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Mechanical Properties of Polymers and Composites

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TLDR
In this article, the authors discuss various mechanical properties of fiber-filled composites, such as elastic moduli, creep and stress relaxation, and other mechanical properties such as stress-strain behavior and strength.
Abstract
Mechanical Tests and Polymer Transitions * Elastic Moduli * Creep and Stress Relaxation * Dynamical Mechanical Properties * Stress-Strain Behaviour and Strength * Other mechanical Properties * Particulate-Filled Polymers * Fiber- Filled Composites and Other Composites.

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Mechanical and thermal properties study of glass fiber reinforced polyarylene ether nitriles

TL;DR: In this paper, a glass fiber reinforced phenolphthalein-based polyarylene ether nitrile composites were prepared through melt blending, and the composites characterized by various methods to find that both the mechanical and thermal properties of the silane coupling agent treated GF reinforced composites improved with the increase of GF content.
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Strain-rate sensitivity index of thermoplastics

TL;DR: In this article, a numerical algorithm was implemented to minimize the root-mean-square difference between an empirical equation and the experimental data, i.e., minimizing the difference between the root mean square difference between empirical equations and experimental data.
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Modeling of continuous ultrasonic impregnation and consolidation of thermoplastic matrix composites

TL;DR: In this article, the authors used ultrasonic propagation to provide heat and pressure in order to perform impregnation and consolidation during production of thermoplastic matrix composites, and the results of the simulation were validated by temperature measurements during the production of E-glass/polypropylene cylinders with the optimized parameters obtained by the finite element analysis.
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Analyses of Tensile Failure Properties of Asphalt-Mineral Filler Mastics

TL;DR: In this article, the authors verified the concern expressed by researchers that stiff asphalt-mineral filler mastics may lead to the cracking of flexible pavements in the brittle-ductile region.
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Acoustic performance of periodic steel cylinders embedded in a viscoelastic medium

TL;DR: In this paper, the acoustic performance of a locally resonant phononic crystal comprising steel cylindrical scatterers arranged periodically in a viscoelastic medium is analyzed and compared with those from a numerical model based on the finite element method.