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    Effect of temperature on microstructural evolution and subsequent enhancement of mechanical properties in a backward extruded magnesium alloy

    , Article International Journal of Advanced Manufacturing Technology ; Volume 95, Issue 9-12 , 2018 , Pages 3155-3166 ; 02683768 (ISSN) Azimi, M ; Mirjavadi, S. S ; Salandari-Rabori, A ; Sharif University of Technology
    Springer London  2018
    Abstract
    The capability of backward extrusion (BE) method was assessed to achieve modified structures in AZ80 magnesium alloy. At first, 3D-Deform was employed to simulate the deformation flow through the deformed cup which gives an evidence from the flow behavior of the material. The material was processed via BE method at various temperatures of 250, 350, and 450 °C. Metallographic investigations were conducted in three different regions of the BE-processed cup (wall, bottom, and flow channel). The main feature observed at the wall of the BE cup was the presence of mechanical twins, the frequency of which was reduced by raising the process temperature. The flow localization in the form of shear... 

    Optimization of mechanical properties of a micro alloyed steel

    , Article Materials and Design ; Volume 30, Issue 6 , 2009 , Pages 2167-2172 ; 02641275 (ISSN) Rasouli, D ; KhamenehAsl, Sh ; Akbarzadeh, A ; Daneshi, G. H ; Sharif University of Technology
    2009
    Abstract
    In this work, the effect of hot deformation temperature on microstructure and mechanical properties of micro alloyed steel was studied. The results indicated that by decreasing the deformation temperature final microstructure is refined and the volume fraction of grain boundary ferrite is increased and some pearlite is produced. Therefore both the yield strength and ultimate tensile strength is increased, while the toughness is preserved in comparison to a ferritic-pearlitic microstructure. Also a model was developed to relate the deformation condition to the volume fraction of acicular ferrite at mixed microstructure. © 2008 Elsevier Ltd. All rights reserved  

    Fast isothermal solidification during transient liquid phase bonding of a nickel alloy using pure copper filler metal: solubility vs diffusivity

    , Article Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science ; Volume 50, Issue 5 , 2019 , Pages 2235-2245 ; 10735623 (ISSN) Ghasemi, A ; Pouranvari, M ; Sharif University of Technology
    Springer Boston  2019
    Abstract
    This investigation aims at understanding the underlying fundamentals of the isothermal solidification phenomenon during the transient liquid phase (TLP) bonding process. The isothermal solidification is governed by solid-state diffusion of the melting point depressant (MPD) into the base material, which, in turn, is controlled by both kinetic and thermodynamic parameters; however, the latter factor is generally ignored. In this work, the competition between kinetics and thermodynamics of diffusion were considered in TLP bonding of a nickel alloy, Monel 400, using two distinct filler metals including pure copper (Cu) and Ni-Si-B filler metal. The joint generated by Ni-Si-B filler metal... 

    Influence of vacancies and grain boundaries on the diffusive motion of surface rolling molecules

    , Article Journal of Physical Chemistry C ; Volume 124, Issue 30 , 2 July , 2020 , Pages 16629-16643 Nemati, A ; Nejat Pishkenari, H ; Meghdari, A ; Ge, S. S ; Sharif University of Technology
    American Chemical Society  2020
    Abstract
    Molecular machines and surface rolling molecules show great potential to accomplish different tasks in several fields, such as bottom-up assembly and nanomanipulation. Many researchers have investigated molecular machines, most of which was on a flat single-crystal substrate. In this paper, we studied the influence of vacancies in different sizes on the motion of a nanocar, a nanotruck, and C60 on a gold substrate at different temperatures by employing classical all-atom molecular dynamics. At the temperature of 200 K, a hole or vacancy appears as a repellent obstacle in the path of C60, and at higher temperatures, C60 can enter this hole. Although C60 has enough energy to escape single-atom... 

