Location History:
- Bellevue, WA (US) (1992 - 2001)
- Renton, WA (US) (2013 - 2014)
- Issaquah, WA (US) (2000 - 2018)
Company Filing History:
Years Active: 1992-2018
Title: Innovations by Leonard F. Reid: A Career of Impact in Patents and Inventions
Introduction
Leonard F. Reid, based in Bellevue, WA, has made significant contributions to the field of engineering through his innovative inventions, holding a remarkable total of 21 patents. His work primarily focuses on enhancing the performance and reliability of structural components, offering essential solutions to common engineering challenges.
Latest Patents
Among his latest innovations is the patent for an "Expandable Member with Wave Inhibitor and Methods of Using the Same." This invention features a wave inhibitor that effectively controls the effects of longitudinally displaced material during expansion, reducing workpiece distortions and preventing excessive strains. Another significant patent is the "Expandable Crack Inhibitor Method." This invention introduces crack inhibitors aimed at improving fatigue performance by generating stress states that inhibit crack initiation and growth, while using a mandrel to ensure proper installation.
Career Highlights
Reid's extensive career includes collaboration with notable organizations such as Fatigue Technology, Inc. His innovative work has contributed to various engineering applications, reflecting a deep understanding of material behaviors and performance requirements.
Collaborations
Throughout his career, Leonard has collaborated with esteemed colleagues like Charles M. Copple and Timothy Howard Johnson. These collaborations have fostered an environment of innovation, enabling the development of practical solutions that address pressing engineering issues.
Conclusion
Leonard F. Reid's dedication to innovation is evident in his impressive portfolio of patents and collaborations. His contributions continue to impact the engineering landscape, showcasing the critical role of inventors in advancing technology and improving material performance.