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Notice of retraction
Vol. 34, No. 8(3), S&M3042

Notice of retraction
Vol. 32, No. 8(2), S&M2292

Print: ISSN 0914-4935
Online: ISSN 2435-0869
Sensors and Materials
is an international peer-reviewed open access journal to provide a forum for researchers working in multidisciplinary fields of sensing technology.
Sensors and Materials
is covered by Science Citation Index Expanded (Clarivate Analytics), Scopus (Elsevier), and other databases.

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Sensors and Materials, Volume 32, Number 5(1) (2020)
Copyright(C) MYU K.K.
pp. 1633-1648
S&M2207 Research Paper of Special Issue
https://doi.org/10.18494/SAM.2020.2681
Published: May 10, 2020

Optimal Structure of Computer Numerical Control Grinding Machine Based on Finite Element Method Simulation and Sensor Technology [PDF]

Kun-Chieh Wang, Chi-Hsin Yang, Long Wu, and Hao Gao

(Received September 14, 2019; Accepted February 17, 2020)

Keywords: optimal structure design, CNC machine tools, CAE, finite element, grinding machine, vibration sensor, displacement sensor

For tool machinery design, the type of machine structure plays an important role in its final machining precision. In the marketplace, structure types change very quickly because of different application purposes and customers’ requirements. Moreover, to develop new and good machine structures, designers usually pay too much time and money in the work of trial and error. For a quick response to market needs, machine makers should find time-saving and money-saving ways to optimally design and verify their products, and accordingly build a reliable database for further modifying and developing new models. In this study, we propose a hybrid design procedure that uses experience and know-how as initial design bases and, together with an optimal Taguchi-based finite element method (FEM), rapidly and efficiently obtains a highly rigid structure. To verify the simulation results, experiments using displacement sensors are also performed. Specifically, in this study, we chose a long-based computer numerical control (CNC) grinding machine as the target because it is a challenge to attain machining precision owing to its weakness feature of a long and narrow structure. With this proposed methodology, machine designers may efficiently and quickly determine the optimal structure of similar types of CNC machine tools.

Corresponding author: Chi-Hsin Yang


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Cite this article
Kun-Chieh Wang, Chi-Hsin Yang, Long Wu, and Hao Gao, Optimal Structure of Computer Numerical Control Grinding Machine Based on Finite Element Method Simulation and Sensor Technology, Sens. Mater., Vol. 32, No. 5, 2020, p. 1633-1648.



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