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ENGR 220 Section 5.1-5.3

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ENGR 220 Section 5.1-5.3. Torsional Deformation of a Circular Shaft. Torsional Deformation of a Circular Shaft. The Torsional Formula. If the material is elastic then Hooke’s Law applies. Derivation of the Torsional Formula. Torsional Equation. - PowerPoint PPT Presentation
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ENGR 220 Section 5.1-5.3
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Page 1: ENGR 220 Section 5.1-5.3

ENGR 220Section 5.1-5.3

Page 2: ENGR 220 Section 5.1-5.3

Torsional Deformation of a Circular Shaft

Page 3: ENGR 220 Section 5.1-5.3

Torsional Deformation of a Circular Shaft

Page 4: ENGR 220 Section 5.1-5.3
Page 5: ENGR 220 Section 5.1-5.3
Page 6: ENGR 220 Section 5.1-5.3

max

c

Page 7: ENGR 220 Section 5.1-5.3

The Torsional Formula• If the material is elastic then Hooke’s Law

applies.

max

c

G

Page 8: ENGR 220 Section 5.1-5.3

Derivation of the Torsional Formula

Page 9: ENGR 220 Section 5.1-5.3

Torsional Equation

44

4

max

2Shaft Tubular

2Shaft Solid

io ccJ

cJ

J

Tc

Page 10: ENGR 220 Section 5.1-5.3

Lecture Example: Plot the torque on the shaft as a function of position from E to B. The smooth bearings at A and B do not resist torque.

Page 11: ENGR 220 Section 5.1-5.3

Lecture Example: Plot the shear stress distribution acting along a radial line lying in the region EA of the shaft. The smooth bearings at A and B do not resist torque.

Shaft ID = 1 inShaft OD = 1.25 in

Page 12: ENGR 220 Section 5.1-5.3

Power Transmission

TfP

Tdt

dTP

2

Page 13: ENGR 220 Section 5.1-5.3

Lecture Example: The gear motor can develop 1/10 hp when it turns at 80 rev/min. If the allowable stress for the shaft is τallow = 4 ksi determine the smallest diameter shaft to the nearest 1/8 in that can be used.


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