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Modal and strain experimental analysis to an improved axial-axial cruciform specimen for ultrasonic fatigue testing

机译:改进轴向轴向十字形试样的模态和应变实验分析,用于超声疲劳试验

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Fatigue behavior for any material or composite is an ever-evolving complex subject of big engineering importance. Within the very high 10~6 to 10~9 cycle regime the use of ultrasonic fatigue has been a big research topic in recent years, ranging from all metals and composite studies, new experimental methods and induced stress states, to the frequency effect and associated fracture mechanics. Following the associated cruciform ultrasonic fatigue testing research in development, new and improved cruciform specimens were acquired and subjected to experimental analysis. The conducted fatigue cruciform testing method induces an axial-axial in phase stress state through the use of a piezoelectric ultrasonic testing machine built at Instituto Superior Tecnico laboratories. A modal response analysis was performed within the frequency working range of the used piezoelectric transducer using a Polytec laser vibrometer. A modal calculation method termed Frequency Domain Decomposition (FDD) was adapted to the measured cruciform vibration displacements. The points of measure were in correlation to a previous published numerical research. The results were then compared to previous cruciform specimens' behavior and numerical results. Strain gauges were also used for the strain and stress study at the specimen's center. With both conducted experiments showing promising results, the new and improved specimens were led to fatigue failure and a preliminary fracture analysis made.
机译:任何材料或复合材料的疲劳行为都是一项高度发展的复杂主题,具有重要的工程重要性。在10〜6到10〜9周期政权中,使用超声波疲劳的使用是近年来的大型研究课题,包括所有金属和复合研究,新的实验方法和诱导应力状态,以频率效应和相关骨折力学。遵循相关的甲状腺超声波疲劳试验研究,获得新的和改进的十字形标本并进行实验分析。通过在Instituto优越的Tecnico Laboratories内置的压电超声波试验机上,进行了疲劳十字形测试方法在相位应力状态下引起轴向轴向轴向轴向轴向轴向轴向轴向轴向轴向轴向轴向轴向轴向轴向。使用Polytec激光振动计在二手压电换能器的频率加工范围内进行模态响应分析。将频域分解(FDD)称为频域分解(FDD)的模态计算方法适用于测量的十字形振动位移。衡量点与先前公开的数值研究相关。然后将结果与先前的十字形标本的行为和数值结果进行比较。应变仪也用于样品中心的应变和应力研究。对于展示有前途的结果的两种进行实验,新的和改进的样本导致疲劳失效和初步裂缝分析。

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