This inventor holds 1 USPTO granted patent. Top assignee: US Government as Represented by the Secretary of the Army. Active years: 2003.
Company Filing History:
Years Active: 2003
Title: Gay Kendall - Innovator in Thermal Barrier Coating Evaluation
Introduction
Gay Kendall is a notable inventor based in Troy, NY (US). She has made significant contributions to the field of thermal barrier coatings through her innovative patent. Her work focuses on evaluating materials that are subjected to transient heat cycles, which is crucial for various applications in engineering and manufacturing.
Latest Patents
Kendall holds a patent for a device titled "Pulsed laser heating simulation of thermal damage on coated surface." This invention provides an apparatus and method for assessing thermal barrier coating material on surfaces that experience rapid heat cycles. The pulsed laser heating apparatus utilizes lenses and optical fiber components to simulate brief heating conditions on test specimens. The design of the laser pulse is meticulously crafted to ensure uniform illumination and heat absorption, closely mimicking the thermal loading expected during actual use. The test specimens are then analyzed for any thermally induced changes, providing valuable insights into the performance of the coatings.
Career Highlights
Gay Kendall is currently employed by the US Government as represented by the Secretary of the Army. Her role involves applying her expertise in thermal barrier coatings to enhance the performance and reliability of military components. Her innovative approach has positioned her as a key figure in her field.
Collaborations
Kendall has collaborated with notable colleagues, including Mark Todaro and Paul J. Cote. These partnerships have allowed her to expand her research and contribute to advancements in thermal barrier technology.
Conclusion
Gay Kendall's contributions to the field of thermal barrier coatings through her innovative patent demonstrate her expertise and commitment to advancing technology. Her work not only enhances the understanding of thermal damage but also plays a vital role in improving the durability of critical components.
