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    Failure Analysis in Conical Structures Made by Tape Winding Method under Cold and Hot Thermal Load

    , M.Sc. Thesis Sharif University of Technology Karimian, Mehdi (Author) ; Hosseini Kordkheili, Ali (Supervisor) ; Parviz, Hadi (Co-Supervisor)
    Abstract
    The aim of this study is numerical simulation of progerasive failure in conical structures that manufactured by tape-winding proceses in various temperatures. For this purpose, flat laminates by tape-winding proceses firstly manufactured using carbon/phenolic prepreg tape. Then tensile, compression, shear and thermal expansion coefficient specimens are cut from these laminates. Tensile and compression test are done on these specemens in fiber and matrix directions in temperature range 23-200℃ and stress-strain and stress-time curves are achavied. Using these curves tensile elastic modulus in fiber and matrix directions and Poisson's ratio are obtained in room temperature. Also tensile and... 

    Computerized Maintenance Management System for Cement Plants (CMMS)

    , M.Sc. Thesis Sharif University of Technology Marvasti, Ehsan; Pourhosseinali, Mohammad (Author) ; Aditya, Parida (Supervisor)
    Abstract
    This project is providing appropriate software which could manage maintenance activities in a plant. All sections of the software have been designed in a way that can ease the management of maintenance activities. There are about 100 forms in the software that have been designed according to the forms which are being used in some Iranian cement plants and other maintenance software and also what we recognized important to be added or designed. One of the most important aspect of this software is the analytical section of the software where the user can get analytical reports from the software and based on the reports judge about the status of the plant and make new decisions in order to... 

    Micromechanic Failure Analysis of Carbon/Phenolic Composite Conic Structures under Thermal Loading

    , M.Sc. Thesis Sharif University of Technology Hodaei Esfahani, Mohammad Ali (Author) ; Hosseini Kordkheili, Ali (Supervisor)
    Abstract
    In this study, through explaining a micromechanical model of progressive damage, failure in a composite conical structure under mechanical and thermal loads with 36 layers of carbon/phenolic material have been studied. To this end, first, mechanical behaviors of composite layers in micro and macro scale and their properties via fiber and matrix characterizations are discussed. In the following, selection of a proper RVE along with different types of boundary conditions on RVE are discussed. Then stress reinforcement coefficients in order to convert the mechanical and thermal stresses from macro to micro scale for carbon / phenolic material are extracted through defining appropriate RVE for... 

    Failure Analysis of Torsion bar and Improvement of Manufacturing Processes

    , M.Sc. Thesis Sharif University of Technology Norouznejadjelodar, Habibollah (Author) ; Farrahi, Gholamhossein (Supervisor)
    Abstract
    In order to improve the fatigue performance of torsion bar, induction surface hardening is performed. The aim of the present study is failure analysis of torsion bar and improvement of manufacturing process. Induction hardening was simulated using finite element method. As a result temperature history and residual stresses were obtained. Temperature and residual stress distributions are affected by the component geometry, the material behavior and the induction treatment parameters. Based on the residual stress distribution and the external fatigue loads, cracks can nucleate from the surface or below the hardened layer. Therefore, it is very important to determine the residual stress... 

    Optimum Mechanical Joint Design for a Composite Laminate to a Metal Part

    , M.Sc. Thesis Sharif University of Technology Nasrollahi Fekejvar, Majid (Author) ; Kouchakzadeh, Mohammad Ali (Supervisor)
    Abstract
    In this investigation, the behavior of pin loaded composite plates is studied numerically. A failure prediction model is used to predict the ultimate strength considering three different mechanisms of failure: bearing, shearout and net tension. The model consists of two major parts: stress analysis and failure analysis. The main difference between this investigation and others is considering more realistic assumptions in modeling of the problem. As an example, we consider nonlinear behavior in the shear stress/ shear strain relationship of each unidirectional ply and use this model in optimization problem to reach maximum strength. The results are compared with experimental results available... 

