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Kraton), to expand its global footprint and expertise in thermoplastic elastomer (TPE) innovation and design.
SELECTED FINANCIAL DATA ITEM 7.
FINANCIAL STATEMENTS AND SUPPLEMENTARY DATA ITEM 9.
https://www.avient.com/sites/default/files/2020-10/tpes-for-automotive-hvac-product-bulletin.pdf
GLS™ TPE AUTOMOTIVE SOLUTIONS IMPROVE VEHICLE AIR QUALITY WITH TPEs FOR AUTOMOTIVE HVAC FLAPS Vehicle interior air quality in passenger vehicles and strict automotive OEM standards have driven our advancement of these low VOC, low fogging TPEs for use in heating/ventilation/air conditioning seals.
GLS automotive TPEs are designed to improve driver and passenger safety and comfort.
This industry-leading TPE technology reduces volatile organic compounds (VOCs) by 50% and fogging by 35% versus existing TPEs for HVAC applications. www.avient.com Copyright © 2020, Avient Corporation.
https://www.avient.com/sites/default/files/2024-04/Versaflex TF TPE Product Service Overview_cn.pdf
Versaflex TF TPE Solutions for Textile Fabric Product Bulletin_CN 4.11-1 用于纺织面料的 Versaflex TF 热塑性弹性体(TPE)热熔胶 随着消费者越发注重健康,市场对于功能性 强、轻便舒适且具有视觉吸引力的健身产品需 求正稳步增长。
Versaflex™ TF TPE热熔胶解决方案专为尼龙和 涤纶纺织面料胶膜而开发,品牌商和OEM可利 用该方案生产出具备柔软性、透气性、伸展性 的织物,适用于运动服装(如运动服和运动内 衣)。
Versaflex TF TPE热熔胶易于加工成型,还可定 制颜色并进行低成本激光切割。
https://www.avient.com/sites/default/files/2020-08/tpes-for-automotive-industry-bulletin.pdf
Known for offering tight seals and reducing vibration and noise, certain thermoplastic elastomers (TPEs), like OnFlex™ grades, may be better suited for your particular application than the historically incumbent materials, like general purpose TPEs, thermoplastic vulcanizates (TPV), and thermoplastic polyolefins (TPO).
INDUSTRY BULLETIN STANDARD UNITS ONFLEX LO 7120-45N Volatile Organic Compounds VDA 278 ug/g(ppm) 41 Fogging VDA 278 ug/g(ppm) 521 Odor • Control • Dry conditions • Wet conditions SAE J1351 (15) 1-10 Scale 1 2 1 Compression Set (23°C) • 22 hours • 70 hours ASTM D395 % 14.4 14.6 Capillary Viscosity • 1341/s • 11170/s ASTM D3835 Pa*s 35 7 HVAC SYSTEMS OnFlex™ LO • Features: low VOC/FOG, low odor, good compression set, easy processing, overmolds to polypropylene • Example applications: seals and flaps in heating, ventilation and air conditioning systems CHARACTERISTICS ONFLEX™ LO ONFLEX™ AF TPE GENERAL PURPOSE TPV TPO Volatile Organic Compounds (VDA 278) Very Low Moderate Moderate Moderate Very Low Fogging (VDA 278 & DIN 75201) Very Low Moderate Moderate High Very Low Odor (VDA 270 Requirement ≤3.0) ≤3.0 ≤3.0 >3 >3 ≤3.0 Gloss Level Low Low Low Very Low High Tactile Feel Grippy Grippy Grippy Grippy Waxy Pre-Drying Required No No No Yes No Raw Material Costs $$ $$ $$ $$$ $ Compression Set @ RT Good Good Good Excellent N/A Compression Set @ ≥70°C Moderate Moderate Moderate Good N/A UV Resistance Good Excellent Good Good Good Weatherability Good Excellent Good Good Good Hardness Range Low to High Low to High Low to High Low to High High Density (g/ml) 1.15 0.99 0.90–1.20 0.95–0.98 0.90–1.20 GENERAL CHARACTERISTICS COMPARING TPE, TPV, TPO Grades shown on both pages are representative of solutions manufactured in North America, more grades available globally.
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This information sheet shall NOT operate as permission, recommendation, or inducement to practice any patented invention without permission of the patent owner.
At PDI, our goals are to help clients: • Solve the toughest technical problems • Grow their business • Commercialize products quickly Core Competencies We offer unmatched expertise in material, process, and end product polymer testing, including: • Support studies for device qualifi cation • Material analysis and identifi cation • Suggestions on process improvement • Advanced failure analysis • Litigation support The PDI Difference We provide solutions—not just raw data We help you determine the root cause of failure and recommend real-world solutions and better routes to successful commercialization.
This information sheet shall NOT operate as permission, recommendation, or inducement to practice any patented invention without permission of the patent owner.
https://www.avient.com/sites/default/files/2021-10/microbial-susceptibility-of-various-polymers-and-evaluation.pdf
TPEs were determined to be most susceptible to microbial attack under the appropriate environmental conditions.
These results made TPEs an attractive candidate for modification with antimicrobial additives for the preser- vation of the TPEs in their end product use and for fur- ther efficacy studies.
All samples were tested in duplicate (n = 2); the bar graph represents the average, and the open circles represent the log10-transformed raw data.