| A Guide to Polyketone - Overview Brochure | Product/Service Overview | Take a comprehensive look at the performance and sustainability benefits of this next-gen material solution |  | 
											
							| Auto-Injector Housing - Medical Delivery Device | Case Study (Snapshot) | A custom, impact-modified Trilliant™ HC formulation plus technical services met key needs and accelerated commercialization for a drug delivery device |  | 
											
							| Chemical Resistance for Medical Devices - Technical Bulletin | Product/Service Overview | Explore various polymer performance to understand how material selection can prevent cracking and crazing, minimizing disinfectant-related failures in medical devices |  | 
											
							| Chemically Resistant Polymers for Next Generation Devices | White Paper | Examine the damaging effects chemicals can have on the plastic components and learn about preventing environmental stress cracking in consumer and healthcare applications |  | 
											
							| Chemically Resistant Polymers for Next Generation Healthcare and Consumer Products | Webinar | Learn more about considerations for chemically resistant materials for product development and durability in this free on-demand webinar |  | 
											
							| Conductive Pipette Tips | Case Study (Snapshot) | Trilliant™ HC Conductive Formulation offered consistent electrical conductivity and provided high flow grade to conductive pipette tips |  | 
											
							| Continuous Glucose Monitor | Case Study (Snapshot) | Healthcare device OEM benefitted from single source supplier for pre-colored solutions, Trilliant™ HC thermoplastics, and regulatory support |  | 
											
							| Disinfectant Resistance for Medical Device Housings | Case Study | Manufacturer boosts disinfectant resistance for medical device housings using Trilliant HC High Performance Formulations |  | 
											
							| Disinfectant Resistant Trilliant™ and Versaflex™ HC Materials | Product/Service Overview | Learn how chemically resistant Trilliant™ HC thermoplastics and Versaflex™ HC TPEs provide enhanced durability to withstand common hospital cleaners and disinfectants |  | 
											
							| Environmental Stress Cracking Resistance (ESCR) Design Guide | Processing & Design Guides | Find out how part design can reduce stress in molded plastic parts and improve ESCR in your products |  | 
											
							| Medical Device Disinfection: How to Prevent Cracking and Crazing | Product/Service Overview | Understand the material compatibility with common disinfectants of various materials used in healthcare applications |  | 
											
							| Medical Device Housing | Case Study (Snapshot) | Trilliant™ HC8900 thermoplastics delivered superior chemical resistance after exposure to hospital-grade disinfectants |  | 
											
							| Pipette Tips - Case Study | Case Study | Conductive pipette tip manufacturer uses Trilliant™ HC specialty formulations to increase savings, processing ease, toughness and performance |  | 
											
							| Polyketone, a next generation sustainable nylon alternative | Webinar | Learn more about polyketone, how it compares to nylons, its sustainability value, and potential applications in this free on-demand webinar |  | 
											
							| Specialty Engineered Materials for Healthcare | Product Selection Guide | View our portfolio on specialty engineered materials for healthcare |  | 
											
							| Specialty Engineered Materials for Healthcare (Chinese) | Product Selection Guide | View our portfolio on specialty engineered materials for healthcare (Chinese language version) |  | 
											
							| Surgical Stapler Housing | Case Study (Snapshot) | Delivered durable and aesthetically pleasing specialty polymer with the added benefit of processing flexibility without retooling |  | 
											
							| TPEs and Specialty Engineered Materials for Auto-injector Pens | Video | Avient's TPEs and engineered materials for auto-injector pens offer excellent chemical and impact resistance, good self-lubrication functions, durability to extend product life, and compliance with biocompatibility and food-contact safety regulations. |  | 
											
							| Trilliant™ Electrically Conductive Formulations for Pipette Tips - Application Bulletin | Application Overview | Explore how Trilliant™ conductive formulations help solve the performance challenges for pipette tip applications |  | 
											
							| Trilliant™ Electrically Conductive Formulations for Pipette Tips - Application Bulletin (Chinese) | Application Overview | Explore how Trilliant™ conductive formulations help solve the performance challenges for pipette tip applications (Chinese language version) |  | 
											
							| Trilliant™ HC Healthcare Thermoplastics - Glass-filled Polyketone Formulations | Product/Service Overview | Overview of performance and sustainability benefits of these glass-filled, polyketone (PK) materials for healthcare |  | 
											
							| Trilliant™ HC Micro Wells | Case Study (Snapshot) | Trilliant HC thermoplastics provide chemical performance and regulatory compliance for microwell application |  | 
											
							| Trilliant™ HC Thermoplastics and Versaflex™ HC TPEs for Surgical Stapler (Chinese) | Video | Explore more possibilities with Trilliant™ HC thermoplastics & Versaflex™ HC TPEs for surgical staplers |  | 
											
							| Trilliant™ HC Thermoplastics and Versaflex™ HC TPEs for Surgical Stapler (English) | Video | Explore more possibilities with Trilliant™ HC thermoplastics & Versaflex™ HC TPEs for surgical staplers |  | 
											
							| Trilliant™ HC8910 & HC8920 | Processing & Design Guides | Injection molding parameters including barrel temperatures, melt and mold temperatures, drying conditions, and processing guides for Trilliant™ HC8910 and HC8920 |  | 
											
							| Tubing Clamp for Biopharmaceutical Supply Company | Case Study (Snapshot) | Glass-filled, polyketone-based Trilliant™ HC formulation delivers durability, nylon alternative with improved chemical resistance to meet supply and performance demands |  |