Company Filing History:
Years Active: 2025
Title: Shota Nagata: Innovator in Molded Article Inspection Technology
Introduction
Shota Nagata is a prominent inventor based in Osaka, Japan. He has made significant contributions to the field of inspection technology, particularly in the area of molded articles. His innovative work has led to the development of a unique inspection device that utilizes machine learning to enhance the accuracy of mechanical property predictions.
Latest Patents
Shota Nagata holds a patent for a "Non-transitory computer readable medium storing program for inspecting molded article region, method for inspecting molded article region, and device for inspecting molded article region." This patent describes an inspection device that includes a storage unit for a mechanical property inference model generated by machine learning. The model is based on known mechanical property information and nondestructive inspection information of a fiber-reinforced molded article region. The device is designed to predict unknown mechanical property information of a second molded article region, thereby improving the inspection process.
Career Highlights
Shota Nagata is currently employed at Teijin Limited, a company known for its advanced materials and technology solutions. His work at Teijin Limited has allowed him to apply his expertise in mechanical properties and nondestructive inspection methods. With a focus on innovation, he continues to push the boundaries of technology in his field.
Collaborations
Shota has collaborated with talented coworkers such as Kaori Tanigami and Chio Mineo. Their combined efforts contribute to the advancement of inspection technologies and the development of new solutions in the industry.
Conclusion
Shota Nagata is a key figure in the realm of molded article inspection technology. His innovative patent and work at Teijin Limited highlight his commitment to advancing the field. Through collaboration and dedication, he continues to make significant strides in improving inspection methods.