Niihama, Japan

Ayumi Hyojo


 

Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2016

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1 patent (USPTO):Explore Patents

Title: **The Innovative Contributions of Inventor Ayumi Hyojo**

Introduction

Ayumi Hyojo, an accomplished inventor based in Niihama, Japan, has made significant strides in the field of materials science. With her keen insight into chemical engineering, she has contributed to the production of innovative aluminum hydroxide powder. Her work focuses on enhancing purity and efficiency in the manufacturing processes within the industry.

Latest Patents

Ayumi Hyojo holds a patent on "Aluminium hydroxide powder and method for producing same." This invention outlines a process for creating aluminum hydroxide powder that has a predetermined cumulative pore volume, ideal for producing high-purity alumina. The patented method results in an aluminum hydroxide powder characterized by high bulk density, improved firing efficiency, and exceptional shape retention, proving valuable in various applications.

Career Highlights

Throughout her career, Hyojo has been a vital part of Sumitomo Chemical Company, Limited. Her role in the organization highlights her commitment to advancing chemical engineering and the materials industry. The knowledge and expertise she has demonstrated in her field reflect her dedication to innovation and excellence.

Collaborations

Ayumi has collaborated with notable colleagues such as Kensen Okusako and Norifumi Azuma. Their teamwork exemplifies the spirit of collaboration within Sumitomo Chemical Company, fostering an environment where creativity and innovation can thrive, ultimately leading to groundbreaking advancements in chemical manufacturing.

Conclusion

In conclusion, Ayumi Hyojo stands out as a remarkable inventor whose contributions to aluminum hydroxide production have far-reaching implications. Her innovative approaches not only advance the industry but also set a precedent for future developments in materials science. With continued research and collaboration, her work promises to inspire further innovations in the field.

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