首页> 外文期刊>The Journal of Chemical Physics >DIELECTRIC AND VISCOELASTIC NORMAL-MODE RELAXATION IN ENTANGLED, POLYDISPERSE CIS-POLYISOPRENE MELTS
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DIELECTRIC AND VISCOELASTIC NORMAL-MODE RELAXATION IN ENTANGLED, POLYDISPERSE CIS-POLYISOPRENE MELTS

机译:纠缠多分散CIS-聚异戊二烯熔体的介电和粘弹性常模松弛

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We investigate the effects of polydispersity on dielectric and viscoelastic normal-mode relaxation of cis-polyisoprene melts above entanglement. Measured dielectric and mechanical spectra and relaxation moduli of polydisperse samples are compared to the predictions of models combining either simple reptation, double reptation or des Cloizeaux' time-dependent-diffusion single-chain autocorrelation functions (ACF) to linear or nonlinear (Tsenoglou) mixing rules. The blending rules are tested by employing experimental data, thereby eliminating uncertainties associated with the experimental molecular weight distribution (MWD) and choice of specific forms for the ACFs. Predictions from the various models based on the MWD from size exclusion chromatography are compared to the experimental data as well. We find that dielectric spectra are satisfactorily captured by a Linear mixing rule, but quantitative description of the theology requires the use of the nonlinear (Tsenoglou) mixing rule. The single-chain ACF of reptation with a 3.7 power-law dependence of the relaxation time on molecular weight accurately predicts both dielectric and viscoelastic spectra. The double reptation ACE while being inadequate in the dielectric case, gives viscoelastic predictions that are nearly identical to those obtained with the simple reptation ACE The des Cloizeaux ACF fails in the dielectric case and is less satisfactory than simple or double reptation in the viscoelastic case. This limited evidence indicates that the ACFs for end-to-end vector reorientation (dielectric relaxation) and entanglement ''dissolution'' (viscoelastic relaxation), although both originating in chain reptation, reflect different mechanisms. (C) 1995 American Institute of Physics. [References: 29]
机译:我们研究了缠结过程中多分散度对顺式聚异戊二烯熔体的介电和粘弹性正态弛豫的影响。将测量的介电和机械谱以及多分散样品的弛豫模量与模型的预测相比较,该模型结合了简单重复,双重重复或des Cloizeaux基于时间的扩散单链自相关函数(ACF)与线性或非线性(Tsenoglou)混合规则。通过使用实验数据测试共混规则,从而消除了与实验分子量分布(MWD)相关的不确定性以及ACF特定形式的选择。尺寸排阻色谱法基于MWD的各种模型的预测结果也与实验数据进行了比较。我们发现,线性混合规则可以令人满意地捕获介电谱,但是对神学的定量描述需要使用非线性(Tsenoglou)混合规则。具有3.7幂定律的松弛时间对分子量的依附性的单链ACF可以准确预测介电谱和粘弹性谱。双介电层ACE在介电情况下不足够,但给出的粘弹性预测几乎与简单介电层ACE所获得的结果相同。des Cloizeaux ACF在介电情况下不合格,并且比粘弹性例中的简单或双重介化效果差。有限的证据表明,虽然端到端矢量重新定向(介电弛豫)和缠结“溶解”(粘弹性弛豫)的ACF尽管都起源于链复制,但它们反映了不同的机制。 (C)1995年美国物理研究所。 [参考:29]

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