Micro ultrasonic knurling technology creating high precision texture on sliding surface in mechanical system (fundamental experiment)

Shigeru Aoki, Yasunori Sakai, Tomohisa Tanaka

研究成果: Conference contribution

抄録

Sliding surface in mechanical system is required to move smoothly and stop at target position. Sliding surface can move and stop by applying adequate friction force. It is necessary to develop machining technology to create texture with high precision and efficiency. On the other hand, ultrasonic vibration is used in many manufacturing fields. It is well known that surface roughness is improved and stress is reduced using ultrasonic vibration. In this study, machining technology creating wear resistant texture on large area sliding surface with high precision and efficiency using ultrasonic vibration during knurling is developed. The technology can be applied to the dampers and the base isolation systems for reduction of seismic response of the structures In this paper, the effect of ultrasonic vibration is examined by the fundamental experiment. In some of those devices, friction characteristics are an important factor for controlling their efficiency. In the experiment making a groove on the surface with an indenter using a 2 dimensional table, pressing force and friction force are measured. These forces are reduced using ultrasonic vibration. Pressing experiment making texture on the surface is also made. Deeper and clearer marks are formed using ultrasonic vibration during knurling.

本文言語English
ホスト出版物のタイトルOperations, Applications, and Components; Seismic Engineering; Non-Destructive Examination
出版社American Society of Mechanical Engineers (ASME)
ISBN(電子版)9780791885352
DOI
出版ステータスPublished - 2021
イベントASME 2021 Pressure Vessels and Piping Conference, PVP 2021 - Virtual, Online
継続期間: 2021 7月 132021 7月 15

出版物シリーズ

名前American Society of Mechanical Engineers, Pressure Vessels and Piping Division (Publication) PVP
5
ISSN(印刷版)0277-027X

Conference

ConferenceASME 2021 Pressure Vessels and Piping Conference, PVP 2021
CityVirtual, Online
Period21/7/1321/7/15

ASJC Scopus subject areas

  • 機械工学

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