caused by the physical and chemical differences between the centres and edges of the grain.
 

Prevention


It can be avoided by:

Selection of stabilised materials
Control of heat treatments and processing to avoid susceptible temperature range

Corrosion Main

What is Microbial Corrosion

This general class covers the degradation of materials by bacteria, molds and fungi or their by-products. It can occur by a range of actions such as:

  • Attack of the metal or protective coating by acid by-products, sulphur, hydrogen sulphide or ammonia
  • Direct interaction between the microbes and metal which sustains attack.

Prevention

Prevention can be achieved by:

  • Selection of resistant materials
  • Frequent cleaning
  • Control of chemistry of surrounding media and removal of nutrients
  • Use of biocides
  • Cathodic protection.
Corrosion Main