Tokyo, Japan

Naho Inoue


Average Co-Inventor Count = 2.4

ph-index = 1


Company Filing History:


Years Active: 2025

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3 patents (USPTO):Explore Patents

Title: Naho Inoue: Innovator in Metal Material Evaluation

Introduction

Naho Inoue is a prominent inventor based in Tokyo, Japan. She has made significant contributions to the field of material science, particularly in evaluating the delayed fracture characteristics of metal materials. With a total of 3 patents to her name, Inoue's work is recognized for its innovative approaches and practical applications.

Latest Patents

Inoue's latest patents focus on methods for evaluating delayed fracture in metal materials. One of her notable inventions is a method that involves bringing an aqueous solution containing chloride ions into contact with the surface of a metal material. This process allows for the evaluation of the delayed fracture characteristics by depositing a specific amount of chloride onto the surface. Another patent describes a method that utilizes a solution-retaining material impregnated with a chloride solution to corrode the edge face of the metal material, further assessing its delayed fracture characteristics.

Career Highlights

Naho Inoue is currently employed at JFE Steel Corporation, where she continues to advance her research and development efforts. Her work has been instrumental in enhancing the understanding of metal material behavior under various conditions, contributing to the overall safety and reliability of metal components in various industries.

Collaborations

Inoue collaborates with esteemed colleagues such as Shinji Otsuka and Daisuke Mizuno. These partnerships have fostered a collaborative environment that encourages innovation and the sharing of ideas.

Conclusion

Naho Inoue's contributions to the field of material science, particularly in evaluating metal materials, highlight her role as a leading inventor. Her innovative methods and collaborative efforts continue to push the boundaries of research and development in this critical area.

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