Pendulum Surface Plastic Deformation of Cylindrical Blanks

被引:0
|
作者
Zaides S.A. [1 ]
Ho Minh Quan [1 ]
机构
[1] Irkutsk National Research Technical University, Irkutsk
来源
Steel in Translation | 2022年 / 52卷 / 05期
关键词
computer modeling; cylindrical part; Keywords: surface plastic deformation; kinematics of hardening process; plastic deformation depth; sectorial working tool; surface layer; temporal stresses;
D O I
10.3103/S0967091222050114
中图分类号
学科分类号
摘要
Abstract—The article discusses the features of kinematics regarding the working tool of a circular sector shape during hardening by pendulum surface plastic deformation (PSPD), which is carried out in two successive process steps – rolling and sliding in the contact zone of the deforming element and the blank. Forecasting of the possibility of its application for finishing and hardening processing of cylindrical parts such as shafts and axles is presented; the kinematic parameters of the pendulum SPD process in a rectangular coordinate system are described. Based on analysis of the components of motion types (rotational, translational, oscillatory) of the blank and tool functions of the trajectory length, magnitude of the resulting velocity and acceleration were determined, which make it possible to control the technological parameters and modes of the pendulum SPD process. Reliability of the kinematic analysis is confirmed by the results of simulation in the ANSYS 19.1 software program. The results of dynamic modeling showed that under the same hardening conditions with a stationary position of the working tool and its opposite rotation with the blank the intensity of the temporal stresses increases by 10 and 17%, respectively, compared to the rolling scheme. With pendulum SPD, the intensity of temporal stresses increases sharply and reaches a maximum value (485 MPa), with a distribution which is uniform in comparison with other methods. In addition, regularity of the intensity distribution of temporal stresses over the cylinder depth is shown where it is clear that in the case of SPD by sliding the depth of plastic deformation h has a higher value compared to the SPD by rolling (by 1.5–2.3 times). Under the same hardening conditions, the highest value of the depth of the hardened zones is obtained with pendulum SPD (h = 2.8 mm), which leads to changes in the physical, mechanical and operational properties of the blank deeper surface layer. © 2022, Allerton Press, Inc.
引用
收藏
页码:487 / 494
页数:7
相关论文
共 50 条