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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Orientational phase-separated domains in a polyolefin blend under a temperature gradient field
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Orientational phase-separated domains in a polyolefin blend under a temperature gradient field

机译:温度梯度场下聚烯烃共混物中取向相分离的畴

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We investigate the effect of a temperature gradient on the orientation of phase-separated structures in a polyolefin blend system. Phase contrast optical microscopy (PCOM) has been used to measure the morphology of phase separation via spinodal decomposition as a function of phase separation time and temperature gradient. The bicontinuous and interconnected tubelike structure, the characteristic morphology of the spinodal decomposition process, exhibits a preferential alignment along the direction of temperature gradient after phase separation. The orientation of the bicontinuous and interconnected tubelike structures gradually increases with phase separation time and temperature gradients. Also the orientation of phase-separated domains can respond really quickly to the change in the direction of external temperature gradient field. The results suggest that "thermal force" induced by the temperature inhomogeneity might play an important role in aligning phase-separated domains preferentially along the temperature gradient direction.
机译:我们研究了温度梯度对聚烯烃共混体系中相分离结构取向的影响。相衬光学显微镜(PCOM)已用于测量通过旋节线分解的相分离形态,该分离是相分离时间和温度梯度的函数。双连续且相互连接的管状结构是旋节线分解过程的特征形态,在相分离后沿温度梯度方向显示出优先排列。双连续且相互连接的管状结构的取向随着相分离时间和温度梯度而逐渐增加。同样,相分离域的取向可以非常迅速地响应外部温度梯度场方向的变化。结果表明,由温度不均匀性引起的“热力”可能在优先沿温度梯度方向排列相分离域中起重要作用。

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