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    Determination of Electro-elastic Fields in General Anisotropic Piezoelectric Mediums Due to Periodic and Non-periodic Distribution of Self-Assembled Quantum Wires and Quantum Dots

    , M.Sc. Thesis Sharif University of Technology Rashidinejad, Ehsan (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    Studying the behavior of piezoelectric materials containing self-assembled quantum wires and quantum dots is of great interest. This work is devoted to analytical and exact determination of the electro-elastic fields associated to quantum wires and quantum dots in piezoelectric mediums. The present work accounts for: (1) different shapes and orientations of quantum wires and quantum dots, (2) different types of anisotropy, and (3) high concentrations of quantum wires and quantum dots, that is, the corresponding interaction is considered properly. The presented solution is valid for general anisotropy and different shapes of quantum wires and quantum dots. In this work, periodic and... 

    Tree-dimensional Free Vibration of Nano-Composite Plates with Arbitrary Geometry within Couple Stress Theory

    , M.Sc. Thesis Sharif University of Technology Forouzan, Bahareh (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    Based on Hamilton’s principle, a three-dimensional semi-analytical method for the analysis of free vibration of a nano-composite plate within the couple stress theory is developed. Computation of dynamic behavior as well as natural frequencies and mode shapes is interested. In this method, the mechanical displacement functions, in each layer, are defined as product of a base function and a three-dimensional polynomial with unknown coefficients. The base functions are defined with respect to the kinematical boundary condition and the domain geometry. The mode shapes will be obtained and the accuracy of the present approach is demonstrated by comparison it in both classical elasticity and... 

    Buckling Analysis of Nano-Plates in the Context of Modified Couple Stress Theory Using RKPM

    , M.Sc. Thesis Sharif University of Technology Alemi, Bita (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    In this research, a new Kirchhoff plate model based on the modified couple stress theory has been utilized to derive the corresponding closed-form expression for the buckling load. Moreover, a numerical mesh-less method, Reproducing Kernel Particle Method (RKPM), in combination with Corrected Collocation Method (CCM) has been employed to model the nano-plate and calculate its buckling load in the framework of the modified couple stress theory. To this end, two kinds of nano-plates have been modeled, the square nano-plates with all edges simply supported 1) in the presence of the nano-void and 2) without the nano-void. It should be noted that the analytical and numerical solutions for the... 

    Kinetics of Animal Cell Adhesion Mediated by the Diffusion of Cell Wall Receptors: Effect of Mechanical Stiffness and Electrical Charges of the Substrate

    , M.Sc. Thesis Sharif University of Technology Samadi Dooki, Aref (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    Viability and proliferation of cells in cell culture mainly depends on i) cell culture medium, ii) cell-cell interaction, and iii) the supporting scaffold. Among these factors, and within recent years, surface and mechanical properties of the supporting ECM has attracted many researchers. Experiment results show that the animal cell adhesion is accelerated on stiffer scaffolds. Electrical charge of the scaffold is also a determinant term in the kinetics of adhesion and on a relatively charged scaffold, one can expect an increment in kinetics of adhesion front movement. This is due to the natural negative charges of the cell wall membrane. In this thesis, an analytical model is proposed to... 

    Mechanics and Morphology of Single-Walled Carbon Nanotubes

    , Ph.D. Dissertation Sharif University of Technology Delfani, Mohammad Rasoul (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    Vibration is one of the most important factors in design, operation and lifetime of drill strings. There for, investigation of vibrations in drill string, like every other rotary machine, is very important. The main goal of this research is developing a nonlinear model for a drill string system dynamics in an inclined well. Effects of drilling mud flow rate, weight on bit, angular velocity along with viscous damping, on the stability and vibration of a drill string are studied. Dynamic equation of the model is developed considering axial displacement and lateral bending geometric nonlinear coupling. The effect of drilling mud flow is modeled using Paidoussis formulations. Equation of motion... 

    Elastic Moduli Tensors, Ideal Strength, and Morphology of Stanene based on an Enhanced Continuum Model and First Principles

    , M.Sc. Thesis Sharif University of Technology Etehadieh koochak, Azadeh (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    Nowadays, multifunctional two-dimensional (2D) nanostructured materials due to their important role in biomedical and nanotechnological developments have gained the attention of many engineers and scientists with a wide spectrum of disciplines. The present work aims to provide an accurate description of the tensile behavior (from the initial unloaded state through axial strain of about 0.25) of the planar as well as low-buckled stanene and to capture their ideal strength in armchair- and zigzag-directions. Stanene is 2D hexagonal lattice which belongs to D6 hcrystal class having a six-fold rotational symmetry. For an accurate description of anisotropic response of such hyperelastic materials... 

