Presentation 2018-12-10
Development of Burnishing Method by using High intensity Ultrasonic Pulse
Sayuri Tarvainen, Yuji Watanabe,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) Burnishing is one of the mirror finishing method by using a smooth tool in order to polish work piece surface adding moderate pressure. This process provides a smooth surface by plastic deformation on scallop height of the machined surface. Conventional ultrasonic burnishing is used a large vibration amplitude by resonance phenomenon. Target material for this method is known metal by plastic deformation. To apply this method for tungsten carbide such as a hard and brittle material, we use ultrasonic pulse wave instead of continuous wave. When work piece and tool are contacted during burnishing, tool is jumped by driving continuous wave then it affects surface quality however by driving pulse wave it provides to suppress this phenomenon. Applying ultrasonic pulse wave, we define feasible method to improve surface quality for tungsten carbide.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) High-Power Ultrasonic / Ultrasonic Pulse / Ringing / Ultrasonic Machining / Burnishing / Tungsten carbide
Paper # US2018-73
Date of Issue 2018-12-03 (US)

Conference Information
Committee US
Conference Date 2018/12/10(1days)
Place (in Japanese) (See Japanese page)
Place (in English)
Topics (in Japanese) (See Japanese page)
Topics (in English)
Chair Shinichi Takeuchi(Toin Univ. of Yokohama)
Vice Chair Minoru Kurosawa(Tokyo Inst. of Tech.) / Jun Kondo(Shizuoka Univ.)
Secretary Minoru Kurosawa(Univ. of Tokyo) / Jun Kondo(Kanagawa Univ.)
Assistant Daisuke Koyama(Doshisha Univ.)

Paper Information
Registration To Technical Committee on Ultrasonics
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Development of Burnishing Method by using High intensity Ultrasonic Pulse
Sub Title (in English)
Keyword(1) High-Power Ultrasonic
Keyword(2) Ultrasonic Pulse
Keyword(3) Ringing
Keyword(4) Ultrasonic Machining
Keyword(5) Burnishing
Keyword(6) Tungsten carbide
1st Author's Name Sayuri Tarvainen
1st Author's Affiliation Takushoku University(Takushoku Univ.)
2nd Author's Name Yuji Watanabe
2nd Author's Affiliation Takushoku University(Takushoku Univ.)
Date 2018-12-10
Paper # US2018-73
Volume (vol) vol.118
Number (no) US-353
Page pp.pp.15-20(US),
#Pages 6
Date of Issue 2018-12-03 (US)