Decatur, GA, United States of America

Olesya Sukhareva


 

Average Co-Inventor Count = 6.0

ph-index = 1


Company Filing History:


Years Active: 2014

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1 patent (USPTO):Explore Patents

Title: Olesya Sukhareva: Innovator in Ink Adhesion Technology

Introduction: Olesya Sukhareva is an accomplished inventor based in Decatur, Georgia, recognized for her innovative contributions in the field of material sciences. Her work mainly focuses on improving ink adhesion and durability in various applications, particularly within the nonwoven fabric industry.

Latest Patents: Olesya holds a patent for "Substrates having improved ink adhesion and oil crockfastness." This patent describes a printed nonwoven web that exhibits enhanced oil crockfastness when an ink composition is applied to its outer surface. The unique aspect of this invention is its capability to resist rub-off from the substrate, even when the ink comes into contact with oily substances such as baby oil or lotion. This technology has significant implications for the production of absorbent articles, where the printed laminate serves as an exterior cover, ensuring both functionality and visual appeal.

Career Highlights: Currently, Olesya is employed at Kimberly-Clark Worldwide, Inc., a prominent player in the consumer goods industry. Her dedication to research and development has positioned her as a valuable asset to the company, where she continues to drive innovation forward. With her singular patent, she demonstrates a profound understanding of material properties and their applications in everyday products.

Collaborations: Olesya has collaborated with notable colleagues, including Simon K. Poruthoor and Lisa Sanabria. Working alongside these talented individuals has allowed her to enhance her research efforts and contribute to groundbreaking patents in the industry.

Conclusion: Olesya Sukhareva stands out as a significant inventor in the realm of ink adhesion technology. Her patent represents not only her innovative spirit but also a commitment to advancing materials that improve product performance. As she continues her work at Kimberly-Clark, her contributions are likely to inspire future innovations in the field.

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