Evaluating the Performance of 3D-Printed PLA Reinforced with Date Pit Particles for Its Suitability as an Acetabular Liner in Artificial Hip Joints

Author:

Fouly Ahmed12ORCID,Alnaser Ibrahim1,Assaifan Abdulaziz3,Abdo Hany45ORCID

Affiliation:

1. Mechanical Engineering Department, College of Engineering, King Saud University, Riyadh 11421, Saudi Arabia

2. Department of Production Engineering and Mechanical Design, Faculty of Engineering, Minia University, Minya 61519, Egypt

3. King Abdullah Institute for Nanotechnology, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi Arabia

4. Center of Excellence for Research in Engineering Materials (CEREM), King Saud University, P.O. Box 800, Riyadh 11421, Saudi Arabia

5. Mechanical Design and Materials Department, Faculty of Energy Engineering, Aswan University, Aswan 81521, Egypt

Abstract

Off-the-shelf hip joints are considered essential parts in rehabilitation medicine that can help the disabled. However, the failure of the materials used in such joints can cause individual discomfort. In support of the various motor conditions of the influenced individuals, the aim of the current research is to develop a new composite that can be used as an acetabular liner inside the hip joint. Polylactic acid (PLA) can provide the advantage of design flexibility owing to its well-known applicability as a 3D printed material. However, using PLA as an acetabular liner is subject to limitations concerning mechanical properties. We developed a complete production process of a natural filler, i.e., date pits. Then, the PLA and date pit particles were extruded for homogenous mixing, producing a composite filament that can be used in 3D printing. Date pit particles with loading fractions of 0, 2, 4, 6, 8, and 10 wt.% are dispersed in the PLA. The thermal, physical, and mechanical properties of the PLA–date pit composites were estimated experimentally. The incorporation of date pit particles into PLA enhanced the compressive strength and stiffness but resulted in a reduction in the elongation and toughness. A finite element model (FEM) for hip joints was constructed, and the contact stresses on the surface of the acetabular liner were evaluated. The FEM results showed an enhancement in the composite load carrying capacity, in agreement with the experimental results.

Funder

King Salman Center For Disability Research

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference69 articles.

1. Synovial fluid levels of adipokines in osteoarthritis: Association with local factors of inflammation and cartilage maintenance;Gross;Bio-Med. Mater. Eng.,2014

2. Failure rates of stemmed metal-on-metal hip replacements: Analysis of data from the National Joint Registry of England and Wales;Smith;Lancet,2012

3. In-situ generated tribomaterial in metal/metal contacts: Current understanding and future implications for implants;Espallargas;Biotribology,2017

4. The operation of the century: Total hip replacement;Learmonth;Lancet,2007

5. (2022, June 18). National Joint Registry 13th Annual Report 2016. Available online: https://www.hqip.org.uk/resource/national-joint-registry-13th-annual-report-2016/.

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