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Large amplitude oscillatory shear and Fourier transform rheology analysis of branched polymer melts.

机译:支链聚合物熔体的大振幅振荡剪切和傅里叶变换流变学分析。

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摘要

In this paper, the predictions of the Pompom constitutive model in medium and large amplitude oscillatory shear (LAOS) are examined using Fourier transform rheology (FTR). FTR is commonly used in combination with small amplitude oscillatory shear to fit linear Maxwell parameters to dynamic moduli, and in this paper, this process is expanded to larger strain amplitudes and to further terms in the Fourier series. For both small and large amplitudes, these higher harmonics are dependent on the nonlinear Pompom parameters and the Pompom parameter space is explored to see how experimental oscillatory shear data can infer molecular detail. In the regime of small and medium strain amplitude, there exists an asymptotic solution to the Pompom equations which depends only on the ratio of the orientation and stretch relaxation times, τb and τs . This asymptotic solution is found to be accurate up to strains of order unity and the branching priority, q, only affects the stress response at larger strains. The Pompom parameters fitted to extensional data are compared to LAOS data for three materials; two lightly branched metallocene catalyzed high density polyethylenes and a densely branched low density polyethylenes. In general, the Pompom model performs well in LAOS but tends to over predict experimental results at high strain amplitudes.
机译:在本文中,使用傅里叶变换流变学(FTR)检验了中大振幅振荡剪切(LAOS)中Pompom本构模型的预测。 FTR通常与小振幅振荡剪切结合使用,以使线性麦克斯韦参数适合动态模量,在本文中,此过程扩展到更大的应变振幅,并扩展到傅立叶级数。对于小振幅和大振幅,这些高次谐波均取决于非线性Pompom参数,并探索Pompom参数空间以了解实验性振荡剪切数据如何推断分子细节。在中小应变振幅范围内,庞培方程存在一个渐近解,该解仅取决于取向与拉伸弛豫时间的比率τb和τs。发现该渐近解法在达到阶数统一的应变时都是准确的,并且分支优先级q仅影响较大应变时的应力响应。将适合于扩展数据的Pompom参数与三种材料的LAOS数据进行比较。两个轻度支化的茂金属催化的高密度聚乙烯和一个稠密的支化的低密度聚乙烯。通常,Pompom模型在LAOS中表现良好,但在高应变幅度下往往会过度预测实验结果。

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