Wilmot, NH, United States of America

Jon Siegel


Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 2016

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1 patent (USPTO):Explore Patents

Title: Jon Siegel - Innovator in Machine Tool Accessories

Introduction

Jon Siegel is a notable inventor based in Wilmot, NH (US). He has made significant contributions to the field of machine tool accessories, particularly with his innovative designs that enhance the functionality of lathes. His work is characterized by a focus on improving the efficiency and safety of machining processes.

Latest Patents

Jon Siegel holds a patent for a "Drive Center with Guard." This invention constitutes a machine tool accessory used on a lathe for holding workpieces that are mounted between the headstock and the tailstock. The drive center features a head with an adjustable spring-loaded center point and several removable, adjustable spurs. These spurs are designed to penetrate a workpiece sufficiently to provide torque during the turning process. The head is attached to a shank with a standard taper to fit the spindle of a lathe. Additionally, a cylindrical guard is supported coaxially by the external surface of the head, allowing it to slide axially and rotationally with respect to the head. A spring mechanism causes the guard to extend axially beyond the spurs, except when pushed back by the workpiece.

Career Highlights

Jon Siegel is currently associated with Big Tree Tools, LLC, where he continues to innovate and develop new tools for the machining industry. His dedication to improving machine tool accessories has made a significant impact on the efficiency of machining operations.

Collaborations

Jon collaborates with his coworker, Grinnell More, to further enhance the development of innovative tools and accessories in the machining field.

Conclusion

Jon Siegel's contributions to machine tool accessories, particularly through his patented drive center, demonstrate his commitment to innovation in the industry. His work continues to influence the efficiency and safety of machining processes.

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