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    PLA- PMMA- PEG Blends, Shape Memory Investigation

    , M.Sc. Thesis Sharif University of Technology Khodabakhshi Sadeghabadi, Hossein (Author) ; Forounchi, Masoud (Supervisor)
    Abstract
    Semi-crystalline polylactic acid (PLA) and amorphous polymethyl methacrylate can form a soluble and miscible alloy in which the crystalline regions in the polylactic acid act as the fixed and immutable region and amorphous regions of the two polymers act as the changeable region. The two polymers can form a lattice structure with physical connections having shape-memory. So that the deformed polymer returns to its original shape above a certain temperature. These materials are used in sensors, smart materials, and medicine. On the other hand, Polyethylene glycol (PEG) is compatible with polylactic acid (PLA) and it seems that adding it will increase the ductility of polylactic acid (PLA). In... 

    Microstructure-Mechanical Properties Relationships in Aluminum Metal Matrix Nanocomposites Reinforced via Al3Ti and MgO phases Prepared by Reactive Friction stir Processing of AA5052 alloy with Initial TiO2 Nanoparticles

    , Ph.D. Dissertation Sharif University of Technology Khodabakhshi, Farzad (Author) ; Kokabi, Amir Hossein (Supervisor) ; Simchi, Abdolreza (Supervisor)
    Abstract
    Ultrafine- and fine-grained aluminum matrix nanocomposites were fabricated by friction stir processing (FSP) of 5052 Al alloy sheets containing different volume fractions of pre-inserted TiO2 nanoparticles (2, 3, 5 and 6 vol%). Annealed and wrought (H32) sheets were processed at different rotational (w=800-1400 rpm) and traverse speeds (v=50-200 mm/min). A special design tool (concave shoulder and cylindrical pin with regular threads) without changing the rotation and traveling directions was utilized. It is shown that a homogenous distribution of the reinforcement particles throughout the metal matrix is attained at w=1200 rpm and v =50 mm/min after 4 cumulative FSP passes. Transmission... 

    Design and Implementation of a X Band Front-end Receiver in GaAs Technology

    , M.Sc. Thesis Sharif University of Technology Sadeghabadi, Elham (Author) ; Medi, Ali (Supervisor)
    Abstract
    This thesis begins in an attempt to design an X band front-end receiver in GaAs pHEMT technology, suitable for microwave circuits which should be high frequency, low noise, high gain, as well as high power handling and should have stable characteristics at large number of productions. The front-end receiver consists of three blocks, namely limiter, low noise amplifier, and mixer, which are designed in ISDL group previously. The measurement result of the fabricated low noise amplifier was satisfactory, since it was close to its simulation result. However, due to the drawbacks of modeling the switching behavior of devices, the results of the two other blocks, i.e., limiter and mixer – which... 

    Resource Allocation in mmWave Massive MIMO Transmission in the Presence of Neighboring Cells Interference

    , M.Sc. Thesis Sharif University of Technology Sadeghabadi, Elahe (Author) ; Nasiri Kenari, Masoumeh (Supervisor)
    Abstract
    In Massive multiple input multiple output (MIMO) systems, due to utilizing a large antenna array in each base station, each user’s channel is orthogonal to one another. These systems have some valuable advantages such as the reduction of energy needed for transmission and significant improvement in spectral efficiency, which makes them be suitable for the next generation of wireless communication systems. In this thesis a massive MIMO working is considered on TDD mode, for wich the channel estimation is done in the base station using the pilot sequences recieved from users. At the beginning of each coherence block, users send their pilot sequences and the rest of the times is allocated to... 

    Friction stir welding of a P/M Al–Al2O3 nanocomposite: Microstructure and mechanical properties

    , Article Materials Science and Engineering: A (Elsevier) ; 2014, 585, 222-232 Khodabakhshi, F ; Sharif University Of Technology
    Abstract
    Solid-state joining of powder-metallurgy processed (P/M) Al–2 vol% Al2O3 (15 nm) nanocomposite by friction stir welding (FSW) was studied. The nanocomposite was prepared via high-energy mechanical milling followed by hot consolidation processes. The microstructure, mechanical properties and fracture behavior of the welds were evaluated and compared with FSWed wrought 1050 aluminum sheets (WAS). We have found that unlike WAS that can processed at various FSW conditions, the working window for the solid-state joining of P/M nanocomposite is narrow and only feasible at relatively high heating inputs. Microstructural studies showed the formation of melted zones with high hardness at the... 

