Rigid Finite Element Method in Modeling Composite Steel-Polymer Concrete Machine Tool Frames

Materials
Paweł DunajBerkay Mizrak

Abstract

At the stage of designing a special machine tool, it is necessary to analyze many variants of structural solutions of frames and load-bearing systems and to choose the best solution in terms of dynamic properties, in particular considering its resistance to chatter. For this reason, it is preferred to adopt a low-dimensional calculation model, which allows the user to reduce the necessary calculation time while maintaining a high accuracy. The paper presents the methodology of modeling the natural frequencies, mode shapes, and receptance functions of machine tool steel welded frames filled with strongly heterogenous polymer concrete, using low-dimensional models developed by the rigid finite elements method (RigFEM). In the presented study, a RigFEM model of a simple steel beam filled with polymer concrete and a frame composed of such beams were built. Then, the dynamic properties obtained on the basis of the developed RigFEM models were compared with the experimental results and the 1D and 3D finite element models (FEM) in terms of accuracy and dimensionality. As a result of the experimental verification, the full structural compliance of the RigFEM models (for beam and frame) was obtained, which was manifested by the agreemen...Continue Reading

References

Aug 5, 2017·Materials·Francesco AggogeriRaffaele Ricatto
Jul 18, 2018·Materials·Jesus-Maria Hernandez-VazquezLuis Norberto López de Lacalle
Oct 2, 2019·Materials·Marcin Jasiewicz, Karol Miądlicki

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Citations

Feb 11, 2021·Materials·Angelo Marcello TarantinoMichele Bacciocchi

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Software Mentioned

MSC Adams
Ansys
Scadas Mobile Vibco
SOLID46
RigFEM

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