Farmington, MI, United States of America

Loius Justus Fage


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2017

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1 patent (USPTO):

Title: Celebrating the Innovations of Loius Justus Fage

Introduction

Loius Justus Fage is an inventive mind located in Farmington, MI, whose contribution to the field of ink technology has made a significant impact. With a single patent to his name, he has developed a unique formula that enhances the application of ink on various substrates, showcasing his ingenuity and expertise in his field.

Latest Patents

Fage's outstanding innovation is his patented creation of a radiation-curable inkjet ink designed specifically for glass, ceramic, or metal surfaces. This ink composition incorporates several essential components, including glass frits, a chromophore, and a UV-curable element. The glass frits serve to fuse the ink with the substrate, while the chromophore acts as the primary colorant. Most importantly, the UV-curable component activates upon exposure to ultraviolet radiation, initiating a polymerization process that secures the ink onto the underlying material. Upon curing, the substrate is further heated to ensure that the ink composition bonds seamlessly, thereby decorating and protecting the substrate.

Career Highlights

Fage currently works at Electronics for Imaging GmbH, a leading company in the innovation of digital printing technologies. His role is instrumental in developing advanced ink solutions that cater to diverse industrial applications, showcasing his expertise in material science and ink technology.

Collaborations

Throughout his career, Fage has collaborated with talented individuals in the field, including colleagues Jiangping Wang and Matthew Tennis. Their collective expertise has fostered a collaborative environment that drives forward-thinking solutions and enhances the research and development of innovative printing technologies.

Conclusion

Loius Justus Fage’s contributions to innovation in ink technology demonstrate his commitment to advancing the field. His patented radiation-curable inkjet ink not only stands as a testament to his inventive spirit but also provides essential benefits to industries utilizing glass, ceramic, and metal materials. As he continues to explore new possibilities within his field, it will be exciting to see how his work evolves and influences future innovations.

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