This inventor holds 3 USPTO granted patents. Top assignee: Kawasaki Steel Corporation. Active years: 2002-2004.
Company Filing History:
Years Active: 2002-2004
Title: Ryouichi Sugimoto: Innovator in Ultrasonic Testing Technologies
Introduction
Ryouichi Sugimoto is a notable inventor based in Chiba, Japan. He has made significant contributions to the field of ultrasonic testing technologies, holding a total of 3 patents. His work focuses on improving the detection of surface flaws in various materials, which is crucial for ensuring structural integrity.
Latest Patents
One of Sugimoto's latest patents is a method of displaying signals obtained by measuring probes. This innovative approach allows for the detection of surface flaws, such as cracks, by using color variations within different regions of the color space. The method displays test signals based on a preset threshold value, ensuring that even small flaw signals are visible and preventing them from being overlooked.
Another significant patent is related to ultrasonic testing of columnar structures. This method utilizes surface waves to enhance the detectability of flaws while minimizing false detections caused by structural noises. The invention includes a specialized surface wave probe that employs a piezoelectric element and a resin wedge, allowing for precise measurements and adjustments during the grinding of rolls.
Career Highlights
Ryouichi Sugimoto is currently associated with Kawasaki Steel Corporation, where he applies his expertise in ultrasonic testing. His innovative methods have contributed to advancements in quality control and material testing within the industry.
Collaborations
Sugimoto has worked alongside notable colleagues, including Hajime Takada and Ikuo Yarita. Their collaborative efforts have furthered the development of ultrasonic testing technologies.
Conclusion
Ryouichi Sugimoto's contributions to ultrasonic testing have made a significant impact on the industry. His innovative patents demonstrate a commitment to enhancing the detection of surface flaws, ensuring safety and reliability in various applications.