Brownsburg, IN, United States of America

Molly Harrison


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 12(Granted Patents)


Company Filing History:


Years Active: 2010

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Molly Harrison

Introduction

Molly Harrison is a notable inventor based in Brownsburg, IN (US). She has made significant contributions to the field of material wear indication systems. With a focus on enhancing the functionality and safety of mechanical systems, her work has garnered attention in the engineering community.

Latest Patents

Molly Harrison holds 1 patent for her invention titled "Material Wear Indication System." This innovative system includes a friction plate that engages with a moving surface and features a wear indicator. The friction plate is designed with both a wearable portion and a non-wearable portion. In one embodiment, the wear indicator is embedded in the non-wearable portion, preventing it from contacting the moving surface until the wearable surface has eroded sufficiently. Once the wear indicator makes contact with the moving surface, it emits particulate matter detectable by a sensor. This sensor generates an electrical signal transmitted to a control unit, indicating that the wearable surface has eroded and exposed the wear indicator.

Career Highlights

Molly is currently employed at Rolls-Royce Corporation, where she applies her expertise in engineering and innovation. Her work at this prestigious company allows her to contribute to advanced technologies in the aerospace and defense sectors.

Collaborations

Molly has collaborated with talented coworkers, including Andrew D. Copeland and Joel M. Rubel. Their combined efforts in research and development have led to advancements in their respective fields.

Conclusion

Molly Harrison's contributions to the field of material wear indication systems exemplify her innovative spirit and dedication to engineering. Her patent reflects a significant advancement in technology that enhances safety and efficiency in mechanical systems.

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