Silicone can be finicky – it’s best to consult a compatibility chart. Teflon has great chemical resistance, and there are few products that won’t work with it. Since there is an endless list of chemicals out there, it can be helpful to consult a chemical compatibility chart to inform your decision.

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PTFE and Teflon Chemical Compatibility Chart PTFE is the most versatile plastic in terms of chemical compatibility Highly resistant to most acids, alcohols, detergents and solvents Ideal for use with reactive and corrosive chemicals The melting point of PTFE 1 is 600°K (327°C / 620°F) Low

1 square inch sections. 3.1.2 SEALS AND POLYMERS SAMPLE EXPOSURES. Material compatibility evaluations of seal and polymer materials  Please review material compatibility. Max temperature is based on chemistries that do not attack the tank material at elevated temperatures. Our Semiconductor-grade spin coater housing material is nearly impervious to all Teflon Housing for Spin Coaters. The Best in Chemical Compatibility. PTFE Envelope Gasket ZW#7530、7531、7535.

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Select a Material All Materials ABS plastic Acetal (Delrin®) Aluminum Brass Bronze Buna N (Nitrile) Carbon graphite Carbon Steel Carpenter 20 Cast iron Ceramic Al203 Ceramic magnet ChemRaz (FFKM) Copper CPVC EPDM Epoxy Fluorocarbon (FKM) Hastelloy-C® Hypalon® REFERENCEPAGES 1-800-833-7958 www.geotechenv.com fax303-322-7242 sales@geotechenv.com ChemicalCompatibilityTable For All Non-Metals For Metals R=Resistant E<2milsPenetration/Year Chemical Compatibility Guide FFKM (Perfluoro Rubber) Perfluoroelastomers show broad chemical resistance similar to PTFE as well as good heat resistance. They show low swelling with almost all media. Depending on the material the operating temperatures range between -25 °C/-13 °F and +240 °C/+464 °F Special types can be used 304L stainless steel, a low-carbon variant of 304 steel, is used for ultra-high vacuum systems. 316L stainless steel a low-carbon and low-magnetic stainless steel, used in accelerator technologies. 347 stainless steel does not accept high polish.

Super Lube® Grease to Grease Compatibility. Greases. Super Lube® Multi-Purpose Synthetic Grease with Syncolon® (PTFE) Super Lube® High Temperature E.P. Grease with Syncolon® (PTFE) Super Lube® Silicone Dielectric and Vacuum Grease. Super Lube® Silicone Lubricating Grease with Syncolon® (PTFE)

Carbon Filled PTFE was developed to provide a PTFE based material with any questions you have about the chemical compatibility of the materials we  4 May 2017 Identify gaps in hydrogen compatibility of polymers understanding Helium effects vs helium/hydrogen effects for PTFE, Buna N and. Viton A. Table 1 lists the chemical compatibility of Kalrez® perfluoroelastomer parts and other elastomers used as sealing materials in the pharmaceutical and food  When considering uses of Teflon™ fluoropolymer materials, preliminary testing should ECCtreme™ ECA fluoropolymer resins are compatible with virtually all. PTFE (unfilled). 1 square inch sections.

Chemical Compatibility. ChemCheck is to be used as a general guide only. CPC is not responsible for the accuracy of this data and assumes no obligation of 

Teflon™ was discovered in 1938, developed by DuPont Co, and administered by a Chemours. In 1045 Chemours trademarked the name Teflon™, and in 1946 they started selling products coated in this heatproof and non-stick material.

Contact Hayward for  Compatibility. Listings. AODDP the best guide) diaphragm material may be selected best selection but PTFe, Buna-n, ePdm or polyurethane balls will be  Jul 3, 2018 It is derived from tetrafluoroethylene (TFE) and has some unique properties that make it a useful material in a wide range of applications. For  material is suitable for any purpose.
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Tygon®.

347 stainless steel does not accept high polish.
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An in-depth look at PTFE, and the gasket materials that are made from this and filler material; see below for information regarding their use and compatibility. PTFE (Teflon) is the most inert material of the four seal materials. below shows the most commonly used media and their compatibility with the valve materials. It is the ultimate responsibility of the end user to determine the compatibility of the chemical being used in his or her particular application. Contact Hayward for  MATERIAL COMPATIBILITY.