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    Optimum groove pressing die design to achieve desirable severely plastic deformed sheets

    , Article Materials and Design ; Volume 31, Issue 1 , 2010 , Pages 94-103 ; 02641275 (ISSN) Kazeminezhad, M ; Hosseini, E ; Sharif University of Technology
    2010
    Abstract
    In this paper, considering the problems of common finite element (FE) codes that consider simple constitutive equations, a developed FE code that considers a new constitutive model is used to simulate the behavior of copper sheets under severe plastic deformation (SPD). The new proposed constitutive model, that considers dislocation densities in cell interiors and cell walls of material as true internal state variables, can investigate all stages of flow stress evolution of material during large plastic deformations and also can explain the effects of strain rate magnitude on the mechanical response of material, during room temperature SPD. The proposed FE analysis is used to investigate the... 

    Micromechanics and constitutive modeling of connective soft tissues

    , Article Journal of the Mechanical Behavior of Biomedical Materials ; Volume 60 , 2016 , Pages 157-176 ; 17516161 (ISSN) Fallah, A ; Ahmadian, M. T ; Firozbakhsh, K ; Aghdam, M. M ; Sharif University of Technology
    Elsevier Ltd 
    Abstract
    In this paper, a micromechanical model for connective soft tissues based on the available histological evidences is developed. The proposed model constituents i.e. collagen fibers and ground matrix are considered as hyperelastic materials. The matrix material is assumed to be isotropic Neo-Hookean while the collagen fibers are considered to be transversely isotropic hyperelastic. In order to take into account the effects of tissue structure in lower scales on the macroscopic behavior of tissue, a strain energy density function (SEDF) is developed for collagen fibers based on tissue hierarchical structure. Macroscopic response and properties of tissue are obtained using the numerical... 

    Kinematic and Constitutive Modeling of Elastic and Thermoelastic Continua with Finite Deformation using Multiplicative Decomposition of Deformation Gradient

    , Ph.D. Dissertation Sharif University of Technology Darijani, Hossein (Author) ; Naghdabadi, Reza (Supervisor) ; Kargarnovin, Mohammad Hassan (Supervisor)
    Abstract
    In this thesis, a deformation measure is introduced which leads to a class of strain measures in the Lagrangian and Eulerian descriptions. In order to develop a constitutive equation, a second-order constitutive relation based on these strain measures is considered for modeling the mechanical behavior of solids at finite deformation. For this purpose and performance evaluation of the proposed strains, a Hookean-type constitutive equation is considered and the uniaxial loading as well as simple shear and pure shear tests are examined and the results are compared with the test data. Also, in order to characterize the mechanical behavior of elastic continua, constitutive equations through a... 

    Constitutive Modeling of Brittle Materials (Polymer Concrete and Rock) under Triaxial Compression Loading

    , M.Sc. Thesis Sharif University of Technology Jafarian Abyaneh, Mostafa (Author) ; Toufigh, Vahab (Supervisor)
    Abstract
    Understanding mechanical behavior of engineering materials plays an important role in prediction of material response and helps to analysis and design of engineering structures. In this thesis, behavior of polymer concrete (PC) with three different epoxy resin ratios, ordinary cement concrete (OCC), lightweight concrete (LWC), lime mortar soil (LMS), four various types of sandstone and granite was investigated under uniaxial and triaxial compression. In order to predict the mechanical behavior of aforementioned brittle materials, their behavior was simulated in terms of axial stress and volumetric strain versus axial strain. For computation of volumetric deformation and softening behavior,... 

    Assessing the Hydro-mechanical Behavior of Undisturbed Collapsible Soils by Conducting Unsaturated Odeometer Tests Case Study: Gorgan Loess

    , M.Sc. Thesis Sharif University of Technology Beigi, Majid (Author) ; Haeri, Mohsen (Supervisor)
    Abstract
    The deposits in many regions in Iran, particularly eastern zones like Golestan, Semnan, Khorasan, Yazd, Kerman, Hormozgan, Sistan and Baluchestan provinces consist of Aeolian deposits of loess, which are categorized as collapsible soils. This kind of soil show sufficient shear strength and low deformability in dry or natural condition. However, if a structure is built on the soil and water seeps or infiltrates into the soil due to several reasons such as sewer leakage, water seepage or heavy precipitations in a way that its moisture reaches to a critical value, the interparticle bonds may break or the present suction in the soil may decrease in a way that the soil experiences sudden... 

