TY - GEN
T1 - Numerical simulation of stagger spinning for D406A high-strength steel
AU - Li, Kaidi
AU - Liu, Degui
AU - Li, Jinshan
AU - Tang, Bin
AU - Kou, Hongchao
N1 - Publisher Copyright:
© 2019 Trans Tech Publications, Switzerland.
PY - 2018
Y1 - 2018
N2 - Metal spinning process is widely used because of its low power requirement to producing complex symmetry components. In this paper, a modified 3D finite element(3D-FE) model is developed under the FE software environment based on characteristics of stagger spinning process. Analysis of the multi-pass spinning deformation mechanism and the effects of spinning parameters on spinning deformation were carried out. The results showed that large internal diameter of tube blank and low dimensional accuracy were caused by too little feed rate of spinning roller, especially for thin-walled tube. But if the feed rate was larger than 60mm/min, large spinning forces and instability appeared. Strain rate and forming instability increased with the increase of rotational speed of mandrels, on the other hand, more obvious friction lead to bigger strain of surface of tube blank. With the radius of corner of spinning roller getting 13mm, the extensive overlaps lead to the improvement of spinning efficiency, while low forming quality accompanied by the large spinning forces occurred. Cutting phenomena lead to worse surface quality even tended to crack with the radius of corner of spinning roller being smaller than 8mm. An ideal combination of process parameters is obtained: the roller feed rate is 50mm/min, the rotational speed of mandrel is 40rad/min, the radius of corner of spinning roller is 10mm.
AB - Metal spinning process is widely used because of its low power requirement to producing complex symmetry components. In this paper, a modified 3D finite element(3D-FE) model is developed under the FE software environment based on characteristics of stagger spinning process. Analysis of the multi-pass spinning deformation mechanism and the effects of spinning parameters on spinning deformation were carried out. The results showed that large internal diameter of tube blank and low dimensional accuracy were caused by too little feed rate of spinning roller, especially for thin-walled tube. But if the feed rate was larger than 60mm/min, large spinning forces and instability appeared. Strain rate and forming instability increased with the increase of rotational speed of mandrels, on the other hand, more obvious friction lead to bigger strain of surface of tube blank. With the radius of corner of spinning roller getting 13mm, the extensive overlaps lead to the improvement of spinning efficiency, while low forming quality accompanied by the large spinning forces occurred. Cutting phenomena lead to worse surface quality even tended to crack with the radius of corner of spinning roller being smaller than 8mm. An ideal combination of process parameters is obtained: the roller feed rate is 50mm/min, the rotational speed of mandrel is 40rad/min, the radius of corner of spinning roller is 10mm.
KW - ABAQUS
KW - Cylindrical part
KW - D406A high-strength steel
KW - Numerical simulation
KW - Stagger spinning
UR - http://www.scopus.com/inward/record.url?scp=85062662408&partnerID=8YFLogxK
U2 - 10.4028/www.scientific.net/MSF.944.778
DO - 10.4028/www.scientific.net/MSF.944.778
M3 - 会议稿件
AN - SCOPUS:85062662408
SN - 9783035713848
T3 - Materials Science Forum
SP - 778
EP - 787
BT - Functional and Functionally Structured Materials III
A2 - Han, Yafang
PB - Trans Tech Publications Ltd
T2 - Chinese Materials Conference, 2018
Y2 - 12 July 2018 through 16 July 2018
ER -