New method of tool wear testing on gear hobbing
A new method of tool wear testing on gear hobbing was developed. First, the cutting mechanism for gear hobbing was examined visually by 2D and 3D CAD. The cutting mechanism of the proposed method was the same as gear hobbing with hob shift. The relations between the chip volume and cutting forces we...
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Published in | Journal of the Japan Society for Abrasive Technology Vol. 65; no. 11; pp. 607 - 613 |
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Main Authors | , , , |
Format | Journal Article |
Language | Japanese |
Published |
Tokyo
The Japan Society for Abrasive Technology
01.11.2021
Japan Science and Technology Agency |
Subjects | |
Online Access | Get full text |
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Abstract | A new method of tool wear testing on gear hobbing was developed. First, the cutting mechanism for gear hobbing was examined visually by 2D and 3D CAD. The cutting mechanism of the proposed method was the same as gear hobbing with hob shift. The relations between the chip volume and cutting forces were clarified. The chip shape in the proposed method was similar to gear hobbing. This experimental method was useful to investigate hob wear. |
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AbstractList | A new method of tool wear testing on gear hobbing was developed. First, the cutting mechanism for gear hobbing was examined visually by 2D and 3D CAD. The cutting mechanism of the proposed method was the same as gear hobbing with hob shift. The relations between the chip volume and cutting forces were clarified. The chip shape in the proposed method was similar to gear hobbing. This experimental method was useful to investigate hob wear. |
Author | TSUCHIKABE, Soichi FUJIWARA, Junsuke TAKEMURA, Bunpei TASHIRO, Tetsuya |
Author_xml | – sequence: 1 fullname: TASHIRO, Tetsuya organization: Osaka Electro-Communication University – sequence: 2 fullname: FUJIWARA, Junsuke organization: Former Osaka University – sequence: 3 fullname: TAKEMURA, Bunpei organization: Graduate School of Osaka University (Current JFE Steel Corporation) – sequence: 4 fullname: TSUCHIKABE, Soichi organization: Graduate School of Osaka University (Current Canon Inc.) |
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Copyright | 2021 by The Japan Society for Abrasive Technology Copyright Japan Science and Technology Agency 2021 |
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References | 4) H. MATSUOKA and Y. TSUDA: Fundamental research on behavior of crater wear of hob in dry hobbing, 66, 646 (2000) 2038 (in Japanese).10.1299/kikaic.66.2038 1) H. YOSHIMURA et al: Study on dry cutting in hobbing, J. Jpn. Soc. Abras. Technol., 51, 2 (2007) 36 (in Japanese).10.11420/jsat.51.106 6) H. MATSUOKA et al. : Fundamental research on hobbing considering environment (Influence of various coating films), 81, 830 (2015) DOI:10.1299/transjsme. 15-00352 (in Japanese).10.1299/transjsme. 15-00352 5) H. MATSUOKA and Y. TSUDA: Fundamental research on behavior of crater wear of hob in dry hobbing (2nd report, influence of cutting speed), 66, 648 (2000) 2832 (in Japanese).10.1299/kikaic.66.2832 3) A. KUBO and H. QIO : Effect of coating film on tool life of high speed steel hob in dry gear hobbing, Trans. Jpn. Soc. Mech. Eng., C, 79,739 (2013) 892 (in Japanese).10.1299/kikaic.79.892 7) Y. UMEZAKI and Y. ARIURA: Calculative simulation of hobbing forces, Trans. Jpn. Soc. Mech. Eng., C, 64, 622 (1998) 2255 (in Japanese).10.1299/kikaic.64.2255 2) O. Winkel: New developments in gear hobbing, Gear Technology, 27, 2 (2010) 45. |
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SubjectTerms | 3D CAD Cutting force cutting mechanism Cutting parameters Cutting wear Gear hobbing hob shift simulation Tool wear |
Title | New method of tool wear testing on gear hobbing |
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