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首页> 外文期刊>Macromolecules >Critical Stress for Crystal Transition in Poly(butylene succinate)-Based Crystalline-Amorphous Multiblock Copolymers
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Critical Stress for Crystal Transition in Poly(butylene succinate)-Based Crystalline-Amorphous Multiblock Copolymers

机译:聚丁二酸丁二醇酯基结晶无定形多嵌段共聚物中晶体转变的临界应力

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Multiblock copolymers consisting of crystalline poly(butylene succinate) and amorphous poly(1,2-propylene succinate) (PBS-co-PPS) are synthesized. The microstructure of the materials is investigated by the combination of thermal analysis and wide-angle/smallangle X-ray scattering (WAXS/SAXS). The noncrystalline PPS blocks are found to locate predominately in the amorphous phase between crystalline lamellae of PBS. By means of in situ WAXS coupled with optical-assisted strain measurement, the deformation process of PBS-co-PPS is studied. The stiffness and strength of PBS-co-PPS decrease with increasing PPS fraction, while the strain recovery behavior of PBS-co-PPS is similar to PBS homopolymer. Transition from α crystal to β crystal is observed for all the PBS-co-PPS samples. The critical stress for α-β transition of PBS-co-PPS is determined, which is found to be independent of PPS blocks. The universal critical stress for crystal transition is interpreted through a single-microfibril-stretching mechanism.
机译:合成了由结晶聚丁二酸丁二酯和无定形聚1,2-丙二酸丁二酯组成的多嵌段共聚物(PBS-co-PPS)。通过热分析和广角/小角X射线散射(WAXS / SAXS)的结合来研究材料的微观结构。发现非晶PPS嵌段主要位于PBS的结晶薄片之间的非晶相中。通过原位WAXS结合光学辅助应变测量,研究了PBS-co-PPS的变形过程。 PBS-co-PPS的刚度和强度随PPS分数的增加而降低,而PBS-co-PPS的应变恢复行为与PBS均聚物相似。对于所有PBS-co-PPS样品,都观察到了从α晶体到β晶体的转变。确定了PBS-co-PPS的α-β转变的临界应力,发现该临界应力与PPS嵌段无关。晶体转变的普遍临界应力是通过单微原纤拉伸机制来解释的。

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