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Nonlinearity in large amplitude oscillatory shear (LAOS) of different viscoelastic materials

机译:不同粘弹性材料的大振幅振荡剪切(LAOS)中的非线性

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The present work investigates nonlinear behavior in large amplitude oscillatory shear (LAOS) of four different polymeric materials using simultaneous conventional rheometric measurements and particle-tracking velocimetric observations. In contrast to most studies in the literature that treat nonlinearity in LAOS in steady state, we emphasize by the present four examples that nonlinearity in LAOS often arise in complex fluids due to time-dependent rearrangement of their microstructures in response to LAOS. Consequently, no correlation is obvious between strain dependence of the steady-state stress response and the time-dependent characteristics of the steady-state response. For instance, a highly viscoelastic material made of nano-sized polybutadiene particles exhibits homogeneous deformation and an approximate sinusoidal wave despite strong strain softening. In a second example, a well-entangled polybutadiene solution becomes inhomogeneous over time, and the corresponding nonlinearity (i.e., strain softening) took a finite time to develop to its fullest. In the example of wall slip of a monodisperse entangled polyisoprene melt, contrary to the literature claim that even harmonics would emerge, we show that the stress response only involves odd harmonics in the absence of any edge fracture. Last, a polydisperse poly(dimethyl siloxane) melt experiences homogeneous LAOS without displaying significant higher harmonics in the absence of any edge failure. In contrast, the Fourier transform analysis shows that meniscus failure is responsible for the emergence of higher harmonics including some even ones.
机译:本工作使用同时进行的常规流变测量和粒子跟踪测速观测研究了四种不同聚合材料在大振幅振荡剪切(LAOS)中的非线性行为。与文献中大多数研究稳定状态下的LAOS非线性的文献相反,我们通过当前的四个例子强调,由于复杂的流体随LAOS的时间依赖性重排,在复杂流体中经常会出现LAOS的非线性。因此,稳态应力​​响应的应变相关性与稳态响应的时间相关特性之间没有明显的相关性。例如,由纳米尺寸的聚丁二烯颗粒制成的高粘弹性材料尽管发生了强烈的应变软化,但仍表现出均匀的变形和近似的正弦波。在第二个例子中,缠结良好的聚丁二烯溶液随时间变得不均匀,并且相应的非线性度(即,应变软化)需要有限的时间才能发展到最大。在单分散缠结的聚异戊二烯熔体的壁滑的例子中,与文献声称偶次谐波会出现相反,我们表明应力响应仅在没有任何边缘断裂的情况下涉及奇次谐波。最后,在没有任何边缘故障的情况下,多分散聚(二甲基硅氧烷)熔体会经历均相的LAOS,而不会显示出明显的高次谐波。相反,傅立叶变换分析表明,弯月面破坏是导致高次谐波(包括一些偶次谐波)出现的原因。

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