TY - JOUR
T1 - Numerical analysis of residual stress for copper base brazed stainless steel plate-fin structure
AU - Xie, Qiaoyun
AU - Ling, Xiang
PY - 2010/7
Y1 - 2010/7
N2 - Copper base stainless steel plate-fin structure has been widely used as a heat exchanger in many fields. The nonlinear thermal reaction on the residual stress in brazing process of the plate-fin structure was studied in this paper. A finite element model (FEM) was proposed to simulate the heat transfer and the sequential residual stress generated in the plate-fin and filler metals based on thermal elastic-plastic theory. By the stress distribution in four paths marked in the structure obtained from FEM results, it is found that the maximum residual tensile stress occurs in the brazed joint next to the plate side and a crack would initiate in this region. Also, the first principle stresses of reference nodes were calculated and the conclusion is consistent with the simulation results. These results would provide some constructive instructions in the practical brazing procedure.
AB - Copper base stainless steel plate-fin structure has been widely used as a heat exchanger in many fields. The nonlinear thermal reaction on the residual stress in brazing process of the plate-fin structure was studied in this paper. A finite element model (FEM) was proposed to simulate the heat transfer and the sequential residual stress generated in the plate-fin and filler metals based on thermal elastic-plastic theory. By the stress distribution in four paths marked in the structure obtained from FEM results, it is found that the maximum residual tensile stress occurs in the brazed joint next to the plate side and a crack would initiate in this region. Also, the first principle stresses of reference nodes were calculated and the conclusion is consistent with the simulation results. These results would provide some constructive instructions in the practical brazing procedure.
KW - Brazed residual stress
KW - FEM
KW - First principle stress
KW - Thermal elastic-plastic
UR - http://www.scopus.com/inward/record.url?scp=77956415374&partnerID=8YFLogxK
U2 - 10.1007/s11665-009-9530-7
DO - 10.1007/s11665-009-9530-7
M3 - 文章
AN - SCOPUS:77956415374
SN - 1059-9495
VL - 19
SP - 611
EP - 615
JO - Journal of Materials Engineering and Performance
JF - Journal of Materials Engineering and Performance
IS - 5
ER -