https://www.avient.com/resources/technical-data-sheets
The technical data sheet quick search box below allows you to enter a keyword to search the datasheet database.
Safety Data Sheets
The technical data sheet quick search box below allows you to enter a keyword to search the datasheet database.
https://www.avient.com/message-recieved
Search Technical Datasheets
Search Safety Datasheets
https://www.avient.com/thank-you
Search Technical Datasheets
Search Safety Datasheets
https://www.avient.com/products/engineered-polymer-formulations/conductive-signal-radiation-shielding-formulations/trilliant
Trilliant™ XR Technical Data Sheet
Explore a technical data sheet for one Trilliant XR grade
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=37
Technical Data Sheets
Safety Data Sheets
Safety Data Sheets
https://www.avient.com/knowledge-base/article/overmolding-tpe-selection?rtype[]=1164
For the viscosity of a specific grade, refer to the individual Product Technical Datasheet.
https://www.avient.com/knowledge-base/article/overmolding-tpe-selection
For the viscosity of a specific grade, refer to the individual Product Technical Datasheet.
https://www.avient.com/news/avient-highlight-bio-based-polymer-solutions-pharmapack-2024
The data sheet of each Mevopur bio-based concentrate will include the percentage of bio-based content and the Product Carbon Footprint (PCF) value to help healthcare product manufacturers calculate a product's environmental impact.
Mevopur Healthcare Bio-based Polymer Solutions are drop-in solutions that can be used the same way as conventional concentrates in the injection molding, blow molding, and extrusion of medical devices and pharmaceutical packaging.
Like other Mevopur products, they are formulated with raw materials tested to ISO 10993-1 and USP , European Pharmacopeia 3.1.3 and 3.1.5, USP and ICH Q3D.
https://www.avient.com/knowledge-base/article/transform-product-development-fea
This creates a foundation of trust in the data outputs.
If you are used to designing in metals, you might be surprised when a polymer’s technical data sheet does not translate into part performance you anticipated.
Many metals can approximate linear elastic behavior, but polymer behavior is not so easily simplified to one modulus, making it more challenging to predict performance based on a data sheet.
https://www.avient.com/sites/default/files/2024-10/Replacing Aluminum with Long Fiber Thermoplastics _LFT_ Application Bulletin.pdf
APPLICATION BULLETIN MATERIAL COMPARISON Long Fiber Reinforced Thermoplastics A380 Aluminum Specific Gravity (g/cc) 1.07–1.71 2.76 Impact Strength (ft/lbs) 2.8–3.6 2.95 Tensile Strength at Yield (psi) 14000–46000 23100 Temperature Resistance Good Excellent Corrosion Resistance Inherent Requires Coating Secondary Operations Limited Extensive Design Freedom Extensive Limited Sound Dampening Good Poor Color Molded-in-Color options Requires painting Material Cost Per Pound $$ $ Tooling Cost $$ $ Total Finished Assembly Cost $ $$ Selecting the right material for your application should include careful evaluation of the material’s technical data.
In addition, it is equally important to look beyond the datasheets to more fully understand the application demands, working environments, and product life expectations to use and optimize the material for your specific application.