Location History:
- Mason, OH (US) (1992 - 1994)
- West Chester, OH (US) (1998 - 1999)
Company Filing History:
Years Active: 1992-1999
Title: Manohar Bashyam: Innovator in Ultrasonic Testing Technologies
Introduction
Manohar Bashyam is a notable inventor based in Mason, OH, who has made significant contributions to the field of ultrasonic testing technologies. With a total of 5 patents to his name, he has developed innovative methods and apparatuses that enhance the non-destructive evaluation of materials.
Latest Patents
One of his latest patents is titled "Determination of Rayleigh wave critical angle." This invention provides a method for non-destructively evaluating or validating a processed area of an object, such as a metallic laser shock peened surface. The method involves determining Rayleigh wave angles at various positions on the surface by directing incident beams of ultrasonic waves and measuring the intensity of reflected beams. Another significant patent is the "Laser beam aiming apparatus for ultrasonic inspection." This apparatus aims an ultrasonic beam to test an object non-destructively and includes a laser aiming system that ensures the ultrasonic beam and laser beam are coaxial, enhancing the accuracy of inspections.
Career Highlights
Manohar Bashyam is currently associated with General Electric Company, where he applies his expertise in ultrasonic testing technologies. His work has contributed to advancements in non-destructive testing methods, making significant impacts in various industries.
Collaborations
Throughout his career, Manohar has collaborated with notable colleagues, including David Charles Copley and Richard L Trantow. These collaborations have fostered innovation and development in the field of ultrasonic testing.
Conclusion
Manohar Bashyam's contributions to ultrasonic testing technologies through his patents and work at General Electric Company highlight his role as a key innovator in the field. His inventions continue to influence non-destructive testing methods, ensuring safety and reliability in material evaluations.