STUDY OF INFLUENCE OF METAL NANOOXIDES ON CHARACTERISTICS OF COMPOSITE MATERIALS BASED ON POLYURETHANES

T. V. Burdikova, S. S. Ivshin, L. Zenitova
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Abstract

The paper presents the results of studies on the possibility of modifying the polyurethane matrix by the introduction into their structure of nanoscale fillers. The influence of the nature and content of nanosize additives of metal oxides (Al2O3, Fe2O3, CuO) on the physicomechanical properties of filled polyurethane compositions based on SKU PFL-100 prepolymer manufactured by Kazan Synthetic Rubber Plant JSC cured with 4,4'-methylene bis-(orthochloraniline) (MOCA) was studied. Dispersion analysis of the studied fillers is made. It was shown that the studied powders are prone to agglomeration. According to the specific surface area of the particles, the studied metal oxide powders are arranged as follows: Al2O3 - Fe2O3 - SiO2 - CuO. A discussion was made of the contribution of such factors as the area of interfacial contact, the structure and adsorption properties of the particle surface to the interaction at the oxide-polyurethane interface. It is shown that the decisive factor affecting the level of physical and mechanical properties is the nature of the filler (hydrophilicity, particle surface structure). The nature and concentration of nanosized particles of metal oxides were evaluated for the physicomechanical properties of the polymer under study. The initial and modified compositions were studied by thermogravimetric analysis. As a result of the studies, the basic laws that determine the effect of nanoscale additives of metal oxides on the properties of polymer systems are determined. It was shown that the introduction of 1% of the studied excipients is optimal. The highest values of physical and mechanical characteristics were recorded for polyurethane samples filled with copper oxide. Thermogravimetric analysis showed that by adding iron oxide additives it is possible to increase the heat-resistant properties of the polymer at operating temperatures up to 300 °C.
金属纳米氧化物对聚氨酯基复合材料性能影响的研究
本文介绍了在聚氨酯基体结构中引入纳米填料改性的可能性的研究结果。研究了纳米金属氧化物添加剂(Al2O3、Fe2O3、CuO)的性质和含量对喀山合成橡胶厂生产的SKU PFL-100预聚物(4,4′-亚甲基双-正氯苯胺(MOCA))固化的填充聚氨酯组合物的物理力学性能的影响。对所研究的填料进行了色散分析。结果表明,所研究的粉末容易结块。根据颗粒的比表面积,所研究的金属氧化物粉末排列为:Al2O3 - Fe2O3 - SiO2 - CuO。讨论了界面接触面积、颗粒表面结构和吸附性能等因素对氧化物-聚氨酯界面相互作用的影响。结果表明,影响物理力学性能水平的决定性因素是填料的性质(亲水性、颗粒表面结构)。研究了金属氧化物纳米粒子的性质和浓度对聚合物的物理力学性能的影响。通过热重分析对初始组分和改性组分进行了研究。研究结果确定了纳米级金属氧化物添加剂对聚合物体系性能影响的基本规律。结果表明,所研究的辅料中加入1%为最佳。物理和机械特性的最高值记录了聚氨酯样品填充氧化铜。热重分析表明,通过添加氧化铁添加剂,可以在高达300°C的工作温度下提高聚合物的耐热性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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