Company Filing History:
Years Active: 2022
Title: Innovations by Marcus Felipe Hori Ochi
Introduction
Marcus Felipe Hori Ochi is an accomplished inventor based in São José dos Campos, São Paulo, Brazil. He holds two patents that showcase his innovative contributions to the field of aeronautics. His work focuses on noise-abatement technologies for aircraft wing assemblies, reflecting his commitment to enhancing aviation efficiency and sustainability.
Latest Patents
One of his latest patents is titled "Retractable leading edge wing slats having autonomously curvable airflow shield for noise-abatement." This invention provides a noise-abatement airflow shield that is integral with the lower trailing edge of the slat. The shield can autonomously curve from a planar configuration when the slat is retracted to a convexly curved configuration when deployed. Another significant patent is "Noise abatement systems for retractable leading edge wing slats of an aircraft wing assembly." This system includes an elongate shield element that is unconnected but positionable adjacent to the lower trailing edge of the edge slat. The design allows for movement of the shield element between an operative position and an inoperative position, effectively reducing noise during flight.
Career Highlights
Marcus has worked with notable companies such as Embraer S.A. and the University of São Paulo (USP). His experience in these organizations has contributed to his expertise in aeronautical engineering and innovation.
Collaborations
Throughout his career, Marcus has collaborated with talented individuals, including Danillo Cafaldo Dos Reis and Leandro Guilherme Crenite Simões. These collaborations have likely enriched his work and led to further advancements in his field.
Conclusion
Marcus Felipe Hori Ochi exemplifies the spirit of innovation in the aviation industry through his patents and professional collaborations. His contributions to noise-abatement technologies are significant and reflect a dedication to improving aircraft design and performance.