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A means for industry to determine the economic life of bonded joints under representative operation flight loads

机译:用于在代表性运营飞行负荷下确定债券关节经济生活的手段

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The present paper shows that the variability in the cyclic fatigue crack growth (FCG) rate in structural adhesives that is frequently observed in laboratory test results can be captured by using a Hartman-Schijve methodology. To this end the Hartman-Schijve equation has been used to access an 'upper-bound' FCG rate curve that (a) encompasses all the experimental data, (b) provides a conservative, 'worst-case' FCG rate curve, and (c) accounts for the experimental scatter that is frequently seen under fatigue loading. The importance of allowing for the variability in the measured FCG rate is illustrated by considering FCG in a bonded double-overlap joint subjected to an industry-standard, combat-aircraft flight-load fatigue-cycle spectrum (i.e. FALSTAFF).
机译:本文旨在通过使用Hartman-Schijve方法,可以捕获在实验室测试结果中经常观察到的结构粘合剂中的循环疲劳裂纹裂纹(FCG)速率的可变性。 为此,已经使用Hartman-Schijve等式来访问“上限”FCG速率曲线,即(a)包含所有实验数据,(b)提供保守的“最坏情况”FCG速率曲线,( c)占疲劳负荷经常看到的实验散射。 通过在经受行业标准的粘结双重重叠关节中考虑FCG,允许在测量的FCG率中允许变异性的重要性进行说明,该方法标准的作战飞机飞行载荷循环谱(即FALSTAFF)。

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