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Failure Investigation of Boiler Water Wall Tubes of a Thermal Power Station

机译:火力发电厂锅炉水冷壁管故障研究

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Failure investigation was carried out on boiler water wall tubes of a thermal power plant through visual inspection, chemical analysis, and metallurgical analysis. Failure was in the form of thin/micro cracks along the length of the tubes which were located at the girth welding joint of tubes. Experimental results revealed that the cracking was from inward to outward of the tube thickness. Discontinuities/cavities were observed in the welded region which might have occurred due to lack of fusion of base metal and the weld metal. Cracks were initiated from the sharp corner/crack tip of the cavities/discontinuities present at the welded region under the action of hoop/thermal stress existed during the operation. Nature of the crack propagation indicates the case of typical hydrogen-induced cracking. Moreover, the presence of the cavities/discontinuities reduced the cross-sectional area of tubes resulting increased stress intensity. Increased stress beyond the flow stress of the material assisted by hydrogen-induced effect resulted the cracking of the tubes. In order to mitigate the problem, proper welding of tubes joints should be carried out followed by proper inspection after weld. Secondly, hydrogen dissolution during welding should be prevented and treatment for its removal after welding should be carried out.
机译:通过目视检查,化学分析和冶金分析对热电厂的锅炉水冷壁管进行了故障调查。失效的形式是沿管子的长度方向的细/微裂纹,这些裂纹位于管子的环焊缝处。实验结果表明,裂纹是从管的厚度向内到向外。在焊接区域观察到不连续性/空洞,这可能是由于母材和焊接金属缺乏熔合而发生的。在操作过程中存在的环向/热应力的作用下,从存在于焊接区域的腔体/间断的尖角/裂纹尖端开始产生裂纹。裂纹扩展的性质表明了典型的氢致裂纹的情况。此外,腔/不连续的存在减小了管的横截面积,从而导致应力强度增加。在氢诱导效应的帮助下,超过材料流动应力的应力增加导致管破裂。为了减轻该问题,应该对管接头进行适当的焊接,然后在焊接后进行适当的检查。其次,应防止焊接过程中氢的溶解,并应进行焊接后去除氢的处理。

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