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Total 193 records

    Damage Detection of Lapjoints with Piezoelectric Wafer Active Sensor

    , M.Sc. Thesis Sharif University of Technology Yazdandoos, Fatemeh (Author) ; Abedian, Ali (Supervisor)
    Abstract
    Structural Health Monitoring (SHM) is a multidisciplinary emerging research field. SHM assesses the health state of the structure through processing and interpreting of signals and can predict remain life of the structure. Damage detection with Piezoelectric Wafer Active Sensors (PWAS) is one of the effective and emerging methods of SHM. One of the most critical parts of aerial structures is lap joints in which SHM could be very effective. In this research, damage detection of lap joints using lamb wave propagation has been studied. A 3D model of an aluminum lap joint presented. The PWAS are modeled separately and bonded to the host structure and coupled electromechanically with the... 

    Analysis of Brushless Doubly-Fed Motor under Various Operating Modes

    , M.Sc. Thesis Sharif University of Technology Gorgin, Hamed (Author) ; Oraee Mirzamani, Hashem (Supervisor)
    Abstract
    The Brushless Doubly-Fed Machine (BDFM) is a machine which incorporates the robustness of the squirrel cage induction machine and the speed and power factor control of a synchronous machine. All of these advantages are obtainable from a relatively low rating power electronic converter (e.g. 30% of the machine’s rating). The stator of a BDFM is furnished with two balanced three phase windings of conventional design (power and control winding). These windings differ in pole number and are often excited at different frequencies. Hence, there is no direct magnetic coupling between them. The power winding is connected to a constant-voltage, constant-frequency source and the control winding is... 

    Scrutiny of a Semi-rigid End-plate Splice Connection under Monotonic and Cyclic Loading

    , M.Sc. Thesis Sharif University of Technology Keikha, Hamed (Author) ; Mofid, Masood (Supervisor)
    Abstract
    Existing design methods for steel frames has been improved over the last three decades in order to incorporate the behavior of semi-rigid steel connections in furtherance of frame design and since the analysis and design of structures is often done based on the assumption of completely rigid or pinned behavior,therefore, the actual behavior of connections and their modeling can help to understand the actual behavior of structures.Knowledge of the initial rotational stiffness of the connection is important for elastic analysis of structures. Investigations show that structures with semi-rigid connections have many features which are the causes to prefer these kinds of connections to the... 

    Evaluating The Effects Of Anatomical Variations In An Equilibrium Finite Element Model Of Lumbar Employing The Monte Carlo Simulation

    , M.Sc. Thesis Sharif University of Technology Komeilizadeh, Koushiar (Author) ; Parnianpour, Mohamad (Supervisor) ; Asghari, Mohsen (Supervisor)
    Abstract
    Spinal Column is one of the most important parts of musculoskeletal system. Injuries in this region are so rampant and causing vast expense. Risk factors related to spine injuries included personal related ones such as, age, sex, muscles’ strength and career related ones such as body positions at work place and loads. Since in vivo measurements have many restrictions, developing biomechanical models that simulate the response of a person to given loads and conditions has important role in preventing injuries and improving working conditions. Inputs to current models of the spine are considered to have mean value, therefore muscles’ forces and other outputs of these models have single value... 

    “Static and Dynamic Analysis of Vibrating Ring Gyroscopes based on the Strain Gradient Theory”

    , Ph.D. Dissertation Sharif University of Technology Karimzadeh, Ali (Author) ; Ahmadian, Mohammad Taghi (Supervisor) ; Firoozbakhsh, Kikhosro (Supervisor) ; Rahaeifard, Massuod (Co-Advisor)
    Abstract
    Vibrating ring gyroscopes (VRG) as MEMS devices are employed to micro scale systems for determination of the rotation rate and rotation speed of them. It is experimentally approved that micro scale structures behaves differently in comparison to macro scale systems, Therefore higher order continuum theories are required for modeling and analysis of these systems. In addition to that there is no comprehensive investigation on the dynamic performance of ring gyroscopes in the literature, In view of this in the present research the static and dynamic analysis of vibrating ring gyroscopes based on the strain gradient theory and the proposed finite element model of the gyroscope is performed. The... 

