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首页> 外文期刊>Journal of Applied Polymer Science >Molecular weight influence on shape memory effect of shape memory polymer blend (poly(caprolactone)/styrene-butadiene-styrene)
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Molecular weight influence on shape memory effect of shape memory polymer blend (poly(caprolactone)/styrene-butadiene-styrene)

机译:形状记忆聚合物共混物形状记忆效应的分子量影响(聚(己内酯)/苯乙烯 - 丁二烯 - 苯乙烯)

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摘要

The shape memory effect (SME) does not only concern the macroscopic structure. It concerns also the polymer structure at morphological, macromolecular, and molecular scales. This effect may depend on different physicochemical properties like morphology heterogeneity, chain rigidity, steric hindrance, chain polarity, free volume, cross-linking or entanglement density, molecular shape and weight, and so on. Hence, finding the relationship between the SME and these properties is very important. This can help to obtain the knowledge about the phenomenon origin and mechanism. One of the basic polymer properties, which can have direct SME, may be the molecular weight(M-w). The question here is: If theM(w)of a shape memory polymer (SMP) changes, for different reasons like degradation, what will be the effect of this change on its SME. In order to answer to this question, the investigation is focused on an SMP blend of 40% poly(e-caprolactone) (PCL) and 60% styrene-butadiene-styrene (SBS). Then, enzymatic hydrolysis is performed on this blend to change itsM(w). It is shown that this change is only related to the variation in theM(w)of PCL. After that, different samples with a distinct averageM(w)are prepared and characterized by various experimental methods. Shape memory tests are performed on these blends, and the recovery rate (R-r) for each of them is determined. It is found that whenM(w)of PCL decreases, its degree of crystallinity, its glass transition, and its melting temperatures, corresponding to the PCL phase, increase. However, the elongation at break of the blend declines with the reduction inM(w). The tests show that the alteration in the blend'sM(w)influences its SME. Indeed,R(r)of the (PCL/SBS) mixture drops with the decrease inM(w)of PCL.
机译:形状记忆效应(SME)不仅与宏观结构有关。它还涉及形态、大分子和分子尺度上的聚合物结构。这种效应可能取决于不同的物理化学性质,如形态异质性、链刚性、空间位阻、链极性、自由体积、交联或缠结密度、分子形状和重量等。因此,找到SME和这些属性之间的关系非常重要。这有助于获得有关现象起源和机制的知识。聚合物的一个基本性质可能是分子量(M-w),这可能直接影响SME。这里的问题是:如果形状记忆聚合物(SMP)的分子量(w)因降解等不同原因发生变化,这种变化对其SME有什么影响。为了回答这个问题,研究的重点是40%聚己内酯(PCL)和60%苯乙烯-丁二烯-苯乙烯(SBS)的SMP混合物。然后,对该混合物进行酶水解以改变itsM(w)。结果表明,这一变化仅与PCL的分子量(w)的变化有关。然后,制备具有不同平均值(w)的不同样品,并通过各种实验方法对其进行表征。对这些共混物进行形状记忆测试,并测定它们的回收率(R-R)。研究发现,当PCL的纳米(w)减小时,其结晶度、玻璃化转变和熔融温度(对应于PCL相)增加。然而,共混物的断裂伸长率随着m(w)的减小而降低。试验表明,共混物sM(w)的变化影响其SME。实际上,(PCL/SBS)混合物的R(R)随着PCL的减少而下降。

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