https://www.avient.com/sites/default/files/2020-08/2020-composite-springs-product-selection-install-guide.pdf
Deflection from the neutral axis
must not exceed the free length ÷8 for maximum service life.
Hole locations must be a minimum of 1.5 times the hole
diameter from the edges and the ends of the springs to the
centerline of the hole (see illustration).
Processing conditions can cause material properties to shift from the values stated in the information.
https://www.avient.com/sites/default/files/2024-09/Complet OnForce LFT Overview _ Brand Brochure.pdf
Adapted from Composites
Part A: Applied Science and
Manufacturing, Volume 33,
Issue 12, J.L.
This is the best way
to maximize long fiber performance and get the most benefit from material change.
Our experts
can help you make the transition, from concept to commercialization
https://www.avient.com/sites/default/files/2023-11/AshishKhandpur.pdf
Khandpur held a series of roles with increasing
responsibility, including Executive Vice President, Transportation & Electronics business group,
from 2019 to 2021; Executive Vice President, Electronics & Energy business group, from 2017 to
2019; and Senior Vice President, Research & Development and Chief Technology Officer, from
2014 to 2017, among other roles.
Khandpur holds a Bachelor’s of Technology degree in Chemical Engineering from the
Indian Institute of Technology, Delhi and a Ph.D in Chemical Engineering from the University
of Minnesota.
https://www.avient.com/sites/default/files/2024-03/Ashish Khandpur_Bio.pdf
Khandpur held a series of roles with increasing
responsibility, including Executive Vice President, Transportation & Electronics business group,
from 2019 to 2021; Executive Vice President, Electronics & Energy business group, from 2017 to
2019; and Senior Vice President, Research & Development and Chief Technology Officer, from
2014 to 2017, among other roles.
Khandpur holds a Bachelor’s of Technology degree in Chemical Engineering from the
Indian Institute of Technology, Delhi and a Ph.D in Chemical Engineering from the University
of Minnesota.
https://www.avient.com/sites/default/files/2024-12/2024 Avient Executive Bios_Dr. Ashish K. Khandpur.pdf
Khandpur held a series of roles with increasing
responsibility, including Executive Vice President, Transportation & Electronics business group,
from 2019 to 2021; Executive Vice President, Electronics & Energy business group, from 2017 to
2019; and Senior Vice President, Research & Development and Chief Technology Officer, from
2014 to 2017, among other roles.
Khandpur holds a Bachelor’s of Technology degree in Chemical Engineering from the
Indian Institute of Technology, Delhi and a Ph.D in Chemical Engineering from the University
of Minnesota.
https://www.avient.com/sites/default/files/2025-05/2024 Avient Executive Bios_Dr. Ashish K. Khandpurv3.pdf
Khandpur held a series of roles with increasing
responsibility, including Executive Vice President, Transportation & Electronics business
group, from 2019 to 2021; Executive Vice President, Electronics & Energy business group, from
2017 to 2019; and Senior Vice President, Research & Development and Chief Technology
Officer, from 2014 to 2017, among other roles.
Khandpur holds a Bachelor’s of Technology degree in Chemical Engineering from the
Indian Institute of Technology, Delhi and a Ph.D in Chemical Engineering from the University of
Minnesota.
https://www.avient.com/sites/default/files/2024-03/SEM Global Nylon Product Selection Guide_A4.pdf
NYLON
SOLUTIONS
ENGINEERED
THERMOPLASTICS
PRODUCT SELECTION GUIDE
Nylon (polyamide - PA) solutions from Avient include both prime Nymax™/Bergamid™ Polymer Formulations and
Nymax™ REC Recycled Nylon Formulations.
Some of the information arises from laboratory work with small-scale equipment which may not provide a reliable
indication of performance or properties obtained or obtainable on larger-scale equipment.
Processing conditions can cause material properties to shift from the values stated in the information.
https://www.avient.com/sites/default/files/2024-03/Cesa Stat Antistatic Additives Product Bulletin.pdf
Cesa™ Stat Antistatic Additives
Cesa™ Stat Antistatic Additives control the buildup
of static charges in thermoplastic parts, enabling
them to dissipate by absorbing and ionizing
moisture from the air, which forms a conductive
path for surface static charges.
Some of the information arises from laboratory work with small-scale equipment which may not provide a reliable
indication of performance or properties obtained or obtainable on larger-scale equipment.
Processing conditions can cause material properties to shift from the values stated in the information.
https://www.avient.com/sites/default/files/2022-10/PREPERM SatCom Application Bulletin.pdf
Our
offering covers it all, from top quality material to
prototyping services and stock shapes in different
shapes and sizes
Some of the information arises from laboratory work with small-scale equipment which may not provide a reliable
indication of performance or properties obtained or obtainable on larger-scale equipment.
Processing conditions can cause material properties to shift from the values stated in the information.
https://www.avient.com/sites/default/files/2023-03/Therma-Tech Heat Sink for Auto Lights Case Study.pdf
However, compared with engineered thermoplastics,
these materials have a relatively high density, are more
complicated and energy intense to process, and may
suffer from corrosion.
As a
result, Elausa replaced Zamak with Therma-Tech
thermoplastics, significantly reducing part weight from
38g to 9g.
Due to the success of this
project, the new, lighter heat sink made from Therma-
Tech conductive thermoplastics has been rolled out
across multiple vehicle models.