ショットピーニングによる歯科用材料の機械的特性の向上

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Published in日本機械学会論文集A編 Vol. 79; no. 803; pp. 1019 - 1029
Main Authors 青柳, 吉輝, 河原木, 雄介, 徳江, 藍, 大久保, 力廣, 髙桑, 脩, 祖山, 均
Format Journal Article
LanguageJapanese
Published 一般社団法人 日本機械学会 2013
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Author 徳江, 藍
祖山, 均
青柳, 吉輝
大久保, 力廣
河原木, 雄介
髙桑, 脩
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  fullname: 河原木, 雄介
  organization: 東北大学大学院
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  fullname: 徳江, 藍
  organization: 鶴見大学歯学部有床義歯補綴学講座
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  fullname: 大久保, 力廣
  organization: 鶴見大学歯学部有床義歯補綴学講座
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  fullname: 髙桑, 脩
  organization: 東北大学大学院工学研究科
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  fullname: 祖山, 均
  organization: 東北大学大学院工学研究科
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DOI 10.1299/kikaia.79.1019
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References (8) 西川雅章, 髙桑脩, 祖山均, “キャビテーションピーニングを受けたステンレス鋼の表面改質層の降伏応力分布と疲労特性の評価”, 日本機械学会論文集A編, Vol. 76, No. 770 (2010), pp. 1367-1372.
(11) Oliver, W. C., and Pharr, G. M., “An Improved Technique for Determining Hardness and Elastic Modulus Using Load and Displacement Sensing Indentation Experiments”, Journal of Materials Science, Vol. 7, No. 6 (1992), pp. 1564-1583.
(20) He, B. B., Preckwinkel, U., and Smith, K. L., “Fundamental Equation of Strain and Stress Measurement Using 2D detectors”, Proceedings of the 1998 SEM Spring Conference Experimntal Mechanics, (1998), pp. 217-220.
(9) Ogasawara, N., Chiba, N., and Chen, X., “A Simple Framework of Spherical Indentation for Measuring Elastoplastic Properties”, Mechanics of Materials, Vol. 41, No. 9 (2009), pp. 1025-1033.
(1) Saito, M., Notani, K., Miura, Y., and Kawasaki, T., “Complications and Failures in Removable Partial Dentures: A Clinical Evaluation”, Journal of Oral Rehabilitation, Vol. 29, (2002), pp. 627-633.
(4) Soyama, H., Sakai, K., Odhiambo, D., and Saka, M., “Cavitation Shotless Peening for Surface Modification of Alloy Steel”, JSME International Journal Series A, Vol. 46, No. 3 (2003), pp. 398-402.
(14) Dao, M., Chollacoop, N., Van Vliet, K. J., Venkatesh, T. A. and Suresh, S., “Computational Modeling of the Forward and Reverse Problems in Instrumented Sharp Indentation”, Acta Materialia, Vol. 49, No. 19 (2001), pp. 3899-3918.
(15) 坂上賢一, 岡崎信平, 小川武史, “インデンテーション法による粘弾性特性の評価と時間―温度換算則の適用”, 日本機械学会論文集A編, Vol. 75, No. 756 (2009), pp. 1045-1050.
(17) 都留智仁, 渋谷陽二, “三次元離散転位動力学法と境界要素法のマルチスケール解析とインデンテーション問題への応用”, 日本機械学会論文集A編, Vol. 74, No. 743 (2008), pp. 933-938.
(19) 西川雅章, 河原木雄介, 祖山均, “球状圧子を用いた微小押込み試験による金属材料の降伏応力の同定法”, 日本機械学会論文集A編, Vol. 76, No. 772 (2010), pp. 1781-1788.
(5) Soyama, H., “Improvement of Fatigue Strength by Using Cavitating Jets in Air and Water”, Journal of Materials Science, Vol. 42, No. 16 (2007), pp. 6638-6641.
(16) 中西公紀, 坂上賢一, 小川武史, 小林圭史, “インデンテーション法によるWC-Co溶射材の静的および疲労強度特性評価”, 日本機械学会論文集A編, Vol. 76, No. 767 (2010), pp. 902-907.
(3) ショットピーニング技術協会編, 金属疲労とショットピーニング, (2004), 現代工学社.
(7) Soyama, H., Shimizu, M., Hattori, Y., and Nagasawa, Y., “Improving the Fatigue Strength of the Elements of a Steel Belt for CVT by Cavitation Shotless Peening”, Journal of Materials Science, Vol. 43, No. 14 (2008), pp. 5028-5030.
(18) 小森貴史, 金田忍, 小川武史, 坂中則暁, 松原幸生, “高強度鋼のインデンテーション法による局所力学特性評価”, 日本機械学会論文集A編, Vol. 78, No. 789 (2012), pp. 646-650.
(6) Sano, Y., Obata, M., Kubo, T., Mukaia, N., Yoda, M., Masaki, K., and Ochi, Y., “Retardation of Crack Initiation and Growth in Austenitic Stainless Steels by Laser Peening without Protective Coating”, Materials Science and Engineering A, Vol. 417, Nos. 1-2 (2006), pp. 334-340.
(12) Oliver, W. C., and Pharr, G. M., “Measurement of Hardness and Elastic Modulus by Instrumented indentation: Advances in Understanding and Refinements to Methodology”, Journal of Materials Research, Vol. 19, No. 1 (2004), pp. 3-20.
(13) Yan, W., Sun, Q., and Hodgson, P. D., “Determination of Plastic Yield Stress from Spherical Indentation Slope Curve”, Materials Letters, Vol. 62, No. 16 (2008), pp. 2260-2262.
(2) Yeung, A.L., Lo, E.C., Clark, R.K., and Chow, T.W., “Usage and Status of Cobalt-Chromium Removable Partial Centures 5-6 Years after Placement” Journal of Oral Rehabilitation, Vol. 29, (2002), pp. 127-132.
(21) Tokue, A., Hayakawa, T., and Ohkubo, C., “Fatigue Resistance and Retentive Force of Cast Clasps Treated by Shot Peening”, Journal of Prosthodontic Research, (in Press).
(10) Tabor, D., “The Physical Meaning of Indentation and Scratch Hardness”, British Journal of Applied Physics, Vol. 7, No. 5 (1956), pp. 159-166.
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Title ショットピーニングによる歯科用材料の機械的特性の向上
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