https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance
So, how can engineered polymers enhance EV battery design and performance?
Engineered polymers can be designed with specific thermal properties, possessing either excellent thermal conductivity or enabling efficient heat dissipation from the battery cells.
Thermally conductive formulations can also be electrically isolative or conductive, combining thermal performance with protection from electrostatic discharge and electromagnetic interference, depending on the needs of the specific component.
https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance?rtype[]=1164
So, how can engineered polymers enhance EV battery design and performance?
Engineered polymers can be designed with specific thermal properties, possessing either excellent thermal conductivity or enabling efficient heat dissipation from the battery cells.
Thermally conductive formulations can also be electrically isolative or conductive, combining thermal performance with protection from electrostatic discharge and electromagnetic interference, depending on the needs of the specific component.
https://www.avient.com/knowledge-base/article/enhance-electric-vehicle-battery-design-and-performance?ind[]=6601
So, how can engineered polymers enhance EV battery design and performance?
Engineered polymers can be designed with specific thermal properties, possessing either excellent thermal conductivity or enabling efficient heat dissipation from the battery cells.
Thermally conductive formulations can also be electrically isolative or conductive, combining thermal performance with protection from electrostatic discharge and electromagnetic interference, depending on the needs of the specific component.
https://www.avient.com/sites/default/files/2022-11/PREPERM RF Materials 1-pager.pdf
Now the benefits
of thermoplastic materials are available also for the
applications traditionally produced from ceramics
or thermoset plastic materials
Processing conditions can cause material properties to shift from the values stated in the information.
This is how
we create materials that matter.
https://www.avient.com/sites/default/files/2021-09/avnt-q2-2021-earnings-presentation.pdf
Use of Non-GAAP Measures
This presentation includes the use of both GAAP (generally accepted accounting principles) and non-GAAP financial measures.
Obtain 60% of electricity demand from
renewable sources.
In 2021, we expect substantial earnings growth and strong cash flow generation as we emerge from the
COVID-19 pandemic.
https://www.avient.com/form/existing-order-support
How can we help you?
https://www.avient.com/sites/default/files/2020-07/johnmidea_0.pdf
He spent 12 years at Valspar Corporation with increasing roles of
responsibility, including vice president, where he was accountable for the North American
segment of its liquid, powder, electrocoat and after market specialty chemical businesses.
Midea is a graduate of the United States Naval Academy in Annapolis, Maryland, earning a
bachelor of science in marine engineering, and has an MBA, from Northwestern University in
Evanston, Illinois.
https://www.avient.com/investor-center/news/avient-announces-registration-details-december-9th-investor-day
from
At our 2021 Investor Day, we will take a deeper dive into our how we create value for our stakeholders.
Investor Day participants will hear presentations from
https://www.avient.com/news/polyone-corporation-host-investor-day
CLEVELAND – PolyOne Corporation (NYSE: POL), a premier provider of specialized polymer materials, services and solutions, will host an Investor Day for investment professionals on Monday, May 18, 2015, from 12:00 p.m. to 5:00 p.m., at the InterContinental New York Times Square hotel.
Richardson, executive vice president and chief financial officer, as well as updates from other senior executives.
I look forward to sharing this Platinum Vision – as well as how we will achieve it – with our investors in May,” said Mr.
https://www.avient.com/sites/default/files/2021-06/fl.datasheet-extrusion.pdf
Overview
• FIBER-LINE® extrusion is the process of
forming a polymer jacket of various thickness
around a core of high-performance fibers
• Fiber core can be parallel, twisted, or in
rope form
• Polymer jacket selected to optimize flex,
chemical, temperature, & UV resistance
Key Features
• .50mm – 30.00mm size capability
• Protect the core from mechanical,
environmental, and chemical damage
• Extend life of cable or strength member
• Enhance flame & chemical resistance
• Improve UV resistance
• Many polymers available
FIBER-LINE® FIBERS SUITABLE
FOR EXTRUSION
• Kevlar® Para-Aramid
• Vectran® LCP
• Zylon® PBO
• Technora®
• Carbon Fiber
• Fiberglass
FIBER-LINE® PRODUCTS
ADDED BY EXTRUSION
• Strength members
• Tracer-wire
• Micro-cable
• Ruggedized cable
Our Polymer Offering
• EPC
• ETFE
• FEP
• Hytrel
• PFA
• Polyethylene
• Polypropylene
• Polyurethane
• PVC
• PVDF
EXTRUSION FIBERS PROCESSES PRODUCTS
This data is provided for informational purposes only, and does not constitute a specification.
No freedom from any patents or other industrial or intellectual property rights is granted or to be inferred.
They also add important characteristics, such as
SWELLCOAT® water-blocking, water repellence, adhe-
sion, color, and wear and UV-resistance to these and
many other applications.