    Effective management of nucleation and crystallization processes in perovskite formation via facile control of antisolvent temperature

    , Article ACS Applied Energy Materials ; Volume 3, Issue 2 , 2020 , Pages 1506-1514 Taherianfard, H ; Kim, G. W ; Malekshahi Byranvand, M ; Choi, K ; Kang, G ; Choi, H ; Tajabadi, F ; Taghavinia, N ; Park, T ; Sharif University of Technology
    American Chemical Society  2020
    Abstract
    The antisolvent method has been used extensively to induce the growth of high-quality perovskite layers for efficient solar cells. However, uncontrollable nucleation and crystallization increases the risk of formation of undesirable defects. Here, we report a facile way to control the nucleation and crystallization stages in perovskite formation by changing the temperature of chlorobenzene (CB) in the antisolvent method. When CB is injected on the spinning substrate with a precursor solution, CB temperature affects the nucleation process as well as the crystallization process. As the CB temperature increases, nuclei increase in size, leading to the formation of larger perovskite crystals... 

    Microstructure evolution and mechanical properties of AA1100 aluminum sheet processed by accumulative roll bonding

    , Article Materials Science and Engineering A ; Volume 497, Issue 1-2 , 2008 , Pages 132-138 ; 09215093 (ISSN) Pirgazi, H ; Akbarzadeh, A ; Petrov, R ; Kestens, L ; Sharif University of Technology
    2008
    Abstract
    In this study, accumulative roll bonding (ARB) process was carried out on an AA1100 aluminum sheet up to 10 cycles. Electron backscattering diffraction (EBSD) method was utilized to investigate the microstructural evolution during the ARB process. It was observed that the ARB is a promising process for fabricating ultra-fine grained structures in aluminum sheets. The results indicate that several mechanisms are responsible for the microstructural changes at different levels of strain during this process. Grain subdivision as well as the development of sub-grains are the major mechanisms at the early stages of ARB. Strain induced transition of low angle to high angle grain boundaries and the... 

    Reactive milling synthesis of nanocrystalline Al-Cu/Al2O3 nanocomposite

    , Article Materials Science and Engineering A ; Volume 464, Issue 1-2 , 2007 , Pages 225-232 ; 09215093 (ISSN) Arami, H ; Simchi, A ; Sharif University of Technology
    2007
    Abstract
    Nanocrystalline Al-4 wt% Cu alloy reinforced with nanometric Al2O3 particles was synthesized by in situ reactive milling of Al and CuO powder mixture. X-ray diffraction (XRD), differential thermal analysis (DTA) and transmission electron microscopy (TEM) techniques were employed to study the mechanically induced solid state reaction between the blended powders. The mechanical milling stages were studied by scanning electron microscopy (SEM), bulk density measurement and laser particle size analyzer. It was shown that the reaction between Al and CuO occurs progressively as the mechanical milling continues, leading to formation of nanoscaled alumina particles. The grain refinement of the... 

    Effect of annealing-induced tensions on the mechanical failure of copper/copper interface in wafer-to-wafer hybrid bonding

    , Article ECS Journal of Solid State Science and Technology ; Volume 10, Issue 2 , 2021 ; 21628769 (ISSN) Ghaemi, M ; Jafary Zadeh, M ; Sharif University of Technology
    IOP Publishing Ltd  2021
    Abstract
    The copper/copper (Cu/Cu) interface has an important role in wafer-to-wafer hybrid bonding for 3D integration applications. Reports indicate the possibility of the formation of post-bonding interfacial voids and cracks which must be avoided. Here, we use molecular dynamics simulations to investigate the effect of annealing-induced tensions on the strength and deformation mechanisms of Cu/Cu interfaces. We perform tensile tests on the pristine and defective Cu/Cu interfaces including a prototypical interfacial grain boundary in two defective limits: the presence of a single (isolated) void, and an array of multiple voids. The latter resembles interfacial nanoscale roughness as a result of... 

