Concept explainers
(a)
The angular velocity and angular acceleration of the point C on the output belt.
(a)
Answer to Problem 15.23P
The angular velocity
Explanation of Solution
Given information:
The inner radius of left pulley
The outer radius of left pulley
The velocity of point A
The tangential component of acceleration of point A
The inner radius of right pulley
The outer radius of right pulley
Calculation:
Left pulley:
Determine the angular velocity of the left pulley
Substitute 2 ft/s for
Draw the free body diagram of the left pulley as in Figure (1).
Determine the angular acceleration of the left pulley
Substitute
Intermediate belt:
Determine the velocity of the intermediate belt
Substitute 2 in. for
Determine the tangential component of acceleration of the intermediate belt
Substitute 2 in. for
Right pulley:
Draw the free body diagram of the right pulley as in Figure (2).
Determine the angular velocity of the right pulley
Substitute 1 ft/s for
Determine the angular acceleration of the right pulley
Substitute
Determine the velocity of point C.
Substitute 2 in. for
Determine the tangential component of acceleration of point C
Substitute 2 in. for
Therefore, the angular velocity
(b)
The acceleration of the point B on the output pulley.
(b)
Answer to Problem 15.23P
The acceleration of point B on the output pulley is
Explanation of Solution
Given information:
The inner radius of left pulley
The outer radius of left pulley
The velocity of point A
The tangential component of acceleration of point A
The inner radius of right pulley
The outer radius of right pulley
Calculation:
Determine the normal component of acceleration of point B
Substitute 4 in. for
Determine the tangential component of acceleration of point B
Substitute 4 in. for
Determine the magnitude of the total acceleration of the machine component at B.
Substitute
Determine the direction of the acceleration of point B
Substitute
Therefore, the acceleration of point B on the output pulley is
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Chapter 15 Solutions
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