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    Recycled ceramic waste high strength concrete containing wollastonite particles and micro-silica: A comprehensive experimental study

    , Article Construction and Building Materials ; Volume 201 , 2019 , Pages 11-32 ; 09500618 (ISSN) Zareei, S. A ; Ameri, F ; Shoaei, P ; Bahrami, N ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    This study investigated the effects of combined utilization of wollastonite particles and recycled waste ceramic aggregate (RWCA) on high strength concrete (HSC) properties. Two groups of mixtures were manufactured: 1) concrete mixtures in which cement was partially replaced with wollastonite at values ranging from 10% to 50%, and 2) mixtures in which wollastonite was used at the aforementioned dosages and 50% of natural coarse aggregate was replaced with RWCA. In addition, 10% of cement weight micro-silica was added to all mixtures. The concrete behavior in terms of strength, durability, resistance against acidic environment, and performance under elevated temperatures ranging from 20 °C to... 

    Cell-structure and flow stress investigation of largely strained non-heat-treatable Al-alloys using dislocation based model

    , Article Materials Science and Engineering A ; Volume 739 , 2019 , Pages 167-172 ; 09215093 (ISSN) Firouzabadi, S. S ; Kazeminezhad, M ; Sharif University of Technology
    Elsevier Ltd  2019
    Abstract
    A severe plastic deformation is widely used to improve the mechanical properties of non-heat-treatable alloys. Thus, the investigation and modeling of microstructural evolutions of materials during large straining are of great importance. In this research, substructural evolutions of four different kinds of Al alloys namely Al-1Mn, Al-1Mg, Al-2.77Mg and Al-5Mg, have been studied using a dislocation based model and the mechanical properties of these alloys have been compared considering all microstructural parameters such as dislocation density, subgrain size, cell wall misorientation and the effect of alloying element. As a result, a simplified general equation has been expressed in order to... 

    Finite element and experimental method for analyzing the effects of martensite morphologies on the formability of DP steels

    , Article Mechanics Based Design of Structures and Machines ; 2019 ; 15397734 (ISSN) Alipour, M ; Torabi, M. A ; Sareban, M ; Lashini, H ; Sadeghi, E ; Fazaeli, A ; Habibi, M ; Hashemi, R ; Sharif University of Technology
    Taylor and Francis Inc  2019
    Abstract
    In this article, we investigated the effect of martensite morphology on the mechanical properties and formability of dual phase steels. At first, three heat treatment cycles were subjected to a low-carbon steel to produce ferrite–martensite microstructure with martensite morphology of blocky-shaped, continuous, and fibrous. Tensile tests were then carried out so as to study mechanical properties, particularly the strength and strain hardening behavior of dual phase steels. In order to study the formability of dual phase samples, Forming Limit Diagram was obtained experimentally and numerically. Experimental forming limit diagram was obtained using Nakazima forming test, while Finite Element... 

    Intercritical heat treatment temperature dependence of mechanical properties and corrosion resistance of dual phase steel

    , Article Materials Research ; Volume 22, Issue 1 , 2019 ; 15161439 (ISSN) Abedini, O ; Behroozi, M ; Marashi, P ; Ranjbarnodeh, E ; Pouranvari, M ; Sharif University of Technology
    Universidade Federal de Sao Carlos  2019
    Abstract
    This study investigated the effect of intercritical heat treatment temperature on the tensile properties, work hardening and corrosion resistance of dual phase steel. Ferrite-martensite dual phase steel with different martensite volume fractions were obtained after heat treatment at different intercritical temperatures. Microstructure, mechanical properties of steel were measured and the corrosion resistance was evaluated via polarization test. Tensile strength of the specimens increased by increasing the martensite volume fraction up to 48.2%. Further increase in martensite volume fraction led to decrease in tensile strength. Work hardening behavior analyzing showed that in DP steel with... 

    Synthesis of SiOC/Al2O3 nano/macro composites through PDC method; investigation of potentials as layers of a packed bed reactor membrane

    , Article Ceramics International ; Volume 46, Issue 11 , 2020 , Pages 19000-19007 Abdollahi, S ; Paryab, A ; Rahmani, S ; Akbari, M ; Sarpoolaky, H ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Thanks to a wide range of pore sizes by nano/macro composites of SiOC/Al2O3, such composites can serve as different layers of the structure of Packed Bed Reactor Membranes (PBRM). In the present study, the Polymer-Derived Ceramics method (PDC) has been used to synthesize nano/macro structures. Firstly, the effect of toluene as an extra carbon source on structure and microstructure of SiOC glass-ceramics was evaluated, such that, 4% (Vol) toluene was recognized as the proper amount to facilitate the synthesis of β-SiC at 1300 °C proved by XRD, Raman spectroscopy, and HR-TEM. Moreover, the presence of micro/meso-porosities was assessed by BET and TEM, indicating the capability of SiOC to serve... 