    Modeling Moment-Rotation (M-@)Curve for Rectangular Hollow Section (RHS)Splice Beam Connection Subjected to Bending Moment and Axial Force

    , M.Sc. Thesis Sharif University of Technology Kazemi Sangdehi, Sahar (Author) ; Mofid, Masood (Supervisor)
    Abstract
    The study of bolted moment end-plate connections, both beam to column and beam to beam connections, is quite general and standard nowadays. Buildings which utilize such connections are widely being used and the reorganization of their significant benefits is growing. The research work reported in this thesis presents the results of several parametric analyses to determine the moment–rotation curve of bolted moment end-plate connections utilizing Rectangular Hollow Sections (RHS) and two rows of bolts using Finite Element Modeling (FEM). Previous experimental studies have focused on the moment-rotation relationship under pure bending. This project particularly involves further numerical... 

    Comparison of Approximate Methods for Analysis of Arch Dams with Finite Element Methods

    , M.Sc. Thesis Sharif University of Technology Pakzad, Alireza (Author) ; Ghaemian, Mohsen (Supervisor)
    Abstract
    Dams are huge structures in which safety is a very important issue because a failure will result in loss of lives and finance. Several approximate equations for the approximate analysis of arch dams already exist. These equations are usually obtained by considering the behavior of the dam as a shell. Approximate methods are much faster in comparison to the exact methods and give young design engineers who do not have the experience of designing inside view of displacements, stresses and strains. The aim of this project is to compare the results of approximate analysis of arch dams with the results of finite element models and clarify the points of dams in which approximate analysis methods... 

    Traumatic Brain Injury at Cellular Level by Using Multi-scale Modelling in Comparison with Clinical Data

    , M.Sc. Thesis Sharif University of Technology Hoursan, Hesam (Author) ; Farahmand, Farzam (Supervisor) ; Ahmadian, Mohammad Taghi (Supervisor)
    Abstract
    This study aims to provide a multiscale model of traumatic brain injury including the three levels of macro, meso, and microscale information. In order to do this, a macroscale voxel-baed model of human head was constructed. The model was designed and generated to include mesoscale tissue information as well as a voxel-based approach to include voxel-based microscale data and to be coupled in a multiscale framework. Next, three different microscale models were constructed. The variations of fractional anisotropy within one standard deviation in the regions (including 60% to 70% of voxels) can change the stiffness of the tissue by up to the considerable amount of 40%. The microscale models... 

    Effect of Lumbar Spine Lordosis on Intervertebral Joint Load Sharing Using Musculoskeletal and Finite Element Modeling

    , M.Sc. Thesis Sharif University of Technology Havashinezhadian, Sara (Author) ; Arjmand, Navid (Supervisor)
    Abstract
    There is a large, at times contradictory body of investigations relating low back pain and spinal curvature in sagittal plane. The previous studies have not been subject-specified, and they have not considered the active tissues in the models. The mechanical load has a significant impact on the prevalence of low back pain and the geometry of lumbar spine in the sagittal plane is one of the most important characteristics in determining the load sharing of the spine. Thus, it is essential to know how the geometry load affects the load sharing of the lumbar spine. As a matter of fact, the purpose of this project is to know how the geometry of the lumbar spine affects the load sharing. Thus,... 

    Analysis of Tall Outrigger Braced Structures on Flexible Foundations Using Finite Elements Modeling

    , M.Sc. Thesis Sharif University of Technology Nezhadi, Siamak (Author) ; Mofid, Masood (Supervisor)
    Abstract
    One of the most efficient methods in stiffening tall buildings to withstand lateral loads such as wind loading is to link the shear resisting core to the exterior columns using outrigger trusses. Many tall buildings such as Taipei 101 have benefited from outriggers. In this system, the outriggers force the perimeter frame to take part in resisting the bending moment of the lateral load acting on the structure by developing axial restraining forces in the windward and the leeward columns of the perimeter frame and forming a resisting moment.Most of the present analytical methods have studied the performance of outrigger braced structures neglecting shear deformation of the shear wall core and... 

