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4G/5G Antenna Base Stations
PREPERM™ Solutions for 5G
Radio Frequency Materials
https://www.avient.com/resource-center?document_type=59&page=17
4G/5G Antenna Base Stations
PREPERM™ Solutions for 5G
Radio Frequency Materials
https://www.avient.com/resource-center?document_subtype=0&document_type=59&form_id=resource_filter_form&industry=0&op=FILTER RESULTS&product_family=0&product_name=0&page=17
4G/5G Antenna Base Stations
PREPERM™ Solutions for 5G
Radio Frequency Materials
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Specialty Engineered & Sustainable Materials
If you can dream it, we can give you the materials you need to make it.
Click here to find the right material for your application.
https://www.avient.com/knowledge-base/article/pultruded-composites-design-and-material-engineers-guide
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Pultruded Composites: A Design and Material Engineer's Guide
Carbon fiber pultrusions are exceptionally lighter than metal and other materials.
If you are a design materials engineer looking for a high-performance composite material for your application, pultruded composites are a good option to consider.
https://www.avient.com/knowledge-base/article/pultruded-composites-design-and-material-engineers-guide?ind[]=6598
Home //
Pultruded Composites: A Design and Material Engineer's Guide
Carbon fiber pultrusions are exceptionally lighter than metal and other materials.
If you are a design materials engineer looking for a high-performance composite material for your application, pultruded composites are a good option to consider.
https://www.avient.com/knowledge-base/article/pultruded-composites-design-and-material-engineers-guide?ind[]=6601
Home //
Pultruded Composites: A Design and Material Engineer's Guide
Carbon fiber pultrusions are exceptionally lighter than metal and other materials.
If you are a design materials engineer looking for a high-performance composite material for your application, pultruded composites are a good option to consider.
https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials?rtype[]=1124
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Reduce Carbon Footprint by Replacing Traditional Materials
Avient developed a technology suite that uses specialty engineered polyketone (PK) thermoplastics and helps our customers meet their goals to lower the carbon footprint of their products versus traditional materials, like PA66 and PA6.
The new materials also offer sustainability benefits over the product lifecycle through carbon footprint reductions compared to competitive materials—PK base resin production emits up to 61 percent less carbon dioxide (CO2) than nylon and POM.
https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials?sust[]=1139
Home //
Reduce Carbon Footprint by Replacing Traditional Materials
Avient developed a technology suite that uses specialty engineered polyketone (PK) thermoplastics and helps our customers meet their goals to lower the carbon footprint of their products versus traditional materials, like PA66 and PA6.
The new materials also offer sustainability benefits over the product lifecycle through carbon footprint reductions compared to competitive materials—PK base resin production emits up to 61 percent less carbon dioxide (CO2) than nylon and POM.
https://www.avient.com/knowledge-base/case-study/reduce-carbon-footprint-replacing-traditional-materials?ind[]=6597
Home //
Reduce Carbon Footprint by Replacing Traditional Materials
Avient developed a technology suite that uses specialty engineered polyketone (PK) thermoplastics and helps our customers meet their goals to lower the carbon footprint of their products versus traditional materials, like PA66 and PA6.
The new materials also offer sustainability benefits over the product lifecycle through carbon footprint reductions compared to competitive materials—PK base resin production emits up to 61 percent less carbon dioxide (CO2) than nylon and POM.