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Trivalent Chromium Finishing: Chrome Plating Using Hexavalent Chromium

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Gauri Cmi


Trivalent chromium finishing is an electroplating process that uses trivalent chromium instead of the traditional hexavalent chromium. Trivalent chromium is less toxic than hexavalent chromium and provides corrosion resistance and aesthetic properties similar to conventional chrome plating. This finishing method has gained popularity in recent years due to stringent environmental regulations restricting the use of hexavalent chromium.

History and Development

Chrome plating using hexavalent chromium salts was developed in the 1920s and became widely popular due to its attractive shiny appearance and ability to protect metal surfaces from corrosion. However, research in the 1980s linked hexavalent chromium to cancer and other health issues. As a result, the EPA enacted regulations limiting exposure levels for hexavalent chromium through the National Emission Standard for Hazardous Air Pollutants (NESHAP) in 1998. This spurred research into alternative chromium plating technologies using the less toxic trivalent form of chromium.

Early methods of trivalent chromium plating produced coatings that lacked the luster and corrosion resistance of hexavalent chromium. However, advances in plating chemistry and equipment design over the past two decades have enabled trivalent chromium solutions to achieve comparable results. Today, trivalent chromium finishing is a commercially viable and eco-friendly alternative to conventional chrome plating.

Process and Equipment

The Trivalent Chromium Finishing process uses a proprietary electroplating solution containing trivalent chromium salts, brighteners, and other additives. Specialized plating tanks, racking equipment and exhaust systems are employed to ensure worker safety.

- Plating Process

The part to be plated is thoroughly cleaned and rinsed before being loaded into the plating tank. In the immersion plating process, an electric current is passed through the solution between the part (cathode) and metal anodes. Trivalent chromium ions in the solution are reduced onto the cathode surface to build up a protective chromium coating. Proper control of plating parameters such as current density, temperature and agitation results in a dense, well-adhered chrome deposit.

- Coating Properties

A trivalent chromium finish provides corrosion protection through the impervious chromium oxide layer that forms on the surface. Compared to traditional chrome, trivalent chromium coatings exhibit equal or improved resistance to white and blue corrosion. The aesthetic qualities also match or surpass hexavalent chromium in terms of brightness, colorFastness and reflective ability. Through refinements in plating chemistries, trivalent chromium has demonstrated the ability to meet the most stringent performance requirements for various industrial and commercial applications.

- Regulatory Compliance

By replacing the toxic hexavalent chromium, trivalent chromium plating offers compliance with strict environmental and worker safety regulations. The plating solutions do not generate hexavelant chromium in the plating bath or in post-process waste streams. Air emissions and wastewater disposal meet or exceed requirements established by organizations like the EPA, OSHA and REACH. This has allowed businesses in regulated industries like automotive to adopt trivalent chromium for applications previously requiring hazardous chrome conversion coatings or supplemental paint finishes.

Future Outlook

The future prospects for trivalent chromium finishing appear promising as environmental regulations around hexavalent chromium become even more stringent globally. More suppliers are commercializing advanced trivalent plating technologies through continuous investment in research. Customers also increasingly demand sustainable alternatives to traditional chrome and prefer partners who can ensure long-term regulatory compliance. Over time, trivalent chromium is positioned to become the dominant chromium electroplating method worldwide owing to its match or exceedance of operational and performance standards set by conventional chrome.

Trivalent chromium plating has emerged as a commercially viable green alternative to conventional chrome for achieving corrosion protection and an attractive shiny appearance on metal substrates. Developments in plating chemistry and equipment design have enabled trivalent chromium to equal or surpass the results from hexavalent chromium solutions. Most importantly, trivalent chromium's reduced health hazards allow compliance with environmental regulations restricting hexavalent chromium usage. As regulations tighten further and customers emphasize sustainability, trivalent chromium finishing is poised to become the preferred chromium plating standard across multiple industries globally.

 

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