Inventors with similar research interests:
Location History:
- Albuquer, NM (US) (2002 - 2006)
- Billerica, MA (US) (2017)
- Albuquerque, NM (US) (1994 - 2019)
- Chelmsford, MA (US) (2017 - 2023)
Years Active: 1994-2024
Title: Mark J Hampden-Smith: A Pioneer in Thermally Conductive Polymer Compositions
Introduction:
Mark J Hampden-Smith, an Albuquerque-based inventor, has made significant contributions to the field of thermally conductive polymer compositions. With 122 patents under his name, Hampden-Smith's innovative work has revolutionized the industry. This article will delve into his latest patents, career highlights, notable collaborations, and conclude by highlighting his invaluable contributions.
Latest Patents:
Among Mark J Hampden-Smith's recent patents, one stands out for its groundbreaking approach toward enhancing thermal transfer properties in plastic formulations. "Thermally conductive polymer compositions containing carbon black" is a composite polymer composition that incorporates partially crystallized carbon black. This composition boasts superior thermal transfer capabilities compared to traditional carbon blacks. Additionally, it exhibits excellent rheology, allowing for higher loading of more thermally conductive carbon blacks in various composite polymer compositions. This patent showcases Hampden-Smith's commitment to pushing the boundaries of thermal conductivity in polymers.
Career Highlights:
During his career, Hampden-Smith has worked for renowned companies in the industry, including Cabot Corporation and Superior Micropowders LLC. These positions have allowed him to further develop his expertise and contribute to the advancements in thermally conductive polymer technology. His dedication to research and development has yielded a prolific patent portfolio, earning him recognition as a leading authority in the field.
Collaborations:
Mark J Hampden-Smith has had the privilege of collaborating with esteemed professionals in the field, such as Toivo T Kodas and James Caruso. These collaborations have not only contributed to the advancement of thermally conductive polymers but have also fostered an environment of innovation, knowledge sharing, and progress. By working alongside highly respected colleagues, Hampden-Smith has continuously pushed the boundaries of what is possible in this domain.
Conclusion:
Mark J Hampden-Smith's contributions to the field of thermally conductive polymer compositions have been invaluable. With an impressive patent count and a focus on enhancing thermal transfer properties, his work has redefined the possibilities of plastic formulations. Supported by his time at Cabot Corporation and Superior Micropowders LLC, Hampden-Smith's career has been characterized by relentless innovation and collaboration. As his latest patents demonstrate, he remains at the forefront of the industry, consistently delivering groundbreaking solutions. We eagerly anticipate his future contributions as he continues to shape the future of thermally conductive polymers.
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