Location History:
- Shizuoka-ken, JP (2001)
- Shizuoka, JP (2003 - 2004)
Company Filing History:
Years Active: 2001-2004
Title: Eiji Murofushi: Innovator in Electromagnetic Shielding Technologies
Introduction
Eiji Murofushi is a prominent inventor based in Shizuoka, Japan. He has made significant contributions to the field of electromagnetic shielding, holding a total of 5 patents. His work focuses on innovative materials and methods that enhance the performance and efficiency of electromagnetic shielding structures.
Latest Patents
Murofushi's latest patents include an electromagnetic shielding plate and an electromagnetic shielding structure. The electromagnetic shielding plate comprises a hollow particle dispersed composite material, which includes a metal matrix containing hollow particles formed of inorganic compounds. The electromagnetic shielding structure consists of multiple electromagnetic shielding plates connected in two or three dimensions. Another notable patent is a method for separating metal and inorganic particles from a metal-inorganic particle composite material. This method involves heating the composite material into a melt, introducing flux, and allowing the melt and flux to interact. The resulting mixture separates into an upper layer containing inorganic particles and a lower layer composed of metal, which can then be recovered individually.
Career Highlights
Eiji Murofushi is associated with Yazaki Corporation, where he applies his expertise in developing advanced materials for various applications. His innovative approaches have positioned him as a key figure in the field of electromagnetic shielding.
Collaborations
Murofushi has collaborated with notable colleagues, including Takeshi Kamata and Satoshi Negishi. Their combined efforts contribute to the advancement of technologies in their respective fields.
Conclusion
Eiji Murofushi's work in electromagnetic shielding technologies showcases his innovative spirit and dedication to advancing material science. His patents reflect a commitment to improving the efficiency and effectiveness of electromagnetic shielding solutions.