Uncertainty quantification of microstructure variability and mechanical behaviour of additively manufactured lattice structures

03/17/2021
by   Nina Korshunova, et al.
0

Process-induced defects are the leading cause of discrepancies between as-designed and as-manufactured additive manufacturing (AM) product behavior. Especially for metal lattices, the variations in the printed geometry cannot be neglected. Therefore, the evaluation of the influence of microstructural variability on their mechanical behavior is crucial for the quality assessment of the produced structures. Commonly, the as-manufactured geometry can be obtained by computed tomography (CT). However, to incorporate all process-induced defects into the numerical analysis is often computationally demanding. Thus, commonly this task is limited to a predefined set of considered variations, such as strut size or strut diameter. In this work, a CT-based binary random field is proposed to generate statistically equivalent geometries of periodic metal lattices. The proposed random field model in combination with the Finite Cell Method (FCM), an immersed boundary method, allows to efficiently evaluate the influence of the underlying microstructure on the variability of the mechanical behavior of AM products. Numerical analysis of two lattices manufactured at different scales shows an excellent agreement with experimental data. Furthermore, it provides a unique insight into the effects of the process on the occurring geometrical variations and final mechanical behavior.

READ FULL TEXT

page 7

page 14

page 16

page 20

page 21

page 22

page 29

page 30

research
12/14/2020

Image-based numerical characterization and experimental validation of tensile behavior of octet-truss lattice structures

The production of lightweight metal lattice structures has received much...
research
12/16/2019

Image-based material characterization of complex microarchitectured additively manufactured structures

Significant developments in the field of additive manufacturing (AM) all...
research
01/22/2021

Bending behavior of additively manufactured lattice structures: numerical characterization and experimental validation

Selective Laser Melting (SLM) technology has undergone significant devel...
research
10/10/2021

The influence of structural variations on the constitutive response and strain variations in thin fibrous materials

The stochastic variations in the structural properties of thin fiber net...
research
02/08/2018

Uncertainty Quantification for Geometry Deformations of Superconducting Cavities using Eigenvalue Tracking

The electromagnetic field distribution as well as the resonating frequen...
research
09/13/2022

A probabilistic virtual process chain to quantify process-induced uncertainties in Sheet Molding Compounds

The manufacturing process of Sheet Molding Compound (SMC) influences the...
research
12/06/2018

Parameters identification method for breast biomechanical numerical model

Bio-mechanical breast simulations are based on a gravity free geometry a...

Please sign up or login with your details

Forgot password? Click here to reset