Understanding the influence of manufacturing and material parameters on the mechanical properties of polymer-clay composites: An exploratory statistical analysis

N. Botha, R. Coetzer, H. Inglis, J. Labuschagné
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Abstract

This paper analyses a set of previously obtained experimental results on various clay fillers added to high density polyethylene (HDPE). The composite material was compounded using an extrusion process and manufactured into tensile test samples by means of hot pressing. Various manufacturing parameters (number of extrusions, press time, sample cooling method), material (polymer grade, clay type, clay weight loading) and testing parameters (strain rate) were investigated to determine their influence on the mechanical properties of the composite system. Exploratory data analysis was first employed by graphically representing the data using scatter plots to identify any main characteristics, patterns or anomalies. The statistical analysis was used to quantify the effects of the ultimate tensile strength by first conducting a one way ANOVA analysis before developing a linear model for the response variable analysis. For the percentage elongation to failure, the observations was first grouped into three groups, Brittle, Intermediate or Ductile. A linear discriminant analysis was performed to classify the groups considering a training set of 80% randomly selected observations and testing on the remaining 20%.
了解制造和材料参数对聚合物-粘土复合材料力学性能的影响:探索性统计分析
本文对高密度聚乙烯(HDPE)中添加各种粘土填料的一组已有实验结果进行了分析。采用挤压法制备复合材料,热压法制备拉伸试样。研究了不同的制造参数(挤压次数、挤压时间、样品冷却方法)、材料(聚合物等级、粘土类型、粘土重量载荷)和测试参数(应变率),以确定它们对复合材料体系力学性能的影响。探索性数据分析首先采用散点图以图形方式表示数据,以识别任何主要特征、模式或异常。统计分析用于量化极限抗拉强度的影响,首先进行单向方差分析,然后为响应变量分析建立线性模型。对于断裂伸长率,观察结果首先分为三组,脆性,中等或延性。考虑到80%随机选择的观察值的训练集和对剩余20%的测试,进行线性判别分析以对组进行分类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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