Atlanta, GA, United States of America

John Beal


Average Co-Inventor Count = 2.3

ph-index = 3

Forward Citations = 128(Granted Patents)


Company Filing History:


Years Active: 2004-2010

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3 patents (USPTO):Explore Patents

Title: John Beal - Innovator in Liquid Dosing Systems

Introduction

John Beal is a notable inventor based in Atlanta, GA (US), recognized for his contributions to the field of liquid dosing systems. With a total of 3 patents to his name, Beal has made significant advancements in blending technology.

Latest Patents

One of Beal's latest patents is titled "Systems and methods for liquid dosing of material in a blender system." This patent discloses an exemplary system that includes individual metering devices, each containing a hopper for granular material ingredients. The system features a starve-fed mixing chamber that receives these ingredients and a liquid ingredient dosing device that injects liquid into the path of the granular materials as they fall through the mixing chamber.

Another significant patent is the "Apparatus and method for reducing buildup of particulate matter in particulate-matter-delivery systems." This invention provides approaches to minimize the buildup of particulate matter in delivery systems. It includes a trough-shaped feeder with a rectangular-to-elliptical conduit that enhances the efficiency of the system by reducing susceptibility to bridges and rat holes.

Career Highlights

John Beal is currently employed at Process Control Corporation, where he applies his expertise in developing innovative solutions for blending and dosing systems. His work has contributed to the advancement of technology in this field.

Collaborations

Beal has collaborated with notable coworkers, including Alan Landers and John Hotchkiss, who have also contributed to the innovations at Process Control Corporation.

Conclusion

John Beal's work in liquid dosing systems exemplifies the impact of innovation in technology. His patents reflect a commitment to improving efficiency and functionality in blending processes.

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