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  1. Home
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  5. Effect of infill density with ZnO concentration on the mechanical properties of 3D printed PLA/ZnO composites
 
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Effect of infill density with ZnO concentration on the mechanical properties of 3D printed PLA/ZnO composites

Journal
AIP Conference Proceedings
ISSN
0094243X
Date Issued
2022-05-18
Author(s)
Tan M.A.
Yeoh Cheow Keat
Universiti Malaysia Perlis
Teh Pei Leng
Universiti Malaysia Perlis
Nor Azura Abdul Rahim
Universiti Malaysia Perlis
Song C.C.
Mansor N.S.S.
Lim J.H.
DOI
10.1063/5.0090706
Handle (URI)
https://hdl.handle.net/20.500.14170/6506
Abstract
Polylactic acid (PLA) plastics are biodegradable materials manufactured from PLA resin by melt spinning and solvent spinning methods. PLA is widely applied in textile fabric, non-woven, masks and sanitary napkins applications due to excellent safety, environmental protection and good mechanical properties. The process of 3D printing is continuous and able to produce complex three-dimensional structures. PLA/ZnO composite samples were fabricated by a 3D printer. ZnO acts as filler in PLA/ZnO composites to obtain the excellent properties like specific tensile properties and density. However, ZnO agglomeration occurred at higher concentration when viewed via SEM. Printing parameters such as infill density, raster orientation and infill pattern can influence the mechanical properties of 3D samples as well. The objective of this paper is to determine the effect of infill density with different ZnO concentration on the mechanical properties of 3D printed PLA/ZnO composites. Tensile and density measurement were carried out to determine the mechanical properties of composites. The influence of 80%, 90%, 100% infill rate and ZnO concentration varied by 1 and 5 mol. As a result, higher infill rate (100%) and optimum filler concentration (1 mol ZnO) give the excellent properties thus can be used for future applications.
Funding(s)
Ministry of Higher Education, Malaysia
File(s)
research repository notification.pdf (4.4 MB)
Views
2
Acquisition Date
Mar 5, 2026
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Downloads
4
Acquisition Date
Mar 5, 2026
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