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Co-crystallization in ternary polyethylene blends: tie crystal formation and mechanical properties improvement
, Article Polymer International ; Volume 65, Issue 12 , 2016 , Pages 1405-1416 ; 09598103 (ISSN) ; Bagheri, R ; Pircheraghi, G ; Sharif University of Technology
John Wiley and Sons Ltd
2016
Abstract
Understanding the co-crystallization behavior of ternary polyethylene (PE) blends is a challenging task. Herein, in addition to co-crystallization behavior, the rheological and mechanical properties of melt compounded high density polyethylene (HDPE)/low density polyethylene (LDPE)/Zeigler − Natta linear low density polyethylene (ZN-LLDPE) blends have been studied in detail. The HDPE content of the blends was kept constant at 40 wt% and the LDPE/ZN-LLDPE ratio was varied from 0.5 to 2. Rheological measurements confirmed the melt miscibility of the entire blends. Study of the crystalline structure of the blends using DSC, wide angle X-ray scattering, small angle X-ray scattering and field...
Mechanical strength improvement of mud motor’s elastomer by nano clay and prediction the working life via strain energy
, Article International Journal of Engineering, Transactions B: Applications ; Volume 32, Issue 2 , 2019 , Pages 184-191 ; 1728144X (ISSN) ; Tabatabaee Ghomi, M ; Pircheraghi, G ; Sharif University of Technology
Materials and Energy Research Center
2019
Abstract
In directional drilling, the most important thing that leads to pulling out the drill string is end of mud motor working life. Considering the working conditions of down hole mud motors; increasing the mechanical properties of their stator’s elastomer is crucial. Some attempts were done to increase the motor performance through geometrical changes but lack of material improvement is significant in previous studies. In this study, NBR/nanoclay composite samples were prepared through melt intercalation in an internal mixer and tested with regard to the temperature and drilling mud of down hole. Hardness, tear, fatigue and tensile test results of neat NBR elastomer and nanocomposite of NBR and...
Simultaneous use of physical and chemical dispersants for electrical conductivity enhancement in polyamide 6/carbon nanotube/conductive carbon black hybrid nanocomposites
, Article Polymer-Plastics Technology and Materials ; 2021 ; 25740881 (ISSN) ; Jahanaray, B ; Pircheraghi, G ; Bagheri, R ; Sharif University of Technology
Taylor and Francis Ltd
2021
Abstract
Polyamide 6 (PA6)/carbon nanotube (CNT)/conductive carbon black (CCB) nanocomposites with the incorporation of physical and chemical dispersants were prepared via melt blending method to examine the synergistic enhancement of electrical conductivity. Investigation of modified CNT with octadecyl triphenyl phosphonium chloride (OTPC-CNT) as physical dispersant was performed by Fourier transform infrared, nuclear magnetic resonance, Raman spectroscopy, and thermogravimetric analysis. Morphological, electrical, rheological, and mechanical properties of PA6/CNT/CCB nanocomposites were examined by field emission scanning electron microscopy, transmission electron microscopy, digital insulation...
Simultaneous use of physical and chemical dispersants for electrical conductivity enhancement in polyamide 6/carbon nanotube/conductive carbon black hybrid nanocomposites
, Article Polymer-Plastics Technology and Materials ; Volume 61, Issue 3 , 2022 , Pages 263-275 ; 25740881 (ISSN) ; Jahanaray, B ; Pircheraghi, G ; Bagheri, R ; Sharif University of Technology
Taylor and Francis Ltd
2022
Abstract
Polyamide 6 (PA6)/carbon nanotube (CNT)/conductive carbon black (CCB) nanocomposites with the incorporation of physical and chemical dispersants were prepared via melt blending method to examine the synergistic enhancement of electrical conductivity. Investigation of modified CNT with octadecyl triphenyl phosphonium chloride (OTPC-CNT) as physical dispersant was performed by Fourier transform infrared, nuclear magnetic resonance, Raman spectroscopy, and thermogravimetric analysis. Morphological, electrical, rheological, and mechanical properties of PA6/CNT/CCB nanocomposites were examined by field emission scanning electron microscopy, transmission electron microscopy, digital insulation...
Use of surfactants in cellulose nanowhisker/epoxy nanocomposites: effect on filler dispersion and system properties
, Article Cellulose ; Volume 22, Issue 5 , 2015 , Pages 3161-3176 ; 09690239 (ISSN) ; Meng, Q ; Pircheraghi, G ; Manas-Zloczower, I ; Sharif University of Technology
Kluwer Academic Publishers
2015
Abstract
Cellulose nanowhiskers (CNWs) prepared via TEMPO mediated oxidation are used as biodegradable filler in an epoxy matrix. Since CNWs are hydrophilic and epoxy is hydrophobic, amphiphilic block copolymer surfactants are employed to improve the interactions between the filler and the matrix. The surfactants used are Pluronics, a family of triblock copolymers containing two poly(ethylene oxide) blocks and one poly(propylene oxide) block. In this study, Pluronic L61 and L121 with molecular weight of 2000 and 4400 g/mol and hydrophilic to lipophilic balance of 3 and 1 respectively, are used and their effect on the dispersion of CNWs in epoxy is discussed. The hydrophilic tails of Pluronics...
