Southfield, MI, United States of America

Kulbir Saluja


Average Co-Inventor Count = 3.0

ph-index = 2

Forward Citations = 25(Granted Patents)


Company Filing History:


Years Active: 1978-1980

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2 patents (USPTO):Explore Patents

Title: Kulbir Saluja: Innovator in Clutch Technology

Introduction

Kulbir Saluja is a notable inventor based in Southfield, MI (US). She has made significant contributions to the field of clutch technology, holding 2 patents that focus on noise reduction in friction clutches. Her innovative approaches have the potential to enhance the performance and user experience of automotive components.

Latest Patents

Kulbir's latest patents revolve around the concept of clutch pressure plate noise reduction. The first patent details how the pressure plate actuation fingers of a friction clutch can be equipped with means for noise attenuation. This is achieved through the application of acoustical materials, alteration of the mass of vibrating parts, or surface treatment of slipping parts. These methods aim to prevent the generation of objectionable noise due to resonance and sympathetic vibrations, which are initiated by the stick-slip phenomenon when the non-rotating clutch release bearing contacts the relatively rotating actuation fingers.

Career Highlights

Kulbir Saluja is currently employed at Federal-Mogul Corporation, where she continues to innovate and develop solutions in clutch technology. Her work has been instrumental in addressing common issues faced in the automotive industry, particularly regarding noise reduction in clutches.

Collaborations

Throughout her career, Kulbir has collaborated with notable colleagues such as Bryce W. Babcock and Mark P. Reynolds. These collaborations have further enriched her work and contributed to the advancements in clutch technology.

Conclusion

Kulbir Saluja stands out as an influential inventor in the automotive sector, particularly in the realm of clutch technology. Her patents reflect her commitment to innovation and her ability to tackle complex engineering challenges. Her contributions are likely to have a lasting impact on the industry.

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