    Modeling of the Mechanical Behavior of Shape Memory Alloys under Cyclic Loading Considering Detwinning-induced Plasticity and Transformation-induced Plasticity

    , Ph.D. Dissertation Sharif University of Technology Ebrahimi Estahbanati, Parvin (Author) ; Naghdabadi, Reza (Supervisor) ; Sohrabpour, Saeid (Supervisor) ; Arghavani Hadi, Jamal (Co-Supervisor) ; McGarry, Patrick (Co-Supervisor)
    Abstract
    The main goal of the current study is to incorporate the effect of microstructural deformation mechanisms, such as detwinning-induced plasticity, into constitutive and computational modeling of NiTi shape memory alloys. Therefore, based on thermodynamic considerations a new inelastic mechanism, detwinning-induced plasticity (DIP), is proposed for modelling the response of NiTi SMAs to cyclic loading. DIP is incorporated into a constitutive framework that also includes other well-established inelastic mechanisms of phase transformation, transformation-induced plasticity, residual martensite and detwinning. The model is constructed at the single crystal scale using the framework of... 

    A Layerwise Dynamic Non-Linear Formulation for Multi-Layered Panels in the Presence of Viscoelastic Layer and Sma Wires

    , Ph.D. Dissertation Sharif University of Technology Khorasani, Reza (Author) ; Hosseini Kordkheili, Ali (Supervisor)
    Abstract
    This thesis aims to introduce a numerical method for investigating the appropriate arrangement of visco-pseudo-elastic dampers applicable to shell and plate structures under large deformation. These passive dampers are considered as viscoelastic layers and discrete shape memory alloy (SMA) wires in which this combination improves their overall efficiency and reduces their drawbacks. Also, the main advantages of these dampers are discussed during some illustrative problems. The current finite element formulation is based on an incremental updated Lagrangian (UL) approach along with the Newmark's integration technique. In the layerwise shell element, the Mindlin-Reissner theory is adopted in... 

    Constitutive Modeling of Nonlinear Tumor Growth; A Finite Element Approach

    , M.Sc. Thesis Sharif University of Technology Hosseinalizadeh, Mohammad (Author) ; Naghdabadi, Reza (Supervisor)
    Abstract
    Mechanical forces play a crucial role in tumor patho-physiology. Compression of cancer cells inhibits their proliferation rate and induces apoptosis. Additionally, compression of intratumor blood vessels has negative impacts on drug delivery system. Despite the great importance of the mechanical forces on the pathology of cancer, there are limited studies on the constitutive modeling of tumors. In this study, first, the tumor growth inside a rigid cylinder with an exponential growth function is represented, a model mimicking the growth of ductal carcinoma. Then, a mathematical model of a spherical tumor growth with a Gompertz growth function is represented. Using the notion of multiple... 

    A finite deformation constitutive model for shape memory polymers based on Hencky strain

    , Article Mechanics of Materials ; Vol. 73 , 2014 , pp. 1-10 ; ISSN: 01676636 Baghani, M ; Arghavani, J ; Naghdabadi, R ; Sharif University of Technology
    Abstract
    In many engineering applications, shape memory polymers (SMPs) usually undergo arbitrary thermomechanical loadings at finite deformation. Thus, development of 3D constitutive models for SMPs within the finite deformation regime has attracted a great deal of interest. In this paper, based on the classical framework of thermodynamics of irreversible processes, employing the logarithmic (or Hencky) strain as a more physical measure of strain, a 3D large-strain macromechanical model is presented. In the constitutive model development, we adopt a multiplicative decomposition of the deformation gradient into elastic and stored parts. In addition, employing the averaging scheme, the logarithmic... 

    A thermodynamically-consistent 3 D constitutive model for shape memory polymers

    , Article International Journal of Plasticity ; Volume 35 , 2012 , Pages 13-30 ; 07496419 (ISSN) Baghani, M ; Naghdabadi, R ; Arghavani, J ; Sohrabpour, S ; Sharif University of Technology
    Elsevier  2012
    Abstract
    The ever increasing applications of shape memory polymers have motivated the development of appropriate constitutive models for these materials. In this work, we present a 3 D constitutive model for shape memory polymers under time-dependent multiaxial thermomechanical loadings in the small strain regime. The derivation is based on an additive decomposition of the strain into six parts and satisfying the second law of thermodynamics in Clausius-Duhem inequality form. In the constitutive model, the evolution laws for internal variables are derived during both cooling and heating thermomechanical loadings. The viscous effects are also fully accounted for in the proposed model. Further, we... 

