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    The measurement of suction stress characteristic curve for a highly collapsible loessial soil

    , Article Geotechnical Special Publication, 17 March 2015 through 21 March 2015 ; Volume GSP 256 , 2015 , Pages 2482-2491 ; 08950563 (ISSN) ; 9780784479087 (ISBN) Haeri, S. M ; Khosravi, A ; Ghazizadeh, S ; Anderson, J. B ; Iskander, M ; Suleiman, M. T ; Laefer, D. F ; Sharif University of Technology
    American Society of Civil Engineers (ASCE)  2015
    Abstract
    This paper describes results of an advanced suction controlled triaxial test device on a loessial soil in an attempt to define the constitutive relationship between suction stress and matric suction (suction stress characteristic curve) for highly collapsible soils. Due to the presence of void spaces with different degrees of collapse potential within the soil matrix, the collapse phenomenon in loess is believed to be a continuous-stepwise reduction in volume rather than a sudden drop during wetting. Due to this unique volume change behavior, the definition of the suction stress characteristic curve for loess may require a soil-specific experimental testing approach capable of making precise... 

    Surface energy effects on the yield strength of nanoporous materials containing nanoscale cylindrical voids

    , Article Mechanics of Materials ; Volume 42, Issue 9 , September , 2010 , Pages 852-862 ; 01676636 (ISSN) Goudarzi, T ; Avazmohammadi, R ; Naghdabadi, R ; Sharif University of Technology
    2010
    Abstract
    Surfaces and interfaces behave differently from their bulk counterparts especially when the dimensions approach small scales. The recent studies have shown that the surface/interface free energy (surface stress) plays an important role in the effective mechanical properties of solids with nanosized inhomogeneities. In this work, within a micromechanical framework, the effect of surface stress is taken into account to obtain a macroscopic yield function for nanoporous materials containing cylindrical nanovoids. Gurtin-Murdoch model of surface elasticity is incorporated in the generalized self-consistent method to obtain a closed-form expression for the transverse shear modulus of transversely... 

    Architecturally modified Al-DRA composites: The effect of size and shape of the DRA rods on fracture behavior

    , Article Journal of Materials Science ; Volume 45, Issue 11 , June , 2010 , Pages 2852-2861 ; 00222461 (ISSN) Jamali, M ; Farokhzadeh, K ; Bagheri, R ; Seyed Reihani, S. M ; Sharif University of Technology
    2010
    Abstract
    Architectural modification of aluminum matrix composites is considered as an efficient method to improve fracture toughness. Al-DRA (Al-Al/SiC/20 p) composites were fabricated via "powder extrusion-casting- ingot extrusion" route with structures similar to that of reinforced concrete, so that DRA rods were surrounded by unreinforced aluminum. The effects of variation in shape, size, and number of DRA rods on fracture behavior of Al-DRA composites were investigated. Composites containing DRA rods with hexagonal cross-section exhibited higher resistance to crack initiation and growth, in comparison to those containing circular rods. In the case of hexagonal rods, increasing the number of rods... 

    Electroelastic fields in interacting piezoelectric inhomogeneities by the electromechanical equivalent inclusion method

    , Article Smart Materials and Structures ; Volume 19, Issue 3 , 2010 ; 09641726 (ISSN) Shodja, H. M ; Kargarnovin, M. H ; Hashemi, R ; Sharif University of Technology
    2010
    Abstract
    Consider two piezoelectric ellipsoidal inhomogeneities of arbitrary size, orientation and material constants, which in turn are surrounded by an infinite isotropic medium. The system under consideration is subjected to far-field non-uniform electromechanical loadings. Based on the extension of the electromechanical equivalent inclusion method (EMEIM), the present paper develops a unified solution for determination of the associated electroelastic fields in the vicinity of interacting inhomogeneities. Accordingly, each of the piezoelectric inhomogeneities is broken down into two equivalent inclusions with proper polynomial eigenstrains and eigenelectric fields. The robustness and efficacy of... 

    Validity of cauchy-born hypothesis in multi-scale modeling of plastic deformations

    , Article International Journal of Solids and Structures ; 2017 ; 00207683 (ISSN) Khoei, A. R ; Jahanshahi, M ; Toloui, G ; Sharif University of Technology
    Elsevier Ltd  2017
    Abstract
    The Cauchy-Born (CB) hypothesis has been widely used in multi-scale modeling of crystalline nano-structures. The violation of CB hypothesis in stress space and the transition to plasticity, which is equivalent to the violation of CB hypothesis in strain space, are generally confused and it becomes crucial to differentiate between the two distinct phenomena; the violation of the former usually occurs at high values of stress and at regions where the surface effects are manifest while the violation of the latter occurs at low stresses when the material loses its strength to tolerate the applied loading. In this paper, a novel technique is developed to investigate the validity of CB hypothesis... 

