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Reliability Evaluation of Fatigue Crack Growth Rate of Heat-Treated TIG-Welded Al 6013-t4 by Two-Parameter Wei bull

机译:两参数魏公牛疲劳抗焊接抗焊接裂缝裂纹生长速率的可靠性评价

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The limited data of fatigue crack growth (FCG) may cause an inaccuracy assessment of the fatigue crack growth rate (FCGR). For particular parts in aircraft such as fuselage skin, a high-reliability degree due to FCG must be determined accurately for the design and safety requirements. Generally, the 6xxx series of aluminum alloy is used as the material for the fuselage skin in the aircraft. In this study, reliability evaluation of FCGR of heat-treated TIG-welded Al 6013-t4 was investigated by two-parameter Weibull. The FCG tests were conducted by following the ASTM E647 under three different artificial aging time conditions of 6, 18, and 24 hours. The C and m constant values were obtained by drawing the regression line from FCG data following Paris's equation and analyzed employing three methods; the least square fitting method (LSFM), a mean value method (MVM), and a probabilistic distribution method (PDM). The result showed that the PDM and MVM showed a better-fitted line to assess the C and m values than LSFM. From the reliability viewpoints, the two-parameter Weibull was proposed to be applied as the PDM. Furthermore, the MCM was successful in evaluating the probabilistic assessment of the FCGR with the 85% confidence interval.
机译:疲劳裂纹生长(FCG)的有限数据可能导致疲劳裂纹生长速率(FCGR)的不准确评估。对于机身皮肤等飞机中的特定部件,必须准确地确定由于FCG引起的高可靠性,以便设计和安全要求。通常,6xxx系列铝合金用作飞机中的机身皮肤的材料。在该研究中,通过双参数微泡研究了热处理的TIG焊接Al 6013-T4的FCGR的可靠性评估。通过在三种不同的人工老化时间条件下,在6,18和24小时下进行ASTM E647进行FCG试验。通过从Paris的方程之后从FCG数据绘制回归线并分析采用三种方法来获得C和M常数值;最小二乘拟合方法(LSFM),平均值法(MVM)和概率分布方法(PDM)。结果表明,PDM和MVM显示出更好的线,以评估C和M值而不是LSFM。从可靠性观点来看,提出了两个参数威布尔以PDM应用。此外,MCM成功地评估FCGR的概率评估,其中置信区间的85%置信区间。

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