Ladson, SC, United States of America

Fay Millar


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 93(Granted Patents)


Company Filing History:


Years Active: 2003

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1 patent (USPTO):Explore Patents

Title: **Fay Millar: A Pioneer in Milled Particle Technology**

Introduction

Fay Millar, an innovative inventor based in Ladson, South Carolina, has made significant contributions to the field of material processing through her patent for milled particles. With a focus on enhancing efficiency in milling processes, her inventions have the potential to impact various industries significantly.

Latest Patents

Fay Millar holds a patent for a groundbreaking process related to milling solid substrates in a dispersion or media mill. This innovative method uses two or more compositions of milling media bodies, ensuring that all components contribute to the grinding of the solid substrate. The process results in a synergetic commixture where fragments of milling media bodies are retained with the milled solid substrate. The patented process includes providing a pre-mix of solid substrate and milling bodies, grinding in the media mill, and separating the dispersion from larger particles, ultimately creating a refined mixture free of fluid.

Career Highlights

Millar is currently associated with RTP Pharma, Inc., where she continues to explore and refine her milling technologies. This role has allowed her to bring her innovative ideas to life, aligning her work with advancements in pharmaceutical and material processing applications.

Collaborations

Throughout her career, Fay Millar has collaborated with talented professionals such as Frank Verhoff and Gary William Pace. These collaborations have further enriched her work, helping to foster a creative environment for the development of new processes that contribute to advancements in milling technology.

Conclusion

Fay Millar stands out as a formidable inventor in the realm of particle milling, with her unique patent showcasing the integration of multiple milling media compositions. Her contributions not only reflect her dedication to innovation but also pave the way for future advancements in the industry. With ongoing collaborations and a focus on practical applications, Millar's work continues to influence both research and commercial endeavors in material science.

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