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    Limiting fault currents in wind power plants using superconductive shielded core reactors

    , Article IEEE Power and Energy Society 2008 General Meeting: Conversion and Delivery of Electrical Energy in the 21st Century, PES, Pittsburgh, PA, 20 July 2008 through 24 July 2008 ; 2008 ; 9781424419067 (ISBN) Behzadirafi, S ; Salehfar, H ; Varahram, H ; Sharif University of Technology
    2008
    Abstract
    In this paper we investigate the effects of superconducting shielded core reactor (SSCR) on the operation of induction generators. Large number of induction generators used in wind power plants generally increase the short circuit current level of the system. The reason is that they provide parallel reduced-impedance paths for the fault currents. Taking advantage of SSCR in wind power plants allows for using these generating units in large numbers with no concerns about the system fault current increments. The study is performed on a test system using the conventional model of an induction generator and a new effective model for SSCR based on its shielding behavior. Mathematical equations... 

    Simulation of mould filling in lost foam casting process

    , Article International Journal of Cast Metals Research ; Volume 16, Issue 6 , 2003 , Pages 554-565 ; 13640461 (ISSN) Mirbagheri, S. M. H ; Ashuri, H ; Varahram, N ; Davami, P ; Sharif University of Technology
    Maney Publishing  2003
    Abstract
    In this investigation, an algorithm was developed to calculate the gas pressure at the melt/foam interface (gap) owing to degraded foam during mould filling in the lost foam casting process (LFC). The effect of back-pressure on mould filling was modelled using a new experimental function by the addition of a three-dimensional volume of fluid (3D-VOF) function. The molten flow and free surface were simulated using the solution algorithm-VOF (SOLA-VOF) numerical technique. To simulate the three-dimensional incompressible flow in the LFC, the pressure boundary conditions, heat transfer and foam gas pressure effect were modified. Finally, in order to verify the computational results of... 

    Simulation of melt flow in coated mould cavity in the casting process

    , Article Journal of Materials Processing Technology ; Volume 142, Issue 2 , 2003 , Pages 493-507 ; 09240136 (ISSN) Mirbagheri, S. M. H ; Esmaeileian, H ; Serajzadeh, S ; Varahram, N ; Davami, P ; Sharif University of Technology
    2003
    Abstract
    In this investigation, simulation of the 3D flow of incompressible molten metal in a mould cavity has been carried out. A code has been developed to include heat transfer and permeability of coating utilizing the finite difference method (FDM). To achieve this, solid and free boundary conditions have been modified and a new algorithm has been proposed to calculate the effect of coating permeability during mould filling. In this algorithm, the effect of coating permeability on the filling pattern has been modelled and compared with an experiment. The modelling of molten metal flow and the location of free surfaces has been simulated based on the SOLution Algorithm-Volume Of Fraction... 

    A new approach to reduce the dynamic order of induction generators

    , Article International Journal of Power and Energy Systems ; Volume 27, Issue 4 , 2007 , Pages 315-319 ; 10783466 (ISSN) Varahram, M. H ; Behzadi Rafi, S ; Sharif University of Technology
    Acta Press  2007
    Abstract
    Various attempts have been made to derive linearized, reduced order models of induction generators. Due to the fact that there is usually numerous number of these machines in wind power plants, these models provide great facilities in calculations, and therefore are used widely in power system transient stability studies. In this paper, some of these methods are discussed and compared and then a method known as "balanced realizations" is used to reduce the dynamic order of the machine. Computer simulation shows that the last method markedly improves the accuracy of the resulting reduced order model. The improvement is demonstrated by comparing the response characteristics predicted by each... 

    Mathematical and computational modeling of mold filling and heat transfer in metal casting

    , Article Iranian Journal of Science and Technology, Transaction B: Engineering ; Volume 29, Issue 5 , 2005 , Pages 511-530 ; 03601307 (ISSN) Babaei, R ; Esmaellian, H ; Varahram, N ; Davami, P ; Sharif University of Technology
    2005
    Abstract
    In the present study a finite difference method has been developed to model transient fluid flow and heat transfer in metal casting, A single fluid has been selected for modeling the mold filling and the SOLA VOF 3D technique was modified to increase the accuracy and speed of simulation of filling phenomena for shape castings. The model was then evaluated with the experimental methods. Referring to the experimental and simulation results, a good consistency and accuracy of the suggested model are observed. © Shiraz University  

    Development of fcc-Al nanoparticles during crystallization of amorphous Al–Ni alloys containing mischmetal: Microstructure and hardness evaluation [electronic resource]

