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Fatigue Failure Results for Multi-Axial versus Uniaxial Stress Screen Vibration Testing

机译:多轴和单轴应力筛振动测试的疲劳失效结果

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To date, the failure potential and prediction between simultaneous multi-axial versus sequentially applied uniaxial vibration stress screen testing has been the subject of great debate. In most applications, current vibration tests are done by sequentially applying uniaxial excitation to the test specimen along three orthogonal axes. The most common standards for testing military equipment are published in MIL-STD-810F and NAVMAT P-9492. Previous research had shown that uniaxial testing may be unrealistic and inadequate. This current research effort is a continuing effort to systematically investigate the differences between fatigue damage mechanisms and the effects of uniaxial versus tri-axial testing. This includes assessing the ability of the tri-axial method in predicting the formation of damage mechanisms, specifically looking at the effects of stress or fatigue failure. Multi-axial testing achieves the synergistic effect of exciting all modes simultaneously and induces a more realistic vibration stress loading condition. As such, it better approximates real-world operating conditions. This paper provides the latest results on the differences between multi-axial and uniaxial testing of a simple notched cantilever beam.
机译:迄今为止,在同时进行的多轴与顺序施加的单轴振动应力筛选测试之间的失效可能性和预测一直是争论的主题。在大多数应用中,当前的振动测试是通过沿三个正交轴将单轴激励顺序施加到试样上来完成的。 MIL-STD-810F和NAVMAT P-9492中发布了用于测试军事装备的最通用标准。先前的研究表明,单轴测试可能是不现实且不充分的。这项当前的研究工作是对系统研究疲劳损伤机制与单轴与三轴测试效果之间的差异的持续努力。这包括评估三轴方法预测损伤机理形成的能力,特别是观察应力或疲劳失效的影响。多轴测试实现了同时激发所有模式的协同效果,并引发了更逼真的振动应力加载条件。因此,它更好地近似了实际操作条件。本文提供了有关一个简单的缺口悬臂梁的多轴和单轴测试之间差异的最新结果。

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