Shigley's Mechanical Engineering Design (McGraw-Hill Series in Mechanical Engineering)
Shigley's Mechanical Engineering Design (McGraw-Hill Series in Mechanical Engineering)
10th Edition
ISBN: 9780073398204
Author: Richard G Budynas, Keith J Nisbett
Publisher: McGraw-Hill Education
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Chapter 14, Problem 1P

A steel spur pinion has a pitch of 6 teeth/in, 22 full-depth teeth, and a 20° pressure angle. The pinion runs at a speed of 1200 rev/min and transmits 15 hp to a 60-tooth gear. If the face width is 2 in, estimate the bending stress.

Expert Solution & Answer
Check Mark
To determine

The bending stress on teeth of gear.

Answer to Problem 1P

The bending stress on teeth of gear is 7.63 kpsi.

Explanation of Solution

Write the expression for pitch diameter of gear.

d=NP (I)

Here, the pitch diameter is d, the number of teeth is N and the pitch of gear is P.

Write the expression for linear velocity of gear.

V=πdn (II)

Here, the linear velocity is V and the rotation per unit time is n.

Write the expression for dynamic factor of cut or milled gear profile.

Kv=1200+V1200 (III)

Here, the dynamic factor is Kv and the linear velocity in ft/min is V.

Write the expression for transmitted load.

Wt=33000HV (IV)

Here, the transmitted load in lbf is Wt, the power to be transmitted in hp is H and the linear velocity in ft/min is V.

Write the expression for bending stress.

σ=KvWtPFY (V)

Here, the bending stress in psi is σ, the face width in in is F and the Lewis form factor is Y.

Conclusion:

Substitute 22teeth for N and 6teeth/in for P in Equation (I).

d=22teeth6teeth/in=3.667 in

Substitute 3.667 in for d 1200rotation/minute for n in Equation (II).

V=π(3.667in)(1200rotation/min)=(13824.26in/min)(1ft12in)1152ft/min

Substitute 1152ft/min for V in Equation (III).

Kv=1200+1152ft/min1200=1.96

Substitute 1152ft/min for V and 15hp for H in Equation (IV).

Wt=(33000)(15hp1152ft/min)=429.7lbf

Refer to Table 14-2 “Values of the Lewis Form factor Y(These Values Are for a Normal Pressure Angle of 20°, Full-Depth Teeth and a Diametral Pitch of Unity in the Plane of Rotation)” to obtain value of Lewis form factor as 0.331 at 22 number of teeth.

Substitute 429.7lbf for Wt, 1.96 for Kv, 6teeth/in for P, 2in for F and 0.331 for Y in Equation (V).

σ=1.96(429.7lbf)(6teeth/in)(2in)(0.331)=7633psi(1kpsi1000psi)7.63kpsi

Thus the bending stress on teeth of gear is 7.63kpsi.

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Students have asked these similar questions
A steel spur pinion has a pitch of 6 teeth/in, 22 tooth full-depth teeth with a cut profile, and a 20 pressure angle. The pinion runs at a speed of 1,160 rev/min and transmits 17.434 hp to a 60 tooth gear. If the face width is 2 in., estimate the static bending bending stress in the gear tooth in psi. Use the Lewis equation. Take the value of Lewis form factor, Y, from the table 14-2. Note do NOT use the velocity factor Kv in the bending stress equation.
A pair of helical gears are machined with a hob. The hob has a 20 degree pressure angle and machines circular pitch of 0.55 inch/tooth on a spur gear. Two gears are machined, the pinion has 18 teeth and the gear has 36 teeth. The measured transverse diametral pitch on the pinion is 5 inch/tooth. The pinion transmits 10 hp at 1,795 rpm. Calculate the pinion axial force in lbf.
3. A helical gear has a transverse diametral pitch of 6, a transverse pressure angle of 145°, 36 teeth, a face width of 1.00 in, and a helix angle of 45°. (a) If the gear transmits 15.0 hp at a speed of 2200 rpm, compute the tangential force, the axial force, and the radial force. (b) If the gear operates with a pinion having 12 teeth, compute the bending stress in the pinion teeth. The power comes from a six-cylinder gasoline engine, and the drive is to a concrete mixer. Specify a qual- ity number for the teeth. (c) Specify a suitable material for the pinion and the gear considering both strength and pitting resis- tance.

Chapter 14 Solutions

Shigley's Mechanical Engineering Design (McGraw-Hill Series in Mechanical Engineering)

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