    Mechanical Analysis of the Influence of Surgical Glues on the State of the Aorta after Cardiovascular Surgery

    , M.Sc. Thesis Sharif University of Technology Nejadsadeghi, Nima (Author) ;
    Abstract
    With the emergence of a variety of surgical glues in the market and utilizing them in recent years, nowadays, based on the post-surgery studies, it has become transparent that there are additional factors, such as the long-term effect of surgical glues on tissue, to consider beyond the sealants ability to act as a mechanical barrier or a means to buttress friable tissue so that it can hold sutures. Mechanical properties of the surgical glues have especially a significant role in the applications that the tissue undergoes cyclic loading (such as arteries’ tissues). A mismatch between the mechanical properties of the tissue and the sealant can result in the remodeling of the artery that may... 

    The Natural Aging Modeling of 2024 AL alloy after Multi-directional Forging

    , M.Sc. Thesis Sharif University of Technology Nouri, Sasan (Author) ; Kazeminezhad, Mohsen (Supervisor)
    Abstract
    Metallurgical phenomena modeling help the researchers to understand the influence and contribution of different factors on the alloys properties. One of the most interesting phenomenon is the aging process occuring in age-hardenable alloys like 2xxx aluminium series. A factor which has high impact on aging and there are not proper models for evaluating that, is the contribution of plastic deformation. This factor has contribution not only on the dynamic precipitation (during deformation) but also on the natural aging after plastic deformation. So in this research a model containing the role of plastic deformation on dynamic precipitation and the contribution of dynamic precipitation on total... 

    Finite Element Simulation of Nanoindentation and Nanoscratch Tests on Nanocoatings

    , M.Sc. Thesis Sharif University of Technology Nazemian, Mohsen (Author) ; Farrahi, Gholamhossein (Supervisor) ; Fallah Rajabzadeh, Famida (Co-Advisor)
    Abstract
    Coatings are used in order to prevent wear, corrosion, thermal gradient reduction, surface strength improving and many other applications in industries. One of the common applications of coatings, is to prevent wear and surface abrasion. Hardness and friction coefficients are two parameters that determine the wear properties of a coating. Determining these parameters in very thin films is only possible by nanoindentation and nanoscratch tests. Surface hardness, young modulus and fracture toughness can be obtained using nanoindentation and friction coefficient is calculated from nanoscratch.
    Finite element method is widely used for simulating the nanoindentation and nanoscratch... 

    Modeling of Different Geometries of Children's Heart Occluder's by Finite Element Method

    , M.Sc. Thesis Sharif University of Technology Mousavizadeh, Mohammad Hossein (Author) ; Arghavani, Jamal (Supervisor)
    Abstract
    Congenital heart defects are a type of heart diseases that some babies get at birth. These diseases generally have symptoms such as shortness of breath, headache, impaired blood supply, hyperplasia of the lungs, enlarged heart, and so on. In the past, open heart surgery was commonly used to treat such diseases, which was a costly and risky procedure. But over time, occluders made it easier. An occluder is referd to a device that is generally minimally invasive in the area of the fault and could block it. The occluders are usually braided type, with inside polyethylene fibers, where tissues can grow and clogs the defect over time. Although occluders have greatly increased the success rate of... 

    Optimization of Scan Algorithms in Selective Laser Sintering

    , M.Sc. Thesis Sharif University of Technology Manshoori Yeganeh, Ahmad (Author) ; Movahhedi, Mohammad Reza (Supervisor) ; Khodaygan, Saeed (Supervisor)
    Abstract
    One of the most important manufacturing methods using technologies AM, is the SLS method. This method because it would significantly reduce the construction time is the ability to build a variety of materials, is pervasive. The SLS devices input is part CAD file which is then part layered, a layer of powder is poured on the bed. Each layer is defined contour on the part and then scanned by laser inner layer is hatched by laser. Scanning algorithms and hatching in the SLS is an important part of building that has an impact on properties part and a lot of research has been done about it. synthetic scan algorithms presented in this study. The purpose of this algorithm is that part warpage and... 

