FRACTURE CHARACTERISTICS OF PLA SYNTHETIC BONE SCAFFOLDS WITH DIFFERENT SPECIMEN POROSITIES

Estimation of the fracture characteristics of the bone scaffold is an important aspect to consider in designing the porous structure while complying with its biocompatibility. The basic consideration of the related items, such as the bone scaffold design, material selection, and fabrication process,...

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Published in:JOURNAL OF ENGINEERING SCIENCE AND TECHNOLOGY
Main Authors: Yusof, Ab Aziz Bin Mohd; Isa, Kamariah Md; Szali, Mohd Al Fatihhi Mohd; Johar, Mahzan; Mahmud, Jamaluddin; Harun, Muhamad Noor
Format: Article
Language:English
Published: TAYLORS UNIV SDN BHD 2023
Subjects:
Online Access:https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001109121400026
author Yusof
Ab Aziz Bin Mohd; Isa
Kamariah Md; Szali
Mohd Al Fatihhi Mohd; Johar
Mahzan; Mahmud
Jamaluddin; Harun
Muhamad Noor
spellingShingle Yusof
Ab Aziz Bin Mohd; Isa
Kamariah Md; Szali
Mohd Al Fatihhi Mohd; Johar
Mahzan; Mahmud
Jamaluddin; Harun
Muhamad Noor
FRACTURE CHARACTERISTICS OF PLA SYNTHETIC BONE SCAFFOLDS WITH DIFFERENT SPECIMEN POROSITIES
Engineering
author_facet Yusof
Ab Aziz Bin Mohd; Isa
Kamariah Md; Szali
Mohd Al Fatihhi Mohd; Johar
Mahzan; Mahmud
Jamaluddin; Harun
Muhamad Noor
author_sort Yusof
spelling Yusof, Ab Aziz Bin Mohd; Isa, Kamariah Md; Szali, Mohd Al Fatihhi Mohd; Johar, Mahzan; Mahmud, Jamaluddin; Harun, Muhamad Noor
FRACTURE CHARACTERISTICS OF PLA SYNTHETIC BONE SCAFFOLDS WITH DIFFERENT SPECIMEN POROSITIES
JOURNAL OF ENGINEERING SCIENCE AND TECHNOLOGY
English
Article
Estimation of the fracture characteristics of the bone scaffold is an important aspect to consider in designing the porous structure while complying with its biocompatibility. The basic consideration of the related items, such as the bone scaffold design, material selection, and fabrication process, is necessary to estimate the bone scaffold's characteristics accurately. This present study was conducted to investigate the effects of porosity on the synthetic bone scaffold's strength and fracture mechanics. The specimens were made from polylactic acid (PLA) using an additive manufacturing process. Five specimens with different porosities (0% to 60%) were prepared for the test. Porosity was manipulated by adjusting the pore size during the printing process. The compact tensile test was performed using a tensile testing machine at a controlled rate of 1 mm/min. Various fracture parameters were determined based on force-displacement curves. 30% porosity was found to be the highest critical stress intensity factor, KIC of 0.846 +/- 0.069 MPa*m1/2, tip opening displacement, 0.99 +/- 0.19 mm, and total fracture energy 2.12 +/- 0.34 kJ/m2 after 0 % specimen. For each increment in the porosity, on average 53% reduction of mechanical properties happened. In conclusion, optimising printing settings and material properties with the proper pore design enhances the fracture resistance of printed bone scaffolds, which helps develop effective and reliable bone scaffold structures.
TAYLORS UNIV SDN BHD

1823-4690
2023
18
5

Engineering

WOS:001109121400026
https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001109121400026
title FRACTURE CHARACTERISTICS OF PLA SYNTHETIC BONE SCAFFOLDS WITH DIFFERENT SPECIMEN POROSITIES
title_short FRACTURE CHARACTERISTICS OF PLA SYNTHETIC BONE SCAFFOLDS WITH DIFFERENT SPECIMEN POROSITIES
title_full FRACTURE CHARACTERISTICS OF PLA SYNTHETIC BONE SCAFFOLDS WITH DIFFERENT SPECIMEN POROSITIES
title_fullStr FRACTURE CHARACTERISTICS OF PLA SYNTHETIC BONE SCAFFOLDS WITH DIFFERENT SPECIMEN POROSITIES
title_full_unstemmed FRACTURE CHARACTERISTICS OF PLA SYNTHETIC BONE SCAFFOLDS WITH DIFFERENT SPECIMEN POROSITIES
title_sort FRACTURE CHARACTERISTICS OF PLA SYNTHETIC BONE SCAFFOLDS WITH DIFFERENT SPECIMEN POROSITIES
container_title JOURNAL OF ENGINEERING SCIENCE AND TECHNOLOGY
language English
format Article
description Estimation of the fracture characteristics of the bone scaffold is an important aspect to consider in designing the porous structure while complying with its biocompatibility. The basic consideration of the related items, such as the bone scaffold design, material selection, and fabrication process, is necessary to estimate the bone scaffold's characteristics accurately. This present study was conducted to investigate the effects of porosity on the synthetic bone scaffold's strength and fracture mechanics. The specimens were made from polylactic acid (PLA) using an additive manufacturing process. Five specimens with different porosities (0% to 60%) were prepared for the test. Porosity was manipulated by adjusting the pore size during the printing process. The compact tensile test was performed using a tensile testing machine at a controlled rate of 1 mm/min. Various fracture parameters were determined based on force-displacement curves. 30% porosity was found to be the highest critical stress intensity factor, KIC of 0.846 +/- 0.069 MPa*m1/2, tip opening displacement, 0.99 +/- 0.19 mm, and total fracture energy 2.12 +/- 0.34 kJ/m2 after 0 % specimen. For each increment in the porosity, on average 53% reduction of mechanical properties happened. In conclusion, optimising printing settings and material properties with the proper pore design enhances the fracture resistance of printed bone scaffolds, which helps develop effective and reliable bone scaffold structures.
publisher TAYLORS UNIV SDN BHD
issn
1823-4690
publishDate 2023
container_volume 18
container_issue 5
doi_str_mv
topic Engineering
topic_facet Engineering
accesstype
id WOS:001109121400026
url https://www-webofscience-com.uitm.idm.oclc.org/wos/woscc/full-record/WOS:001109121400026
record_format wos
collection Web of Science (WoS)
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