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Torsion
- 304 Maximum Shearing Stress and Angle of Twist of a Steel Shaft
- 305 Minimum Diameter of Steel Shaft With Allowable Angle of Twist
- 306 Maximum Shearing Stress of Marine Propeller Shaft
- 307 Power Transmitted by Solid Steel Shaft of Unknown Diameter
- 308 Maximum Horsepower That Can be Transmitted by Steel Shaft
- 309 Finding the Diameter of a Propeller Shaft Transmitting a Power
- 310 Strength Comparison of Hollow and Solid Steel Shafts of Equal Outside Diameters
- 311 Aluminum Shaft Loaded by Multiple Torques Applied at Gears
- 312 Deformation of Flexible Shaft Made From Steel Wire Encased in Stationary Tube
- 313 Maximum Torque That Can be Applied to a Hollow Steel Shaft
- 314 Maximum Shear and Relative Gear Rotation of a Compound Steel Shaft
- 315 Power Applied and Removed at Shaft Gears
- 316 Permissible Torque That Can Be Applied to a Compound Shaft
- Solution to Problem 317 Torsion
- Solution to Problem 318 Torsion
- Solution to Problem 319 Torsion
- Solution to Problem 320 Torsion
- Solution to Problem 321 Torsion
- Solution to Problem 322 Torsion
- Solution to Problem 323 Torsion
- Solution to Problem 324 Torsion
- Solution to Problem 325 Torsion
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Torsion
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- Stresses in Beams
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- Properties of Wide Flange Sections
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Based on maximum allowable
Based on maximum allowable angle of twist:
where did you get the value of L?
im still confuse about the value of L being 1000
The maximum allowable twist
In reply to Based on maximum allowable by fatigue01
The maximum allowable twist is 0.5 deg/meter, that is, 0.5 degree for every L = 1 meter length.
if u see here 0.5 degree per
In reply to Based on maximum allowable by fatigue01
if u see here 0.5 degree per meter given,but we have to calculate mm unit thats why here 1000 multiplied
how is MPa got canceled by mm
how is MPa got canceled by mm?
Note: 1 MPa = 1 MN/m2 = 1 N
In reply to how is MPa got canceled by mm by fatigue01
Note: 1 MPa = 1 MN/m2 = 1 N/mm2.