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AN EXPERIMENTAL INVESTIGATION ABOUT FATIGUE CRACK GROWTH RATE OF ALUMINUM ALLOY CONSIDERING VARIOUS MEAN STRESS

机译:考虑不同平均应力的铝合金疲劳裂纹扩展速率的实验研究

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In general, aluminum alloy is a commonly used for liquefied natural gas (LNG) storage systems. In this regard, it is important to know exact mechanical properties at cryogenic temperature. There are many researches to assess mechanical properties of aluminum alloy, such as tensile strength, fatigue performance and fracture toughness. Fatigue crack growth rate (FCGR) is important to predict the service life. In particular, mean stress effect can significantly affect the fatigue life. In this regard, this study carried out by a series of FCGR test at five different stress ratios (R=0.1,0.3, 0.5,0.7 and 0.85). The major objective of this paper is to suggest a new model that can consider the mean stress effect on FCGR of aluminum alloy in a unified manner. A mean stress equation is incorporated into Paris' law. In order to validate the model, FCGR test data of aluminum alloy is compared with Walker's relationship. Compared to the other existing model, the new model is found to exhibit more accurate result compared to Walker model.
机译:通常,铝合金是液化天然气(LNG)存储系统的常用材料。在这一点上,重要的是要知道在低温下的确切机械性能。有许多研究评估铝合金的机械性能,例如拉伸强度,疲劳性能和断裂韧性。疲劳裂纹扩展率(FCGR)对于预测使用寿命很重要。特别是平均应力效应会显着影响疲劳寿命。在这方面,本研究通过一系列FCGR试验在五个不同的应力比(R = 0.1、0.3、0.5、0.7和0.85)下进行。本文的主要目的是提出一个可以综合考虑平均应力对铝合金FCGR的影响的新模型。平均应力方程式已纳入巴黎法律。为了验证模型,将铝合金的FCGR测试数据与Walker的关系进行了比较。与其他现有模型相比,发现新模型与Walker模型相比显示出更准确的结果。

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