Polylactic acid (PLA) polymer has garnered significant attention due to its biocompatibility. The incorporation of copper oxide (CuO) nanoparticles into this polymer is expected to enhance its antibacterial, electrical, and thermal properties. This modification can potentially improve the performance of PLA in the fields of prosthetics manufacturing or printed circuit fabrication. However, the current research is rather focused on the mechanical properties of the PLA-CuO nanocomposites. This research is thus aimed to analyze PLA-CuO (97-3 wt%) nanocomposites with a double keyhole notch configuration both experimentally and numerically. Scanning electron microscopy (SEM), X-ray diffraction (XRD), energy dispersive X-ray spectroscopy (EDX), X-ray mapping of elemental distribution(X-map), and thermogravimetric analysis (TGA) were employed to explore the morphology, crystallinity, homogeneity, purity, and thermal stability of the nanocomposite. The specimens were fabricated through two different processes: the classical method of compression molding and the innovative method of 3D printing. The results revealed the superior mechanical performance of the 3D-printed nanocomposite at a 0° raster angle, while the mechanical properties gradually decreased for raster angles of 45° and 90°. The experimental test also indicated a decline in the maximum fracture load of specimens with a double keyhole notch and constant notch inclination angle by raising the notch radius. This behavior was also observed by increasing the notch inclination angle at constant notch radius. The numerical results were similar to the experimental findings. Moreover, the nanocomposite manufactured through the classical method exhibited higher critical fracture load compared to their 3D-printed counterparts with the same geometry.
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http://dx.doi.org/10.1016/j.jmbbm.2024.106504 | DOI Listing |
ACS Appl Mater Interfaces
March 2025
Department of Chemistry and Biochemistry, Department of Ocean and Mechanical Engineering, Florida Atlantic University, 777 Glades Rd, Boca Raton, Florida 33431, United States.
Studying the multiscale mechanics of bio-based composites offers unique perspectives on underlying structure-property relations. Cellular materials, such as wood, are highly organized, hierarchical assemblies of load-bearing structural elements that respond to mechanical stimuli at the microscopic, mesoscopic and macroscopic scale. In this study, we modified oak wood with nanocrystalline ferrihydrite, a widespread ferric oxyhydroxide mineral, and characterized the resulting mechanical properties of the composite at various levels of organization.
View Article and Find Full Text PDFJ Orthop Surg Res
March 2025
Department of Traumatic Surgery, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430000, China.
Background: Retrograde superior ramus screw of pubis (SRSP) is a new kind of pelvic minimally invasive internal fixation apparatus developed by our team. The purpose of this study was to analyze the biomechanical stability of this new minimally invasive pelvic internal fixation device, and to provide this new device with theoretical basis for clinical application.
Methods: The Tile C1.
Evid Based Dent
March 2025
Edinburgh Dental Institute Paediatric Department 39x Lauriston Building, Edinburgh, UK.
A Commentary On: Fehrenbach J, de Soares J L S, do Nascimento Foly J C S, Miotti L L, Münchow E A Mechanical performance of endocrown restorations in anterior teeth: A systematic review and network meta-analysis. Dent Mater 2025; https://doi.org/10.
View Article and Find Full Text PDFCureus
February 2025
Department of Orthopaedic Surgery, Kobe University Graduate School of Medicine, Kobe, JPN.
We report the case of a 44-year-old male patient without a notable medical history who developed transient osteoporosis following surgery for a medial malleolus fracture, which led to a stress fracture and osteonecrosis, ultimately requiring total talar replacement. The patient sustained the fracture spraining his ankle while welding. Osteosynthesis was performed using two cannulated cancellous screws, whereas bone union was achieved 3.
View Article and Find Full Text PDFJ Craniovertebr Junction Spine
January 2025
Department of Emergency and Urgency, Orthopedics and Traumatology Unit, Department of Emergency and Urgency, Orthopedics and Traumatology Unit, Niguarda Hospital, Milan, Italy.
Introduction: The Schanz screw system was developed for manual reduction of traumatic sagittal deformity of thoracic and lumbar vertebral fracture. The aim of this study was to evaluate clinical and radiological effectiveness of this system in the surgical treatment of thoracolumbar burst fractures (TLBFs) with severe kyphotic deformity without neurological deficit.
Materials And Methods: A retrospective analysis was conducted on 101 patients who underwent short posterior fixation with transpedicular Schanz screws between 2012 and 2022 for single-level (T12 or L1) TLBFs.
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