Melt compounding of thermoplastic polyurethanes incorporating 1D and 2D carbon nanofillers
, Article Polymer - Plastics Technology and Engineering ; Volume 56, Issue 7 , 2017 , Pages 732-743 ; 03602559 (ISSN) ; Pedrazzoli, D ; Pircheraghi, G ; Manas Zloczower, I ; Sharif University of Technology
Taylor and Francis Inc
2017
Abstract
Thermoplastic polyurethane nanocomposites incorporating carbon nanotubes and graphene nanoplatelets were prepared through melt blending and compression molding, and the compounding process was optimized taking into account the different physical properties of one-dimensional carbon nanotubes and two-dimensional graphene nanoplatelets. Filler dispersion was further improved in the case of carbon nanotubes by noncovalent surface modification using a specific surfactant. The well-dispersed nanofillers favored enhanced phase separation in the thermoplastic polyurethane, leading to a better microstructure, which is able to improve the load transfer and maximize the tensile and viscoelastic...
Experimental and numerical investigation of the effect of laser input energy on the mechanical behavior of stainless steel and polyamide joint in the LAMP joining method
, Article International Journal of Advanced Manufacturing Technology ; Volume 113, Issue 11-12 , 2021 , Pages 3585-3597 ; 02683768 (ISSN) ; Ranjbarnodeh, E ; Shoja Razavi, R ; Pircheraghi, G ; Sharif University of Technology
Springer Science and Business Media Deutschland GmbH
2021
Abstract
The present study investigated the effect of laser input energy on the quality and mechanical behavior of a 304 stainless steel–polyamide 6 joint in the laser-assisted metal and polymer direct joining (LAMP) method experimentally and numerically. After the proposed heat transfer model was validated, it was determined whether there was an optimal amount of laser input energy that could produce a joint with favorable quality and mechanical behavior. Among different laser input energies used in this study, 28-J/mm energy can provide more uniform and extensive wetting of the metal surface by the polymer, while excessive polymer degradation in the joint zone was prevented. As a result, an optimal...
The effect of laser pre-oxidation of stainless steel on joining to polyamide by the LAMP method
, Article Kovove Materialy ; Volume 61, Issue 2 , 2023 , Pages 91-101 ; 0023432X (ISSN) ; Ranjbarnodeh, E ; Shoja Razavi, R ; Pircheraghi, G ; Sharif University of Technology
Institute of Materials and Machine Mechanics, Slovak Academy of Sciences
2023
Abstract
Among the factors affecting the efficiency of laser-assisted metal and polymer (LAMP) joints, the surface condition of the joint components is one of the most important ones. So, the present study explored the effect of laser pre-oxidation of stainless steel 304 (SS304), as a novel pretreatment method, on SS304/polyamide 6 joint strength. The assessments revealed that in spite of the potential of surface pre-oxidation of SS304 for improving joint strength, the strength of the joint was reduced by ∼ 25 % in practice because, firstly, the wettability of the metal by the polymer was reduced due to the reduction of heat transfer by the metal in the preoxidized zone and secondly, the oxide layer...
Cellulose nanofiber-based ethylene scavenging antimicrobial films incorporated with various types of titanium dioxide nanoparticles to extend the shelf life of fruits
, Article ACS Applied Polymer Materials ; Volume 4, Issue 7 , 2022 , Pages 4765-4773 ; 26376105 (ISSN) ; Ezati, P ; Rhim, J. W ; Bagheri, R ; Pircheraghi, G ; Sharif University of Technology
American Chemical Society
2022
Abstract
TiO2 nanotubes (TNTs) were synthesized hydrothermally and modified by Cu2O using a sol-gel method to provide photocatalytic activity in visible light. Cellulose nanofiber (CNF)-based films were prepared by adding TiO2, TNTs, and Cu2O-modified TNT (TNT-Cu2O). The TiO2-based nanoparticles (TiO2, TNTs, and TNT-Cu2O) were uniformly distributed in the base polymer to make compatible and flexible films. The incorporation of nanoparticles significantly enhanced the UV-shielding properties of the film while slightly decreasing the transparency. Incorporating nanofillers improved the film's mechanical and water resistance properties depending on the nanoparticle type. The TNT-Cu2O-added CNF film...
