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Experimental Investigation on Composite Circular Steel Columns- Taguchi's Approach

机译:复合圆钢柱的试验研究-田口法

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Composite circular steel tubes- with and without epoxy infill for three different grades of concrete are tested for ultimate load capacity and axial shortening , under axial monotonic loading for compression. Steel tubes are compared for different lengths, cross sections and thickness. Specimens were tested separately after adopting Taguchi's L9 (Latin Squares) Orthogonal array in order to save the initial experimental cost on number of specimens and experimental duration. DOE (Design of Experiment) approach was adopted. Results were generated using Taguchi's method-a new technique to get mean effects plot. Analysis was carried out using ANOVA (Analysis of Variance) technique with the assistance of Mini Tab vl5- a statistical soft tool. Results were verified after conducting preliminary nine combination experiments as per L9 orthogonal array and linear regression models were developed. Comparison for predicted and experimental output is obtained from linear regression plots. To know the implications of different factors on circular composite columns with and without epoxy, surface contours were also generated. From this research study it is concluded that .Regression models which were developed with minimum number of experiments based on Taguchi's method predicted the axial load carrying capacity very well and reasonably well for at ultimate point. Cross sectional area of steel tube has most significant effect on ultimate load carrying capacity. Also it is observed that, as length of steel tube increased-load carrying capacity decreased.
机译:对三种不同等级的混凝土使用带或不带环氧填充物的复合圆形钢管,在轴向单调加载进行压缩的情况下,进行了极限承载力和轴向缩短的测试。比较钢管的不同长度,横截面和厚度。采用Taguchi的L9(拉丁方形)正交阵列后,分别测试了样品,以节省最初的实验成本,减少了样品数量和实验时间。采用了DOE(实验设计)方法。使用田口法(一种获得平均效果图的新技术)生成结果。在统计软工具Mini Tab vl5-的帮助下,使用ANOVA(方差分析)技术进行了分析。根据L9正交阵列进行了初步的九次组合实验后,验证了结果,并开发了线性回归模型。从线性回归图获得预测输出与实验输出的比较。为了了解不同因素对含或不含环氧的圆形复合柱的影响,还生成了表面轮廓。从这项研究得出的结论是:基于田口方法,通过最少的实验开发的回归模型可以很好地预测轴向载荷,并最终达到极限。钢管的横截面面积对极限承载能力有最大的影响。还观察到,随着钢管长度的增加,承载能力降低。

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