Find Max Torque Using Smaller Rad of Shaft

  • Thread starter Thread starter 1question
  • Start date Start date
  • Tags Tags
    Shaft Torque
Join the discussion
Registration is free. Ask a follow-up in this thread, or start your own.
3 replies · 2K views
1question
Messages
66
Reaction score
0

Homework Statement


The question wants me to find the maximum torque.
I do not understand why the solution uses the radius of the smaller part of the shaft rather than the radius of the thicker part of the shaft. Please see the attached image.

Homework Equations



shear stress = (max torque)(maximum radius)/J where J = polar moment of inertia.

J = π/2c^4 where c = max radius of the rod

The Attempt at a Solution



I want to use 37.5mm as the radius (radius of larger part of the shaft), but it is not correct. The formula above directly relates torque T and c (radius), which is why I would assume it would be correct to use the largest c value possible. I would appreciate any insight. Thanks.
 

Attachments

Physics news on Phys.org
I do not understand why the solution uses the radius of the smaller part of the shaft rather than the radius of the thicker part of the shaft.
Probably because the diagram shows the torque being applied to the thin part of the shaft.

It's shear stress you are calculating - the bigger part of the shaft may get a torsional (corkscrew) and a centrifugal stress - but to get a shear stress, something has to be pulling on the surface.
I suspect you are just taking your equation too literally - go back to the definition of a shear force and see how that applies to a torque. i.e. what if you applied the torque to the inner surface of a hollow shaft?
 
  • Like
Likes   Reactions: 1 person
Simon Bridge said:
Probably because the diagram shows the torque being applied to the thin part of the shaft.

Should have seen that, haha. Thank you.