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The Problem: Its Characterisation and Effects on Particular Alloy Classes

Jese Leos
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Published in Gaseous Hydrogen Embrittlement Of Materials In Energy Technologies: The Problem Its Characterisation And Effects On Particular Alloy Classes (Woodhead In Metals And Surface Engineering)
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Alloy corrosion is a serious problem that can affect a wide range of industries. It can lead to the failure of equipment, the contamination of products, and the loss of valuable assets. In Free Download to mitigate the effects of alloy corrosion, it is important to understand the problem, its characterisation, and its effects on particular alloy classes.

Gaseous Hydrogen Embrittlement of Materials in Energy Technologies: The Problem its Characterisation and Effects on Particular Alloy Classes (Woodhead in Metals and Surface Engineering)
Gaseous Hydrogen Embrittlement of Materials in Energy Technologies: The Problem, its Characterisation and Effects on Particular Alloy Classes (Woodhead ... Series in Metals and Surface Engineering)
by Clive W. Humphris

5 out of 5

Language : English
File size : 18802 KB
Text-to-Speech : Enabled
Enhanced typesetting : Enabled
Screen Reader : Supported
Print length : 1183 pages

The Problem

Alloy corrosion is the deterioration of an alloy due to its interaction with its environment. This interaction can take place in a number of ways, including:

  • Chemical reactions between the alloy and the environment
  • Electrochemical reactions between the alloy and the environment
  • Mechanical wear and tear

Alloy corrosion can lead to a number of problems, including:

  • The failure of equipment
  • The contamination of products
  • The loss of valuable assets

Characterisation of Alloy Corrosion

In Free Download to mitigate the effects of alloy corrosion, it is important to characterise the problem. This can be done by:

  • Identifying the type of corrosion
  • Determining the extent of the corrosion
  • Assessing the impact of the corrosion on the alloy's performance

Once the problem has been characterised, it is possible to develop strategies to mitigate its effects.

Effects of Alloy Corrosion on Particular Alloy Classes

The effects of alloy corrosion can vary depending on the alloy class. Some alloy classes are more resistant to corrosion than others. However, all alloy classes are susceptible to corrosion under the right conditions.

The following are some of the most common alloy classes and their susceptibility to corrosion:

  • Iron-based alloys: Iron-based alloys are the most common type of alloy used in industry. They are relatively inexpensive and easy to work with. However, they are also susceptible to corrosion, especially in the presence of moisture and oxygen.
  • Nickel-based alloys: Nickel-based alloys are more resistant to corrosion than iron-based alloys. They are often used in applications where corrosion resistance is critical, such as in the aerospace and chemical industries.
  • Aluminum alloys: Aluminum alloys are lightweight and strong. They are also resistant to corrosion in many environments. However, they can be susceptible to corrosion in the presence of certain chemicals, such as acids and bases.
  • Copper alloys: Copper alloys are good conductors of heat and electricity. They are also resistant to corrosion in many environments. However, they can be susceptible to corrosion in the presence of certain chemicals, such as ammonia and sulfur compounds.

The effects of alloy corrosion can be significant. It can lead to the failure of equipment, the contamination of products, and the loss of valuable assets. In Free Download to mitigate the effects of alloy corrosion, it is important to understand the problem, its characterisation, and its effects on particular alloy classes.

Gaseous Hydrogen Embrittlement of Materials in Energy Technologies: The Problem its Characterisation and Effects on Particular Alloy Classes (Woodhead in Metals and Surface Engineering)
Gaseous Hydrogen Embrittlement of Materials in Energy Technologies: The Problem, its Characterisation and Effects on Particular Alloy Classes (Woodhead ... Series in Metals and Surface Engineering)
by Clive W. Humphris

5 out of 5

Language : English
File size : 18802 KB
Text-to-Speech : Enabled
Enhanced typesetting : Enabled
Screen Reader : Supported
Print length : 1183 pages
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Gaseous Hydrogen Embrittlement of Materials in Energy Technologies: The Problem its Characterisation and Effects on Particular Alloy Classes (Woodhead in Metals and Surface Engineering)
Gaseous Hydrogen Embrittlement of Materials in Energy Technologies: The Problem, its Characterisation and Effects on Particular Alloy Classes (Woodhead ... Series in Metals and Surface Engineering)
by Clive W. Humphris

5 out of 5

Language : English
File size : 18802 KB
Text-to-Speech : Enabled
Enhanced typesetting : Enabled
Screen Reader : Supported
Print length : 1183 pages
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