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Title proper: International journal of latest engineering research and applications.
Abbreviated key-title: Int. j. latest eng. res. appl.
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International Journal on Engineering Applications (IREA)
Journal Aims The International Journal on Engineering Applications (IREA) is a peer-reviewed journal that publishes original theoretical and applied papers on all aspects of Engineering applications. The topics to be covered include but are not limited to all fields regarding: Electrical Engineering, Electronic Engineering, Mechanical Engineering, Chemical Engineering, Engineered Materials, Dielectrics & Plasmas, Fields, Waves & Electromagnetics, Nuclear Engineering, Photonics & Electro-Optics, Power, Energy & Environment, Sustainable Engineering and Development, Signal Processing & Analysis, Transportation, Aerospace Engineering, General Topics for Engineers (Math, Science & Engineering), Total Quality Management and Quality Technology, Engineering Economy Analysis, Healthcare Systems Engineering, Hazard and Risk Assessment and Mitigation, Infrastructure Engineering, Textile Engineering, Nano Technology, Control Engineering Applications, Machine Tool Applications. The Editorial policy is to maintain a reasonable balance between papers regarding different research areas so that the Journal will be useful to all interested scientific groups. The International Journal on Engineering Applications (IREA) currently has an acceptance rate of 35%. The average time between submission and final decision is 39 days and the average time between acceptance and publication is 21 days. published bimonthly, appearing on the last day of January, March, May, July, September, November . Abstracting and Indexing Information IREA is covered by the following abstracting/indexing services:
Please send any question about this web site to [email protected] Copyright © 2005-2024 Praise Worthy Prize Axial Offset Error Modeling of Big-Plus Bottle Grip Taper Tool Holder Using Natural Neighbor Interpolation on Spindle Speed Domain
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The precision of machine tools is crucial for ensuring the accuracy of final products, directly impacting manufacturing quality and efficiency. Axial offset error, a significant factor in tool holder-spindle interfaces, mainly affects high-speed machining processes. In previous research, the axial offset error of the taper contacts BT40 tool holder was modeled by linear interpolation of the maximum and the residual error polynomial curves of maximum spindle speed. This study aims to develop a more accurate axial offset error modeling using the natural neighbor interpolations of the measured errors in the spindle speed domain. Experiments were conducted on BT40 and BBT40-type tool holders, and the key findings are as follows. The maximum axial offset error for the BT40 tool holder was 7.95 μm at 10,000 rpm, with a residual error of 4.45 μm. The maximum error for the BBT40 tool holder was 3.80 μm at 12,000 rpm, with errors decreasing and becoming negative at higher speeds, reaching −5.36 μm at 20,000 rpm. The new model reduced the prediction accuracy by 43% compared to the previous model, demonstrating improved robustness against various error tendencies. The proposed model enhances prediction accuracy and offers potential applications in offline simulation and real-time error compensation, contributing to higher manufacturing quality without requiring hardware changes. This is a preview of subscription content, log in via an institution to check access. Access this articleSubscribe and save.
Price includes VAT (Russian Federation) Instant access to the full article PDF. Rent this article via DeepDyve Institutional subscriptions Karakurt, I., Gökhan, A., & Kerim, A. (2011). A machinability study of granite using abrasive waterjet cutting technology. Gazi University journal of science, 24 (1), 143–151. Google Scholar Karakurt, I., Gokhan, A., & Kerim, A. (2013). Predictive modelling of noise level generated during sawing of rocks by circular diamond sawblades. Sadhana, 38 , 491–511. Article Google Scholar Ramesh, R., Mannan, M., & Poo, A. (2000). Error compensation in machine tools—a review: Part I: Geometric, cutting-force induced and fixture-dependent errors. International Journal of Machine Tools and Manufacture, 40 , 1235–1256. Ibaraki, S., & Knapp, W. (2012). Indirect measurement of volumetric accuracy for three-axis and five-axis machine tools: A review. International Journal of Automation Technology, 6 , 110–124. Mayr, J., Jedrzejewski, J., Uhlmann, E., Donmez, M. 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Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations. Rights and permissionsSpringer Nature or its licensor (e.g. a society or other partner) holds exclusive rights to this article under a publishing agreement with the author(s) or other rightsholder(s); author self-archiving of the accepted manuscript version of this article is solely governed by the terms of such publishing agreement and applicable law. Reprints and permissions About this articleCho, HG., Kim, SJ. Axial Offset Error Modeling of Big-Plus Bottle Grip Taper Tool Holder Using Natural Neighbor Interpolation on Spindle Speed Domain. Int. J. Precis. Eng. Manuf. (2024). https://doi.org/10.1007/s12541-024-01106-4 Download citation Received : 26 November 2023 Revised : 02 August 2024 Accepted : 05 August 2024 Published : 23 August 2024 DOI : https://doi.org/10.1007/s12541-024-01106-4 Share this articleAnyone you share the following link with will be able to read this content: Sorry, a shareable link is not currently available for this article. Provided by the Springer Nature SharedIt content-sharing initiative
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