Q1) For a cone clutch, see figure (Q1), when the wear is uniform (Pr=constant), show that the transmitted torque is equal to: T = π *μ* csc (B)* C* (r² r₂²) Where T: Transmitted torque, u: coefficient of friction, C:Constant, 2ẞ: Cone angle, r₁: Inner radius, 2: Outer radius driving Shaft (red/sec) (rpm) driven shaft. W (rpm) total axial (mad /sea) force.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q1) For a cone clutch, see figure (Q1), when the wear is uniform (Pr=constant), show
that the transmitted torque is equal to:
T = π *μ*csc(B)* C* (r² − r₂²)
Where T: Transmitted torque, u: coefficient of friction, C:Constant, 2ß: Cone
angle, ₁: Inner radius, ₂: Outer radius
driving
Shaft
お
3
(rad/sec)
or
(rpm)
90°
driven
shaft.
W
(rpm)
(read /sea)
total axial
force.
Transcribed Image Text:Q1) For a cone clutch, see figure (Q1), when the wear is uniform (Pr=constant), show that the transmitted torque is equal to: T = π *μ*csc(B)* C* (r² − r₂²) Where T: Transmitted torque, u: coefficient of friction, C:Constant, 2ß: Cone angle, ₁: Inner radius, ₂: Outer radius driving Shaft お 3 (rad/sec) or (rpm) 90° driven shaft. W (rpm) (read /sea) total axial force.
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