https://www.avient.com/knowledge-base/article/whats-difference-tpes-vs-silicones?ind[]=21537
LSR flows easily into molds with varied wall thicknesses and can fill very long, thin sections of a mold.
Though the viscosity of TPEs are reduced when processed at high shear rates, TPEs must be “packed” into a mold to ensure complete fill-out.
Materials with lower specific gravity will fill more volume and therefore yield more parts per pound.
https://www.avient.com/sites/default/files/2020-11/oncap-denesting-case-study.pdf
Because the trays were regularly handled by consumers
and filled with food, it was very important that any
changes made to the material would not jeopardize the
packaging’s FDA compliance.
It can also be an ideal choice to help
reduce picking errors with auto and manual fill
machines, decreasing waste and limiting production
downtime.
https://www.avient.com/sites/default/files/2020-08/2020-composite-springs-product-selection-install-guide.pdf
PART NUMBER MATERIAL
DESCRIPTION
SIZE WEIGHT/LENGTH
in mm lb/ft kg/m
EM01002986 Glass/Vinyl Ester .250 x 3.0 6 x 76 0.60 0.89
EM01003564 Glass/Vinyl Ester .250 x 2.5 6 x 64 0.49 0.73
EM01002990 Glass/Vinyl Ester .266 x 2.5 7 x 64 0.58 0.86
EM01002994 Glass/Vinyl Ester .312 x 2.0 8 x 51 0.51 0.76
GC-67-UB Glass/Epoxy .235x 1.5 6 x 38 0.29 0.43
GC-67-UB Glass/Epoxy .235 x 1.75 6 x 44 0.34 0.50
GC-67-UB Glass/Epoxy .235 x 2.0 6 x 51 0.38 0.57
GC-67-UB Glass/Epoxy .235 x 2.5 6 x 64 0.48 0.71
GC-67-UB Glass/Epoxy .250 x 1.5 6.4 x 38 0.31 0.46
GC-67-UB Glass/Epoxy .250 x 1.75 6.4 x 44 0.36 0.53
GC-67-UB Glass/Epoxy .250 x 2.0 6.4 x 51 0.38 0.57
GC-67-UB Glass/Epoxy .250 x 2.5 6.4 x 64 0.51 0.76
GC-67-UB Glass/Epoxy .300 x 1.5 8 x 38 0.37 0.55
GC-67-UB Glass/Epoxy .300 x 1.75 8 x 44 0.43 0.64
GC-67-UB Glass/Epoxy .300 x 2.0 8 x 51 0.49 0.73
GC-67-UB Glass/Epoxy .300 x 2.5 8 x 64 0.61 0.91
PRODUCT
SELECTION
GUIDE
COMMON SIZES
Table represents examples of common spring sizes.
• Glass/epoxy endurance limit: 80 ksi (552 MPa)
• Glass/vinyl ester endurance limit: 50 ksi (345 MPa)
FLEXURAL STRENGTH VS.
https://www.avient.com/news/expanded-resound-r-tpe-portfolio-avient-launches-globally-over-80-percent-recycled-content-available-eu
In Europe, new patent-pending grades are formulated using recovered materials such as recycled polypropylene, recycled oil, and recycled glass filler.
Suitable for overmolding onto polypropylene (PP), the new TPEs have comparable performance to prime grades, and can replace them in typical applications for lawn and garden, outdoor high performance, personal care, footwear, office supplies, houseware durables, and automotive industries.
In Asia, an expanded reSound R range now includes three PIR grades for PC, ABS, and PC/ABS overmolding and seven PCR grades for overmolding on to PP.
https://www.avient.com/sites/default/files/2025-04/Corporate Governance Guidelines. March 2025 - Final and Approved version.pdf
Board Leadership Structure
The Board selects the Chairman of the Board and Chief Executive Officer and determines
from time to time whether the positions are to be combined and filled by one person or
separated and filled by two persons.
The Board shall consider as candidates for nomination for election or re-election to the
Board, or to fill vacancies and new directorships on the Board, only those individuals
who agree to tender, promptly following their election, re-election or appointment, an
irrevocable resignation that will be effective upon (a) the occurrence of a Majority
Withheld Vote for that director in his or her next election and (b) acceptance of the
tendered resignation by the Board.
The Board will appoint the membership of any search
committee that may be necessary to fill the office of Chief Executive Officer.
https://www.avient.com/knowledge-base/article/whats-difference-tpes-vs-silicones?ind[]=6596
LSR flows easily into molds with varied wall thicknesses and can fill very long, thin sections of a mold.
Though the viscosity of TPEs are reduced when processed at high shear rates, TPEs must be “packed” into a mold to ensure complete fill-out.
Materials with lower specific gravity will fill more volume and therefore yield more parts per pound.
https://www.avient.com/knowledge-base/article/whats-difference-tpes-vs-silicones?ind[]=6598
LSR flows easily into molds with varied wall thicknesses and can fill very long, thin sections of a mold.
Though the viscosity of TPEs are reduced when processed at high shear rates, TPEs must be “packed” into a mold to ensure complete fill-out.
Materials with lower specific gravity will fill more volume and therefore yield more parts per pound.
https://www.avient.com/knowledge-base/article/whats-difference-tpes-vs-silicones?ind[]=6601
LSR flows easily into molds with varied wall thicknesses and can fill very long, thin sections of a mold.
Though the viscosity of TPEs are reduced when processed at high shear rates, TPEs must be “packed” into a mold to ensure complete fill-out.
Materials with lower specific gravity will fill more volume and therefore yield more parts per pound.
https://www.avient.com/knowledge-base/article/whats-difference-tpes-vs-silicones?rtype[]=1164
LSR flows easily into molds with varied wall thicknesses and can fill very long, thin sections of a mold.
Though the viscosity of TPEs are reduced when processed at high shear rates, TPEs must be “packed” into a mold to ensure complete fill-out.
Materials with lower specific gravity will fill more volume and therefore yield more parts per pound.
https://www.avient.com/resources/safety-data-sheets?page=5445
LT.SILVER GLASS BEADS
DK.SILVER GLASS BEADS
PP FR 8-6 LMS-1000