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首页> 外文期刊>Journal of Applied Polymer Science >Morphology, thermal and mechanical performance of epoxy/polysulfone composites improved by curing with two different aromatic diamines
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Morphology, thermal and mechanical performance of epoxy/polysulfone composites improved by curing with two different aromatic diamines

机译:通过用两种不同的芳族二胺固化来改善环氧/聚砜复合材料的形态,热和机械性能

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Epoxy/polysufone (PSF) composites cured with 4,4'-diaminodiphenyl sulfone (DDS) and 4,4'-diaminodiphenyl methane (DDM) were fabricated, and the effect of dual curing reaction of diamines with epoxy on morphology, mechanical, and thermal performance was investigated. DSC results indicated that DDM was more reactive than DDS and the activation energy decreased with the rising of DDM content. Structures with small domain size at the early stage of phase separation were fixed by the fast epoxy-DDM reaction. When the DDM content was elevated to a high level, large dual structures were changed to fine bicontinuous structures, which was favorable to improve the mechanical property. The mechanical performance of epoxy composites was enhanced and the maximum values were achieved when the DDM/DDS ratio was located at 75/25 (PSF/DDS0.25-DDM0.75). The flexural and tensile strength relative to epoxy/DDM system were enhanced more than those relative to epoxy/DDS, while the increase in toughness was the opposite. TGA measurement showed that thermal stability of epoxy/PSF composites was improved because of the restricting effect of continuous PSF domains on thermal motion of epoxy. DMA analysis exhibited two relaxation peaks for PSF/DDS0.25-DDM0.75, which could be attributed to the formation of phase separated morphology and epoxy network with different cross-link density.
机译:用4,4'-二氨基二苯基砜(DDS)和4,4'-二氨基二苯基甲烷(DDM)固化的环氧/多糖酮(PSF)复合材料,以及二胺与环氧树脂的双固化反应对形态,机械和的影响研究了热性能。 DSC结果表明,DDM比DDS更具反应性,并且激活能量随着DDM含量的上升而降低。通过快速环氧-DDM反应固定具有小畴尺寸的结构域尺寸的结构。当DDM含量升高到高水平时,将大的双结构改变为细双轴结构,这有利于改善机械性能。增强环氧复合材料的机械性能,当DDM / DDS比位于75/25(PSF / DDS0.25-DDM0.75)时,实现最大值。相对于环氧/ DDM系统的弯曲和拉伸强度比相对于环氧/ DDS的弯曲强度增强,而韧性的增加是相反的。 TGA测量表明,由于连续PSF结构域对环氧热运动的限制,改善了环氧/ PSF复合材料的热稳定性。 DMA分析表现出PSF / DDS0.25-DDM0.75的两个弛豫峰,其可归因于形成具有不同交联密度的相分离形态和环氧树网络。

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