    Numerical simulation of cyclic behavior of ductile metals with a coupled damage-viscoplasticity model

    , Article Computational Materials Science ; Volume 55 , 2012 , Pages 376-389 ; 09270256 (ISSN) Khoei, A. R ; Eghbalian, M ; Sharif University of Technology
    2012
    Abstract
    In this paper, the evolution of ductile damage and the failure is investigated in the cyclic loading of ductile metals based on the rate-dependent elasto-viscoplastic damage model with the linear and nonlinear isotropic-kinematic hardening rules. The constitutive model is derived by introducing the damage variable, based on the plastic strain behavior, in both the elasto-plasticity and visco-plasticity frameworks. The cyclic behavior is modeled by using the visco-plasticity model since the rate-dependent behavior is observed experimentally for various metal alloys. In order to obtain a more realistic response in the compression zone, the crack closure effect is employed in the stress-strain... 

    A constitutive model for shape memory polymers with application to torsion of prismatic bars

    , Article Journal of Intelligent Material Systems and Structures ; Volume 23, Issue 2 , 2012 , Pages 107-116 ; 1045389X (ISSN) Baghani, M ; Naghdabadi, R ; Arghavani, J ; Sohrabpour, S ; Sharif University of Technology
    Abstract
    In this article, satisfying the second law of thermodynamics, we present a 3D constitutive model for shape memory polymers. The model is based on an additive decomposition of the strain into four parts. Also, evolution laws for internal variables during both cooling and heating processes are proposed. Since temperature has considerable effect on the shape memory polymer behavior, for simulation of a shape memory polymer-based structure, it is required to perform a heat-transfer analysis. Commonly, an experimentally observed temperature rate-dependent behavior of shape memory polymers is justified by a rate-dependent glassy temperature, but using the heat-transfer analysis, it is shown that... 

    Implementation of a constitutive model in finite element method for intense deformation

    , Article Materials and Design ; Volume 32, Issue 2 , February , 2011 , Pages 487-494 ; 02641275 (ISSN) Hosseini, E ; Kazeminezhad, M ; Sharif University of Technology
    2011
    Abstract
    Since the constitutive information is one of the most important aspects of material deformation analysis, here a new constitutive model is proposed that can investigate the behavior of material during intense deformation better than existent models. The model that is completely based on physical mechanisms can predict all stages of flow stress evolution and also can elucidate the effects of strain and strain rate on flow stress evolution of material during intense plastic deformation. Here as an application, implementation of the constitutive model in finite element method (FEM) is used to compare two methods of sever plastic deformation (SPD) processes of copper sheet; repetitive... 

    Frequency-dependent energy harvesting via magnetic shape memory alloys

    , Article Smart Materials and Structures ; Volume 24, Issue 11 , October , 2015 ; 09641726 (ISSN) Sayyaadi, H ; Askari Farsangi, M. A ; Sharif University of Technology
    Institute of Physics Publishing  2015
    Abstract
    This paper is focused on presenting an accurate framework to describe frequency-dependent energy harvesting via magnetic shape memory alloys (MSMAs). Modeling strategy incorporates the phenomenological constitutive model developed formerly together with the magnetic diffusion equation. A hyperbolic hardening function is employed to define reorientation-induced strain hardening in the material, and the diffusion equation is used to add dynamic effects to the model. The MSMA prismatic specimen is surrounded by a pickup coil, and the induced voltage during martensite-variant reorientation is investigated with the help of Faraday's law of magnetic field induction. It has been shown that, in... 

    Constitutive modeling of rubberlike materials based on consistent strain energy density functions

    , Article Polymer Engineering and Science ; Volume 50, Issue 5 , 2010 , Pages 1058-1066 ; 00323888 (ISSN) Darijani, H ; Naghdabadi, R ; Kargarnovin, M. H ; Sharif University of Technology
    Abstract
    Rubberlike materials are characterized by high deformability and reversibility of deformation. From the continuum viewpoint, a strain energy density function is postulated for modeling the behavior of these materials. In this paper, a general form for the strain energy density of these materials is proposed from a phenomenological point of view. Based on the Valanis-Landel hypothesis, the strain energy density of incompressible materials is expressed as the sum of independent functions of the principal stretches meeting the essential requirements on the form of the strain energy density. It is cleared that the appropriate mathematical expressions for constitutive modeling of these materials... 

