Coupling effect of pressure and flow fields on the crystallization of Poly(vinylidene fluoride)/Poly(methyl methacrylate) miscible blends

IF 4.5 2区 化学 Q2 POLYMER SCIENCE Polymer Pub Date : 2021-04-02 Epub Date: 2021-02-22 DOI:10.1016/j.polymer.2021.123565
Jia-Yi Ren , Shu-Gui Yang , Yue Li , Jun Lei , Hua-Dong Huang , Mingwang Pan , Hao Lin , Gan-Ji Zhong , Zhong-Ming Li
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引用次数: 10

Abstract

During polymer processing, the polymeric blends are inevitably subjected to coupled external fields (flow, pressure, and temperature), which have great effects on the phase behavior, crystallization behavior, crystalline structure, and final properties of blends. A typical crystalline/amorphous miscible blend system, poly(vinylidene fluoride)/Poly(methyl methacrylate) (PVDF/PMMA) blend, is chosen to understand the coupling effect of processing fields on crystallization behavior of the blends. It is found that shear flow can induce locally oriented trans conformation, which finally transforms into polar β/γ phases during isothermal crystallization under pressure. Interestingly, under pressure, β and γ phases exhibit different sensitivities to shear rate. The γ phase is easily formed at low shear rate, while higher shear rate is required to induce β phase formation, which could be related to the sequence length of the oriented trans conformation induced by shear flow. As for the addition of PMMA, the hydrogen bonding interactions between carbonyl groups of PMMA and hydrogen atom of PVDF could stabilize the shear-induced local trans conformation and subsequently lead to more β/γ phases. Meanwhile, different from PVDF crystallized under static condition, the shear flow and PMMA synergistically induce the transformation from spherulitic to shish-kebab-like structure and highly oriented thick β phase with higher melting point. To the best of our knowledge, it is the first time to reveal the unique crystallization behaviors of PVDF/PMMA blends induced by flow field coupled with pressure. This work could provide a significant guidance for the control of crystal polymorphs of PVDF/PMMA miscible blends during processing.

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压力和流场对聚偏氟乙烯/聚甲基丙烯酸甲酯混相结晶的耦合影响
在聚合物加工过程中,聚合物共混物不可避免地要受到流场、压力场和温度场的耦合作用,这对共混物的物相行为、结晶行为、晶体结构和最终性能都有很大的影响。以典型的结晶/非晶态共混体系聚偏氟乙烯/聚甲基丙烯酸甲酯(PVDF/PMMA)共混体系为研究对象,研究了加工场对共混体系结晶行为的耦合效应。研究发现,剪切流动可诱导局部取向的反式构象,并在压力等温结晶过程中最终转变为极性β/γ相。有趣的是,在压力下,β和γ相对剪切速率表现出不同的敏感性。在低剪切速率下容易形成γ相,而β相的形成需要较高的剪切速率,这可能与剪切流诱导定向反式构象的序列长度有关。对于PMMA的加入,PMMA羰基与PVDF氢原子之间的氢键相互作用可以稳定剪切诱导的局部反式构象,从而产生更多的β/γ相。同时,与静态结晶的PVDF不同,剪切流动与PMMA协同作用,促使PVDF由球晶转变为类似羊肉串的结构和熔点较高的高取向厚β相。据我们所知,这是第一次揭示PVDF/PMMA共混物在流场和压力耦合作用下的独特结晶行为。该研究对PVDF/PMMA混相共混物的晶型控制具有重要的指导意义。
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来源期刊
Polymer
Polymer 化学-高分子科学
CiteScore
7.90
自引率
8.70%
发文量
959
审稿时长
32 days
期刊介绍: Polymer is an interdisciplinary journal dedicated to publishing innovative and significant advances in Polymer Physics, Chemistry and Technology. We welcome submissions on polymer hybrids, nanocomposites, characterisation and self-assembly. Polymer also publishes work on the technological application of polymers in energy and optoelectronics. The main scope is covered but not limited to the following core areas: Polymer Materials Nanocomposites and hybrid nanomaterials Polymer blends, films, fibres, networks and porous materials Physical Characterization Characterisation, modelling and simulation* of molecular and materials properties in bulk, solution, and thin films Polymer Engineering Advanced multiscale processing methods Polymer Synthesis, Modification and Self-assembly Including designer polymer architectures, mechanisms and kinetics, and supramolecular polymerization Technological Applications Polymers for energy generation and storage Polymer membranes for separation technology Polymers for opto- and microelectronics.
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