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This work will provide deeper insight into the toughening behavior of polymer composites and practical guidance for the design of composites with excellent stiffness-toughness balance.
Dynamic-mechanical analysis behavior of polymer composites showed low interaction of graphite particles with polyester matrix, which changed the thermo-mechanical stability of composites.
From the literature, many researchers have extensively studied the PTC behavior of polymer composites filled with carbon blacks (CBs) in the past two decades[26 32].
Studying the rheological behavior of polymer composites reinforced with well-dispersed nanoparticles, often referred to as polymer nanocomposites (PNCs), has been the subject of a growing number of experimental and theoretical studies in the past decade [1 10].
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White, S. R. et al. Autonomic healing of polymer composites.
As filler materials, CNTs are used to improve the properties of polymer composites [ 40].
The effect of filler shape and filler volume fraction on the dynamic fracture behavior of particulate polymer composites (PPC) has been studied.
Low-cycle fatigue (LCF) behavior of polymer matrix composites (PMCs) is investigated in an experimental study of unidirectional glass/epoxy composites subjected to axial tensile loading along longitudinal 0° orientation of fibers.
However, the creep behavior of polymer blend composites, which has been already used in many fields, is seldom investigated.
An experimentally validated micro-scale analysis of the visco-thermo-mechanical behavior of polymer matrix composites under different loads is proposed.
The power form stress strain relation and the Ramberg Osgood form stress strain relation are discussed to include the temperature dependent behavior of polymer matrix composites.
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