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Viton™ Selection Guide

Viton™ fluoroelastomer was introduced in 1957 to meet the needs of the aerospace industry for a highperformance seal elastomer.

Consent Order Addendum - Submission Pursuant to Paragraph 2.a - November 4, 2021

Please find enclosed the Interim Seep Remediation Seep B Effectiveness Demonstration Report. This report is being submitted by Chemours pursuant to paragraph 2.a of the Addendum to Consent Order Paragraph 12, entered by the Bladen County Superior Court on October 12, 2020.

Onsite Seeps Long-Term Loading Baseline Report - September 2023

Geosyntec Consultants of NC, P.C. (Geosyntec) has prepared this Onsite Seeps Long-Term Loading Baseline Report (Seeps Baseline Report) for The Chemours Company, FC, LLC (Chemours) for the four onsite seeps, Seeps A, B, C and D at the Chemours Fayetteville Works site (the Site).

Teflon™ PTFE DISP 35

Teflon™ PTFE DISP 35 is a milky white aqueous PTFE dispersion stabilized with an anionic dispersant.

Viton™ A-361C Technical Information

Viton™ A-361C* is an incorporated cure “A-family” dipolymer designed for the injection and transfer molding of parts requiring better metal adhesion along with the fluid and heat resistance characteristics typical of fluoroelastomers.

Viton™ GAL-200S Tech Info

Viton™ GAL-200S* fluoroelastomer is a low viscosity, 66% fluorine, peroxide-curable fluoroelastomer.

Viton™ GLT-600S Technical Information

Viton™ GLT-600S* fluoroelastomer is a 64% fluorine, peroxide-cured, low temperature fluoroelastomer.

Viton™ GLT-200S Technical Information

Viton™ GLT-200S* fluoroelastomer is a 64% fluorine, peroxide-cured, low temperature fluoroelastomer similar to Viton™ GLT-600S, but with a significantly lower gum polymer viscosity of ~25 (ML at 121 °C [250 °F]).

Viton™ GFLT-200S Technical Information

Viton™ GFLT-200S* fluoroelastomer is a low viscosity 67% fluorine, peroxide-cured, low temperature fluoroelastomer.

Viton™ B-202 Technical Information

Viton™ B-202* fluoroelastomer is a low viscosity, “B-type” gum polymer that demonstrates improved processing and rheology when compared with existing fluoroelastomers.