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首页> 外文期刊>Journal of Rheology >Decomposition of Q(0) from FT-rheology into elastic and viscous parts: Intrinsic-nonlinear master curves for polymer solutions
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Decomposition of Q(0) from FT-rheology into elastic and viscous parts: Intrinsic-nonlinear master curves for polymer solutions

机译:将Q(0)从Ft-流变学分解成弹性和粘性部分:聚合物溶液的内在非线性主曲线

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摘要

In the medium amplitude oscillatory shear (MAOS) test, intrinsic nonlinearity Q(0)(omega) derived from Fourier-transform (FT)-rheology is an important material function for investigating the nonlinear responses of complex fluids. However, Q(0) consists of elastic and viscous components without phase information, such as complex modulus vertical bar G*vertical bar obtained from the small amplitude oscillatory shear (SAOS) test. In this study, we decomposed Q(0) into Q(0)' (x) and Q(0)'' (omega), as done for storage modulus G(0) and loss modulus G '' in the SAOS test. Furthermore, intrinsic-nonlinear tan delta(equivalent to tan delta(3,0)), which provides third-harmonic phase information, was calculated by dividing Q(0)'' by Q(0)'. First, we defined mathematically elastic nonlinearity Q(0)' and viscous nonlinearity Q(0)'', and then investigated the physical meanings of Q(0)' and Q(0)''. Second, we applied the intrinsic parameters Q(0)' and Q(0)'' to monodisperse polystyrene solutions. All intrinsic-nonlinear master curves of Q(0)'') and Q(0)'' (omega) for model solutions showed similar behavior in the terminal regime (at low frequencies). Unentangled polymer solutions had the same intrinsic-nonlinear master curves. However, although the intrinsic-nonlinear master curves of entangled polymer solutions superimposed well at low De (near the terminal regime), they deviated at high De due to different entanglement densities. Therefore, two characteristic times, MAOS relaxation time and inflection time (tau(N) and tau(inf)), were determined from intrinsic-nonlinear master curves by comparing with terminal relaxation time and Rouse time (tau(L) and tau(R)) obtained from linear master curves. The results showed that intrinsic nonlinearities from the MAOS test are sensitive to relaxation processes (terminal and Rouse) of polymer chains. Finally, master curves were compared with predictions by the molecular stress function (MSF) model and the Pom-Pom model. The single-mode pred
机译:在中等振幅剪切(MAOS)试验中,衍生自傅里叶变换(FT)-RHα的固有非线性Q(0)(OMEGA)是用于研究复杂流体的非线性响应的重要材料功能。然而,Q(0)由没有相位信息的弹性和粘性组件组成,例如从小幅度振荡剪切(SAOS)测试获得的复杂模量垂直条G *垂直条。在本研究中,我们将Q(0)分解为Q(0)'(x)和q(0)''(ω),因为在SaOS测试中为存储模量G(0)和损耗模量G''完成。此外,通过将Q(0)'划分Q(0)'来计算提供三次谐波相位信息的内在非线性TaNδ(相当于TaN Delta(3,0))。首先,我们定义了数学弹性非线性Q(0)'和粘性非线性Q(0)',然后研究了Q(0)'和Q(0)'的物理含义。其次,我们将内在参数Q(0)'和Q(0)''应用于单分散聚苯乙烯溶液。用于模型解决方案的Q(0)'')和Q(0)'(OMEGA)的所有内在非线性主曲线在终端状态下显示出类似的行为(在低频时)。未置入的聚合物溶液具有相同的内在非线性主曲线。然而,尽管在低DE(靠近终端状态附近)的缠绕聚合物溶液的内在非线性主曲线叠加井,但由于不同的缠结密度,它们偏离高DE。因此,通过与终端松弛时间和rouse时间(Tau(L)和Tau(r ))从线性主曲线获得。结果表明,来自MAOS测试的内在非线性对聚合物链的弛豫方法(末端和rouse)敏感。最后,将主曲线与分子应激功能(MSF)模型和POM-POM模型进行了比较。单模pred

著录项

  • 来源
    《Journal of Rheology》 |2018年第4期|共21页
  • 作者

    Song Hyeong Yong; Hyun Kyu;

  • 作者单位

    Pusan Natl Univ Sch Chem &

    Biomol Engn Busan 46241 South Korea;

    Pusan Natl Univ Sch Chem &

    Biomol Engn Busan 46241 South Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流变学;
  • 关键词

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