This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: University of Utah Research Foundation. Active years: 2010.
Company Filing History:
Years Active: 2010
Title: The Innovations of William A. Komlos: Mitigating Tensile Stresses
Introduction: William A. Komlos, an inventive mind hailing from Salt Lake City, UT, has made significant strides in the field of engineering through his patented methods and systems. With one patent under his belt, he has contributed to enhancing structural integrity in metal assemblies, demonstrating how innovative solutions can address complex engineering challenges.
Latest Patents: Komlos holds a patent for "Methods and systems for mitigating residual tensile stresses." This invention provides a mechanism for managing tensile stresses in metal components, critical for maintaining the stability and durability of assembled structures. The innovative method involves securing a metal member to a substrate and surrounding it with a cooling fluid. This process allows for controlled contraction and expansion of the metal, effectively mitigating residual tensile stresses and preventing structural deformation.
Career Highlights: Komlos is affiliated with the University of Utah Research Foundation, where he applies his technical expertise to research and development projects. His background in engineering and his focus on practical applications have enabled him to pioneer approaches that enhance the performance of metal structures.
Collaborations: In his professional journey, Komlos collaborates with Lawrence D. Reaveley, showcasing the power of teamwork in the realm of innovation. Together, they explore and develop techniques that push the boundaries of current engineering practices, contributing to advancements within their institution and beyond.
Conclusion: William A. Komlos exemplifies the role of an inventor in addressing real-world engineering issues. Through his innovative patent, he has provided valuable insights into managing tensile stresses in metal assemblies. His contributions at the University of Utah Research Foundation and collaborations with fellow engineers highlight the importance of innovation in advancing technology and improving structural integrity across various applications.
