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TP347H奥氏体不锈钢锅炉管开裂原因分析 被引量:9

Cracking Cause Analysis for TP347H Austenitic Stainless Steel Boiler Tube
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摘要 通过宏观检查、化学成分分析、金相检验、硬度试验、断口分析及能谱分析等方法,对某电厂超临界锅炉末级再热器奥氏体不锈钢管的开裂原因进行了分析。结果表明:TP347H异径管的横向开裂是在材质处于敏化状态、管子晶界受损的条件下,应力集中薄弱部位受轴向工作应力、弯矩和一定的焊接残余应力,发生了由外壁向内壁扩展的沿晶应力腐蚀开裂。 By visual testing, chemical composition analysis, metallographic examination, hardness testing, fracture analysis and energy spectrum analysis, the cracking causes for austenitic stainless steel of finishing reheater in supercritical boiler were analyzed. The results show that the transverse crack of TP347H reducer is intergranular stress corrosion cracking, which is from outside wall into inside wall, when the material is in the sensitized state and the tube grain boundary damages, and the stress concentration part has the axial working stress, bending moment and welding residual stress.
出处 《热加工工艺》 CSCD 北大核心 2014年第21期225-228,共4页 Hot Working Technology
关键词 奥氏体不锈钢 材质敏化 沿晶应力腐蚀 横向开裂 austenitic stainless steel material sensitization intergranular stress corrosion transverse cracking
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  • 1ASME SA-213/SA-213M 2010 Specification for seamless ferritic and austenitic alloy-steel boiler superheater and heat-exchanger tubes[S].
  • 2GB5310-2008,高压锅炉用无缝钢管[s].
  • 3GB/T6394-2002 金属平均晶粒度测定法[s].
  • 4GB/T 4340.1-2009.金属材料维氏硬度试验第1部分:试验方法[S].
  • 5DL/T438-2009火力发电厂金属技术监督规程[S].
  • 6EN ISO 18265-2003 Metallic Materials Conversion of Hardness Values[S].
  • 7杨建平,郭军,乔亚霞,等.DL/T869-2012火力发电厂焊接技术规程[S].国家能源局.
  • 8崔雄华,郑坊平,张磊,马红,贺锡鹏,王彩侠.供货热处理状态对奥氏体不锈钢锅炉管安全运行性能的影响[J].热力发电,2010,39(3):49-52. 被引量:5

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