    Fabrication and evaluation of bioresorbable scaffolds for interventional cardiology application with sufficient drug release

    , Article Iranian Journal of Basic Medical Sciences ; Volume 25, Issue 3 , 2022 , Pages 372-382 ; 20083866 (ISSN) Sadeghabadi, A ; Sadrnezhaad, S. K ; Asefnejad, A ; Nemati, N. H ; Sharif University of Technology
    Mashhad University of Medical Sciences  2022
    Abstract
    Objective(s): Bioresorbable scaffolds have been advocated as the new generation in interventional cardiology because they could provide temporary scaffolds and then disappear with resorption. Although, the available stents in clinical trials exhibited biosafety, efficacy, no death, and no apparent thrombosis, Mg-substrate degradation on drug release has not been investigated. Materials and Methods: Therefore, more research has been needed to legitimize the replacement of current stents with Mg-based stents. UV-Vis spectrophotometer, scanning electron microscope (SEM), X-ray diffraction (XRD), pH measurement, H2 evolution, and corrosion tests determined the change in hybrid properties and... 

    Differential scanning calorimetry study of constrained groove pressed low carbon steel: Recovery, recrystallisation and ferrite to austenite phase transformation

    , Article Materials Science and Technology (United Kingdom) ; Vol. 30, issue. 7 , 2014 , pp. 765-773 ; ISSN: 02670836 Khodabakhshi, F ; Kazeminezhad, M ; Sharif University of Technology
    2014
    Abstract
    Low carbon steel sheets are subjected to severe plastic deformation (SPD) via constrained groove pressing (CGP) up to five passes. As a result of this process, strain magnitude up to 5?8 is imposed to the sheets, which leads to grain size of 225 nm. These nanostructured steel sheets, due to their high dislocation density and ultrafine microstructure, are very sensitive to heating. In the present study, recovery, recrystallisation and ferrite to austenite phase transformation phenomena for the SPD steel are investigated using differential scanning calorimetry method. The results show that with increasing the strain in steel sheets, the deformed stored energy (released through recovery and... 

    The annealing phenomena and thermal stability of severely deformed steel sheet

    , Article Materials Science and Engineering A ; Volume 528, Issue 15 , June , 2011 , Pages 5212-5218 ; 09215093 (ISSN) Khodabakhshi, F ; Kazeminezhad, M ; Sharif University of Technology
    2011
    Abstract
    However, there are many works on annealing process of SPDed non-ferrous metals, there are limit works on annealing process of SPDed low carbon steel. Therefore, in this study the annealing responses after constrained groove pressing (CGP) of low carbon steel sheets have been investigated. The sheets are subjected to severe plastic deformation at room temperature by CGP method up to three passes. Nano-structured low carbon steel sheets produced by severe plastic deformation are annealed at temperature range of 100-600 °C for 20. min. The changes of their microstructures after deformation and annealing are studied by optical microscopy. The effects of large strain and annealing temperature on... 

    The effect of constrained groove pressing on grain size, dislocation density and electrical resistivity of low carbon steel

    , Article Materials and Design ; Volume 32, Issue 6 , 2011 , Pages 3280-3286 ; 02641275 (ISSN) Khodabakhshi, F ; Kazeminezhad, M ; Sharif University of Technology
    2011
    Abstract
    In this research, constrained groove pressing (CGP) technique is used for imposing severe plastic deformation (SPD) on the low carbon steel sheets. Using transmission electron microscopy (TEM), X-ray diffraction (XRD) and optical microscopy, the microstructural characteristics of produced sheets are investigated. The results show that CGP process can effectively refine the coarse-grained structure to an ultrafine grain range. Dislocation densities of the ultrafine grained low carbon steel sheets are quantitatively calculated and it is found that the CGP can effectively enhance the dislocation density of the sheets. Measurements of their electrical resistivity values show that microstructure... 

    Unidirectional transport of water through an asymmetrically charged rotating carbon nanotube

    , Article Journal of Physical Chemistry C ; Volume 121, Issue 42 , 2017 , Pages 23649-23658 ; 19327447 (ISSN) Khodabakhshi, M ; Moosavi, A ; Sharif University of Technology
    2017
    Abstract
    Achieving a high speed, unidirectional water flow through carbon nanotubes (CNTs) is a key factor in designing novel nanofluidic devices. In this study, utilizing molecular dynamics (MD) simulations, we propose a novel nanoscale water pump for directed water transportation using charged rotating CNTs. Two basic conditions for stable water flow, including thermodynamic nonequilibrium and spatial asymmetry, are provided by introducing partial charges on carbon atoms of the channel with asymmetric patterns and its rotation, respectively. We demonstrate that the performance of the water pump is proportional to the gradient of a linear charge distribution and angular velocity of the rotation. Our... 

