DAIKIN NEOFLON EFEP is a new fluoropolymer that has the ability to adhere with other materials, different from existing non-adhesive fluoropolymer. Moreover, it has the same chemical resistance as other types of fluoroplymers. Specific gravity is approximately 1.75.A laminated product such as a multi-layer tube and film can be obtained with co-extrusion molding.
DAIKIN NEOFLON EFEP is a terpolymer. It was designed to have many of the mechanical properties of ETFE, but with a lower processing temperature, allowing it to be coextruded with conventional thermopostic polymers. NEOFLON EFEP is also designed to adhere to many conventional plastics such as polyamide, EVOH, and modified polyethylene without the use of adhesives or tie layers. It is used in monowall tubing, multilayer tubing, low permeation automotive fuel hose, catheters and blow molded bottles and containers. It can be extruded, injection molded and blow molded.
Daikin Neoflon EFEP RP-5000
Neoflon EFEP RP-5000 was developed for tubing extrusion and injection molding applications. It is a functionalized fluoropolymer and can be coextruded with other resins such as polyamides and form strong bonding between the layers. It has excellent processability.
Daikin Neoflon EFEP RP-5000AS
NEOFLON EFEP RP-5000AS is a static dissipating fluoropolymer specifically designed for the automotive industry. It combines excellent physical and chemical properties with a low processing temperature. It can be coextruded with engineering polymers into multi-layer tubing without adhesive or etching.
Daikin Neoflon EFEP RP-4020
Neoflon EFEP RP-4020 was developed for tubing extrusion and injection molding applications.
Daikin Neoflon EFEP RP-5101
Neoflon EFEP RP-5101 was developed for extrusion of thin wall tubing. It can also be injection molded and used in coextrusion for multilayer tubing applications. The outstanding characteristics of RP-5101 combine the lubricity, compatibility, and chemical resistance desired by fluoropolymers along with bonding abilities to nonfluoropolymers to allow increased flexibility in design and processing of next generation tubing and other life science equipment.
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