Carboxymethyl cellulose-based functional film integrated with chitosan-based carbon quantum dots for active food packaging applications
, Article Progress in Organic Coatings ; Volume 166 , 2022 ; 03009440 (ISSN) ; Rhim, J. W ; Bagheri, R ; Pircheraghi, G ; Lotfali, E ; Sharif University of Technology
Elsevier B.V
2022
Abstract
A chitosan-based carbon quantum dots (CQDs) with multifunctional properties were synthesized using a hydrothermal process. The CQDs were spherical with an average size of 7.8 ± 2.4 nm. The CQD showed strong antioxidant activity, potent antibacterial activity against E. coli and L. monocytogenes, and antifungal activity against A. niger and P. chrysogenum. In addition, the prepared CQD showed negligible cytotoxicity against L929 cells even at a concentration of 500 μg/mL. Carboxymethyl cellulose (CMC)-based functional films were fabricated by adding various amounts of CQD. The CQDs were evenly dispersed in the polymer matrix to form a highly transparent UV-blocking film. The addition of CQD...
Alginate-based multifunctional films incorporated with sulfur quantum dots for active packaging applications
, Article Colloids and Surfaces B: Biointerfaces ; Volume 215 , 2022 ; 09277765 (ISSN) ; Priyadarshi, R ; Rhim, J. W ; Lotfali, E ; Bagheri, R ; Pircheraghi, G ; Sharif University of Technology
Elsevier B.V
2022
Abstract
Sulfur quantum dots (SQDs) were fabricated using a facile hydrothermal method and used for the preparation of functional food packaging film and compared the properties with other sulfur-based fillers like elemental sulfur (ES) and sulfur nanoparticles (SNP). The SQDs have an average size of 5.3 nm and were very stable in aqueous suspension. Unlike other sulfur-based fillers, the SQD showed high antioxidant, antibacterial and antifungal activity, but no cytotoxicity was found for L929 mouse fibroblasts even after long-term exposure of 48 h. When sulfur-based fillers were added to the alginate film, SQD was more evenly dispersed in the polymer matrix than SNP and ES. The addition of SQD to...
Studying the Effects of Sintering Parameters on the Microstructure and Properties of Porous Polymeric Products
, M.Sc. Thesis Sharif University of Technology ; Pircheraghi, Gholamreza (Supervisor)
Abstract
Nowadays filtration process is increasingly used in various areas such as water purification, food industries, filtering the air dust and other separation applications. In this work, the HDPE microporous filters have been fabricated at different temperature, pressure and time conditions via sintering process and then were characterized by different techniques. It can be expected that microstructure and mechanical properties of the samples could be controlled by changing the fabrication parameters of the process and also by changing the properties of the resin such as powder shape, particle size and rheological properties. In the first step, by using DSC, MFI, rheology test and optical...
Recycling of Silica from Spent Lead-Acid Battery Separators and Reusing in FSPCM for Thermal Energy Storage
, M.Sc. Thesis Sharif University of Technology ; Pircheraghi, Gholamreza (Supervisor)
Abstract
To reduce material consumption needed in production as well as avoiding thousands of tons of contaminations produced by spent materials in the battery industry, recycling was taken into consideration. In this study silica was recycled from spent lead-acid battery separators by the pyrolysis process. silica along with high-density polyethylene (HDPE), can be used as supporting material for fabricating form-stable phase change materials (FSPCM). FSPCMs are of great ability to be used as thermal energy storage (TES) in different parts of a building e. g. wallboards to reduce energy consumption. In this line, an eutectic mixture of lauric acid, palmitic acid and paraffin with the melting point...
Effect of Masterbatch Carrier Type on Rheological, Thermal and Mechanical Properties of Bimodal Polyethylene Compounds with Different Short Chain Branching Distribution
, M.Sc. Thesis Sharif University of Technology ; Pircheraghi, Gholamreza (Supervisor)
Abstract
Polyethylene is one of the most widely used industrial materials for producing water and gas pipes due to low pricing and mechanical properties and high corrosion resistance. Various parameters such as molecular weight and the short chain branches distribution strongly affect the mechanical properties of these materials. PE100 grade of this material has been introduced with bimodal molecular weight distribution, has excellent mechanical properties and especially high creep resistance and today is used for pipe production in water distribution systems. In the first part of this study, the effect of 1-butene comonomers on different properties of three PE100 and two PE80 resins produced in...