    , Article Materials Science and Engineering A ; Volume 604, 16 May 2014, Pages 92-97 Mansouri, M. (Mehdi) ; Simchi, A ; Varahram, N ; Park, E. S ; Sharif University of Technology
    Abstract
    In the present work, fcc-Al nanoparticle development in Al90−xNi10MMx (MM: Ce mischmetal; x=2, 4) amorphous alloys was studied via non-isothermal differential scanning calorimetry, X-ray diffraction, transmission electron microscopy, and nanoindentation test. Results showed that the crystallization of Al88Ni10MM2 alloy occurred by the precipitation of fcc-Al nanoparticles followed by the crystallization of Al11MM3 and Al3Ni phases. Transmission electron microscopy revealed that the aluminum precipitates had an average size of ~12 nm with a round morphology. Increasing the mischmetal content to 4 at% (Al86Ni10MM4 alloy) caused a three-stage crystallization process with a change in the size... 

    Effect of heat treatment cycle on the mechanical properties of machinable austempered ductile iron

    , Article 24th ASM International Heat Treating Conference and Exposition, Detroit, MI, 17 September 2007 through 19 September 2007 ; 2007 , Pages 323-327 ; 9781604239300 (ISBN) TadayonSaidi, M ; Baghersaee, E. N ; Varahram, N ; Rao, M. H ; Rao, G. V. S. N ; Sharif University of Technology
    2007
    Abstract
    ADI have been used for a wide variety of applications in automotive, rail, and heavy engineering industry because of its excellent mechanical properties such as high strength with good ductility, good wear resistance, and good fatigue properties. The properties of austempered ductile iron are dependent on both chemistry and heat treatment, which has lead to invention of MADI (machinable austempered ductile iron). MADI is a new class of ductile iron with superior mechanical property than regular ductile iron with the same machinability characteristic. In this study Different cycle of austempering process (austenitization and austempering cycle) applied Due to the effect of heat treatment... 

    Effect of cooling rate on microstructure and mechanical properties of gray cast iron

    , Article Materials Science and Engineering A ; Volume 528, Issue 2 , 2010 , Pages 583-588 ; 09215093 (ISSN) Jabbari Behnam, M. M ; Davami, P ; Varahram, N ; Sharif University of Technology
    2010
    Abstract
    This paper presents the results obtained and the deductions made from a series of microstructural studies and mechanical tests involving gray cast iron which was sand cast using a variety of modules. The effect of cooling rate on the primary dendrite arm spacing (DAS), secondary dendrite arm spacing (SDAS), thickness of ferrite-cementite layer (λe) and the hardness (HB) were evaluated. Results show that the both DAS and SDAS and also λe are highly dependent on the cooling rate, and they decreases as the cooling rate increases. More attempts were also done to correlate the HB with DAS, SDAS and λe. It was found that HB increases as DAS, SDAS and λe decreases  

    The effect of Li on the tensile properties of cast Al-Mg2Si metal matrix composite

    , Article Materials Science and Engineering A ; Volume 490, Issue 1-2 , 2008 , Pages 250-257 ; 09215093 (ISSN) Hadian, R ; Emamy, M ; Varahram, N ; Nemati, N ; Sharif University of Technology
    2008
    Abstract
    The effects of both Li modification and cooling rate on the microstructure and tensile properties of an in situ prepared Al-15%Mg2Si composite were investigated. It was found that the addition of 0.3%Li reduces the average size of Mg2Si primary particles from ∼30 to ∼6 μm. The effect of cooling rate was investigated by the use of a mold with different section test bars. The results showed an increase in both UTS and elongation values with reduction in section thicknesses corresponding to increasing cooling rates. Adding Li also raised the tensile strength and elongation values and reduced the number of decohered particles observed in fracture surfaces thereby increasing the alloy's... 

    Improvement of grain structure and mechanical properties of a land based gas turbine blade directionally solidified with liquid metal cooling process

    , Article Materials Science and Technology ; Volume 24, Issue 1 , 2008 , Pages 100-106 ; 02670836 (ISSN) Kermanpur, A ; Mehrara, M ; Varahram, N ; Davami, P ; Sharif University of Technology
    2008
    Abstract
    The manufacturing process of a directionally solidified (DS) IN738LC turbine blade, produced with the liquid metal cooling (LMC) process was improved based on process modelling. The improvement involved varying the system dimensions in the baffle area and optimising the mould thickness, design and the withdrawal parameters. The grain structure of the DS blades produced exhibits a well defined <001> texture with a few stray grains near the blade top compared to the previous design. Some blades were given to a two stage heat treatment followed by tension tests at 25 and 650°C as well as creep tests at 152 MPa/982°C and 340 MPa/850°C. The yield and tensile strength of improved DS blades were... 

