Cheng-Sha WEI, Ai LU, Su-Ming SUN, Xiao-Yu ZHOU, Xing-Wen WEI, Jie SUN. Establishment and Application of Constitutive Model of Silicone Rubber Nanocomposite Based on Statistical Theory of Rubber Elasticity[J]. Polymer Bulletin, 2017,30(4):46-52.
Cheng-Sha WEI, Ai LU, Su-Ming SUN, Xiao-Yu ZHOU, Xing-Wen WEI, Jie SUN. Establishment and Application of Constitutive Model of Silicone Rubber Nanocomposite Based on Statistical Theory of Rubber Elasticity[J]. Polymer Bulletin, 2017,30(4):46-52. DOI: 10.14028/j.cnki.1003-3726.2017.04.006.
a constitutive model based on microscopic physical mechanism was established by introducing a strain amplification factor into the statistical model of rubber elasticity
which considering the effect of dangling chains. Some parameters which relating to the polymer network
such as average molecular weight (
M
c
) of chain segments with both ends attached to the network (network strands) and volume fraction (
Φ
) of network strands
were calculated using the molecular weight (
M
c
)
vinyl content (
wt
Vi
) of the polysiloxane and percent conversion (
q
) of vinyl groups. The primary strain amplification factor (
X
0
)
infinite strain limits of the amplification factor (
X
X∞
) and decay exponent (z)
which relating to the nanoparticles
were obtained by fitting the stress-strain data. The resulting fitting curves were in good agreement with the experimental data of both single and bimodal silicone rubber composites. The constitutive model based on microscopic physical mechanism could become the bridge connecting the macroscopic stress-strain behavior to the microscopic molecular structure parameters and our work could promisingly provide a basis for the performance improvement and optimization of silicone rubber.
关键词
弹性统计理论本构关系应力-应变计算拟合
Keywords
Statistical theory of rubber elasticityConstitutive modelStress-stainCalculation and fitting