    The role of microstructural features on the electrical resistivity and mechanical properties of powder metallurgy Al-SiC-Al2O3 nanocomposites

    , Article Materials and Design ; Volume 130 , 2017 , Pages 26-36 ; 02641275 (ISSN) Khodabakhshi, F ; Simchi, A ; Sharif University of Technology
    2017
    Abstract
    There are many engineering applications in which composite materials are required to satisfy two or more criteria regarding physical and mechanical properties. In this article, Al-matrix nanocomposites reinforced with different volume fractions of SiC nanoparticles (~ 50 nm; up to 6%) were processed by powder metallurgy (P/M) routes through mechanical milling and hot consolidation techniques. Microstructural studies showed that nano-metric Al2O3 particles with a size of ~ 20 nm and volume fraction of ~ 2% were formed and distributed in the metal matrix, owing to the surface oxides breaking. Microstructural analysis also revealed that the size of cellular structure and the density of... 

    Effects of support conditions and arrangement of prestressed rocking columns on the displacement of concrete frames under dynamic loads

    , Article Bulletin of Earthquake Engineering ; Volume 20, Issue 8 , 2022 , Pages 4175-4212 ; 1570761X (ISSN) Khodabakhshi, N ; Khaloo, A ; Sharif University of Technology
    Springer Science and Business Media B.V  2022
    Abstract
    In this paper, the effects of rocking and fixed base prestressed columns and conventional reinforced concrete columns on the response of frames are investigated. Also, the influence of some selected rocking base prestressed columns on the response of the concrete frame was studied. Three types of a concrete frame with conventional Reinforced Concrete columns, rocking, and fixed base prestressed columns were modeled using the finite element method in Opensees software. The details of the simulation of the rocking and fixed base columns in Opensees are described precisely. The results obtained from the models were compared with those of the literature to evaluate the validity of the results.... 

    A Privacy-Preserving Network Communication Protocol

    , M.Sc. Thesis Sharif University of Technology Khodabakhshi, Vahid (Author) ; Jalili, Rasool (Supervisor)
    Abstract
    One important aspect of privacy, is confidentiality. A common solution to preserve the confidentiality in network communications is ”Virtual Pri- vate Network”. VPNs todays are expected to be more secure and support higher throughput for their new applications, such as Inter-Cloud VPN and Virtual Private Cloud. block cipher is an important security com- ponent employed in most VPNs.On the other hand, most block ciphers have mathematical weaknesses in their structures, so the ttacker can use these weaknesses to break them faster than brute-force attacks. This thesis proposes a new method named ”Chaos-based Selective Key (CSK) Cryptosystem”, for increasing the security of block ciphers in a much... 

    Investigation of the Influence of Geometry and External Field on Fluid Flow Through Carbon Nanotubes by Molecular Dynamics Simulation

    , M.Sc. Thesis Sharif University of Technology Khodabakhshi, Milad (Author) ; Moosavi, Ali (Supervisor)
    Abstract
    Water transportation through carbon nanotubes is key for designing nanodevices. The directed transport of water molecules through a rotating charged carbon nanotube (CNT) is investigated by molecular dynamics simulations. It is found that the net flux of continuous unidirectional water flow depended sensitively on the charge distribution, charge density and rotation of the CNT. we find that for a constant charge density, the water flux increases with the increase of the charge difference. Besides, we find that the water flux shows a nonlinear dependence on the angular velocity of the rotation. The rotation of the CNT with low angular velocities, can not generate a continuous water flux. The... 

    Optimization of the Multi-Stage Compressor Design by Developing a Software for 2D Axial-Flow Compressor Analysis

    , M.Sc. Thesis Sharif University of Technology Khodabakhshi, Alireza (Author) ; Mazaheri, Karim (Supervisor)
    Abstract
    Streamline Curvature method is one of the most commonly used methods by industry for prediction of axial flow compressors. This method analyze axial compressor by solving radial equations in the meridional plane to locate streamlines and also by using empirical models to predict total pressure loss. Despite growth of CFD models, Streamline Curvature method has been considered as most practical method for compressor preliminary design and performance assessment because of it’s high speed and good precision. In the current work a C++ code (SLC) has been developed using streamline curvature for axial flow compressor performance analysis. This code receives compressor geometry, properties of... 

