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Title: Mechanics theory question paper
Description: It will help you for previous year questions
Description: It will help you for previous year questions
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Define coefficient of kinetic & statics friction & law of friction
...
This constant is referred to as coefficient of static friction, denoted as πs
...
ππ€ =
π π€
π
Since πΉπ is less than πΉmax , we have ππ < πs
Coefficient of friction πs or πk depend on the nature of surfaces of contact and have value less than 1
...
2 to 0
...
The
corresponding coefficient of kinetic friction (πk ) is around 25% lower
...
2
The value of frictional force F increases as the applied disturbing force increases till it reaches the limiting
value πΉmax
...
3
The ratio of limiting frictional force πΉmax and the normal reaction N is a constant and it is referred to as
coefficient of static friction (ππ )
...
The ratio
of πΉπ and the normal reaction π is a constant and is referred to as coefficient of kinetic friction (ππ )
...
Define Angle of Friction, Cone of Friction and Angle of Repose
Angle of Friction:
"It is the angle made by the resultant of the limiting frictional force πΉmax and the normal reaction π with the normal
reaction"
...
4
...
Let π be the normal reaction
...
Let π be the resultant of πΉmax and π, making an angle π with the normal reaction
...
Here π = βπ½max 2 + N2
= β(πs N)2 + N2
also tan π =
Fmax
N
=
πs N
N
tan π = ππ
β΄ π = tanβ1 πs β¦ β¦ β¦ 4
...
4
...
Let π be the resultant
reaction at the contact surface acting at an angle of
friction π
...
This right circular cone is known as the cone of friction
...
Consider a block of weight W resting on a rough horizontal plane
...
4
...
The angle of inclination of the plane at this position is known as the angle of
repose
...
Angle of repose is independent of the weight of the body and depends only on the
coefficient of static friction
...
Applying COE
Ξ£πΉπ₯ = 0 Ξ + π£π
πΉmax β Wsin πΌ = 0
β΄ πs N β Wsin πΌ = 0 β¦ β¦ 1
Ξ£Fy = 0 + +ve
N β Wcos πΌ = 0
β΄ N = Wcos πΌ β¦ β¦ 2
Substituting (2) in (1)
ππ ( Wcos πΌ)
tan πΌ
βWsin πΌ = 0
=π
or πΌ = tanβ1 ππ β¦ β¦
...
4
but we have seen that
π
β΄
i
...
Angle of Repose
= tanβ1 πs
πΌ=π
= Angle of Friction
Though magnitude wise both angle of repose and angle of friction have the same value, their meaning and
application are different, as we have seen
Title: Mechanics theory question paper
Description: It will help you for previous year questions
Description: It will help you for previous year questions