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首页> 外文期刊>Journal of Macromolecular Science. Physics >Preparation, Morphology and Properties of Poly(Trimethylene Terephthalate)/Thermoplastic Polyester Elastomer Blends
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Preparation, Morphology and Properties of Poly(Trimethylene Terephthalate)/Thermoplastic Polyester Elastomer Blends

机译:聚对苯二甲酸丙二醇酯/热塑性聚酯弹性体共混物的制备,形貌和性能

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Poly(trimethylene terephthalate)(PTT)/thermoplastic polyester elastomer (TPEE) blends were prepared and their miscibility, crystallization and melting behaviors, phase morphology, dynamic mechanical behavior, rheology behavior, spherulites morphology, and mechanical properties were investigated by differential scanning calorimetry (DSC), scanning electron microscopy (SEM), dynamic mechanical analysis (DMA), parallel-plate rotational rheometry, polarized optical microscopy (POM), wide angle X-ray diffraction (WAXD), universal tensile tester and impact tester, respectively. The results suggested that PTT and TPEE were partially miscible in the amorphous state, the TPEE rich phase was dispersed uniformly in the solid matrix with a size smaller than 2 μm, and the glass transition temperatures of the blends decreased with increasing TPEE content. The TPEE component had a good effect on toughening the PTT without depressing the tensile strength. The blends had improved melt viscosities for processing. When the blends crystallized from the melt state, the onset crystallization temperature decreased, but they had a faster crystallization rate at low temperatures. All the blends’ melts exhibited a predominantly viscous behavior rather than an elastic behavior, but the melt elasticity increased with increasing TPEE content. When the blends crystallized from the melt, the PTT component could form spherulites but their morphology was imperfect with a small size. The blends had larger storage moduli at low temperatures than that of pure PTT.
机译:制备了聚对苯二甲酸丙二醇酯(PTT)/热塑性聚酯弹性体(TPEE)共混物,并通过差示扫描量热法研究了它们的混溶性,结晶和熔融行为,相形态,动态力学行为,流变行为,球晶形态和力学性能( DSC),扫描电子显微镜(SEM),动态力学分析(DMA),平行板旋转流变仪,偏振光学显微镜(POM),广角X射线衍射(WAXD),通用拉伸测试仪和冲击测试仪。结果表明,PTT和TPEE在非晶态下可部分混溶,富含TPEE的相均匀分散在尺寸小于2μm的固体基质中,并且随着TPEE含量的增加,共混物的玻璃化转变温度降低。 TPEE组分在不降低拉伸强度的情况下对PTT的增韧具有良好的效果。该共混物具有改善的加工熔体粘度。当共混物从熔融状态结晶时,起始结晶温度降低,但在低温下它们具有更快的结晶速率。所有共混物的熔体都表现出主要是粘性行为,而不是弹性行为,但是熔体弹性随着TPEE含量的增加而增加。当共混物从熔体中结晶出来时,PTT组分可以形成球晶,但是它们的形态不完美,尺寸很小。该混合物在低温下的储能模量比纯PTT大。

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