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FATIGUE AND CORROSION FATIGUE FAILURES

机译:疲劳和腐蚀疲劳故障

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摘要

A metallurgical failure analysis was performed for a hanger rod and a waterwall tube sample. The hanger is a rigid type and supports a long vertical run of piping. The fracture is in one of the threaded ends and the fracture surface consists of three regions. The outermost portion adjacent to the thread root has ratchet marks that are an indication of fatigue crack initiation. The center portion has concentric, oval shaped beachmarks. The oval shape is consistent with an applied loading due to two bending moments. The inner portion is the final fracture and is approximately 1/4 of the thread root area indicating relatively low remote stresses. The failure mechanism is fatigue based on the beachmarks on the fracture surface and the transgranular cracking. The lower slope waterwall tube failure had a window opening fracture appearance. The axial fractures forming the window are located at the edge of the membrane welds on the cold or backside. There are shallow toe cracks at the membrane weld on the tube outside surface. The fracture surface had multiple, thumbnail-shaped fatigue cracks connected to the inside surface. These fatigue cracks are due to the corrosion fatigue mechanism based on two factors: (1) the stress responsible for their growth is related to the unit thermal cycling and the welded panel geometry near the corner of the boiler, and (2) they are oxidized indicating a corrosion contribution.
机译:对吊杆和水冷壁样品进行了冶金学失效分析。吊架是刚性的,可支撑较长的垂直管道。断裂位于螺纹端之一,断裂面由三个区域组成。与螺纹根部相邻的最外部具有棘轮痕迹,这些痕迹表明了疲劳裂纹的开始。中心部分具有同心的椭圆形海滩标记。椭圆形与由于两个弯矩而施加的载荷一致。内部是最终的断裂,大约是螺纹根部面积的1/4,表明相对较低的远程应力。失效机理是基于断裂表面的滩痕和经晶裂纹的疲劳。下坡水冷壁管破裂具有开窗断裂的外观。形成窗口的轴向裂缝位于冷焊或背面的膜焊缝的边缘。管外表面的膜焊缝处有浅趾裂纹。断裂表面具有连接到内表面的多个缩略图形疲劳裂纹。这些疲劳裂纹是由基于两个因素的腐蚀疲劳机理引起的:(1)导致裂纹扩展的应力与机组热循环和锅炉角落附近的焊接面板几何形状有关,(2)被氧化表示腐蚀作用。

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