Osaka, Japan

Taeko Izumo

USPTO Granted Patents = 6 

 

Average Co-Inventor Count = 3.4

ph-index = 1


Location History:

  • Osaka, JP (2021 - 2023)
  • Kyoto, JP (2023 - 2024)

Company Filing History:


Years Active: 2021-2024

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6 patents (USPTO):Explore Patents

Title: Taeko Izumo: Innovator in Optical Molding Technology

Introduction

Taeko Izumo is a prominent inventor based in Osaka, Japan. She has made significant contributions to the field of optical molding technology, holding a total of six patents. Her innovative work focuses on developing advanced materials and methods for three-dimensional shaping.

Latest Patents

Izumo's latest patents include a model material ink set, support material composition, ink set, three-dimensional shaped object, and a method for manufacturing three-dimensional shaped objects. The model material ink set is designed for use in an optical molding method by an inkjet system. It comprises a color ink and a clear ink containing an ethylenically unsaturated monomer. The color ink contains 30 to 75% of a (meth)acrylate and 10 to 50% of a nitrogen-containing ethylenically unsaturated monomer. The clear ink contains 30 to 80% of a (meth)acrylate, ensuring optimal performance in the molding process. Additionally, her resin composition for modeling material is used for shaping through light curing molding, achieving excellent dimensional accuracy.

Career Highlights

Throughout her career, Taeko Izumo has worked with notable companies such as Maxell, Ltd. and Mimaki Engineering Company, Ltd. Her experience in these organizations has allowed her to refine her skills and contribute to groundbreaking advancements in her field.

Collaborations

Izumo has collaborated with talented individuals, including Masakatsu Okawa and Kenta Hongo. These partnerships have fostered innovation and creativity in her projects.

Conclusion

Taeko Izumo's contributions to optical molding technology and her impressive portfolio of patents highlight her role as a leading inventor in her field. Her work continues to influence advancements in three-dimensional shaping and material development.

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