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Finite element composite simplification modeling and design of the material extrusion wave infill for thin-walled structures
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Finite element composite simplification modeling and design of the material extrusion wave infill for thin-walled structures

Robert S. Chisena, Lei ChenAlbert J. Shih
International Journal of Mechanical Sciences, 卷.196, 106276
04/2021

摘要

Composite Simplification Modeling Finite Element Modeling Material Extrusion Thin wall structure Wave infill Civil and Structural Engineering Materials Science (all) Condensed Matter Physics Mechanics of Materials Mechanical Engineering
The finite element composite simplification model (CSM) for modelling the material extrusion (MEX) wave infill of a thin-walled structure (TWS) with generalized geometries and loading conditions is presented. The MEX wave infill is a sine wave infill pattern used to generate a lightweight TWS with desired bending properties. In CSM, the wave infill and TWS faces are modelled as a homogenous stacked composite, which significantly reduces the computation and setup time associated with full-scale finite element modeling. Analytical models are presented to determine the effective material properties of the homogeneous core of the CSM. Previously reported four-point flexural experiments were used to validate the CSM. CSM has been shown to predict the experimentally measured four-point bending stiffness within 15%. Using CSM, fixed flat- and curved-plate cantilevers with uniform and varying wave infill are analyzed. These analyses show CSM to be a good finite element tool for modeling complex geometries with wave infill for TWSs.

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