Tokyo, Japan

Hiroki Ishibashi


Average Co-Inventor Count = 1.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: Hiroki Ishibashi: Innovator in Glass Forming Technology

Introduction

Hiroki Ishibashi is a notable inventor based in Tokyo, Japan. He has made significant contributions to the field of glass manufacturing, particularly with his innovative forming apparatus designed for creating glass ribbons. His work exemplifies the intersection of engineering and creativity in the realm of material science.

Latest Patents

Hiroki Ishibashi holds a patent for a forming apparatus that is specifically designed for forming a glass ribbon. This apparatus features an axial direction that extends from a first end to a second end, with the first end serving as the inlet for molten glass. The design includes a first and second protruding portion located at the top, which extend along the length of the apparatus. A channel is formed between these protruding portions, allowing molten glass to flow from the first end toward the second end. Notably, the channel width decreases continuously as it approaches the second end, ultimately reaching zero. This innovative design enhances the efficiency of glass ribbon production.

Career Highlights

Hiroki Ishibashi is currently employed at AGC Inc., a leading company in the glass and materials industry. His role involves the development and refinement of technologies that improve glass manufacturing processes. His expertise and innovative mindset have positioned him as a valuable asset to his team and the industry at large.

Collaborations

Hiroki has collaborated with Masanori Nakano, a fellow innovator in the field. Together, they have worked on projects that aim to advance glass forming technologies and improve production efficiency.

Conclusion

Hiroki Ishibashi's contributions to glass forming technology through his patented apparatus demonstrate his commitment to innovation in the field. His work not only enhances manufacturing processes but also reflects the potential for future advancements in material science.

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