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Statistical and Graphical Assessment of Circumferential and Radial Hardness Variation of AISI 4140 AISI 1020 and AA 6082 Aluminum Alloy

机译:AISI 4140AISI 1020和AA 6082铝合金的周向和径向硬度变化的统计和图形评估

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摘要

Hardness homogeneity of the commonly used structural ferrous and nonferrous engineering materials is of vital importance in the design stage, therefore, reliable information regarding material properties homogeneity should be validated and any deviation should be addressed. In the current study the hardness variation, over wide spectrum radial locations of some ferrous and nonferrous structural engineering materials, was investigated. Measurements were performed over both faces (cross-section) of each stock bar according to a pre-specified stratified design, ensuring the coverage of the entire area both in radial and circumferential directions. Additionally the credibility of the apparatus and measuring procedures were examined through a statistically based calibration process of the hardness reference block. Statistical and response surface graphical analysis are used to examine the nature, adequacy and significance of the measured hardness values. Calibration of the apparatus reference block proved the reliability of the measuring system, where no strong evidence was found against the stochastic nature of hardness measures over the various stratified locations. Also, outlier elimination procedures were proved to be beneficial only at fewer measured points. Hardness measurements showed a dispersion domain that is within the acceptable confidence interval. For AISI 4140 and AISI 1020 steels, hardness is found to have a slight decrease trend as the diameter is reduced, while an opposite behavior is observed for AA 6082 aluminum alloy. However, no definite significant behavior was noticed regarding the effect of the sector sequence (circumferential direction).
机译:常用的结构性黑色金属和有色金属工程材料的硬度均匀性在设计阶段至关重要,因此,应验证有关材料性能均匀性的可靠信息,并应对任何偏差。在当前的研究中,研究了某些铁和非铁结构工程材料在宽光谱径向位置上的硬度变化。根据预先指定的分层设计,在每个坯料的两个面(横截面)上进行测量,以确保在径向和圆周方向上覆盖整个区域。另外,通过基于硬度的基准块的基于统计的校准过程来检查设备和测量程序的可靠性。统计和响应表面图形分析用于检查硬度值的性质,充分性和重要性。仪器参考块的校准证明了测量系统的可靠性,在其中没有强有力的证据证明在各个分层位置上硬度测量的随机性。而且,离群值消除程序仅在较少的测量点被证明是有益的。硬度测量表明,分散域在可接受的置信区间内。对于AISI 4140和AISI 1020钢,发现硬度随着直径的减小而略有下降,而对于AA 6082铝合金则观察到相反的行为。但是,关于扇区序列(周向)的影响,没有发现明显的明显行为。

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