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Morphology and Properties of Poly(oxymethylene) Engineering Plastics

机译:聚甲醛工程塑料的形态和性能

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摘要

Comparative WAXD/SAXS/SEM/DSC structural studies of a series of semi-crystalline poly(oxymethylene) (POM) engineering plastics, including the commercial products, homopolymer Delrin~® and typical poly(oxymethylene-co-oxyethylene)s, and a few lab-made POM compositions, were performed. The latter differed in their content of functional additives (present in low concentrations) and POM molecular weight characteristics. In parallel, their densities, thermal behavior/laser-interferometric creep rate spectra (DSC/CRS) at 20-180℃, as well as long-term creep resistance (LTCR) at 20℃ were studied. It has been found that introducing the nucleating agents and oxyethylene units resulted in formation of more fine spherulitic or practically non-spherulitic structure with close- or loose-packed lamellar stacks. The presence of both "thick" (5-10 nm) and "thin" (1.5-3 nm) lamellae in the weight ratio of ~3:1 was shown in all cases. Close values of real POM crystallinities, not exceeding 50%, were obtained by WAXD and DSC. A predominant role of "straightened out" or slightly bent tie chains in disordered layers of isotropic POMs was presumed, resulting in segmental dynamics differently constrained by crystallites (DSC/CRS data). As a result, certain morphology -density -creep resistance correlations were found.
机译:一系列半结晶聚甲醛(POM)工程塑料的WAXD / SAXS / SEM / DSC结构比较研究,包括商业产品,均聚物Delrin®和典型的聚甲醛-共-氧化乙烯,以及进行了少量实验室制造的POM合成物。后者的功能性添加剂含量(低浓度)和POM分子量特征不同。同时,研究了它们的密度,20-180℃下的热行为/激光干涉蠕变速率谱(DSC / CRS)以及20℃下的长期抗蠕变性(LTCR)。已经发现,引入成核剂和氧化乙烯单元导致形成具有紧密或疏松堆积的层状叠层的更精细的球状或实际上非球状的结构。在所有情况下,均显示重量比为〜3:1的“厚”(5-10 nm)和“薄”(1.5-3 nm)薄片。通过WAXD和DSC获得的实际POM结晶度的接近值不超过50%。据推测,在各向同性POM的无序层中,“拉直”或略微弯曲的领带链起着主要作用,导致分段动力学受到微晶的不同约束(DSC / CRS数据)。结果,发现了某些形态-密度-蠕变阻力相关性。

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