Company Filing History:
Years Active: 2011-2015
Title: Daisuke Shiba: Innovator in Composite Metal Alloys
Introduction
Daisuke Shiba is a prominent inventor based in Nagano, Japan. He has made significant contributions to the field of materials science, particularly in the development of composite metal alloys. With a total of 3 patents to his name, Shiba's work focuses on innovative manufacturing methods that enhance the properties of metal materials.
Latest Patents
Shiba's latest patents include a method for manufacturing composite metal alloy and a method for producing carbon nanocomposite metal material. The first patent describes a process where an Mg material serves as an alloy base, which is mixed with carbon nanomaterial to create a mixture. This mixture is then sintered to form an Mg sintered compact that incorporates the carbon nanomaterial. The final step involves dissolving this compact to obtain a melt of the composite metal alloy. The second patent outlines a method for producing a carbon nanocomposite metal material that improves the dispersibility of carbon nanomaterials and enhances the binding between the carbon nanomaterial and the matrix metal stock. This process involves mixing the matrix metal stock with microparticulate-coated carbon nanomaterial and maintaining it at a specific temperature for optimal results.
Career Highlights
Daisuke Shiba is currently employed at Nissei Plastic Industrial Co., Ltd., where he continues to innovate in the field of composite materials. His work has garnered attention for its potential applications in various industries, including automotive and aerospace.
Collaborations
Shiba has collaborated with notable colleagues such as Masashi Suganuma and Atsushi Kato, contributing to advancements in their shared field of expertise.
Conclusion
Daisuke Shiba's innovative work in composite metal alloys showcases his commitment to advancing materials science. His patents reflect a deep understanding of the complexities involved in manufacturing and the potential for improved material properties.