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    Dynamic analysis of three-layer cylindrical shells with fractional viscoelastic core and functionally graded face layers

    , Article JVC/Journal of Vibration and Control ; Volume 27, Issue 23-24 , 2021 , Pages 2738-2753 ; 10775463 (ISSN) Shakouri, M ; Permoon, M. R ; Askarian, A ; Haddadpour, H ; Sharif University of Technology
    SAGE Publications Inc  2021
    Abstract
    Natural frequency and damping behavior of three-layer cylindrical shells with a viscoelastic core layer and functionally graded face layers are studied in this article. Using functionally graded face layers can reduce the stress discontinuity in the face–core interface that causes a catastrophic failure in sandwich structures. The viscoelastic layer is expressed using a fractional-order model, and the functionally graded layers are defined by a power law function. Assuming the classical shell theory for functionally graded layers and the first-order shear deformation theory for the viscoelastic core, equations of motion are derived using Lagrange’s equation and then solved via Rayleigh–Ritz... 

    Al-Mg-Si/SiC laminated composites: fabrication, architectural characteristics, toughness, damage tolerance, fracture mechanisms

    , Article Composites Part B: Engineering ; Volume 125 , 2017 , Pages 49-70 ; 13598368 (ISSN) Hosseini Monazzah, A ; Pouraliakbar, H ; Bagheri, R ; Seyed Reihani, S. M ; Sharif University of Technology
    Abstract
    Different architectures of layered laminates comprising two exterior layers of Al-Mg-Si/SiC metal matrix composite and an Al1050 ductile interlayer were fabricated by means of hot roll-bonding with applying different strains of εr = 39%, 51%, and 63%. For monolithics production, ceramic particulate reinforcement contents of 0, 5, 10, and 15 vol% were utilized. The aim of introducing ductile metal interlayer was to compensate the low toughness of composite layers and consequently enhancement of damage tolerance of bundled structures along with prevention of their catastrophic failure through activation of extrinsic toughening mechanism. Effects of architectural characteristics and fabrication... 

    HTS transformer’s partial discharges raised by floating particles and nitrogen bubbles

    , Article Journal of Superconductivity and Novel Magnetism ; Volume 33, Issue 10 , 6 July , 2020 , Pages 3027-3034 Moradnouri, A ; Vakilian, M ; Hekmati, A ; Fardmanesh, M ; Sharif University of Technology
    Springer  2020
    Abstract
    Presence of defects, conducting particles, nonconducting particles, and nitrogen gas bubbles in the insulation system of high-temperature superconducting (HTS) transformers, mainly inside the liquid nitrogen as its major insulation, can create local field enhancement and consequently partial discharges which eventually lead to the catastrophic failure of the transformer. In this paper, two-dimensional (2D) axisymmetric finite element method (FEM) modeling via COMSOL Multiphysics software has been utilized for the investigation of the impact of size and shape of conducting particles and nitrogen gas bubbles on partial discharge (PD) activities in liquid nitrogen. Conducting particles of... 

    Photo-Electrochemical application of ZnOG thin film for in situ monitoring of steel sour corrosion

    , Article Surface Engineering and Applied Electrochemistry ; Volume 56, Issue 2 , 2020 , Pages 242-247 Razavizadeh, O ; Ghorbani, M ; Shafiekhani, A ; Sharif University of Technology
    Pleiades Publishing  2020
    Abstract
    Abstract: Further to traditional corrosion monitoring techniques for rated deteriorations, nowadays modern electrochemical monitoring methods are promising for the control of non-rated damage mechanisms. Considering carbon steel as the most commonly used alloy in the oil and gas industry, there are special grades under NACE MR0175 standard which are immune to sour corrosion. However, according to the industry reports, their immunity can be terminated by upset conditions or on site repairs. This issue will impose either a high operational risk or exorbitant maintenance and inspection costs. Hence, in this paper, a new monitoring technology framework is discussed to lessen a catastrophic... 

    Dynamic analysis of three-layer cylindrical shells with fractional viscoelastic core and functionally graded face layers

    , Article JVC/Journal of Vibration and Control ; 2020 Shakouri, M ; Permoon, M. R ; Askarian, A ; Haddadpour, H ; Sharif University of Technology
    SAGE Publications Inc  2020
    Abstract
    Natural frequency and damping behavior of three-layer cylindrical shells with a viscoelastic core layer and functionally graded face layers are studied in this article. Using functionally graded face layers can reduce the stress discontinuity in the face–core interface that causes a catastrophic failure in sandwich structures. The viscoelastic layer is expressed using a fractional-order model, and the functionally graded layers are defined by a power law function. Assuming the classical shell theory for functionally graded layers and the first-order shear deformation theory for the viscoelastic core, equations of motion are derived using Lagrange’s equation and then solved via Rayleigh–Ritz... 

    Investigating the behavior of cracks in welded zones of supporting structure of spherical pressure vessel under seismic loading

    , Article Journal of Constructional Steel Research ; Volume 191 , 2022 ; 0143974X (ISSN) Tafazoli, S ; Ghazi, M ; Adibnazari, S ; Rofooei, F. R ; Sharif University of Technology
    Elsevier Ltd  2022
    Abstract
    In this paper, the numerical studies on the semi-elliptical crack behavior in different locations of welded zones in the supporting structure of a spherical pressure vessel under an earthquake are presented. The cracks in the welded zones of supporting structures under earthquake effects may jeopardize the safety of spherical pressure vessels and result in catastrophic failure. A detailed finite element sub-modeling technique is carried out to compute the mixed-mode stress intensity factors along the crack front. Furthermore, crack behavior with different aspect ratios a/c: 0.25, 0.5, and 0.75 at the weld and the heat-affected zone of the supporting structure is evaluated. The... 

    Influence of material ductility and crack surface roughness on fracture instability

    , Article Journal of Physics D: Applied Physics ; Volume 44, Issue 39 , 2011 ; 00223727 (ISSN) Khezrzadeh, H ; Wnuk, M. P ; Yavari, A ; Sharif University of Technology
    Abstract
    This paper presents a stability analysis for fractal cracks. First, the Westergaard stress functions are proposed for semi-infinite and finite smooth cracks embedded in the stress fields associated with the corresponding self-affine fractal cracks. These new stress functions satisfy all the required boundary conditions and according to Wnuk and Yavari's (2003 Eng. Fract. Mech. 70 1659-74) embedded crack model they are used to derive the stress and displacement fields generated around a fractal crack. These results are then used in conjunction with the final stretch criterion to study the quasi-static stable crack extension, which in ductile materials precedes the global failure. The material...