Steel Corrosion and protection Flashcards

1
Q

Corrosion is

A

degradation in properties and appearance

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2
Q

The corrosion of steel is simply iron in steel returning to

A

a hydrated iron hydroxide

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3
Q

where does corrosion occur?

A

surface of the metal

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4
Q

Direct losses due to corrosion are

A

component replacement
money spent on expensive corrosion resistant materials

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5
Q

indirect losses due to corrosion are

A

plant shutdown
loss of product in pipes
loss of efficiency
contamination of production

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6
Q

Corrosion is an [] effect

A

electrochemical (electrons are transferred/ REDOX reaction)

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7
Q

metals get oxidised at the []

A

anode

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8
Q

outline the steps of how corrosion forms rust

A

when wet, it is energetically favourable for iron to rust:

iron oxide
V
blast furnace redox reaction
V
Iron
V
reformation of oxide in electrochemical process
V
back to iron oxide again

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9
Q

What does the galvanic series describe?

A

relative reactivity of common materials in seawater

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10
Q

What is the order of the galvanic series from inert to active?

A

platinum
gold
graphite
titanium
silver
stainless steel
nickel
copper
tin
lead
iron
aluminium
cadmium
zinc
magnesium

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11
Q

inert materials are

A

cathodic

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12
Q

active materials are

A

anodic

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13
Q

steel pipes can be coated in a polymer called []. Why is this good?

A

epoxy

excellent adhesion to steel and high chemical resistance

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14
Q

What are the main methods of avoiding corrosion?

A

physical barrier (paint covering)
galvanic protection
cathodic protection (circuit)

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15
Q

what issues might arise with using a physical barrier for avoiding corrosion?

A

coating itself may not last

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16
Q

How does galvanic protection work?

A

nearby a steel pipeline a rod of magnesium is installed

the magnesium is the sacrificial anode which loses electrons and will get consumed in the process

these electrons travel using the moisture in the soil as an electrolyte

the steel pipe, being a cathode will be protected by the reduction of oxygen and moisture in the soil.

(instead of corrosion of steel, we sacrifice an anode instead)

17
Q

How does Cathodic protection work?

A

e- are supplied externally via power supply

-ve end of power supply attached to metal we are protecting (cathode)

+ve end attached to inert anode

power supply flows e- from inert anode to cathode, completing the circuit.

anode corrodes in place of steel

18
Q

What is hot dip galvanic coating?

A

steel dipped into Zinc produces many protective intermetallic layers by reacting with steel itself

19
Q

What happens if galvanised coating gets damaged?

A

galvanised coating continues to protect steel by providing a barrier and sacrificial protection

20
Q

What are the advantages of hot dip galvanic coating?

A

zinc weathers slowly

coating corrodes preferentially to provide superficial protection to exposed steel

if damage is large, sacrificial protection prevents sideways creep as to not undermine coating

21
Q

Explain the chemistry of rust formation

A

inside a water droplet on the surface of iron, where O2 from the atmosphere is also entering the droplet:

anodic site of iron: Fe > Fe2+ 2e-

electrons travel from anode to cathode

cathodic site of iron: O2 + 2H20 +4e- > 4OH-

precipitation caused by free iron and hydroxide ions: Fe2+ _2OH- > Fe(OH)2

rust formation caused by oxidation of iron hydroxide:
4Fe(OH)2 + O2 > 2FeO3H2O + H2O