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1.中国科学院长春应用化学研究所 高分子物理与化学国家重点实验室 长春 130022
2.中国科学技术大学 国家同步辐射实验室 合肥 230026
3.上海交通大学化学化工学院 上海 200240
Published:2018-12,
Received:24 July 2018,
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Yu-yuan Lu, Liang-bin Li, Wei Yu, Li-jia An. Book Reviews: <Nonlinear Polymer Rheology: Macroscopic Phenomenology and Molecular Foundation>. [J]. Acta Polymerica Sinica 0(12):1558-1562(2018)
Yu-yuan Lu, Liang-bin Li, Wei Yu, Li-jia An. Book Reviews: <Nonlinear Polymer Rheology: Macroscopic Phenomenology and Molecular Foundation>. [J]. Acta Polymerica Sinica 0(12):1558-1562(2018) DOI: 10.11777/j.issn1000-3304.2018.18170.
对<Nonlinear Polymer Rheology:Macroscopic Phenomenology and Molecular Foundation>(高分子非线性流变学:宏观唯象学及其分子基础)流变学专著进行了全面深入的分析与评价. 著者通过深入浅出的语言、生动形象的图解、严密深邃的辩证逻辑和极为简洁的数学表述,对高分子非线性流变学中的基本概念和模型(例如:屈服、有限内聚力和解缠结等),以及高分子非线性流变学中的典型现象(例如:应力过冲、非静态松弛、剪切带和应变硬化等),进行了系统地分析与探索. 在我国推介此书,对年轻学者快速了解该领域的前沿工作有重要的指导作用,即使对从事本领域研究的学者,在启发创新思维和提高品判能力方面仍有相当的帮助.
This article made a thorough analysis and assessment of the recently published book titled " Polymer Nonlinear Rheology: Macroscopic phenomenology and Molecular Foundation”. The author of the book used simple language
along with vivid graphical illustrations
rigorous logical and dialectical approaches and straightforward mathematical formulations
to describe the basic concepts and models for nonlinear polymer rheology. The book introduced many new concepts such as yielding
finite cohesion force
decohesion of the entanglement network through chain disentanglement. These ideas were applied to rationalize several leading phenomena such as stress overshoot
macroscopic movements after termination of external deformation
shear banding
" strain hardening” in melt stretching
etc
. We recommend this book to young readers in our country who are interested in the frontier research topics in the field. Seasoned researcher working in polymer rheology should also find the book helpful
which allows them to come up with innovative research directions and elevates their own ability to carry out cut-edge activities.
高分子非线性流变学管子模型应力过冲剪切带应变硬化
Nonlinear polymer rheologyTube modelStress overshootShear bandingStrain hardening
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