https://www.avient.com/knowledge-base/case-study/winning-smiles-antimicrobial-additives?rtype[]=1124
Coupled with their ability to be used across a variety of different resins, These antimicrobial additives provided significant value while protecting against microbial degradation, mold and mildew.
https://www.avient.com/knowledge-base/case-study/winning-smiles-antimicrobial-additives?pname[]=17075
Coupled with their ability to be used across a variety of different resins, These antimicrobial additives provided significant value while protecting against microbial degradation, mold and mildew.
https://www.avient.com/knowledge-base/case-study/winning-smiles-antimicrobial-additives?ind[]=6596
Coupled with their ability to be used across a variety of different resins, These antimicrobial additives provided significant value while protecting against microbial degradation, mold and mildew.
https://www.avient.com/knowledge-base/case-study/winning-smiles-antimicrobial-additives?ind[]=21537
Coupled with their ability to be used across a variety of different resins, These antimicrobial additives provided significant value while protecting against microbial degradation, mold and mildew.
https://www.avient.com/knowledge-base/case-study/winning-smiles-antimicrobial-additives?psfam[]=21938
Coupled with their ability to be used across a variety of different resins, These antimicrobial additives provided significant value while protecting against microbial degradation, mold and mildew.
https://www.avient.com/knowledge-base/case-study/winning-smiles-antimicrobial-additives
Coupled with their ability to be used across a variety of different resins, These antimicrobial additives provided significant value while protecting against microbial degradation, mold and mildew.
https://www.avient.com/knowledge-base/case-study/winning-smiles-antimicrobial-additives?sust[]=1134
Coupled with their ability to be used across a variety of different resins, These antimicrobial additives provided significant value while protecting against microbial degradation, mold and mildew.
https://www.avient.com/sites/default/files/2021-01/roofing-membranes-mini-case-study.pdf
BUILDING MATERIALS
RETAILER
R O O F I N G M E M B R A N E S
• Improve marketing claims for product performance and
polymer integrity
• Prevent and improve field life, and protect product from the
growth and appearance of flora, fungi and algae from
outdoor environmental exposures
• Ability to convert materials from liquid to solid in order to
accommodate advanced manufacturing technique
• Seeking OBPA alternative
• Delivered a product differentiating solution
that eliminated both polymer-degrading
microbials and mitigated the flora and fungal
accumulation that causes discoloration and
staining
• Enabled versatility with combined liquid and
solid masterbatch solutions
• Provided a cost-effective and
environmentally friendly OBPA alternative
WithStand™ Antimicrobial Additives
KEY REQUIREMENTS
WHY AVIENT?
https://www.avient.com/sites/default/files/2021-10/gls-tpes-with-antimicrobial-technologies-product-bulletin.pdf
Tested against common bacteria and fungi,
these TPEs with antimicrobial technologies have
proven to protect the finished part from microbial
and fungi growth on both textured and smooth
surfaces.
KEY CHARACTERISTICS
• Protects finished part by inhibiting microbial
and fungi growth
• Extends useful life of finished TPE parts by
controlling deterioration caused by mildew
or mold fungus
• Increases product durability, preserves surface
integrity, and minimizes odors
MARKETS & APPLICATIONS
Suitable for high-touch surfaces and applications,
GLS TPEs with antimicrobial technologies add
value in the consumer, packaging and automotive
markets.
https://www.avient.com/products/thermoplastic-elastomers/onflex-thermoplastic-elastomers
Microbial susceptibility of various polymers and evaluation of thermoplastic elastomers with antimicrobial additives
Examine the technical details of our research study to test against microbial attack, including the efficacy of GLS™ TPES with antimicrobial additives