Determination of tensile and flexural mechanical properties of polymer nanocomposites, by a non-linear damage model and experimental study

Publish Year: 1400
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_CHAL-9-1_003

تاریخ نمایه سازی: 24 تیر 1401

Abstract:

The present paper aims to study the effects of different mass fractions of silica nanoparticles on the tensile, compressive, and flexural mechanical properties of polymer composites via experimental methods and non-linear damage model. Epoxy polymers consist of two parts: the first part has a low viscosity, ML-۵۰۶, as the epoxy base, and the second part contains a polyamide as a hardener, HA-۱۱. Spherical silica nanoparticles with four different mass fractions of ۰, ۰.۲, ۰.۵ and ۱ % are dispersed into the epoxy polymer system under two different ultrasonic times. The tensile and flexural mechanical properties of the prepared samples are determined using standard tests. Experimental measurements show that the mechanical properties of polymer composites improve with increasing mass fraction of nanoparticles. In addition, increasing the ultrasonic time from half-an-hour to one hour is further improves the mechanical properties of polymer composites. A non-linear damage model based on the Weibull theory is used to interpret the flexural stress–strain relationships of the tested materials. The parameters in this model are tensile modulus E, Weibull scale parameter σ۰ and Weibull shape parameter β. A good agreement is seen between the results of the stress-strain curve obtained from the above mentioned model and experimental results.

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Authors

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Dept. of Mechanical engineering- Shahrekord university- Sharekord- Iran

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Dept. of meh. eng., shahrekord university, shahrekord. Iran

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Dept. of mech. eng., tafresh university, tafresh, Iran