Arden, NC, United States of America

Diane R Kent


Average Co-Inventor Count = 3.6

ph-index = 8

Forward Citations = 160(Granted Patents)


Company Filing History:


Years Active: 1998-2000

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16 patents (USPTO):Explore Patents

Title: Innovations by Diane R Kent

Introduction

Diane R Kent is a prominent inventor based in Arden, NC (US), known for her significant contributions to the field of fiber technology. With a total of 16 patents to her name, she has made remarkable advancements in the production and modification of multicomponent fibers.

Latest Patents

One of her latest patents is a process for making multicomponent fiber. This innovation involves creating fibers with an inter-domain boundary layer that minimizes the separation of distinct domains formed of incompatible polymers. The compatibility of the polymer forming the boundary layer with the other polymers is crucial for the integrity of the fiber. Another notable patent is for modifying synthetic bicomponent fiber cross-sections. This process allows for the creation of bicomponent fibers with varying cross-sections without altering the geometry of the spinneret orifices. By adjusting factors such as differential relative viscosity and polymer proportions, a diverse range of fiber geometries can be produced efficiently.

Career Highlights

Diane R Kent has established herself as a key figure in her field through her innovative approaches and technical expertise. Her work has not only advanced fiber technology but has also contributed to the efficiency of production processes in the industry.

Collaborations

Throughout her career, Diane has collaborated with notable colleagues, including Matthew B Hoyt and Charles F Helms, Jr. These partnerships have further enhanced her research and development efforts, leading to groundbreaking advancements in fiber technology.

Conclusion

Diane R Kent's contributions to the field of fiber technology through her patents and collaborations highlight her role as an influential inventor. Her innovative processes continue to shape the future of fiber production and modification.

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