    Shot peening coverage effect on residual stress profile by FE random impact analysis

    , Article Surface Engineering ; Volume 32, Issue 11 , 2016 , Pages 861-870 ; 02670844 (ISSN) Ghasemi, A ; Hassani Gangaraj, S. M ; Mahmoudi, A. H ; Farrahi, G. H ; Guagliano, M ; Sharif University of Technology
    Taylor and Francis Ltd  2016
    Abstract
    Shot peening is one of the most effective surface treatments for improving the fatigue strength of machine elements. In this paper, a new finite element-based model to predict the effect of coverage on the surface state is proposed and critically discussed. By this model, the effects of Rayleigh damping, mesh size, and target dimensions on residual stress profile are investigated using a random impingement simulation of shot peening. Moreover, the model enables the realistic simulation of shot peening process with an affordable computational time with respect of present approaches without reducing the number of impacts and analysis accuracy: the computational time was reduced by 25% in... 

    A comprehensive experimental and numerical study on redistribution of residual stresses by shot peening

    , Article Materials and Design ; Volume 90 , 2016 , Pages 478-487 ; 02641275 (ISSN) Mahmoudi, A. H ; Ghasemi, A ; Farrahi, G. H ; Sherafatnia, K ; Sharif University of Technology
    Elsevier Ltd  2016
    Abstract
    Shot peening is one of the most effective surface strengthening treatment technologies in which compressive residual stresses are induced beneath the specimen surface. Effects of various factors on the distribution of residual stress profile induced by shot peening have been investigated by many researchers. However, initial residual stresses are one of the important factors which affect the shot peening residual stress.This study is aimed to present comprehensive numerical and experimental study on the effect of initial residual stresses on the shot peened specimen. Initial residual stresses were induced using a four-point bending rig and grinding. Incremental center hole drilling (ICHD)... 

    Stress analysis of multilayer thin walled pipes with circular cut-outs

    , Article World Congress on Engineering 2016, WCE 2016, 29 June 2016 through 1 July 2016 ; Volume 2224 , 2016 , Pages 1146-1150 ; 20780958 (ISSN); 9789881404800 (ISBN) Kamalarajah, R ; Bull, J.W ; Chizari, M ; Ao S.I ; Ao S.I ; Gelman L ; Ao S.I ; Gelman L ; Hukins D.W.L ; Hunter A ; Korsunsky A.M ; et al.; IAENG Society of Artificial Intelligence; IAENG Society of Bioinformatics; IAENG Society of Computer Science; IAENG Society of Data Mining; IAENG Society of Electrical Engineering ; Sharif University of Technology
    Newswood Limited  2016
    Abstract
    A finite element analysis of a double layered shell with a circular hole is carried out with the computer aided engineering software Abaqus (Dassault Systèmes, FR). The model proposed has been used to perform a stress analysis on three pipes with different sized hole. Moreover, thermal expansion has been implemented in the testing. For the purpose of the research, the elastic properties of the materials have been considered and the results compared with the ones previously published in literature. The outcome of the investigation will benefit towards the design of optimal and sustainable pipes with circular cut outs  

    Mechanical properties of graphene oxide: A molecular dynamics study

    , Article Fullerenes Nanotubes and Carbon Nanostructures ; Volume 24, Issue 9 , 2016 , Pages 594-603 ; 1536383X (ISSN) Khoei, A. R ; Sarkari Khorrami, M ; Sharif University of Technology
    Taylor and Francis Inc 
    Abstract
    In this paper, the mechanical properties of graphene oxide are obtained using the molecular dynamics analysis, including the ultimate stress, Young modulus, shear modulus and elastic constants, and the results are compared with those of pristine graphene. It is observed that the increase of oxide agents (–O) and (–OH) leads to the increase of C–C bond length at each hexagonal lattice and as a result, alter the mechanical properties of the graphene sheet. It is shown that the elasticity modulus and ultimate tensile strength of graphene oxides (–O) and (–OH) decrease significantly causing the failure behavior of graphene sheet changes from the brittle to ductile. The results of shear loading... 

    Stress analysis of internal carotid artery with low stenosis level: the effect of material model and plaque geometry

    , Article Journal of Mechanics in Medicine and Biology ; Volume 17, Issue 6 , 2017 ; 02195194 (ISSN) Shahidian, A ; Ghorbannia Hassankiadeh, A ; Sharif University of Technology
    Abstract
    Stress concentration in carotid stenosis has been proven to assist plaque morphology in disease diagnosis and vulnerability. This work focuses on numerical analysis of stress and strain distribution in the cross-section of internal carotid artery using a 2D structure-only method. The influence of four different idealized plaque geometries (circle, ellipse, oval and wedge) is investigated. Numerical simulations are implemented utilizing linear elastic model along with four hyperelastic constitutive laws named neo-Hookean, Ogden, Yeoh and Mooney-Rivlin. Each case is compared to the real geometry. Results show significant strength of oval and wedged geometries in predicting stress and strain... 

