International Journal For Multidisciplinary Research

E-ISSN: 2582-2160     Impact Factor: 9.24

A Widely Indexed Open Access Peer Reviewed Multidisciplinary Bi-monthly Scholarly International Journal

Call for Paper Volume 6 Issue 6 November-December 2024 Submit your research before last 3 days of December to publish your research paper in the issue of November-December.

Dynamic Characterization of Diameter for Round Surfaces using a Non-contact Optical Measurement System

Author(s) Aynur Didem OKTAN KARAYEĞEN, Hüseyin KURTULDU
Country Turkey
Abstract Ensuring uniformity in the final round product's diameter is essential to production line operations because it permits adherence to geometry specifications and fulfills client demands. Non-contact diameter measurement systems are essential for manufacturing cost savings as well as quality monitoring. However, because of their non-linear movement, lengthy manufactured specimens like rods might be difficult to measure the diameter of precisely. Typically, analysis systems rely on costly and intricate optical components, limiting accessibility to small businesses. This research aims to address this issue by presenting a low-cost and practical optical system for measuring the diameters of round samples in continuous lines. The aim here is to obtain instant feedback through dynamic measurement and to create a continuous control mechanism that will contribute to sustainability. Experimental results show that the proposed method exhibits a high level of precision, with a measurement accuracy of 0.25% of nominal diameter.
Keywords Optical Measurement, Rod Diameter, Digital Image Processing, Dynamic Characterization
Published In Volume 6, Issue 4, July-August 2024
Published On 2024-08-24
Cite This Dynamic Characterization of Diameter for Round Surfaces using a Non-contact Optical Measurement System - Aynur Didem OKTAN KARAYEĞEN, Hüseyin KURTULDU - IJFMR Volume 6, Issue 4, July-August 2024. DOI 10.36948/ijfmr.2024.v06i04.26484
DOI https://doi.org/10.36948/ijfmr.2024.v06i04.26484
Short DOI https://doi.org/gt8g4t

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