This inventor holds 1 USPTO granted patent and 2 published patent applications and 1 EPO patent. Top assignee: Pasco Corporation. Active years: 2014.
Company Filing History:
Years Active: 2014
Title: Innovations by Hideaki Kurosu in Bridge Damage Detection
Introduction
Hideaki Kurosu is a notable inventor based in Tokyo, Japan. He has made significant contributions to the field of structural engineering, particularly in the detection of damage to bridge decks. His innovative approach aims to enhance the efficiency and effectiveness of inspection processes.
Latest Patents
Kurosu holds a patent for a method designed to detect damage to a bridge deck. This method allows for detection work to be conducted with reduced labor, time, and costs. By utilizing a road-surface measuring vehicle that runs on the pavement of a steel-plate deck, a thermal infrared video of the surface is captured. This video is then analyzed to identify troughs in the steel-plate deck, which helps in understanding the structure. The method also detects water accumulation in specific trough members and sealing diaphragms by identifying low-temperature regions in the thermal infrared video. Additionally, through cracks in the deck plates are identified in areas where water presence has been detected.
Career Highlights
Kurosu's career is marked by his dedication to improving infrastructure safety through innovative technologies. His work has not only contributed to the field of civil engineering but has also set a precedent for future research and development in damage detection methods.
Collaborations
Kurosu has collaborated with notable colleagues, including Mitsuaki Uchima and Chikakuni Maeda. Their combined expertise has further advanced the research and application of innovative detection methods in bridge engineering.
Conclusion
Hideaki Kurosu's contributions to the field of bridge damage detection exemplify the importance of innovation in engineering. His patented method represents a significant advancement in ensuring the safety and longevity of critical infrastructure.