    Coupled continuum damage mechanics and crystal plasticity model and its application in damage evolution in polycrystalline aggregates

    , Article Engineering with Computers ; 2021 ; 01770667 (ISSN) Amelirad, O ; Assempour, A ; Sharif University of Technology
    Springer Science and Business Media Deutschland GmbH  2021
    Abstract
    In the present study, damage initiation and growth in a polycrystalline aggregate are investigated. In this regard, an anisotropic continuum damage mechanics coupled with rate-dependent crystal plasticity theory is employed. Using a thermodynamically consistent procedure, a finite deformation formulation is derived. For this purpose, the damage tensor is incorporated in the crystal plasticity formulation for a cubic single crystal. The damage evolution is considered to be dependent on the history of damage, equivalent plastic strain, stress triaxiality, and Lode parameters. This material model is implemented in the commercial finite-element code Abaqus/Standard by developing a user material... 

    Deformation characteristics of isothermally forged UDIMET 720 nickel-base superalloy

    , Article Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science ; Volume 36, Issue 4 , 2005 , Pages 895-905 ; 10735623 (ISSN) Monajati, H ; Jahazi, M ; Yue, S ; Taheri, A. K ; Sharif University of Technology
    Minerals, Metals and Materials Society  2005
    Abstract
    The hot deformation behavior of nickel-base superalloy UDIMET 720 in solution-treated conditions, simulating the forging process of the alloy, was studied using hot compression experiments. Specimens were deformed in the temperature range of 1000 °C to 1175 °C with strain rates of 10-3 to 1 s-1 and total strain of 0.8. Below 1100 °C, all specimens showed flow localization as shear band through the diagonal direction, with more severity at higher strain rates. A uniform deformation was observed when testing between 1100 °C and 1150 °C with dynamic recrystallization as the major flow softening mechanism above 1125 °C. Deformation above γ' solvus temperature was accompanied with grain boundary... 

    Two dimensionality aspects of HTSC

    , Article Superconductor Science and Technology ; Volume 16, Issue 10 , 2003 , Pages 1216-1223 ; 09532048 (ISSN) Mohammadizadeh, M. R ; Akhavan, M ; Sharif University of Technology
    2003
    Abstract
    Based on transport and magnetic measurements on Gd(Ba2-xPrx)Cu3O7+δ, and some other properties of high temperature superconductors (HTSC), we have extracted similarities between superconductors, two-dimensional electron gas (2D-EG) i.e. MOSFETs and ultrathin films of conventional superconductors. These are based on properties such as superconductor-insulator transition in superconductors and metal-insulator transition (MIT) in 2D-EG with doping and magnetic field, localization in transport conduction, quantum unit of resistance at MIT, larger change in resistance from critical doping to the insulating side in comparison with change from critical doping to the metallic side and strong... 

    Hot deformation of ultrafine-grained Al6063/Al2O3 nanocomposites

    , Article Journal of Materials Science ; Volume 46, Issue 14 , July , 2011 , Pages 4994-5001 ; 00222461 (ISSN) Asgharzadeh, H ; Simchi, A ; Kim, H. S ; Sharif University of Technology
    2011
    Abstract
    Ultrafine-grained (UFG) Al6063 alloy reinforced with 0.8 vol% nanometric alumina particles (25 nm) was prepared by reactive mechanical alloying and direct powder extrusion. Transmission electron microscopy and electron backscatter diffraction analysis showed that the grain structure of the nanocomposite composed of nanosize grains (<0.1 μm), ultrafine grains (0.1-1 μm) and micronsize grains (>1 μm) with random orientations. Mechanical properties of the material were examined at room and high temperatures by compression test. It was found that the yield strength of the UFG composite material is mainly controlled by the Orowan mechanism rather than the grain boundaries. The deformation... 