    Damage Detection in an Offshore Jacket Platform Using Finite Element Model Updating Method

    , M.Sc. Thesis Sharif University of Technology Malek Zehtab, Hassan (Author) ; Golafshani, Ali Akbar (Supervisor)
    Abstract
    Offshore jacket platforms are one of the most motivating structures for damage detection due to their importance and productivity. In this study, the goal is to investigate the application of finite element model updating as a robust method for damage detection in this kind of structure. This method is based on minimizing a cost function which shows the difference between some features of the model and damaged real structure. Therefore, this method can be used for damage detection by comparison between updated model, which is updated by measured data from damaged structure, and the initial model which precisely shows the previous or undamaged status of the structure. The vibration features... 

    Studying the Behaviour and Performance of an Innovative Floating Offshore Platform

    , M.Sc. Thesis Sharif University of Technology Moradkhan, Esmaeil (Author) ; Khonsari, Vahid (Supervisor)
    Abstract
    The objective of this project is to study the behaviour and performance of an innotative floating offshore platform. Such Platform not only can be used for exploring oil from offshore fields, but for creating artificial islands, where land is in short supply. Due to its specific and, at the same time, simple geometry (symmetric), its fabrication does ont involve much complexity. Studies carried out on this platform include the investigation into its structural behaviour under gravitational (including self weight) and bouyancy forces. Studied cases include a number of platforms with different (geometrical) sizes and under 3 various bouyancy conditions (percentage), namely 1) 50% of the height... 

    Modeling and Structural Health Monitoring of 5 MW Wind Turbine Based on Moving Principal Component Analysis

    , M.Sc. Thesis Sharif University of Technology Majidi Pishkenari, Mohsen (Author) ; Abedian, Ali (Supervisor)
    Abstract
    Nowadays, the structural health monitoring is considered as an essential element in improving the performance of the structures. The role and importance of the issues in this area have been reached to the point that different ideas and policies are developed for the safety margin over the useful life of the structures. To analyze more accurately, a real model of a turbine blade is required. This issue would be taken into more consideration when the scale of the turbine gets larger. Changing of the design philosophies over time results in effective changes in the design process and maintenance procedures. Any single of these inspections has different importance according to users' demands. In... 

    Design and Modelling of a Piezoelectric Accelerometer and Fabricating a Single Axis Accelerometer Prototype

    , M.Sc. Thesis Sharif University of Technology Ghorbani, Mohamad (Author) ; Vossoughi Vahdat, Gholamreza (Supervisor) ; Movahhedy, Mohammad Reza (Supervisor)
    Abstract
    Nowadays, in many of industrial processes, it’s necessary to measure acceleration of a moving object. Among the different type of accelerometers, the piezoelectric type are most useful and the most widely used. These sensors come in various configurations.
    In the past, analytical and semi-empirical models have been used to design piezoelectric accelerometers. In these methods, based on some assumptions, the accelerometer nonlinear model is replaced with a linear model and the equivalent circuit model has been used to model accelerometer behavior. In these methods, the behavior of accelerometer become different from the expected one.
    Recently, with the invention of efficient computing... 

    Seismic Evaluation and Rehabilitation of Historic Buildings: A Case Study about Soltaniyeh Dome

    , M.Sc. Thesis Sharif University of Technology Ghaemi, Mohammad Kazem (Author) ; Bakhshi, Ali (Supervisor)
    Abstract
    Health monitoring of historic structures because of their cultural and economic importance is of great interest; also modeling and investigating the behavior of these structures is needed in rehabilitation procedures. Soltaniye Dome is one of the important masterpieces of Persian-Islamic historic architecture which is constructed during 14th century (1302-1312 AD). The Soltaniye building has an octagonal framework and a great dome. The dome has a diameter of 25 meters and total height of structure is about 54 meters.In this study, the macro modeling of Soltaniye building is performed using finite element software. In order to verify the modeled structure, ambient vibration tests are...