Chicago, IL, United States of America

Kimberly Ann Steiner

USPTO Granted Patents = 9 

Average Co-Inventor Count = 2.1

ph-index = 6

Forward Citations = 192(Granted Patents)


Company Filing History:


Years Active: 2002-2012

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9 patents (USPTO):Explore Patents

Title: Innovative Contributions of Kimberly Ann Steiner

Introduction

Kimberly Ann Steiner is an accomplished inventor based in Chicago, IL, known for her significant contributions to materials science and engineering. With a total of nine patents to her name, she has demonstrated expertise in developing advanced materials and coatings that have a broad range of applications.

Latest Patents

Steiner's most recent patents include innovations in aluminum phosphate compounds and highly anisotropic ceramic thermal barrier coatings. The first patent focuses on aluminum phosphate compounds, compositions, materials, and related metal coatings, emphasizing their potential use for substrate coatings. Her second patent highlights the development of high-temperature composites and thermal barrier coatings that utilize anisotropic ceramic materials, which can be modified to reduce substrate thermal mismatch.

Career Highlights

Kimberly has established herself as a leading figure in applied thin films technology through her work with Applied Thin Films, Inc. Her role at the company allows her to integrate her patented technologies into practical applications, enhancing the performance and longevity of various industrial products. Steiner’s work stands out not only for its technical innovation but also for its potential to revolutionize material usage in multiple sectors.

Collaborations

In her professional journey, Kimberly collaborates with talented colleagues, including Sankar Sambasivan and Krishnaswamy Kasthuri Rangan. Together, they contribute to the advancement of technology in their field, further enhancing the impact of their innovations.

Conclusion

Kimberly Ann Steiner's contributions to the field of materials science are paving the way for numerous technological advancements. As she continues to innovate and collaborate with her peers at Applied Thin Films, Inc., her work will undoubtedly influence future developments in thermal barrier coatings and other critical materials.

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