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You are here: Dyneon Product Catalogue > 3M™ Dynamar™ Specialty Additive > 3M™ Dynamar™ Polymer Processing Additive > Polymer Processing Additive FX 5920A > Polymer Processing Additive FX 5920A

3M™ Dynamar™ Polymer Processing Additive FX 5920A

3M™ Dynamar™ FX 5920A is a free-flowing fluoropolymer based processing additive that is designed for use at very low levels. It can offer performance and cost advantages and it is ideal for use in polyolefin resins containing antiblocking agents, pigments and other inorganic additives. Dynamar FX 5920A lowers apparent melt viscosity. Furthermore, it reduces or eliminates melt fracture and die build-up. To get more information click here:

Dynamar FX 5920A is a free-flowing fluoropolymer based processing additive that is designed for use at very low levels to improve processing of thermoplastics. At the very low use levels (typically 200 – 1000 ppm) necessary to improve processing, it does not alter or detract from the good physical properties associated with high strength plastics. Dynamar FX 5920A can offer performance and cost advantages. It exhibits exceptional commercial utility in low melt index film grade linear low density polyethylene (LLPDE) and high density polyethylene (HDPE). It is especially effective in polyolefin resins containing silica based antiblocking agents, titanium dioxide-based pigments, and other inorganic additives. It can also be used at low levels to reduce extruder die build-up when processing LDPE, EVA and other polyolefin resins. Dynamar FX 5920A lowers apparent melt viscosity and permits fabricators to use high strength resins which otherwise could not be processsed on available equipment. Now with the aid of Dynamar FX 5920A, fabricators can produce films and other articles of improved strength and quality. As a processing additive Dynamar FX 5920A can reduce or eliminates melt fracture and can reduce extruder torque. Through optimization of the extrusion process, the use of FX 5920A may also allow an increase in output and yield films with enhanced and balanced bi-directional physical properties and improved clarity and gloss.

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