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首页> 外文期刊>International journal of plastics technology >Interpenetrating polymer networks derived from cardanol based dyes and polyol modified castor oil based polyurethanes
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Interpenetrating polymer networks derived from cardanol based dyes and polyol modified castor oil based polyurethanes

机译:源自腰果酚染料和多元醇改性蓖麻油基聚氨酯的互穿聚合物网络

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摘要

In view of the fast consumption of the petroleum stock and pressing demand for the use of polymeric materials to keep pace with the rate of growth of the world's population the syntheses of polymers from agricultural products have achieved tremendous momentum at present all over the world. A number of Interpenetrating Polymer Networks were synthesized from polyol modified castor oil polyurethanes and cardanol based dyes. The structural characterization of the such polymers was performed using Fourier transform infrared spectral data. The thermal analysis methods such as Thermogravimetric Analysis, Derivative Thermogravimetry and Differential Thermal Analysis were used to determine their decomposition temperature, temperature of maximum decomposition, relative thermal stability and kinetic constants such as activation energy and order of reaction were calculated using the Freeman-Anderson method. X-ray diffraction analysis and Scanning Electron Microscopy were used to probe the morphological changes of the polymers with changes in their compositions. The effects of changes in polyurethane to dye monomer weight ratio on the properties of the polymers were studied at 1.2 and 1.6 NCO/OH ratios. These polymers exhibited very high thermal stability and mechanical strength and are expected to show excellent performance in various applications better than those shown by the co-polymers derived from simple cardanol (cashew phenol).
机译:鉴于石油库存的快速消耗和对使用聚合材料以跟上世界人口增长速度的紧迫需求,目前世界范围内由农产品合成的聚合物取得了巨大的发展势头。由多元醇改性的蓖麻油聚氨酯和腰果酚基染料合成了许多互穿聚合物网络。使用傅立叶变换红外光谱数据进行此类聚合物的结构表征。使用热重分析,导数热重分析和差示热分析等热分析方法确定其分解温度,最大分解温度,相对热稳定性和动力学常数(如活化能和反应级数)采用Freeman-Anderson方法计算。 X射线衍射分析和扫描电子显微镜被用来探测聚合物的形态变化及其组成的变化。在1.2和1.6 NCO / OH比下研究了聚氨酯与染料单体重量比的变化对聚合物性能的影响。这些聚合物表现出非常高的热稳定性和机械强度,并有望比衍生自简单腰果酚(腰果酚)的共聚物表现出更好的优异性能。

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