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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Influence of chain structure on the crystallization mechanism of poly(vinylidene fluoride) poly(methyl acrylate) blends: evidence of chain extension due to blending
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Influence of chain structure on the crystallization mechanism of poly(vinylidene fluoride) poly(methyl acrylate) blends: evidence of chain extension due to blending

机译:链结构对聚偏二氟乙烯-聚丙烯酸酯共混物结晶机理的影响:由于共混导致链增长的证据

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The head to head (H-H) defect structure of poly(vinylidene fluoride) (PVF2) has a dramatic effect on the crystallization rate of PVF2 and its blends. At a fixed temperature the crystallization rate decreases with increase in H-H defect and also with increase in the concentration of amorphous polymer, poly(methyl acrylate) (PMA), in the blend. But under the same degree of supercooling the crystallization rate of PVF2 increases with increase in H-H defect concentration. The molecular mechanism of crystallization of PVF2 is very much dependent on the H-H defect structure present in the chains. Analysis by the Lauritzen and Hoffman (L-H) equation of crystallization rate indicates a regime I-regime II break for lower defect content (3.75%) PVF2 fraction and a regime II-regime III break for higher defect content (5% and 5.6%) PVF2 fractions. However, analysis of the kinetic data of PVF2 blends by the modified L-H equation indicates only the regime II --> III break irrespective of the H-H defect present in the PVF2 samples. The regime transition temperature is dependent on both the H-H defect concentration and also on the PMA concentration in the blend. The chain extension factor (alpha), calculated from the ratio of the lateral surface energy (sigma) values of pure polymer and that of blends, have values greater than unity for almost all cases. (C) 1997 Elsevier Science Ltd. [References: 46]
机译:聚偏二氟乙烯(PVF2)的头对头(H-H)缺陷结构对PVF2及其混合物的结晶速率具有显着影响。在固定温度下,结晶速率随H-H缺陷的增加以及混合物中无定形聚合物聚丙烯酸甲酯(PMA)浓度的增加而降低。但是在相同的过冷度下,PVF2的结晶速率随H-H缺陷浓度的增加而增加。 PVF2结晶的分子机制在很大程度上取决于链中存在的H-H缺陷结构。通过Lauritzen和Hoffman(LH)方程的结晶速率方程分析表明,缺陷含量较低(3.75%)的情况下,方案I-II断裂,而缺陷含量较高(5%和5.6%)的II-方案III断裂。 PVF2分数。但是,通过修改后的L-H方程分析PVF2共混物的动力学数据表明,无论PVF2样品中是否存在H-H缺陷,都仅发生II-> III断裂。态转变温度既取决于H-H缺陷浓度,也取决于共混物中的PMA浓度。由纯聚合物和共混物的侧表面能(sigma)值之比计算得出的链增长因子(α)在几乎所有情况下均大于1。 (C)1997 Elsevier Science Ltd. [参考:46]

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