TY - JOUR
T1 - Long-term overheating cracking analysis of 12Cr1MoV boiler superheater tube
AU - Liang, Xiulan
AU - You, Yiliang
AU - Zhang, Zheng
PY - 2014/4/20
Y1 - 2014/4/20
N2 - After running 39840 h, a boiler superheater tube made by 12Cr1MoV steel in a plant cracked. The tube is blocked and the thick-lip-shape fracture is covered with oxides. By utilizing optical microscope (OM), X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), transmission electron microscopy (TEM) and other methods to detect the tube, it is found that the compositions of blocking substances are Na3PO4, Fe2O3 and NaFeO2. In the unblocking position of the inner wall oxide is Fe3O4, however, in the blocking position, it is Fe2O3. In terms of the shape of the fracture morphology, it is inter granular, along with secondary cracks and pores in the grain boundary. The research results illustrate that the metallographic microstructures in samples of near crack and away from the crack are the same. With the lamellar pearlite of the initial state dissolves, the carbides gather and grow at the grain boundaries. The organization spherifies seriously, and the carbide is M23C6. According to the electric power industry standard, the spherical degree is identified as level 5. By utilizing spheroidization level and run-time to estimate the wall temperature, it can be know the tube run in over-temperature environment. To be specific, the hardness in all the samples is about 135 HV, which is relatively low. In all, the failure mode of superheater tube is high temperature creep cracking which is caused by long-term overheating resulted from the oxide layer and the blocking substances.
AB - After running 39840 h, a boiler superheater tube made by 12Cr1MoV steel in a plant cracked. The tube is blocked and the thick-lip-shape fracture is covered with oxides. By utilizing optical microscope (OM), X-ray diffraction (XRD), scanning electron microscopy (SEM), energy dispersive spectroscopy (EDS), transmission electron microscopy (TEM) and other methods to detect the tube, it is found that the compositions of blocking substances are Na3PO4, Fe2O3 and NaFeO2. In the unblocking position of the inner wall oxide is Fe3O4, however, in the blocking position, it is Fe2O3. In terms of the shape of the fracture morphology, it is inter granular, along with secondary cracks and pores in the grain boundary. The research results illustrate that the metallographic microstructures in samples of near crack and away from the crack are the same. With the lamellar pearlite of the initial state dissolves, the carbides gather and grow at the grain boundaries. The organization spherifies seriously, and the carbide is M23C6. According to the electric power industry standard, the spherical degree is identified as level 5. By utilizing spheroidization level and run-time to estimate the wall temperature, it can be know the tube run in over-temperature environment. To be specific, the hardness in all the samples is about 135 HV, which is relatively low. In all, the failure mode of superheater tube is high temperature creep cracking which is caused by long-term overheating resulted from the oxide layer and the blocking substances.
KW - 12Cr1MoV
KW - High temperature creep cracking
KW - Long-term overheating
KW - Superheater tube
UR - https://www.scopus.com/pages/publications/84901190072
U2 - 10.3901/JME.2014.08.081
DO - 10.3901/JME.2014.08.081
M3 - 文章
AN - SCOPUS:84901190072
SN - 0577-6686
VL - 50
SP - 81
EP - 86
JO - Jixie Gongcheng Xuebao/Journal of Mechanical Engineering
JF - Jixie Gongcheng Xuebao/Journal of Mechanical Engineering
IS - 8
ER -