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    New thermally stable and organosoluble polyamides and copolyamides containing oxazolopyridine pendant moiety

    , Article Arabian Journal for Science and Engineering ; Volume 45, Issue 6 , March , 2020 , Pages 4727-4735 Khodadadipoor, Z ; Koohmareh, G. A ; Mohebbi Zinab, J ; Sharif University of Technology
    Springer  2020
    Abstract
    In this study, a new series of thermally stable polyamides and copolyamides are prepared through reaction of oxazolopyridine functional diamine, 2-(3,5-diaminophenyl) oxazolo [4,5-b] pyridine with four commercial dicarboxylic acids: pyridine 2,6-dicarboxylic acid, pyridine 2,5-dicarboxylic acid, 4,4′-dicarboxylic acid diphenyl sulfone and 4,4′-dicarboxylic acid diphenyl ether. The synthesized polymers were characterized by FT-IR and 1HNMR spectroscopy. The physical properties of the polymers including solubility and viscosity were studied. The results displayed good solubility, viscosity and high thermal stability. Their viscosities and glass transition temperatures are in the range of... 

    Preparation of Ag-Al₂O₃ nano structures by combustion method and investigation of photocatalytic activity

    , Article International Journal of Applied Ceramic Technology ; Volume 18, Issue 6 , 2021 , Pages 2064-2074 ; 1546542X (ISSN) Einafshar, E ; Khodadadipoor, Z ; Fazli, M ; Einafshar, N ; Mohebbi Zinab, J ; Asaei, S ; Sharif University of Technology
    John Wiley and Sons Inc  2021
    Abstract
    In this research, Ag-Al2O3 nanostructures have been prepared via combustion synthesis and ammonium acetate and urea have been applied as fuels. The prepared Ag-Al2O3 nanostructures were characterized by DTA, XRD, SEM, TEM, and BET spectroscopy. The effect of different ratios of silver to alumina and fuel percentage on morphology and particle size of prepared products were investigated. The results showed that using ammonium acetate fuel led to the production of Ag-γ-Al2O3 nanocompounds, while using urea produced Ag-α-Al2O3. Also, the photocatalytic activity of Ag-Al2O3 nanostructures for Congo red degradation was evaluated by UV-Vis diffuse reflectance spectroscopy. The photocatalytic... 

    Application of Rosin-Rammler model for analysis of CSD in sugar crystallization

    , Article Crystal Research and Technology ; Volume 50, Issue 11 , 2015 , Pages 873-878 ; 02321300 (ISSN) Mohebbi Zinab, J ; Alamolhoda, A. A ; Matloubi Moghaddam, F ; Nayeri, S ; Sharif University of Technology
    Wiley-VCH Verlag  2015
    Abstract
    Crystal-size distribution (CSD) is one of the most important parameters in sugar production. The objective is to grow crystals of uniform sizes or narrow CSD. CSD appears to be determined by the growth-rate history of the crystals and the relative supersaturation (SS) of the solution from which crystals growth takes place. Three methods for preparation of nucleation seeds were described and used for industrial crystallization of raw and white sugars; these are wet milling filtered sugar (ML), agitating saturated solution (AS) and powdered sugars (PD). Rosin-Rammler (RR) and mathematical models were adopted to investigate CSD and the uniformity of the produced crystals. Higher uniformity... 

    Hopf bifurcation of an age-structured virus infection model

    , Article Discrete and Continuous Dynamical Systems - Series B ; Volume 23, Issue 2 , March , 2018 , Pages 861-885 ; 15313492 (ISSN) Mohebbi, H ; Aminataei, A ; Browne, C. J ; Razvan, M. R ; Sharif University of Technology
    American Institute of Mathematical Sciences  2018
    Abstract
    In this paper, we introduce and analyze a mathematical model of a viral infection with explicit age-since infection structure for infected cells. We extend previous age-structured within-host virus models by including logistic growth of target cells and allowing for absorption of multiple virus particles by infected cells. The persistence of the virus is shown to depend on the basic reproduction number R0. In particular, when R0 ≤ 1, the infection free equilibrium is globally asymptotically stable, and conversely if R0 > 1, then the infection free equilibrium is unstable, the system is uniformly persistent and there exists a unique positive equilibrium. We show that our system undergoes a... 