    Hot deformation behavior of an aluminum-matrix hybrid nanocomposite fabricated by friction stir processing

    , Article Materials Science and Engineering A ; Volume 626 , 2015 , Pages 458-466 ; 09215093 (ISSN) Khodabakhshi, F ; Gerlich, A. P ; Simchi, A ; Kokabi, A. H ; Sharif University of Technology
    Abstract
    A fine-grained aluminum-matrix hybrid nanocomposite reinforced with TiO2, MgO and Al3Ti nanoparticles was prepared via reactive friction stir processing (FSP) of an Al-Mg sheet with pre-placed TiO2 particles (50nm; 3.1vol%). The microstructure of the hybrid nanocomposite comprises high-angle grain boundaries (~90%) with an average size of 2μm and hard inclusions with sizes in the range of 30-50nm. Evaluation of the hot deformation behavior of the nanocomposite by uniaxial tensile testing at different temperatures (300-450°C) and strain rates (0.001-0.1s-1) shows that the deformation apparent activation energy of the nanocomposite is 137kJmol-1 at ≤300°C. The values of the activation energy... 

    Influence of four wires tandem submerged arc welding process on heat affected zone properties in high strength pipeline steel

    , Article Proceedings of the 2010 International Conference on Mechanical, Industrial, and Manufacturing Technologies, MIMT 2010, 22 January 2010 through 24 January 2010 ; 2010 , Pages 85-89 ; 9780791859544 (ISBN) Moeinifar, S ; Kokabi, A. H ; Madaah Hosseini, H. R ; Shang, C. J ; Hui, G ; Wei, L. Z ; Sharif University of Technology
    2010
    Abstract
    The objective of this investigation was to provide a detailed evaluation of the heat affected zone properties of a high-strength pipeline steel. The X80 high-strength low-alloy microalloyed steel was supplied as a hot rolled plate with accelerated cooling. The four-wire tandem submerged arc welding process with different heat input was used to generate welded joints. The microstructure of the heat affected zone depended on heat input values. M/A constituent appeared in the microstructure of HAZ region for all of the specimens along the prior-austenite grain boundaries and between bainitic ferrite laths. Charpy impact specimens were notched in four locations: FL (fusion line), FL+1mm, FL+2mm... 

    Effects of the design parameters on characteristics of the inductances and JJS in HTS RSFQ circuits

    , Article IEEE Transactions on Applied Superconductivity ; Volume 28, Issue 7 , 2018 ; 10518223 (ISSN) Jabbari, T ; Shanehsazzadeh, F ; Zandi, H ; Banzet, M ; Schubert, J ; Fardmanesh, M ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2018
    Abstract
    We have investigated various geometrical design dependencies for rapid single-flux-quantum (RSFQ) circuits in high- Tc superconductors (HTS) technology, including the characteristics of the intermediate inductances. Structural- and temporal-dependent combinations of Cn - Rn (capacitance and normal resistance of the Josephson junctions, JJs) in the HTS technology are also investigated. Relatively favorable combinations of normal resistance and low capacitance of the JJs needed in the HTS technology for RSFQ circuits have been made possible by recent fabrication methods of high-quality YBCO films. Obtaining these devices is made achievable by using the grain boundary structures and high... 

    Synergistic role of carbon nanotube and SiCn reinforcements on mechanical properties and corrosion behavior of Cu-based nanocomposite developed by flake powder metallurgy and spark plasma sintering process

    , Article Materials Science and Engineering A ; Volume 786 , 2020 Akbarpour, M. R ; Mousa Mirabad, H ; Khalili Azar, M ; Kakaei, K ; Kim, H .S ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Hybrid-reinforced metals are novel composite materials in which nano-phases including nanoparticles and nanotubes/nanosheets are used simultaneously to reinforce metals or alloys to enhance physical, mechanical, wear and other properties. In this research, Cu/(CNT-SiC) hybrid nanocomposite was synthesized using flake powder metallurgy and spark plasma sintering method and the effects of hybrid reinforcements on microstructural, wear and corrosion properties of the developed material were investigated and compared with those of copper. Microstructural characterization showed reduction of average grain size from 419 to 307 nm and increase of low angle grain boundaries with the introduction and... 

