用频率脱落法估计腐蚀疲劳裂纹扩展

R. Prakash, S. Dhinakaran
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引用次数: 7

摘要

腐蚀疲劳裂纹扩展特性对海洋和近海结构的设计具有重要意义。关键部件的设计需要在10−2到10−3 Hz的极低频率下的疲劳裂纹扩展速率数据。在低频率下进行实验,由于测试时间长,实际操作困难。为了解决这个问题,建议使用频率脱落方法来估计腐蚀裂纹的扩展特性,其中频率随裂纹的推进使用指数定律而脱落。在实验室空气条件和3.5% NaCl溶液中,对Ni-Mn-Cr钢在恒定ΔK范围18 MPa√m(低巴黎区)下的疲劳裂纹扩展速率进行了试验。在1 ~ 0.1 Hz频率范围内,裂纹扩展速率随试验频率的变化在对数-对数尺度上呈直线趋势;然而,当频率进一步下降时,趋势发生变化,这可能是由于腐蚀机制的主导。为了了解裂纹闭合的作用,以裂纹长度的周期性间隔获得裂纹闭合估计,有效应力强度图表明,随着腐蚀频率的降低,裂纹扩展速率会加快。
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Estimation of Corrosion Fatigue-Crack Growth through Frequency Shedding Method
Corrosion fatigue-crack growth characteristics are important for the design of marine and off-shore structures. Design of critical components requires data on fatigue-crack growth rate at very low frequencies of the order of 10−2 to 10−3 Hz. Experiments at low frequencies pose practical difficulties of enormous test duration. To address this, it is proposed to estimate corrosion crack growth characteristics using a frequency shedding method where the frequency is shed with crack advance using an exponential law. Fatigue-crack growth rate tests have been conducted on Ni–Mn–Cr steel at a constant ΔK range of 18 MPa√m (lower Paris regime) under lab air conditions as well as 3.5 % NaCl solution. Crack growth rate data plotted as a function of test frequency presents a straight-line trend in log–log scale for a frequency range of 1–0.1 Hz; however, there is a change in trend when the frequencies are dropped further, which could be due to domination of corrosion mechanism. To understand the role of crack closure, crack closure estimates were obtained at periodic intervals of crack length and the effective stress intensity graphs suggest acceleration in crack growth rate due to corrosion as the frequency is reduced.
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