Loading...
Search for: metallizing
0.017 seconds
Total 1764 records

    Experimental Study and Optimization of Laser Assisted Machining of Particle­ Reinforced Aluminum­ Matrix Composite

    , M.Sc. Thesis Sharif University of Technology Mirshamsi, Mohammad Ali (Author) ; Movahhedy, Mohammad Reza (Supervisor) ; Khodaygan, Saeed (Co-Supervisor)
    Abstract
    In this thesis, the process of laser assisted machining (LAM) of metal matrix composites (MMC) is experimentally studied. The effects of process parameters (cutting speed, feed rate and depth of cut), laser parameters (laser power, laser frequency and laser beam angle), and the percentage of reinforcing particles on the tool wear and the surface roughness are investigated. Furthermore, the effects of these parameters on the built-up edge (BUE), chip shape, and workpiece temperature are explored.The experiments were performed using uncoated tungsten carbide and PCD tools under dry conditions. In order to analyze the sensitivity of the process parameters, the Plackett-Burman method was used... 

    Preparation and Characterization of Ternary Mixed Oxide Containing IrO2,RuO2,TiO2 on Platinum Coated Titanium Anode

    , M.Sc. Thesis Sharif University of Technology Ali Asghari, Sepideh (Author) ; Ghorbani, Mohammad (Supervisor) ; Davami, Parviz (Supervisor)
    Abstract
    Ruthenium based-oxide coatings on Titanium anodes are widely used as DSA (Dimensionally Stable Anode) for chlorine and chlorate production. Coatings consisting of composition of highly conductive oxide of noble metals (Ru, Ir and Pt) make them as long lasting anodes in chlor-alkali technology.In this work, a newly anode by a ternary coating of IrO2, RuO2, and TiO2 on the Pt-coated Ti was developed through thermal decomposition of iridium and titanium and ruthenium inorganic salts dissolved in n-pentane. The effect of deposition parameters such as current density, time, different condition of baking, heating, mole ratio and pulling up the samples was investigated to find out reasonable... 

    Design Low Power Carry Skip Adder with Gate Diffusion Input Technique

    , M.Sc. Thesis Sharif University of Technology Zahiri Pirshahid, Ario (Author) ; Hajsadeghi, Khosrow (Supervisor)
    Abstract
    The purpose of this thesis is designing and implementation of a Carry Skip Adder using CMOS traditional technology and Gate Diffusion Input technique (GDI). I present a carry skip adder (CSKA) structure that has a higher speed, lower energy consumption compared with the conventional one. The Gate Diffusion Input is a novel technique for low power digital circuit design. This technique reduces the power dissipation, propagation delay, area of digital circuits and it maintains low complexity of logic design  

    Design of CMOS DPS based on Non-Linear Current Source

    , M.Sc. Thesis Sharif University of Technology Shaker Shiran, Dariush (Author) ; Haj Sadeghi, Khosrow (Supervisor)
    Abstract
    Few years ago, when people were talking about image sensors, the minds were automatically focusing on the pictures and photos that were/are taken for recording the memories. Nowadays, however, image sensors have prominent and unbelievable role in different aspects of our life, which "image" is only representing part of this role. A wide variety of applications image sensors can be enumerated such as, Scientific, security, medical, machine vision, ITs, biometrics, automotive, etc. To evaluate the quality of an image sensor, there are different parameters, from the dynamic range, high resolution and suitable speed to low noise, low power consumption and other parameters. The art of companies... 

    Studying the Characteristics of 2D Materials for Electronic Circuits Devices Master Thesis

    , M.Sc. Thesis Sharif University of Technology Torabi, Naghmeh (Author) ; Fardmanesh, Mehdi (Supervisor)
    Abstract
    The need for further improving the operation of the electronic and optoelectronic devices to raise the speed of the circuits, and to decrease their power dissipation, has led many researchers to investigate the structure of 2D material, such as graphene, transition metal dichalcogenides (TMDs) as MoS2, and other 2D compounds such as BN, due to their prominent electronic properties. TMDs have the highest significant potential for the next generation transistors due to their salient semiconductor characteristics such as electron mobility, band gap, and conductivity. For instance, Graphene is a favorable candidate for analog devices due to zero bandgap. Regarding the importance of bandgap in... 

