Hi guys,
I'm new to the forums and was hoping someone here could help me out with a technical question.
Here it is:
What are the forces which result when a bogie traverses and impacts a checkrail around a curve assuming no cant deficiency?
I am tending towards believing the centrifugal force of the wheelset would be the main force which the checkrail would have to bear, and from a stationary point of reference the direction of this force would be the angle of attack of the wheelsets. but it is well documented that there are quasi-static lateral loads produced by the wheelsets. I dont agree that these forces are relevant as they should be forces that act on the rail, but due to sliding friction, do these forces transfer to the checkrail?
Are there are other forces acting on this checkrail system that I have overlooked?
Also, since the centrifugal force is the tendency of the bogie to keep travelling in a straight line. If for the sake of simplicity around a curve, the direction of momentum (i.e. centrifugal force) is tangent to that point on the curve, it will impact the checkrail at an angle. So then, is the actual force perpendicular to the face of the checkrail actually only a component of the momentum?
It would be great if you could give me ideas that I could work forward on, or better yet if you know with good reason or documentation the actual forces relevant to the checkrail system.
Best Regards,
Charles.
I'm new to the forums and was hoping someone here could help me out with a technical question.
Here it is:
What are the forces which result when a bogie traverses and impacts a checkrail around a curve assuming no cant deficiency?
I am tending towards believing the centrifugal force of the wheelset would be the main force which the checkrail would have to bear, and from a stationary point of reference the direction of this force would be the angle of attack of the wheelsets. but it is well documented that there are quasi-static lateral loads produced by the wheelsets. I dont agree that these forces are relevant as they should be forces that act on the rail, but due to sliding friction, do these forces transfer to the checkrail?
Are there are other forces acting on this checkrail system that I have overlooked?
Also, since the centrifugal force is the tendency of the bogie to keep travelling in a straight line. If for the sake of simplicity around a curve, the direction of momentum (i.e. centrifugal force) is tangent to that point on the curve, it will impact the checkrail at an angle. So then, is the actual force perpendicular to the face of the checkrail actually only a component of the momentum?
It would be great if you could give me ideas that I could work forward on, or better yet if you know with good reason or documentation the actual forces relevant to the checkrail system.
Best Regards,
Charles.