    Failure Tolerance of Epidemic Spreading in Complex Network

    , M.Sc. Thesis Sharif University of Technology Mirzasoleiman, Baharan (Author) ; Jalili, Mahdi (Supervisor)
    Abstract
    Complex networks serve as generic models for many social, technological and biological systems that have been shown to share a number of common structural properties such as power-law degree distribution and small-worldness. These networks determine interactions and influence the spread of diseases, behaviours and ideas. Epidemics and failures like new behaviours ideas and innovations can spread throughout a network and prevent it from doing its functionalities. In this work, we investigate error and attack tolerance of epidemic spreading in complex networks. The main content of this thesis is arranged in three sections as follows: Firstly, the effect of random and systematic failures is... 

    Analysis of Degradation for Laminated Notched Plate in Micromechanics by “Strain Energy Release Rate” Method and Illustrations the Results in Ansys

    , M.Sc. Thesis Sharif University of Technology Gholi Mesgarha, Payam (Author) ; Hosseini Kordkheili, Ali (Supervisor)
    Abstract
    By developing composites, difficulties of modeling of degradation of properties as stiffness is most considered. The recent advances in the modeling of degradations in stratified composites have led to improved models on all scales. Macro scales methods are good to estimate fracture but not to estimate the failure in micro scale (as microcrack) and moreover, they need many experimental data. Therefore by considering a stratified structure which contains fiber, matrix and intermediate area, mesoscale modeling method is most suitable. In this research Micromechanical Progressive Algorithm (MPA) is used. The method employed is Micromechanic Method of Fracture (MMF). In this work by developing a... 

    Application of Composite FRP Decks in Building Structures

    , M.Sc. Thesis Sharif University of Technology Sadr Ara, Ali (Author) ; Mofid, Masood (Supervisor)
    Abstract
    This study is devoted to the analysis and design of a recently proposed steel-FRP deck system. A methodology is being proposed to analysis the elastic behavior of the proposed deck. In this method the deck is modeled as an equivalent orthotropic plate which is constrained by rotational springs along its edges. An analytical model of the proposed deck is derived by using Rayleigh-Ritz method where the primary Rayleigh-Ritz shape functions are generated from orthonormal polynomials by using Gram-Schmidt procedure. The results of the proposed methodology show good agreement with finite element analysis results. In order to test the applicability of the proposed deck as buildings flooring... 

    Vulnerability Assessment of Existing RCMRF Structures Subjected to Near Field Earthquakes

    , M.Sc. Thesis Sharif University of Technology Seyedi Rezvani, Mohammad Hosein (Author) ; Rahimzadeh Rofooei, Fayyaz (Supervisor)
    Abstract
    The objective of this study is to evaluate the seismic vulnerability of the existing buildings subjected to the near field earthquakes. The main applications of this research are loss estimation and performance evaluation of the existing buildings. That could provide a better solution and particularly more useful information to the owners, investors, and insurers about the expected performance of buildings under earthquake excitations. A number of 2, 5 and 8 story reinforced concrete buildings, designed according to the old Iranian seismic provisions of ISIRI-519 and ACI 318-83 codes for the ordinary moment resisting frames, are considered. By the use of a number of near field earthquake... 

    Reliability Estimation in the Presence of Censored Data A Case Study in an Automotive Part Manufacturing System

    , M.Sc. Thesis Sharif University of Technology Seyed Esfahani, Zahra (Author) ; Eshraghniaye Jahromi, Abdolhamid (Supervisor)
    Abstract
    In this study a brief definition of the basic concepts of the reliability and censoring data is given as well as the literature review of the censored data and introduction to concept of robust. In order to find suitable distribution by considering censored data, the goodness of fit test, Chi-squared test, and Anderson-Darling approaches are used. Moreover to estimate Parameter of the reliability distribution, Maximum Likelihood estimation (MLE) is given. A case study in an automotive part manufacturing system is presented and the distributions of reliability parameters of several critical components (i.e. reliability, hazard rate, etc.) have been estimated. Considering all data, and... 

