The Computational Study of Epoxy-based Nanocomposites Electromechanical Performance under External Force: Molecular Dynamics Approach

سال انتشار: 1402
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 89

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JR_JRCC-5-16_001

تاریخ نمایه سازی: 6 اسفند 1402

چکیده مقاله:

Gauge factor is a measure of the sensitivity of a material's electrical performance to mechanical strain. This property of nanocomposites is important for their usage in various electromechanical applications. In current research, we introduce the electromechanical and gauge factor evolutions of epoxy-graphite/boron nitride (BN) nanocomposites. The molecular dynamics (MD) approach implemented for numerical analyzing of various modeled systems. Computationally, the atomic interactions between particles inside structures described by UFF, and TERSOFF force-fields. After MD simulation settings done, various physical parameters such as temperature, potential energy, interaction energy and gauge factor reported to describe atomic behavior of designed nanocomposites. MD results predicted the physical stability of modeled systems at ۳۰۰ K as initial temperature (after ۱۰ ns). Also, gauge factor of nanocomposites converged to ۳.۱۹ and ۶.۵۴ values by graphite and BN inserting to base matrix, respectively. These results indicated by changes nanoparticles type inside epoxy-based nanocomposites, the electromechanical performance of them can be manipulated in actual cases.Gauge factor is a measure of the sensitivity of a material's electrical performance to mechanical strain. This property of nanocomposites is important for their usage in various electromechanical applications. In current research, we introduce the electromechanical and gauge factor evolutions of epoxy-graphite/boron nitride (BN) nanocomposites. The molecular dynamics (MD) approach implemented for numerical analyzing of various modeled systems. Computationally, the atomic interactions between particles inside structures described by UFF, and TERSOFF force-fields. After MD simulation settings done, various physical parameters such as temperature, potential energy, interaction energy and gauge factor reported to describe atomic behavior of designed nanocomposites. MD results predicted the physical stability of modeled systems at ۳۰۰ K as initial temperature (after ۱۰ ns). Also, gauge factor of nanocomposites converged to ۳.۱۹ and ۶.۵۴ values by graphite and BN inserting to base matrix, respectively. These results indicated by changes nanoparticles type inside epoxy-based nanocomposites, the electromechanical performance of them can be manipulated in actual cases.

نویسندگان

Peyman Torkian

Department of Mechanical Enigineering, Babol Noshirvani University of Technology, Babol, Iran

Hamid Baseri

Department of Mechanical Enigineering, Babol Noshirvani University of Technology, Babol, Iran