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首页> 外文期刊>Journal of Macromolecular Science. Physics >Evolution of thermal properties of polyethylene in the double yield region after uniaxial deformation
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Evolution of thermal properties of polyethylene in the double yield region after uniaxial deformation

机译:单轴变形后双屈服区聚乙烯热性能的演变

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摘要

The double yield phenomenon was studied using specimens of linear low density polyethylene (LLDPE) uniaxially deformed up to different elongations. Extruded samples prepared at 150°C and 70 rpm were deformed at 10 mm/min. The crystallinity in the released state (after elimination of stress) was calculated using the differential scanning calorimetric technique. The crystallinity degree and melting temperature of the samples, as a function of the elongation to which they were subjected, presented a multi-step behavior. A decrement before the first yield point and an increment after this point were observed. Then, at higher elongation values, before the appearance of the second yield point, a significant decrement followed by an abrupt increment were detected. These results in the second yield region were interpreted in terms of partial melting followed by recrystallization. These experimental findings show that the partial melting-recrystallization process is one of the main mechanisms of the double yield phenomenon.
机译:使用单轴变形到不同伸长率的线性低密度聚乙烯(LLDPE)标本研究了双屈服现象。在150°C和70 rpm下制备的挤出样品以10 mm / min的速度变形。使用差示扫描量热技术计算释放状态(消除应力后)的结晶度。样品的结晶度和熔化温度,作为它们所经受的伸长率的函数,表现出多步行为。观察到第一个屈服点之前的减少和此点之后的增加。然后,在较高的伸长率值下,在出现第二屈服点之前,先检测到明显的减小,然后突然增大。在第二屈服区域中的这些结果被解释为部分熔融然后再结晶。这些实验结果表明,部分熔融-再结晶过程是双重屈服现象的主要机理之一。

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