This inventor holds 3 USPTO granted patents and 1 published patent application. Top assignee: Royal Adhesives & Sealants Canada Ltd.. Active years: 2019-2021.
Company Filing History:
Years Active: 2019-2021
Title: **Scott W Cowen: Innovator in Foundation Footing Systems**
Introduction
Scott W Cowen is an accomplished inventor based in Guelph, Canada, with a strong focus on innovations in construction technology. He holds three patents, showcasing his expertise and dedication to improving foundation systems.
Latest Patents
Scott's latest invention revolves around the use of polyurethane foam in foundation footings for load-bearing structures. One of his notable patents describes a foundation footing system that incorporates a hole in the ground and a post extending above it. This system features a gap between the post and the wall of the hole, which contains cured, hydrophobic, closed-cell polyurethane foam. This innovative design ensures that the post is firmly held in place while being protected from moisture. Additionally, he proposed an alternative foundation footing system where the hole is filled with the same specialized foam, upon which the post is placed and securely connected to the top.
Career Highlights
Scott is currently employed at Royal Adhesives & Sealants Canada Ltd., a company that specializes in adhesive solutions. His work there has positioned him as a key figure in the development of advanced foundation systems, contributing to structural integrity and longevity in construction projects.
Collaborations
Throughout his career, Scott has collaborated with talented colleagues, including Neil G Goodman and Alexander Botrie. These partnerships have allowed for the exchange of ideas and have led to the successful development of innovative solutions in the field of construction.
Conclusion
In summary, Scott W Cowen is a noteworthy inventor whose contributions to foundation footing systems have the potential to significantly impact the construction industry. His inventive approach, alongside his collaborations, continues to advance the field, ensuring lasting stability and quality in load-bearing structures.