Neenah, WI, United States of America

Emmanuelle C Damay


Average Co-Inventor Count = 7.6

ph-index = 6

Forward Citations = 585(Granted Patents)


Company Filing History:


Years Active: 2002-2007

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6 patents (USPTO):Explore Patents

Title: Emmanuelle C Damay: Innovator in Absorbent Technology

Introduction

Emmanuelle C Damay is a notable inventor based in Neenah, WI (US), recognized for her contributions to absorbent technology. With a total of six patents to her name, she has made significant advancements in the field of absorbent articles.

Latest Patents

Her latest patents focus on absorbent articles that incorporate fibrous nits and free-flowing particles. One embodiment of her invention describes an absorbent article featuring free-flowing particles in a central portion, which, when combined with other absorbent members, provides excellent body fit and fluid handling performance. Another embodiment emphasizes good leakage control achieved through the effective intake and fluid handling performance of fibrous nits, complemented by a wicking barrier between the nits and the longitudinal sides of the articles. Additionally, an optional central rising member can enhance the article's topography when compressed, urging the portion containing nits to deflect vertically upward. Methods for preparing cellulosic nits and incorporating them into absorbent articles are also detailed in her patents.

Career Highlights

Emmanuelle C Damay is associated with Kimberly-Clark Worldwide, Inc., a leading company in personal care and hygiene products. Her work has significantly impacted the design and functionality of absorbent products, making them more effective and user-friendly.

Collaborations

Throughout her career, Emmanuelle has collaborated with notable coworkers, including Wendy L Hamilton and Heather Anne Sorebo. These collaborations have contributed to the innovative advancements in absorbent technology.

Conclusion

Emmanuelle C Damay's contributions to absorbent technology through her patents and collaborations highlight her role as a key innovator in the field. Her work continues to influence the design and effectiveness of absorbent articles, showcasing her commitment to innovation.

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