利用Sobel灵敏度分析研究了湍流摩擦工艺参数对AZ31B/CNT纳米复合材料表面力学性能的影响

E. Mansouri, Hasan Hooshangi, Milad Salehi
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引用次数: 0

摘要

微扰摩擦法是一种用于修饰表面、提高机械性能和生产复合材料的固态方法。本研究采用湍流摩擦法和Sobel灵敏度分析法研究了有效参数对碳纳米管AZ31B / CNT合金表面复合的影响。本研究的输入参数为推进速度、转速、碳纳米管重量百分比和焊道数。也考虑输出包括硬度和重量损失。为了对结果进行分析,采用Sobel敏感性分析来研究投入对产出的定性和定量影响。研究结果表明,碳纳米管的重量百分比、旋转速度、焊接道次和推进速度分别对硬度有影响。碳纳米管的重量百分比、焊接道次、旋转速度和推进速度对减重也有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of the effect of turbulent friction process parameters on the surface mechanical properties of AZ31B/CNT nanocomposite using Sobel sensitivity analysis
The perturbation friction process is a solid state method used to modify the surface, improve mechanical properties, and produce composites. In this research, the effect of effective parameters on the surface compositing of AZ31B / CNT alloy with carbon nanotubes has been investigated by the turbulent friction process method and by the Sobel sensitivity analysis method. Input parameters in this study were advance speed, rotation speed, weight percentage of carbon nanotubes and number of welding passes. Also considered outputs included hardness and weight loss. In order to analyze the results, Sobel sensitivity analysis has been used to investigate the qualitative and quantitative effect of inputs on outputs. The results of this study showed that the weight percentage of carbon nanotubes, rotation speed, number of welding passes and advancing speed affect hardness, respectively. Also, the weight percentage of carbon nanotubes, the number of welding passes, the rotation speed and the advancing speed affect the weight loss.
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