Abstract
The paper presents chosen aspects of the skew rolling process of hollow stepped products with the use of a skew rolling mill designed and manufactured at the Lublin University of Technology. This machine is characterized by the numerical control of spacing between the working rolls and the sequence of the gripper axial movement, which allows for the individual programming of the obtained shapes of parts such as stepped axles and shafts. The length of these zones and the values of possibly realizable cross-section reduction and obtained outlines are the subject of this research paper. The chosen results regarding the influence of the technological parameters used on the course of the process are shown in the present study. Numerical modelling using the finite element method in Simufact Forming, as well as the results of experimental tests performed in a skew rolling mill, were applied in the conducted research. The work takes into account the influence of cross-section reduction of the hollow parts and the feed rate per rotation on the metal flow mechanisms in the skew rolling process. The presented results concern the obtained dimensional deviations and changes in the wall thickness determining the proper choice of technological parameters for hollow parts formed by the skew rolling method. Knowledge about the cause of the occurrence of these limitations is very important for the development of this technology and the choice of the process parameters.
Funder
Ministerstwo Nauki i Szkolnictwa Wyższego
Subject
General Materials Science
Reference22 articles.
1. New warm forming processes to produce hollow shafts
2. Study of Rotary Compression Process of Hollow Parts;Tomczak,2016
3. Cross-Wedge Rolling of Hollow Parts;Bartnicki,2005
4. Manufacturing of hollow transmission shafts via bulk–metal forging;Kettner;J. Mater. Process. Technol.,1997
5. Producing hollow drive shafts by rotary compression
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