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首页> 外文期刊>Rubber Chemistry and Technology >QUANTIFICATION OF THE CONTRIBUTION OF FILLER CHARACTERISTICS TO NATURAL RUBBER REINFORCEMENT USING PRINCIPAL COMPONENT ANALYSIS
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QUANTIFICATION OF THE CONTRIBUTION OF FILLER CHARACTERISTICS TO NATURAL RUBBER REINFORCEMENT USING PRINCIPAL COMPONENT ANALYSIS

机译:用主成分分析量化填料特性对天然橡胶增强的贡献

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摘要

Practical statistical models were developed to quantify individual contributions from characteristics of conventional and non-conventional fillers and predict resulting mechanical properties of both hevea and guayule natural rubber composites. Carbon black N330 and four different agro-industrial residues, namely, eggshells, carbon fly ash, processing tomato peels, and guayule bagasse, were used in this study. Filler characteristics were used as explanatory variables in multiple linear regression analyses. Principal component analysis was used to evaluate correlations among explanatory variables based on their correlation matrices and to transform them into a new set of independent variables, which were then used to generate reliable regression models. Surface area, dispersive component of surface energy, carbon black, and waste-derived filler loading were found to have almost equal importance in the prediction of composite properties. However, models developed for ultimate elongation poorly explained variability, indicating the dependence of this property on other variables. Agro-industrial residues could potentially serve as more sustainable fillers for polymer composites than conventional fillers. This new modeling approach for polymer composites allows the performance of a wide range of different waste-derived fillers to be predicted with minimum laboratory work, facilitating the optimization of compound recipes to address specific product requirements.
机译:开发了实用的统计模型,以量化来自常规和非常规填料的特性的个体贡献,并预测HEVEA和瓜簧天然橡胶复合材料的产生机械性能。在本研究中使用了炭黑N330和四种不同农业工业残留物,即蛋壳,碳粉煤灰,加工番茄皮和瓜纳甘蔗渣。在多元线性回归分析中使用填充特性作为解释变量。主要成分分析用于评估基于其相关矩阵的解释变量之间的相关性,并将它们转换为新的独立变量,然后用于生成可靠的回归模型。发现表面能,炭黑和废物衍生的填料载量的表面积,在复合性能预测方面具有几乎同样重要的。然而,为最终伸长率开发的模型解释了不可变异性,表明该属性对其他变量的依赖性。农业工业残留物可能是聚合物复合材料的更可持续填料而不是常规填料。这种用于聚合物复合材料的新型建模方法允许在最小的实验室工作中预测各种不同的废物衍生填料,促进化合物配方的优化以解决特定的产品要求。

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