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Pouyan Mohammadi Dashtaki
Dr. Nader Fathianpour
Dr. Sayed Masoud Sayedi
Dr. Mohammad Reza Niroomand
مقالات کنفرانسی
A simple and environmentally friendly method for surface modification of ZrO2 nanoparticles by biosafe citric acid as well as ascorbic acid (vitamin C) and its application for the preparation of poly(vinyl chloride) nanocomposite films
A simple and environmentally friendly method for surface modification of ZrO2 nanoparticles by biosafe citric acid as well as ascorbic acid (vitamin C) and its application for the preparation of poly(vinyl chloride) nanocomposite films
A simple and environmentally friendly method for surface modification of ZrO2 nanoparticles by biosafe citric acid as well as ascorbic acid (vitamin C) and its application for the preparation of poly(vinyl chloride) nanocomposite films
A novel method for the fabrication of Al-matrix nanocomposites reinforced by mono-dispersed TiAl 3 intermetallic via a three-step process of cold-roll bonding heat-treatment and accumulative roll bonding
A novel method for the fabrication of Al-matrix nanocomposites reinforced by mono-dispersed TiAl 3 intermetallic via a three-step process of cold-roll bonding heat-treatment and accumulative roll bonding
Thermo-mechanical vibration, buckling, and bending of orthotropic graphene sheets based on nonlocal two-variable refined plate theory using finite difference method considering surface energy effects
A Simple and Environmentally Friendly Method for Surface Modification of ZrO2 Nanoparticles by Biosafe Citric Acid as Well as Ascorbic Acid (Vitamin C) and Its Application for the Preparation of Poly(vinyl chloride)Nanocomposite Films
An eco-friendly method for the preparation of poly(N-vinyl-2-pyrrolidone)-poly(vinyl alcohol) blend nanocomposite films containing vitamin B1-modified silica nanoparticles to enhance thermal and wettability properties
Implementation of time-weighted residual method for simulation of flexural waves in multi-span Timoshenko beams subjected to various types of external loads: from stationary loads to accelerating moving masses
Implementation of time-weighted residual method for simulation of flexural waves in multi-span Timoshenko beams subjected to various types of external loads: from stationary loads to accelerating moving masses