Multiscale bridging method to characterize elasto-plastic properties of polymer nanocomposites

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초록

A multiscale bridging method is proposed to describe the elasto-plastic behavior of polymer nanocomposites affected with the interphase elasto-plastic constitutive law (near the nanoparticle). The inverse characterization method of the interphase elasto-plastic constitutive law was proposed by combining full atomistic molecular dynamics and finite element homogenization. Based on the proposed multiscale bridging method, the influences of the crosslink ratio of the epoxy network and radius of nanoparticles on the elasto-plastic behavior of the interphase were investigated. Additionally, a multiscale homogenization analysis of the representative volume element of the multi-particulate systems was conducted using the elasto-plastic constitutive law of interphase.

키워드

Nano compositesinterphaseplastic deformationmultiscale modelingmolecular dynamicsMECHANICAL-PROPERTIESMOLECULAR-DYNAMICSPARTICLE-SIZEINTERFACIAL CHARACTERISTICSHOMOGENIZATION METHODMODELING APPROACHGLASS-TRANSITIONYOUNGS MODULUSINTERPHASEBEHAVIOR
제목
Multiscale bridging method to characterize elasto-plastic properties of polymer nanocomposites
저자
Kim, Jae HunWang, HaolinLee, JihunShin, Hyunseong
DOI
10.1080/15376494.2022.2155332
발행일
2024-06-02
유형
Article
저널명
Mechanics of Advanced Materials and Structures
31
11
페이지
2334 ~ 2348