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Acoustic emission monitoring of damage mechanisms an aramid-epoxy composite after tensile fatigue and aging seawater

机译:拉伸疲劳和海水老化后芳族聚酰胺-环氧复合材料损伤机理的声发射监测

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Normal 0 21 false false false FR X-NONE AR-SA This paper helps to highlight the impact of tensile fatigue and hydric aging in sea water on a composite based the on aramid taffeta fibers and epoxy resin under acoustic monitoring. For this purpose, laminated test pieces were first stimulated to fatigue in several numbers of cycles (cycles 100-50000) before being immersed in the second place for several times (100 to 1000?h) in sea water (37%). The acoustic monitoring was conducted by three piezoelectric sensors were placed on the surfaces of the specimens during static tests. It allowed us to detect directly the different types of damage caused by fatigue and aging (matrix cracking, delamination and fiber breakage). The results that highlight the effects of fatigue and aging, show that these two parameters reduce the fracture characteristics of the material based on the progressively increasing number of cycles and increase the durations of immersions.
机译:正常0 21假假假FR X-NONE AR-SA在声学监测下,本文有助于强调拉伸疲劳和海水老化对基于芳纶塔夫绸纤维和环氧树脂的复合材料的影响。为此,首先将层压的试件经历数个循环(循环100-50000),使其疲劳,然后再将其浸入第二位置几次(100至1000?h)于海水中(37%)。在静态测试期间,通过将三个压电传感器放置在样品表面上进行声学监测。它使我们能够直接检测出由疲劳和老化(矩阵破裂,分层和纤维断裂)引起的不同类型的损坏。突出疲劳和老化影响的结果表明,这两个参数会根据逐渐增加的循环次数并增加浸入时间来降低材料的断裂特性。

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