    Development of metal matrix composites and nanocomposites via double-pressing double-sintering (dpds) method

    , Article Materials Today Communications ; Volume 25 , 2020 Alem, A. A ; Latifi, R ; Angizi, S ; Mohamadbeigi, N ; Rajabi, M ; Ghasali, E ; Orooji, Y ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Achieving high densification parameter is an essential factor for metal-based composites to represent excellent mechanical characteristics. Among various compaction methods, double-pressing double-sintering (DPDS) has gained the attraction of researchers to fabricate metal-matrix composites (MMCs) as an efficient technique over the last decade. In this process, the powder will be pre-pressed and then pre-sintered; it helps reduce work hardening and prepare the sample for better densification in the next pressing and sintering step. By employing the above-mentioned method, carbon nanotube (CNT) reinforced aluminum nanocomposites; ZrB2 reinforced copper nanocomposites; and CNT reinforced... 

    Finite element and experimental method for analyzing the effects of martensite morphologies on the formability of DP steels

    , Article Mechanics Based Design of Structures and Machines ; Volume 48, Issue 5 , 2020 , Pages 525-541 Alipour, M ; Torabi, M. A ; Sareban, M ; Lashini, H ; Sadeghi, E ; Fazaeli, A ; Habibi, M ; Hashemi, R ; Sharif University of Technology
    Taylor and Francis Inc  2020
    Abstract
    In this article, we investigated the effect of martensite morphology on the mechanical properties and formability of dual phase steels. At first, three heat treatment cycles were subjected to a low-carbon steel to produce ferrite–martensite microstructure with martensite morphology of blocky-shaped, continuous, and fibrous. Tensile tests were then carried out so as to study mechanical properties, particularly the strength and strain hardening behavior of dual phase steels. In order to study the formability of dual phase samples, Forming Limit Diagram was obtained experimentally and numerically. Experimental forming limit diagram was obtained using Nakazima forming test, while Finite Element... 

    Microstructural and mechanical characteristics of AA1050/mischmetal oxide in-situ hybrid surface nanocomposite by multi-pass friction stir processing

    , Article Surface and Coatings Technology ; Volume 388 , 2020 Alishavandi, M ; Ebadi, M ; Alishavandi, S ; Kokabi, A. H ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    Surface hybrid in-situ aluminum matrix nanocomposite (AMNC) was fabricated by multi-pass friction stir processing (FSP) and a tool traversing speed of 100 mm/min and rotating speed of 1600 rpm with an objective to enhance mechanical properties. Mischmetal oxide (MMO) powder with an initial size of 50 nm, at a concentration of 8.5 vol% was used as the reinforcing particles. EDS particle analyses revealed in-situ solid-state chemical reactions between the Al matrix and the MMO particles. The reaction products, MM3Al and MM3Al11, were distributed uniformly in the discontinuously dynamic recrystallized nano and UFG microstructure. Increasing pass number improved the particle distribution and... 

    Numerical analysis of vibration effect on friction stir welding by smoothed particle hydrodynamics (SPH)

    , Article International Journal of Advanced Manufacturing Technology ; Volume 110, Issue 1-2 , 2020 , Pages 209-228 Bagheri, B ; Abdollahzadeh, A ; Abbasi, M ; Kokabi, A. H ; Sharif University of Technology
    Springer  2020
    Abstract
    A numerical analysis is improved to study the effect of vibration on temperature history, heat generation, and mechanical properties during the friction stir welding process with different welding speeds. In this investigation, smoothed particle hydrodynamics (SPH) was applied to improve the 3D numerical analysis for simulation of the friction stir welding (FSW) process and friction stir vibration welding (FSVW) under different welding speeds. According to the experimental analysis, the grain size of the FSVW-ed sample is finer compared with that of the FSW-ed sample. The analysis was validated through a comparison of the simulated thermal cycles with the experimental results. There was a... 

    Enhancement in microstructural and mechanical performance of AA7075 aluminum alloy via severe shot peening and ultrasonic nanocrystal surface modification

    , Article Applied Surface Science ; Volume 528 , 2020 Efe, Y ; Karademir, I ; Husem, F ; Maleki, E ; Karimbaev, R ; Amanov, A ; Unal, O ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    In this experimental study, AA7075 aluminum alloy was subjected to pure severe shot peening (SSP), pure ultrasonic nanocrystalline surface modification (UNSM) and the combination of these two treatments. The treated specimens were analyzed with detailed microstructure analysis, micro-hardness, surface roughness, XRD investigations and wear-friction tests. The results demonstrated that UNSM exhibited fine surface finish and provided minimum surface roughness with the Ra value of 0.8 µm. Moreover, UNSM played an important role in the reduction of Ra as a secondary treatment. Electron back scatter diffraction (EBSD) analysis, full width at half maximum (FWHM) evaluations and compressive... 