    Investigation on the effect of mold constraints and cooling rate on residual stress during the sand-casting process of 1086 steel by employing a thermomechanical model

    , Article Metallurgical and Materials Transactions B: Process Metallurgy and Materials Processing Science ; Vol. 45, issue. 3 , 2014 , pp. 1157-1169 ; ISSN: 1073-5615 Baghani, A ; Davami, P ; Varahram, N ; Shabani, M. O ; Sharif University of Technology
    2014
    Abstract
    In this study, the effects of mold constraints and cooling rate on residual stress were analyzed during the shaped casting process. For this purpose, an H-shaped sample was designed in which the contraction of its middle portion is highly restricted by the mold during the cooling process. The effects of an increasing cooling rate combined with mold constraints were analyzed by reducing the thickness of the middle portion in the second sample. A three-dimensional coupled temperature-displacement analysis was performed in finite-element code ABAQUS to simulate residual stress distribution, and then numerical results were verified by the hole-drilling strain-gauge method. It was concluded that... 

    RSFQ logic circuits, a novel technology in integrated circuits based on superconductivity

    , Article WSEAS Transactions on Circuits and Systems ; Volume 5, Issue 2 , 2006 , Pages 274-278 ; 11092734 (ISSN) Varahram, M. H ; Shakmohammadi, S ; Payandehjoo, K ; Kheirizad, I ; Sharif University of Technology
    2006
    Abstract
    With thc advent of Superconductivity, a new category of Integrated Circuits' Technology has been represented called RSFQ (Rapid Single Flux Quantum) Superconductor 'technology, RSFQ superconducting circuits use Josephson Junctions (JJ) as electronic switches. In RSFQ superconducting circuits information is represented as discrete voltage pulses equivalent to the magnetic flux quanta. In this paper, we first describe the Josephson effect and then explain the basic building blocks used in RSFQ circuits and performance of some asynchronous logic gates  

    Evaluation of Effective Parameter on the Cast Iron Part Defects Produced by EPC

    , M.Sc. Thesis Sharif University of Technology Jalalian, Reza (Author) ; Varahram, Naser (Supervisor)
    Abstract
    Process of casting with evaporative patterns and unbonded sand is a new method that due to different economic, environmental and technological benefits is considered to large and small industrial parts manufacturing in recent years. Different parameters are effective on the surface and metallurgical quality in this process, such as foam density, sand type and size, level and mode of vibration, sand compaction, coating and pouring time and temperature. If coating permeability that is function of type, thickness and concentration of coating is chosen improper, pyrolysis vapor of foam don’t exit completely and in this condition carbon of vapor deposit on the metal surface and produces defect... 

    Investigating the Possibility of Elimination of Nickel and Replacement of Copper and Silicon Instead of that in A336 Casting Alloy Used in Automotive Pistons

    , M.Sc. Thesis Sharif University of Technology Ghasemali, Mojtaba (Author) ; Varahram, Naser (Supervisor)
    Abstract
    In this research the effect of Si, Cu and Ni alloying elements on the structure and mechanical properties of the A336 alloy is investigated. Expriments were done in two situations, casting and heat treated and the results for all samples with different amount of alloying elements are compared and the effect of heat treating is also investigated. Results show that with increasing the amount of Si and Cu and decreasing the amount of Ni strength and hardness of the cast alloy are 134 MPa and 65 HB and they increase to 187 MPa and 89 HB in heat treated alloy. The elongation and coefficient of linear expansion are decreased from 2.3% and 21.94 μm/m.K to 1.1% and 21.62 μm/m.K. Also the T6 heat... 

    The Effect of Heat Treatment on Microstructure and Mechanical Properties of Directionally Solidified Nickel-based Superalloy GTD-111

    , M.Sc. Thesis Sharif University of Technology Fallah, Parastoo (Author) ; Varahram, Naser (Supervisor)
    Abstract
    The Ni-based superalloy GTD-111 possesses excellent hot corrosion resistance, high stability and strength at elevated temperature; accordingly, the alloy is used in manufacturing of the first stage blades of powerful gas turbines. In this study, effect of withdrawal rate from Bridgman furnace and precipitation hardening on the microstructure and microhardness of this superalloy were investigated. To this end, several experiments were carried out under growth rates of 1, 6 and 10 mm/min using Bridgman process under vacuum. Afterwards, the effects of homogenization treatment, partial dissolution with two different cooling rates (air and water) along with aging on the microstructure were... 

