Thermo-mechanical properties of high density polyethylene – fumed silica nanocomposites: effect of filler surface area and treatment

被引:0
作者
A. Dorigato
M. D’Amato
A. Pegoretti
机构
[1] University of Trento,Department of Materials Engineering and Industrial Technologies and INSTM Research Unit
来源
Journal of Polymer Research | 2012年 / 19卷
关键词
Polyethylene; Silica; Polymer nanocomposites; Mechanical properties; Creep;
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摘要
High density polyethylene was melt compounded with various untreated (hydrophilic) or surface treated (hydrophobic) fumed silica nanoparticles, having different surface areas. The thermo-mechanical properties of the resulting nanocomposites have been thoroughly investigated. Field emission scanning electron microscopy revealed that nanofiller aggregation was more pronounced as the silica surface area increased, while nanofiller dispersion improved with a proper filler functionalization. The homogeneous distribution of fumed silica aggregates at low filler content allowed us to reach remarkable improvements of thermal stability, evidenced by an increase of the degradation temperature and a decrease of the mass loss rate with respect to neat matrix, especially when surface treated nanoparticles were utilized. Interestingly, the stabilizing effect produced by fumed silica nanoparticles was accompanied by noticeable enhancements of the ultimate tensile mechanical properties, both under quasi-static and impact conditions. Concurrently, a progressive enhancement of both elastic modulus and tensile stress at yield with the filler amount, was observed.
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[1]  
Bondioli F(2008)High-density polyethylene reinforced with submicron titania particles Polym Eng Sci 48 448-457
[2]  
Dorigato A(2009)Improving the creep stability of high-density polyethylene with acicular titania nanoparticles J Appl Polym Sci 112 1045-1055
[3]  
Fabbri P(2010)Dispersion of nano-silica in monomer casting nylon6 and its effect on the structure and properties of composites Expr Pol Lett 4 397-403
[4]  
Messori M(2005)Organo-clay mineral-melted polyolefin nanocomposites. Effect of surfactant/cec ratio J Phys Chem Solids 67 836-845
[5]  
Pegoretti A(2003)Mechanical properties of low nano-silica filled high density polyethylene composites Polym Eng Sci 43 490-500
[6]  
Bondioli F(2007)Mechanical properties of low-density polyethylene/nano-magnesium hydroxide composites prepared by an in situ bubble stretching method J Polym Res 15 59-65
[7]  
Dorigato A(2007)Tensile mechanical response of polyethylene – clay nanocomposites Expr Pol Lett 1 123-131
[8]  
Fabbri P(2007)Application of time-stress superposition to nonlinear creep of polyamide 66 filled with nanoparticles of various sizes Compos Sci Technol 67 2691-2698
[9]  
Messori M(2002)Structural characterization and transport properties of organically modified montmorillonite/polyurethane nanocomposites Polymer 43 6147-6157
[10]  
Pegoretti A(2005)Mechanical, thermal and flammability properties of polyethylen/clay nanocomposites Polym Degrad Stab 87 183-189