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Modal behaviour of each draft pad is presented separately.
It is observed that first five mode shapes of the individual draft pad are dominating the behaviour of each draft pad in the draft gear for all 15 mode shapes of the draft gear.
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The modal behaviour of draft pad and draft gear assumes significance as it is necessary to identify frequencies at which fatigue failure of draft pads can occur.
In this article, the dynamic behaviour of draft pad and draft gear is investigated using finite element method.
Dynamic behaviour of an individual draft pad and a draft gear is determined and characterized with exciting frequencies and corresponding mode shapes.
As a result some draft pads exhibit third modal behaviour of individual draft pad.
The results is that some draft pads exhibit second modal behaviour while some exhibit fourth modal behaviour of individual draft pad.
The effect of compressive prestress load on the dynamic behaviour of an individual draft pad is also determined as the draft pads in assembled state are under constant axial compressive force in the draft gear.
The present work intends to investigate dynamic behaviour of draft gear using finite element method.
A comparison of the mode shapes of each draft pad in the draft gear with mode shapes of an individual draft pad is done.
The breeding behaviour of each group is outlined below.
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