Richland, WA, United States of America

Curtis A Lavender

USPTO Granted Patents = 1 

Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 19(Granted Patents)


Company Filing History:


Years Active: 2019

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1 patent (USPTO):Explore Patents

Title: **Curtis A Lavender: Innovating Extrusion Technology in Richland, WA**

Introduction

Curtis A Lavender is an accomplished inventor based in Richland, Washington, known for his contributions to the field of extrusion technology. With a keen understanding of material processing, he has developed innovative systems that enhance manufacturing processes.

Latest Patents

Curtis holds a patent for a "System and process for formation of extrusion products." This groundbreaking invention involves devices and processes for performing shear-assisted extrusion. It features a rotatable extrusion die with a scroll face, which is designed to draw plasticized material from the outer edge of a billet toward an extrusion orifice. Simultaneously, the extrusion die assembly applies both rotational shear and axial extrusion forces to the billet, optimizing efficiency and product quality.

Career Highlights

Currently, Curtis A Lavender works at Battelle Memorial Institute, an organization known for its rigorous research and innovation initiatives. His tenure there has been marked by significant advancements in the extrusion field, contributing to the development of new materials and manufacturing techniques.

Collaborations

Throughout his career, Curtis has had the privilege of collaborating with fellow researchers, including Vineet V Joshi and Glenn J Grant. Together, they have pushed the boundaries of extrusion technology and have been instrumental in driving forward practical applications of their research findings.

Conclusion

Curtis A Lavender exemplifies the spirit of innovation in manufacturing technology. His patent on shear-assisted extrusion reflects his expertise and dedication to improving industrial processes. As he continues to work at Battelle Memorial Institute, his contributions are sure to influence the future of material processing and manufacturing efficiency.

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