Metal Failure Mitigation

Why is My Metal Eroding? How to Mitigate Metal Erosion

erosion corrosion and erosive wear metal failure of piping due to lack of nickel chrome plating

Metal erosion can occur in metals for many reasons, including fluid properties, environmental conditions, surface characteristics, mechanical stresses, and more. The common factor among all causes of erosion is surface deterioration, which ultimately leads to material loss.

For companies that design, manufacture, or use metal parts, tools, devices, or equipment, there are two ways to deal with erosion. The first is to see the gradual deterioration of metal assets as inevitable and to deal with the consequences as they occur. The second is to take action to counteract metal erosion from becoming erosive metal failure and thereby minimize the consequences.

Erosion will continually attack metal surfaces. The question is whether a business takes action to defend its assets? and if so, what actions does it take?

Why Does Metal Erosion Happen?

Erosion is a form of material failure that occurs when a moving fluid interacts with a metal surface, gradually removing material over time. In some environments, the fluid may also contribute to corrosion, creating a combined erosion-corrosion mechanism that can accelerate surface damage. As high-velocity fluids flow across a metal surface, they can wear away protective surface layers and exploit microscopic surface imperfections. Over time, these small defects can grow and combine, leading to localized attack, increased surface roughness, and accelerated material loss. As a result, systems characterized by rough surfaces, high turbulence, or fluids containing suspended abrasive particles are often more susceptible to erosion and erosion-corrosion damage.

Erosion is Going to Happen. Why Fight It?

There are many reasons that taking a fatalist attitude about erosion is not a good business strategy. One is that it can be very costly. When a part, tool, or machine fails, it can create damage that goes far beyond the part itself. In a worst-case scenario, the failure of one small part worth a few dollars could, conceivably, create a chain reaction that results in thousands of dollars or more in damage.

Metal failure can also bring work processes to a halt, and the loss of productivity can have a negative impact on revenue. Plus, there is the loss of customer goodwill if a shutdown lasts long enough that it jeopardizes production deadlines. Also, if there is a contractual obligation related to the output of a particular process, there could even be legal ramifications.

And, of course, amplifying the risk of simply accepting metal erosion is the unpredictability of metal failure. Even if a business regularly inspects crucial metal assets and monitors the progression of erosion, there is no way to know if an item will fail six months from now or six minutes from now. As a result, companies that take this approach either have to replace worn items as soon as damage is noticeable or hope for the best and prepare for the worst.

Metal erosion being shown through heavily eroded pipes

Severely eroded metal pipes

How Can I Address Metal Erosion?

There are multiple ways to address metal erosion and failure—some more advantageous than others. As noted above, one option is to let it happen and simply budget for the necessary repairs or replacements. But, of course, it seems that problems have a habit of arising at the worst possible time—like the shutdown of a production line when a company is working ‘round the clock’ to meet a delivery deadline.

Another option is to “go back to the drawing board” and re-engineer an item in a way that makes it less subject to erosion, such as thickening it so it takes longer to erode or changing its shape to reduce the effect that moving liquids and gasses have on it. This can, of course, be a very expensive endeavor.

A third option is to coat erosion-prone surfaces with chromium. One of the hardest metals on the planet, chromium can withstand far greater erosive forces than most other types of metal or metal alloy. Plus, it can be applied in incredibly thin layers that offer outstanding erosion resistance without affecting an item’s shape or functional characteristics in any substantial way.

Will even the most advanced chromium coating protect an item indefinitely? No. It is virtually impossible to resist a force of nature like erosion forever. That said, however, a chromium coating can dramatically decrease the rate at which an item erodes, and the coating can be removed and reapplied as needed. While there is a certain amount of time and expense associated with each application, it is far less than replacing or repairing items at the frequency necessitated by unchecked erosion.

Mitigating Erosion Before It Starts

Being proactive by applying chromium to vital metal assets before they are ever put into service and refreshing that coating as needed, typically after countless use cycles, is a far more effective strategy than being reactive and addressing problems as they arise. The time and effort put into protecting items are much less than the requirements to fix or replace them.

Plus, with metal assets properly protected, everyone can focus on important tasks and not be waiting for and worrying about the next metal failure incident.

Frequently Asked Questions

What causes erosion in metal?

Erosion can result from a wide range of factors, including fluid dynamics, environmental conditions, surface characteristics, mechanical loading, and other operational influences. Although the specific mechanisms may vary, all forms of erosion share a common outcome: the gradual degradation of a material’s surface, ultimately leading to the loss of material and reduced structural integrity.

Can metal erosion be completely prevented?

No; however, effective planning and the use of erosion-resistant metal coatings can greatly mitigate material degradation, significantly extending the operational lifespan of affected components.

What is the best way to prevent metal erosion?

There is no universal solution for preventing or mitigating metal erosion, as the most effective approach depends on the specific operating conditions and erosion mechanisms involved. However, chromium-based coatings are often highly effective due to their exceptional hardness, wear resistance, and mechanical strength. These properties help protect underlying materials from surface degradation, significantly reducing erosion rates and extending component service life.

How do you protect metal from erosion?

Metal erosion can be mitigated in a variety of ways, with the most appropriate solution often depending on the operating environment and the underlying erosion mechanisms. Two of the most common approaches are thoughtful system design and the use of protective surface coatings. Design modifications can help reduce the conditions that contribute to erosive wear, while coatings can provide an additional layer of protection against surface degradation. For example, Armoloy’s thin dense chrome coatings are frequently used to increase surface hardness and wear resistance, which may help improve a component’s ability to withstand erosive forces and extend its service life.

 

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Written and reviewed by:

The Armoloy Corporation & John R. Riley

Surface Engineering and Industrial Coating Specialists

This article was reviewed by The Armoloy Corporation, a global provider of engineered surface coatings for wear resistance, corrosion protection, friction reduction, and improved metal component performance. Supported by their own laboratory and decades of surface engineering experience, Armoloy works with manufacturers, engineers, and industrial teams across aerospace, oil and gas, medical, automotive, food processing, tooling, and other demanding applications.

  • Expertise: Thin dense chrome, electroless nickel, electrolytic nickel, hybrid coatings, metal failure prevention, and surface engineering
  • Industries served: Aerospace, defense, oil and gas, food processing, medical, automotive, bearings, tooling, and precision manufacturing

Have a coating or material compatibility question? Contact Armoloy to speak with an applications specialist.