Measurement of Snow Cutting Forces for Analysis and Design of a Snow Ski
The turning motion of an alpine snow ski is made possible by centripetal force and the moment around the center of mass. Both the force and moment are produced by resistance forces from the surface of the snow. The centripetal forces are obtained by placing the ski's longitudinal axis at an ang...
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| Published in | Journal of Ski Science Vol. 3; no. 1; pp. 11 - 21 |
|---|---|
| Main Authors | , |
| Format | Journal Article |
| Language | English Japanese |
| Published |
Japan Society of Ski Sciences
2005
日本スキー学会 |
| Subjects | |
| Online Access | Get full text |
| ISSN | 1349-449X 1884-1422 |
| DOI | 10.14845/jskisciences2003.3.11 |
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| Abstract | The turning motion of an alpine snow ski is made possible by centripetal force and the moment around the center of mass. Both the force and moment are produced by resistance forces from the surface of the snow. The centripetal forces are obtained by placing the ski's longitudinal axis at an angle inclined away from the velocity vector and simultaneously edging the ski into the snow. A experimental device rotates a compact snow specimen and cuts it using a cutting tool by simulating the edge of a ski. In order that it can be cut while rotating with the attack angle set up in the whole cutting tool, the circular-arc type cutting tool was developed and it used for the experimental device. The force sensor attached in the cutting tool measured three components of snow cutting force, i.e. a horizontal component inverse to the cutting direction, a vertical upward component to the snow surface, and a transverse component vertical to the cutting and vertical direction. The transverse component corresponds to the centripetal force which makes ski's turning motions possible. The result of an experiment showed the effects of cutting speed, attack angle, and edging angle on snow cutting forces. The snow cutting force equations were obtained by applying multiple regression analysis to experimental data. |
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| AbstractList | The turning motion of an alpine snow ski is made possible by centripetal force and the moment around the center of mass. Both the force and moment are produced by resistance forces from the surface of the snow. The centripetal forces are obtained by placing the ski's longitudinal axis at an angle inclined away from the velocity vector and simultaneously edging the ski into the snow. A experimental device rotates a compact snow specimen and cuts it using a cutting tool by simulating the edge of a ski. In order that it can be cut while rotating with the attack angle set up in the whole cutting tool, the circular-arc type cutting tool was developed and it used for the experimental device. The force sensor attached in the cutting tool measured three components of snow cutting force, i.e. a horizontal component inverse to the cutting direction, a vertical upward component to the snow surface, and a transverse component vertical to the cutting and vertical direction. The transverse component corresponds to the centripetal force which makes ski's turning motions possible. The result of an experiment showed the effects of cutting speed, attack angle, and edging angle on snow cutting forces. The snow cutting force equations were obtained by applying multiple regression analysis to experimental data. |
| Author | KOBAYASHI, Toshiichi TADA, Noritaka |
| Author_FL | 多田 憲孝 小林 俊市 |
| Author_FL_xml | – sequence: 1 fullname: 多田 憲孝 – sequence: 2 fullname: 小林 俊市 |
| Author_xml | – sequence: 1 fullname: KOBAYASHI, Toshiichi organization: Snow and Ice Research Group, National Research Institute for Earth Science and Disaster Prevention – sequence: 1 fullname: TADA, Noritaka organization: Niigata College of Technology |
| BackLink | https://cir.nii.ac.jp/crid/1390282680209921280$$DView record in CiNii |
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| DocumentTitleAlternate | スキーのための雪の切削抵抗力の測定 |
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| References | 6) 竹内由香里, 納口恭明, 河島克久, 和泉薫 (2001) デジタル式荷重測定器を利用した積雪の硬度測定, 雪氷, 63 (5),: 441-449. 3) Brown, C. A. and Outwater, J. O. (1989) On the ski ability of snow, Skiing Trauma and Safety, Seventh International Symposium, ASTM STP 1022, Robert J. Johnson, C. D.Mote, Jr.. and Mare-Herve Binet, Eds., Philadelphia: 329-336. 5) Tada, N. and Hirano, Y. (2002) In search of the mechanics of a turning alpine ski using snow cutting force measurements, Sports Engineering, 5 (1): 15-22. 1) Lieu, D. K. and Mote, Jr., C. D. (1984), Experiments in the machining of ice at negative rake angles, Journal of Glaciology, 30 (104): 77-81. 7) 平野陽一, 多田憲孝 (1994) 噴流抵抗と切削抵抗を考慮したスキー回転のシミュレーション, 日本機械学会スポーツ工学シンポジウム1994, 940-59S: 42-46 4) Tada, N. and Hirano, Y. (1999) Simulation of a turning ski using ice cutting data, Sports Engineering, 2 (1): 55-64. 8) 大渕慶史, 帯川利之 (2000) 砥粒切削過程の有限要素シミュレーション~負のすくい角における切削状態の解析~, 精密工学会誌66 (9): 1467-1471. 2) Renshaw, A. A. and Mote, Jr., C. D. (1989), Model for the turning snow ski, International Journal of Mechanical Science, 31 (10): 721-736. |
| References_xml | – reference: 2) Renshaw, A. A. and Mote, Jr., C. D. (1989), Model for the turning snow ski, International Journal of Mechanical Science, 31 (10): 721-736. – reference: 6) 竹内由香里, 納口恭明, 河島克久, 和泉薫 (2001) デジタル式荷重測定器を利用した積雪の硬度測定, 雪氷, 63 (5),: 441-449. – reference: 4) Tada, N. and Hirano, Y. (1999) Simulation of a turning ski using ice cutting data, Sports Engineering, 2 (1): 55-64. – reference: 5) Tada, N. and Hirano, Y. (2002) In search of the mechanics of a turning alpine ski using snow cutting force measurements, Sports Engineering, 5 (1): 15-22. – reference: 3) Brown, C. A. and Outwater, J. O. (1989) On the ski ability of snow, Skiing Trauma and Safety, Seventh International Symposium, ASTM STP 1022, Robert J. Johnson, C. D.Mote, Jr.. and Mare-Herve Binet, Eds., Philadelphia: 329-336. – reference: 8) 大渕慶史, 帯川利之 (2000) 砥粒切削過程の有限要素シミュレーション~負のすくい角における切削状態の解析~, 精密工学会誌66 (9): 1467-1471. – reference: 7) 平野陽一, 多田憲孝 (1994) 噴流抵抗と切削抵抗を考慮したスキー回転のシミュレーション, 日本機械学会スポーツ工学シンポジウム1994, 940-59S: 42-46 – reference: 1) Lieu, D. K. and Mote, Jr., C. D. (1984), Experiments in the machining of ice at negative rake angles, Journal of Glaciology, 30 (104): 77-81. |
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| Snippet | The turning motion of an alpine snow ski is made possible by centripetal force and the moment around the center of mass. Both the force and moment are produced... |
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| StartPage | 11 |
| SubjectTerms | Cutting force Negative rake angle Ski Snow resistance force Turning motion |
| Title | Measurement of Snow Cutting Forces for Analysis and Design of a Snow Ski |
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