Aerdenhout, Netherlands

Mark Willem Litz

USPTO Granted Patents = 2 

 

 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2023-2025

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2 patents (USPTO):Explore Patents

Title: Innovations of Mark Willem Litz

Introduction

Mark Willem Litz is a notable inventor based in Aerdenhout, Netherlands. He has made significant contributions to the field of materials engineering, particularly in the production of tinplate and chromium oxide layers. With a total of 2 patents, Litz has demonstrated his expertise and innovative spirit in his work.

Latest Patents

Litz's latest patents include a "Method for passivating a tinplate strip and apparatus for producing said passivated tinplate strip." This method involves passivating a tinplate strip after electrodepositing the tin layer or layers, or after an optional flow-melting of the electrodeposited tin layer or layers. The apparatus developed for this process enhances the production of the passivated tinplate strip. Another significant patent is the "Method for electrolytically depositing a chromium oxide layer." This method focuses on electrolytically depositing a chromium oxide layer onto either blackplate or blackplate coated with a chromium electrodeposited coating produced based on chromium(III) technology electroplating.

Career Highlights

Mark Willem Litz is currently employed at Tata Steel Ijmuiden B.V., where he applies his innovative techniques to improve production processes. His work has been instrumental in advancing the quality and efficiency of materials used in various applications.

Collaborations

Litz has collaborated with notable colleagues such as Michiel Steegh and Jan Paul Penning, contributing to a dynamic work environment that fosters innovation and creativity.

Conclusion

Mark Willem Litz's contributions to the field of materials engineering through his patents and work at Tata Steel Ijmuiden B.V. highlight his role as a significant inventor. His innovative methods for passivating tinplate and depositing chromium oxide layers are paving the way for advancements in material production.

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