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All Publications

[1] Karimi F, Soltani P, Zarrebini M, Hassanpour A. Acoustic and thermal performance of polypropylene nonwoven fabrics for insulation in buildings. Journal of Building Engineering. 2022;50:104125.

[2] Abedzade Atar H, Zarrebini M, Hasani H, Rezaeepazhand J. Free vibration analysis of integrated and non-integrated corrugated core sandwich panels reinforced with weft-knitted fabrics. Journal of Sandwich Structures 2021;23:1571-93.

[3] Abedzade Atar H, Zarrebini M, Hasani H, Rezaeepazhand J. Determination of corrugated core sandwich panels elastic constant based on three different experimental methods and effect of structural integrity on flexural properties. SN Applied Sciences. 2021;3:1-11.

[4] Hassani P, Soltani P, Ghane M, Zarrebini M. Porous resin-bonded recycled denim composite as an efficient sound-absorbing material. Applied Acoustics. 2021;173:107710.

[5] Hassanzadeh S, Jafari Nedoushan R, Dibajian S-H, Hasani H, Zarrebini M. Implementation of multiscale modeling and failure mechanism in investigating load bearing capacity of 3D integrated multi-cellular knitted composites. Mechanics of Advanced Materials Structures. 2021:1-18.

[6] Paknejad SH, Vadood M, Soltani P, Ghane M. Modeling the sound absorption behavior of carpets using artificial intelligence. The Journal of The Textile Institute. 2021;112:1763-71.

[7] Rostami R, Zarrebini M, Abdellahi SB, Mostofinejad D, Abtahi SM. Investigation of flexural performance of concrete reinforced with indented and fibrillated macro polypropylene fibers based on numerical and experimental comparison. Structural Concrete. 2021;22:250-63.

[8] Abedzade Atar H, Zarrebini M, Hasani H, Rezaeepazhand J. The effect of core geometry on flexural stiffness and transverse shear rigidity of weight‐wise identical corrugated core sandwich panels reinforced with 3D flat spacer knitted fabric. Polymer Composites. 2020;41:3638-48.

[9] Ettehadi Z, Ajeli S, Soltani P, Zarrebini M. Experimental and CFD analysis of air permeability of warp-knitted structures. Fibers Polymers. 2020;21:1362-71.

[10] Lolaki A, Zarrebini M, Mostofinejad D, Shanbeh M, Abtahi SM. Intensification of auxetic effect in high stiffness auxetic yarns with potential application as the reinforcing element of composite. Journal of Industrial Textiles. 2020:1528083720978918.

[11] Moshtaghian Z, Hasani H, Zarrebini M, Pourheidar Shirazi M. Development and auxetic characterization of 3D composites produced with newly-designed multi-cell flat-knitted spacer fabrics. Journal of Industrial Textiles. 2020:1528083720971696.

[12] Rostami R, Zarrebini M, Mandegari M, Mostofinejad D, Abtahi SM. A review on performance of polyester fibers in alkaline and cementitious composites environments. Construction Building Materials. 2020;241:117998.

[13] Rostami R, Zarrebini M, Sanginabadi K, Mostofinejad D, Abtahi SM, Fashandi H. An investigation into influence of physical and chemical surface modification of macro-polypropylene fibers on properties of cementitious composites. Construction Building Materials. 2020;244:118340.

[14] Shanbeh M, Johari MS, Zarrebini M, Barburski M, Komisarczyk A, Urbaniak M. Effect of a weft yarn spinning system on the shear characteristics of plain woven fabrics. Textile Research Journal. 2020;90:10-23.

[15] Hassanzadeh S, Hasani H, Zarrebini M. Compression load-carrying capacity of 3D-integrated weft-knitted spacer composites. Journal of Sandwich Structures Materials Research Express. 2019;21:1379-405.

[16] Mirzaei M, Zarrebini M, Shirani A, Shanbeh M, Borhani S. X-ray shielding behavior of garment woven with melt-spun polypropylene monofilament. Powder Technology. 2019;345:15-25.

