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首页> 外文期刊>Journal of Applied Polymer Science >Investigation of curing and thermal behavior of benzoxazine and lignin mixtures
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Investigation of curing and thermal behavior of benzoxazine and lignin mixtures

机译:苯并恶嗪和木质素混合物的固化和热行为研究

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摘要

This article describes the synthesis and characterization of two types of benzoxazine monomers based on phenol or bisphenol, aniline, and formaldehyde. Their characterization was achieved by Fourier transform infrared, ~1H-nuclear magnetic resonance, differential scanning calorimetry (DSC), and thermogravimetric analysis (TGA). Lignin polymer was characterized by infrared, DSC, and TGA. The curing behavior of mixtures of benzoxazine monomers and lignin was investigated by DSC. The mass ratios of benzoxazine monomers/lignin of a series of samples were 100: 0, 95: 05, 90: 10, 85: 15, 80: 20, 75: 25, and 70: 30. The results indicate that the maximum curing temperatures of the mixtures were lower than that of the pure benzoxazine monomers, and that they decreased with increasing contents of lignin in the mixture. The heat of polymerization (ΔH) of the benzoxazine monomers and lignin mixtures as a function of the mass ratio and the structure of the benzoxazine monomers shows no definite trend. The samples were cured according to the following conditions: 170°C/2h + 200°C/2h and analyzed by DSC and TGA. In all the samples, the glass transition temperature of the benzoxazines increased upon mixing with increasing amounts of lignin. The changes may be due to the formation of a more compact network structure in the mixtures. The thermal stability of the isothermally cured resins is found to be dependent on the mass ratio of benzoxazine/lignin and structure of the benzoxazine monomers. The more lignin in the mixture, the higher is the char yield in the mixture.
机译:本文介绍了两种基于苯酚或双酚,苯胺和甲醛的苯并恶嗪单体的合成和表征。通过傅立叶变换红外光谱,〜1H核磁共振,差示扫描量热法(DSC)和热重分析(TGA)实现了它们的表征。木质素聚合物的特征在于红外,DSC和TGA。通过DSC研究了苯并恶嗪单体和木质素的混合物的固化行为。一系列样品中苯并恶嗪单体/木质素的质量比为100:0、95:05、90:10、85:15、80:20、75:25和70:30。结果表明最大固化混合物的温度低于纯苯并恶嗪单体的温度,并且随着混合物中木质素含量的增加而降低。苯并恶嗪单体和木质素混合物的聚合热(ΔH)随质量比和苯并恶嗪单体的结构而变化,没有明确的趋势。根据以下条件固化样品:170°C / 2h + 200°C / 2h并通过DSC和TGA分析。在所有样品中,与增加量的木质素混合后,苯并恶嗪的玻璃化转变温度均升高。该变化可能是由于在混合物中形成了更紧密的网络结构。发现等温固化树脂的热稳定性取决于苯并恶嗪/木质素的质量比和苯并恶嗪单体的结构。混合物中的木质素越多,混合物中的焦炭产率就越高。

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