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- W3118337626 abstract "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." @default.
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- W3118337626 date "2021-04-01" @default.
- W3118337626 modified "2023-09-30" @default.
- W3118337626 title "Finite element composite simplification modeling and design of the material extrusion wave infill for thin-walled structures" @default.
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- W3118337626 doi "https://doi.org/10.1016/j.ijmecsci.2021.106276" @default.
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