Yokohama, Japan

Yoshiaki Konagaya


Average Co-Inventor Count = 2.8

ph-index = 3

Forward Citations = 45(Granted Patents)


Company Filing History:


Years Active: 1981-1989

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3 patents (USPTO):Explore Patents

Title: Yoshiaki Konagaya – A Pioneer in Combustible Exhaust Gas Treatment

Introduction

Yoshiaki Konagaya, an innovative inventor based in Yokohama, Japan, has made significant contributions to the field of combustion systems and the treatment of combustible exhaust gases. With a total of three patents to his name, Konagaya's work has impacted industries requiring advanced combustion technologies.

Latest Patents

Konagaya's latest patents focus on processes for treating combustible exhaust gases containing harmful components, particularly silane. One notable invention outlines a process that effectively burns combustible exhaust gases to prevent the deposition of fine silicon dioxide particles on burner nozzles. This innovation ensures a stable combustion process, free from pressure fluctuations. Additionally, he has developed a burner designed for flame-spray coating, capable of achieving high flame temperatures while efficiently spraying high-melting-point powder materials using available fuel gases like propane and butane.

Career Highlights

Throughout his career, Yoshiaki Konagaya has worked with prominent companies such as Nippon Sanso Corporation and Japan Oxygen Co., Ltd. His expertise in combustion technology has led him to develop groundbreaking advancements that improve efficiency and safety in industrial combustion processes.

Collaborations

Konagaya has collaborated with esteemed colleagues in his field, including Toshio Suwa and Tooru Tanaka. Their joint efforts have contributed to the refinement of various combustion technologies and the enhancement of exhaust gas treatment systems.

Conclusion

Yoshiaki Konagaya's innovative patents and contributions to combustion technology underline his significant role as an inventor in the field. His dedication to improving processes related to combustible exhaust gases and spray coating methods reflect his ongoing commitment to enhancing industrial practices. His work continues to inspire future innovations in combustion systems.

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