Aichi, Japan

Nobuki Nishidera


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2017

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1 patent (USPTO):Explore Patents

Title: Innovations of Nobuki Nishidera in Vibration Suppression Technology

Introduction: Nobuki Nishidera is a prominent inventor based in Aichi, Japan, known for his significant contributions to the field of machine tools. With one patent to his name, he has made strides in addressing a common challenge in machining: chatter vibration.

Latest Patents: Nishidera's noteworthy patent is a "Chatter Vibration Suppressing Method and Machine Tool." This innovative method involves acquiring the moment of inertia of a rotating body and recording this value into a machining program. By calculating a variable amplitude and a variable period in response to changes in rotation speed, his invention effectively reduces chatter vibration. This breakthrough aids in enhancing the quality and precision of machining processes.

Career Highlights: Nishidera is affiliated with Okuma Corporation, a renowned player in the manufacturing of CNC machine tools. His work encompasses advanced engineering solutions focused on improving machining efficiency and accuracy. Throughout his career, he has demonstrated a commitment to innovation within the machining industry.

Collaborations: At Okuma Corporation, Nishidera collaborates with talented colleagues such as Kiyoshi Yoshino and Yuto Mizukami. Their collective expertise and teamwork foster an environment ripe for innovation, driving advances in technology and enhancing product capabilities.

Conclusion: Nobuki Nishidera stands as a testament to the impact that focused innovation can have within the manufacturing sector. His patented method for suppressing chatter vibration not only improves machining outcomes but also reflects his dedication to advancing technology in his field. With ongoing collaboration at Okuma Corporation, the potential for future innovations continues to grow, promising even greater advancements in machining precision and efficiency.

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