Company Filing History:
Years Active: 2012
Title: Akito Harada: Innovator in Magnetic Coating Technologies
Introduction
Akito Harada is a notable inventor based in Hirakata, Japan. He has made significant contributions to the field of pattern forming methods, particularly through his innovative patent that utilizes magnetic particles in coating compositions. His work exemplifies the intersection of materials science and engineering.
Latest Patents
Harada holds a patent for a unique pattern forming method. This method involves applying a coating composition containing magnetic particles to an article, resulting in the formation of a coating film. A plurality of sheet form magnets is strategically placed along the front surface of this coating film. The arrangement of these magnets is such that the magnetic poles on the front and back surfaces differ between adjacent magnets, allowing for effective interaction. The coating composition includes a thermoplastic resin, flaky magnetic particles, and specific solvents. By applying a magnetic field through the sheet form magnets, the magnetic particles are oriented parallel to the coating film's surface, leading to the formation of distinct patterns as light reflects off the particles.
Career Highlights
Throughout his career, Akito Harada has worked with prominent companies, including Inoac Corporation and Ju Teng International Holdings Limited. His experience in these organizations has contributed to his expertise in developing innovative technologies and methods.
Collaborations
Harada has collaborated with notable colleagues, including Yoshinori Sugiura and Jun Nishikawa. These partnerships have likely enhanced his research and development efforts, fostering a collaborative environment for innovation.
Conclusion
Akito Harada's contributions to the field of magnetic coating technologies highlight his innovative spirit and dedication to advancing material science. His patent for a pattern forming method showcases the potential of magnetic particles in creating unique visual effects. Harada's work continues to inspire future innovations in this area.