Location History:
- Toyota, JP (2014)
- Aichi, JP (2016)
Company Filing History:
Years Active: 2014-2016
Title: Inventor Profile - Nahomi Hamaguchi
Introduction
Nahomi Hamaguchi is an innovative inventor based in Aichi, Japan, known for her contributions to the field of materials science. With a particular focus on lead-free sliding materials, she has developed solutions that enhance performance while maintaining environmental sustainability.
Latest Patents
Nahomi holds two notable patents, showcasing her expertise in developing advanced materials. The first patent involves a Pb-free copper-alloy sliding material and a method of producing it. This innovative sliding material contains specific percentages of tin (Sn), bismuth (Bi), and silver (Ag), with optional additives like nickel (Ni), phosphorus (P), zinc (Zn), and others for enhanced properties. The second patent outlines the creation of lead-free copper-based sintered sliding material and parts, utilizing minerals like talc and mica. These materials provide improved sliding properties without the traditional inclusion of lead, offering a sustainable alternative with superior performance characteristics.
Career Highlights
Currently, Nahomi Hamaguchi works at Taiho Kogyo Co., Ltd., a company renowned for its expertise in high-performance sliding materials. Her work emphasizes the importance of innovation in material development and sustainability, leading to significant advancements in her field.
Collaborations
Throughout her career, Nahomi has collaborated with talented professionals, including her coworkers Hiromi Yokota and Ryo Mukai. These collaborations have enhanced her research and contributed to the success of her innovative projects.
Conclusion
Nahomi Hamaguchi exemplifies the spirit of innovation and dedication to creating environmentally friendly solutions in the materials industry. Her patents reflect her commitment to enhancing performance while reducing the ecological footprint, making her a significant figure in the ongoing development of sustainable technologies.