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Relaxation behavior of polymer blends after the cessation of shear

机译:剪切停止后聚合物共混物的松弛行为

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摘要

We investigated the relaxation of a binary polybutadiene/polyisoprene blend after the cessation of steady-state shear using both in situ optical microscopy (OM) and light scattering (LS). Through fast Fourier transforms of the micrographs, we were able to directly relate our LS patterns with the real space morphology. In the steady state we observed ellipsoidal domains and strings. Upon the cessation of shear, these morphologies relaxed to the equilibrium morphology via a variety of mechanisms. After low shear rates were applied, coalescence between domains of random spatial distribution occurred. If the shear rate previously applied was sufficiently high, the strings were found to break up into small droplets forming necklace-like structures. The nonrandom spatial distribution created by shearing resulted in a long-lasting anisotropy at rest. If the previously applied shear rate was further increased, thermodynamic effects became important and anisotropies relaxed very fast: as a consequence. A spinodal pattern in both real space and in the LS patterns was found to occur during the relaxation process. [References: 39]
机译:我们使用稳态光学显微镜(OM)和光散射(LS)研究了稳态剪切停止后二元聚丁二烯/聚异戊二烯共混物的弛豫。通过显微图像的快速傅立叶变换,我们能够将LS模式与真实空间形态直接相关。在稳态下,我们观察到了椭圆域和弦。剪切停止后,这些形态会通过多种机制松弛到平衡形态。应用低剪切速率后,随机空间分布域之间发生合并。如果先前施加的剪切速率足够高,则发现线会破裂成小滴,形成项链状结构。剪切产生的非随机空间分布导致静止状态下的长期各向异性。如果进一步提高先前施加的剪切速率,则热力学作用变得很重要,各向异性也将很快放松:结果是。发现在弛豫过程中在实际空间和LS模式中都存在一个旋节线模式。 [参考:39]

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