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Corrosion Fatigue Crack Growth Studies on Pressure Vessel and Piping Steels in Water Environment

机译:水环境下压力容器和管道钢的腐蚀疲劳裂纹扩展研究

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Corrosion fatigue crack growth studies were conducted on eccentrically-loaded single edge notch tension specimens made of SA 333 Gr. 6 and SA 516 Gr. 70 carbon steels in water environment. The experiments were conducted using a ±250 kN capacity Universal Testing Machine under constant amplitude sinusoidal loading at a test frequency of 0.50 Hz and stress ratio of 0.1. The fabrication of test specimens and the experiments were carried out based on ASTM E 647 and ASTM E 1820. The crack initiation and growth were monitored and images were captured by using a digital camera at regular intervals of fatigue cycles. By using these images, the length of crack was measured. The tests were terminated when the uncracked portion of the specimens was insufficient to take further load. Crack growth rate and stress intensity factor range values were evaluated at incremental values of loading cycles and crack length. Using the crack growth rate vs. stress intensity factor range plots, best fit curves following power law in the form of Paris’ equation were obtained.
机译:对由SA 333 Gr制成的偏心加载的单边缘缺口拉伸试样进行了腐蚀疲劳裂纹扩展研究。 6和SA 516 Gr。在水环境中使用70碳钢。实验使用容量为±250 kN的通用测试机在恒定振幅正弦负载下进行,测试频率为0.50 Hz,应力比为0.1。根据ASTM E 647和ASTM E 1820进行试样的制备和实验。监控裂纹的萌生和扩展,并使用数码相机以规则的疲劳间隔捕获图像。通过使用这些图像,测量了裂纹的长度。当试样的未破裂部分不足以承受进一步的载荷时,试验终止。在加载周期和裂纹长度的增量值下评估裂纹扩展速率和应力强度因子范围值。使用裂纹增长率与应力强度因子范围图,得出遵循幂定律的最佳拟合曲线,形式为Paris方程。

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