Wallingford, CT, United States of America

Joseph Mercuri



Average Co-Inventor Count = 5.1

ph-index = 1


Company Filing History:


Years Active: 2020-2025

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2 patents (USPTO):Explore Patents

Title: Joseph Mercuri: Innovator in Cyclone Technology.

Introduction

Joseph Mercuri is an accomplished inventor based in the United States, known for his innovative contributions to cyclone technology. His work primarily focuses on optimizing the performance of cyclones used in mineral extraction processing systems. Despite having no patents currently assigned to his name, his recent inventions demonstrate significant advancements in the field.

Latest Patents

One of his notable inventions is the "Detection Of Cyclone Wear Or Damage Using Individual Cyclone Overflow Measurement." This apparatus features a signal processor designed to receive signaling that contains information about an acoustic noise profile generated by a slurry impacting a probe within a cyclone. The processor determines the status of the cyclone's apex, providing crucial information regarding any wear or damage. Another significant invention is the "Apparatus, System, And Method For Detection Of The Presence Of An Air Core In A Fluid Conductor." This invention optimizes cyclone performance by detecting the collapse of the central air-core in a hydrocyclone, which is vital for efficient mineral extraction.

Career Highlights

Throughout his career, Joseph Mercuri has focused on enhancing the efficiency of industrial processes, particularly in the minerals processing sector. His inventions aim to improve the classification and sorting of products by size, which is critical for overall process performance.

Collaborations

Joseph has collaborated with various professionals in the field, including his coworker Robert J Maron, to further develop and refine his innovative technologies.

Conclusion

Joseph Mercuri's contributions to cyclone technology reflect his commitment to advancing industrial processes. His inventions have the potential to significantly impact the efficiency of mineral extraction systems.

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