    Analysis of Digital DSP Blocks Using GDI Technology

    , M.Sc. Thesis Sharif University of Technology Faed, Mahdi (Author) ; Mortazavi, Mohammad (Supervisor)
    Abstract
    In line with developments in the technology of integrated circuits, transistors are implemented in silicon. Although the price is reduced; design is more complicated, which causes the efficiency and power consumption to face some difficulties in such design. The reason why modern GDI-based circuit is the focus of attention is that in designing a digital circuit, less power is required while more efficiency is obtained. Lowering the complexity of the logic circuit can bring about reduction of power consumption and propagation delay and decrease the circuit space. GDI-based integrated circuits resemble MOSFET transistors but have fewer transistors and higher performance capability. This study... 

    Evaluation of the Cyclic Performance of Buckling Restrained Braces with Sliding Friction Connection

    , M.Sc. Thesis Sharif University of Technology Yazdani Kachoie, Pedram (Author) ; Mofid, Masood (Supervisor)
    Abstract
    In today’s world, the use of lateral load-bearing systems, such as bracings, has become a pretty common practice. Often showing axial deformation behavior, these members exhibit proper performance under tensile loads but tend to become unstable under compressive loads. In contrast to common bracing systems, the buckling-restrained bracing (BRB) systems perform well under not only tensile loads but also compressive loads. Recent studies have paid greater deals of attention to the application of short-core BRB systems in different structures. The bracing core has been shortened to increase the core deformation and hence the energy dissipation capacity of the bracing system. In this condition,... 

    Boltzmann Method for Investigating the Non-Linear Mechanical Behavior of Coarse- Grained Crystals with FCC Network, Exploiting the Effect of Dislocation

    , M.Sc. Thesis Sharif University of Technology Sabetfard, Sajad (Author) ; Khoei, Amir Reza (Supervisor) ; Jahanshahi, Mohsen (Supervisor)
    Abstract
    In these days world, the increasing growth of Nanotechnology has caused to invent and create new numerical and also computational methods which have more abilities and capabilities for evaluating systems in this scale. Although Some techniques, such as Molecular Dynamics Methods are capable of evaluating nanostructures, lack the ability to simulate large systems of practical size and time scales which is the most important index during the simulation. Therefore, in order to be able to produce an acceptable exact simulation of a large model, simulation of which is limited by the computational cost of the current molecular dynamics methods at hand, Coarse-Graining technique has recently become... 

    The Size Effect of Coarse-Grained Modeling for Nonlinear Behavior of Nano-Structure Materials

    , M.Sc. Thesis Sharif University of Technology Khademabbasi, Navid (Author) ; Khoei, Amir Reza (Supervisor) ; Jahanshahi, Mohsen (Supervisor)
    Abstract
    The development of Nanotechnology increasingly has elevated the urgency for the expansion of modern numerical and computational methods that have evaluating systems with capability at this scale. In spite of being fully capable of evaluating nanostructures, the existing techniques, such as Molecular Dynamics Methods, lack the ability to simulate large systems of practical size and time scales. Thus, being able to create a large model of realistic simulation, which is confined by the computational expense of the running Molecular Dynamics methods at hand, Coarse-Graining technique has recently become a very effective and beneficial method which refers to the development of simplified models of... 

    Multiscale Investigation of Plastic Behavior in Crystalline Metals

    , M.Sc. Thesis Sharif University of Technology Davoodi, Sina (Author) ; Khoei, Amir Reza (Supervisor) ; Jahanshahi, Mohsen (Co-Advisor)
    Abstract
    In this study, a modern multiscale sequential molecular dynamics (MD) – finite element (FE) coupling method is proposed to represent the role of grain boundary (GB) planar defect on mechanical properties of crystalline structures at various temperatures. Different Grain Boundary misorientation angle is considered and the temperature varies from 0 up to 800 K. The embedded-atom method (EAM) many-body interatomic potential is implemented to consider pairwise interactions between atoms in the crystalline structures with face-centered-cubic (FCC) lattice structure at different temperatures. In addition, the Nose-Hoover thermostat is employed to adjust the fluctuation of temperature. The atomic... 

