Energy Dissipation of Nanoporous MFI Zeolite Under Dynamic Crushing

  • Xu, Baoxing
  • Liu, Ling
  • Zhou, Qulan
  • Qiao, Yu
  • Xu, Jun
  • 외 4명
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초록

Nanoporous materials are emerging as a potential candidate for high-performance energy dissipation. Understanding the mechanical response upon crushing is important for designing nanoporous material structures with maximum energy dissipation. Using molecular dynamics simulations, we investigate the crushing behaviors of a MFI zeolite upon different loading rates, compression directions, and with different sample thickness. The dissipation mechanism is expected to result from the non-uniform collapse of nanopores and the spread of the thus formed densification region through the structure. The results show that the loading along the tortuous nanopore path ([001]-orientation) may maximize the energy dissipation. Strong loading rate effect is observed which couples with orientation dependence, yet the effect of thickness is relatively minor.

키워드

Energy DissipationNanoporous MaterialMolecular Dynamics SimulationOPEN-CELL FOAMSHONEYCOMBFIELD
제목
Energy Dissipation of Nanoporous MFI Zeolite Under Dynamic Crushing
저자
Xu, BaoxingLiu, LingZhou, QulanQiao, YuXu, JunLi, YibingTak, MoohoPark, TaehyoChen, Xi
DOI
10.1166/jctn.2011.1768
발행일
2011-05
유형
Article
저널명
Journal of Computational and Theoretical Nanoscience
8
5
페이지
881 ~ 886