Ohbu, Japan

Sachio Naito


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 16(Granted Patents)


Company Filing History:


Years Active: 1977

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1 patent (USPTO):Explore Patents

Title: **Innovative Contributions of Sachio Naito in Veneer Sheet Splicing**

Introduction

Sachio Naito, an accomplished inventor based in Ohbu, Japan, is recognized for his significant contribution to the manufacturing process of veneer sheets. His innovative methods have enhanced production efficiency and reliability in woodworking applications.

Latest Patents

Naito holds a patent for a "Method and Apparatus for Splicing of Veneer Sheets." This invention introduces an advanced technique where veneer sheets are fed horizontally through infeed and outfeed conveyors, directed by electric sensors. These sensors communicate predetermined signals to coordinate the splicing process, ensuring that adhesive application occurs precisely as the veneer sheets align. This method not only increases the speed of splicing but also enhances its strength in comparison to conventional methods.

Career Highlights

Sachio Naito has made a remarkable impact while working at Meinan Machinery Works, Inc. His dedication to improving veneer production processes has made him an invaluable asset to the company. His innovative spirit and technical expertise have led to significant advances in woodworking machinery.

Collaborations

Throughout his career, Naito has collaborated with talented individuals such as Katsuji Hasegawa and Yukio Takagi. Together, they have shared insights and expertise that have catalyzed further advancements in the field of machinery for veneer sheet production.

Conclusion

Sachio Naito’s inventive approach towards splicing veneer sheets has set a new standard in the woodworking industry. His patented method not only addresses previous limitations but also elevates production capabilities, ensuring stronger and faster results. With continued innovations, Naito's contributions will undoubtedly shape the future of wood processing technologies.

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