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Magneto Special Anodes from Evoqua Highlights Range of Titanium … – Products Finishing

SUR/FIN 2021 exhibitor Magneto Special Anodes from Evoqua manufactures inert, Titanium-based anodes that are designed to be long-lasting while minimizing environmental impact.
#surfin #sustainability
At SUR/FIN 2021, Magneto Special Anodes from Evoqua will showcase an electrode technology solution that it says delivers efficient and reliable operational requirements. Magneto manufactures inert, Titanium-based anodes with customized, active, precious metal coatings. According to the company, it can provide solutions for electrowinning and recovery, water treatment, metal plating and impressed current corrosion protection for onshore and offshore structures. Magneto says it is committed to meeting precise specifications and delivering long-lasting results with minimal impact on the environment.
Magneto Special Anodes from Evoqua | 908-624-7314 | evoqua.com/magneto
This paper is a peer-reviewed and edited version of a paper delivered at NASF SUR/FIN 2013 in Rosemont, Ill., on June 12, 2013.
Internal stress exists in electroplated and chemically applied metallic coatings. This paper reviews the test procedures for measuring deposit stress and the formulas used to calculate stress values. Many formulas used require modification to obtain actual internal stress values. Errors in this regard are examined and common mistakes are explained.
For decorative coatings, appearance is the essential purpose for application, but also for functional surface finishes it becomes increasingly relevant as an added value on top of specified technical requirements.  Appearance is affected by spectrum and intensity of incident light, roughness and morphology of the coating surface, optical properties of the coating material, eventual superficial oxide films, and individual perception.  The predominant factor is surface roughness, which in turn depends on base material roughness, quality of substrate pretreatment, and nucleation and growth kinetics of the electroless nickel (EN) deposit. Interdependency of gloss measurements with roughness measurements and with chemical composition of coatings was investigated for new generation mid-P EN processes and compared to traditional ones.
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