Effect of Imperfect Interphase Section Neighboring Dispersed and Networked Nanoclay on the Modulus of Nanocomposites by a Modeling Method 


Vol. 22,  No. 9, pp. 2517-2526, Sep.  2021
10.1007/s12221-021-0269-6


PDF
  Abstract

In this work, we highlight the flawed interphase section surrounding dispersed and networked nanoclay to simulate the stiffness of polymer nanocomposites. The proposed model undertakes the crucial interfacial shear modulus (Sc), intercalation degree, interphase depth (ti), percolation onset, clay portion in the networks and the modulus of interphase zone around clays. Many experimental data from literature and parametric examines are utilized to approve the established model. Sc=0.02 GPa increases the modulus of nanocomposites by 250 %, while Sc>0.13 GPa slightly improve the modulus by 30 %. Also, ti=10 nm and interfacial shear modulus (Si) of 100 GPa cause the 300 % improvement in the nanocomposite셲 modulus, but ti<1.3 nm or Si<13 GPa slightly enhance the modulus by 10 %. Moreover, both the modulus and portion of networked clays straightly handle the modulus of nanocomposites.

  Statistics
Cumulative Counts from November, 2022
Multiple requests among the same browser session are counted as one view. If you mouse over a chart, the values of data points will be shown.


  Cite this article

[IEEE Style]

E. o. I. I. S. N. D. a. N. N. o. t. M. o. N. b. a. M. Method, "Effect of Imperfect Interphase Section Neighboring Dispersed and Networked Nanoclay on the Modulus of Nanocomposites by a Modeling Method," Fibers and Polymers, vol. 22, no. 9, pp. 2517-2526, 2021. DOI: 10.1007/s12221-021-0269-6.

[ACM Style]

Effect of Imperfect Interphase Section Neighboring Dispersed and Networked Nanoclay on the Modulus of Nanocomposites by a Modeling Method. 2021. Effect of Imperfect Interphase Section Neighboring Dispersed and Networked Nanoclay on the Modulus of Nanocomposites by a Modeling Method. Fibers and Polymers, 22, 9, (2021), 2517-2526. DOI: 10.1007/s12221-021-0269-6.