Maxxam™ Polyolefin Formulations
Maxxam™ formulations are based on polypropylene and polyethylene resins and can be filled and reinforced to satisfy the required performance characteristic. They can be blended with glass, minerals, impact modifiers, colorants and stabilizer systems, providing customized solutions to meet specific application needs.
This customization makes Maxxam™ formulations suitable for use across many industries including transportation, industrial, consumer, electrical and electronic, and building and construction.
Maxxam™ formulations are only available outside of North America.
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View our extensive library of technical data sheets to aid you in planning for any application.
| NAME | CATEGORY | DESCRIPTION | |
|---|---|---|---|
| Perfume Pump Mechanism | Case Study | Maxxam™ REC Recycled Polyolefin Formulations developed a more sustainable PCR alternative to incumbent POM for perfume pump machanism. | View |
| Coaxial Signal Cable Jacket | Case Study | Maxxam™ Polyolefin Formulations provided excellent performance with low dielectric constant to make the jacket layer of signal cables have low capacitance loss. | View |
| Lighter Weight, Greater Durability for Luxury Vehicles | Case Study | Avient created a customized Maxxam™ Polyolefin formulation for an HVAC damper, achieving a 90% weight reduction and meeting performance and regulatory standards for a luxury German automaker. | View |
| Cleaner and Safer Internal Automotive Parts | Case Study | Onflex™ and Maxxam™ materials are designed to reduce VOCs, fogging, and odor in automotive interiors while ensuring high performance. | View |
| Electric Vehicle Part | Case Study | Maxxam polyolefin replaces aluminum and reduces weight in electric vehicle part. | View |
| Copper Resistance and Processability for HVAC Mechanical Door | Case Study | Customized Maxxam™ formulation provides copper resistance and improved processability for HVAC mechanical door. | View |
| HVAC Door Flap - Denso - Case Study | Case Study | Maxxam™ Polyolefin Formulations solution exceeded performance requirements, eliminated overmolding, and reduced cycle times. | View |