    Fatigue performance of polymer and ordinary cement concrete under corrosive conditions: A comparative study

    , Article Engineering Failure Analysis ; Volume 111 , 2020 Ghassemi, P ; Rajabi, H ; Toufigh, V ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    Many concrete structures such as bridges, offshore structures, and pavements are under cyclic loads when they are exposed to different environmental conditions during their lifespan. The durability and fatigue performance of these structures are significant issues that should be considered. Therefore, this study investigated the long-term environmental effects on Polymer Concrete (PC) and Ordinary Cement Concrete (OCC) subjected to cyclic fatigue loading under four different environmental conditions (freshwater, seawater, acidic and alkaline) for six months. Concrete specimens are tested under high cyclic loading with the frequency of 6 Hz and low cyclic loading with a frequency of 1 Hz.... 

    Synthesis and characterization of 3D-printed functionally graded porous titanium alloy

    , Article Journal of Materials Science ; Volume 55, Issue 21 , 22 April , 2020 , Pages 9082-9094 Hindy, A ; Farahmand, F ; Pourdanesh, F ; Torshabi, M ; Al Janabi, A. H ; Rasoulianboroujeni, M ; Tayebi, L ; Tabatabaei, F. S ; Sharif University of Technology
    Springer  2020
    Abstract
    This study aims to 3D print titanium alloy constructs incorporating gradient of porosities, from the fully dense core to the porous outer surface. Gradient porous specimens were prepared using selective laser melting (SLM). Fully dense specimens fabricated by SLM were used as the control group. Characterization of samples was done using X-ray tomography, uniaxial compression testing, and optical and scanning electron microscopes. The biocompatibility of fabricated samples was investigated using human periodontal ligament stem cells via assessment of cell attachment, viability, and proliferation by direct and indirect assays. The data were analyzed using ANOVA and Tukey’s post hoc test.... 

    Influence of new superhydrophobic micro-structures on delaying ice formation

    , Article Colloids and Surfaces A: Physicochemical and Engineering Aspects ; Volume 595 , 2020 Kamali Moghadam, R ; Taeibi Rahni, M ; Javadi, K ; Davoudian, S. H ; Miller, R ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    Drop motion on different types of new proposed micro-structure surfaces has been numerically investigated to find the optimum structure in view point of ice formation delaying. The droplet automatically moves on the inclined surfaces due to gravity forces. To validate the numerical algorithm, three different bench mark problems have been considered. The results indicate that the present algorithm is trustable for the presented numerical simulations. Then the validated numerical approach has been used to simulate droplet motion on nine proposed superhydrophobic surfaces in the same conditions. Comparison the drop motion on different micro-structure surfaces at different time indicate that... 

    Mesoscopic rheological modeling of drilling fluids: Effects of the electrolyte

    , Article Journal of Petroleum Science and Engineering ; Volume 195 , 2020 Kariman Moghaddam, A ; Ramazani Saadatabadi, A ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    Drilling fluid is a complex fluid, including base fluid and other materials, carrying out the vital functions during drilling operation such as cutting transport and controlling formation pressure. In order to optimize performance of a drilling process, a reliable rheological model is required in the computation of fluid flow dynamics. Time-independent Generalized Newtonian formulation are the most common models for describing the rheological behavior of drilling fluids due to its simplicity and ease of use, in spite the fact that they are not able to predict the normal stresses and could not consider effects of active components on the rheological behavior of the drilling fluid and also... 

    Rheological modeling of water based drilling fluids containing polymer/bentonite using generalized bracket formalism

    , Article Journal of Petroleum Science and Engineering ; Volume 189 , 2020 Kariman Moghaddam, A ; Ramazani Saadatabadi, A ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    Drilling fluids consist of several components with different physical and structural form which can be assumed as complex fluids. Optimum performance of drilling process could be obtained through the dynamic fluid computation which requires a reliable mathematical model capable to predict transient and steady state rheological behavior of drilling fluid. Generalized Newtonian formulations are the most popular models for drilling fluids due to their simplicity in spite of their inabilities to predict transient and elastic behavior of such fluids. In this paper, we have developed a mathematical model to predict transient and steady state rheological behavior of the complex fluids on the scale... 

