Javascript must be enabled to continue!
Three-Dimensional-Printed Biomimetic Structural Ceramics with Excellent Tribological Properties
View through CrossRef
Inspired by the ventral scale structure of the oriental sand boa, this study successfully fabricated multiscale bioinspired alumina (Al2O3) ceramics by combining the excellent mechanical properties, high-temperature resistance, and high hardness of ceramic composites with direct ink writing (DIW) 3D printing technology and femtosecond laser processing. A MoS2 thin film was then deposited on the ceramic surface via radio frequency magnetron sputtering (PVD) to systematically investigate the impact of bioinspired structures on the tribological properties of ceramic composites under both dry and lubricated conditions. Experimental results demonstrated that bioinspired structures at different scales exhibited significant friction-reducing and wear-resistant characteristics compared to blank structures. Specifically, under room-temperature conditions, the friction coefficients of bioinspired ceramic composites with solid lubricants and oil lubrication were 0.3 and 0.148, respectively, indicating excellent tribological performance. These findings confirm the synergistic lubrication effect between bioinspired structures, two-dimensional solid lubricants, and lubricating oil, which significantly enhanced the friction-reducing and wear-resistant properties of ceramic components. Therefore, the synergistic design of multiscale bioinspired structures and solid lubricants provides an innovative strategy for the advanced application of ceramic components.
Title: Three-Dimensional-Printed Biomimetic Structural Ceramics with Excellent Tribological Properties
Description:
Inspired by the ventral scale structure of the oriental sand boa, this study successfully fabricated multiscale bioinspired alumina (Al2O3) ceramics by combining the excellent mechanical properties, high-temperature resistance, and high hardness of ceramic composites with direct ink writing (DIW) 3D printing technology and femtosecond laser processing.
A MoS2 thin film was then deposited on the ceramic surface via radio frequency magnetron sputtering (PVD) to systematically investigate the impact of bioinspired structures on the tribological properties of ceramic composites under both dry and lubricated conditions.
Experimental results demonstrated that bioinspired structures at different scales exhibited significant friction-reducing and wear-resistant characteristics compared to blank structures.
Specifically, under room-temperature conditions, the friction coefficients of bioinspired ceramic composites with solid lubricants and oil lubrication were 0.
3 and 0.
148, respectively, indicating excellent tribological performance.
These findings confirm the synergistic lubrication effect between bioinspired structures, two-dimensional solid lubricants, and lubricating oil, which significantly enhanced the friction-reducing and wear-resistant properties of ceramic components.
Therefore, the synergistic design of multiscale bioinspired structures and solid lubricants provides an innovative strategy for the advanced application of ceramic components.
Related Results
Isolation, characterization and semi-synthesis of natural products dimeric amide alkaloids
Isolation, characterization and semi-synthesis of natural products dimeric amide alkaloids
Isolation, characterization of natural products dimeric amide alkaloids from roots of the Piper chaba Hunter. The synthesis of these products using intermolecular [4+2] cycloaddit...
Biomimetic and Bioinspired Synthesis of Nanomaterials/Nanostructures
Biomimetic and Bioinspired Synthesis of Nanomaterials/Nanostructures
In recent years, due to its unparalleled advantages, the biomimetic and bioinspired synthesis of nanomaterials/nanostructures has drawn increasing interest and attention. Generally...
Enhancing tribological system performance through intelligent data analysis and predictive modeling: A review
Enhancing tribological system performance through intelligent data analysis and predictive modeling: A review
The article presents a systematic analysis of the application of information technologies in tribology, including traditional methods, machine learning and artificial intelligence....
Knowledge, Attitudes, and Practice of Biomimetic Dentistry among General Dentists and Specialists in Tripoli, Libya
Knowledge, Attitudes, and Practice of Biomimetic Dentistry among General Dentists and Specialists in Tripoli, Libya
Aim: The aim of this study was to evaluate knowledge, attitudes and Practice of biomimetic dentistry among general dentists and specialists in Tripoli, Libya. Methods: The question...
Form Follows Force: A theoretical framework for Structural Morphology, and Form-Finding research on shell structures
Form Follows Force: A theoretical framework for Structural Morphology, and Form-Finding research on shell structures
The springing up of freeform architecture and structures introduces many challenges to structural engineers. The main challenge is to generate structural forms with high structural...
Advanced Biomimetic Nanomaterials for Non-invasive Disease Diagnosis
Advanced Biomimetic Nanomaterials for Non-invasive Disease Diagnosis
In modern society, the incidence of cancer, inflammatory diseases, nervous system diseases, metabolic diseases, and cardiovascular diseases is on the rise. These diseases not only ...
Cartilage molecular engineering using biomimetic proteoglycans
Cartilage molecular engineering using biomimetic proteoglycans
Osteoarthritis is among the leading causes of disability, affecting more than 30.8 million people in the United States, and is associated with a high economic burden that will cont...
Biomimetic and Natural Product Synthesis
Biomimetic and Natural Product Synthesis
Inspired or learning from nature is always a great approach to solve problems. In terms of natural product synthesis, which is always challenging, it is wise to imitate nature’s wa...

