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- W2064074197 abstract "Recently, numerical predictions for surface deflection by finite element analysis have been carried out actively by various methods such as curvature analysis, stoning simulation and highlighting. Measures of surface deflection based on curvature analysis had been proposed by several researchers and showed good correspondences with experimental results. The maximum variation of curvature difference between the panel and the tool was also proposed as a measure for surface deflection and successfully predict the surface deflection. However, the curvature is strongly dependent on the calculation method and the quality of data points. On the other hand, a measure based on stoning simulation has not been extensively studied yet due to the insufficient information from stoning simulation. Regardless of the lack of the reliable measure, stoning simulation has been widely accepted in the field owing to robustness, the easiness of use and understanding. In this study, we proposed a new integrated approach by using stoning simulation and curvature analysis. Firstly, for the detection of surface deflection, stoning simulation was utilized. Then, for the quantification of surface deflection, curvature analysis was applied. As a verification example, a shallow rectangular drawing with inner rectangular embossing was considered. The measure was compared between experiment and simulation. It was shown that the proposed approach can be utilized for the reliable detection of the surface deflection and the accurate quantification of surface deflection." @default.
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- W2064074197 date "2013-01-01" @default.
- W2064074197 modified "2023-10-12" @default.
- W2064074197 title "An integrated approach for prediction of surface deflection by using stoning simulation and curvature analysis" @default.
- W2064074197 doi "https://doi.org/10.1063/1.4850007" @default.
- W2064074197 hasPublicationYear "2013" @default.
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