    The Effect of Cooling Rate and Heat Treatment on An Al-4.5% Cu Alloy

    , M.Sc. Thesis Sharif University of Technology Mohammadi, Hesam (Author) ; Varahram, Naser (Supervisor)
    Abstract
    Al-4.5% Cu alloy, an age-hardenable alloy, is an important alloy in industry due to such unique characteristics as high strength-to-weight ratio and considerable strength at elevated temperatures. In this study, the aim was to evaluate the combined effect of cooling rate and heat treatment on an A206 alloy having more impurities—especially iron—than the nominal specifications. To this end, the melt was poured in a five-step mold. Afterwards, each step was subjected to T4 and T6 treatments in order to study the changes compared to the as-cast samples. Ultimate tensile strength, yield strength, elongation, and grain size were determined by using tensile tests and optical microscopy,... 

    The Effect of Cobalt on Thermal Expansion and Metallurgical Properties of LM13 Alloy

    , M.Sc. Thesis Sharif University of Technology Ejlali, Saeed (Author) ; Varahram, Naser (Supervisor)
    Abstract
    LM13 Aluminum alloys contain Silicon, Copper, magnesium and Nickel. This alloys have been widely used in automobile pistons. For this application thermal expansion coefficient is one important characteristics other than mechanical properties. In this project replacing Cobalt with Nickel to improve alloy thermal and mechanical properties in piston applications by different cobalt contents. Cobalt contents is 0, 0.15, 0.55 and 0.77 Wt%. Because of oxidation magnesium content decrease into 0.98, 0.74, 0.61 and 0.48 Wt%. Thermal expansion coefficient and UTS first increase and after 0.55 Cobalt Wt% show decrease But yield strength and hardness increase as cobalt content increase. Microscopic... 

    Modelling of foam degradation in lost foam casting process

    , Article Materials and Design ; Volume 27, Issue 2 , 2006 , Pages 115-124 ; 02613069 (ISSN) Mirbagheri, S. M. H ; Serajzadeh, S ; Varahram, N ; Davami, P ; Sharif University of Technology
    Elsevier Ltd  2006
    Abstract
    In this study, a new model was developed to calculate gas pressure at the melt/foam interface due to foam degradation during mould filling in the lost foam casting process. Different aspects of the process, such as foam degradation, gas elimination, and permeability of the refractory coating, were incorporated into this model. A computational fluid dynamic code was developed based on the numerical technique of the solution algorithm-volume of fluid (SOLA-VOF) for the simulation and prediction of the melt flow. In order to verify the computational results of the simulation, a thin plate of grey iron at 1350 °C was poured into a transparent foam mould. The mould filling process was recorded... 

    Fatigue properties of machinable austempered ductile iron

    , Article 16th International Metallurgical and Materials Conference, METAL 2007, 22 May 2007 through 24 May 2007 ; 2007 Tadayon Saidi, M ; Baghersaee, N ; Varahram, N ; Hanumantha Rao, M ; Sharif University of Technology
    TANGER spol. s r.o  2007
    Abstract
    MADI is new engineering material with very desirable properties such as higher strength at the same hardness compared to regular ductile iron, significantly better fatigue performance than regular ductile iron or austempered ductile iron, better machinability than regular austempered ductile iron and similar to as cast ductile iron. In this study,fatigue properties of Machinable Austempering Ductile was investigated using rotary -bend fatigue testing device. Chemical composition of sample was selected on the base of previous work which results in good mechanical properties and low hardness after austempering process. The results of this study,indicates that for an austempered ductile iron... 

    Solidification of A356 Al alloy: Experimental study and modeling

    , Article Kovove Materialy ; Volume 49, Issue 4 , 2011 , Pages 253-258 ; 0023432X (ISSN) Shabani, M. O ; Mazahery, A ; Bahmani, A ; Davami, P ; Varahram, N ; Sharif University of Technology
    2011
    Abstract
    While it is well recognized that microstructure controls the physical and mechanical properties of a material, the complexity of the microstructure often makes it difficult to be simulated by analytical or numerical techniques. In this paper we present a suitable approach to compute microstructures within a casting using the finite element technique. This technique allows implementing microstructure data from experiments and equations that describe microstructure as function of local solidification parameters. The comparison of this model's predictions with the ones in the literature and also experimental measurements of secondary dendrite arm spacing, average length and diameter of silicon...