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RHEOLOGY OF PVC PLASTISOL - VIII: MECHANISM OF NON-LINEAR VISCOELASTIC BEHAVIOR

机译:PVC溶胶的流变学-VIII:非线性粘弹性行为的机理

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摘要

The mechanism of the strain-amplitude dependence (non-linearity) of viscoelastic properties of a PVC plastisol was examined. The range of amplitude was 0.02 to 10.24 and the range of frequency was 0.1 to 100 rad/s. The amplitude dependence of dynamic viscosity was very similar to its frequency dependence in that with the increase of amplitude or frequency it decreased first, reaching a minimum and then increased. In the preceding series of papers, the decrease of viscosity with the increase of frequency, i.e. pseudo-plasticity, was attributed to shear-induced phase separation into immobilized layer and mobile phase. In the present work, it is shown that the same mechanism is responsible for the decrease of viscosity with the increase of amplitude. The increase of viscosity with the increase of amplitude (after the minimum) is explained by the dilatation of the immobilized layer. Subsequently, the normal stress acting on the immobilized layer is calculated from the difference of the osmotic pressure between the mobile phase and immobilized layer. The shear deformation of the immobilized layer is estimated to be extremely small, although the deformation in the normal direction, i.e. the dilatation, is significant.
机译:研究了PVC增塑溶胶的粘弹性质的应变-振幅依赖性(非线性)机理。幅度范围为0.02至10.24,频率范围为0.1至100 rad / s。动态粘度的幅度依赖性与它的频率依赖性非常相似,因为随着幅度或频率的增加,它先降低,达到最小值然后增加。在上述系列论文中,粘度随频率的增加而降低,即假塑性,归因于剪切诱导的相分离为固定层和流动相。在目前的工作中,表明了相同的机理导致粘度随振幅的增加而降低。粘度随振幅的增加而增加(在最小值之后)由固定层的膨胀来解释。随后,从流动相和固定层之间的渗透压差计算作用在固定层上的法向应力。尽管在法线方向上的变形(即,扩张)是显着的,但是估计固定层的剪切变形极小。

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