Studying Processability, Mechanical and Rheological Properties of Cross-Linked EVA Through Vitrimerization Reaction
, M.Sc. Thesis Sharif University of Technology ; Pircheraghi, Gholamreza (Supervisor)
Abstract
Polymers are divided into two categories: thermoset and thermoplastic. Thermoset polymers cannot be reprocessed and deformed due to their network structure and permanent and rigid crosslinking connections. Vitrimer materials that have been proposed in recent years; In addition to maintaining their network properties at low temperatures, they have the ability to change shape and reprocess at high temperatures. Therefore, the production of Vitrimer materials can be a suitable solution to reduce the amount of plastic waste produced. These materials consist of a dynamic covalent network in which vitrimerization reactions are performed between different functional groups. The basic polymer used...
Fabrication and Characterization of Antibacterial Properties of Electroceutical Wound Dressings Containing Silver and Zinc Oxide Nanoparticles
, M.Sc. Thesis Sharif University of Technology ; Pircheraghi, Gholamreza (Supervisor)
Abstract
The World Health Organization's annual statistics show that 83% of wounds are caused by bacterial infections. Diabetic ulcers affect approximately 28 million people worldwide. The use of antibacterial dressings can help control infections. Recent studies have found that electrical stimulation can accelerate wound healing. However, there is still a need for interventions that speed up epithelial tissue formation. New dressings with zinc and silver particles that have electrical activity are being developed, but research on these methods is limited. Zinc oxide nanoparticles have been used as antibacterial agents due to their unique surface properties. This research aims to use these...
Titania nanotubes decorated with cu(I) and cu(II) oxides: antibacterial and ethylene scavenging functions to extend the shelf life of bananas
, Article ACS Sustainable Chemistry and Engineering ; Volume 9, Issue 19 , 2021 , Pages 6832-6840 ; 21680485 (ISSN) ; Priyadarshi, R ; Rhim, J. W ; Hong, S. I ; Bagheri, R ; Pircheraghi, G ; Sharif University of Technology
American Chemical Society
2021
Abstract
Titanium nanotubes (TNTs) were prepared using TiO2 and decorated with CuO and Cu2O to have photocatalytic efficiency under visible light. TNTs decorated with copper oxides (TNT-CuO and TNT-Cu2O) were confirmed by the elemental mapping and XPS results. Unlike TNT and TiO2, TNT-CuO and TNT-Cu2O showed higher photocatalytic activity, such as antimicrobial and ethylene scavenging activities under visible light. Between the two types of copper oxide-decorated TNTs, TNT-Cu2O showed photocatalytic activity higher than that of TNT-CuO. The ethylene scavenging activity of TNT-Cu2O was about 40% higher than that of TNTs and TNT-CuO. The photocatalytic activity of titanium-based nanoparticles was...
The Relationship between Microstructure, Properties and Processing in Bimodal Polyethylene with Medium Density Used in Drip Irrigation Tapes
, M.Sc. Thesis Sharif University of Technology ; Pircheraghi, Gholamreza (Supervisor)
Abstract
In recent years, Jam Petrochemical has produced and designed irrigation tape polyethylene grades but because these grades don’t have sufficient melt strength during high-speed processing, it hasn’t been welcomed by manufacturers. Therefore, in first step of this study we tried to characterize the specimens by using referenced grade and by taking advantages of thermal, rheological and mechanical analysis. We observed that main difference between jam petrochemical grades and referenced grade is related to type and content of comonomer and also long chain branches. Based on the obtained results, the ideal molecular structure of irrigation tape grade, include chains with bimodal distribution...
Improving the Properties and Increasing the Recyclability of Polypropylene Using Vitrimerization Reactions
, M.Sc. Thesis Sharif University of Technology ; Pircheraghi, Gholamreza (Supervisor)
Abstract
Among the plastics produced around the world, polyolefins are the most used in human daily life and make up about two-thirds of the plastics produced in the world. Also, the most plastic waste is related to polyolefins, which are non-biodegradable plastics. One of the things that have challenged the recycling of polyolefins by traditional methods such as mechanical recycling is the loss of mechanical and rheological properties as well as their degradation. One of the methods of improving properties and postponing degradation is the use of vitrimerization reactions, as a result of which, in thermoplastics, a compatible covalent network is created, which gives the plastic the ability to behave...
Exploring the Impact of Nanosilica Surface Modification and Polyphenolic Antioxidants on the Mechanical Properties of NR/SBR Blends
, M.Sc. Thesis Sharif University of Technology ; Pircheraghi, Gholamreza (Supervisor)
Abstract
Sustainable development is a crucial objective in contemporary human societies, particularly in the production of polymer materials. One of the key pillars in achieving this goal is the preservation of the environment through the use of eco-friendly additives in polymer production, especially elastomers. The aging of rubbers (elastomers) due to environmental factors such as heat, oxygen, ozone, and UV light is inevitable. However, antioxidants are employed to delay this aging process and extend the performance life of rubber compounds. In this study, extracts from green sources like green tea and grape seeds were evaluated for their antioxidant properties using the DPPH Assay and EC50...