首页> 外文期刊>Journal of Materials Science >The effect of double mosaic structure on physicochemical properties of polycaprolactone/recycled-oil-based polyurethane composites
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The effect of double mosaic structure on physicochemical properties of polycaprolactone/recycled-oil-based polyurethane composites

机译:双嵌合结构对聚己内酯/再生油基聚氨酯复合材料理化性能的影响

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摘要

A ductile polycaprolactone (PCL)/modified polyurethane (PU) composite with double mosaic structure was prepared through a novel technology. The composite would be used to reduce waste of resources and the environmental hazards of hogwash oil and expand the application of hogwash oil. Composites with different microstructures were obtained by regulating the proportions of "hard segment-phase" PU and "soft segment-phase" PCL. Meanwhile, the influences of microstructure on the macroscopic physicochemical properties of composites were investigated. Results demonstrated that when the PCL content was 30, a wrapping structure was similar to "Punica granatum L." and embedded network structure between organic silica-modified PU and PCL were observed in the composite. Owing to the double mosaic structure, the water permeability of the composite was reduced by 61.9 lower than that of modified PU. However, the hydrophobicity of the former was 15.6 higher than that of the latter. The component fixation rate reached 80.8, resistance to humidity and heat was strengthened. Coated fertilizers were prepared using the composite as the coating material were slightly superior to organic-silica-modified PU in terms of slow N releasing performance. The prepared composite exhibited good physicochemical properties and showed promising application values in many fields, such as coating materials, thermoplastic elastomer and fertilizers. This study provides a novel strategy for preparing porous materials.
机译:通过新技术制备了一种具有双重镶嵌结构的延展性聚己内酯(PCL)/改性聚氨酯(PU)复合材料。该复合材料将用于减少猪油的资源浪费和环境危害,并扩大猪油的应用。通过调控“硬段相”PU和“软段相”PCL的比例,获得了具有不同微观结构的复合材料。同时,研究了微观结构对复合材料宏观理化性能的影响。结果表明,当PCL含量为30%时,复合材料中存在与“石榴”相似的包裹结构,并观察到有机二氧化硅改性PU与PCL之间的嵌入网络结构。由于采用双层镶嵌结构,复合材料的透水性比改性PU降低了61.9%。然而,前者的疏水性比后者高15.6%。组分固定率达到80.8%,耐湿耐热性增强。由于包膜材料在缓氮释放性能方面略优于有机二氧化硅改性PU而制备了包膜肥料。所制备的复合材料具有良好的理化性能,在涂料、热塑性弹性体、肥料等多个领域具有良好的应用价值。本研究为多孔材料的制备提供了一种新的策略。

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