Effect of Fluid Flow on the Corrosion Performance of as-Cast and Heat-Treated Nickel Aluminum Bronze Alloy (UNS C95800) in Saline Solution

Author:

Jafari Hamid RezaORCID,Davoodi AliORCID,Hosseinpour SamanORCID

Abstract

In this work, the corrosion behavior and surface reactivity of as-cast and heat-treated nickel aluminum bronze casting alloy (UNS C95800) in 3.5 wt% NaCl solution is investigated under stagnant and flow conditions. Increasing flow rate conditions are simulated using a rotating disk electrode from 0 to 9000 revolutions per minute (rpm). Optical micrographs confirm the decrease in the phase fraction of corrosion-sensitive β phase in the microstructure of C95800 after annealing, which, in turn, enhances the corrosion resistance of the alloy. Electrochemical studies including open circuit potentiometry, potentiodynamic polarization, and electrochemical impedance spectroscopy are performed to assess the effect of flow rate and heat treatment on the corrosion of samples at 25 and 40 °C in 3.5 wt% NaCl solution. For both as-cast and heat-treated samples, increasing the flow rate (i.e., electrode rotating rate) linearly reduces the corrosion resistance, indicating that the metal dissolution rate is significantly affected by hydrodynamic flow. Increasing the solution temperature negatively impacts the corrosion behavior of the as-cast and heat-treated samples at all flow conditions.

Publisher

MDPI AG

Subject

General Medicine

Reference37 articles.

1. The corrosion of nickel–aluminium bronze in seawater

2. Guidelines for the use of copper alloys in seawater;Tuthill;Mater. Perform.,1987

3. The morphology, crystallography, and chemistry of phases in as-cast nickel-aluminum bronze

4. Cast and Wrought Aluminium Bronzes: Properties, Processes and Structure;Meigh,2018

5. Effect of heat treatment on microstructure and properties of hot-extruded nickel-aluminum bronze

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