https://www.avient.com/sites/default/files/2021-06/fl.us-.datasheet-kevlar-para-aramid.pdf
°C 425-480
Property UOM Value
Breaking Tenacity g/d 23.0
Specific Gravity Ratio 1.44
Elongation @ Break % 3.5
Tensile Modulus g/d 555
Moisture Regain* % 5.0
Creep** %
DUPONTTM PARTNERSHIP
• FIBER-LINE® values its relationships with both its
customers and suppliers.
Contact us today for small order quantity orders.
https://www.avient.com/sites/default/files/2020-10/tpe-overmold-design-guide.pdf
General TPE Injection Molding Guidelines
The following are basic principles for optimizing the molding process for GLS TPEs:
• During start-up, the molding parameters should be set at the mid-point of the TPE
supplier’s recommendations
The insert should be molded in accordance with supplier recommendations (drying, adequate
melt and mold temperatures).
The insert should be molded in accordance with supplier recommendations (drying, adequate
melt and mold temperatures).
https://www.avient.com/sites/default/files/resources/Universal_Polyamide_Overmold_Thermoplastic_Elastomer.pdf
POLYAMIDE TYPE
Polyamides are a family of semi-crystalline engineering polymers with variations in chemistries,
melting point and crystallinity.
Nylon 66 has the highest melt temperature,
i.e. 265 oC which would require a TPE with good, high temperature melt stability.
Actual melt
temperature is about 5oC(10oF) lower than barrel setup.
https://www.avient.com/company/sustainability/sustainability-report/products/supplier-collaboration-evaluation
Supplier Evaluation
Supplier Code of Conduct
Assess 75% of suppliers for sustainability alignment.
https://www.avient.com/products/fiber-line-engineered-fiber-solutions/high-performance-synthetic-fibers/vectran-liquid-crystal-polymer
Melt Point ( ̊C)
Contact us with your specific requirements
Contact us
https://www.avient.com/products/fiber-line-engineered-fiber-solutions/high-performance-synthetic-fibers/pet-polyester-fiber
Melt Point ( ̊C)
Contact us with your specific requirements
Contact us
https://www.avient.com/idea/improving-performance-protective-face-masks
Although industry leaders retooled to produce more masks, manufacturers and suppliers still struggled to bridge the gap between demand and supply.
N95 masks, for example, rely on multi-layer construction, with a middle layer made from melt-blown non-woven material.
By introducing additives with charge storage properties, “charge traps” were created to capture the electret charge being applied to melt-blown non-woven material.
https://www.avient.com/knowledge-base/case-study/improving-performance-protective-face-masks
Although industry leaders retooled to produce more masks, manufacturers and suppliers still struggled to bridge the gap between demand and supply.
N95 masks, for example, rely on multi-layer construction, with a middle layer made from melt-blown non-woven material.
By introducing additives with charge storage properties, “charge traps” were created to capture the electret charge being applied to melt-blown non-woven material.
https://www.avient.com/idea/three-ways-automotive-color-influences-buyers
Color is a critical selling point for vehicles.
Today’s materials technology now allows suppliers to create automotive components with unprecedented palettes.
Contact an expert at Avient today to start the conversation.
https://www.avient.com/sites/default/files/2023-08/Maxxam BIO Bio-Based Polyolefin Formulations Product Bulletin.pdf
Maxxam™ BIO Bio-Based Polyolefin Formulations
Maxxam™ BIO polyolefins are formulated with
bio-based polyolefin resin and/or 10–50% natural
filler from renewable plant sources, including olive
seed based powder and cellulose fiber.
To satisfy
required performance characteristics they can
be filled and reinforced with glass fiber, minerals,
impact modifiers, colorants and stabilizer systems.
Food
contact compliant grades are also available.