This inventor holds 2 USPTO granted patents. Top assignees: Orbital Research Inc., University of Notre Dame Du Lac. Active years: 2009-2017.
Company Filing History:


Years Active: 2009-2017
Title: Innovations by Tom Corke in Aerospace Technology
Introduction
Tom Corke is an accomplished inventor based in Granger, Indiana, known for his contributions to aerospace technology. He holds 2 patents that focus on enhancing the performance of aircraft, missiles, munitions, and ground vehicles through innovative methods involving plasma actuators. His work aims to improve fluid flow control, thereby increasing efficiency and reducing power requirements for various vehicles.
Latest Patents
Corke's latest patents include a "Method of increasing the performance of aircraft, missiles, munitions and ground vehicles with plasma actuators." This invention details a method for controlling fluid flow across the surfaces of these vehicles, utilizing aerodynamic plasma actuators. The design focuses on controlling airflow separation over control surfaces, which is crucial for optimizing performance. Additionally, he has developed a "Method of controlling aircraft, missiles, munitions and ground vehicles with plasma actuators." This patent also emphasizes fluid flow control and the design of aerodynamic plasma actuators, providing alternative aerodynamic control methods that require low power.
Career Highlights
Throughout his career, Tom Corke has worked with notable organizations, including the University of Notre Dame and Orbital Research Inc. His experience in these institutions has allowed him to collaborate on various projects that push the boundaries of aerospace technology.
Collaborations
Corke has collaborated with professionals in his field, including Mehul P Patel, to further advance his research and innovations.
Conclusion
Tom Corke's innovative work in the field of aerospace technology demonstrates his commitment to improving vehicle performance through advanced methods. His patents reflect significant advancements that could reshape the future of aerospace engineering.