Eindhoven, Netherlands

Hugo Liebrand

USPTO Granted Patents = 1 

Average Co-Inventor Count = 7.0

ph-index = 1


Company Filing History:


Years Active: 2024

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1 patent (USPTO):Explore Patents

Title: Innovations by Hugo Liebrand in Additive Manufacturing

Introduction

Hugo Liebrand is an innovative inventor based in Eindhoven, Netherlands. He has made significant contributions to the field of additive manufacturing, particularly in the area of washing apparatuses for 3D printed parts. His work focuses on improving the efficiency and effectiveness of post-processing methods for additively fabricated components.

Latest Patents

Hugo Liebrand holds a patent for a washing apparatus and methods used to process additively fabricated parts. This patent describes a system designed to wash uncured liquid resin from 3D printed components. The apparatus includes multiple containers for storing solvents and is fluidly connected to a vessel where the parts are placed. The design allows for a two-step washing process, where different solvents can be introduced in succession without removing the parts from the vessel. This innovation enhances the washing process, making it more efficient and streamlined.

Career Highlights

Hugo Liebrand is currently employed at Formlabs, Inc., a company known for its advancements in 3D printing technology. His role involves developing innovative solutions that improve the post-processing of 3D printed parts. With a focus on practical applications, Liebrand's work contributes to the growing field of additive manufacturing.

Collaborations

Hugo collaborates with talented individuals such as Jonathan Fussman and David Sadowski. Together, they work on projects that push the boundaries of what is possible in additive manufacturing and post-processing techniques.

Conclusion

Hugo Liebrand's contributions to the field of additive manufacturing, particularly through his patented washing apparatus, demonstrate his commitment to innovation. His work at Formlabs, Inc. continues to influence the industry and improve the efficiency of 3D printing processes.

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