TY - JOUR
T1 - Damage prediction of HP40Nb steel with coupled creep and carburization based on the continuum damage mechanics
AU - Shen, Limin
AU - Gong, Jianming
AU - Jiang, Yong
AU - Geng, Luyang
PY - 2012/8
Y1 - 2012/8
N2 - HP40Nb steel, used as a candidate material for ethylene cracking furnace tube, su®ers creep and carburization damage from the complex environment of high temperature, high carbon potential and low oxygen partial pressure, and they lead to failure of the furnace tubes ahead of designed life. In order to investigate damage evolution under the complex condition, coupled creep damage and carburization damage constitutive equations were developed according to continuum damage mechanics theory. Based on the finite element ABAQUS code, user subroutines were developed for analyz- ing damage evolution of ethylene furnace tube under the action of coupled creep- carburization. The results show that carburization accelerates the damage process dramatically, damage value reaches the critical value along the inner surface after serving for 75,000 h under the action of creep-carburization, meanwhile the damage value is only 0.53 along the outer surface after operating the same time under the action of creep alone, which means that microcracks are generated along the inner surface under the action of coupled creep-carburization, fracture begins along the outer surface of tube under the action of creep alone.
AB - HP40Nb steel, used as a candidate material for ethylene cracking furnace tube, su®ers creep and carburization damage from the complex environment of high temperature, high carbon potential and low oxygen partial pressure, and they lead to failure of the furnace tubes ahead of designed life. In order to investigate damage evolution under the complex condition, coupled creep damage and carburization damage constitutive equations were developed according to continuum damage mechanics theory. Based on the finite element ABAQUS code, user subroutines were developed for analyz- ing damage evolution of ethylene furnace tube under the action of coupled creep- carburization. The results show that carburization accelerates the damage process dramatically, damage value reaches the critical value along the inner surface after serving for 75,000 h under the action of creep-carburization, meanwhile the damage value is only 0.53 along the outer surface after operating the same time under the action of creep alone, which means that microcracks are generated along the inner surface under the action of coupled creep-carburization, fracture begins along the outer surface of tube under the action of creep alone.
KW - Coupled creep-carburization
KW - Damage prediction
KW - Ethylene furnace tube
KW - HP40Nb
UR - http://www.scopus.com/inward/record.url?scp=84866910369&partnerID=8YFLogxK
M3 - 文章
AN - SCOPUS:84866910369
SN - 1006-7191
VL - 25
SP - 279
EP - 286
JO - Acta Metallurgica Sinica (English Letters)
JF - Acta Metallurgica Sinica (English Letters)
IS - 4
ER -