    A three-dimensional phenomenological constitutive model for porous shape memory alloys including plasticity effects

    , Article Journal of Intelligent Material Systems and Structures ; Volume 27, Issue 5 , 2016 , Pages 608-624 ; 1045389X (ISSN) Ashrafi, M. J ; Arghavani, J ; Naghdabadi, R ; Auricchio, F ; Sharif University of Technology
    SAGE Publications Ltd  2016
    Abstract
    Porous shape memory alloys are a class of very interesting materials exhibiting features typical of porous metals and of shape memory alloys. In contrast to dense shape memory alloys, considerable plastic strain accumulates in porous shape memory alloys even during phase transformation. Moreover, due to the microstructure of porous materials, phase transformation and plasticity phenomena are significantly pressure-dependent. In this article, we propose a three-dimensional phenomenological constitutive model for the thermomechanical behavior of porous shape memory alloys able to predict shape memory effect, pseudo-elastic behavior and plastic behavior under proportional as well as... 

    Rate-dependent behavior of connective tissue through a micromechanics-based hyper viscoelastic model

    , Article International Journal of Engineering Science ; Volume 121 , 2017 , Pages 91-107 ; 00207225 (ISSN) Fallah, A ; Ahmadian, M. T ; Mohammadi Aghdam, M ; Sharif University of Technology
    Abstract
    In this paper, a micromechanical study on rate-dependent behavior of connective tissues is performed. To this end, a hyper viscoelastic constitutive model consisting a hyperelastic part for modeling equilibrium response of tissues and a viscous part using a hereditary integral is proposed to capture the time-dependent behavior of the tissues. With regard to the hierarchical structure of the tissue, strain energy function are developed for modeling elastic response of the tissue constituents i.e. collagen fibers and ground matrix. The rate-dependency is incorporated into the model using a viscous element with rate-dependent relaxation time. The proposed constitutive model is implemented into... 

    A three-dimensional constitutive model for magnetic shape memory alloys under magneto-mechanical loadings

    , Article Smart Materials and Structures ; Volume 26, Issue 1 , 2017 ; 09641726 (ISSN) Mousavi, M. R ; Arghavani, J ; Sharif University of Technology
    Institute of Physics Publishing  2017
    Abstract
    This paper presents a three-dimensional phenomenological constitutive model for magnetic shape memory alloys (MSMAs), developed within the framework of irreversible continuum thermodynamics. To this end, a proper set of internal variables is introduced to reflect the microstructural consequences on the material macroscopic behavior. Moreover, a stress-dependent thermodynamic force threshold for variant reorientation is introduced which improves the model accuracy. Preassumed kinetic equations for magnetic domain volume fractions, decoupled equations for magnetization unit vectors and appropriate presentation of the limit function for martensite variant reorientation lead to a simple... 

    On the geometrically nonlinear analysis of sandwich shells with viscoelastic core: a layerwise dynamic finite element formulation

    , Article Composite Structures ; Volume 230 , 2019 ; 02638223 (ISSN) Hosseini Kordkheili, A ; Khorasani, R ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    The objective of this work is to present a finite element formulation for dynamic analysis of sandwich shells with viscoelastic core under large deformation. The present study is based on an incremental updated Lagrangian approach together with the Newmark integration scheme. The viscoelastic constitutive model which is used to define the behavior of the core, comes from the Riesz theorem and the corresponding creep functions are estimated using Dirichlet-Prony series. Also, the viscoelastic deferred strain is derived in an appropriate incremental form using the state variables. The employed layerwise shell element which is based on zig-zag theory has eight nodes on its mid layer. What's... 

    On the effect of detwinning-induced plasticity in compressive cyclic loading of NiTi shape memory alloys

    , Article Mechanics of Materials ; Volume 148 , 2020 Ebrahimi, P ; Arghavani, J ; Naghdabadi, R ; McGarry, J. P ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    A new inelastic mechanism, detwinning-induced plasticity (DIP), is proposed to model the response of NiTi SMAs to cyclic loading, based on thermodynamic considerations. DIP is incorporated into a constitutive framework for NiTi SMA. The constitutive framework also includes well-established inelastic mechanisms of phase transformation, transformation-induced plasticity, residual martensite, and detwinning. The model is constructed at the single crystal scale using the framework of thermodynamics and a crystal plasticity formulation. An explicit scale-transition rule is adopted for the simulation of polycrystalline materials, allowing direct comparison of the model predictions with published...