    Seismic Performance Improvement of Reinforced Concrete Moment Resisting Frame Systems With Some Selected Prestressed Columns and Comparison with Self-Centering Systems

    , M.Sc. Thesis Sharif University of Technology Khodabakhshi, Nahid (Author) ; Khaloo, Alireza (Supervisor)
    Abstract
    In seismic regions, the construction of structures with appropriate seismic performance and re-centering capability that can reduce residual displacement and damage, are necessary. As an alternative, prestressed columns were developed in recent years which can limit the permanent deformation and structural damage effectively. After severe damage and residual displacement of bridge piers and building’s columns, extensive research was carried out on prestressed columns. Most researches have been conducted on the prestressing of bridge piers and precast columns in self-centering system but prestressed columns in common moment resisting frame and comparing their advantages and disadvantages with... 

    Effects of non-isothermal annealing on microstructure and mechanical properties of severely deformed aluminum samples: Modeling and experiment

    , Article Transactions of Nonferrous Metals Society of China (English Edition) ; Volume 29, Issue 6 , 2019 , Pages 1127-1137 ; 10036326 (ISSN) Khodabakhshi, A. R ; Kazeminezhad, M ; Sharif University of Technology
    Nonferrous Metals Society of China  2019
    Abstract
    In order to investigate the evolution of microstructure and flow stress during non-isothermal annealing, aluminum samples were subjected to strain magnitudes of 1, 2 and 3 by performing 2, 4 and 6 passes of multi-directional forging. Then, the samples were non-isothermally annealed up to 150, 200, 250, 300 and 350 °C. The evolution of dislocation density and flow stress was studied via modeling of deformation and annealing stages. It was found that 2, 4 and 6 passes multi-directionally forged samples show thermal stability up to temperatures of 250, 250 and 300 °C, respectively. Modeling results and experimental data were compared and a reasonable agreement was observed. It was noticed that... 

    A Novel Discrete Model Proposal for Analysis of Soil-Structure Systems in Time Domain

    , M.Sc. Thesis Sharif University of Technology Khodabakhshi, Parisa (Author) ; Ghannaad, Mohammad Ali (Supervisor)
    Abstract
    Soil-structure interaction may have a considerable effect on the response of the superstructure. One of the main steps in analyzing the soil-structure system is determining the soil impedances which vary with frequency. Although it is possible to analyze a dynamic system with complex frequency-dependent property matrices, this cannot be taken into account in most standard general-purpose softwares. In addition, the nonlinear behaviour of the structure can only be studied in time domain. Therefore, in the past two decades efforts have been made to replace the soil media with discrete models having a small number of degrees of freedom (DOFs) and a few springs, dashpots and masses with... 

    The Effect of Non-isothermal Annealing on the Microstructure and Mechanical Properties of Severely Deformed Aluminum 1xxx

    , M.Sc. Thesis Sharif University of Technology Khodabakhshi, Amir Reza (Author) ; Kazeminezhad, Mohsen (Supervisor)
    Abstract
    Multi-directional forging is used as a severe plastic deformation process for producing ultrafine grained materials in which a sample undergoes consecutive compressive strains and as a result, coarse grains break to smaller grains. The strength of multi-directionally forged material increases because of grain refinement, although the high strain energy reserved in a sample after large plastic deformation lessens its ductility. Metals experience non-isothermal heating cycle during annealing till they reach the target temperature. Non-isothermal heating cycle can affect microstructure and mechanical properties of severely deformed material due to its high strain energy. Thus, investigation of... 

    Numerical and Experimental Analysis of Composite and Honeycomb Sandwich Panels Fatigue Behavior

    , M.Sc. Thesis Sharif University of Technology Khodabakhshi, Mohammad Erfan (Author) ; Sayyadi, Hassan (Supervisor)
    Abstract
    The use of sandwich panels has become very common in recent engineering designs when the weight of the part or structure is important and we are looking to lose weight while maintaining strength. The mechanical properties of this type of structures, including yield stress, fatigue behavior and estimation of their life, failure modes, natural frequencies and resonance phenomena, etc. are affected by various factors, including geometric and environmental factors. Fatigue is one of the most common failures in these structures. Composite materials have complex structures. In these materials, due to the viscoelastic properties, the fatigue behavior changes with changing stress, stress frequency,...