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CORROSION FATIGUE FAILURE ANALYSIS AND LIFE PREDICTION

机译:腐蚀疲劳失效分析与寿命预测

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摘要

A metallurgical failure analysis and life prediction was performed for an economizer tube. The tube failed after approximately nine years of service. The failure was a pin hole leak, elliptically shaped with the long axis in the circumferential direction. On the inside surface of the tube, there were several circumferential cracks and numerous oxygen pits on the top half. The cracks were transgranular and initiated at pits. The failure mechanism is corrosion fatigue and is believed to be due to a cyclic applied bending moment. Life predictions were performed using two crack geometries and zero-tension loading cycle. The geometries were a thumbnail shaped ID crack with an a/c of 0.2 and a 360° ID cracked cylinder. A parametric approach was used with two initial crack depths based on the measured pit depths and three remote stresses centered around the minimum yield strength of the SA-178-A tube material. The failure criteria was the reference stress equal to the flow stress. For the thumbnail crack geometry at a remote load of 179 MPa (equal to minimum specified yield strength), the calculated lives were 15,960 cycles for an initial crack depth of 5% and 3,450 cycles for an initial crack depth of 10%. The cyclic lives of the 360° crack geometry were approximately half of those for the thumbnail crack geometry. The slope of the log life-log stress curve was approximately -5.8.
机译:对省煤器进行了冶金失效分析和寿命预测。在大约服务了九年后,该管失败了。失败是针孔泄漏,其椭圆形在圆周方向上具有长轴。在管子的内表面,上半部有几个圆周裂纹和许多氧气坑。裂纹是跨晶的,并开始于凹坑。失效机理是腐蚀疲劳,被认为是由于周期性施加的弯矩。使用两种裂纹几何形状和零张力加载循环进行寿命预测。几何形状是a / c为0.2的缩略图形ID裂纹和360°ID裂纹圆柱体。使用参数化方法,根据测得的凹坑深度确定两个初始裂纹深度,并以SA-178-A管材的最小屈服强度为中心确定三个远端应力。破坏标准是参考应力等于流动应力。对于在179 MPa(等于最小指定屈服强度)的远程载荷下的缩略图裂纹几何形状,对于5%的初始裂纹深度,计算的寿命为15960圈,对于10%的初始裂纹,计算寿命为3450圈。 360°裂纹几何形状的循环寿命大约是缩略图裂纹几何形状的循环寿命的一半。测井寿命-测井应力曲线的斜率约为-5.8。

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