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The Transactions of
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Trans. Korean. Inst. Elect. Eng.
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2019-03
(Vol.68 No.03)
10.5370/KIEE.2019.68.3.502
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REF
References
1
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2
GAO Wei, KIYONO Satoshi, 1995, Roundness Measurement by the Orthogonal Mixed Method, Transactions of the Japan Society of Mechanical Engineers Series C, Vol. 589, No. 61, pp. 3775-3780
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Korea Research Institute of Standards and Science , 1989, 1991, Development of In-Process Gauging Technology, (I), (II)
4
AOKI Yasuo, OZONO Shigeo, 1966, On a New Method of Roundness Measurement Based on the Three-point Method, Journal of the Japan Society of Precision Engineering, Vol. 12, No. 32, pp. 831-836
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KOBAYASHI Takashi, FURUKAWA Susumu, 1988, On a New Method of Roundness Measurement Based on the Sequential-Three-Points MethodMakoto OBI, Transactions of the Japan Society of Mechanical Engineers Series C, Vol. 506, No. 54, pp. 2475-2480
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KATO Hideo, NOMURA Yujiro, NAKANO Toshikuni, 1990, Improvement of In-Situ Circularity Measurement Technique Based on Three-Point Method and Develop- ment of n-Point Method, JSPE, Vol. 56, No. 12, pp. 2303-2308
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KAKINO Yoshiaki, KITAZAWA Jiro, 1978, In Situ Measurement of Cylindricity by the 3-Point Method – In the Case of Successive Sectional Measurement, Journal of the Japan Society of Precision Engineering, Vol. 44, No. 11, pp. 1386-1392
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MITS Masayuki, 1982, Research on precision diagnosis technology – Develop- ment of 3 point spindle rotation accuracy measurement device, Transactions of the Japan Society of Mechanical Engineers Series C, Vol. 48, No. 425, pp. 115-123
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Ozawa Norimitsu, Kohno Tsuguo, Miyamoto Kozo, Musha Tohru, High Precision Optical Surface Sensor (HIPOSS-1), Studies on Ultra-Precision Measuring Technology, Vol. JSPE-52-12, 86-12-2080
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Bosch, , , . John A., 1995, Coordinate measuring Machines and Systems, Dekker