https://www.avient.com/news/dyneema-showcase-latest-law-enforcement-and-defense-armor-material-innovations-enforce-tac-2025-european-made-material-solutions-enable-lightweight-ballistic-protection
As the world’s strongest fiber™, Dyneema® is committed to helping protect the men and women responsible for keeping communities around the world safe.
Following the successful launch of Dyneema® SB301 in 2023, the first soft ballistic material made with third-generation Dyneema® fiber, the introduction of Dyneema® HB330 and Dyneema® HB332 provides a comprehensive solution for advanced personal protection.
Our expanding portfolio of offerings includes colorants, advanced composites, functional additives, engineered materials, and Dyneema®, the world’s strongest fiber™.
https://www.avient.com/resources-0?document_type=59&document_subtype=0&industry=0&product_family=0&product_name=0&op=FILTER RESULTS&form_id=resource_filter_form&page=12
Long Fiber Technologies Application Development
Learn more about this fiber dyeing technology, its advantages, and our color and additives portfolio to support it.
Fiber-Line Vectran braided satellite tether designed to pull satellite down at end-of-life and burn upon re-entry
https://www.avient.com/sites/default/files/2022-06/Nymax BIO Bio-based Polyamide Solutions Processing Guide.pdf
NYMAX™ BIO BIO-BASED POLYAMIDE SOLUTIONS PROCESSING GUIDE 1 NYMAX BIO Formulated in glass fiber-filled or unfilled materials, Nymax™ BIO formulations utilize between 16 and 47 percent natural filler from renewable plant-based raw materials, reducing the carbon footprint value significantly at the beginning of the product lifecycle.
These highly engineered formulations deliver comparable performance to traditional PA66 glass fiber- filled materials, plus the bio-derived solutions offer lower warpage and have excellent surface appearance and colorability.
Regrind is not suggested—glass fiber reinforce material will lose strength after regrind Mold Design Recommendations Gates 1.
https://www.avient.com/industries/packaging/beverage-packaging
Carbonateds
Carbonateds
Carbonateds
https://www.avient.com/resource-center/knowledge-base/article/optimizing-automotive-structural-component-designs-advanced-modeling?rtype%5B0%5D=1164
Long fiber composites, in particular, are well-suited for replacing metal, offering exceptional strength-to-weight ratio and the ease of injection molding, which can expand design options and streamline processing steps.
Advanced computer-aided engineering (CAE) software, when complemented by in-depth design and material knowledge, facilitates precise prediction of the behavior of fiber-reinforced polymer materials.
For more technical details on the structural performance of reinforced polymers using CAE, automotive design engineers may access material data and models for Avient’s fiber-reinforced solutions using Hexagon’s Digimat-MX Tool.
https://www.avient.com/resource-center/knowledge-base/article/three-things-every-paddler-wants-their-equipment
Compared to aluminum paddle shafts, fiber-reinforced composites reduce weight without sacrificing rigidity.
Both ABS laminate sheet and fiber-reinforced composites produce a strong, stiff hull that won’t flex in rough water or when fastened down to a roof rack.
Using micro-layering techniques with polymer-based synthetic fibers can generate an exceptionally durable personal flotation device fabric that is also breathable and lightweight.
https://www.avient.com/resource-center/knowledge-base/article/advanced-composites-ballistic-protection
Continuous fiber composites add safety and security to the world we live in
Continuous fiber reinforced composites can be incorporated into traditional building materials and processes to add a new level of security.
Steel, precast and shock-absorbing concrete, ceramic matrix composites, and fiber-cement composites are all commonly used materials for blast and ballistic resistance.
https://www.avient.com/resource-center/knowledge-base/case-study/renewable-energy-floating-solar-panels?pname%5B0%5D=17632
Non-renewable energy sources, like coal and oil, are limited in supply and often contribute to increased carbon emissions.
It helped them reduce their carbon footprint by reducing evaporation.
https://www.avient.com/resource-center/knowledge-base/case-study/renewable-energy-floating-solar-panels?sust%5B0%5D=1135
Non-renewable energy sources, like coal and oil, are limited in supply and often contribute to increased carbon emissions.
It helped them reduce their carbon footprint by reducing evaporation.
https://www.avient.com/resource-center/knowledge-base/case-study/renewable-energy-floating-solar-panels?rtype%5B0%5D=1124
Non-renewable energy sources, like coal and oil, are limited in supply and often contribute to increased carbon emissions.
It helped them reduce their carbon footprint by reducing evaporation.