    Spectral Analysis of the Elastic Fields Associated With a Spherical Multi-Inhomogeneous Inclusion

    , M.Sc. Thesis Sharif University of Technology Khorshidi, Alireza (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    Determination of the elastic fields associated with a spherical multiply-coated inhomogeneous inclusion is a problem of great interest among researchers. In this work a set consisting of N+1 concentric spherical domains is considered. Each domain is either isotropic or spherically isotropic and is functionally graded (FG) in the radial direction. The outermost spherical surface is subjected to nonuniform loading and the constituent phases are subjected to some prescribed nonuniform body force and eigenstrain fields. When the outermost domain is an unbounded medium with zero eigenstrain and body force fields then an N-phase multi-inhomogeneous inclusion problem is realized for which the... 

    An Introduction to the Mathematical Theory of Generalized RKPM and Gradient RKPM

    , M.Sc. Thesis Sharif University of Technology Behzadan, Ali (Author) ; Mohammadi Shoja, Hossein (Supervisor)

    Surface/Interface Effect on the Scattering of Love Waves by a Surface-Breaking Crack Within an Ultra-Thin Layer Bonded to an Elastic Half-Space

    , M.Sc. Thesis Sharif University of Technology Ghafarollahi, Alireza (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    In this study, an analytical solution is presented for anti-plane scattering of Love waves by a surface-breaking crack normal to the free surface of an ultra-thin layer bonded to a semi-infinte medium within the surface/interface elasticity theory. The Fourier transform techniques are used to formulate the corresponding mixed-boundary value problem as a singular integral equation of the Cauchy type which is solved numerically. Mode III dynamic stress intensity factor at the crack tip, crack face and crack mouth opening displacements, the reflection coefficient at large distances from the crack face, and the stress field on the interface are computed and plotted for different valued of... 

    Plastic Analysis of a Plate Containing an Edge Notch and a Piezoelectric Patch

    , M.Sc. Thesis Sharif University of Technology Ghandriz, Rojin (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    In this project the goal is to study where, when and how the cracks in the steel connection plate between beam and column initiate and how far would the crack grow before failure and how to detect crack initiation by utilizing piezoelectric sensors. In this analysis piezoelectric is placed in line of crack propagation for sensing strain and changing it to voltage. A thin plate with edge notch which is an ideal model of typical beam to column connection is assumed. The plate is subjected to a uniaxial uniform load. With the aid of ANSYS software, the plate is analyzed in both elastic and plastic stages. The strain-stress curve with kinematic hardening part is considered and modeled with... 

    An Atomistic Study of the Interacting Crack and Coated Inhomogeneity

    , M.Sc. Thesis Sharif University of Technology Ghassemi, Mohsen (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    Classical continuum mechanics fails to give an accurate solution near the crack tip, moreover, it implies that a solid is able to sustain an infinite stress at the Griffith-Inglis crack tips. Among other critical issues is the inability of classical approach to sense the size effect. For these reasons, for more in-depth understanding and accurate behavioral predictions, it is essential to develop some atomistic methods which properly accounts, not only for the structure but also the long and short range atomic interactions effectively. In this work the interaction of coated inhomogeneity and crack under polynomial loading is simulated by using the many body Rafii-Tabar and Sutton potential... 

    RKPM with Etxtended Augmented Corrected Collocation Method for Treatment of Lamellar Inhomogeneitie

    , M.Sc. Thesis Sharif University of Technology Bahari, Behnaz (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    An accurate numerical methodology for capturing the field quantities a center lamellar inhomogeneity within the interface of two different phases of a bimaterial rectangular plate subjected to non-uniform tensile stress, in the context of reproducing kernel particle method (RKPM), is of particular interest. For this purpose the innovative numerical technique, so-called extended augmented corrected collocation method is introduced; this technique is an extension of the augmented corrected collocation method used for imposing continuity condition of the displacement at the interface. The robustness of this methodology is shown by solving problems of material discontinuities, namely plates... 

    Employing Enriched Meshfree MLSRK Method to Analyze 2D Linear Elastic Fracture Mechanics Problems

    , M.Sc. Thesis Sharif University of Technology Namakian, Reza (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    The so-called moving least square reproducing kernel method (MLSRKM), which is a meshfree Galerkin method, has two special properties in comparison with its prior version, say moving least square method (MLSM): (i) stability in preserving completeness conditions to the desired order for a discrete reproducing formula due to implementation of shifted and scaled basis, (ii) use of more accurate quadrature weights in a discrete reproducing form, especially along boundaries. However, because of employing shifted basis in MLSRKM, some of enrichment techniques, specifically in the context of linear elastic fracture mechanics (LEFM) problems, cannot be applied to this method. Therefore, we are... 

    Augmented RKPM Modeling of a Glide Edge Dislocation Near a Grain Boundary in the Framework of Surface/Interface Elasticity

    , M.Sc. Thesis Sharif University of Technology (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    Traditional continuum theory of elasticity becomes remarkably inaccurate in the vicinity of singularities, and when the size eect is of concern. For example in the study of ultra-small objects and ultra-thin lms, near defects, near point of application of a concentrated load and as such, the classical solutions are not reliable. This work focuses on determination of the elastic elds of an edge dislocation near the grain boundary of two perfectly bonded nano-size crystals. It is proposed to study this problem in the context of surface/interface elasticity, and incorporate the eect of the grain boundary on the elastic elds. In contrast to the surface/interface elasticity theory, traditional... 

