...
首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Analysing the large amplitude oscillatory shear response of a BINGHAM-HOOKE model in PIPKIN space and by FOURIER Transform rheology to predict weak strain overshoots
【24h】

Analysing the large amplitude oscillatory shear response of a BINGHAM-HOOKE model in PIPKIN space and by FOURIER Transform rheology to predict weak strain overshoots

机译:分析宾干空间中宾果冲孔模型的大振幅振荡剪切响应,傅立叶变换流变预测弱菌菌过冲

获取原文
获取原文并翻译 | 示例
           

摘要

The work presented in this paper contributes to theory behind the modelling of strain-controlled large amplitude oscillatory shear (LAOS) with weak strain overshoot. The latter term refers to a decreasing strain amplitude dependent storage modulus and a peak in loss modulus. These physical nonlinearities are restricted in this work in order to remain within the geometrically linear theory measured for an inertial system. It is also premised that yielding causes weak strain overshoot. Yielding is modelled with the aid of the BINGHAM-HOOKE model consisting of a HOOKEan spring connected in series to a BINGHAM model. In addition, the BINGHAM-HOOKE model is connected in parallel to an rCROSS model, the LAOS response of which was investigated with the aid of FT rheology in [Boisly et al., Journal of Non-Newtonian Fluid Mechanics 225 (2015) 10-27]. The LAOS behaviour of the BINGHAM-HOOKE model is analysed in this work using FOURIER Transform (FT) rheology and LISSAJOUS plots in PIPKIN space. This approach facilitates the identification of so-called characteristic points of FT harmonics. These are distinct points - for example maximum loss modulus - easy to determine experimentally and can therefore be used for the purposes of parameter identification. Analytical methods are applied to relate material parameters to characteristic points. It is therefore possible to identify material parameters deterministically without minimising residuals with the aid of nonlinear optimisation algorithms. This insight enables the authors to analytically model nonlinear phenomena based on the characteristic points of FT harmonics. The entire set of elastic, viscous and plastic material parameters - eta(0), eta(infinity), K-1, G, eta and yield stress tau(y) - are identified by evaluating the characteristic points of the storage and loss modulus. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文提出的工作有助于应变控制的大幅度振荡剪切(LAOS)建模背后的理论,具有弱菌株过冲。后一词是指减少应变幅度依赖性储存模量和损耗模量的峰值。在这项工作中限制了这些物理非线性,以便保留在测量惯性系统的几何线性理论内。它也是前提的,屈服会导致弱菌株过冲。借助于与串联连接到宾厄姆模型的钩子弹簧组成的弯曲弹簧模型来建模屈服。此外,宾厄姆 - 胡咽模型与RCross模型平行连接,其LAOS反应在[Boisly等人,非牛顿流体力学225(2015)10 - 27]。使用傅立叶变换(FT)流变学和Pipkin空间中的Lissajous地块在这项工作中分析了Bingham-Hooke模型的老挝行为。这种方法有助于识别FT谐波的所谓特征点。这些是不同的点 - 例如,最大损耗模量 - 易于通过实验确定,因此可以用于参数识别的目的。应用分析方法以将材料参数与特征点相关联。因此,可以确定地识别材料参数而不借助非线性优化算法最小化残差。这种洞察力使作者能够根据FT谐波的特征点分析非线性现象。通过评估储存和损耗模量的特征点来鉴定整个弹性,粘性和塑料材料参数 - ETA(0),ETA(Infinity),K-1,G,ETA和屈服应力Tau(Y) 。 (c)2017 Elsevier B.v.保留所有权利。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号