[17] Mirzaei M, Zarrebini M, Shirani A, Shanbeh M, Borhani S. X-ray shielding by a novel garment woven with melt-spun monofilament weft yarn containing lead and tin particles. Textile Research Journal. 2019;89:63-75.

[18] Mollahosseini H, Fashandi H, Khoddami A, Zarrebini M, Nikukar H. Recycling of waste silk fibers towards silk fibroin fibers with different structures through wet spinning technique. Journal of Cleaner Production. 2019;236:117653.

[19] Rostami R, Zarrebini M, Mandegari M, Sanginabadi K, Mostofinejad D, Abtahi SMJC, et al. The effect of concrete alkalinity on behavior of reinforcing polyester and polypropylene fibers with similar properties. Cement and Concrete Composites. 2019;97:118-24.

[20] Rostami R, Zarrebini M, Sanginabadi K, Mostofinejad D, Abtahi SM, Fashandi H. The effect of specific surface area of macro fibers on energy absorption capacity of concrete. The Journal of The Textile Institute. 2019;110:707-14.

[21] Shanbeh M, Safar Johari M, Zarrebini M, Barburski M, Komisarczyk A. Analysis of shear characteristics of woven fabrics and their interaction with fabric integrated structural factors. Journal of Engineered Fibers Fabrics. 2019;14:1558925019867520.

[22] Alirezazadeh A, Zarrebini M, Ghane M, Soltani P. Fiber-on-fiber friction measurement using hanging fiber method. The Journal of The Textile Institute. 2018;109:636-46.

[23] Daria M, Fashandi H, Zarrebini M, Mohamadi Z. Contribution of polysulfone membrane preparation parameters on performance of cellulose nanomaterials. Materials Research Express. 2018;6:015306.

[24] Ghodsi A, Fashandi H, Zarrebini M, Mirzaei M. Controlling the Morphology of PVDF Hollow Fiber Membranes by Promotion of Liquid–Liquid Phase Separation. Advanced Engineering Materials. 2018;20:1701169.

[25] Hassanzadeh S, Hasani H, Zarrebini M. Mechanical characterization of innovative 3D multi-cell thermoset composites produced with weft-knitted spacer fabrics. Composite Structures. 2018;184:935-49.

[26] Laghaei R, Zarrebini M, Soltani P. Axial and transverse permeability of unidirectional fiber-reinforced composites. The Journal of The Textile Institute. 2018;109:435-44.

[27] Latifi F, Talebi Z, Khalili H, Zarrebini M. Effect of processing parameters and pore structure of nanostructured silica aerogel on the physical properties of aerogel blankets. Materials Research Express. 2018;5:055020.

[28] Pourbaghi R, Zarrebini M, Semnani D, Pourazar A, Akbari N, Shamsfar R. Evaluation of polyacrylonitrile electrospun nano‐fibrous mats as leukocyte removal filter media. Journal of Biomedical Materials Research Part B: Applied Biomaterials. 2018;106:1759-69.

[29] Rostami R, Zarrebini M, Sanghinabadi K, Mostofinejad D, Fashndi H. The Effect of Cross-Sectional Area of Macro-Fibers on Energy Absorption Capacity of Concrete. Concrete Research. 2018;11:29-40.

[30] Sanginabadi K, Rostami R, Habibi N, Mostofinejad D, Zarrebini M. Fracture mechanics of fiber reinforced concrete: Experimental study of composition, geometry and hybridization of fibers. Journal of Structural construction engineering. 2018;5:82-94.

[31] Soltani P, Azimian M, Wiegmann A, Zarrebini M. Experimental and computational analysis of sound absorption behavior in needled nonwovens. Journal of Sound Vibration. 2018;426:1-18.

[32] Saghafi R, Zarrebini M, Moezzi M. Mechanical Properties of Needle-Punched Fabrics in Relation to Fiber Orientation. Journal of Textiles Polymers. 2017;5:48-55.

[33] Soltani P, Zarrebini M, Laghaei R, Hassanpour A. Prediction of permeability of realistic and virtual layered nonwovens using combined application of X-ray μCT and computer simulation. Chemical Engineering Research Design. 2017;124:299-312.

