Effects of Size and Aggregation/Agglomeration of Nanoparticles on the Interfacial/Interphase Properties and Tensile Strength of Polymer Nanocomposites

Nanoscale Research Letters - Tập 13 Số 1 - 2018
Muhammad Aqeel Ashraf1,2, Wanxi Peng2, Yasser Zare3, Kyong Yop Rhee4
1Faculty of Science, Department of Geology, University of Malaya, Kuala Lumpur, Malaysia
2School of Forestry, Henan Agricultural University, Zhengzhou, China
3Young Researchers and Elites Club, Science and Research Branch, Islamic Azad University, Tehran, Iran
4Department of Mechanical Engineering, College of Engineering, Kyung Hee University, Yongin, Republic of Korea

Tóm tắt

Từ khóa


Tài liệu tham khảo

Perets Y, Aleksandrovych L, Melnychenko M, Lazarenko O, Vovchenko L, Matzui L (2017) The electrical properties of hybrid composites based on multiwall carbon nanotubes with graphite nanoplatelets. Nanoscale Res Lett 12(1):406

Bershtein V, Fainleib A, Egorova L, Gusakova K, Grigoryeva O, Kirilenko D et al (2015) The impact of ultra-low amounts of amino-modified MMT on dynamics and properties of densely cross-linked cyanate ester resins. Nanoscale Res Lett 10(1):1

Zare Y (2016) Shear, bulk, and Young’s moduli of clay/polymer nanocomposites containing the stacks of intercalated layers as pseudoparticles. Nanoscale Res Lett 11(1):479

Sagalianov I, Vovchenko L, Matzui L, Lazarenko O (2017) Synergistic enhancement of the percolation threshold in hybrid polymeric nanocomposites based on carbon nanotubes and graphite nanoplatelets. Nanoscale Res Lett 12(1):140

Ma X, Zare Y, Rhee KY (2017) A two-step methodology to study the influence of aggregation/agglomeration of nanoparticles on Young’s modulus of polymer nanocomposites. Nanoscale Res Lett 12(1):621

Kato M, Usuki A, Hasegawa N, Okamoto H, Kawasumi M (2011) Development and applications of polyolefin–and rubber–clay nanocomposites. Polym J 43(7):583–593

Zare Y, Rhee KY (2017) Development of Hashin-Shtrikman model to determine the roles and properties of interphases in clay/CaCO3/PP ternary nanocomposite. Appl Clay Sci 137:176–182

Zare Y, Rhee KY (2017) Development and modification of conventional Ouali model for tensile modulus of polymer/carbon nanotubes nanocomposites assuming the roles of dispersed and networked nanoparticles and surrounding interphases. J Colloid Interface Sci 506:283–290

Zare Y, Rhee KY, Park S-J (2017) Predictions of micromechanics models for interfacial/interphase parameters in polymer/metal nanocomposites. Int J Adhes Adhes 79:111–116

Chopra S, Deshmukh KA, Peshwe D (2017) Theoretical prediction of interfacial properties of PBT/CNT nanocomposites and its experimental evaluation. Mech Mater 109:11–17

Zare Y, Rhee KY (2017) Dependence of Z parameter for tensile strength of multi-layered interphase in polymer nanocomposites to material and interphase properties. Nanoscale Res Lett 12(1):42

Montazeri A, Naghdabadi R (2010) Investigation of the interphase effects on the mechanical behavior of carbon nanotube polymer composites by multiscale modeling. J Appl Polym Sci 117(1):361–367

Jahanmard P, Shojaei A (2015) Mechanical properties and structure of solvent processed novolac resin/layered silicate: development of interphase region. RSC Adv 5(98):80875–80883

Zare Y, Rhee KY (2017) Development of a conventional model to predict the electrical conductivity of polymer/carbon nanotubes nanocomposites by interphase, waviness and contact effects. Compos A: Appl Sci Manuf 100:305–312

Zare Y, Rhee KY (2017) Development of a model for electrical conductivity of polymer graphene nanocomposites assuming interphase and tunneling regions in conductive networks. Ind Eng Chem Res 56(32):9107–9115

Zare Y, Rhee KY (2017) A simple methodology to predict the tunneling conductivity of polymer/CNT nanocomposites by the roles of tunneling distance, interphase and CNT waviness. RSC Adv 7(55):34912–34921

Rafiee R, Pourazizi R (2015) Influence of CNT functionalization on the interphase region between CNT and polymer. Comput Mater Sci 96:573–578

Herasati S, Zhang L, Ruan H (2014) A new method for characterizing the interphase regions of carbon nanotube composites. Int J Solids Struct 51(9):1781–1791

Esbati A, Irani S (2018) Effect of functionalized process and CNTs aggregation on fracture mechanism and mechanical properties of polymer nanocomposite. Mech Mater 118:106–119

Jouault N, Vallat P, Dalmas F, Said S, Jestin J, Boué F (2009) Well-dispersed fractal aggregates as filler in polymer−silica nanocomposites: long-range effects in rheology. Macromolecules 42(6):2031–2040

Zare Y (2016) Study of nanoparticles aggregation/agglomeration in polymer particulate nanocomposites by mechanical properties. Compos A: Appl Sci Manuf 84:158–164

