The figure below shows a rock-crushing mechanism. It is used in a machine where large rock is placed in a vertical hopper and falls into this crushing chamber. Properly sized aggregate, which passes through a sieve, is discharged at the bottom. Rock not passing through the sieve is reintroduced into this crushing chamber. Determine the angular velocity of the crushing arm, in the shown configuration, as the 60 mm crank rotates at 120 rpm, clockwise. In addition, determine V. Chose velocity polygon 1 cm : 10cm sec Crushing chamber 180 mm 180 mm 360 mm 400 mm 360 mm 90⁰ 0₂= 120 rpm 400 mm 60 mm 60 mm B
The figure below shows a rock-crushing mechanism. It is used in a machine where large rock is placed in a vertical hopper and falls into this crushing chamber. Properly sized aggregate, which passes through a sieve, is discharged at the bottom. Rock not passing through the sieve is reintroduced into this crushing chamber. Determine the angular velocity of the crushing arm, in the shown configuration, as the 60 mm crank rotates at 120 rpm, clockwise. In addition, determine V. Chose velocity polygon 1 cm : 10cm sec Crushing chamber 180 mm 180 mm 360 mm 400 mm 360 mm 90⁰ 0₂= 120 rpm 400 mm 60 mm 60 mm B
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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show all steps and solution.

Transcribed Image Text:The figure below shows a rock-crushing mechanism. It is used in a machine where
large rock is placed in a vertical hopper and falls into this crushing chamber. Properly
sized aggregate, which passes through a sieve, is discharged at the bottom. Rock not
passing through the sieve is reintroduced into this crushing chamber.
Determine the angular velocity of the crushing arm, in the shown configuration, as
the 60 mm crank rotates at 120 rpm, clockwise. In addition, determine V.
Chose velocity polygon 1 cm : 10 cm.
sec
Crushing
chamber
180 mm
180 mm
360 mm
400 mm
360 mm
90°
0₂= 120 rpm
400 mm
60 mm
60 mm
B

Transcribed Image Text:In the mechanism, as shown above, the crank OA rotates at 20 rev/min.
anticlockwise and gives motion to the sliding blocks B and B. The dimensions of the
various links are OA = 300 mm; AB = 1200 mm; BC = 450 mm and CD
450 mm.
Find the velocity of piston B and D, find the angular velocity of link AB
For the given configuration: Velocity diagram with scale 1 cm : 0.1 m/s
1050 mm
30%
=
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
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Step 1: Given data
VIEWStep 2: Draw velocity diagram from given mechanism
VIEWStep 3: Calculation of angular velocity of link 4
VIEWStep 4: Draw velocity diagram from given mechanism
VIEWStep 5: Procedure of velocity diagram
VIEWStep 6: Calculation of the velocity of piston B, D, and the angular velocity of link AB
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resolve both and show all steps and solution

Transcribed Image Text:In the mechanism, as shown above, the crank OA rotates at 20 rev/min.
anticlockwise and gives motion to the sliding blocks B and B. The dimensions of the
various links are OA = 300 mm; AB = 1200 mm; BC = 450 mm and CD
450 mm.
Find the velocity of piston B and D, find the angular velocity of link AB
For the given configuration: Velocity diagram with scale 1 cm: 0.1 m/s
1050 mm
30%
=

Transcribed Image Text:The figure below shows a rock-crushing mechanism. It is used in a machine where
large rock is placed in a vertical hopper and falls into this crushing chamber. Properly
sized aggregate, which passes through a sieve, is discharged at the bottom. Rock not
passing through the sieve is reintroduced into this crushing chamber.
Determine the angular velocity of the crushing arm, in the shown configuration, as
the 60 mm crank rotates at 120 rpm, clockwise. In addition, determine V.
Chose velocity polygon 1 cm : 10 cm.
sec
Crushing
chamber
180 mm
180 mm
360 mm
400 mm
360 mm
90°
0₂= 120 rpm
400 mm
60 mm
60 mm
B
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