    Designing optimal tuned mass dampers for nonlinear frames by distributed genetic algorithms

    , Article Structural Design of Tall and Special Buildings ; Volume 21, Issue 1 , 2012 , Pages 57-76 ; 15417794 (ISSN) Mohebbi, M ; Joghataie, A ; Sharif University of Technology
    2012
    Abstract
    In this paper, the capabilities of tuned mass dampers (TMDs) for the mitigation of response of nonlinear frame structures subjected to earthquakes have been studied. To determine the optimal parameters of a TMD, including its mass, stiffness and damping, we developed an optimization algorithm based on the minimization of a performance index, defined as a function of the response of the nonlinear structure to be controlled. Distributed genetic algorithm has been used to solve the optimization problem. For illustration, the method has been applied to the design of a linear TMD for an eight-story nonlinear shear building with bilinear hysteretic material behavior subjected to earthquake. The... 

    Optimal TMDs for improving the seismic performance of historical buildings

    , Article Scientia Iranica ; Volume 23, Issue 1 , 2016 , Pages 79-90 ; 10263098 (ISSN) Mohebbi, M ; Joghataie, A ; Sharif University of Technology
    Sharif University of Technology  2016
    Abstract
    In this paper, optimal design and assessment of the capability of Tuned Mass Dampers (TMDs) in improving the seismic behavior of Confined masonry walls, as the main element of historical buildings, has been studied. For this purpose, the design parameters of TMDs have been determined through minimization of wall response using Genetic Algorithms (GAs). To simulate the behavior of Confined masonry wall under earthquake, the triple linear shear beam model has been used. For illustration, the method has been tested on Confined masonry walls equipped with linear TMDs. To study the effects of frequency content and Peak Ground Acceleration (PGA) of earthquake records on the performance of TMDs,... 

    Prediction of formability of tailor welded blanks by modification of MK model

    , Article International Journal of Mechanical Sciences ; Volume 61, Issue 1 , 2012 , Pages 44-51 ; 00207403 (ISSN) Mohebbi, M. S ; Akbarzadeh, A ; Sharif University of Technology
    2012
    Abstract
    A new model is proposed to predict the Forming Limit Diagrams (FLDs) of Tailor Welded Blanks (TWBs). This model is derived by modification of the Marciniak and Kuczynski (MK) analysis and imposing the weld constraints to deformation state of each blank at each strain increment. Based on this model, it is possible to predict the strains of both weaker and stronger blanks once necking occurs. By comparison to the experimental results of two laser welded TWBs, it is demonstrated that this model provides a close prediction of FLD of TWBs, when necking occurs far from the weld line at a region out of HAZ (Heat Affected Zone) and close to it so that it is affected by the weld line constraints  

    Fabrication of copper/aluminum composite tubes by spin-bonding process: Experiments and modeling

    , Article International Journal of Advanced Manufacturing Technology ; Volume 54, Issue 9-12 , November , 2011 , Pages 1043-1055 ; 02683768 (ISSN) Mohebbi, M. S ; Akbarzadeh, A ; Sharif University of Technology
    2011
    Abstract
    The aim of this work is to produce two layered thin-walled Cu/Al composite tube by the spin-bonding process. The process is utilized to bond the aluminum tube into the copper one at thickness reductions of 20-60% and process temperatures of 25°C, 130°C, and 230°C. The bond strength is measured by T-peeling test, and the bond interfaces are examined by metallography and scanning electron microscopy (SEM). The results show that after a threshold thickness reduction of about 30%, the bond strength increased with the amount of deformation. SEM fractography of the peel surfaces confirms that the copper oxide film is broken in a shear manner during deformation. Severe shear strains applied during... 

    Accumulative spin-bonding (ASB) as a novel SPD process for fabrication of nanostructured tubes

    , Article Materials Science and Engineering A ; Volume 528, Issue 1 , November , 2010 , Pages 180-188 ; 09215093 (ISSN) Mohebbi, M. S ; Akbarzadeh, A ; Sharif University of Technology
    2010
    Abstract
    A novel SPD process for manufacturing of high strength tubes and cylinders by accumulative spin-bonding (ASB) is proposed. It is demonstrated that due to incremental deformation in this process, high strain rate without considerable temperature rise is achieved. This is accompanied with a high value of Zener-Hollomon parameter as a characteristic of this SPD process. ASB was applied to a commercially pure aluminum up to four cycles and its effects on the microstructure and mechanical properties were examined by optical microscopy, TEM, EBSD, microhardness and tension tests. The results show that ultra-fine grains are developed during the process by formation of subgrains at early stages... 

