Carrollton, TX, United States of America

William Bruce Webster


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 2002

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1 patent (USPTO):Explore Patents

Title: Innovator Spotlight: William Bruce Webster

Introduction

William Bruce Webster, based in Carrollton, TX, is a noteworthy inventor known for his significant contribution to material management systems. Holding one patent, he has played a crucial role in enhancing the efficiency of product fabrication processes.

Latest Patents

Webster's patent, titled "Material Management System and Method," addresses the complexities of managing materials in production. This innovative system integrates a data storage device that contains various types of information, including order details, product specifications, work center information for fabrication, and inventory data, all essential for the efficient manufacturing of products. The system is equipped with a processor and a nesting application designed to optimize the fabrication process by determining the most effective fabrication nest based on the aforementioned data.

Career Highlights

Currently, William Bruce Webster is employed at Vought Aircraft Industries, Inc., where he continues to leverage his patent for advancing material management processes within the aerospace sector. His work significantly impacts production efficiency, contributing to the overall effectiveness of the company's operations.

Collaborations

During his career, William has collaborated with notable colleagues such as Greg Allen Turner and Douglas K Wolfe. This teamwork has fostered an environment where innovative ideas can flourish, leading to improved methodologies within their field.

Conclusion

William Bruce Webster exemplifies the spirit of innovation in material management. With his patented system, he not only demonstrates technical expertise but also contributes substantially to the aerospace industry’s advancements. His continued work promises to shape the future of product fabrication methodologies.

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