Investigation of cutting tool and workpiece positioning precision as a critical factor in enhancing machining accuracy

This paper investigates the critical role of positioning precision in machining processes and explores advanced methodologies and technologies for optimizing tool and workpiece alignment to achieve superior manufacturing outcomes. It emphasizes the impact of dimensional and geometric accuracy on pro...

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Main Authors: Turaeva Umida, Juraev Musurmon, Urinov Nodir, Khodjayeva Nodira, Ismailov Erkinbay
Format: Article
Language:English
Published: EDP Sciences 2025-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2025/27/e3sconf_geotech2025_04002.pdf
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author Turaeva Umida
Juraev Musurmon
Urinov Nodir
Khodjayeva Nodira
Ismailov Erkinbay
author_facet Turaeva Umida
Juraev Musurmon
Urinov Nodir
Khodjayeva Nodira
Ismailov Erkinbay
author_sort Turaeva Umida
collection DOAJ
description This paper investigates the critical role of positioning precision in machining processes and explores advanced methodologies and technologies for optimizing tool and workpiece alignment to achieve superior manufacturing outcomes. It emphasizes the impact of dimensional and geometric accuracy on product quality, operational efficiency, and component longevity, particularly in industries such as aerospace, automotive, and precision engineering. The study highlights the importance of advanced positioning systems, such as pneumatic clamping, hydraulic systems, laser interferometers, and real-time error correction mechanisms, in mitigating errors caused by thermal expansion, tool deflection, and system misalignment. Through a series of experimental trials on CNC machine tools, the paper demonstrates how these technologies enhance tool stability, reduce dimensional deviations, and improve machining precision. The results indicate that incorporating real-time error correction and precision- enhancing strategies significantly improves machining outcomes, including cutting efficiency, tool life, and overall product quality. This work provides valuable insights into the integration of adaptive machining technologies for optimizing precision in complex manufacturing environments.
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publishDate 2025-01-01
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spelling doaj-art-eaa74f8a8b814e91b7ece42c52fd59f02025-08-20T03:08:52ZengEDP SciencesE3S Web of Conferences2267-12422025-01-016270400210.1051/e3sconf/202562704002e3sconf_geotech2025_04002Investigation of cutting tool and workpiece positioning precision as a critical factor in enhancing machining accuracyTuraeva Umida0Juraev Musurmon1Urinov Nodir2Khodjayeva Nodira3Ismailov Erkinbay4Termez Economics and Service UniversityAlmalyk Branch of Tashkent State Technical UniversityBukhara State Technical UniversityTermez State UniversityUrgench State UniversityThis paper investigates the critical role of positioning precision in machining processes and explores advanced methodologies and technologies for optimizing tool and workpiece alignment to achieve superior manufacturing outcomes. It emphasizes the impact of dimensional and geometric accuracy on product quality, operational efficiency, and component longevity, particularly in industries such as aerospace, automotive, and precision engineering. The study highlights the importance of advanced positioning systems, such as pneumatic clamping, hydraulic systems, laser interferometers, and real-time error correction mechanisms, in mitigating errors caused by thermal expansion, tool deflection, and system misalignment. Through a series of experimental trials on CNC machine tools, the paper demonstrates how these technologies enhance tool stability, reduce dimensional deviations, and improve machining precision. The results indicate that incorporating real-time error correction and precision- enhancing strategies significantly improves machining outcomes, including cutting efficiency, tool life, and overall product quality. This work provides valuable insights into the integration of adaptive machining technologies for optimizing precision in complex manufacturing environments.https://www.e3s-conferences.org/articles/e3sconf/pdf/2025/27/e3sconf_geotech2025_04002.pdf
spellingShingle Turaeva Umida
Juraev Musurmon
Urinov Nodir
Khodjayeva Nodira
Ismailov Erkinbay
Investigation of cutting tool and workpiece positioning precision as a critical factor in enhancing machining accuracy
E3S Web of Conferences
title Investigation of cutting tool and workpiece positioning precision as a critical factor in enhancing machining accuracy
title_full Investigation of cutting tool and workpiece positioning precision as a critical factor in enhancing machining accuracy
title_fullStr Investigation of cutting tool and workpiece positioning precision as a critical factor in enhancing machining accuracy
title_full_unstemmed Investigation of cutting tool and workpiece positioning precision as a critical factor in enhancing machining accuracy
title_short Investigation of cutting tool and workpiece positioning precision as a critical factor in enhancing machining accuracy
title_sort investigation of cutting tool and workpiece positioning precision as a critical factor in enhancing machining accuracy
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2025/27/e3sconf_geotech2025_04002.pdf
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