    A novel spin-bonding process for manufacturing multilayered clad tubes

    , Article Journal of Materials Processing Technology ; Volume 210, Issue 3 , 2010 , Pages 510-517 ; 09240136 (ISSN) Mohebbi, M. S ; Akbarzadeh, A ; Sharif University of Technology
    2010
    Abstract
    Utilizing the so-called tube spinning, a cold-bonding process entitled as "spin-bonding" is developed to produce seamless thin-walled clad tubes and cylinders. By this method, two layers of AA 1050 tubes were successfully bonded together to form a clad tube at room temperature. Based on mechanical aspects of the tube spinning process, the mechanism of spin-bonding is explained in two stages: surface preparation before occurrence of a stable bond and bond strengthening thereafter. The effects of process temperature, thickness reduction, feed rate and roller attack angle as the parameters of tube spinning on the bond strength are studied. It is shown that the bond strength increases by... 

    Pain level estimation in video sequences of face using incorporation of statistical features of frames

    , Article 9th Iranian Conference on Machine Vision and Image Processing, 18 November 2015 through 19 November 2015 ; Volume 2016-February , 2015 , Pages 172-175 ; 21666776 (ISSN) ; 9781467385398 (ISBN) Mohebbi Kalkhoran, H ; Fatemizadeh, E ; Sharif University of Technology
    IEEE Computer Society  2015
    Abstract
    Pain level estimation from videos of face has many benefits for clinical applications. Most of the previous works focused only on pain detection task. However, pain level estimation of video sequences has been discussed fewer. In this work, we have proposed a new regression-based approach to estimate the pain level of video sequences. As the first step, facial expression-related features were extracted from each frame, this task was done by reducing identity-related features using the robust principal component analysis decomposition. Then, we used the minimum, maximum, and mean of the features of frames in a sequence to represent that sequence by a fixed-length feature vector. After this,... 

    Constitutive equation and FEM analysis of incremental cryo-rolling of UFG AA 1050 and AA 5052

    , Article Journal of Materials Processing Technology ; Volume 255 , 2018 , Pages 35-46 ; 09240136 (ISSN) Mohebbi, M. S ; Akbarzadeh, A ; Sharif University of Technology
    Elsevier Ltd  2018
    Abstract
    In this study, ultrafine grained aluminum sheets AA1050 and AA5052 are incrementally cryo-rolled after precooling in liquid nitrogen. Cryogenic deformation is considered as an effective approach to postpone saturation of the grain refinement by conventional severe plastic deformation. However, for a quantitative understanding of the resulted microstructure and mechanical properties, accurate values of the deformation parameters (strain, strain rate and temperature) are needed. The aim of this study is, therefore, to find values of the applied cryo-rolling parameters. As the experimental measurements of parameters such as temperature are infeasible in the thin specimens, a FEM simulation is... 

    Development of equations for strain rate sensitivity of UFG aluminum as a function of strain rate

    , Article International Journal of Plasticity ; Volume 90 , 2017 , Pages 167-176 ; 07496419 (ISSN) Mohebbi, M. S ; Akbarzadeh, A ; Sharif University of Technology
    2017
    Abstract
    Strain rate sensitivity (m-value) of ultrafine grain (UFG) AA 1050 and AA 5052 sheets processed by accumulative roll-bonding is investigated versus strain rate by stress relaxation (SR) test at ambient temperature. The results show a weak viscous nature of deformation for AA 5052 specimens as compared to AA 1050 ones. So that much less stress relaxation and negligible strain rate sensitivity are obtained for this material due to dislocation and grain boundary mobility limitation caused by Mg solute atoms. In order to formulate strain rate sensitivity of UFG aluminum as a function of strain rate, three phenomenological and two empirical models are developed and assessed by the experimental... 

    Higher prevalence of asymptomatic or mild COVID-19 in children, claims and clues

    , Article Journal of Medical Virology ; Volume 92, Issue 11 , May , 2020 , Pages 2257-2259 Miri, S. M ; Noorbakhsh, F ; Mohebbi, S. R ; Ghaemi, A
    John Wiley and Sons Inc  2020

    Hysteretic response of confined masonry walls by Prandtl neural networks

    , Article 1st International Conference on Advances and Trends in Engineering Materials and their Applications, AES-ATEMA'2007, Montreal, QC, 6 August 2007 through 10 August 2007 ; 2007 , Pages 525-533 ; 19243642 (ISSN) ; 0978047907 (ISBN); 9780978047900 (ISBN) Joghataie, A ; Farrokh, M ; Mohebbi, M ; Sharif University of Technology
    2007
    Abstract
    In this paper a new method of modeling shear force-displacement relationship for confined masonry walls by neural networks has been presented. Although the mathematical models have been very useful in the simulations so far, however developing more accurate models is necessary. While developing precise mathematical models for highly hysteretic materials is itself challenging and practically cumbersome, the use of learning algorithms is an attractive alternative. The issue of material modeling by neural networks has been a challenging one itself, noticing available neural networks have some limitations in the learning of non-linearity. In this paper a new type neural network, called Prandtl... 

