Researchers and engineers have been fascinated by the way weak organic and inorganic components naturally combine to create strong and long-lasting structures for the past few …
In the present paper, a novel refined shear deformation beam theory is proposed and applied, for the first time, to investigate the bending behavior of functionally graded (FG) …
In the present work, bending and free vibration analyses of functionally graded carbon nanotube-reinforced (FG-CNTR) sandwich beams are carried out using finite element-based …
Dental implants have long played an important role in restoring lost teeth, but there are still concerns about their durability and long-term success. Commercial dental implants have …
This work reports the synthesis and characterization of SnO 2/CNT nanocomposites and their photocatalytic performance. The nanocomposite catalysts were assembled via a pulsed …
In the present work, a surrogate model based on the Random Forest (RF) machine learning is employed for transforming the First-order Shear Deformation Theory (FSDT) based …
As a first endeavor, the out-of-plane free vibrational behaviors and moving load responses of sandwich curved beams with graphene platelets reinforced composite face sheets and …
Nanomaterials have gained huge applications ever since their discoveries, especially in the field of electronics, medicine, research, and environmental cleanup. Nanomaterials have a …
In the present work, free vibration and buckling analyses of sandwich plates with various functionally graded foam cores are carried out. Foam cores are assumed to be made of …