Company Filing History:
Years Active: 2019
Title: Innovator Sandrine Faletto: Pioneering Scratch Resistance in Thermoplastics
Introduction: Sandrine Faletto, an accomplished inventor based in Entre Deux Guiers, France, has made significant strides in the field of materials science. Her innovative approach focuses on enhancing the scratch resistance of thermoplastic polymers, contributing to the durability and longevity of various products.
Latest Patents: Sandrine holds a notable patent titled "Thermoplastic polymer masterbatch." This patent outlines a unique process designed to increase the scratch resistance of compositions containing a thermoplastic organic polymer and a scratch resistant polymer composition. The process involves the reactive mixing of a thermoplastic organic polymer and an organopolysiloxane, reacting at elevated temperatures to form a masterbatch. This masterbatch then interacts with the thermoplastic organic polymer composition to produce a copolymer that enhances scratch resistance.
Career Highlights: Sandrine has garnered valuable experience working with reputable companies in the industry. Notably, she has been associated with Dow Silicones Corporation and Multibase Inc., where she honed her expertise in polymer technologies. Her work is characterized by rigorous research and innovative thinking, making her a recognized figure in the field.
Collaborations: Throughout her career, Sandrine has collaborated with talented professionals in her field, including colleagues Aurelie Arrigoni and Stephane Cornelis. These collaborations have facilitated knowledge exchange and fostered a creative environment for advancing polymer science.
Conclusion: Sandrine Faletto exemplifies the spirit of innovation through her contributions to the enhancement of thermoplastic materials. Her patent achievements and collaborative efforts underscore her commitment to advancing technology in the realm of scratch resistance. As the industry continues to evolve, her work will undoubtedly play a pivotal role in shaping the future of durable materials.