Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/94549
PIRA download icon_1.1View/Download Full Text
Title: The effect of functional gradient material distribution and patterning on torsional properties of lattice structures manufactured using multijet fusion technology
Authors: Hailu, YM
Nazir, A 
Lin, SC
Jeng, JY
Issue Date: Nov-2021
Source: Materials, Nov. 2021, v. 14, no. 21, 6521
Abstract: Functionally graded lattice structures have attracted much attention in engineering due to their excellent mechanical performance resulting from their optimized and application-specific properties. These structures are inspired by nature and are important for a lightweight yet efficient and optimal functionality. They have enhanced mechanical properties over the uniform density counterparts because of their graded design, making them preferable for many applications. Several studies were carried out to investigate the mechanical properties of graded density lattice structures subjected to different types of loadings mainly related to tensile, compression, and fatigue responses. In applications related to biomedical, automotive, and aerospace sectors, dynamic bending and rotational stresses are critical load components. Therefore, the study of torsional properties of functionally gradient lattice structures will contribute to a better implementation of lattice structures in several sectors. In this study, several functionally gradient triply periodic minimal surfaces structures and strut-based lattice structures were designed in cylindrical shapes having 40% relative density. The HP Multi Jet Fusion 4200 3D printer was used to fabricate all specimens for the experimental study. A torsional experiment until the failure of each structure was conducted to investigate properties of the lattice structures such as torsional stiffness, energy absorption, and failure characteristics. The results showed that the stiffness and energy absorption of structures can be improved by an effective material distribution that corresponds to the stress concentration due to torsional load. The TPMS based functionally gradient design showed a 35% increase in torsional stiffness and 15% increase in the ultimate shear strength compared to their uniform counterparts. In addition, results also revealed that an effective material distribution affects the failure mechanism of the lattice structures and delays the plastic deformation, increasing their resistance to torsional loads.
Keywords: Additive manufacturing
Design
Energy absorption
Failure behavior
Functionally gradient lattice
Lattice structures
Torsion
Torsional stiffness
Publisher: Molecular Diversity Preservation International (MDPI)
Journal: Materials 
EISSN: 1996-1944
DOI: 10.3390/ma14216521
Rights: © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
The following publication Hailu, Y.M.; Nazir, A.; Lin, S.-C.; Jeng, J.-Y. The Effect of Functional Gradient Material Distribution and Patterning on Torsional Properties of Lattice Structures Manufactured Using MultiJet Fusion Technology. Materials 2021, 14, 6521 is available at https://doi.org/10.3390/ma14216521.
Appears in Collections:Journal/Magazine Article

Files in This Item:
File Description SizeFormat 
materials-14-06521-v2.pdf11.55 MBAdobe PDFView/Open
Open Access Information
Status open access
File Version Version of Record
Access
View full-text via PolyU eLinks SFX Query
Show full item record

Page views

64
Last Week
0
Last month
Citations as of May 19, 2024

Downloads

46
Citations as of May 19, 2024

SCOPUSTM   
Citations

17
Citations as of May 17, 2024

WEB OF SCIENCETM
Citations

16
Citations as of Apr 25, 2024

Google ScholarTM

Check

Altmetric


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.