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Total 93 records

    Effect of thermomechanical parameters on texture of 90-10 brass sheets

    , Article 14th International Conference on Textures of Materials, ICOTOM 14, Leuven, 11 July 2005 through 15 July 2005 ; Volume 495-497, Issue PART 1 , 2005 , Pages 755-760 ; 02555476 (ISSN); 087849975X (ISBN); 9780878499755 (ISBN) Salari, M ; Akbarzadeh, A ; Saffari, M. M ; Sharif University of Technology
    Trans Tech Publications Ltd  2005
    Abstract
    Optimized conditions of hot and cold rolling followed by annealing can result in a balance between recrystallization and rolling textures in order to reduce the planar anisotropy of brass sheets. In this work, the effect of finish rolling temperature, cold reduction and annealing temperature on texture development has been investigated. It is shown that uniform deformation at higher finishing temperature is responsible of formation of a severe Cube and G texture components. In contrast, mechanical twinnings are widely formed at low finishing temperatures. There is also a direct relation between the intensity of Cube component and the amount of cold reduction  

    Numerical Investigation of the Thermo-mechanical Response of Single Energy Pile and a Group of Energy Piles

    , M.Sc. Thesis Sharif University of Technology Razmkhah, Tahereh (Author) ; Jafarzadeh, Fardin (Supervisor) ; Ghasemi Fare, Omid (Co-Advisor)
    Abstract
    Geothermal piles are being used to serve dual purposes: transfer the structural load to the ground and act as heat exchanger elements to harvest and reject heat from and to the ground. Thermal loading can change the mechanical performance and bearing capacity of the geothermal piles during heating and cooling cycles. Therefore the thermo-mechanical responses of the geothermal piles should be comprehensively studied. In this paper the thermo-mechanical performance of a geothermal pile was analyzed using a 3D finite difference model in FLAC. The energy pile tests performed at Lambeth College, London were simulated using the developed numerical model. Comparison of both thermal strain and... 

    Effect of microstructural inhomogeneities on texture evolution in 90-10 Brass sheets

    , Article Journal of Materials Processing Technology ; Volume 182, Issue 1-3 , 2007 , Pages 440-444 ; 09240136 (ISSN) Salari, M ; Akbarzadeh, A ; Sharif University of Technology
    2007
    Abstract
    The control of texture and microstructure can be achieved by an appropriate thermomechanical treatment in industrial production. The effects of finish rolling temperature, cold reduction and annealing temperature on texture development and microstructure in Brass sheet were investigated. The role of deformation inhomogeneities on texture evolution has been considered. The formation of transition bands during hot rolling enforced the intensity of cube components. Shear bands increased the intensities of S and Cu components after cold rolling and at higher cold reductions. Transition from Cu to Y and Y to Bs was completed better because of mechanical twinning. Thermal twins annihilated the... 

    Developement of Bimodal Grain Size Microstructure in a Stainless Steel using Thermal-Mechanical Treatment

    , M.Sc. Thesis Sharif University of Technology Hojati, Zahra Sadat (Author) ; Karimi Taheri, Ali (Supervisor)
    Abstract
    Thermomechanical processing during hot rolling and subsequent annealing of rolled sheets are one of the procedures for improving the tensile and formability properties of metals and alloys. In this regard temperature and reduction in area are the most important variables governing the behavior of 304 L austenitic stainless steel during the hot rolling process. The aim of this research was to investigate the effect of rolling temperature and subsequent annealing on 304L steel in order to achieve a microstructure with favorable mechanical properties and bimodal grain size. For this purpose, the rolling process at temperatures of -50, 25, 200, 400, 600, 800 and 900 °C using different thickness... 

    Experimental and thermomechanical analysis of friction stir welding of poly(methyl methacrylate) sheets

    , Article Science and Technology of Welding and Joining ; Volume 23, Issue 3 , 2018 , Pages 209-218 ; 13621718 (ISSN) Aghajani Derazkola, H ; Simchi, A ; Sharif University of Technology
    Taylor and Francis Ltd  2018
    Abstract
    In the present work, the feasibility of friction stir welding (FSW) of poly(methyl methacrylate) sheets was studied experimentally and theoretically by employing thermomechanical simulations. The effect of processing parameters including tool plunge depth, tilt angle, tool rotational speed (w), and transverse velocity (v) was investigated to determine suitable conditions to attain sound and defect-free joints. It is shown that a low tool plunge depth of 0.2 mm and a tilt angle of 2° provide suitable material flow to gain sound joints. By controlling the heat input into stir zone by increasing the tool rotational speed and decreasing linear velocity, the formation of defects can be minimised.... 

