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논문 기본 정보

자료유형
학술저널
저자정보
김예선 (한국폴리텍대학) 최인수 (한국폴리텍대학Ⅱ 나노측정과)
저널정보
한국기계기술학회 한국기계기술학회지 한국기계기술학회지 제23권 제6호
발행연도
2021.12
수록면
1,178 - 1,184 (7page)
DOI
10.17958/ksmt.23.6.202112.1178

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With the advancement of industrialization, modern industry had sophisticated technology, and manufacturers also demanded high-precision measurement accuracy. Improving the quality level by increasing the reliability of measurement results as well as accurate measurement is a key issue to increase the competitiveness of today's manufacturing industry. In general, measurement results depend on tolerances in the industrial field, and it may be difficult to guarantee the reliability of the data in the case of an industry that deals with precision parts. Currently, measurement uncertainty is mainly applied to the calibration and test fields of instruments. This study is aim to apply measurement uncertainty as a way to improve the accurate analysis and reliability of measurement results in the industrial field. For this, precision parts connected by shaft and hole were selected among geometric elements, and roundness and cylindricity were measured using a roundness measuring instrument and CMM. And, taking into account the environment in which these measurements were made, factors affecting the measurement results were derived, and a mathematical model was established to calculate the measurement uncertainty. Applying uncertainty in the field in this way is expected to improve the level of quality and accurate analysis of measurement results.

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