    A Micromechanical Approach to the Fracture of Femoral Bone during Total Hip Arthroplasty: A Threshold for the Maximum Allowable Press-Fit

    , M.Sc. Thesis Sharif University of Technology Malekmotiei, Leila (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    The principle of micromechanics has been used to determine the maximum allowable press-fit for the hip stem during total hip arthroplasty. A 2D parametric solution has been presented. Bone and stem cross sections are modeled parametrically with respect to their geometry and mechanical properties. Surrounding soft tissue is also modeled and all the participating materials are considered as linear isotropic. Drucker-Prager fracture criterion is used to interpret the fracture phenomenon which is considered as both strain- and stress-state fracture. Considering presence of a thin layer of cancellous bone in the model caused a significant increase in results in comparison with previous numerical... 

    Study of Size Effect via Strain-gradient Elasticity Based RKPM in Nano-Structures

    , M.Sc. Thesis Sharif University of Technology Arshadi, Amir (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    In this thesis one of the mesh-free methods called RKPM is employed to solve the differential equations of strain-gradient elasticity. To this end the corresponding weak form is laid down. Subsequently the relevant stiffness-matrix is obtained by discretization of the weak form. To be sure about the accuracy of the relations, the problem of a plate weakened by a hole under uniform far-field tension, for which the exact solution is available in the literature, is solved. The obtained numerical result is in good agreement with the solution of Eshel and Rosenfeld. Afterwards, a plate containing a crack of finite length subjected to uniform far-field tension (mode I) is considered. This problem... 

    A Formulation for the Characteristic Lengths FCC in First Gradient Elasticity Via Sutton-Chen Potential

    , M.Sc. Thesis Sharif University of Technology Tehranchi, Ali (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    The  usual  continuum  theories  are  inadequate  in  predicting  the  mechanical  behavior of solids in presence of small defects and stress concentrators; it is well known that such continuum methods are unable to detect the change of the size of  the  inhomogeneities  and  defects.   For  these  reasons  various  augmented  continuum theories and strain gradient theories have been proposed in the literature. The major difficulty in implication of these theories lies in the lack of information  about  the  additional  material  constants.  For  fcc  metals,  for  calculation of the associated characteristic lengths which arise in first strain gradient  theory,  an ... 

    Size-Dependent Elastic Properties of Ultra-Thin Objects Containing a Nano-Inclusion or a Nano-Inhomogeneity

    , Ph.D. Dissertation Sharif University of Technology Pahlevani, Ladan (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    The broad range of applicability of nano devices particularly in electronics, optoelectronics, and micro/ nano-electro- mechanical systems has drawn the attentions of the industrial and scientific communities of various disciplines. This work is devoted to study the effect of surface and interface elasticity in the analysis of the mechanical behavior of ultra-thin objects in the presence of some statical or dynamical loadings. Based on the fact that the surface-volume ratio increases in nano-scale, description of the behavior of such a small structure via usual classical theories, which generally neglect the surface/interface effect, ceases to hold. In the present study, first, a... 

    Calculating Interface Energy, Residual Stresses and Elastic Constants of Non-magnetic FCC Metals

    , M.Sc. Thesis Sharif University of Technology Lotfian, Kimia (Author) ; Mohammadi Shoja, Hossein (Supervisor)
    Abstract
    The investigation of interface residual stress and interface elastic moduli tensors plays a crucial role in enhancing the conventional theory of elasticity. These considerations allow us to account for size effects and eliminate nonphysical singularities near defects. The primary objective of this study is to comprehensively calculate interface energy, residual stress components, and interface elastic moduli tensors for various interfaces between non-magnetic fcc metals using density functional theory (DFT). We achieve this by performing ab initio DFT calculations to determine the interface energies for different coherent interfaces among these metals. Subsequently, these energies are... 

    Axial Stiffness of a Detached Anchor Plate in a Transversely Isotropic Solid

    , M.Sc. Thesis Sharif University of Technology Ordookhani, Ali (Author) ; Mohammadi Shoja, Hossein (Supervisor) ; Eskandari, Morteza (Co-Advisor)
    Abstract
    In this study, the analytical treatment of an anchor plate buried in a transversely isotropic half-space and subjected to a normal point load is addressed. In reality, the tension face of the anchor plate is detached from the soil and the edges of the detached zone extend to a region greater than the anchor plate area. To simulate this situation, the anchor plate is modeled as a rigid circular disk located in a penny-shaped crack and it is in smooth contact with only single face of the crack. With the aid of an appropriate displacement potential function and Hankel transform, the governing equations of the problem are written as a set of triple integral equations. Employing some mathematical...