Osaka, Japan

Yoshiaki Eguchi


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 13(Granted Patents)


Company Filing History:


Years Active: 1991

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1 patent (USPTO):Explore Patents

Title: Yoshiaki Eguchi: Innovator in Bubble Diffusion Technology

Introduction

Yoshiaki Eguchi is a notable inventor based in Osaka, Japan. He has made significant contributions to the field of liquid technology, particularly with his innovative device designed for releasing and diffusing bubbles into liquids. His work has implications in various industries, enhancing processes that require gas-liquid interactions.

Latest Patents

Yoshiaki Eguchi holds a patent for a "Device for releasing and diffusing bubbles into liquid." This device features a rotary shaft that is positioned vertically in a liquid and is capable of rotation about its axis. The rotary shaft contains a gas channel that extends axially through it. At the lower end of the rotary shaft, a bubble releasing-diffusing rotor is attached, which includes multiple liquid agitating projections arranged at specific intervals around its circumference. The rotor is designed with grooves that extend radially from its center to the outer ends of the projections, facilitating the centrifugal guidance of liquid during rotation. Additionally, the rotor has gas discharge ports that connect with the gas channel, allowing for the effective release of bubbles into the liquid.

Career Highlights

Yoshiaki Eguchi is currently employed at Showa Aluminum Corporation, where he continues to innovate and develop technologies that enhance industrial processes. His expertise in liquid dynamics and bubble diffusion has positioned him as a key figure in his field.

Collaborations

Yoshiaki has collaborated with Shigemi Tanimoto, working together to advance their research and development efforts in bubble diffusion technology.

Conclusion

Yoshiaki Eguchi's contributions to the field of liquid technology through his innovative patent demonstrate his commitment to enhancing industrial processes. His work continues to influence various applications where gas-liquid interactions are crucial.

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