Chen J, Yu Y, Chen J, Li H, Ji J, Liu D (2015) Chemical modification of palygorskite with maleic anhydride modified polypropylene: mechanical properties, morphology, and crystal structure of palygorskite/polypropylene nanocomposites. Appl Clay Sci 115:230–237

Khan A, Shamsi MH, Choi T-S (2009) Correlating dynamical mechanical properties with temperature and clay composition of polymer-clay nanocomposites. Comput Mater Sci 45(2):257–265

Dorigato A, Dzenis Y, Pegoretti A (2013) Filler aggregation as a reinforcement mechanism in polymer nanocomposites. Mech Mater 61:79–90

Zare Y (2016) The roles of nanoparticles accumulation and interphase properties in properties of polymer particulate nanocomposites by a multi-step methodology. Compos A: Appl Sci Manuf 91:127–132

Pukanszky B (1990) Influence of interface interaction on the ultimate tensile properties of polymer composites. Composites 21(3):255–262

Bikiaris DN, Papageorgiou GZ, Pavlidou E, Vouroutzis N, Palatzoglou P, Karayannidis GP (2006) Preparation by melt mixing and characterization of isotactic polypropylene/SiO2 nanocomposites containing untreated and surface-treated nanoparticles. J Appl Polym Sci 100(4):2684–2696

Zhang G, Schlarb A, Tria S, Elkedim O (2008) Tensile and tribological behaviors of PEEK/nano-SiO2 composites compounded using a ball milling technique. Compos Sci Technol 68(15):3073–3080

Xie X-L, Liu Q-X, Li RK-Y, Zhou X-P, Zhang Q-X, Yu Z-Z et al (2004) Rheological and mechanical properties of PVC/CaCO3 nanocomposites prepared by in situ polymerization. Polymer 45(19):6665–6673

Chen H, Wang M, Lin Y, Chan CM, Wu J (2007) Morphology and mechanical property of binary and ternary polypropylene nanocomposites with nanoclay and CaCo3 particles. J Appl Polym Sci 106(5):3409–3416

Chen G, Tian M, Guo S (2006) A study on the morphology and mechanical properties of PVC/nano-SiO2 composites. J Macromol Sci Part B 45(5):709–725

Talebi H, Silani M, Rabczuk T (2015) Concurrent multiscale modeling of three dimensional crack and dislocation propagation. Adv Eng Softw 80:82–92

Talebi H, Silani M, Bordas SP, Kerfriden P, Rabczuk T (2014) A computational library for multiscale modeling of material failure. Comput Mech 53(5):1047–1071

Budarapu PR, Gracie R, Yang S-W, Zhuang X, Rabczuk T (2014) Efficient coarse graining in multiscale modeling of fracture. Theor Appl Fract Mech 69:126–143

Ji XL, Jiao KJ, Jiang W, Jiang BZ (2002) Tensile modulus of polymer nanocomposites. Polym Eng Sci 42(5):983

Msekh MA, Cuong N, Zi G, Areias P, Zhuang X, Rabczuk T (2018) Fracture properties prediction of clay/epoxy nanocomposites with interphase zones using a phase field model. Eng Fract Mech 188:287–299

Hamdia KM, Silani M, Zhuang X, He P, Rabczuk T (2017) Stochastic analysis of the fracture toughness of polymeric nanoparticle composites using polynomial chaos expansions. Int J Fract 206(2):215–227

Zare Y (2015) Assumption of interphase properties in classical Christensen–Lo model for Young’s modulus of polymer nanocomposites reinforced with spherical nanoparticles. RSC Adv 5(116):95532–95538

H-x L, Zare Y, Rhee KY (2018) The percolation threshold for tensile strength of polymer/CNT nanocomposites assuming filler network and interphase regions. Mater Chem Phys 207:76–83

Razavi R, Zare Y, Rhee KY (2018) A model for tensile strength of polymer/carbon nanotubes nanocomposites assuming the percolation of interphase regions. Colloids Surf A Physicochem Eng Asp 538:148–154

Vu-Bac N, Lahmer T, Zhang Y, Zhuang X, Rabczuk T (2014) Stochastic predictions of interfacial characteristic of polymeric nanocomposites (PNCs). Compos Part B 59:80–95

Xu Q-J, Wang S-B, Chen F-F, Cai T-C, Li X-H, Zhang Z-J (2016) Studies on the interfacial effect between nano-SiO2 and nylon 6 in nylon 6/SiO2 nanocomposites. Nanomaterials and Nanotechnology 6:31

Ferreira F, Pinheiro I, Gouveia R, Thim G, Lona L (2018) Functionalized cellulose nanocrystals as reinforcement in biodegradable polymer nanocomposites. Polym Compos 39(S1):E9

Brković DV, Pavlović VB, Pavlović VP, Obradović N, Mitrić M, Stevanović S et al (2017) Structural properties of the multiwall carbon nanotubes/poly (methyl methacrylate) nanocomposites: effect of the multiwall carbon nanotubes covalent functionalization. Polym Compos 38(S1):E472–E489

Zare Y, Rhee KY, Hui D (2017) Influences of nanoparticles aggregation/agglomeration on the interfacial/interphase and tensile properties of nanocomposites. Compos Part B 122:41–46