Its excellent mechanical and electrical properties make it a prevalent topic in nanotechnology. Scholars in growing number are exploring how to improve the mechanical properties of traditional structures and trying to find a new kind of material which can make the fundamental components own an excellent property.Ĭarbon nanotube (CNT), a type of carbonaceous nanomaterial, was first found by Iijima. focused on the Honeycomb structure and showed the result that with the filling circular tubes into a buckling area, a considerable mass efficiency improvement with respect to deflection resistance can be obtained. texted matrix composites reinforced by graphene nanoplatelets and found that the microhardness value of nanocomposite increases by 24.51% compared to the matrix. reported that the presence of the high-modulus graphene in a low modulus matrix can lead to significant reinforcement. Using the nanomaterials as particulates and compositing with conventional materials, their mechanical properties in certain conditions would be further increased. As recognized, metal-matrix composites with ceramic fibers and particulates could prefer higher specific strength and elastic modulus than their monolithic alloys. Nanomaterials, due to their particular dimension effect, exhibit unusual physical, chemical, and biological behavior, so they have been applied to various fields. At present, many advanced analysis theories and accurate computing methods have been proposed constantly in order to reflect the essential features of the structure and evaluate the mechanical property of structures with the kind of formats or materials. To avoid the damage caused by structural decay, it is significant to develop their mechanical analysis and make some judgments about whether they have the ability to work well. Under the practical circumstances, these structural elements are commonly subjected to various forms of dynamic loadings in their service life. They make up most of the products in many industrial fields, such as construction, aviation, naval architecture, etc. Beams, plates, and shells, as fundamental components, have been applied extensively in various types of engineering structure.
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