首页> 外文期刊>Journal of Turbulence >Activation of Magnesium Lignosulfonate and Kraft Lignin: Influence on the Properties of Phenolic Resin-Based Composites for Potential Applications in Abrasive Materials
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Activation of Magnesium Lignosulfonate and Kraft Lignin: Influence on the Properties of Phenolic Resin-Based Composites for Potential Applications in Abrasive Materials

机译:拉染料镁和牛皮纸的活化:对玻璃树脂基复合材料性能的影响,用于磨料材料潜在应用

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摘要

Magnesium lignosulfonate and kraft lignin were activated by different oxidizing agents for use in phenolic resin composites used for the production of abrasive components. The physicochemical properties of the oxidized materials were analyzed by Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), dynamic mechanical-thermal analysis (DMTA) and inverse gas chromatography (IGC). The homogeneity of the model abrasive composites containing the studied products was assessed based on observations obtained using a scanning electron microscope (SEM). FTIR and XPS analysis of the oxidized products indicated that the activation process leads mainly to the formation of carbonyl groups. The IGC technique was used to assess changes in the surface energy and the acid-base properties of the studied biopolymers. The changes in the acid-base properties suggest that more groups acting as electron donors appear on the oxidized surface of the materials. DMTA studies showed that the model composites with 5% magnesium lignosulfonate oxidized by H2O2 had the best thermomechanical properties. Based on the results it was possible to propose a hypothetical mechanism of the oxidation of the natural polymers. The use of such oxidized products may improve the thermomechanical properties of abrasive articles.
机译:通过不同的氧化剂活化镁木质素磺酸盐和牛皮纸,用于用于酚醛树脂复合材料,用于生产磨料组分。通过傅里叶变换红外光谱(FTIR),X射线光电子能谱(XPS),动态机械热分析(DMTA)和逆气相色谱(IGC)分析氧化材料的物理化学性质。基于使用扫描电子显微镜(SEM)获得的观察结果评估含有研究的模型磨料复合材料的均匀性。氧化产品的FTIR和XPS分析表明,活化过程主要引发羰基的形成。 IGC技术用于评估所研究的生物聚合物的表面能和酸碱性质的变化。酸碱性质的变化表明,用作电子供体的更多组出现在材料的氧化表面上。 DMTA研究表明,用H 2 O 2氧化5%的木质素磺酸盐的模型复合材料具有最佳的热机械性能。基于结果,可以提出天然聚合物氧化的假设机制。使用这种氧化产品可以改善磨料制品的热机械性能。

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