Investigation of Rail Welded Joint Stresses, by using a Narrow Gap Welding Method, in Ballasted Railway Tracks
Galdiani, Milad Alizadeh
Mosayebi, Seyed Ali
Mohit, Ali
2025-09-17T07:35:31Z
2025-09-17T07:35:31Z
2024
1785-8860
hu_HU
http://hdl.handle.net/20.500.14044/33778
In the modern railway superstructure construction and maintenance, particularly
where higher speeds are required, the rail sections may be welded together to form
Continuous Welded Rail (CWR). There are various methods for welding the rails, such as
thermite welding, flash-butt welding, gas-pressure welding, enclosed-arc welding, etc.
Narrow Gap Welding is another way of welding the rail joints and because of the lower
implementation costs, easier, quicker process and acceptable performance, it is usually used
over other methods in maintenance operations. Since this method is newer than others, there
is lack of knowledge concerning the standard process of narrow gap welding and the factors
that affect the final quality. In the narrow gap welding, two different welding electrodes are
used for the welding process. One electrode, with higher stiffness, is used for the rail head
and the other electrode, with lower stiffness, is used for the rail web and foot. In this research,
the relationship between these different welding electrodes and the amount of stress in rail
joint was investigated via experiments and modeling, by a finite element method. The results
indicate that the number of stresses, in the junction of rail head and web, was reduced by
37%, when the electrode with higher stiffness was used for the whole rail head, plus 1 cm of
rail web. Field investigations demonstrated that the performance of rail welds was
acceptable.
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Investigation of Rail Welded Joint Stresses, by using a Narrow Gap Welding Method, in Ballasted Railway Tracks