Vector Mechanics for Engineers: Statics and Dynamics
Vector Mechanics for Engineers: Statics and Dynamics
12th Edition
ISBN: 9781259638091
Author: Ferdinand P. Beer, E. Russell Johnston Jr., David Mazurek, Phillip J. Cornwell, Brian Self
Publisher: McGraw-Hill Education
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Chapter 15.3, Problem 15.80P

The arm ABC rotates with an angular velocity of 4 rad/s counterclockwise. Knowing that the angular velocity of the intermediate gear B is 8 rad/s counterclockwise, determine (a) the instantaneous centers of rotation of gears A and C, (b) the angular velocities of gears A and C.

Chapter 15.3, Problem 15.80P, The arm ABC rotates with an angular velocity of 4 rad/s counterclockwise. Knowing that the angular

Fig. P15.80

(a)

Expert Solution
Check Mark
To determine

Find the instantaneous center of rotation of gear A and C.

Answer to Problem 15.80P

The instantaneous center of rotation of the gear A is 300mmleft of A_.

The instantaneous center of rotation of the gear C is 600mmleft of C_.

Explanation of Solution

Given information:

The angular velocity of the arm ABC is ωABC=4rad/s(Counterclockwise).

The angular velocity of the gear B is ωB=8rad/s(Counterclockwise).

Consider the contact point between the gear A and B is denoted by 1.

Consider the contact point between the gear B and C is denoted by 2.

Consider the velocity at point A, C, 1, and 2 are denoted by vA,vC,v1,and v2.

Calculation:

Show the velocity at point A and C as shown in Figure 1.

Vector Mechanics for Engineers: Statics and Dynamics, Chapter 15.3, Problem 15.80P , additional homework tip  1

Refer to Figure 1.

Consider the arm ABC.

Calculate the velocity at A and C as follows:

Take the value of ωABC=4rad/s(Counterclockwise).

vA=(AB)ωABC=300mm×(1m1000mm)×4rad/s=1.2m/s()

vB=(BC)ωABC=300mm×(1m1000mm)×4rad/s=1.2m/s()

Show the gear B as shown in Figure 2.

Vector Mechanics for Engineers: Statics and Dynamics, Chapter 15.3, Problem 15.80P , additional homework tip  2

Refer Figure 2.

Calculate the velocity at point 1 and 2 as follows:

Take the angular velocity of the gear B is ωB=8rad/s(Counterclockwise).

v1=(B1)ωB=200mm×(1m1000mm)×8rad/s=1.6m/s()

v2=(B2)ωB=100mm×(1m1000mm)×8rad/s=0.8m/s()

Show the gear A as shown in Figure 3.

Vector Mechanics for Engineers: Statics and Dynamics, Chapter 15.3, Problem 15.80P , additional homework tip  3

Refer Figure 3.

Consider the instantaneous center of rotation of the gear A is denoted by IA.

Calculate the angular acceleration (ωA) of the gear A using the relation:

ωA=v1vA100mm×(1m1000mm)=v1vA0.100

Substitute 1.6m/s for v1 and 1.2m/s for vA.

ωA=1.61.20.1=4rad/s(Clockwise) (1)

Calculate the distance lA using the relation:

lA=vAωA

Substitute 4rad/s(Clockwise) for ωA and 1.2m/s for vA.

lA=1.24=0.3m×(1000mm1m)=300mm

Thus, the instantaneous center of rotation of the gear A is 300mmleft of A_.

Show the gear C as shown in Figure 4.

Vector Mechanics for Engineers: Statics and Dynamics, Chapter 15.3, Problem 15.80P , additional homework tip  4

Refer Figure 4.

Consider the instantaneous center of rotation of the gear C is denoted by IC.

Calculate the angular acceleration (ωC) of the gear C using the relation:

ωC=vCv2200mm×(1m1000mm)=vCv20.200

Substitute 0.8m/s for v2 and 1.2m/s for vC.

ωC=0.81.20.2=2rad/s=2rad/s(Counterclockwise) (2)

Calculate the distance lC using the relation:

lC=vCωC

Substitute 2rad/s(Counterclockwise) for ωC and 1.2m/s for vC.

lC=1.22=0.6m×(1000mm1m)=600mm

Thus, the instantaneous center of rotation of the gear C is 600mmleft of C_.

(b)

Expert Solution
Check Mark
To determine

Find the angular velocity of gear A and C.

Answer to Problem 15.80P

The angular velocity of the gear A and C are 4rad/s(Clockwise)_ and 2rad/s(Clockwise)_.

Explanation of Solution

Given information:

Calculation:

Refer Part (a).

Refer Equation (1).

The angular velocity of the gear A is 4rad/s(Clockwise).

Refer Equation (2).

The angular velocity of the gear C is 2rad/s(Clockwise)

Thus, the angular velocity of the gear A and C are 4rad/s(Clockwise)_ and 2rad/s(Clockwise)_.

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Chapter 15 Solutions

Vector Mechanics for Engineers: Statics and Dynamics

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