    On the effect of linear feedback and parametric pumping on a resonator's frequency stability

    , Article New Journal of Physics ; Volume 22, Issue 9 , September , 2020 Mohammadi, Z ; Heugel, T. L ; Miller, J. M. L ; Shin, D. D ; Kwon, H. K ; Kenny, T. W ; Chitra, R ; Zilberberg, O ; Villanueva, L. G ; Sharif University of Technology
    IOP Publishing Ltd  2020
    Abstract
    Resonant sensors based on micro- A nd nano-electro mechanical systems (M/NEMS) are ubiquitous in many sensing applications due to their outstanding performance capabilities, which are directly proportional to the quality factor (Q) of the devices. We address here a recurrent question in the field: Do dynamical techniques that modify the effective Q (namely parametric pumping and direct drive velocity feedback) affect the performance of said sensors? We develop analytical models of both cases, while remaining in the linear regime, and introduce noise in the system from two separate sources: Thermomechanical and amplifier (read-out) noise. We observe that parametric pumping enhances the... 

    Joining metals by combining mechanical stirring and thermomechanical treatment to form a globular weld structure

    , Article Solid State Phenomena ; Volume 116-117 , 2006 , Pages 397-401 ; 10120394 (ISSN) Shalchi Amirkhiz, B ; Aashuri, H ; Kokabi, A. H ; Abbasi Gharacheh, M ; Mola, J ; Sharif University of Technology
    Trans Tech Publications Ltd  2006
    Abstract
    A method for joining metals in the semisolid state is presented. A model alloy Sn-15%Pb was used to demonstrate the concept. By presented process, dendritic microstructure of the weld zone can be avoided. Moreover, near-weld zone of the cold worked substrates which is affected by heat would have a globular structure due to a thermomechanical treatment. The two substrates were heated up locally in the joint line to the semisolid temperature range. At this point a stirrer was introduced into the weld seam in order to mix the two sides into a single uniform joint. Localized mechanical properties of different zones were examined using Shear Punch Test (SPT), showing a good strength in the weld... 

    XFEM Analysis of Non-Linear Thermomechanical Problems

    , M.Sc. Thesis Sharif University of Technology Alipour, Kamran (Author) ; Kouchakzadeh, Mohammad Ali (Supervisor)
    Abstract
    In this thesis a nonlinear thermomechanical model based on Lagrangian-extended finite element method is proposed to simulate discontinuities under thermal and mechanical loads. At first, a geometrically nonlinear model is presented for large deformation problems and then the model is completed by considering thermomechanical aspects. In extended finite element method, different enrichment functions are stated and also using analytical methods, a new set of functions are introduced to enrich the temperature filed around biomaterial crack tips. For numerical simulations, an object oriented code is created in C++. The results of numerical simulations are verified by the use of ABAQUS  

    Joining metals by combining mechanical stirring and thermomechanical treatment to form a globular weld structure

    , Article 9th International Conference on Semi-Solid Processing of Alloys and Composites, S2P 2006, Busan, 11 September 2006 through 13 September 2006 ; Volume 116-117 , 2006 , Pages 397-401 ; 10120394 (ISSN); 3908451264 (ISBN); 9783908451266 (ISBN) Amirkhiz, B. S ; Aashuri, H ; Kokabi, A ; Gharacheh, M. A ; Mola, J ; Sharif University of Technology
    Trans Tech Publications Ltd  2006
    Abstract
    A method for joining metals in the semisolid state is presented. A model alloy Sn-15%Pb was used to demonstrate the concept. By presented process, dendritic microstructure of the weld zone can be avoided. Moreover, near-weld zone of the cold worked substrates which is affected by heat would have a globular structure due to a thermomechanical treatment. The two substrates were heated up locally in the joint line to the semisolid temperature range. At this point a stirrer was introduced into the weld seam in order to mix the two sides into a single uniform joint. Localized mechanical properties of different zones were examined using Shear Punch Test (SPT), showing a good strength in the weld... 

    Thermomechanical behaviours of strip and work-rolls in cold rolling process

    , Article Journal of Strain Analysis for Engineering Design ; Volume 46, Issue 8 , June , 2011 , Pages 794-804 ; 03093247 (ISSN) Koohbor, B ; Serajzadeh, S ; Sharif University of Technology
    2011
    Abstract
    A finite element analysis was developed to determine thermomechanical behaviours of strip and work-roll during cold rolling process under practical rolling conditions. The velocity field was first obtained using a rigid-plastic finite element formulation and then it was used to assess the strain and stress distributions within the strip and at the same time, a thermal finite element model based on streamline upwind Petrov-Galerkin scheme was employed to predict temperature distribution within the metal being rolled. In the next stage, the predicted temperature and stress fields at the contact region of strip/work-roll were employed as the boundary conditions to evaluate the thermomechanical... 

