Corrosion of Nickel Alloys
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The Corrosion properties of Nickel Alloys


Nickel alloys (often referred to as Hastelloy*) are a common material used when typical steel materials don’t offer the corrosion performance that is needed.  Hastelloy offer en general a better corrosion performance than titanium. Only a few metals like e.g. Zirconium and Tantalum is supperior to Hastelloy concerning the corrosion resistance in demanding media like hydrochloric acid and sulfuric acid.

When dealing with aqueous solutions to enhance the performance of nickel materials, the most important alloying elements are Fe, Cu, Si, Cr and Mo with Cr and Mo playing a major role in nickels corrosion resistance. By varying the concentrations of Cr and Mo in the nickel alloys the corrosive environments in which nickel alloys can be successfully applied are varied, but they typically are found in a range of acid, salt and alkali applications. The additions of chromium (15% -30%) improves the corrosion resistance to oxidizing solutions while the addition of molybdenum (up to 28%) significantly improves the resistance to nonoxidizing acids.
 
Focusing on some of the more corrosion resistant nickel alloys, C-22, C-276 and B-2 all have good corrosion resistance in a variety of media. In the case of HCl, the corrosion resistance of these alloys depends greatly on the molybdenum content. The alloy with the highest concentration of molybdenum, B-2, exhibits the best corrosion resistance.
 
Approximate Alloy Concentrations
 
 Cr
Mo
C-22
22%
13%
C-276
16%
16%
B-2
1%
28%
 
In other solutions such as nitric acid (HNO3) chromium is an essential alloying element responsible for providing the corrosion resistance in this environment. Nickel alloys weaknesses evolve around it interaction with the media and its environment in the form of impurities. Under ideal testing conditions, for example B-2 alloy works well in pure de-aerated H2SO4 and HCl but deteriorates rapidly when oxidizing impurities, such as oxygen and ferric ions are present. Another important consideration is the presence of chlorides (Cl-). Chlorides generally
accelerate the corrosion attack, but the degree of acceleration differs for various alloys.

*) Hastelloy is a registred tradename by Haynes International.
 

 
Customer Testimonial - Performance (2:24)
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Audio Presentation available: "The Corrosion Performance of Special Metals"
See the corrosion rates of Titanium, Hastelloys, Zirconium and Tantaline in Hot Acids. (1:55)
 
Corrosion Data on Metals in Hydrochloric Acid
See Hastelloy Corrosion Hastelloy C-276, Hastelloy B compared with corrosion data for Other metals in Hydrochloric acid. Choose ISO corrosion curves or the corrosion rates shown in tables at different temperatures and concentration.

Compare the corrosion data of Titanium, Nickel alloys (Hastelloy), Zirconium, Niobium and Tantalum in Hydrochloric Acid at various concentration and temperatures. Plese choose the format below

> As ISO corrosion CURVES
> As TABLES

 
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