Combined effect of TiO2 nanoparticles and input welding parameters on the weld bead penetration in submerged arc welding process using fuzzy logic

M Aghakhani, MR Ghaderi, A Karami… - … International Journal of …, 2014 - Springer
These days, the trend in every manufacturing industry including welding is to automate the
processes in order to increase productivity. To achieve this objective, it is therefore …

Influence of Siliconized Zn‐Graphene Oxide Complex Nanoparticles on the Microstructure and Mechanical Properties of AA5083: Focus on Gas Metal Arc Welding

F Rahmati, M Aghakhani… - Advances in Materials …, 2023 - Wiley Online Library
Aluminum alloy 5083 has low density, mechanical properties, high corrosion resistance, and
high welding capability. Due to high thermal conductivity, specific heat, and latent heat, as …

Modeling and optimization of dilution in SAW in the presence of Cr2O3 nano-particles

M Aghakhani, P Naderian - The International Journal of Advanced …, 2015 - Springer
Dilution is an important quality characteristic in welding, since it influences performance of
welded/surfaced structures in service due to chemical and metallurgical changes in weld …

Controlled synthesis and photoelectrochemical properties of highly ordered TiO 2 nanorods

S Ameen, MS Akhtar, YS Kim, HS Shin - RSC advances, 2012 - pubs.rsc.org
Highly ordered TiO2 nanorods (NRs) were grown directly on fluorine doped tin oxide (FTO)
substrate by a single step hydrothermal synthesis at 150° C. The morphology of TiO2 was …

Optimization of the depth of penetration by welding input parameters in saw process using response surface methodology

M Kazemi, M Aghakhani, E Haghshenas-Jazi… - … Materials Transactions B, 2016 - Springer
The aim of this paper is to optimize the depth of penetration with regard to the effect of MgO
nanoparticles and welding input parameters. For this purpose, response surface …

The application of imperialist competitive algorithm for optimization of deposition rate in submerged arc welding process using TiO2 nano particle

MR Ghaderi, M Aghakhani, A Eslampanah… - Journal of Mechanical …, 2015 - Springer
We used a novel optimization algorithm based on the imperialist competitive algorithm (ICA)
to optimize the deposition rate in the submerged arc welding (SAW) process. This algorithm …

Predicting the combined effect of TiO2 nano-particles and welding input parameters on the hardness of melted zone in submerged arc welding by fuzzy logic

M Aghakhani, MR Ghaderi, MM Jalilian… - Journal of mechanical …, 2013 - Springer
Submerged arc welding (SAW) is a high-quality arc welding process used in heavy
industries for welding thick plates. In this process, selecting appropriate values for the input …

A solvent degradation approach to expose nanoparticles by decreasing nanofibers' diameter

AJ Kermanshahi, L Rajabi, F Dabirian - Polymer Degradation and Stability, 2017 - Elsevier
This paper reports an effective method to reduce nanofibers' diameter of functionalized TiO
2/Nylon 6-6 nanofibers, by dissolving polymer layers through formic acid solutions, to …

[PDF][PDF] Effect of combining Cr2O3 nano-particles and welding input parameters on the heat affected zone width in submerged arc welding process

M Aghakhani, P Naderian - 4th International Biennial Conference on …, 2013 - academia.edu
Submerged arc welding (SAW) is a high quality, high deposition rate welding process
commonly used to join high thickness plates in load bearing components. This research …

[PDF][PDF] Modeling of weld penetration in SAW process in the presence of boehmite nano-particles surface adsorbed by boric acid using MLP-ANN

Y Mollapour, M Aghakhani, H Eskandari… - Journal of Welding …, 2016 - researchgate.net
This paper investigates the effect of boehmite nano-particles surface adsorbed byboric acid
(BNBA) along with other input welding parameters such as welding current, arc voltage …