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Optimization of material formulation and processing parameters in relation to mechanical properties of bioepoxy/clay nanocomposites using Taguchi design of experiments

机译:基于实验的塔丘奇设计的生物氧基/粘土纳米复合材料与机械性能相关材料配方和加工参数的优化

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This article aims to study the effects of material formulation and processing parameters on mechanical properties of bioepoxy/clay nanocomposites based on epoxidized soybean oil (ESO) via Taguchi design of experiments (DoEs). A mixed-level DoE with an L16 orthogonal array was constructed to achieve maximum levels of tensile strength, tensile modulus, and impact strength for corresponding bionanocomposites. Pareto analysis of variance (ANOVA) was used to identify significant factors and preferred formulations in the manufacture of bioepoxy/clay nanocomposites. The ESO content was found to have the most significant effect with regards to bionanocomposite mechanical properties with contribution percentages of 66.63, 72.96, and 40.14% for their tensile strength, tensile modulus, and impact strength, respectively. With regards to material processing parameters, mechanical mixing speed was identified as a critical factor to achieve optimal tensile and impact properties. Nonetheless, the results also indicated clay content to be a significant factor for tensile strength, whereas curing agent type was vital for the improvement of tensile modulus and impact strength. Clay type and sonication time were also found to be significant factors for impact strength. In contrast to this, manufacturing parameters such as mechanical mixing temperature, mixing time, and sonication frequency were considered to be non-significant factors due to their low cumulative contribution percentages of <10%. Finally, experimental confirmation tests based on the preferred combination of factors demonstrated good agreement with statistically predicted results. (C) 2017 Wiley Periodicals, Inc.
机译:本文旨在研究材料配方和加工参数对基于Exoxidised大豆油(ESO)的实验基于环氧化大豆油(ESO)的生物氧基/粘土纳米复合材料的影响。构造具有L16正交阵列的混合水平的DOE,以实现相应的脱硫复合材料的最大拉伸强度,拉伸模量和冲击强度。帕累托差异分析(ANOVA)用于鉴定生物氧基/粘土纳米复合材料的制备中的重要因素和优选的制剂。发现ESO含量对其拉伸强度,拉伸模量和冲击强度的贡献百分比具有66.63,72.96和40.14%的贡献百分比具有最显着的影响。关于材料加工参数,鉴定机械混合速度作为实现最佳拉伸和冲击性能的关键因素。尽管如此,结果还指示粘土含量是拉伸强度的重要因素,而固化剂类型对于改善拉伸模量和冲击强度至关重要。还发现粘土类型和超声时间是影响力的重要因素。与此相反,由于它们的低累积贡献百分比为<10%,因此认为制造参数如机械混合温度,混合时间和超声频率被认为是非显着因素。最后,基于优选因素组合的实验证据测试表现出与统计预测结果的良好一致性。 (c)2017 Wiley期刊,Inc。

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