Mine Hill, NJ, United States of America

John J Jagodnik


 

Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2013

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1 patent (USPTO):Explore Patents

Title: John J Jagodnik: Innovator in Turbomachinery Vibration Measurement

Introduction

John J Jagodnik is a notable inventor based in Mine Hill, NJ (US). He has made significant contributions to the field of turbomachinery through his innovative patent. His work focuses on improving the measurement of vibrations in rotating blades, which is crucial for the efficiency and safety of various machinery.

Latest Patents

Jagodnik holds a patent for a method and apparatus titled "Combined amplitude and frequency measurements for non-contacting turbomachinery blade vibration." This invention provides a sophisticated approach to measuring the vibration of rotating blades, such as those found in turbines, compressors, fans, or pumps. The system utilizes a plurality of sensors mounted on the machine housing to sense return signals from projected energy and field changes. By processing the data from sensors with both narrow and wide fields of measurement, the invention can determine the time of arrival of each blade and the blade tip deflection due to vibration. This comprehensive analysis allows for the assessment of the total vibratory stress state of the blade.

Career Highlights

John J Jagodnik is currently employed at Mechanical Solutions, Inc., where he continues to develop innovative solutions in the field of mechanical engineering. His expertise in vibration measurement has positioned him as a valuable asset to his company and the industry at large.

Collaborations

Jagodnik collaborates with his coworker, Michael J Platt, to further enhance their research and development efforts in turbomachinery technologies.

Conclusion

John J Jagodnik's contributions to the field of turbomachinery vibration measurement exemplify the importance of innovation in engineering. His patented technology not only advances the understanding of blade vibrations but also enhances the performance and reliability of critical machinery.

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