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Life prediction and life extension of Composite specimens using Acoustic Emission technique

机译:声发射技术预测复合材料的寿命

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This paper discusses a proof test procedure for estimating and extending the fatigue life of composite coupons. The estimates were based on the acoustic emission data collected during the described proof test procedure. A group of coupon specimens that included both undamaged as well as damaged ones were tested to verify the ability to estimate the fatigue durability. For majority of the specimens tested the fatigue life of the coupons is inversely proportional to the cumulative AE energy collected during the proof test procedure. Based on the trend that was established, a new group of specimens AE based proof test was performed and using the acoustic emission response, the life was estimated. If one could estimate the fatigue life, it would be possible to identify those specimens, which are likely to fail prematurely. For such specimens it may be possible to extend the fatigue life by appropriate reduction in the cyclic load amplitude. This hypothesis was tested on the last group of specimens. The results obtained during the life extension phase actually show that it is possible to identify the specimens, which are likely to have short life and extend the fatigue life by subjecting them to less demanding load history.
机译:本文讨论了评估和延长复合材料试片疲劳寿命的证明测试程序。估计是基于在所述验证测试过程中收集的声发射数据。测试了包括未损坏和损坏的试样的一组试样,以验证估计疲劳耐久性的能力。对于大多数测试样本,试样的疲劳寿命与在验证测试过程中收集的累积AE能量成反比。根据确定的趋势,进行了一组新的基于AE的标本验证测试,并使用声发射响应估算了寿命。如果可以估计疲劳寿命,则有可能识别出那些可能会过早失效的标本。对于此类试样,可以通过适当减小循环载荷幅度来延长疲劳寿命。在最后一组样本上检验了该假设。实际上,在寿命延长阶段获得的结果表明,可以对标本进行识别,这些标本的寿命可能很短,并且通过使它们经受较少的苛刻载荷历史,可以延长疲劳寿命。

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