    A Micromechanical Progressive Damage Algorithm for Prediction of Failure in Composite Laminates

    , M.Sc. Thesis Sharif University of Technology Rajaeenezhad, Iman (Author) ; Hosseini Kordkheili, Ali (Supervisor)
    Abstract
    Macro models which are used to predict failure of composite structures in most cases predict ¬reasonable results; however, they are not able to consider micro level parameters such as micro cracks. Furthermore, these failure macro models need various empirical data. Considering micromechanical construction of composites; including fiber, matrix and their interfaces, using micromechanical models for predicting failures in these phases is more appropriate. The aim of this study is to represent a micro-mechanical algorithm in order to predict progressive failures of fiber-reinforced composites. The failure model which is used in this study is a micromechanical modeling of failure (MMF) model,... 

    Progressive Flexural Fatigue Failure Analysis of Composites Through Layer Failure Determination

    , Ph.D. Dissertation Sharif University of Technology Zabihpoor, Mahmood (Author) ; Adibnazari, Saeed (Supervisor)
    Abstract
    Non-uniform damage growth of the composites under flexural fatigue loading condition makes it difficult to predict the fatigue behavior. In this thesis, A new modeling procedure is developed to introduce a progressive damage model. By using this model, it will be possible to define layer failure through its damage growth and layers constituents’ properties. On the other hand, an efficient micromechanics model must be utilized to relate the external loading to the constituents’ properties. Indeed the micromechanics model must be capable of including both constituent's properties and also fiber/matrix interface efficiency. For representing a complete description of the constituents’ properties... 

    A Progressive Multiscale Model to Predict the Fatigue life of Laminated Composite Reinforced with Nanoparticles

    , Ph.D. Dissertation Sharif University of Technology Toozandehjani, Hossein (Author) ; Hoseini Kordkhili, Ali (Supervisor)
    Abstract
    The increasing growth of composite materials in various industries and the use of these materials in the production of the main structures, recognized study and simulation of accurate behavior of these materials at different scales. On the other hand, the appearance of Nano-scale materials with amazing physical and mechanical properties and the use of these nanoparticles as reinforcement in the structure of polymer composites, further highlights the importance of simulating the behavior of polymer nanoparticles at different scales. One of the issues that is considered in various industries, especially in the airspace industry, is the phenomenon of fatigue. The complexity of the fatigue... 

    Use of the Bayesian Approach in Failure Analysis and Life Prediction of Coil Springs of a Suspension System

    , M.Sc. Thesis Sharif University of Technology Baghandeh, Hesam (Author) ; Adib Nazari, Saeed (Supervisor) ; Karimzadeh, Ardavan (Supervisor)
    Abstract
    In this thesis, bayesian network has been used in analyzing the failure of a structural component. The design life of a structural component of a system can be limited or unlimited depending on the working conditions considered by the designers. However, usually during the operation of an industrial system or device, a structural component of it fails prematurely, in other words, its actual life is less than the design life. In this case, the failure must be analyzed to find the causes and factors. The method of work is such that first, according to the problem and the type of failure, the required analyzes and studies are considered. Then, a number of samples of the components, whose... 

    Improvment of Plant Availabilty Through Failure Prioritization Approach

    , M.Sc. Thesis Sharif University of Technology Arasteh khouy, Iman; Shafigh, Farhang (Author) ; Ghodrati, Behzad (Supervisor)
    Abstract
    In order to survive in the competitive market, companies should increase the availability of plants. In order to increase the availability of a system, the occurrence of failures should be decreased. It is not possible to eliminate all of failures simultaneously. It means, it is not cost effective and logical to concentrate on elimination of all failures. In Addition, the cause of some failures might not be eliminated. So, the occurrence of those failures should be postponed to the later time as much as possible. Therefore, the critical failure modes should be identified to be concentrated for further analysis. Ultimately; the root causes of these failures should be explored and if it is... 

    Failure analysis: Sulfide stress corrosion cracking and hydrogen-induced cracking of A216-WCC wellhead flow control valve body

    , Article Journal of Failure Analysis and Prevention ; Vol. 14, issue. 3 , 2014 , p. 376-383 Ziaei, S. M. R ; Kokabi A.H ; Mostowfi J ; Sharif University of Technology
    Abstract
    The wellhead flow control valve bodies which are the focal point of this failure case study were installed in some of the upstream facilities of Khangiran's sour gas wells. These valve bodies have been operating satisfactorily for 3 years in wet H2S environment before some pits and cracks were detected in all of them during the periodical technical inspections. One failed valve body was investigated by chemical and microstructural analytical techniques to find out the failure cause and provide preventive measures. The valve body alloy was A216-WCC cast carbon steel. During investigation many cracks were observed on the inner surface of the valve body grown from the surface pits. The results... 

