https://www.avient.com/sites/default/files/2023-03/Artisan Pre-colored Thermoplastics Technical Bulletin.pdf
Available in a wide range of customizable colors, these impact-modified nylon formulations eliminate secondary painting processes—unlike traditional materials such as painted plastics or metals—providing the added manufacturing and sustainability benefits of reducing energy use and removing VOC emissions.
TECHNICAL BULLETIN Characteristics Artisan™ Nylon Solution Painted Metal Painted Plastic Traditional Molded-in Color Impact Modified Nylon PA Ionomer Alloy Aesthetic Very Good Excellent Excellent Good Very Good Very Good Scratch Appearance Excellent Poor Poor Good Excellent Excellent Scratch & Mar Resistance Very Good Excellent Excellent Poor Very Good Excellent Color Customization Good Excellent Excellent Very Good Good Good Stress Whitening Excellent Fair Fair Poor Excellent Excellent Weatherability Good Excellent Excellent Very Good Good Very Good Temperature Performance Good Excellent Fair Fair Fair Good Corrosion Resistance Excellent Fair Excellent Excellent Excellent Excellent Processability One Step Multi Step Multi Step One Step One Step Complex One Step Total Production Cost $$$ $$$$$ $$$$ $$ $$$ $$$$ Order Quantity Restrictions Some Some Some None More More COMPARISON OF NYLON, METAL, AND PLASTIC Properties Test Method Artisan™ AR6000-0007 HI UV* Gloss Level** Gloss reading at 60 degrees 80-93 Molding Shrinkage – Across Flow ASTM D955 0.009 to 0.013 in/in Tensile Strength (Yield) ASTM D638 7300 psi Tensile Strength (Break) ASTM D638 5300 psi Tensile Elongation (Yield) ASTM D638 6.0% Flexural Modulus ASTM D790 270500 psi Flexural Strength (Yield) ASTM D790 9950 psi Notched Izod Impact ASTM D256 -4°F (-20°C) 5 ft-lb/in 73°F (23°C) 11 ft-lb/in Unnotched Izod Impact ASTM D256 -4°F (-20°C) 29 ft-lb/in 73°F (23°C) 30 ft-lb/in Color & Aesthetics*** Green, medium blue, dark blue, red, orange, white, gray, black Color customization available based on specific needs KEY PROPERTIES Features: high-gloss finish, UV stability, scratch resistance, chemical/corrosion resistance, cold temperature impact resistance, heat resistance * Reflects average of several colors, properties shift slightly depending on color ** Gloss level varies based on tooling temperature *** UV data available upon request Copyright © 2023, Avient Corporation.
https://www.avient.com/sites/default/files/2023-01/Mevopur Healthcare Functional Additives_Laser Welding Additives for Medical Devices Application Bulletin.pdf
Mevopur™ Healthcare Functional Additives Laser Welding Additives for Medical Devices Laser welding has become a technology of choice to join plastic parts of complex medical devices.
Also known as transmission welding, laser welding is the process of using focused laser radiation to bond two plastic parts, one that is transparent to the laser energy and one that absorbs the energy.
Please be aware that there are certain applications Avient’s Mevopur products have not been designed for, nor are they promoted or intended for use in: including, but not limited to long-term or permanent implants, birth control devices, or plastic surgery.
https://www.avient.com/sites/default/files/2020-09/antimicrobials-for-electronics-application-bulletin.pdf
ENHANCE PROTECTION & INHIBIT BACTERIAL GROWTH WITHSTAND™ ANTIMICROBIAL SOLUTIONS FOR ELECTRONIC ACCESSORIES WithStand™ antimicrobial additives are designed to be molded into plastic components to enhance product performance.
These antibacterial and antifungal additives reduce growth of bacteria, mold and fungus on the surface and through the thickness of the plastic part.
ANTIMICROBIALS FOR PLASTICS Effective in reducing bacterial growth across a range of polymer resins Bacteria does not attach to surface of part molded with WithStand Bacteria attaches to surface of part molded without WithStand Side View Molded with antimicrobial additives Molded without antimicrobial additives
https://www.avient.com/sites/default/files/2021-04/onflex-s-garden-hose-hand-grip-case-study.pdf
THERMOPLASTIC ELASTOMER FOR OVERMOLDING ATTRACTIVE, PRACTICAL HANDGRIPS ONTO ABS RESIN © 2021, All Rights Reserved Avient Corporation, 33587 Walker Road, Avon Lake, Ohio USA 44012 To learn more about OnFlex-S™ TPEs, contact Avient at +1.844.4AVIENT (1.844.428.4368) or visit avient.com THE CHALLENGE Facing strong competition from all-plastic garden sprayers, a leading garden equipment manufacturer decided to create a new, high-end line of sprayers featuring enhanced quality, durability and aesthetics.
The new products have been very well received by consumers, and have allowed the company to address the competitive threat from all-plastic sprayers. • Lower system costs = higher margins: By reducing waste from part deformation, the Avient TPE allowed the manufacturer to leverage efficient, fast 2K molding for system cost reduction.
These savings help the company to achieve high margins on its top-of-the-line sprayers. • High-end product line = competitive advantage: With Avient’s OnFlex-S TPE, developers successfully designed and produced a new, high-end product line that compares favorably with all-plastic sprayers in terms of appearance, performance and durability. • Gripping feel = safety and usability for customers: Hand grips created from overmolded OnFlex-S TPE provide excellent anti-slip performance even when wet.
https://www.avient.com/sites/default/files/resources/PolyOne%25202017%2520Annual%2520Report.pdf
Mesa), a producer of solid and liquid colorant technologies.
Mesa), a producer of solid and liquid colorant technologies.
One of Spartech's subsidiaries, Franklin-Burlington Plastics, Inc.
https://www.avient.com/sites/default/files/resources/TPE_Overmolding_Solutions_for_Engineering_Thermoplastics.pdf
This is achieved by molding a soft skin of thermoplastic elastomer over a hard engineering plastic.
The TPE chemistry and the type of engineering plastic play a critical role in influencing wettability.
The bond strength between the TPE and the engineering plastic was measured by performing a “90o Peel Test”.
https://www.avient.com/resource-center/knowledge-base/article/overmolding-part-design?rtype%5B0%5D=1164
Provide a 0.003" to 0.005" (0.076 mm to 0.127 mm) interference when using plastic inserts or substrates, to take into account shrinkage, sinks and tolerances.
https://www.avient.com/resource-center/knowledge-base/article/eco-conscious-alternative-coloring-textiles?pname%5B0%5D=20342
The plastic mass is then shaped into filaments, spun, and texturized into an already-dyed yarn.
https://www.avient.com/resource-center/knowledge-base/article/eco-conscious-alternative-coloring-textiles?sust%5B0%5D=1133
The plastic mass is then shaped into filaments, spun, and texturized into an already-dyed yarn.
https://www.avient.com/resource-center/knowledge-base/article/eco-conscious-alternative-coloring-textiles?sust%5B0%5D=1139
The plastic mass is then shaped into filaments, spun, and texturized into an already-dyed yarn.