[34] Bahari N, Hasani H, Zarrebini M, Hassanzadeh S. Investigating the effects of material and process variables on the mechanical properties of low-density thermally bonded nonwovens produced from Estabragh (milkweed) natural fibers. Journal of Industrial Textiles. 2016;46:719-36.

[35] Fashandi H, Ghodsi A, Saghafi R, Zarrebini M. CO2 absorption using gas-liquid membrane contactors made of highly porous poly (vinyl chloride) hollow fiber membranes. International Journal of Greenhouse Gas Control. 2016;52:13-23.

[36] Fashandi H, Zarrebini M, Ghodsi A, Saghafi R. Designing the inner surface corrugations of hollow fibers to enhance CO2 absorption efficiency. Journal of colloid interface science. 2016;476:35-46.

[37] Ghorbani K, Hasani H, Zarrebini M, Saghafi R. An investigation into sound transmission loss by polypropylene needle-punched nonwovens. Alexandria Engineering Journal. 2016;55:907-14.

[38] Hassanzadeh S, Hasani H, Zarrebini M. Effects of cross-sectional shape on mechanical performances of new-designed FRP sandwich structures reinforced with 3D weft-knitted spacer fabrics.  Proceeding of International Conference on Research in Science and Technology Istanbul2016. p. 1-9.

[39] Hassanzadeh S, Hasani H, Zarrebini M, Manufacturing. Thermoset composites reinforced by innovative 3D spacer weft-knitted fabrics with different cross-section profiles: materials and manufacturing process. Composites Part A: Applied Science. 2016;91:65-76.

[40] Mazrouei-Sebdani Z, Khoddami A, Hadadzadeh H, Zarrebini M, Karimi A, Shams-Ghahfarokhi F. The effect of the nano-structured aerogel powder on the structural parameters, water repellency, and water vapor/air permeability of a fibrous polyester material. Materials Chemistry Physics. 2016;177:99-111.

[41] Yekrang J, Sarijeh B, Semnani D, Zarrebini M. Prediction of heat transfer and air permeability properties of light weight nonwovens using artificial intelligence. Indian Journal of Fibre Textile Research Journal. 2016;40:373-9.

[42] Bakhtiari M, Hasani H, Zarrebini M, Hassanzadeh S. Investigation of the thermal comfort properties of knitted fabric produced from Estabragh (Milkweed)/cotton-blended yarns. The Journal of The Textile Institute. 2015;106:47-56.

[43] Ghodsi A, Fashandi H, Zarrebini M, Abolhasani MM, Gorji M. Highly effective CO 2 capture using super-fine PVDF hollow fiber membranes with sub-layer large cavities. RSC advances. 2015;5:92234-53.

[44] Hassanzadeh S, Hasani H, Zarrebini M. Utilization of composite panels reinforced with 3D spacer weft-knitted fabrics in lightweight building construction.  Proceeding of the Annual International Civil, Architecture and Urbanism Conference Shiraz2015. p. 1-5.

[45] Mashroteh H, Zarrebini M. Multivariate Regression Modeling of Parameters Affecting Punching Force during Random Velour Needling. Journal of Engineered Fibers Fabrics. 2015;10:155892501501000211.

[46] Mazrouei-Sebdani Z, Khoddami A, Hadadzadeh H, Zarrebini M. Synthesis and performance evaluation of the aerogel-filled PET nanofiber assemblies prepared by electro-spinning. RSC advances. 2015;5:12830-42.

[47] Panahi M, Tavanai H, Zarrebini M. The Influence of Fiber Crimp on Acoustic Performance of Polypropylene Fibrous Batt. Journal of Textiles Polymers. 2015;3:71-5.

[48] Saghafi R, Zarrebini M, Semnani D, Mahmoudi M. The effect of bore fluid type on performance of treated polysulfone hollow-fiber membrane. Textile Research Journal. 2015;85:281-93.

[49] Shafiee S, Zarrebini M, Naghashzargar E, Semnani D. Antibacterial performance of nano polypropylene filter media containing nano-TiO2 and clay particles. Journal of Nanoparticle Research. 2015;17:1-9.

