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The (Electron) Path Less Travelled

Traditional sacrificial protection afforded by zinc rich primer technology relies on the zinc metal acting as its own metallic pathway to transfer electrons to the steel substrate. Understanding this mechanism of corrosion protection versus an enhanced method of electron transfer using a self-assembling nanoscale carbon quantum network will demonstrate to the reader how this new approach to galvanic corrosion protection is more effective, sustainable, and greener for the environment. 

Product Number: 51219-183-SG
Author: Joe Davis
Publication Date: 2019
Industry: Coatings
$0.00
$20.00
$20.00

Traditional sacrificial protection afforded by zinc rich primer technology relies on the zinc metal acting as its own metallic pathway to transfer electrons to the steel substrate. Understanding this mechanism of corrosion protection versus an enhanced method of electron transfer using a self-assembling nanoscale carbon quantum network will demonstrate to the reader how this new approach to galvanic corrosion protection is more effective, sustainable, and greener for the environment. Explaining why more and more end users across industry sectors are moving towards this effective technological breakthrough in corrosion prevention to take advantage of not only its superior corrosion protection, but also its best in industry edge retention and application efficiencies.

Traditional sacrificial protection afforded by zinc rich primer technology relies on the zinc metal acting as its own metallic pathway to transfer electrons to the steel substrate. Understanding this mechanism of corrosion protection versus an enhanced method of electron transfer using a self-assembling nanoscale carbon quantum network will demonstrate to the reader how this new approach to galvanic corrosion protection is more effective, sustainable, and greener for the environment. Explaining why more and more end users across industry sectors are moving towards this effective technological breakthrough in corrosion prevention to take advantage of not only its superior corrosion protection, but also its best in industry edge retention and application efficiencies.

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