Yokohama, Japan

Yoshio Mori


Average Co-Inventor Count = 2.5

ph-index = 5

Forward Citations = 218(Granted Patents)


Location History:

  • Kawasaki, JP (1999 - 2001)
  • Sagamihara, JP (2002 - 2004)
  • Yokohama, JP (1994 - 2008)

Company Filing History:


Years Active: 1994-2008

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9 patents (USPTO):Explore Patents

Title: The Innovations of Yoshio Mori

Introduction

Yoshio Mori is a prominent inventor based in Yokohama, Japan. He has made significant contributions to the field of optical glass, holding a total of 9 patents. His work focuses on developing optical materials with enhanced properties for various applications.

Latest Patents

Mori's latest patents include innovative formulations for optical glass. One notable patent describes an optical glass that comprises in mass percent: 0.1-5% WO, 3.6-15% MgO, and 0.1-5% LiO+NaO+KO, among other components. This optical glass is designed to have a refractive index (nd) ranging from 1.54 to 1.65 and an Abbe number (νd) exceeding 57 up to 69. It also features a liquid phase temperature between 870°C and 930°C, ensuring high resistance to devitrification while maintaining low dispersion characteristics. Another patent outlines a different optical glass composition, which includes 15-35% PO, 40-60% NbO, and is free of Pb and As, with a refractive index ranging from 1.78 to 1.90.

Career Highlights

Throughout his career, Yoshio Mori has worked with notable companies such as Kabushiki Kaisha Ohara and Fujitsu Corporation. His experience in these organizations has contributed to his expertise in optical materials and innovations.

Collaborations

Mori has collaborated with several talented individuals in his field, including Masahiro Onozawa and Fumitake Abe. These collaborations have likely enriched his work and led to further advancements in optical glass technology.

Conclusion

Yoshio Mori's contributions to the field of optical glass demonstrate his innovative spirit and dedication to advancing material science. His patents reflect a commitment to creating high-quality optical materials that are both cost-effective and efficient.

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