TY - JOUR
T1 - A comparative study on modeling approaches towards laser-assisted machining
AU - Xu, Binbin
AU - Liu, Xin
AU - Liu, Hongguang
AU - Zhang, Jun
AU - Zhao, Wanhua
N1 - Publisher Copyright:
© 2023 The Author(s).
PY - 2023
Y1 - 2023
N2 - Finite element method (FEM) is widely used in machining processes as it can efficiently respond to the thermomechanical deformation and removal processes of materials. In this paper, FEM simulation analysis for laser-assisted machining (LAM) of Ti6Al4V alloy is carried out using two different modeling approaches: the sequentially coupled simulation (SCS) and the predefined fields coupled simulation (PFCS). The results of temperature, cutting force and chip morphology are obtained by these different approaches and verified by experiments. By analyzing the errors of the two approaches, the results show that the cutting force and chip morphology errors of the SCS method are 16.14% and 11.11%, respectively, while the errors of the PFCS method are 7.58% and 16.67%. However, neither of these approaches can fully simulate the complete LAM process. Therefore, a fully coupled simulation (FCS) approach needs to be developed to overcome the shortcomings of the above two methods.
AB - Finite element method (FEM) is widely used in machining processes as it can efficiently respond to the thermomechanical deformation and removal processes of materials. In this paper, FEM simulation analysis for laser-assisted machining (LAM) of Ti6Al4V alloy is carried out using two different modeling approaches: the sequentially coupled simulation (SCS) and the predefined fields coupled simulation (PFCS). The results of temperature, cutting force and chip morphology are obtained by these different approaches and verified by experiments. By analyzing the errors of the two approaches, the results show that the cutting force and chip morphology errors of the SCS method are 16.14% and 11.11%, respectively, while the errors of the PFCS method are 7.58% and 16.67%. However, neither of these approaches can fully simulate the complete LAM process. Therefore, a fully coupled simulation (FCS) approach needs to be developed to overcome the shortcomings of the above two methods.
KW - Finite element method
KW - Laser-assisted machining
KW - Simulation modeling approaches
KW - Ti6Al4V alloy
UR - https://www.scopus.com/pages/publications/85164538037
U2 - 10.1016/j.procir.2023.03.006
DO - 10.1016/j.procir.2023.03.006
M3 - 会议文章
AN - SCOPUS:85164538037
SN - 2212-8271
VL - 117
SP - 26
EP - 31
JO - Procedia CIRP
JF - Procedia CIRP
T2 - 19th CIRP Conference on Modeling of Machining Operations, CMMO 2023
Y2 - 31 May 2023 through 2 June 2023
ER -