This inventor holds 1 USPTO granted patent. Top assignee: Other. Active years: 2017.
Company Filing History:
Years Active: 2017
Title: Innovations by Brad Lavery in Timber Frame Structures
Introduction
Brad Lavery is an innovative inventor based in Eagle Mountain, Utah. He has made significant contributions to the field of timber frame construction through his unique patent. His work focuses on improving the structural integrity and assembly of timber frame structures.
Latest Patents
Brad Lavery holds a patent for "Timber frame structures with improved joint assemblies." This invention involves timber frame structures that comprise timber support posts and timber support beams. The improved joint assemblies are designed to interconnect these timber components effectively. Each joint assembly features a tail with a wedge-shaped outer face and a complementary socket for receiving the tail. The tails can extend from the terminal faces of the support beams, while the sockets are formed in the sidewalls of the timber support posts. This design allows for a drop-in-place installation procedure, enhancing the efficiency of assembly. Additionally, the timber frame structures can be packaged as kits for modular assembly at various locations.
Career Highlights
Throughout his career, Brad Lavery has focused on advancing construction techniques and materials. His innovative approach to timber frame structures has garnered attention in the industry. He continues to explore new methods to improve the efficiency and sustainability of building practices.
Collaborations
Brad has worked alongside his coworker, Joseph Thompson, to further develop and refine his inventions. Their collaboration has contributed to the successful implementation of innovative solutions in timber construction.
Conclusion
Brad Lavery's contributions to timber frame structures demonstrate his commitment to innovation in construction. His patent for improved joint assemblies showcases his ability to enhance traditional building methods. Through his work, he continues to influence the future of timber construction.