    A simple route to synthesize zirconia antistatic thin films on glass substrates and their application to polymer-based composites

    , Article Materials Chemistry and Physics ; Volume 244 , 1 April , 2020 Naderi, A ; Dolati, A ; Afshar, A ; Palardy, G ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    In this study, zirconia antistatic coatings were synthesized by a simple dip coating sol-gel route on glass substrates, then applied to polymer-based composites to potentially improve their dust or water repellent capabilities. The coating solution contained a precursor (ZrCl4), solvent (isopropanol) and coupling agent. FTIR spectra confirmed ZrO2 and ZrO compounds in both solution and antistatic coating. FE-SEM images indicated ZrO2 fibers’ thickness was controlled by changing ZrCl4 concentration (150 g–15 g ZrCl4/l) or relative humidity (20%–60%) during coating drying. Fibers grew thicker when decreasing the former or increasing the latter. The surface electrical resistivity for all... 

    Glucose cross-linked hydrogels conjugate HA nanorods as bone scaffolds: Green synthesis, characterization and in vitro studies

    , Article Materials Chemistry and Physics ; Volume 242 , 2020 Mazaheri Karvandian, F ; Shafiei, N ; Mohandes, F ; Dolatyar, B ; Zandi, N ; Zeynali, B ; Simchi, A ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    In the expanding field of tissue engineering (TE), improvement of biodegradability and osteoconductivity of biomaterials are required. The use of non-toxic reagents during manufacturing processes is also necessary to decrease toxicity and increase cell viability in vivo. Herein, we present a novel approach to prepare hydroxyapatite (HA) nanorods from sea bio-wastes through a green and eco-friendly wet-chemical processing for bone TE. Highly porous natural polymer-ceramic nanocomposites made of HA, gelatin (Ge) and carboxymethyl cellulose (CMC) hydrogels are then introduced. It was found that cross-linking of the hydrogel matrix by glucose as a green reagent affected all characteristics of... 

    Stable high dielectric properties in (Cr, Nb) co-doped SnO2 ceramics

    , Article Materials Chemistry and Physics ; Volume 246 , May , 2020 Maleki Shahraki, M ; Golmohammad, M ; Chermahini, M. D ; Mahmoudi, P ; Moghadam, H. A ; Sharif University of Technology
    Elsevier Ltd  2020
    Abstract
    In this research, the microstructure, dielectric, and non-Ohmic properties of (Cr, Nb) co-doped SnO2 ceramics, (Cr0.5, Nb0.5)xSn1-xO2 with x% = 0, 0.5, 1.0, 2.0, 5.0, and 10.0, as a colossal dielectric material and a prospective alternative to co-doped TiO2 ceramics were studied. The X-ray diffraction results indicated that in all compositions, the cassiterite phase was achieved without any secondary phases. Moreover, field-emission secondary electron microscopy showed that the microstructure of samples has different morphologies including typical grains, enlarged grains and prism-like grains microstructure for various sintered samples. The maximum dielectric constant (2737) accompanied by... 

    Ring-like laser spot welding of Ti grade2 to AAl3105-O using AlSiMg filler metal

    , Article Optik ; Volume 206 , 2020 Shehab, A. A ; Sadrnezhaad, S. K ; Torkamany, M. J ; Fakouri Hasanabadi, M ; Alali, M ; Mahmoud, A. K ; Abass, M. H ; Kokabi, A. H ; Sharif University of Technology
    Elsevier GmbH  2020
    Abstract
    A pulsed Nd:YAG laser welding of 1 mm thick Ti (grade 2) to 0.5 mm thick AA3105-O was performed by a ring-like spot joining. A 0.15 mm thick Al-12Si-2.5 Mg alloy was used as a filler metal. Intermetallic compounds of Ti3Al, Ti2Al, TiAl, Ti(Al,Si)3 and Mg2Si were observed respectively from Ti towards Al sides at the fusion zone. Si and Mg increased the strength of the Al re-solidified zone near the Ti-Al interface because of their easy dissolution in the Al. Exothermic effect of the Mg addition resulted in porosity in the welding zone. Joint strength of up to 98% of the Al base metal was obtained, which was much 14% higher than that achieved by autogenous welding. © 2019 Elsevier GmbH  

    Enzymatic outside-in cross-linking enables single-step microcapsule production for high-throughput three-dimensional cell microaggregate formation

    , Article Materials Today Bio ; Volume 6 , 2020 Van Loo, B ; Salehi, S. S ; Henke, S ; Shamloo, A ; Kamperman, T ; Karperien, M ; Leijten, J ; Sharif University of Technology
    Elsevier B.V  2020
    Abstract
    Cell-laden hydrogel microcapsules enable the high-throughput production of cell aggregates, which are relevant for three-dimensional tissue engineering and drug screening applications. However, current microcapsule production strategies are limited by their throughput, multistep protocols, and limited amount of compatible biomaterials. We here present a single-step process for the controlled microfluidic production of single-core microcapsules using enzymatic outside-in cross-linking of tyramine-conjugated polymers. It was hypothesized that a physically, instead of the conventionally explored biochemically, controlled enzymatic cross-linking process would improve the reproducibility,...