[50] Soltani P, Johari MS, Zarrebini M. Tomography-based determination of transverse permeability in fibrous porous media. Journal of Industrial Textiles. 2015;44:738-56.

[51] Soltani P, Johari MS, Zarrebini M. 3D fiber orientation characterization of nonwoven fabrics using X-ray micro-computed tomography. World J Text Eng Technol. 2015;1:41-7.

[52] Ebrahimi Manesh E, Ajeli S, Zarrebini M. Crease Recovery Angle of Weft-knitted Fabrics Produced by Shape Memory Polymer-Coated Yarn. Journal of Textile Science Technology. 2014;3:9-12.

[53] Hasani H, Zarrebini M, Zare M, Hassanzadeh S. Evaluating the acoustic properties of Estabragh (milkweed)/hollow-polyester nonwovens for automotive applications. J Text Sci Eng. 2014;4:1-6.

[54] Hassanzadeh S, Hasani H, Zarrebini M. Analysis and prediction of the noise reduction coefficient of lightly-needled Estabragh/polypropylene nonwovens using simplex lattice design. The Journal of The Textile Institute. 2014;105:256-63.

[55] Hassanzadeh S, Zarrebini M, Hasani H. An investigation into acoustic properties of lightly needled Estabragh nonwovens using the Taguchi method. Journal of Engineered Fibers Fabrics. 2014;9:155892501400900303.

[56] Saghafi R, Zarrebini M, Semnani D, Mahmoudi M. Novel method for treatment of hollow fiber membranes using hypochlorite. The Journal of The Textile Institute. 2014;105:962-70.

[57] Shahani F, Soltani P, Zarrebini M. The analysis of acoustic characteristics and sound absorption coefficient of needle punched nonwoven fabrics. Journal of engineered fibers fabrics. 2014;9:155892501400900210.

[58] Soltani P, Johari MS, Zarrebini M. Effect of 3D fiber orientation on permeability of realistic fibrous porous networks. Powder Technology. 2014;254:44-56.

[59] Ajeli S, Zarrebini M, Sharifi H. An investigation into factors affecting mechanical properties of multi-axial nonwoven structure. Journal of Industrial Textiles. 2013;43:45-55.

[60] Jafari R, Izadan H, Khodami A, Zarrebini M. Investigation into the Dyeing of Soybean Fibres with Natural Dyes and their antimicrobial properties. Progress in Color, Colorants Coatings. 2013;7:95-104.

[61] Mashroteh H, Zarrebini M, Ajeli S. Momentary measurement of force exerted on individual fork needles in random-velour needling. Journal of The Textile Institute. 2013;104:84-97.

[62] Rahnama M, Semnani D, Zarrebini M. Measurement of the moisture and heat transfer rate in light-weight nonwoven fabrics using an intelligent model. Fibres Textiles in Eastern Europe. 2013:89--94.

[63] Soltani P, Zarrebini M. Acoustic performance of woven fabrics in relation to structural parameters and air permeability. Journal of The Textile Institute. 2013;104:1011-6.

[64] Mirzaei M, Gharehaghaji AA, Zarrebini M. A new method of yarn hairiness reduction by air suction during carding. Textile Research Journal. 2012;82:2128-36.

[65] Soltani P, Zerrebini M. The analysis of acoustical characteristics and sound absorption coefficient of woven fabrics. Textile Research Journal. 2012;82:875-82.

[66] Ghane M, Saghafi R, Zarrebini M, Semnani D. Evaluation of bending modulus of needle-punched fabrics using two simply supported beam method. Fibres Textiles in Eastern Europe. 2011;19:87.

[67] Mashroteh H, Zarrebini M. Analysis of punching force during random-velour needling. Textile Research Journal. 2011;81:471-81.

[68] Zarrebini M, Mahmoudi M, El‐Bakary M, El‐Dessouky H, Lawrence C. The influence of fiber fineness on physical characteristics of staple polypropylene fibers spun at different pumping speeds. Journal of applied polymer science. 2010;115:2892-7.

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