    Peak Temperature Recduction in 3D NoCs using Task Migration

    , M.Sc. Thesis Sharif University of Technology Mohebbi Moghaddam, Monireh (Author) ; Hessabi, Shaahin (Supervisor)
    Abstract
    Combination of 3D stacking and network-on-chip (NoC), known as 3D NoC, has some advantages such as reduced propagation delay, chip area and interconnect, and power consumption, and bandwidth increase. Despite these advantages, the increased power density per chip area due to area decrease causes thermal problems in 3D NoCs to be more critical than 2D NoCs. Therefore, design of temperature management algorithms is essential for these systems. One of the dynamic thermal management techniques is task migration that balances generated thermal among cores.In this thesis, we propose a task migration scheme using feedback control for 3D NoCs. The main purpose of this scheme is to decrease the peak... 

    Effect of Cryogenic SPD with Various Strain Conditions on Development of Nano and Bimodal Structures in Al Alloys

    , Ph.D. Dissertation Sharif University of Technology Mohebbi, Mohammad Sadegh (Author) ; Akbarzadeh, Abbas (Supervisor)
    Abstract
    Amount of strain has been always considered as the primary parameter affecting the microstructural and strength evolutions during Severe Plastic Deformation (SPD). However, these evolutions unavoidably saturate in large strains under deformation with constant conditions, i.e. constant deformation temperature, strain rate and strain path. In this study, effects of these factors on the microstructural and flow behavior of Ultra-Fine Grain (UFG) aluminum (AA 1050 and AA 5052) processed by Accumulative Roll-Bonding (ARB) are investigated. The flow behavior and its time-dependent aspect are evaluated up to large strains by Plane Strain Compression (PSC) and Stress Relaxation (SR) tests. ... 

    Manufacturing of Composite and Nanostructured Thin Walled Tubes by ASB Process

    , M.Sc. Thesis Sharif University of Technology Mohebbi, Mohammad Sadegh (Author) ; Akbarzadeh, Abbas (Supervisor)
    Abstract
    In this study, utilizing the so-called “flow forming”, a cold-bonding process is developed to produce multi-layered thin-walled tubes and cylinders. In this process, which is entitled as “spin-bonding”, two layers of tubes are bonded by thickness reduction. Al/Al and Cu/Al tubes were bonded at various temperatures, thickness reductions, feed rates and roller attack angles. The bonding quality was examined by peel test, metallography and SEM fractography. Moreover, spin-bonding was accumulatively applied to aluminum tubes up to 4 cycles as a severe plastic deformation (SPD) for thin-walled tubes and cylinders entitled as “Accumulative Spin-Bonding” (ASB). Beside of experimental works,... 

    Examining and Choosing the Appropriate Control Algorithm and Controller Design for a Ship in Order to Path Following

    , M.Sc. Thesis Sharif University of Technology Mohebbi, Matin (Author) ; Seif, Mohammad Saeed (Supervisor)
    Abstract
    In this research, it has been tried to design two controllers for a KVLCC2 tanker assuming unknown hydrodynamic characteristics and its mathematical model in order to maintain its course and speed. At first, due to the lack of an experimental model of a vessel, a three-degree-of-freedom MMG model of the KVLCC2 vessel was modeled in the SIMULINK, MATLAB, to be used as a basis for other tests and simulations. Therefore, by using the designed three degree of freedom model, all parameters affecting the floating maneuver were examined. In the next section, using the DNV standard, we designed two wind and sea current systems for system input disturbances. And finally, by using dynamic models of... 

    Effect of response related weighting matrices on performance of active control systems for nonlinear frames

    , Article International Journal of Structural Stability and Dynamics ; Volume 17, Issue 3 , 2017 ; 02194554 (ISSN) Mohebbi, M ; Joghataie, A ; Rasouli Dabbagh, H ; Sharif University of Technology
    World Scientific Publishing Co. Pte Ltd  2017
    Abstract
    In this paper, the effect of various arrangements of displacement, velocity and acceleration related weighting matrices on the performance of active control systems on nonlinear frames has been studied. Different arrangements of weighting matrices and feedback combinations of the response have been considered to design the active controllers using a single actuator for reducing the response of an eight-storey bilinear hysteretic frame under white noise excitations. The nonlinear Newmark-based instantaneous optimal control algorithm has been used, where the distributed genetic algorithm (DGA) is employed to determine the proper set of weighting matrices. For each set of feedback and weighting...