Gastonia, NC, United States of America

Joe D Faris


Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2002

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1 patent (USPTO):Explore Patents

Title: Joe D Faris - Innovator in Textile Technology

Introduction

Joe D Faris is a notable inventor based in Gastonia, North Carolina, whose contributions to the textile industry have been both innovative and practical. With a focus on improving spinning processes, Faris has developed a unique patent that enhances the efficiency and durability of textile machinery.

Latest Patents

Faris holds a patent for a "Spinning ring having amorphous chromium bearing surface." This invention features spinning rings specifically designed for textile spinning processes. The improved bearing surface is created using a coating of amorphous chromium, which is typically applied through an electrodeposition process. This innovative coating enables the spinning rings to be highly durable, making them particularly suited for fine yarn and high-speed spinning operations. Notably, these spinning rings eliminate the conventional break-in period required by traditional designs, thereby increasing operational efficiency.

Career Highlights

Joe D Faris is currently associated with Ab Carter Inc., a company renowned for its advancements in textile machinery and spinning technologies. His work focuses on enhancing the functionality and longevity of spinning equipment, contributing significantly to modern textile manufacturing practices.

Collaborations

Throughout his career, Faris has worked alongside talented colleagues such as Gereon E Poquette and Jason P Floder. These collaborations have played a vital role in refining and advancing his patented technologies, further pushing the boundaries of innovation in the textile industry.

Conclusion

Joe D Faris is an inspiring figure in the realm of textile inventions. His patented spinning ring with an amorphous chromium bearing surface exemplifies a forward-thinking approach to machinery design, elevating spinning processes and paving the way for future innovations in textile manufacturing.

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