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Carbon nanotubes have drawn enormous attention in recent years due to their outstanding mechanical and multifunctional properties.
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This new and improved process has great potential for fabricating CFRCLSs with complex shapes, high mechanical properties, and multifunctional benefits.
Carbon nanotubes (CNTs) hold the promise of delivering exceptional mechanical properties and multifunctional characteristics due to their unique physiochemical properties and prospective applications in various nanotechnologies.
Microfabrication techniques have been employed to fabricate integrated cir-cuits (ICs), semiconductors, microelectromechanical systems (MEMS), nanoelectromechanical systems (NEMS), BioMEMS, microfluidic, electromechanical, mechanical, chemical, optical, photonic and multifunctional devices.
In view of this, the paper presents a bio-inspired approach which unfolds the design of a novel multifunctional robotic end-effector embedded with mechanical and control mechanisms capable of automatically maintaining the RVS machine.
The importance of high temperature mechanical properties and microstructure on the adaptive and multifunctional behaviour in improving tool life is investigated.
Mechanical and electrical characterization of the multifunctional fibers.
The composite was then investigated in vitro for its multifunctional properties (mechanical and biological properties) before and after incubation in SBF in order to evaluate the compatibility of the biomaterial for orthopedic application.
These fibers which exhibit exceptional mechanical properties could be used for new conductive and multifunctional textiles or composites.
Also, it was observed that dynamic mechanical and damping properties are due to complex and multifunctional parameters such as adhesion, constrained chains, molecular optimum mobility between polymer and nanotubes.
The capability of Additive Manufacturing (AM) to manufacture multi-materials allows the fabrication of complex and multifunctional objects with heterogeneous material compositions and varying mechanical properties.
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