[1]
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Modelling the hardness of weld metal in the submerged arc welding of low carbon steel plates: addition of CR2O3 nanoparticles
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Advances in Materials and …,
2022 |
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[2]
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Study on mass concentration and morphology of SMAW fume particles with a new covered electrode using nano-CaTiO3 as an arc stabilizer
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Journal of Manufacturing …,
2022 |
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[3]
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Investigations on the weld metal properties of nanoparticle-embedded low-fume SMAW electrodes
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Transactions of the Indian …,
2022 |
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[4]
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The effect of Al2O3 Nano-particles coated with manganese oxide on the microstructure and mechanical properties of low carbon steel using GMAW process
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… Processes in Materials …,
2021 |
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[5]
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Materials Performance and Characterization
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2021 |
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[6]
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تأثیر نانو ذرات آلومینای روکش شده با اکسید منگنز بر ریزساختار و خواص مکانیکی فولاد کم کربن در فرآیند جوشکاری GMAW
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2021 |
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[7]
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Effect of Boehmite Nanoparticles Surface Adsorbed with Vanadium on the Microstructure and Hardness of the Melted Zone in the Submerged Arc Welding Process
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Journal of …,
2021 |
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[8]
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Improving Impact Toughness for Welding Joints of Steel by Adding TiO2 Nanoparticales
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2020 |
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[9]
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Co-based Superalloy (Stellite 6) Powder with Added Nanoparticles to be Molten by PTA
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2020 |
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[10]
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Effect of adding TiO2 nanoparticles on the impact toughness for welding joints of mild steel
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2020 |
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[11]
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Analysis and predicting the effect of ZrO2 nano-particles on penetration and HMZ in GMAW of low carbon steel using fuzzy logic
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Journal of Welding …,
2020 |
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[12]
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اثر نوع فلاکس فعال کننده سطحی بر پروفیل جوش، پیچیدگی زاویه ای ناشی از جوشکاری A-TIG فولاد زنگ نزن دوفازی AISI 2205
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مجله علمی-پژوهشی علوم و …,
2020 |
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[13]
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واکاوی و پیش بینی تأثیر نانوذرات ZrO2بر عمق نفوذ و سختی ناحیه ذوب شده فولاد کم کربن در فرایندGMAW با استفاده از منطق فازی
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2020 |
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[14]
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Microstructural Study for Optimization of Ce Content of Austempered Ductile Iron (ADI) Weld Metal
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2019 |
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[15]
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Cr6+ reduction in welding fumes by nano composite coatings on stainless steel manual metal arc welding electrodes
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Process Safety and Environmental Protection,
2018 |
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[16]
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Effect of Ti Addition on the Microstructure and Mechanical Properties of Weld Metals in HSLA Steels
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Journal of Materials Engineering and Performance,
2018 |
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[17]
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Influence of nano-sized flux materials in the reduction of the Cr (VI) in the stainless steel welding fumes
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Journal of Manufacturing Processes,
2018 |
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[18]
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Progress in Solar Energy and Engineering Systems
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2017 |
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[19]
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Modeling width of Weld in SAW with Adding Nano Material
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2017 |
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[20]
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Experimental investigation and optimization analysis of weld penetration in SAW of mild steel plates of solar fin coated with TiO2/Cr2O3 nano-particles by fuzzy logic
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Progress in Solar Energy and Engineering Systems,
2017 |
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[21]
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Rutile Electrodes Enhanced with TiO2 Nanoparticles
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Advanced Materials Research,
2016 |
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[22]
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Rutile Electrodes Enhanced with TiO2 Nanoparticles.
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Advanced Materials Research,
2016 |
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[23]
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Modification of cellulose and rutile welding electrode coating by infiltrated TiO2 nanoparticles
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Metals and Materials International,
2016 |
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[24]
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EFFECT OF NANOMATERIAL ADDITION USING GMAW AND GTAW PROCESSES
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Rev. Adv. Mater. Sci.,
2016 |
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[25]
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Modeling of weld height in gas metal arc welding process in the presence of TiO 2 Nano-Particles using artificial neural network
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2015 |
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[26]
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Welding Fumes Reduction by Coating of Nano TiO< sub> 2 on Electrodes
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Journal of Materials Processing Technology,
2015 |
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[27]
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Modeling and optimization of dilution in SAW in the presence of Cr2O3 nano-particles
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The International Journal of Advanced Manufacturing Technology,
2015 |
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[28]
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The application of imperialist competitive algorithm for optimization of deposition rate in submerged arc welding process using TiO2 nano particle
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Journal of Mechanical Science and Technology,
2015 |
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[29]
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Welding Fume Reduction by Nano-Alumina Coating on Electrodes–Towards Green Welding Process
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Journal of Cleaner Production,
2015 |
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[30]
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مدلسازی ارتفاع جوش در فرآیند جوشکاری قوس الکتریکی با گاز محافظ در حضور نانوذرات TiO2 توسط شبکهی عصبی مصنوعی
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مهندسی مکانیک مدرس,
2015 |
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[31]
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Optimization of the Depth of Penetration by Welding Input Parameters in SAW Process Using Response Surface Methodology
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Metallurgical and Materials Transactions B,
2015 |
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[32]
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Obtaining the creep constitutive parameters for the layers of butt-welded 1.25Cr0.5Mopipe
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Modares Mechanical Engineering,
2015 |
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[33]
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Welding fumes reduction by coating of nano-TiO2 on electrodes
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Journal of Materials Processing Technology,
2015 |
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[34]
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The application of imperialist competitive algorithm for optimization of deposition rate in submerged arc welding process using TiO 2 nano particle
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2015 |
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[35]
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Modeling of weld height in gas metal arc welding process in the presence of TiO2 Nano-Particles using artificial neural network
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2015 |
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[36]
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Strategies for Controlling Welding Fumes at the Source-A Review.
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Applied Mechanics & Materials,
2014 |
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[37]
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Strategies for Controlling Welding Fumes at the Source-A Review
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2014 |
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[38]
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Combined effect of TiO2 nanoparticles and input welding parameters on the weld bead penetration in submerged arc welding process using fuzzy logic
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The International Journal of Advanced Manufacturing Technology,
2014 |
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[39]
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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
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Journal of Mechanical Science and Technology ,
2013 |
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[40]
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Effect of combining Cr2O3 nano-particles and welding input parameters on the HAZ width in SAW process
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2013 |
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[41]
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Effect of combining Cr2O3 nano-particles and welding input parameters on the heat affected zone width in submerged arc welding process
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NULL
2012 |
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[42]
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Experimental investigation and optimization analysis of weld penetration in SAW of mild steel plates of solar fin coated with TiO2/Cr2O3 nano-particles by …
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A Kalhor
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