    Parametric Study of Telescopic Metallic Yielding Dampers

    , M.Sc. Thesis Sharif University of Technology Misaghi, Mohammad (Author) ; Eskandari, Morteza (Supervisor)
    Abstract
    The parametric study of a new introduced metallic yielding damper called telescopic damper is addressed. The telescopic damper comprises of three concentric steel pipes connected together by lead shear keys. The inner and outer steel pipes are subjected to axial loading which results in the shear yielding of the embedded lead cylinders. The inner steel pipe has a lock which limits its movement to some certain extent and beyond this limit the outer tube activates. Employing ABAQUS software, the behavior of damper under cyclic loading is studied numerically. The finite element model is verified by available results in the literature. The effects of inner and outer steel pipes thickness,... 

    Numerical Simulation of a Telescopic Metallic Yielding Damper

    , M.Sc. Thesis Sharif University of Technology Davoodi, Vahid (Author) ; Eskandari, Morteza (Supervisor)
    Abstract
    In this study, a new type of metallic yielding damper called Telescopic damper is proposed and analyzed numerically. The damper comprises of three concentric steel tubes connected together by lead shear keys. The relative axial deformation of steel tubes under axial forces results in shear deformation and yielding in lead shear keys and dissipates energy. The inner steel tube has a lock which limits its movement to some certain extent and beyond this limit the outer tube activates. Therefore, a multi-linear force-deformation behavior with two different yield plateaus is expected for the introduced telescopic damper. The multi-level yield plateaus of damper makes it effective in both low and... 

    Feasibility Study of Services of Metal 3D Printer in Iran's Industry

    , M.Sc. Thesis Sharif University of Technology Esmaeili, Ali (Author) ; Mostafavi, Mostafa (Supervisor)
    Abstract
    One of the best ways to overcome the weaknesses of technology services in different industries is right technology transfer with feasibility in the country. 3D painters have been recently widely used industrially in different countries. The 3D printer is one of the new emerging technologies, enabling the production of every 3D objects with any complexity. 3D printing has provided the possibility of producing, in fastest, more economics and regardless of those complexities. By transfer of this kind of technology and proper management, a huge transformation can created in all industries and factories. To do this, there are several technologies of 3D printing, that each of them used in various... 

    Preparation, Surface Modification and Application of Nanocomposite Membranes Based on Transition Metals- Dichalcogenide Nanoparticles in Forward Osmosis Desalination Process

    , Ph.D. Dissertation Sharif University of Technology Nikkhoo, Mohammad (Author) ; Bagherzadeh, Mojtaba (Supervisor) ; Ahadian, Mohammad Mahdi (Supervisor) ; Amini, Mojtaba (Supervisor)
    Abstract
    Different parts of this research are focused on developing FO membranes and improving their performance. For this purpose, thin film composite (TFC) membranes with fixed composition of polyethersulfone/polyamide (PES/PA) have been used to investigate the effect of nanocomposites containing transition metal dichalcogenides (TMDs) on their performance. The support layer in all cases is PES, which is prepared through the phase inversion process and does not contain any nanofillers. The modification process takes place in the polyamide layer by dispersing the desired nanoparticles in the aqueous monomer solution necessary to form this active layer. Identification and characterization of... 

    Fabrication of Triboelectric Nanogenerators based on Two-Dimensional Materials

    , M.Sc. Thesis Sharif University of Technology Ejehi, Faezeh (Author) ; Mohammadpour, Raheleh (Supervisor) ; Akhavan, Omid (Supervisor) ; Sasanpour, Pezhman (Supervisor) ; Shokrgozar, Mohammad Ali (Co-Supervisor)
    Abstract
    Triboelectric nanogenerator (TENG) works based on the accumulation of electrostatic charges produced on the surface of two dissimilar materials while they are brought into physical contact. When the surfaces are separated by a mechanical force, the induced triboelectric charges generate a potential drop, which can lead to generate an electrical current. Since their invention in 2012, TENGs have shown a rapid development in diversity of structure, amount of output power and range of applications, such as self-powered sensors, touch pads, and smart skin. Various kinds of mechanical force can be used for producing electrical energy: human motion, walking, vibration, rotating tire, wind, flowing... 

