TY - JOUR
T1 - Finite element modelling of brazed residual stress and its influence factor analysis for stainless steel plate-fin structure
AU - Gong, Jianming
AU - Jiang, Wenchun
AU - Fan, Qinshan
AU - Chen, Hu
AU - Tu, S. T.
PY - 2009/2/19
Y1 - 2009/2/19
N2 - This paper presents a finite element modelling of brazed residual stress in a stainless steel plate-fin structure applied to recuperators in microturbines. The effects of nine influence factors on residual stress are investigated. The results show that the brazed joint creates large residual stresses due to the mechanical properties mismatching between base metal and filler metal. Strength in the middle joint is affected mainly by longitudinal stress. The residual stress gradient around the interface between base metal and filler metal is very large, which can have a great effect on interface strength. The material mismatching, brazing gap, pressure loading, fin pitch, fin thickness, fin height and plate thickness significantly affect the residual stress distribution, while the brazing temperature and the number of fin layers have little impact on residual stress. This work provides a reference for optimizing the brazing procedure and decreasing the residual stress for stainless steel plate-fin structures.
AB - This paper presents a finite element modelling of brazed residual stress in a stainless steel plate-fin structure applied to recuperators in microturbines. The effects of nine influence factors on residual stress are investigated. The results show that the brazed joint creates large residual stresses due to the mechanical properties mismatching between base metal and filler metal. Strength in the middle joint is affected mainly by longitudinal stress. The residual stress gradient around the interface between base metal and filler metal is very large, which can have a great effect on interface strength. The material mismatching, brazing gap, pressure loading, fin pitch, fin thickness, fin height and plate thickness significantly affect the residual stress distribution, while the brazing temperature and the number of fin layers have little impact on residual stress. This work provides a reference for optimizing the brazing procedure and decreasing the residual stress for stainless steel plate-fin structures.
KW - Brazed residual stress
KW - Finite element modelling
KW - Influence factors
KW - Stainless steel plate-fin structure
UR - http://www.scopus.com/inward/record.url?scp=58249144452&partnerID=8YFLogxK
U2 - 10.1016/j.jmatprotec.2008.04.014
DO - 10.1016/j.jmatprotec.2008.04.014
M3 - 文章
AN - SCOPUS:58249144452
SN - 0924-0136
VL - 209
SP - 1635
EP - 1643
JO - Journal of Materials Processing Technology
JF - Journal of Materials Processing Technology
IS - 4
ER -