    Microstructure and mechanical properties of oxide-dispersion strengthened al6063 alloy with ultra-fine grain structure

    , Article Metallurgical and Materials Transactions A: Physical Metallurgy and Materials Science ; Volume 42, Issue 3 , 2011 , Pages 816-824 ; 10735623 (ISSN) Asgharzadeh, H ; Simchi, A ; Kim, H. S ; Sharif University of Technology
    Abstract
    The microstructure and mechanical properties of the ultra-fine grained (UFG) Al6063 alloy reinforced with nanometric aluminum oxide nanoparticles (25 nm) were investigated and compared with the coarse-grained (CG) Al6063 alloy (∼2 μm). The UFG materials were prepared by mechanical alloying (MA) under high-purity Ar and Ar-5 vol pct O2 atmospheres followed by hot powder extrusion (HPE). The CG alloy was produced by HPE of the gas-atomized Al6063 powder without applying MA. Electron backscatter diffraction under scanning electron microscopy together with transmission electron microscopy studies revealed that the microstructure of the milled powders after HPE consisted of ultra-fine grains... 

    Role of tandem submerged arc welding thermal cycles on properties of the heat affected zone in X80 microalloyed pipe line steel

    , Article Journal of Materials Processing Technology ; Volume 211, Issue 3 , 2011 , Pages 368-375 ; 09240136 (ISSN) Moeinifar, S ; Kokabi, A. H ; Hosseini, H. R. M ; Sharif University of Technology
    Abstract
    The influence of thermal cycles on the properties of the coarse grained heat affected zone in X80 microalloyed steel has been investigated. The thermal simulated involved heating the X80 steel specimens to the peak temperature of 1400 °C, with different cooling rates. The four-wire tandem submerged arc welding process, with different heat input values, was used to generate a welded microstructure. The martensite/austenite constituent appeared in the microstructure of the heat affected zone region for all the specimens along the prior-austenite grain boundaries and between the bainitic ferrite laths. The blocky-like and stringer martensite/austenite morphology were observed in the heat... 

    Influence of peak temperature during simulation and real thermal cycles on microstructure and fracture properties of the reheated zones

    , Article Materials and Design ; Volume 31, Issue 6 , June , 2010 , Pages 2948-2955 ; 02641275 (ISSN) Moeinifar, S ; Kokabi, A. H ; Madaah Hosseini, H. R ; Sharif University of Technology
    2010
    Abstract
    The objective of this paper is to study the influence of the second peak temperature during real and simulated welding on properties of the subcritically (S), intercritically (IC) and supercritically (SC) reheated coarse grained heat affected (CGHAZ) zones. The X80 high strength pipeline microalloyed steel was subject to processing in a double-pass tandem submerged arc welding process with total heat input of 6.98 kJ/mm and thermal cycles to simulate microstructure of reheated CGHAZ zones. This involved heating to a first peak temperature (TP1) of 1400 °C, then reheating to different second peak temperatures (TP2) of 700, 800 and 900 °C with a constant cooling rate of 3.75 °C/s. Toughness of... 

    Microstructure, mechanical properties, corrosion behavior and cytotoxicity of Mg-Zn-Al-Ca alloys as biodegradable materials

    , Article Journal of Alloys and Compounds ; Vol. 607 , 2014 , Pages 1-10 ; ISSN: 09258388 Homayun, B ; Afshar, A ; Sharif University of Technology
    Abstract
    Recently, considerable attentions have been paid to alloy Mg-4Zn-0.2Ca for biomedical applications due to its suitable biocompatibility and acceptable mechanical properties. In this work, the effects of the addition of different amounts of Al on microstructure, mechanical properties, degradation behavior, and biocompatibility of this alloy were investigated. The corrosion behaviors of the alloys were investigated through polarization tests, chronoamperometry analysis, immersion tests, and EIS experiments. The mechanical properties were analyzed by using tensile tests and compression tests. The results showed that the addition of Al up to 3 wt.% considerably modifies the degradation behaviors...