    Validity of cauchy–born hypothesis in multi-scale modeling of plastic deformations

    , Article International Journal of Solids and Structures ; Volume 115-116 , 2017 , Pages 224-247 ; 00207683 (ISSN) Khoei, A. R ; Jahanshahi, M ; Toloui, G ; Sharif University of Technology
    Elsevier Ltd  2017
    Abstract
    The Cauchy–Born (CB) hypothesis has been widely used in multi-scale modeling of crystalline nano-structures. The violation of CB hypothesis in stress space and the transition to plasticity, which is equivalent to the violation of CB hypothesis in strain space, are generally confused and it becomes crucial to differentiate between the two distinct phenomena; the violation of the former usually occurs at high values of stress and at regions where the surface effects are manifest while the violation of the latter occurs at low stresses when the material loses its strength to tolerate the applied loading. In this paper, a novel technique is developed to investigate the validity of CB hypothesis... 

    A transversely isotropic medium containing a penny-shaped crack subjected to a non-uniform axisymmetric loading via an anchored smooth rigid disk

    , Article Applied Mathematical Modelling ; Volume 45 , 2017 , Pages 491-504 ; 0307904X (ISSN) Ordookhani, A ; Kamali, M. T ; Shodja, H. M ; Sharif University of Technology
    Abstract
    A smooth rigid circular anchor disk encapsulated by a penny-shaped crack is embedded in and unbounded transversely isotropic medium. The lamellar rigid disk exerts a nonuniform axisymmetric loading to the upper face of the crack. With the aid of an appropriate stress function and Hankel transform, the governing equations are converted to a set of triple integral equations which in turn are reduced to a Fredholm integral equation of the second kind. For some transversely isotropic materials the normalized stiffness of the system falls well outside of the envelope pertinent to isotropic media. It is shown that mode I stress intensity factor is independent of the material properties and solely... 

    A refined finite element method for stress analysis of rotors and rotating disks with variable thickness

    , Article Acta Mechanica ; Volume 228, Issue 2 , 2017 , Pages 575-594 ; 00015970 (ISSN) Entezari, A ; Kouchakzadeh, M. A ; Carrera, E ; Filippi, M ; Sharif University of Technology
    Springer-Verlag Wien  2017
    Abstract
    In this paper, a refined finite element method (FEM) based on the Carrera unified formulation (CUF) is extended for stress analysis of rotors and rotating disks with variable thickness. The variational form of the 3D equilibrium equations is obtained using the principle of minimum potential energy and solved by this method. Employing the 1D CUF, a rotor is assumed to be a beam along its axis. In this case, the geometry of the rotor can be discretized into a finite number of 1D beam elements along its axis, while the Lagrange polynomial expansions may be employed to approximate the displacement field over the cross section of the beam. Therefore, the FEM matrices and vectors can be written in... 

    Hydroelastic criterion for an inclined flat plate in vertical and oblique impacts

    , Article Applied Ocean Research ; Volume 79 , 2018 , Pages 173-183 ; 01411187 (ISSN) Moradi, H ; Rahbar Ranji, A ; Haddadpour, H ; Sharif University of Technology
    Abstract
    A two-dimensional semi-analytical model is applied for the analysis of hydroelastic effect during vertical and oblique impacts of flexible inclined plates with different boundary conditions (BCs). Hydrodynamic pressure is calculated using Wagner's theory and the structural deformation is presented as a linear combination of dry normal modes. A longitudinal strip is used as an approximation of the longitudinal bending of a plate. Model predictions are validated by comparing with the available experimental data, semi-analytical model, and asymptotic approaches for vertical and oblique impacts of the plate with different BCs. The water impact is analyzed with two viewpoints of rigid and... 

