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Origin of Multiple Melting Endotherms in a High Hard Blcok Content Polyurethane. 1. Thermodynamic Investigation

机译:高硬块含量的聚氨酯中多种熔融吸热的起源。 1.热力学研究

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摘要

The phase behavior of a set of high hard block content (505 to 100% hard segment by weight) linear thermoplastic polyurethanes has been investigated mainly via differential scanning calorimetry (DSC). The soft segment was based on a polypropylene oxide polyol end-capped with ethylene oxide and the hard segment on a 4,4 min-methylene diphenyldiisocyanate (MDI) chain extended by 2-methyl-1,3-propanediol (MP-Diol). By investigating thermal behavior of the samples, it has been possible to assign the observed high-temperature endothermic transitions to the disruption of an ordered structure appearing in the hard phase under certain annealing conditions and to the microphase mixing of the soft and hard segments. These results suggest a two-step melting process: (1) melting of the ordered structure present in the hard phase; (2) microphase mixing of the soft and hard segments. Wide-angle X-ray scattering experiments gave further support to this assignment. In addition, investigation of the melt-quenched samples has shown that for a hard segment concentration lower than 65% a homogeneous mixed phase is obtained while for a hard segment concentration higher than 65% a two-phase system is obtained phase pure hard segment phase coexisting with a mixed phase with a hard/soft segment weight ratio of approx 1.8 correspondign to 65% hard segment concentrations.
机译:主要通过差示扫描量热法(DSC)研究了一组高硬嵌段含量(按重量计505%至100%的硬链段)的线性热塑性聚氨酯的相行为。所述软链段基于被环氧乙烷封端的聚环氧丙烷多元醇,并且所述硬链段基于由2-甲基-1,3-丙二醇(MP-Diol)延伸的4,4 min-亚甲基二苯基二异氰酸酯(MDI)链。通过研究样品的热行为,可以将观察到的高温吸热转变与在某些退火条件下硬相中出现的有序结构的破坏以及软链段和硬链段的微相混合有关。这些结果表明了两步熔化过程:(1)熔化存在于硬相中的有序结构; (2)软段和硬段的微相混合。广角X射线散射实验为这一任务提供了进一步的支持。此外,对熔融淬火样品的研究表明,对于硬链段浓度低于65%的混合相,可以获得均匀的混合相;对于硬链段浓度高于65%的混合相,则可以获得两相体系,即纯硬链段相。与硬/软链段重量比约为1.8的混合相共存,相当于65%的硬链段浓度。

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