    A new method for fabrication of in situ Al/Al3Ti-Al2O3 nanocomposites based on thermal decomposition of nanostructured tialite

    , Article Journal of Alloys and Compounds ; Volume 643 , 2015 , Pages 64-73 ; 09258388 (ISSN) Azarniya, A ; Madaah Hosseini, H.R ; Sharif University of Technology
    Elsevier Ltd  2015
    Abstract
    In this research, the possibility that nanostructured aluminium titanate (tialite) powder can be used as a chemical source for producing Al2O3 and Al3Ti precipitates in aluminium matrix composites has been investigated. Optical microscopy, FE-SEM, XRD, DSC and TGA examinations were used to characterize the synthesized specimens. The results showed that a porous structure and inferior mechanical properties were obtained in as-sintered samples. The further thermomechanical treatments i.e. cyclic rolling and hot extrusion improved the mechanical properties and led to a dense microstructure with a homogeneous distribution of Al2O3 and... 

    Experimental and thermomechanical analysis of the effect of tool pin profile on the friction stir welding of poly(methyl methacrylate) sheets

    , Article Journal of Manufacturing Processes ; Volume 34 , 2018 , Pages 412-423 ; 15266125 (ISSN) Aghajani Derazkola, H ; Simchi, A ; Sharif University of Technology
    Elsevier Ltd  2018
    Abstract
    Effects of frustum, cubic and triangle tool pin profiles on the friction stir welding (FSW) of poly(methyl methacrylate) (PMMA) were studied by experimental analysis and thermomechanical simulations. It is shown that employing pins with a low contact surface area form macrocracks and voids along the joint line. Edged-type pins locally stir the polymer and cause tunnel defects which are formed at the root of the joint. In contrast, pins with relatively smooth and large surface area would yield a defect-free weldment if an appropriate processing condition is employed. Mechanical examinations in longitudinal (LS) and transverse (TS) directions indicate that the highest tensile strength (LS = 59... 

    Theoretical and experimental investigation into friction stir welding of AA 5086

    , Article International Journal of Advanced Manufacturing Technology ; Volume 52, Issue 5-8 , 2011 , Pages 531-544 ; 02683768 (ISSN) Aval, H. J ; Serajzadeh, S ; Kokabi, A.H ; Sharif University of Technology
    Abstract
    This research investigates the relationship between the microstructures of thermomechanically affected zone (TMAZ) and heat input in friction stir welding (FSW) of 5086 aluminum alloy. First, welding heat input has been predicted using a three-dimensional finite element analysis; then, welding experiments have been carried out on annealed and work-hardened conditions to study the developed microstructures and the mechanical properties of the welded metal. The results show that the temperature field in the FSW process is asymmetrically distributed with respect to the welding line. Also, both experimental and predicted data illustrates that peak temperatures are higher on the advancing side... 

    A Thermo-Mechanical Fatigue Life Prediction Model for Aluminum Alloy (A356.0) with Thermal Barrier Coating

    , Ph.D. Dissertation Sharif University of Technology Azadi, Mohammad (Author) ; Farrahi, Gholamhossein (Supervisor)
    Abstract
    Thermal barrier coating (TBC) systems have been widely used in gas turbines and diesel engines. Their advantages include reducing the fuel consumption, improving the performance and increasing the fatigue lifetime at high temperatures. In the present thesis, the fatigue behavior of an aluminum alloy (the A356.0 alloy), with and without a typical TBC system is studied. The application of this research can be introduced as coating the cylinder head in diesel engines. Initially, coating process parameters (including the feed rate and the nozzle distance) of the plasma spraying, with the objective of bending strength are optimized. The optimum value of the TBC thickness is obtained based on... 

    Modeling Stress-strain Behavior of Aluminum Alloy (A356.0) under Thermo-mechanical Loading

    , M.Sc. Thesis Sharif University of Technology Felfeli, Mehran (Author) ; Farrahi, Gholam Hossein (Supervisor)
    Abstract
    Aluminum alloy (A356.0) is used in the production of cylinder head. Automobile engines are often subjected to thermo-mechanical loadings. In order to investigate the material performance, it is crucial to obtain fatigue properties of the material under thermo-mechanical and isothermal fatigue tests. The specimen is subjected to tensile and compressive stresses in a constant temperature. But in thermo-mechanical tests, the temperature and the strain vary in a specific span (between maximum and minimum values). By using the strain- stress hysteresis loop (obtained by fatigue tests), we can determine fatigue properties. Then, these properties are used in the simulation. In this thesis,... 

