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Mixing Assisted Direct Formation of Isotactic Poly(1-butene) Form I ' Crystals from Blend Melt of Isotactic Poly(1-butene)/Polypropylene

机译:由等规聚(1-丁烯)/聚丙烯共混熔体的混合辅助直接形成等规聚(1-丁烯)I'型晶体

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摘要

The influence of mixing of iPB-1/iPP blend on the polymorphism of iPB-1 under processing-relevant conditions is studied with emphasis on "the competition between the thermodynamically stable form I' crystal and the kinetically favored form II. In situ optical microscopy measurements reveal that the upper critical solution temperature (UCST) of iPB-1/iPP blend locates in the range of 180-200 degrees C. Unexpectedly, by quenching mixed iPB-1/iPP melt down to temperatures below UCST and melting point, form I/I' can be produced directly which is further identified as form I' by temperature dependent WAXS and DSC. The formation of form I' is promoted by increasing the annealing time above UCST, while is suppresses by raising the quenching temperature. In addition, the crystallization of iPP also displays a similar trend as iPB-1 does. The correlated crystallization of each constituent with dependence on the initial mixing degree suggests that the crystallization behavior of the binary blends is determined by the interplay between simultaneous processes concomitant with the liquid-solid transition. The experimental results reveal the possibility to modify the crystallization pathway of iPB-1 in iPB-1/iPP blend through the mixing degree which is initially controlled by annealing but is subject to evolve during the subsequent thermal treatment. Possible mechanisms are discussed including the roles of phase separation and concentration fluctuation in crystallization.
机译:研究了iPB-1 / iPP共混物的混合对加工相关条件下iPB-1多态性的影响,重点是“热力学上稳定的I型晶体与动力学上有利的II型晶体之间的竞争。原位光学显微镜测量表明,iPB-1 / iPP共混物的最高临界溶液温度(UCST)处于180-200摄氏度的范围内。出乎意料的是,通过将混合的iPB-1 / iPP骤冷至低于UCST和熔点的温度,形成可以直接生产I / I',I / I'通过与温度相关的WAXS和DSC进一步确定为I'型,通过在UCST之上增加退火时间可以促进I'I的形成,而通过提高淬火温度则可以抑制I / I'的形成。 ,iPP的结晶也表现出与iPB-1相似的趋势,每种成分的相关结晶取决于初始混合程度,表明二元共混物的结晶行为s由伴随液-固转变的同时进行的过程之间的相互作用决定。实验结果表明,有可能通过混合程度来改变iPB-1 / iPP共混物中iPB-1的结晶途径,该混合程度最初是由退火控制的,但在随后的热处理过程中会发生演变。讨论了可能的机制,包括相分离和浓度波动在结晶中的作用。

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