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Miscible crystalline/crystalline polymer blends of polyoxymethylene copolymer/poly(ethylene oxide) with interpenetrated spherulites and enhanced properties

机译:聚甲醛共聚物/聚环氧乙烷与互穿的球晶的可混溶结晶/结晶聚合物共混物和增强的性能

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摘要

Miscibility and crystallization behavior of a polymer blend consisting of two crystalline components, polyoxymethylene copolymer (Co-POM) and poly(ethylene oxide) (PEO), have been investigated. Experimental results indicate that Co-POM is thermodynamically miscible with PEO, as shown by the existence of single-composition dependent glass transition temperature over the entire composition range. The crystal structures and spherulitic morphologies of (Co-POM)/PEO blends were studied by X-ray diffraction, differential scanning calorimetry, scanning electron microscopy, and polarizing light microscopy. It was found that the PEO spherulites crystallized within the matrix of the crystals of the pre-existing Co-POM phase and resulted in a high extent of interfibrillar segregation. The unique interpenetrated crystalline structure was beneficial for the sufficient contact between the two components and significantly improved both the toughing and the lubricating effect of PEO on the POM matrix. On incorporation of 30 wt% PEO, the notched impact strength of POM was enhanced from 6.7 to 10.3 MPa, by about 53.7%, while the elongation at break increased from 28.5% to 121.0%, by about 3.2 times. Furthermore, the friction coefficient drastically decreased from 0.35 to 0.17, demonstrating the enhanced tribological performance of the miscible blends. J. VINYL ADDIT. TECHNOL., 22:479-486, 2016. (c) 2015 Society of Plastics Engineers
机译:已经研究了由两种结晶组分(聚甲醛共聚物(Co-POM)和聚环氧乙烷(PEO))组成的聚合物共混物的混溶性和结晶行为。实验结果表明,Co-POM在热力学上可与PEO混溶,这在整个组成范围内都存在依赖于单一成分的玻璃化转变温度。通过X射线衍射,差示扫描量热法,扫描电子显微镜和偏光显微镜研究了(Co-POM)/ PEO共混物的晶体结构和球晶形态。发现PEO球晶在预先存在的Co-POM相的晶体的基质内结晶并且导致高度的原纤维间偏析。独特的互穿晶体结构有利于两个组件之间的充分接触,并显着改善了PEO对POM基体的增韧作用和润滑作用。掺入30 wt%的PEO后,POM的缺口冲击强度从6.7 MPa提高到10.3 MPa,提高了约53.7%,而断裂伸长率从28.5%提高到了121.0%,提高了约3.2倍。此外,摩擦系数从0.35急剧降低至0.17,表明混溶共混物的摩擦学性能得到增强。 J.乙烯基添加物。 TECHNOL。,22:479-486,2016.(c)2015年塑料工程师学会

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