    A new analytical shear-lag based model for prediction of the steady state creep deformations of some short fiber composites

    , Article Materials and Design ; Volume 30, Issue 4 , 2009 , Pages 1075-1084 ; 02641275 (ISSN) Mondali, M ; Abedian, A ; Ghavami, A ; Sharif University of Technology
    2009
    Abstract
    A new analytical model based on the shear-lag theory is developed for stress analysis and prediction of the steady state creep deformation of short fiber composites subjected to an applied axial load. A perfect fiber/matrix interface is assumed and the steady state creep behavior of the matrix is described by an exponential law. The results obtained from the proposed analytical solution satisfy the equilibrium and constitutive creep equations. These analytical results are then validated by the FEM modeling. Interestingly, good agreements are found between the analytical and numerical predictions for all the stress and displacement rate components. © 2008 Elsevier Ltd. All rights reserved  

    The determination of meshing force distribution for spur gears

    , Article 2008 ASME International Mechanical Engineering Congress and Exposition, IMECE 2008, Boston, MA, 31 October 2008 through 6 November 2008 ; Volume 11 , 2009 , Pages 451-458 ; 9780791848722 (ISBN) Durali, M ; Ghasabzadeh Saryazdi, M ; Sharif University of Technology
    2009
    Abstract
    This article presents a method for determination of meshing force distribution on contact region of spur gear teeth. In this method it is assumed that there are inter-connected springs on the teeth profile. These springs treat as capacitive fields. The compliance matrices of these fields are determined from the results of finite element analysis done on 3-D model of a gear. The tooth compliance matrix is used as a reference data to determine the tooth deformations for any meshing situation. The meshing force distribution is calculated using this reference data and Hertz theory for contacting bodies. The results of this analysis help in stress analysis under real operation conditions and more... 

    A lamellar inhomogeneity near a multiphase reinforcement

    , Article Acta Mechanica ; Volume 206, Issue 1-2 , 2009 , Pages 39-52 ; 00015970 (ISSN) Ojaghnezhad, F ; Shodja, H. M ; Sharif University of Technology
    2009
    Abstract
    In composites, the stress intensity factors (SIFs) of a lamellar inhomogeneity near a multiphase reinforcement are of interest. Based on extension of Eshelby's equivalent inclusion method, a unified approach is presented to study the effect of a multiphase inhomogeneity on the SIF at the tip points of two- and threedimensional lamellar inhomogeneities under nonuniform far-field loadings. Alteration of the SIF due to the presence of a coating layer around the inhomogeneity is addressed. Furthermore, the effect of geometry and stiffness of each phase of a multiphase reinforcement on the mixed mode SIFs of a lamellar inhomogeneity is investigated. In contrast to cracks whose SIFs are the same... 

    Stress intensity factors of multiple axisymmetric interface cracks in an isotropic layer with FGM coating under torsional loading

    , Article Multidiscipline Modeling in Materials and Structures ; Volume 15, Issue 6 , 2019 , Pages 1352-1365 ; 15736105 (ISSN) Tavakoli, A ; Pourseifi, M ; Rezaei, S ; Sharif University of Technology
    Emerald Group Publishing Ltd  2019
    Abstract
    Purpose: The purpose of this paper is to provide a theoretical analysis of the fracture behavior of multiple axisymmetric interface cracks between a homogeneous isotropic layer and its functionally graded material (FGM) coating under torsional loading. Design/methodology/approach: In this paper, the authors employ the distributed dislocation technique to the stress analysis, an FGM coating-substrate system under torsional loading with multiple axisymmetric cracks consist of annular and penny-shaped cracks. First, with the aid of the Hankel transform, the stress fields in the homogeneous layer and its FGM coating are obtained. The problem is then reduced to a set of singular integral equations... 

    Experimental study of sand production and permeability enhancement of unconsolidated rocks under different stress conditions

    , Article Journal of Petroleum Science and Engineering ; Volume 181 , 2019 ; 09204105 (ISSN) Zivar, D ; Shad, S ; Foroozesh, J ; Salmanpour, S ; Sharif University of Technology
    Elsevier B.V  2019
    Abstract
    Production of sand is a common issue in oil and gas fields causing various production problems. However, as a result of sand production, rock permeability can also be increased at near-wellbore areas, which is considered to be an advantage of solid particles production. Therefore, this study aims to investigate sand production behavior and permeability changes during sand production experimentally. To do so, a specific core flooding system capable of applying different radial and axial stresses has been designed which is equipped with a special fluid distributer at the outlet to prevent any sand particle blockage during fluid production. As part of this study, eleven unconsolidated synthetic... 

    Material growth and remodeling formulation based on the finite couple stress theory

    , Article International Journal of Non-Linear Mechanics ; Volume 121 , 2020 Javadi, M ; Asghari, M ; Sohrabpour, S ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    The mathematical formulation for material growth and remodeling processes in finite deformation is developed based on the couple stress theory. The generalized continuum mechanics of couple stress theory is capable of capturing small-scale cellular effects and of modeling mass flux in these processes. The frame-indifferent balance equations of mass, linear and angular momentums, as well as internal energy together with the entropy inequality are first introduced in the presence of the mass flux based on the finite couple-stress theory. Then, within the framework of material uniformity the Eshelby and Mandel stress tensors as driving or configurational forces for local rearrangement of the...