    Fabrication and Characterization of Transparent and Flexible Conductive Layers Based on Copper Nanofibers

    , Ph.D. Dissertation Sharif University of Technology Nikzad Alhosseini, Mohammad Javad (Author) ; Sadrnezhad, Khatiboleslam (Supervisor) ; Mahdavi, Mohammad (Supervisor)
    Abstract
    The Transparent electrode (transparent conductive layer) is an essential component of electro-optical devices, especially screens, solar cells and touch screens. Today, most semiconductor oxides such as ITO are used for this purpose, which have problems such as inflexibility, high cost, environmental degradation and ion penetration in organic displays. In this research, the design, simulation and fabrication of a transparent electrode with a network of metal nanowires with low resistance between cross fibers and high aspect ratio during the production stages of polymer mold, metal coating and characterization has been done. Using the reducing atmosphere in the sputtering chamber, the... 

    Fabrication of Hybrid Supercapacitors Based on Graphene-Conducting Polymers and Some Metallic Oxides and Sulfides and Investigation of Their Electrochemical Behavior

    , Ph.D. Dissertation Sharif University of Technology Asen, Parvin (Author) ; Shahrokhian, Saeed (Supervisor) ; IrajiZad, Azam (Co-Supervisor)
    Abstract
    In this research, metal oxides and hydroxides with carbon materials and conductive polymers (CPs), as well as transition metal oxysulfide nanostructures (TMOS), hybrid of Tin oxide and sulfie and polyphasphate-reduced graphene oxide (PPO-RGO) have been used as an active electrode materials for supercapacitors. In the first section of thesis, Tiron and graphene oxide (GO) were used as an anionic dopants to increase the capacity and stability of polypyrrole (PPy). In order to increase the capacity of Tiron/PPy/GO nanocomposite, vanadium oxide (V2O5) was used. The Tiron/PPy/GO/V2O5 nanocomposite was deposited on a stainless steel (SS) as a substrate via one-step electrochemical deposition... 

    Synthesis of Hybrid Graphene Nanostructures and Their Application in Design and Fabrication of Electrochemical Sensors for Pharmaceutical and Biological Applications

    , Ph.D. Dissertation Sharif University of Technology Asadian, Elham (Author) ; Shahrokhian, Saeed (Supervisor) ; Iraji Zad, Azam (Supervisor) ; Mohajerzadeh, Shamsoddin ($item.subfieldsMap.e)
    Abstract
    Recent years have witnessed an increasing interest in graphene and graphene-based materials due to their extraordinary electrical properties, large specific surface area, fascinating mechanical properties, good chemical stability and remarkable electrochemical activity. The combination of these properties make graphene an attractive candidate for a wide range of applications including energy conversion and storage devices (batteries and supercapacitors), electronic devices (transistors and memory devices) and solar cells. On the other hand, graphene has a potential application in constructing different kind of sensors such as biosensors and electrochemical sensors due to its planar... 

    Ionic Polymer-Metal Nanocomposite; Multiscale Simulation, Fabrication and Mechanical Characterization

    , Ph.D. Dissertation Sharif University of Technology Ozmaian, Masoumeh (Author) ; Naghdabadi, Reza (Supervisor) ; Irajizad, Azam (Supervisor) ; Ejtehadi, Mohammad Reza (Co-Advisor)
    Abstract
    Ionic polymer metal nanocomposites (IPMNCs) are among the advance materials which have been widely used recently as smart materials. These nanocomposites, which are made of polymeric layers (Nafion) plated by metallic or non-metallic conductive electrodes, show large deformations under low applied voltages. The advance materials like these nanocomposites have resolved the problems of the conventional actuators and helped in producing accurate systems.
    Several methods have been used to predict the behavior of IPMNCs which any of them consider some simplifying assumptions. In these materials physical phenomena happen at the molecular scale and deformations observed at the large scale.... 

    Fabrication of Plasmonic Structures and Investigation of the Effect of Surface Plasmon Resonance on Dye Sensitized Solar Cell

    , Ph.D. Dissertation Sharif University of Technology Sharifi, Nafiseh (Author) ; Irajizad, Azam (Supervisor)
    Abstract
    Dye-sensitized solar cells (DSCs) are third generation of solar cells, which composed of a porous layer of wide band gap semiconductor such as TiO2, covered with a molecular dye that absorbs sunlight, and a counter electrode contacted by a liquid redox electrolyte. Photovoltaic performance is the collective measure of light harvesting, charge separation and charge collection efficiencies. Light harvesting has a significant role in improvement of photovoltaic performance. Molecular engineering of dyes to improve absorption spectrum or to have a broad absorption spectrum,andlight scattering layes are approaches for this porpuse. This research is focused on photon management in DSCs using...