    A multi-objective model for optimizing the redundancy allocation, component supplier selection, and reliable activities for multi-state systems

    , Article Reliability Engineering and System Safety ; Volume 222 , 2022 ; 09518320 (ISSN) Zaretalab, A ; Sharifi, M ; Pourkarim Guilani, P ; Taghipour, S ; Akhavan Niaki, S. T ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    This paper presents a multi-objective availability-redundancy allocation optimization model for a hyper-system. The hyper-system consists of B systems with shared resources. The structure of the systems is series-parallel subsystems consisting of multi-failure and multi-state components. The components may be purchased from different suppliers based on their price and discounts. It is assumed that technical and organizational activities continuously affect the components' failure rates and the subsystems' working conditions before starting the system's mission horizon. The model aims to find the optimal number and the type of the subsystems' components for all systems from each supplier and... 

    Reliability modeling of anomaly detection algorithms for wireless body area networks

    , Article 2017 25th Iranian Conference on Electrical Engineering, ICEE 2017, 2 May 2017 through 4 May 2017 ; 2017 , Pages 70-75 ; 9781509059638 (ISBN) Zare Dehabadi, M. S ; Jahed, M ; Sharif University of Technology
    Abstract
    Research on Wireless Body Area Networks (WBAN) has witnessed constant advances in small and low power integrated electronic circuits as well as wireless communication schemes for remote monitoring of patients. As such, high reliability anomaly detection has emerged as an important characteristic especially in detection of system faults and abnormal physiological measurements. This work studies the reliability of WBANs by utilizing a Markov-based chain model and considering hardware failure rate, patient health status, and accuracy of anomaly detection algorithms containing Detection Rate (DR), False Positive Rate (FPR), and accuracy of transient fault correction measures. The proposed... 

    Failure analysis of bolted joints in foam-core sandwich composites

    , Article Journal of Reinforced Plastics and Composites ; Volume 27, Issue 15 , 2008 , Pages 1635-1647 ; 07316844 (ISSN) Zabihpoor, M ; Moslemian, R ; Afshin, M ; Nazemi, M. H ; Sharif University of Technology
    2008
    Abstract
    This study represents an effort to predict the bearing strength, failure modes, and failure load of bolted joints in foam-core sandwich composites. The studied joints have been used in a light full composite airplane. By using solid laminates, a new design for the joint zone is developed. These solid laminates include a number of glass plies with total thickness equal to core thickness. The effect of solid laminate size and interface angle of foam-solid laminate in the bonding zone on the bearing strength, failure loads and type of modes are investigated. The numerical study is performed using 3D FEM in ANSYS commercial code. Tsai-Wu failure criterion is used in the failure analysis. The... 

    A scalable dependability scheme for routing fabric of SRAM-based reconfigurable devices

    , Article IEEE Transactions on Very Large Scale Integration (VLSI) Systems ; Volume 23, Issue 9 , August , 2015 , Pages 1868-1878 ; 10638210 (ISSN) Yazdanshenas, S ; Asadi, H ; Khaleghi, B ; Sharif University of Technology
    Institute of Electrical and Electronics Engineers Inc  2015
    Abstract
    With the continual scaling of feature size, system failure due to soft errors is getting more frequent in CMOS technology. Soft errors have particularly severe effects in static random-access memory (SRAM)-based reconfigurable devices (SRDs) since an error in SRD configuration bits can permanently change the functionality of the system. Since interconnect resources are the dominant contributor to the overall configuration memory upsets in SRD-based designs, the system failure rate can be significantly reduced by mitigating soft errors in routing fabric. This paper first presents a comprehensive analysis of SRD switch box susceptibility to short and open faults. Based on this analysis, we...