    Numerical Simulation of Al-Si Alloy Fatigue Behavior under Thermo-Mechanical and Isothermal Loads

    , M.Sc. Thesis Sharif University of Technology Ghodrati Ghalati, Mohammad (Author) ; Farrahi, Gholamhossein (Supervisor) ; Asghari, Mohsen (Co-Advisor)
    Abstract
    The main purpose in this thesis is the finite element simulation of the stress-strain behavior in an aluminum-silicon-magnesium alloy, subjected to low cycle fatigue and thermo-mechanical fatigue loadings. This finite element modeling is performed in the ABAQUS software. Two time-dependent and time-independent models are used to simulate the behavior of the material. The time-independent model is the combined nonlinear isotropic/kinematic hardening model, which predicts the mean stress relaxation behavior, the cyclic softening or hardening and the translation of the yield surface, while it ignores the effect of the strain rate. Time-dependent models include Johnson-Cook and the two-layer... 

    Physical Modeling of a Heat Exchanger Pile under Thermo-mechanical Loading in Sand

    , M.Sc. Thesis Sharif University of Technology Hashemi Senejani, Hossein (Author) ; Jafarzadeh, Fardin (Supervisor)
    Abstract
    Heat exchanger piles are innovative technologies used to harvest heat from shallow ground. Heat exchanger pile, also known as energy pile, transfers mechanical (structural) loads to the ground while acting as a heat exchanger. Heat extraction in winter and heat rejection during summer changes the pile, pile-soil interaction and the surrounding soil temperature. Therefore, pile temperature increments have been recognized as a new factor of controlling the behavior of energy piles in recent decades. Besides, thermal cyclic loadings may affect the serviceability and geotechnical performance of heat exchanger piles. Physical models provide an affordable experimental medium through which new... 

    Development of consistent Thermomechanical ALE Formulation with Application to Simulation of Machining

    , Ph.D. Dissertation Sharif University of Technology Tadi Beni, Yaghob (Author) ; Movahhedy, Mohammd Reza (Supervisor) ; Farrahi, Hossein (Supervisor)
    Abstract
    Accurate description of kinematics of continuum mechanics is essential in simulation of large deformation problems in solid mechanics. From the numerical viewpoint, two main approaches have been used for such description; the Lagrangian approach and the Eulerian approach. However, each of these approaches suffer from shortcomings which hinders their application in large deformation problems. A more general approach called the Arbitrary Lagrangian-Eulerian method (ALE) provides an opportunity to exploit the advantages of both Lagrangian and Eulerian approach, while avoiding their shortcoming. In an ALE analysis, the FE mesh is neither attached to the material nor fixed in space, necessarily.... 

    CdS:Mn and CdS:O Nanoparticles Growth via Thermochemical and Microwave Methods and Studding the Photoluminescence Properties

    , M.Sc. Thesis Sharif University of Technology Amrollahi Biuki, Rezvaneh (Author) ; Taghavinia, Nima (Supervisor)
    Abstract
    The optimization of CdS photoluminescence nanoparticles which has been considered as one of the most important II-VI semiconductors has been studied here. As the first step, synthesis parameters effect on CdS:Mn photoluminescence intensity has been regarded by thermochemical method. Effect of parameters like pH solution, heating time and capping agent concentration on photoluminescence of these materials has been experimented. What seemed so important was reaching nanoparticles with suitable nano size and nano structure and having highly photoluminescence intensity. Observing the good effect of Oxygen on photoluminescence of CdS nanoparticles leaded us to concentrate on synthesizing CdS:O... 

    Study and Controlling Microstructure of Rapidly Solidified Multiprinciple Fe, Co and Ni Alloy

    , M.Sc. Thesis Sharif University of Technology Ghiasi Afjeh, Mohammad Bagher (Author) ; Tavakoli, Rouhollah (Supervisor) ; Aashuri, Hossein (Supervisor)
    Abstract
    Multi-principle alloys exhibit microstructure and different properties from most conventional alloys due to their high entropy, very slow diffusion and distorted crystal structure properties. Heat treatment, thermomechanical treatment, addition of alloying elements and control of solidification process are common methods of microstructure modification and property improvement. Among the solidification parameters, undercooling and cooling rate is one of the most suitable methods to obtain semi-stable and fine-grained phases. These parameters have been less studied in multi-principle alloys, while in the case of ferrous and cobalt alloys has been much studied. The main purpose of this type of...